MLchartDataset catalogue

Patent · US10336584B2 · B2 · US

Lifting and transporting system

(11) Publication number
US10336584B2
(21) Application number
15/609,072
(22) Filing date
2017-05-31
(30) Priority date
2015-02-24
(43) Publication date
2019-07-02
(45) Date of grant
2019-07-02
(51) IPC
B66C 1/12; B66F 3/24; B66F 3/46
(52) CPC
  • B66C Cranes; load-engaging elements or devices for cranes, capstans, winches, or tackles: 1/12
  • B66F Hoisting, lifting, hauling or pushing, not otherwise provided for, e.g. devices which apply a lifting or pushing force directly to the surface of a load: 3/24, 3/46
(72) Inventors
Larry R. DeBattiste
(54) Title
Lifting and transporting system
(57) Abstract

Jack units attach skates to an object to be moved. Each jack unit has a tongue that slidably engages a coupling slot affixed to the object, and can be operated to raise or lower the tongue; when raised, the object is supported on the skates and can be rolled to a new location. A crane can attach to lift eyes on the jack units to allow the system to be lifted with the skates attached to the object, avoiding the risk to operators of positioning the skates under the object while it is suspended. Rotation-limiting structures can be selectively employed to block rotation of the trailing skates to facilitate steering when rolling the object supported by the system. The coupling slots can be provided in coupling elements which can attach directly to the object or which can be employed to form a freestanding frame to which the object is secured.

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Claims (22)

  1. A coupling element for attachment to an object to be lifted and transported by jack units, each of the jack units having, a skate, a tongue extending along a tongue axis and vertically movable relative to the skate, the tongue having, a tongue upper bearing surface extending parallel to the tongue axis, a tongue lower bearing surface extending parallel to the tongue axis, a pair of opposed tongue side bearing surfaces extending parallel to the tongue axis, and a selectively releasable tongue latching structure, and the coupling element comprising: a first coupling slot extending along a first slot axis and configured to slidably accept the tongue of one of the jack units, said first coupling slot having, a downward-facing first slot upper bearing surface extending parallel to the first slot axis and configured to slidably and supportably engage the tongue upper bearing surface, said first slot upper bearing surface having a length extending parallel to the first slot axis that is greater than a width extending orthogonally with respect to the first slot axis, an upward-facing first slot lower bearing surface extending parallel to the first slot axis and configured to slidably and supportably engage the tongue lower bearing surface, said first slot lower bearing surface having a length extending parallel to the first slot axis that is greater than a width extending orthogonally with respect to the first slot axis, a pair of oppositely-facing first slot side bearing surfaces extending parallel to the first slot axis and configured to slidably and supportably engage the tongue side bearing surfaces, said first slot side bearing surfaces each having a length extending parallel to the first slot axis that is greater than a height extending orthogonally with respect to the first slot axis, and a first slot latching structure configured to be releasably engaged with the tongue latching structure when the tongue upper, lower, and side bearing surfaces are engaged with said first slot upper, lower, and side bearing surfaces, such engagement by said tongue latching structure acting to block slidable motion between the tongue upper, lower, and side bearing surfaces and said first slot upper, lower, and side bearing surfaces; and a second coupling slot extending along a second slot axis that is orthogonal to the first slot axis, said second coupling slot configured to slidably accept the tongue of one of the jack units and having, a downward-facing second slot upper bearing surface extending parallel to the second slot axis and configured to slidably and supportably engage the tongue upper bearing surface, said second slot upper bearing surface having a length extending parallel to the second slot axis that is greater than a width extending orthogonally with respect to the second slot axis, an upward-facing second slot lower bearing surface extending parallel to the second slot axis and configured to slidably and supportably engage the tongue lower bearing surface, said second slot lower bearing surface having a length extending parallel to the second slot axis that is greater than a width extending orthogonally with respect to the second slot axis, a pair of oppositely-facing second slot side bearing surfaces extending parallel to the second slot axis and configured to slidably and supportably engage the tongue side bearing surfaces, said second slot side bearing surfaces each having a length extending parallel to the second slot axis that is greater than a height extending orthogonally with respect to the second slot axis, and a second slot latching structure configured to be releasably engaged with the tongue latching structure when the tongue upper, lower, and side bearing surfaces are engaged with said second slot upper, lower, and side bearing surfaces, such engagement by said tongue latching structure acting to block slidable motion between the tongue upper, lower, and side bearing surfaces and said second slot upper, lower, and side bearing surfaces.
  2. The coupling element of claim 1 wherein said first coupling slot and said second coupling slot intersect and extend through each other.
  3. The coupling element of claim 2 wherein the tongue latching structure of each of the jack units is a retractable latching pin mounted in the tongue so as to selectively protrude therefrom and further wherein, said first slot latching structure is provided by at least one first slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot; and said second slot latching structure is provided by at least one second slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot.
  4. The coupling element of claim 3 wherein said first slot latching structure is provided by a plurality of first slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot to a particular depth; and further wherein said second slot latching structure is provided by a plurality of second slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot to a particular depth.
  5. The coupling element of claim 4 wherein one of said first slot latch holes is positioned to also serve as one of said second slot latch holes.
  6. The coupling element of claim 3 wherein said at least one first slot latch hole includes at least one first slot latch hole in each of said first slot upper bearing surface and said first slot lower bearing surface; and further wherein said at least one second slot latch hole includes at least one second slot latch hole in each of said second slot upper bearing surface and said second slot lower bearing surface.
  7. The coupling element of claim 1 wherein the coupling element is configured to accept elongated frame members so as to form a corner of a rigid frame, the coupling element further comprising: a first frame member receptor extending along a first receptor axis that is parallel to the first slot axis, said first frame member receptor being configured to slidably accept an elongated first frame member and to engage the first frame member so as to prevent off-axis motion between the coupling element and the first frame member; and a second frame member receptor extending along a second receptor axis that is parallel to the second slot axis, said second frame member receptor being configured to slidably accept an elongated second frame member and to engage the second frame member so as to prevent off-axis motion between the coupling element and the second frame member.
  8. The coupling element of claim 7 further comprising: a third frame member receptor extending along a third receptor axis that is orthogonal to the first receptor axis and to the second receptor axis, said third frame member receptor being configured to slidably accept an elongated third frame member and to engage the third frame member so as to prevent off-axis motion between the coupling element and the third frame member.
  9. The coupling element of claim 1 further comprising: a third coupling slot extending along a third slot axis that is inclined by 45° to the first slot axis and to the second slot axis, said third coupling slot configured to slidably accept the tongue of the jack unit and having, a downward-facing third slot upper bearing surface extending parallel to the third slot axis and configured to slidably and supportably engage the tongue upper bearing surface, said third slot upper bearing surface having a length extending parallel to the third slot axis that is greater than a width extending orthogonally with respect to the third slot axis, an upward-facing third slot lower bearing surface extending parallel to the third slot axis and configured to slidably and supportably engage the tongue lower bearing surface, said third slot lower bearing surface having a length extending parallel to the third slot axis that is greater than a width extending orthogonally with respect to the third slot axis, a pair of oppositely-facing third slot side bearing surfaces extending parallel to the third slot axis and configured to slidably and supportably engage the tongue side bearing surfaces, said third slot side bearing surfaces each having a length extending parallel to the third slot axis that is greater than a height extending orthogonally with respect to the third slot axis, and a third slot latching structure configured to be releasably engaged with the tongue latching structure when the tongue upper, lower, and side bearing surfaces are engaged with said third slot upper, lower, and side bearing surfaces, such engagement by the tongue latching structure acting to block slidable motion between the tongue upper, lower, and side bearing surfaces and said third slot upper, lower, and side bearing surfaces.
  10. The coupling element of claim 9 for use when the tongue latching structure of each of the jack units is a retractable latching pin mounted in the tongue so as to selectively protrude therefrom, wherein: said first slot latching structure is provided by at least one first slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot; said second slot latching structure is provided by at least one second slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot; and said third slot latching structure is provided by at least one third slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said third coupling slot.
  11. The coupling element of claim 10 wherein said first slot latching structure is provided by a plurality of first slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot to a particular depth; further wherein said second slot latching structure is provided by a plurality of second slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot to a particular depth; and yet further wherein said third slot latching structure is provided by a plurality of third slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said third coupling slot to a particular depth, one of said first slot latch holes being positioned to also serve as one of said second latch holes and as one of said third latch holes.
  12. A coupling element for attachment to an object to be lifted and transported by jack units, each of the jack units having, a skate, a tongue extending along a tongue axis and vertically movable relative to the skate, the tongue having tongue bearing surfaces that extend parallel to the tongue axis, and a selectively releasable tongue latching structure, and the coupling element comprising: a first coupling slot extending along a first slot axis and configured to slidably accept the tongue of one of the jack units, said first coupling slot having first slot bearing surfaces configured to slidably and supportably engage the tongue bearing surfaces so as to limit motion therebetween to translation along the first slot axis, said first coupling slot having a depth extending along the first slot axis that is greater than both a height extending orthogonally with respect to the first slot axis and a width extending orthogonally with respect to the first slot axis; a first slot latching structure configured to be releasably engaged by the tongue latching structure when the tongue bearing surfaces are engaged with said first slot bearing surfaces, such engagement of the tongue latching structure with said first slot latching structure acting to block slidable motion between the tongue bearing surfaces and said first slot bearing surfaces; a second coupling slot extending along a second slot axis that is orthogonal to the first slot axis and configured to slidably accept the tongue, said second coupling slot having second slot bearing surfaces configured to slidably and supportably engage the tongue bearing surfaces so as to limit motion therebetween to translation along the second slot axis, said second coupling slot having a depth extending along the second slot axis that is greater than both a height extending orthogonally with respect to the second slot axis and a width extending orthogonally with respect to the second slot axis; and a second slot latching structure configured to be releasably engaged by the tongue latching structure when the tongue bearing surfaces are engaged with said second slot bearing surfaces, such engagement of the tongue latching structure with said second slot latching structure acting to block slidable motion between the tongue bearing surfaces and said second slot bearing surfaces.
  13. The coupling element of claim 12 wherein said first coupling slot and said second coupling slot intersect and extend through each other.
  14. The coupling element of claim 13 wherein the tongue latching structure of each of the jack units is a retractable latching pin mounted in the tongue so as to selectively protrude therefrom and, said first slot latching structure is provided by at least one first slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot; and said second slot latching structure is provided by at least one second slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot.
  15. The coupling element of claim 14 wherein said first slot latching structure is provided by a plurality of first slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot to a particular depth; and further wherein said second slot latching structure is provided by a plurality of second slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot to a particular depth.
  16. The coupling element of claim 15 wherein one of said first slot latch holes is positioned to also serve as one of said second latch holes.
  17. The coupling element of claim 14 wherein said at least one first slot latch hole includes at least one pair of opposed first slot latch holes positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot in either a first orientation or in a second orientation that is inverted from the first orientation; and further wherein said at least one second slot latch hole includes at least one pair of opposed second slot latch holes positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot in either the first orientation or in the second orientation.
  18. The coupling element of claim 12 wherein the coupling element is configured to accept elongated frame members so as to form a corner of a rigid frame, the coupling element further comprising: a first frame member receptor extending along a first receptor axis that is parallel to the first horizontal axis, said first frame member receptor being configured to slidably accept an elongated first frame member and to engage the first frame member so as to prevent off-axis motion between the coupling element and the first frame member; and a second frame member receptor extending along a second receptor axis that is parallel to the second horizontal axis, said second frame member receptor being configured to slidably accept an elongated second frame member and to engage the second frame member so as to prevent off-axis motion between the coupling element and the second frame member.
  19. The coupling element of claim 18 further comprising: a third frame member receptor extending along a vertical third receptor axis that is orthogonal to the first receptor axis and to the second receptor axis, said third frame member receptor being configured to slidably accept an elongated third frame member and to engage the third frame member so as to prevent off-axis motion between the coupling element and the third frame member.
  20. The coupling element of claim 12 further comprising: a third coupling slot extending along a third slot axis that is inclined by 45° to the first slot axis and to the second slot axis, said third coupling slot configured to slidably accept the tongue of the jack unit and having third slot bearing surfaces configured to slidably and supportably engage the tongue bearing surfaces so as to limit motion therebetween to translation along the third slot axis, said third coupling slot having a depth extending along the third slot axis that is greater than both a height extending orthogonally with respect to the third slot axis and a width extending orthogonally with respect to the third slot axis; and a third slot latching structure configured to be releasably engaged by the tongue latching structure when the tongue bearing surfaces are engaged with said third slot bearing surfaces, such engagement of the tongue latching structure with said third slot latching structure acting to block slidable motion between the tongue bearing surfaces and said third slot bearing surfaces.
  21. The coupling element of claim 20 for use when the tongue latching structure of each of the jack units is a retractable latching pin mounted in the tongue so as to selectively protrude therefrom, wherein: said first slot latching structure is provided by at least one first slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot; said second slot latching structure is provided by at least one second slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot; and said third slot latching structure is provided by at least one third slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said third coupling slot.
  22. The coupling element of claim 21 wherein said first slot latching structure is provided by a plurality of first slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot to a particular depth; further wherein said second slot latching structure is provided by a plurality of second slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot to a particular depth; and yet further wherein said third slot latching structure is provided by a plurality of third slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said third coupling slot to a particular depth, one of said first slot latch holes being positioned to also serve as one of said second latch holes and as one of said third latch holes.

Description

The present system relates to the field of lifting and transporting loads that are too bulky and/or massive to be readily moved without mechanical aid.

To move objects that are too large and/or heavy to be placed onto a cart, skid, or similar device, it is frequently necessary to lift the object and place skates or rollers (hereinafter simply referred to as “skates”) under the object to support its weight and to allow it to be rolled across a surface to a new location. Such movement causes risks of injury to the movers and damage to the object if the object slips and becomes disengaged from one or more of the skates as it is transported. An additional risk of injury occurs when an object is lowered from a crane onto skates, as moving personnel must work in close proximity to the suspended object in order to position the skates under the object. There is a need to reduce such injury risks to provide greater safety for persons moving large and heavy objects, as well as to reduce the risk of damage due to accidents while such objects are being moved.

The present invention provides a lifting and transporting system for safely moving large and/or heavy objects. The system employs a number of jack units, each of which serves to releasably but securely attach a skate, roller, or similar device (hereinafter simply referred to as a “skate”) to the object and to retain the skate connected to the object throughout the moving procedure. The jack unit allows the object to be lifted off of the underlying surface so as to be supported on the skate and thereafter moved to a new location.

Citations (5)

  • US3138398A
  • US4961680A
  • US4630550A
  • US5590974A
  • US6168031B1
Record as JSON
{
  "publication_number": "US10336584B2",
  "country": "US",
  "kind": "B2",
  "title": "Lifting and transporting system",
  "abstract": "Jack units attach skates to an object to be moved. Each jack unit has a tongue that slidably engages a coupling slot affixed to the object, and can be operated to raise or lower the tongue; when raised, the object is supported on the skates and can be rolled to a new location. A crane can attach to lift eyes on the jack units to allow the system to be lifted with the skates attached to the object, avoiding the risk to operators of positioning the skates under the object while it is suspended. Rotation-limiting structures can be selectively employed to block rotation of the trailing skates to facilitate steering when rolling the object supported by the system. The coupling slots can be provided in coupling elements which can attach directly to the object or which can be employed to form a freestanding frame to which the object is secured.",
  "claims": [
    "1. A coupling element for attachment to an object to be lifted and transported by jack units, each of the jack units having, a skate, a tongue extending along a tongue axis and vertically movable relative to the skate, the tongue having, a tongue upper bearing surface extending parallel to the tongue axis, a tongue lower bearing surface extending parallel to the tongue axis, a pair of opposed tongue side bearing surfaces extending parallel to the tongue axis, and a selectively releasable tongue latching structure, and the coupling element comprising: a first coupling slot extending along a first slot axis and configured to slidably accept the tongue of one of the jack units, said first coupling slot having, a downward-facing first slot upper bearing surface extending parallel to the first slot axis and configured to slidably and supportably engage the tongue upper bearing surface, said first slot upper bearing surface having a length extending parallel to the first slot axis that is greater than a width extending orthogonally with respect to the first slot axis, an upward-facing first slot lower bearing surface extending parallel to the first slot axis and configured to slidably and supportably engage the tongue lower bearing surface, said first slot lower bearing surface having a length extending parallel to the first slot axis that is greater than a width extending orthogonally with respect to the first slot axis, a pair of oppositely-facing first slot side bearing surfaces extending parallel to the first slot axis and configured to slidably and supportably engage the tongue side bearing surfaces, said first slot side bearing surfaces each having a length extending parallel to the first slot axis that is greater than a height extending orthogonally with respect to the first slot axis, and a first slot latching structure configured to be releasably engaged with the tongue latching structure when the tongue upper, lower, and side bearing surfaces are engaged with said first slot upper, lower, and side bearing surfaces, such engagement by said tongue latching structure acting to block slidable motion between the tongue upper, lower, and side bearing surfaces and said first slot upper, lower, and side bearing surfaces; and a second coupling slot extending along a second slot axis that is orthogonal to the first slot axis, said second coupling slot configured to slidably accept the tongue of one of the jack units and having, a downward-facing second slot upper bearing surface extending parallel to the second slot axis and configured to slidably and supportably engage the tongue upper bearing surface, said second slot upper bearing surface having a length extending parallel to the second slot axis that is greater than a width extending orthogonally with respect to the second slot axis, an upward-facing second slot lower bearing surface extending parallel to the second slot axis and configured to slidably and supportably engage the tongue lower bearing surface, said second slot lower bearing surface having a length extending parallel to the second slot axis that is greater than a width extending orthogonally with respect to the second slot axis, a pair of oppositely-facing second slot side bearing surfaces extending parallel to the second slot axis and configured to slidably and supportably engage the tongue side bearing surfaces, said second slot side bearing surfaces each having a length extending parallel to the second slot axis that is greater than a height extending orthogonally with respect to the second slot axis, and a second slot latching structure configured to be releasably engaged with the tongue latching structure when the tongue upper, lower, and side bearing surfaces are engaged with said second slot upper, lower, and side bearing surfaces, such engagement by said tongue latching structure acting to block slidable motion between the tongue upper, lower, and side bearing surfaces and said second slot upper, lower, and side bearing surfaces.",
    "2. The coupling element of claim 1 wherein said first coupling slot and said second coupling slot intersect and extend through each other.",
    "3. The coupling element of claim 2 wherein the tongue latching structure of each of the jack units is a retractable latching pin mounted in the tongue so as to selectively protrude therefrom and further wherein, said first slot latching structure is provided by at least one first slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot; and said second slot latching structure is provided by at least one second slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot.",
    "4. The coupling element of claim 3 wherein said first slot latching structure is provided by a plurality of first slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot to a particular depth; and further wherein said second slot latching structure is provided by a plurality of second slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot to a particular depth.",
    "5. The coupling element of claim 4 wherein one of said first slot latch holes is positioned to also serve as one of said second slot latch holes.",
    "6. The coupling element of claim 3 wherein said at least one first slot latch hole includes at least one first slot latch hole in each of said first slot upper bearing surface and said first slot lower bearing surface; and further wherein said at least one second slot latch hole includes at least one second slot latch hole in each of said second slot upper bearing surface and said second slot lower bearing surface.",
    "7. The coupling element of claim 1 wherein the coupling element is configured to accept elongated frame members so as to form a corner of a rigid frame, the coupling element further comprising: a first frame member receptor extending along a first receptor axis that is parallel to the first slot axis, said first frame member receptor being configured to slidably accept an elongated first frame member and to engage the first frame member so as to prevent off-axis motion between the coupling element and the first frame member; and a second frame member receptor extending along a second receptor axis that is parallel to the second slot axis, said second frame member receptor being configured to slidably accept an elongated second frame member and to engage the second frame member so as to prevent off-axis motion between the coupling element and the second frame member.",
    "8. The coupling element of claim 7 further comprising: a third frame member receptor extending along a third receptor axis that is orthogonal to the first receptor axis and to the second receptor axis, said third frame member receptor being configured to slidably accept an elongated third frame member and to engage the third frame member so as to prevent off-axis motion between the coupling element and the third frame member.",
    "9. The coupling element of claim 1 further comprising: a third coupling slot extending along a third slot axis that is inclined by 45° to the first slot axis and to the second slot axis, said third coupling slot configured to slidably accept the tongue of the jack unit and having, a downward-facing third slot upper bearing surface extending parallel to the third slot axis and configured to slidably and supportably engage the tongue upper bearing surface, said third slot upper bearing surface having a length extending parallel to the third slot axis that is greater than a width extending orthogonally with respect to the third slot axis, an upward-facing third slot lower bearing surface extending parallel to the third slot axis and configured to slidably and supportably engage the tongue lower bearing surface, said third slot lower bearing surface having a length extending parallel to the third slot axis that is greater than a width extending orthogonally with respect to the third slot axis, a pair of oppositely-facing third slot side bearing surfaces extending parallel to the third slot axis and configured to slidably and supportably engage the tongue side bearing surfaces, said third slot side bearing surfaces each having a length extending parallel to the third slot axis that is greater than a height extending orthogonally with respect to the third slot axis, and a third slot latching structure configured to be releasably engaged with the tongue latching structure when the tongue upper, lower, and side bearing surfaces are engaged with said third slot upper, lower, and side bearing surfaces, such engagement by the tongue latching structure acting to block slidable motion between the tongue upper, lower, and side bearing surfaces and said third slot upper, lower, and side bearing surfaces.",
    "10. The coupling element of claim 9 for use when the tongue latching structure of each of the jack units is a retractable latching pin mounted in the tongue so as to selectively protrude therefrom, wherein: said first slot latching structure is provided by at least one first slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot; said second slot latching structure is provided by at least one second slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot; and said third slot latching structure is provided by at least one third slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said third coupling slot.",
    "11. The coupling element of claim 10 wherein said first slot latching structure is provided by a plurality of first slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot to a particular depth; further wherein said second slot latching structure is provided by a plurality of second slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot to a particular depth; and yet further wherein said third slot latching structure is provided by a plurality of third slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said third coupling slot to a particular depth, one of said first slot latch holes being positioned to also serve as one of said second latch holes and as one of said third latch holes.",
    "12. A coupling element for attachment to an object to be lifted and transported by jack units, each of the jack units having, a skate, a tongue extending along a tongue axis and vertically movable relative to the skate, the tongue having tongue bearing surfaces that extend parallel to the tongue axis, and a selectively releasable tongue latching structure, and the coupling element comprising: a first coupling slot extending along a first slot axis and configured to slidably accept the tongue of one of the jack units, said first coupling slot having first slot bearing surfaces configured to slidably and supportably engage the tongue bearing surfaces so as to limit motion therebetween to translation along the first slot axis, said first coupling slot having a depth extending along the first slot axis that is greater than both a height extending orthogonally with respect to the first slot axis and a width extending orthogonally with respect to the first slot axis; a first slot latching structure configured to be releasably engaged by the tongue latching structure when the tongue bearing surfaces are engaged with said first slot bearing surfaces, such engagement of the tongue latching structure with said first slot latching structure acting to block slidable motion between the tongue bearing surfaces and said first slot bearing surfaces; a second coupling slot extending along a second slot axis that is orthogonal to the first slot axis and configured to slidably accept the tongue, said second coupling slot having second slot bearing surfaces configured to slidably and supportably engage the tongue bearing surfaces so as to limit motion therebetween to translation along the second slot axis, said second coupling slot having a depth extending along the second slot axis that is greater than both a height extending orthogonally with respect to the second slot axis and a width extending orthogonally with respect to the second slot axis; and a second slot latching structure configured to be releasably engaged by the tongue latching structure when the tongue bearing surfaces are engaged with said second slot bearing surfaces, such engagement of the tongue latching structure with said second slot latching structure acting to block slidable motion between the tongue bearing surfaces and said second slot bearing surfaces.",
    "13. The coupling element of claim 12 wherein said first coupling slot and said second coupling slot intersect and extend through each other.",
    "14. The coupling element of claim 13 wherein the tongue latching structure of each of the jack units is a retractable latching pin mounted in the tongue so as to selectively protrude therefrom and, said first slot latching structure is provided by at least one first slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot; and said second slot latching structure is provided by at least one second slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot.",
    "15. The coupling element of claim 14 wherein said first slot latching structure is provided by a plurality of first slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot to a particular depth; and further wherein said second slot latching structure is provided by a plurality of second slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot to a particular depth.",
    "16. The coupling element of claim 15 wherein one of said first slot latch holes is positioned to also serve as one of said second latch holes.",
    "17. The coupling element of claim 14 wherein said at least one first slot latch hole includes at least one pair of opposed first slot latch holes positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot in either a first orientation or in a second orientation that is inverted from the first orientation; and further wherein said at least one second slot latch hole includes at least one pair of opposed second slot latch holes positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot in either the first orientation or in the second orientation.",
    "18. The coupling element of claim 12 wherein the coupling element is configured to accept elongated frame members so as to form a corner of a rigid frame, the coupling element further comprising: a first frame member receptor extending along a first receptor axis that is parallel to the first horizontal axis, said first frame member receptor being configured to slidably accept an elongated first frame member and to engage the first frame member so as to prevent off-axis motion between the coupling element and the first frame member; and a second frame member receptor extending along a second receptor axis that is parallel to the second horizontal axis, said second frame member receptor being configured to slidably accept an elongated second frame member and to engage the second frame member so as to prevent off-axis motion between the coupling element and the second frame member.",
    "19. The coupling element of claim 18 further comprising: a third frame member receptor extending along a vertical third receptor axis that is orthogonal to the first receptor axis and to the second receptor axis, said third frame member receptor being configured to slidably accept an elongated third frame member and to engage the third frame member so as to prevent off-axis motion between the coupling element and the third frame member.",
    "20. The coupling element of claim 12 further comprising: a third coupling slot extending along a third slot axis that is inclined by 45° to the first slot axis and to the second slot axis, said third coupling slot configured to slidably accept the tongue of the jack unit and having third slot bearing surfaces configured to slidably and supportably engage the tongue bearing surfaces so as to limit motion therebetween to translation along the third slot axis, said third coupling slot having a depth extending along the third slot axis that is greater than both a height extending orthogonally with respect to the third slot axis and a width extending orthogonally with respect to the third slot axis; and a third slot latching structure configured to be releasably engaged by the tongue latching structure when the tongue bearing surfaces are engaged with said third slot bearing surfaces, such engagement of the tongue latching structure with said third slot latching structure acting to block slidable motion between the tongue bearing surfaces and said third slot bearing surfaces.",
    "21. The coupling element of claim 20 for use when the tongue latching structure of each of the jack units is a retractable latching pin mounted in the tongue so as to selectively protrude therefrom, wherein: said first slot latching structure is provided by at least one first slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot; said second slot latching structure is provided by at least one second slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot; and said third slot latching structure is provided by at least one third slot latch hole which is positioned to receive the retractable latching pin when the tongue is inserted into said third coupling slot.",
    "22. The coupling element of claim 21 wherein said first slot latching structure is provided by a plurality of first slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said first coupling slot to a particular depth; further wherein said second slot latching structure is provided by a plurality of second slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said second coupling slot to a particular depth; and yet further wherein said third slot latching structure is provided by a plurality of third slot latch holes, each of which is positioned to receive the retractable latching pin when the tongue is inserted into said third coupling slot to a particular depth, one of said first slot latch holes being positioned to also serve as one of said second latch holes and as one of said third latch holes."
  ],
  "description_excerpt": "The present system relates to the field of lifting and transporting loads that are too bulky and/or massive to be readily moved without mechanical aid.\n\nTo move objects that are too large and/or heavy to be placed onto a cart, skid, or similar device, it is frequently necessary to lift the object and place skates or rollers (hereinafter simply referred to as “skates”) under the object to support its weight and to allow it to be rolled across a surface to a new location. Such movement causes risks of injury to the movers and damage to the object if the object slips and becomes disengaged from one or more of the skates as it is transported. An additional risk of injury occurs when an object is lowered from a crane onto skates, as moving personnel must work in close proximity to the suspended object in order to position the skates under the object. There is a need to reduce such injury risks to provide greater safety for persons moving large and heavy objects, as well as to reduce the risk of damage due to accidents while such objects are being moved.\n\nThe present invention provides a lifting and transporting system for safely moving large and/or heavy objects. The system employs a number of jack units, each of which serves to releasably but securely attach a skate, roller, or similar device (hereinafter simply referred to as a “skate”) to the object and to retain the skate connected to the object throughout the moving procedure. The jack unit allows the object to be lifted off of the underlying surface so as to be supported on the skate and thereafter moved to a new location.",
  "cpc": [
    "B66C 1/12",
    "B66F 3/24",
    "B66F 3/46"
  ],
  "ipc": [
    "B66C 1/12",
    "B66F 3/24",
    "B66F 3/46"
  ],
  "inventors": [
    "Larry R. DeBattiste"
  ],
  "filing_date": "2017-05-31",
  "publication_date": "2019-07-02",
  "grant_date": "2019-07-02",
  "priority_date": "2015-02-24",
  "application_number": "US-201715609072-A",
  "family_id": "59787801",
  "cited_by_count": 0,
  "citations": [
    "US3138398A",
    "US4961680A",
    "US4630550A",
    "US5590974A",
    "US6168031B1"
  ]
}

Record 2,745 of 8,000 in Patents full text (MLC-0201). Request the full dataset.