Patent · US12186894B2 · B2 · US
Articulated mechanism with protective sleeve at joint
- (11) Publication number
- US12186894B2
- (21) Application number
- 17/725,039
- (22) Filing date
- 2022-04-20
- (30) Priority date
- 2018-09-13
- (43) Publication date
- 2025-01-07
- (45) Date of grant
- 2025-01-07
- (51) IPC
- B25J 17/00; B25J 18/00; B25J 9/10
- (52) CPC
- B25J Manipulators; chambers provided with manipulation devices: 17/00, 18/00, 19/0075, 9/106
- (73) Assignee
- Kinova Inc
- (72) Inventors
- Louis-Pierre FORTIN
- (54) Title
- Articulated mechanism with protective sleeve at joint
- (57) Abstract
An assembly of links and motorized joint unit comprises two or more links. The links have a tubular body, one or both ends of the tubular body being an open end. A motorized joint unit has a first portion received in the open end of the tubular body of a first of the links so as to be secured relative to the first of the links. A second portion is rotatable relative to the first portion by actuation of the motorized joint unit, the second portion received in the open end of the tubular body of a second of the links, the motorized joint unit secured relative to the second of the links. A protective sleeve has a tubular body mounted over part of the motorized joint unit to cover a gap between the first and the second of the links, the protective sleeve having a rigid annular member and a flexible annular member, the flexible annular member foldable onto the rigid annular member.
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Claims (13)
- A protective sleeve for covering a joint between links of a robotic arm, comprising: a rigid annular member extending around an axis and extending longitudinally relative to the axis, the rigid annular member having an outer face; and a flexible annular member extending around the axis and abutting the outer surface of the rigid annular member, the flexible annular member and the rigid annular member axially overlapping each other relative to the axis, the flexible annular member having a portion extending axially beyond the rigid annular member, the flexible annular member foldable onto a folded configuration in which the portion of the flexible annular member is folded onto the rigid annular member by being flipped onto itself and in which the portion axially overlaps the rigid annular member.
- The protective sleeve according to claim 1, wherein the flexible annular member has axially oriented ribs on an inner surface thereof.
- The protective sleeve according to claim 2, wherein ends of the axially oriented ribs taper to the inner surface thereof.
- The protective sleeve according to claim 2, wherein the axially oriented ribs are integrally formed in the flexible annular member.
- The protective sleeve according to claim 1, wherein the flexible annular member is made of an elastomer, and the rigid annular member is made of one of a plastomeric polymer, a composite, and a metal.
- The protective sleeve according to claim 1, wherein an annular seal is integrally formed into the flexible annular member and projects radially inward from an inner surface of the flexible annular member.
- A method of assembling links of a robot arm, comprising: positioning a protective sleeve over a first portion of a motorized joint unit connected to a first of the links, the protective sleeve having a rigid annular member and a flexible annular member axially overlapping each other, the flexible annular member abutting an outer face of the rigid annular member, the flexible annular member flipped onto itself and folded onto the rigid annular member; securing a second one of the links to a second portion of the motorized joint unit; and unfolding the flexible annular member to cover the second portion of motorized joint unit.
- The protective sleeve according to claim 1, wherein the outer surface of the rigid annular member is cylindrical.
- The protective sleeve according to claim 1, wherein the rigid annular member has an inner cylindrical surface defining a rotational joint portion.
- The protective sleeve according to claim 9, wherein the inner cylindrical surface has a low-friction coating.
- The protective sleeve according to claim 1, wherein a watertight connection is formed where the flexible annular member covers the outer surface of the rigid annular member.
- The protective sleeve according to claim 1, wherein the rigid annular member and the flexible annular member are integrally connected to one another.
- The protective sleeve according to claim 1, wherein an outer surface of the flexible annular member is continuous and without any surface disruption from end to end.
Description
The present application relates to the field of robotics involving mechanisms such as articulated mechanisms and robot arms and to an assembly thereof.
Robotic arms are increasingly used in a number of different applications, from manufacturing, to servicing, and in assistive robotics, among numerous possibilities. In some applications, the robot arms are exposed to their environments, whereby the robot arms must be configured in such a way that their components are shielded from liquids and debris. The challenge is to shield joints between robot arm links. However, such shielding must nonetheless be esthetically pleasing, as opposed to being bulky and cumbersome.
It is an aim of the present disclosure to provide a mechanism such as a robot arm that addresses issues related to the prior art.
Therefore, in accordance with the present disclosure, there is provided an assembly of links and motorized joint unit, comprising: at least pair of links, each said link having a tubular body, at least one end of each of the tubular body being an open end; a motorized joint unit having a first portion received in the open end of the tubular body of a first of the links so as to be secured relative to the first of the links, a second portion rotatable relative to the first portion by actuation of the motorized joint unit, the second portion received in the open end of the tubular body of a second of the links, the motorized joint unit secured relative to the second of the links; and a ...
Citations (39)
- US3266059A
- US4621965A
- US4712969A
- US4848179A
- US4954952A
- US5607190A
- US20030116211A1
- US20060075797A1
- US20090289591A1
- US8118774B2
- US20080216560A1
- US20110257786A1
- US9126332B2
- US20150133960A1
- US20130340560A1
- US9914226B2
- US9919434B1
- US20150321362A1
- US20160213434A1
- US10099367B2
- US20150068350A1
- US9677602B1
- US20150366547A1
- US20180111275A1
- US20170047792A1
- US20170072572A1
- US20190214883A1
- US20200324405A1
- US20180058615A1
- US20180080841A1
- US20180216715A1
- US20190216557A1
- US20180351341A1
- US20190054640A1
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- US20200016774A1
- US20200101628A1
- US20200214775A1
Record as JSON
{
"publication_number": "US12186894B2",
"country": "US",
"kind": "B2",
"title": "Articulated mechanism with protective sleeve at joint",
"abstract": "An assembly of links and motorized joint unit comprises two or more links. The links have a tubular body, one or both ends of the tubular body being an open end. A motorized joint unit has a first portion received in the open end of the tubular body of a first of the links so as to be secured relative to the first of the links. A second portion is rotatable relative to the first portion by actuation of the motorized joint unit, the second portion received in the open end of the tubular body of a second of the links, the motorized joint unit secured relative to the second of the links. A protective sleeve has a tubular body mounted over part of the motorized joint unit to cover a gap between the first and the second of the links, the protective sleeve having a rigid annular member and a flexible annular member, the flexible annular member foldable onto the rigid annular member.",
"claims": [
"1. A protective sleeve for covering a joint between links of a robotic arm, comprising: a rigid annular member extending around an axis and extending longitudinally relative to the axis, the rigid annular member having an outer face; and a flexible annular member extending around the axis and abutting the outer surface of the rigid annular member, the flexible annular member and the rigid annular member axially overlapping each other relative to the axis, the flexible annular member having a portion extending axially beyond the rigid annular member, the flexible annular member foldable onto a folded configuration in which the portion of the flexible annular member is folded onto the rigid annular member by being flipped onto itself and in which the portion axially overlaps the rigid annular member.",
"2. The protective sleeve according to claim 1, wherein the flexible annular member has axially oriented ribs on an inner surface thereof.",
"3. The protective sleeve according to claim 2, wherein ends of the axially oriented ribs taper to the inner surface thereof.",
"4. The protective sleeve according to claim 2, wherein the axially oriented ribs are integrally formed in the flexible annular member.",
"5. The protective sleeve according to claim 1, wherein the flexible annular member is made of an elastomer, and the rigid annular member is made of one of a plastomeric polymer, a composite, and a metal.",
"6. The protective sleeve according to claim 1, wherein an annular seal is integrally formed into the flexible annular member and projects radially inward from an inner surface of the flexible annular member.",
"7. A method of assembling links of a robot arm, comprising: positioning a protective sleeve over a first portion of a motorized joint unit connected to a first of the links, the protective sleeve having a rigid annular member and a flexible annular member axially overlapping each other, the flexible annular member abutting an outer face of the rigid annular member, the flexible annular member flipped onto itself and folded onto the rigid annular member; securing a second one of the links to a second portion of the motorized joint unit; and unfolding the flexible annular member to cover the second portion of motorized joint unit.",
"8. The protective sleeve according to claim 1, wherein the outer surface of the rigid annular member is cylindrical.",
"9. The protective sleeve according to claim 1, wherein the rigid annular member has an inner cylindrical surface defining a rotational joint portion.",
"10. The protective sleeve according to claim 9, wherein the inner cylindrical surface has a low-friction coating.",
"11. The protective sleeve according to claim 1, wherein a watertight connection is formed where the flexible annular member covers the outer surface of the rigid annular member.",
"12. The protective sleeve according to claim 1, wherein the rigid annular member and the flexible annular member are integrally connected to one another.",
"13. The protective sleeve according to claim 1, wherein an outer surface of the flexible annular member is continuous and without any surface disruption from end to end."
],
"description_excerpt": "The present application relates to the field of robotics involving mechanisms such as articulated mechanisms and robot arms and to an assembly thereof.\n\nRobotic arms are increasingly used in a number of different applications, from manufacturing, to servicing, and in assistive robotics, among numerous possibilities. In some applications, the robot arms are exposed to their environments, whereby the robot arms must be configured in such a way that their components are shielded from liquids and debris. The challenge is to shield joints between robot arm links. However, such shielding must nonetheless be esthetically pleasing, as opposed to being bulky and cumbersome.\n\nIt is an aim of the present disclosure to provide a mechanism such as a robot arm that addresses issues related to the prior art.\n\nTherefore, in accordance with the present disclosure, there is provided an assembly of links and motorized joint unit, comprising: at least pair of links, each said link having a tubular body, at least one end of each of the tubular body being an open end; a motorized joint unit having a first portion received in the open end of the tubular body of a first of the links so as to be secured relative to the first of the links, a second portion rotatable relative to the first portion by actuation of the motorized joint unit, the second portion received in the open end of the tubular body of a second of the links, the motorized joint unit secured relative to the second of the links; and a ...",
"cpc": [
"B25J 17/00",
"B25J 18/00",
"B25J 19/0075",
"B25J 9/106"
],
"ipc": [
"B25J 17/00",
"B25J 18/00",
"B25J 9/10"
],
"assignees": [
"Kinova Inc"
],
"inventors": [
"Louis-Pierre FORTIN"
],
"filing_date": "2022-04-20",
"publication_date": "2025-01-07",
"grant_date": "2025-01-07",
"priority_date": "2018-09-13",
"application_number": "US-202217725039-A",
"family_id": "69774655",
"cited_by_count": 0,
"citations": [
"US3266059A",
"US4621965A",
"US4712969A",
"US4848179A",
"US4954952A",
"US5607190A",
"US20030116211A1",
"US20060075797A1",
"US20090289591A1",
"US8118774B2",
"US20080216560A1",
"US20110257786A1",
"US9126332B2",
"US20150133960A1",
"US20130340560A1",
"US9914226B2",
"US9919434B1",
"US20150321362A1",
"US20160213434A1",
"US10099367B2",
"US20150068350A1",
"US9677602B1",
"US20150366547A1",
"US20180111275A1",
"US20170047792A1",
"US20170072572A1",
"US20190214883A1",
"US20200324405A1",
"US20180058615A1",
"US20180080841A1",
"US20180216715A1",
"US20190216557A1",
"US20180351341A1",
"US20190054640A1",
"US20210016432A1",
"US20190337165A1",
"US20200016774A1",
"US20200101628A1",
"US20200214775A1"
]
}
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