MLchartDataset catalogue

Patent · US9782783B2 · B2 · US

Coupling device for a laboratory centrifuge actuated by centrifugal force

(11) Publication number
US9782783B2
(21) Application number
14/918,624
(22) Filing date
2015-10-21
(30) Priority date
2014-10-21
(43) Publication date
2017-10-10
(45) Date of grant
2017-10-10
(51) IPC
F16D 43/18; B04B 9/08; F16D 1/116; F16D 43/16
(52) CPC
  • B04B Centrifuges: 9/08, 2007/025, 2009/085
  • F16D Couplings for transmitting rotation; clutches; brakes: 1/116, 43/16, 43/18
(73) Assignee
Sigma Laborzentrifugen GmbH
(72) Inventors
Matthias Bittner
(54) Title
Coupling device for a laboratory centrifuge actuated by centrifugal force
(57) Abstract

The invention relates to a laboratory centrifuge (1) with a coupling device (4) actuated by a centrifugal force. According to the invention an eccentric mass (22), especially a roller (23), is guided through a guideway (26) and preferably another guideway (27, 32) in such a way that the centrifugal force (46) of the eccentric mass (22) is deflected in such a way that a coupling force is generated which presses a coupling element (24) radially inwards against the outer surface of a drive shaft (3).

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Claims (20)

  1. A coupling device for a laboratory centrifuge actuated by centrifugal force comprising a) a driving element driven by a motor, b) an output element drivingly connected to a rotor of the laboratory centrifuge, c) said driving element and said output element rotating about a common rotational axis, d) a coupling element for releasably coupling the driving element with the output element, e) an eccentric mass being located remote from the axis of rotation, rotating together with the driving element or the output element, formed separately from the coupling element and generating a centrifugal force, f) said coupling element being actuated via a force flow between the eccentric mass and the coupling element by a coupling force which is dependent on the centrifugal force generated by the eccentric mass, g) a guideway interposed in the force flow between the eccentric mass and the coupling element, said guideway establishing a rolling contact with the eccentric mass and deflecting the centrifugal force of the eccentric mass, wherein the eccentric mass is built by a sphere or roller.
  2. The coupling device according to claim 1, wherein another guideway which once more deflects the centrifugal force of the eccentric mass is provided in the force flow between the eccentric mass and the coupling element.
  3. The coupling device according to claim 2, wherein the guideway is inclined at least in a partial region with respect to the centrifugal force acting on the eccentric mass, so that a force component F H is generated a) the absolute value of which depends on the centrifugal force acting on the eccentric mass and b) which has an orientation parallel to the rotational axis.
  4. The coupling device according to claim 3, wherein the force component F H generated by the inclined guideway is converted into a force component F KK by the other guideway, said force component F KK biasing the coupling element in a radially inward direction.
  5. The coupling device according to claim 4, wherein a receiving body is provided, which receives the centrifugal force deflected by the inclined guideway into a force component F H having an orientation parallel to the rotational axis, while the receiving body is guided by the other guideway, which is inclined with respect to the rotational axis and to the direction perpendicular to the rotational axis in such a way that the coupling force F KK biasing the coupling element in a radially inward direction is generated.
  6. The coupling device according to claim 5, wherein the receiving body is formed by the coupling element.
  7. The coupling device according to claim 6, wherein an inset retainer is provided, a) wherein the eccentric mass and the receiving body forming the coupling element are accommodated and b) which forms the guideway.
  8. The coupling device according to claim 5, wherein an inset retainer is provided, a) wherein the eccentric mass, the receiving body and the coupling element are accommodated and b) which forms the guideway.
  9. The coupling device according to claim 1, wherein the guideway is inclined at least in a partial region with respect to the centrifugal force acting on the eccentric mass, so that a force component F H is generated a) the absolute value of which depends on the centrifugal force acting on the eccentric mass and b) which has an orientation parallel to the rotational axis.
  10. The coupling device according claim 1, wherein the coupling element engages in a form-locking way with a recess or groove of the driving element.
  11. The coupling device according to claim 10, wherein the coupling element and the recess or groove of the driving element interact by contact surfaces, where the contact surfaces are inclined in such a way that the coupling force is converted into an axial force component which axially presses the output element with a friction surface against an opposite friction surface of the driving element.
  12. A laboratory centrifuge with a coupling device according to claim 1.
  13. A coupling device for a laboratory centrifuge actuated by centrifugal force comprising a) a driving element driven by a motor, b) an output element drivingly connected to a rotor of the laboratory centrifuge, c) said driving element and said output element rotating about a common rotational axis, d) a coupling element for releasably coupling the driving element with the output element, e) an eccentric mass being located remote from the axis of rotation, rotating together with the driving element or the output element, formed separately from the coupling element and generating a centrifugal force, f) said coupling element being actuated via a force flow between the eccentric mass and the coupling element by a coupling force which is dependent on the centrifugal force generated by the eccentric mass, g) a guideway interposed in the force flow between the eccentric mass and the coupling element, said guideway establishing a sliding contact with the eccentric mass and deflecting the centrifugal force of the eccentric mass, wherein the eccentric mass is a sliding body which forms a sliding contact with the guideway, the guideway being inclined such that the sliding movement of the eccentric mass along the guideway results in the eccentric mass moving radially outwards and in a lifting movement of the eccentric mass parallel to the rotational axis, wherein the lifting movement of the eccentric mass is transmitted to the coupling element through a sliding contact.
  14. The coupling device according to claim 13, wherein another guideway which once more deflects the centrifugal force of the eccentric mass is provided in the force flow between the eccentric mass and the coupling element.
  15. The coupling device according to claim 14, wherein the guideway is inclined at least in a partial region with respect to the centrifugal force acting on the eccentric mass, so that a force components F H is generated a) the absolute value of which depends on the centrifugal force of acting on the eccentric mass and b) which has an orientation parallel to the rotational axis.
  16. The coupling device according to claim 15, wherein the force component F H generated by the inclined guideway is converted into a force component F KK by the other guideway, said force component F KK biasing the coupling element in a radially inward direction.
  17. The coupling device according to claim 13, wherein the guideway is inclined at least in a partial region with respect to the centrifugal force acting on the eccentric mass, so that a force component F H is generated a) the absolute value of which depends on the centrifugal force acting on the eccentric mass and b) which has an orientation parallel to the rotational axis.
  18. The coupling device according claim 13, wherein the coupling element engages in a form-locking way with a recess or groove of the driving element.
  19. The coupling device according to claim 18, wherein the coupling element and the recess or groove of the driving element interact by contact surfaces, where the contact surfaces are inclined in such a way that the coupling force is converted into an axial force component which axially presses the output element with a friction surface against an opposite friction surface of the driving element.
  20. A laboratory centrifuge with a coupling device according to claim 13.

Description

The invention relates to a coupling device for a laboratory centrifuge actuated by centrifugal force. Furthermore, the invention relates to a laboratory centrifuge with such a coupling device actuated by centrifugal force.

Laboratory centrifuges have a rotor, which has receptacles distributed over its circumference. Into these receptacles vessels can be inserted in which substances to be treated by centrifuging are stored. To cause the rotor with the vessels with the substances accommodated in the receptacles to rotate with a rotation required for the centrifuging, an output element of the rotor is coupled with a driving element of the laboratory centrifuge, usually formed by a driving shaft, driven by a motor. In this context the coupling device serves for axially securing the output element on the driving element and therefore serves for axially securing the rotor on the driven driving shaft. It is possible that the coupling device also serves for a form-locking transmission of the driving moment from the driving shaft to the rotor. Preferably, the transmission of the driving moment is achieved through a friction-locking of coupling surfaces, where the contact force of the coupling surfaces may be dependent on a weight of the rotor and a force component of a coupling force. High demands have to be made to the operational safety of the coupling device especially due to aerodynamic effects resulting from high revolution speeds, the high centrifugal forces, gyro effects at substantive impacts upon the laboratory centrifuge and the like.

Citations (30)

  • US2329499A
  • JPS56164040U
  • WO1983004379A1
  • US5681257A
  • US6063018A
  • JP2008126130A
  • US20110212822A1
  • WO2010025922A1
  • US8678987B2
  • JP2010142696A
  • WO2011001729A1
  • US20130203581A1
  • WO2011054901A1
  • US20130237399A1
  • WO2011054906A1
  • US20130188894A1
  • US8852070B2
  • WO2012059151A1
  • DE102012011531A1
  • US20130331253A1
  • US20140349829A1
  • US20140329658A1
  • US9539588B2
  • US20160158769A1
  • US20150231648A1
  • US9339824B2
  • US20150343459A1
  • US9452436B2
  • US20160107171A1
  • US20170050194A1
Record as JSON
{
  "publication_number": "US9782783B2",
  "country": "US",
  "kind": "B2",
  "title": "Coupling device for a laboratory centrifuge actuated by centrifugal force",
  "abstract": "The invention relates to a laboratory centrifuge (1) with a coupling device (4) actuated by a centrifugal force. According to the invention an eccentric mass (22), especially a roller (23), is guided through a guideway (26) and preferably another guideway (27, 32) in such a way that the centrifugal force (46) of the eccentric mass (22) is deflected in such a way that a coupling force is generated which presses a coupling element (24) radially inwards against the outer surface of a drive shaft (3).",
  "claims": [
    "1. A coupling device for a laboratory centrifuge actuated by centrifugal force comprising a) a driving element driven by a motor, b) an output element drivingly connected to a rotor of the laboratory centrifuge, c) said driving element and said output element rotating about a common rotational axis, d) a coupling element for releasably coupling the driving element with the output element, e) an eccentric mass being located remote from the axis of rotation, rotating together with the driving element or the output element, formed separately from the coupling element and generating a centrifugal force, f) said coupling element being actuated via a force flow between the eccentric mass and the coupling element by a coupling force which is dependent on the centrifugal force generated by the eccentric mass, g) a guideway interposed in the force flow between the eccentric mass and the coupling element, said guideway establishing a rolling contact with the eccentric mass and deflecting the centrifugal force of the eccentric mass, wherein the eccentric mass is built by a sphere or roller.",
    "2. The coupling device according to claim 1, wherein another guideway which once more deflects the centrifugal force of the eccentric mass is provided in the force flow between the eccentric mass and the coupling element.",
    "3. The coupling device according to claim 2, wherein the guideway is inclined at least in a partial region with respect to the centrifugal force acting on the eccentric mass, so that a force component F H is generated a) the absolute value of which depends on the centrifugal force acting on the eccentric mass and b) which has an orientation parallel to the rotational axis.",
    "4. The coupling device according to claim 3, wherein the force component F H generated by the inclined guideway is converted into a force component F KK by the other guideway, said force component F KK biasing the coupling element in a radially inward direction.",
    "5. The coupling device according to claim 4, wherein a receiving body is provided, which receives the centrifugal force deflected by the inclined guideway into a force component F H having an orientation parallel to the rotational axis, while the receiving body is guided by the other guideway, which is inclined with respect to the rotational axis and to the direction perpendicular to the rotational axis in such a way that the coupling force F KK biasing the coupling element in a radially inward direction is generated.",
    "6. The coupling device according to claim 5, wherein the receiving body is formed by the coupling element.",
    "7. The coupling device according to claim 6, wherein an inset retainer is provided, a) wherein the eccentric mass and the receiving body forming the coupling element are accommodated and b) which forms the guideway.",
    "8. The coupling device according to claim 5, wherein an inset retainer is provided, a) wherein the eccentric mass, the receiving body and the coupling element are accommodated and b) which forms the guideway.",
    "9. The coupling device according to claim 1, wherein the guideway is inclined at least in a partial region with respect to the centrifugal force acting on the eccentric mass, so that a force component F H is generated a) the absolute value of which depends on the centrifugal force acting on the eccentric mass and b) which has an orientation parallel to the rotational axis.",
    "10. The coupling device according claim 1, wherein the coupling element engages in a form-locking way with a recess or groove of the driving element.",
    "11. The coupling device according to claim 10, wherein the coupling element and the recess or groove of the driving element interact by contact surfaces, where the contact surfaces are inclined in such a way that the coupling force is converted into an axial force component which axially presses the output element with a friction surface against an opposite friction surface of the driving element.",
    "12. A laboratory centrifuge with a coupling device according to claim 1.",
    "13. A coupling device for a laboratory centrifuge actuated by centrifugal force comprising a) a driving element driven by a motor, b) an output element drivingly connected to a rotor of the laboratory centrifuge, c) said driving element and said output element rotating about a common rotational axis, d) a coupling element for releasably coupling the driving element with the output element, e) an eccentric mass being located remote from the axis of rotation, rotating together with the driving element or the output element, formed separately from the coupling element and generating a centrifugal force, f) said coupling element being actuated via a force flow between the eccentric mass and the coupling element by a coupling force which is dependent on the centrifugal force generated by the eccentric mass, g) a guideway interposed in the force flow between the eccentric mass and the coupling element, said guideway establishing a sliding contact with the eccentric mass and deflecting the centrifugal force of the eccentric mass, wherein the eccentric mass is a sliding body which forms a sliding contact with the guideway, the guideway being inclined such that the sliding movement of the eccentric mass along the guideway results in the eccentric mass moving radially outwards and in a lifting movement of the eccentric mass parallel to the rotational axis, wherein the lifting movement of the eccentric mass is transmitted to the coupling element through a sliding contact.",
    "14. The coupling device according to claim 13, wherein another guideway which once more deflects the centrifugal force of the eccentric mass is provided in the force flow between the eccentric mass and the coupling element.",
    "15. The coupling device according to claim 14, wherein the guideway is inclined at least in a partial region with respect to the centrifugal force acting on the eccentric mass, so that a force components F H is generated a) the absolute value of which depends on the centrifugal force of acting on the eccentric mass and b) which has an orientation parallel to the rotational axis.",
    "16. The coupling device according to claim 15, wherein the force component F H generated by the inclined guideway is converted into a force component F KK by the other guideway, said force component F KK biasing the coupling element in a radially inward direction.",
    "17. The coupling device according to claim 13, wherein the guideway is inclined at least in a partial region with respect to the centrifugal force acting on the eccentric mass, so that a force component F H is generated a) the absolute value of which depends on the centrifugal force acting on the eccentric mass and b) which has an orientation parallel to the rotational axis.",
    "18. The coupling device according claim 13, wherein the coupling element engages in a form-locking way with a recess or groove of the driving element.",
    "19. The coupling device according to claim 18, wherein the coupling element and the recess or groove of the driving element interact by contact surfaces, where the contact surfaces are inclined in such a way that the coupling force is converted into an axial force component which axially presses the output element with a friction surface against an opposite friction surface of the driving element.",
    "20. A laboratory centrifuge with a coupling device according to claim 13."
  ],
  "description_excerpt": "The invention relates to a coupling device for a laboratory centrifuge actuated by centrifugal force. Furthermore, the invention relates to a laboratory centrifuge with such a coupling device actuated by centrifugal force.\n\nLaboratory centrifuges have a rotor, which has receptacles distributed over its circumference. Into these receptacles vessels can be inserted in which substances to be treated by centrifuging are stored. To cause the rotor with the vessels with the substances accommodated in the receptacles to rotate with a rotation required for the centrifuging, an output element of the rotor is coupled with a driving element of the laboratory centrifuge, usually formed by a driving shaft, driven by a motor. In this context the coupling device serves for axially securing the output element on the driving element and therefore serves for axially securing the rotor on the driven driving shaft. It is possible that the coupling device also serves for a form-locking transmission of the driving moment from the driving shaft to the rotor. Preferably, the transmission of the driving moment is achieved through a friction-locking of coupling surfaces, where the contact force of the coupling surfaces may be dependent on a weight of the rotor and a force component of a coupling force. High demands have to be made to the operational safety of the coupling device especially due to aerodynamic effects resulting from high revolution speeds, the high centrifugal forces, gyro effects at substantive impacts upon the laboratory centrifuge and the like.",
  "cpc": [
    "B04B 9/08",
    "B04B 2007/025",
    "B04B 2009/085",
    "F16D 1/116",
    "F16D 43/16",
    "F16D 43/18"
  ],
  "ipc": [
    "F16D 43/18",
    "B04B 9/08",
    "F16D 1/116",
    "F16D 43/16"
  ],
  "assignees": [
    "Sigma Laborzentrifugen GmbH"
  ],
  "inventors": [
    "Matthias Bittner"
  ],
  "filing_date": "2015-10-21",
  "publication_date": "2017-10-10",
  "grant_date": "2017-10-10",
  "priority_date": "2014-10-21",
  "application_number": "US-201514918624-A",
  "family_id": "51753095",
  "cited_by_count": 10,
  "citations": [
    "US2329499A",
    "JPS56164040U",
    "WO1983004379A1",
    "US5681257A",
    "US6063018A",
    "JP2008126130A",
    "US20110212822A1",
    "WO2010025922A1",
    "US8678987B2",
    "JP2010142696A",
    "WO2011001729A1",
    "US20130203581A1",
    "WO2011054901A1",
    "US20130237399A1",
    "WO2011054906A1",
    "US20130188894A1",
    "US8852070B2",
    "WO2012059151A1",
    "DE102012011531A1",
    "US20130331253A1",
    "US20140349829A1",
    "US20140329658A1",
    "US9539588B2",
    "US20160158769A1",
    "US20150231648A1",
    "US9339824B2",
    "US20150343459A1",
    "US9452436B2",
    "US20160107171A1",
    "US20170050194A1"
  ]
}

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