Conformable variable friction manipulator

US10343290B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10343290-B2
Application numberUS-201715452956-A
CountryUS
Kind codeB2
Filing dateMar 8, 2017
Priority dateMar 8, 2017
Publication dateJul 9, 2019
Grant dateJul 9, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A system, apparatus, and method is configured to retrieve items and particularly items that are stored in high-density storage solutions. The system can include one or two-piece manipulators with retractable grippers. The manipulators can be relatively low profile and/or low friction to facilitate their placement between a target item and adjacent items on densely packed shelves or trays. In a retracted position, the grippers can be stowed beneath the surface of the manipulators to further facilitate the placement of the manipulators. In a deployed position, the grippers can extend above the surface of the manipulators to increase the contact area, coefficient of friction, and/or surface pressure of the manipulators on the target item. The grippers can enable the manipulators to be thinner than would otherwise be possible to enable retrieval of items from tightly packed storage solutions—e.g., warehouses with higher gross cubic utilization (GCU).

First claim

Opening claim text (preview).

What is claimed is: 1. A system comprising: a first manipulator comprising: a first main body comprising a first material, the first main body defining a first cavity; and a first gripper, comprising a second material, the first gripper having a first retracted position in which the first gripper is disposed at least partly within the first cavity and the first gripper having a first deployed position in which at least a portion of the first gripper is disposed outside of the first cavity; a second manipulator, disposed opposite the first manipulator, the second manipulator comprising: a second main body comprising the first material, the second main body defining a second cavity; and a second gripper, comprising the second material, the second gripper having a second retracted position in which the second gripper is disposed at least partly within the second cavity, and the second gripper having a second deployed position in which at least a portion of the second gripper is disposed outside of the second cavity; and an actuator detachably coupled to the first manipulator and the second manipulator to move the first manipulator and the second manipulator between a first relative position and a second relative position, wherein a first distance between the first manipulator and the second manipulator in the first relative position is greater than a second distance between the first manipulator and the second manipulator in the second relative position, and wherein the first material has a lower coefficient of friction than the second material. 2. The system of claim 1 , wherein: the first cavity includes a hydraulic or pneumatic first reservoir; the first gripper comprises one or more flexible first bladders to seal the first reservoir; and the one or more flexible first bladders are configured to inflate and move from the first retracted position to the first deployed position; the second cavity includes a hydraulic or pneumatic second reservoir; the second gripper comprises one or more flexible second bladders to seal the second reservoir; and the one or more second flexible bladders are configured to inflate and move from the second retracted position to the second deployed position. 3. The system of claim 2 , wherein: the first main body comprises a plurality of first slots; the one or more flexible first bladders are configured to protrude through the plurality of first slots and outside the first main body in the first deployed position; the second main body comprises a plurality of second slots; and the one or more flexible second bladders are configured to protrude through the plurality of second slots and outside the second main body in the second deployed position. 4. The system of claim 2 , wherein: a plurality of first micro-features on the one or more flexible first bladders are configured to change orientation in the first deployed position; the first micro-features are configured such that the orientation in the first deployed position has an increased coefficient of friction between the one or more flexible first bladders and an object; a plurality of second micro-features on the one or more flexible second bladders are configured to change orientation in the second deployed position; and the second micro-features are configured such that the orientation in the second deployed position has an increased coefficient of friction between the one or more flexible second bladders and the object. 5. The system of claim 1 , wherein: the first gripper comprises a pleated first bladder; the pleated first bladder is configured to move from the first retracted position to the first deployed position by extending one or more first pleats on the pleated first bladder; the second gripper comprises a pleated second bladder; and the pleated second bladder is configured to move from the second retracted position to the second deployed position by extending one or more second pleats on the pleated second bladder. 6. A system comprising: a first manipulator comprising: a first main body comprising a first material and defining a first cavity with a hydraulic or pneumatic first reservoir; and a first gripper, comprising a second material, the first gripper having a first retracted position in which the first gripper is at least partially disposed within the first cavity and the first gripper having a first deployed position in which at least a portion of the first gripper is disposed outside of the first cavity and extends beyond a surface of the first main body; a second manipulator, disposed opposite the first manipulator, the second manipulator comprising: a second main body comprising the first material and defining a second cavity with a hydraulic or pneumatic second reservoir; and a second gripper, comprising the second material, the second gripper having a second retracted position in which the second gripper is at least partially disposed within the second cavity and the second gripper having a second deployed position in which at least a portion of the second gripper is disposed outside of the second cavity and extends from a surface of the second main body; and an actuator detachably coupled to the first manipulator and the second manipulator to move the first manipulator and the second manipulator between a first relative position and a second relative position; wherein a first distance between the first manipulator and the second manipulator in the first relative position is greater than a second distance between the first manipulator and the second manipulator in the second relative position, and wherein the first material has a lower coefficient of friction than the second material. 7. The system of claim 6 , wherein: at least a portion of the first gripper comprises an anisotropic material that provides a first coefficient of friction between the first gripper and an item in a first direction and a second coefficient of friction between the first gripper and the item in a second direction; and at least a portion of the second gripper comprises the anisotropic material that provides the first coefficient of friction between the second gripper and the item in the first direction and the second coefficient of friction between the second gripper and the item in the second direction. 8. The system of claim 6 , wherein: at least a portion of the first gripper comprises one or more of first micro needles, first micro pyramids, or first micro suction cups to increase friction between the first gripper and an item; and at least a portion of the second gripper comprises one or more of second micro needles, second micro pyramids, or second micro suction cups to increase friction between the second gripper and the item. 9. The system of claim 6 , wherein: the first gripper comprises a flexible hydraulic or pneumatic first bladder configured to inflate and move from the first retracted position to the first deployed position; and the second gripper comprises a flexible hydraulic or pneumatic second bladder configured to inflate and move from the second retracted position to the second deployed position. 10. The system of claim 9 , wherein: the first main body comprises a plurality of first slots; wherein the flexible first bladder is configured to protrude through the plurality of first slots in the first deployed position; the second main body comprises a plurality of second slots: the flexible second bladder is configured to protrude through the plurality of second slots in the second deployed position. 11. The system of claim 9 , wherein: a plurality of first micro-features on the one or more flexible first bladders are confi

Assignees

Inventors

Classifications

  • Gripper surfaces directly activated by a fluid (flexible fingers B25J15/12) · CPC title

  • with vacuum · CPC title

  • with movable, e.g. pivoting gripping jaw surfaces · CPC title

  • Gripping heads {and other end effectors (grippers used in machine tools B23Q7/04; gripping members fitted on cranes B66C1/42, B66C1/44; gripping means used for mounting electrical components H05K13/04; gripping means used in the manufacture of semiconductors H10P72/7602)} · CPC title

  • servo-actuated · CPC title

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What does patent US10343290B2 cover?
A system, apparatus, and method is configured to retrieve items and particularly items that are stored in high-density storage solutions. The system can include one or two-piece manipulators with retractable grippers. The manipulators can be relatively low profile and/or low friction to facilitate their placement between a target item and adjacent items on densely packed shelves or trays. In a …
Who is the assignee on this patent?
Amazon Tech Inc
What technology area does this patent fall under?
Primary CPC classification B25J15/0023. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Jul 09 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).