Robotic arms
US-10661453-B2 · May 26, 2020 · US
US11767902B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11767902-B2 |
| Application number | US-202217732842-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 29, 2022 |
| Priority date | Sep 16, 2016 |
| Publication date | Sep 26, 2023 |
| Grant date | Sep 26, 2023 |
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In one variation, a pulley arrangement includes a base pulley portion rotatable within a driving plane, an adjustable pulley portion coupled to the base pulley portion wherein the adjustable pulley portion is rotatable relative to the base pulley portion within the driving plane, and a driving member including an end coupled to the adjustable pulley portion wherein at least a portion of the driving member is wrapped at least partially around the adjustable pulley portion. In another variation, a pulley arrangement includes a base pulley portion rotatable around an axis, an adjustable pulley portion coupled to the base pulley portion and movable in a first direction parallel to the axis, and a sliding block engaged with the adjustable pulley portion, wherein the sliding block moves in a second direction different from the first direction, in response to compression of the adjustable pulley portion against the base pulley portion.
Opening claim text (preview).
What is claimed is: 1. A pulley arrangement, comprising: a base pulley portion rotatable around an axis; an adjustable pulley portion coupled to the base pulley portion and movable in a first direction parallel to the axis; and a first sliding block engaged with the adjustable pulley portion; wherein the first sliding block is configured to move in a second direction different from the first direction, in response to compression of the adjustable pulley portion against the base pulley portion. 2. The pulley arrangement of claim 1 , further comprising a driving member comprising a first end coupled to the first sliding block, wherein at least a portion of the driving member is wrapped at least partially around the first sliding block. 3. The pulley arrangement of claim 2 , wherein at least a portion of the driving member is wrapped at least partially around the adjustable pulley portion. 4. The pulley mechanism of claim 1 , wherein the adjustable pulley portion includes at least one sloped surface engaged with the first sliding block. 5. The pulley mechanism of claim 4 , wherein the sloped surface is a helical surface. 6. The pulley mechanism of claim 1 , wherein the first sliding block includes at least one sloped surface. 7. The pulley mechanism of claim 6 , wherein the sloped surface is a helical surface. 8. The pulley mechanism of claim 1 , further comprising a second sliding block engaged with the adjustable pulley portion, wherein the first and second sliding blocks are disposed in an arcuate gap in the adjustable pulley portion and engaged with the adjustable pulley portion, wherein the first and second sliding blocks are configured to move circumferentially toward each other in response to compression of the adjustable pulley portion against the base pulley portion. 9. The pulley mechanism of claim 8 , wherein the first and second sliding blocks are configured to move circumferentially toward each other at about equal rates in response to compression of the adjustable pulley portion against the base pulley portion. 10. The pulley mechanism of claim 8 , wherein the first and second sliding blocks are disposed in an arcuate gap defined at least in part by the adjustable pulley portion. 11. The pulley mechanism of claim 8 , further comprising a first driving member comprising a first end coupled to the first sliding block and a second driving member comprising a second end coupled to the second sliding block. 12. The pulley mechanism of claim 8 , further comprising a driving member comprising a first end coupled to the first sliding block and a second end coupled to the second sliding block. 13. The pulley mechanism of claim 8 , wherein the adjustable pulley portion comprises a first member engaged with the first sliding block and a second member engaged with the second sliding block, wherein the first and second members are movable in directions parallel to the axis. 14. The pulley mechanism of claim 1 , wherein an axial position of the adjustable pulley portion relative to the base pulley portion is lockable. 15. The pulley mechanism of claim 14 , wherein the axial position is lockable via one or more fasteners. 16. The pulley mechanism of claim 1 , wherein the adjustable pulley portion is adjacent the base pulley portion. 17. The pulley mechanism of claim 1 , wherein the first sliding block is configured to move in an arcuate path in response to compression of the adjustable pulley portion against the base pulley portion. 18. The pulley mechanism of claim 1 , wherein the first sliding block is configured to move in a linear path in response to compression of the adjustable pulley portion against the base pulley portion. 19. The pulley mechanism of claim 1 , wherein the adjustable pulley portion is disposed in a recess of the base pulley portion. 20. The pulley arrangement of claim 1 , further comprising a second pulley, wherein at least one driving member wraps at least partially around the second pulley.
characterised by means for tensioning the flexible member · CPC title
comprising tensioning means · CPC title
Pulleys or friction discs of adjustable construction · CPC title
for conveying oscillating or limited rotary motion · CPC title
with open loop, e.g. with the free ends of the flexible member fixed to the casing, e.g. when the drive means are arranged on the carriage · CPC title
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