Fixed Angle Tool Holder
US-2024366237-A1 · Nov 7, 2024 · US
US11097402B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11097402-B2 |
| Application number | US-201816173401-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 29, 2018 |
| Priority date | Oct 29, 2018 |
| Publication date | Aug 24, 2021 |
| Grant date | Aug 24, 2021 |
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Official abstract text for this publication.
A socket assembly includes a socket head, an input member, and a plurality of transfer members. The socket head is disposed about an axis and defines an aperture extending axially through the socket head and through a side of the socket head. The socket head includes external teeth. The input member is coaxial with the socket head. Each transfer member includes a first end drivingly coupled to the input member and a second end configured to engage the external teeth.
Opening claim text (preview).
What is claimed is: 1. A socket assembly comprising: a socket head disposed about an axis and defining an aperture extending axially through the socket head and through a side of the socket head, the socket head including external teeth; an input member coaxial with the socket head; a plurality of transfer members, each transfer member including a first end drivingly coupled to the input member and a second end configured to engage the external teeth; and a frame rotatably supporting the socket head, the input member, and the transfer members, the frame supporting the socket head and the input member for rotation about the axis. 2. The socket assembly of claim 1 , wherein the socket head defines a fastener cavity having a predetermined shape and being open through a bottom side of the socket head to receive a fastener having a mating predetermined shape, the aperture of the socket head being open to the fastener cavity through a top side of the socket head. 3. The socket assembly of claim 1 , wherein the input member includes a plurality of teeth and the first end of each transfer member is meshingly engaged with teeth of the input member. 4. The socket assembly of claim 1 , wherein each transfer member is a shaft that is offset from and parallel to the axis of the input member and the socket head. 5. The socket assembly of claim 1 , wherein the frame defines a line cavity axially between the input member and the socket head, the line cavity being open through a side of the frame and configured to be open to the aperture when the socket head is in a first rotational position. 6. The socket assembly of claim 1 , wherein a gear ratio between the input member and the socket head is variable. 7. The socket assembly of claim 6 , wherein either the input member or the transfer members are axially translatable between a first position and a second position relative to the other of the input member or the transfer members, wherein when in the first position the first ends of the transfer members engage the input member with a first gear ratio, wherein when in the second position, the first ends of the transfer members engage the input member with a second gear ratio that is different from the first gear ratio. 8. The socket assembly of claim 6 , wherein the transfer members are axially translatable between a first position and a second position relative to the socket head, wherein when in the first position the second ends of the transfer members engage the teeth of the socket head with a first gear ratio, wherein when in the second position, the second ends of the transfer members engage the teeth of the socket head with a second gear ratio that is different from the first gear ratio. 9. The socket assembly of claim 1 , wherein the input member defines a recess having a predetermined shape configured to matingly receive a driver member of a tool. 10. The socket assembly of claim 1 , wherein the external teeth are disposed about a perimeter of the socket head. 11. A socket assembly comprising: a socket head rotatable about an axis and defining a socket cavity open through a top, a bottom, and a side of the socket head; an input member offset in an axial direction from the socket head, the axial direction being one of two axial directions of the axis; a plurality of shafts, each shaft including a first end meshingly engaged to teeth on the input member and a second end configured to meshingly engage teeth on the socket head, the first end being offset in the axial direction from the second end; and a frame rotatably supporting the socket head, the input member, and the shafts. 12. The socket assembly of claim 11 , wherein the frame defines a line cavity axially between the input member and the socket head, the line cavity being open through a side of the frame and open to the socket cavity when the socket head is in a first rotational position. 13. The socket assembly of claim 11 , wherein the input member is coaxial with the axis. 14. The socket assembly of claim 13 , wherein the shafts are parallel to the axis. 15. The socket assembly of claim 11 , wherein a gear ratio between the input member and the socket head is variable. 16. The socket assembly of claim 15 , wherein either the input member or the shafts are axially translatable between a first position and a second position relative to the other of the input member or the shafts, wherein when in the first position the first ends of the shafts engage the input member with a first gear ratio, wherein when in the second position, the first ends of the shafts engage the input member with a second gear ratio that is different from the first gear ratio. 17. The socket assembly of claim 15 , wherein the shafts are axially translatable between a first position and a second position relative to the socket head, wherein when in the first position the second ends of the shafts engage the teeth of the socket head with a first gear ratio, wherein when in the second position, the second ends of the shafts engage the teeth of the socket head with a second gear ratio that is different from the first gear ratio. 18. The socket assembly of claim 11 , wherein the input member defines a recess having a predetermined shape configured to matingly receive a driver member of a tool.
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