Hand-held power tool drive device
US-9833850-B2 · Dec 5, 2017 · US
US10272506B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10272506-B2 |
| Application number | US-201615366840-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 1, 2016 |
| Priority date | Dec 4, 2015 |
| Publication date | Apr 30, 2019 |
| Grant date | Apr 30, 2019 |
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In accordance with one embodiment, a reciprocating saw includes a housing, a plunger at least partially positioned within the housing and configured to reciprocate with respect to the housing along a plunger axis, a wobble plate assembly operably connected to the plunger and a motor, a first guide rail supported by the housing and extending longitudinally along the plunger axis, and a spherical component in contact with the first guide rail, the spherical component and the first guide rail configured to inhibit rotation of the wobble plate assembly.
Opening claim text (preview).
The invention claimed is: 1. A reciprocating saw, comprising: a housing; a plunger at least partially positioned within the housing and configured to reciprocate with respect to the housing along a plunger axis; a wobble plate assembly operably connected to the plunger and a motor; a first guide rail supported by the housing and extending longitudinally along the plunger axis; a spherical component in contact with the first guide rail, the spherical component and the first guide rail configured to inhibit rotation of the wobble plate assembly, wherein: the spherical component comprises a first ball bearing, the first guide rail is fixedly attached to a first side of the housing, the first ball bearing is in contact with a counterweight, and the counterweight is operably connected to an anti-rotation arm of the wobble plate assembly; a second guide rail fixedly attached to a second side of the housing, the counterweight located between the first side of the housing and the second side of the housing; a second ball bearing in contact with the counterweight and in contact with the first guide rail; and a third ball bearing in contact with the counterweight and in contact with the second guide rail. 2. The saw of claim 1 , wherein: the spherical component is integrally formed with an anti-rotation arm of the wobble plate assembly. 3. The saw of claim 1 , wherein: the first ball bearing has a radius of curvature; the first guide rail has a bearing surface with a second radius of curvature; and the second radius of curvature is larger than the first radius of curvature. 4. The saw of claim 1 , wherein the counterweight and the first guide rail are configured such that the first ball bearing is longitudinally movable with respect to the counterweight and the first guide rail. 5. The saw of claim 4 , further comprising: a second ball bearing in contact with the counterweight and the first guide rail. 6. The saw of claim 4 , further comprising: a first pin extending between the counterweight and the first guide rail; and a second pin extending between the counterweight and the first guide rail, wherein the first ball bearing is located between the first pin and the second pin. 7. The saw of claim 6 , further comprising: a second ball bearing in contact with the counterweight and the first guide rail; and a third pin extending between the counterweight and the first guide rail, wherein the second ball bearing is located between the third pin and the second pin. 8. The saw of claim 4 , wherein the first ball bearing is at least partially positioned within a first sub-chamber. 9. The saw of claim 8 , further comprising: a second ball bearing at least partially positioned within a second sub-chamber and in contact with the counterweight and the first guide rail, wherein the counterweight and the first guide rail are configured such that the second ball bearing is longitudinally movable with respect to the counterweight and the first guide rail. 10. The saw of claim 9 , wherein the first and the second sub-chamber are defined within the counterweight. 11. The saw of claim 9 , wherein the first and the second sub-chamber are defined within the first guide rail. 12. The saw of claim 1 , wherein each of the first ball bearing, the second ball bearing, and the third ball bearing is at least partially positioned within a respective receptacle in the counterweight. 13. The saw of claim 12 wherein the first guide rail is configured such that the first ball bearing simultaneously contacts the first guide rail at two spaced apart locations. 14. The saw of claim 12 , wherein the first guide rail is configured such that the first ball bearing contacts the first guide rail solely at a single point of contact. 15. The saw of claim 1 , wherein: the counterweight and the first guide rail are configured such that the first ball bearing and the second ball bearing are longitudinally movable with respect to the counterweight and the first guide rail; and the counterweight and the second guide rail are configured such that the third ball bearing is longitudinally movable with respect to the counterweight and the second guide rail. 16. The saw of claim 15 , further comprising: a first pin extending between the counterweight and the first guide rail; a second pin extending between the counterweight and the first guide rail; and a third pin extending between the counterweight and the first guide rail, wherein the first ball bearing is located between the first pin and the second pin and the second ball bearing is located between the second pin and the third pin. 17. The saw of claim 15 , wherein: the first ball bearing is at least partially located within a first sub-chamber defined in the first guide rail; and the second ball bearing is at least partially located within a second sub-chamber defined in the first guide rail. 18. The saw of claim 15 , wherein: the first ball bearing is at least partially located within a first sub-chamber defined in the counterweight; and the second ball bearing is at least partially located within a second sub-chamber defined in the counterweight.
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