A rotary drive for a belt tensioner includes a housing, a pinion rotatably mounted therein, and at least one driving gear coupled to the pinion, the driving gear being mounted in the housing and being adapted to be driven by pressurized gas introduced into a pressure chamber. Formed in the driving g
A rotary drive for a belt tensioner includes a housing, a pinion rotatably mounted therein, and at least one driving gear coupled to the pinion, the driving gear being mounted in the housing and being adapted to be driven by pressurized gas introduced into a pressure chamber. Formed in the driving gear is a cavity having a substantially radially extending wall which, in the installed state, is opposite to a protrusion which projects into the cavity and is rigidly connected to the housing, the wall of the cavity and the protrusion forming part of a wall of the pressure chamber.
대표청구항▼
The invention claimed is: 1. A rotary drive for a belt tensioner, including a housing, a pinion (32; 78) rotatably mounted therein, and at least one driving gear coupled to the pinion (32; 78), the driving gear being mounted in the housing and being adapted to be driven by pressurized gas introduce
The invention claimed is: 1. A rotary drive for a belt tensioner, including a housing, a pinion (32; 78) rotatably mounted therein, and at least one driving gear coupled to the pinion (32; 78), the driving gear being mounted in the housing and being adapted to be driven by pressurized gas introduced into a pressure chamber (20; 68), in the driving gear there being formed a cavity (24; 70) having a substantially radially extending wall (38; 72) which, in the installed state, is opposite to a protrusion which projects into the cavity (24; 70) and is rigidly connected to the housing, the wall (38; 72) of the cavity (24; 70) and the protrusion forming part of a wall of the pressure chamber (20; 68). 2. The rotary drive according to claim 1, wherein the wall (38; 72) of the cavity (24; 70) in the non-operated state includes an angle between 10�� and 45�� with the protrusion. 3. The rotary drive according to claim 1, wherein the protrusion comprises a gasket (36; 84). 4. The rotary drive according to claim 1, wherein the housing comprises a cap (14; 54), at least one extension (26; 66) forming the protrusion being integrally molded thereon. 5. The rotary drive according to claim 1, wherein the driving gear is configured as a ring gear (22), whose periphery comprises in a partial region an internal toothing (28). 6. The rotary drive according to claim 5, wherein the partial region extends across more than half of the periphery. 7. The rotary drive according to claim 5, wherein the cavity (24) substantially has the shape of a circular ring sector whose central angle amounts to less than 180��. 8. The rotary drive according to claim 5, wherein in the housing there is mounted an intermediate gear (30) which meshes both with the ring gear (22) and the pinion (32). 9. The rotary drive according to claim 1, wherein the driving gear (74) comprises a surrounding external toothing (76) and is in direct engagement with the pinion (78). 10. The rotary drive according to claim 9, wherein the cavity (70) substantially has the shape of a circular ring that is interrupted at one point by the radially extending wall (72). 11. The rotary drive according to claim 9, wherein a plurality of driving gears (74) are provided. 12. The rotary drive according to claim 11, wherein all of the driving gears (74) mesh with the pinion (78). 13. The rotary drive according to claim 11, wherein there is provided a common pyrotechnical propellant charge (58) which is connected via branching flow ducts (62) to the pressure chambers (68) of the driving gears (74). 14. The rotary drive according to claim 11, wherein there are provided four driving gears (74) which are uniformly distributed about the pinion (78).
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이 특허에 인용된 특허 (5)
Specht Martin (Feldafing DEX), Apparatus for rotatively driving a winding shaft of a safety belt automatic winding device.
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