Pressure unit and end fitting having a pressure unit of this type
10000185 · 2018-06-19
Assignee
Inventors
Cpc classification
B60R22/4619
PERFORMING OPERATIONS; TRANSPORTING
B60R2022/4642
PERFORMING OPERATIONS; TRANSPORTING
F16B41/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16B41/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a pressure unit (64) for pressurizing a belt shaft (12) in a seat belt system comprising a screw (66) for fastening the pressure unit (64) to a frame (18) of the seat belt system, the screw (66) including a screw head (68) and a screw shank (70), wherein the pressure unit (64) comprises a fastening portion (72) having a screw hole (74) for inserting the screw shank (70), wherein radial play is provided between the screw hole (74) and the screw shank (70) and the fastening portion (72) on the screw head side includes mounting arms (76) for axially fixing the screw (66) in a pre-assembly position. Moreover, the invention also comprises an end fitting (11) of a seat belt system comprising such pressure unit (64).
Claims
1. A pressure unit for pressurizing a belt shaft (12) in a seat belt system comprising a screw (66) for fastening the pressure unit (64) to a frame (18) of the seat belt system, wherein the screw (66) includes a screw head (68) and a screw shank (70), wherein the pressure unit (64) comprises a fastening portion (72) including a screw hole (74) for inserting the screw shank (70), and wherein between the screw hole (74) and the screw shank (70) radial play is provided and the fastening portion (72) on the screw head side includes mounting arms (76) for axially fixing the screw (66) in a pre-assembly position.
2. The pressure unit according to claim 1, wherein the fastening portion (72) includes a first frame-side contact surface (82) and an axially opposed second screw head-side contact surface (84), wherein the end (86) of the screw (66) facing away from the screw head (68) in the pre-assembly position is arranged axially between a free end (88) of the mounting arms (76) and the first contact surface (82) of the fastening portion (72).
3. The pressure unit according to claim 1, wherein the screw (66) is a collar screw and in the axial direction includes a screw collar (90) between the screw head (68) and the screw shank (70), wherein a diameter (d) of the screw collar (90) is between a diameter of the screw shank (70) and a diameter of the screw head (68).
4. The pressure unit according to claim 3, wherein the minimum dimension (S.sub.min) of the screw hole (74) perpendicularly to a shank axis (A) of the screw (66) is larger than the diameter (d) of the screw collar (90) and smaller than the diameter of the screw head (68).
5. The pressure unit according to claim 3, wherein the thickness (t) of the fastening portion (72) is slightly larger than the length (l) of the screw collar (90).
6. The pressure unit according to claim 3, wherein the screw collar (90) includes a groove (92) peripheral in the circumferential direction, wherein in the pre-assembly position of the screw (66) the mounting arms (76) of the pressure unit (64) engage in said groove (92).
7. The pressure unit according to claim 1, wherein the mounting arms (76) are radially elastic spring arms.
8. The pressure unit according to claim 7, wherein the mounting arms (76) have inclined surfaces (94) facing the screw head (68) along which the screw head (68), when axially loaded, may slide in the direction of the first frame-side contact surface (82).
9. The pressure unit according to claim 1, wherein the pressure unit (64) comprises a plastic member (78) formed integrally with the fastening portion (72).
10. The pressure unit according to claim 9, wherein the at least one spring element (80) is partly surrounded by injection molding with a plastic material of the plastic member (78) in the form of an injection-molded part.
11. An end fitting of a seat belt system for automotive vehicles comprising: a pressure unit (64) according to claim 1, a frame (18) made from metal and having a threaded hole (96) for fastening the pressure unit (64) to the frame (18), and a belt shaft (12) being rotatably supported in the frame (18) about a belt shaft axis, wherein the screw (66) extends in a fastening position with radial play through the screw hole (74) of the pressure unit (64) and is screwed into the threaded hole (96) of the frame (18).
12. The end fitting according to claim 11, wherein the screw (66) is a collar screw and in the axial direction between the screw head (68) and the screw shank (70) includes a screw collar (90), wherein a diameter (d) of the screw collar (90) is between a diameter of the screw shank (70) and a diameter of the screw head (68), wherein the screw head (68) on the collar side has a contact surface (98) for the fastening portion (72) and the screw collar (90) on the shank side has a contact surface (100) for the frame (18).
13. The end fitting according to claim 12, wherein the thickness (t) of the fastening portion (72) is slightly larger than the length (l) of the screw collar (90), wherein in the fastening position of the screw (66) the contact surface (98) of the screw head (68) contacts the fastening portion (72) and the contact surface (100) of the screw collar (90) contacts the frame (18).
14. The pressure unit according to claim 1, wherein the pressure unit (64) comprises at least one spring element (80) for loading the belt shaft (12) of the seat belt system.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further features and advantages of the invention will be evident from the following description of a preferred embodiment with reference to the drawings, in which:
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DESCRIPTION
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(18) In the illustrated embodiment the end 14 of the webbing 16 is stitched to form an eye enclosing a belt shall insertion element 20, with the belt shaft insertion element 20 being received in a recess 22 of the belt shaft 12 and being supported relative to the belt shaft 12 in a rotationally fixed manner.
(19) According to
(20) The belt shaft 12 is rotatably supported about an axis A within the frame 18. At the axial ends of the belt shaft 12 a cap 34 and, resp., a rope reel 36 are arranged, the cap 34 and the rope reel 36 being tightly connected to, especially press-fitted with the belt shaft 12 and prevent axial movement of the belt shaft 12 relative to the frame 18 or minimize said movement to little axial play.
(21) For tightening the webbing 16 upon activation of the end fitting tensioner 10 a power transmission element 38 coupling the belt shaft 12 to a tensioner drive 40 is provided. The power transmission element 36 in the illustrated embodiment is a pull rope 41 which is partly wound onto the rope reel 36 and is fastened by one rope end to the rope reel 36.
(22) The tensioner drive 40 of the end fitting tensioner 10 comprises a tensioner tube 42 for receiving and guiding a pressurizing element 44 as well as a separate generator housing 46 for accommodating a gas generator 48. The generator housing 46 in the shown embodiment is a tubular piece so that both the tensioner tube 42 and the generator housing 46 are made from a metal tube, especially a steel tube. Moreover, there is provided a coupling element 50 tightly connecting the generator housing 46 to the tensioner tube 42 (cf.
(23) According to
(24) For the rest, a stabilizing unit 54 is provided to reinforce the connection between the tensioner tube 42 and the generator housing 46 and to provide a simple connection between the tensioner drive 40 and the frame 18. Said stabilizing unit 54 in the present case comprises two stabilizing elements 55, especially made from zinc die casting, and a connecting element 58 e.g. in the form of a tubular rivet (cf.
(25) As a matter of course, the end fitting tensioner 10 according to
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(27) According to
(28) As indicated in
(29) In order to prevent the belt shaft insertion element 20 and the webbing 16 fastened thereto from inadvertently loosening from the belt shaft 12, according to
(30) While in the
(31) The
(32) In the shown embodiment the pressure unit 64 comprises a plastic member 78 formed integrally with the fastening portion 72 of the pressure unit 64. Apart from the plastic member 78, the pressure unit 64 moreover includes two spring elements 80 for loading the belt shaft 12 of the seat belt system into its looking position.
(33) In particular, the two spring elements 80 are partly surrounded by injection molding with plastic material of the plastic member 78 in the form of an injection-molded part so that the pressure unit 64 may be easily and inexpensively manufactured and may be geometrically adapted to different end fittings 11 with minimum effort.
(34) According to
(35) In addition, it becomes evident from
(36) Furthermore, according to
(37) In the axial direction the thickness t of the fastening portion 72 at the edge of the screw hole 74 is slightly larger than the length l of the screw collar 90. Hence the pressure unit 64 can be fixed on the frame 18 of the end fitting 11 with a defined bias while deforming the plastic material of the fastening portion 72.
(38) According to
(39) The mounting arms 76 for the rest include inclined surfaces 94 facing the screw head 68, with the screw head 68 being adapted to slide along said inclined surfaces when it is axially loaded in the direction of the frame-side contact surface 82.
(40) In its pre-assembly position according to
(41) The end fitting 11 of the seat belt system for automotive vehicles then comprises the pressure unit 64 according to
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(44) According to
(45) The pressure unit 64 will then be delivered as pre-assembled subassembly according to
(46) The screw head 68 includes on the collar side a contact surface 98 for the fastening portion 72 and the screw collar 90 includes on the shank side a contact surface 100 for the frame 18, wherein in the fastening position of the screw 66 according to
(47) In the present embodiment, the pressure unit 64 is configured so that the mounting arms 76 slide radially outwardly on the screw head 68, when the pressure unit 64 is removed from the frame 18, i.e. when the screw 66 is unscrewed. In this way, the screw 66 can be easily moved via the position according to
(48) If re-use of the pressure unit 64 is not desired, for example for safety reasons, the screw head 68 and/or the mounting arms 76 may be configured so as to impede or prevent non-destructive removal of the pressure unit 64.