Belt retractor having a second force limiter
11027695 · 2021-06-08
Assignee
Inventors
Cpc classification
B60R22/4676
PERFORMING OPERATIONS; TRANSPORTING
B60R22/4633
PERFORMING OPERATIONS; TRANSPORTING
B60R22/3413
PERFORMING OPERATIONS; TRANSPORTING
B60R2022/468
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to a belt retractor comprising a frame (10), a belt reel (12) rotatably arranged within the frame, a blocking mechanism (18) by which the belt reel (12) can be blocked within the frame (10), and a load limiter (14) which is detachably coupled to the belt reel (12), characterized in that for coupling the load limiter (14) at least one load-transmitting bar (28) is used which is arranged at the belt reel (12) and is retained in a coupling position by a support ring (32), wherein the support ring (32) can be moved from a supporting position to a release position by means of an actor (70).
Claims
1. A belt retractor comprising a frame (10), a belt reel (12) rotatably arranged within the frame, a blocking mechanism (18) by which the belt reel (12) can be blocked within the frame (10), and a load limiter (14) being detachably coupled to the belt reel (12), wherein for coupling the load limiter (14) at least one load-transmitting bar (28) is used which is arranged at the belt reel (12) and is retained in a coupling position by a support ring (32), the at least one load-transmitting bar (28) engaging driving toothing (26) of the load limiter (14) when the at least one load-transmitting bar is in the coupling position, wherein the support ring (32) can be moved from a supporting position to a release position by means of an actor (70).
2. The belt retractor according to claim 1, wherein the bar (28) is arranged in a recess (30) of the belt reel (12).
3. The belt retractor according to claim 1, wherein two or three bars (28) which are arranged symmetrically are provided.
4. The belt retractor according to claim 1, wherein a holder (34) for retaining the support ring (32) in the supporting position is provided.
5. The belt retractor according to claim 4, wherein the holder (34) is attached to the belt reel (12).
6. The belt retractor according to claim 4, wherein the holder (34) is a plastic injection-molded part.
7. The belt retractor according to claim 4, wherein the holder (34) is provided with plural retaining arms (68) that fix the support ring in the axial direction.
8. The belt retractor according to claim 1, wherein a lifting ring (74) is provided which can be rotated between an initial position in which the support ring (32) is in its supporting position and a lifting position in which the lifting ring (74) has axially shifted the support ring (32) from its supporting position to the release position.
9. The belt retractor according to claim 8, wherein the lifting ring (74) is arranged in a lifting case (72).
10. The belt retractor according to claim 9, wherein the lifting case (72) is provided with lifting ramps (78).
11. The belt retractor according to claim 9, wherein the lifting case (72) is provided with fixing tabs (73) for fixing the lifting ring (74) in its initial position.
12. The belt retractor according to claim 1, wherein the actor (70) includes a pyrotechnical charge (80) and a piston (84).
13. The belt retractor according to claim 12, wherein a lifting ring (74) is provided which is rotatable by the piston (82) between an initial position in which the support ring (32) is in its supporting position and a lifting position in which the lifting ring (74) has axially shifted the support ring (32) from its supporting position to the release position.
14. The belt retractor according to claim 13, wherein the lifting ring (74) includes a radially projecting actuating tab (86).
15. The belt retractor according to claim 1, wherein the load limiter is a torsion rod (14) which at one end is coupled to the belt reel (12) by means of the bar (28).
16. The belt retractor according to claim 15, wherein a second load limiter (36) is coupled to an end of the belt reel (12) that is opposed to the at least one load-transmitting bar (28).
17. A belt retractor, comprising: a frame (10); a belt reel (12) rotatably arranged within the frame (10); a blocking mechanism (18) by which the belt reel (12) can be blocked within the frame (10); a load limiter (14) being detachably coupled to the belt reel (12); at least one load-transmitting bar (28) arranged at the belt reel (12), the at least one load-transmitting bar (28) having a coupling position in which the at least one load-transmitting bar couples the load limiter (14) to the belt reel (12); a support ring (32) being movable between a supporting position in which the support ring retains the at least one load-transmitting bar (28) in the coupling position and a release position in which the support ring releases the at least one load-transmitting bar from the coupling position; a holder (34) for retaining the support ring (32) in the supporting position; the holder (34) being provided with plural retaining arms (68) that fix the support ring (32) in an axial direction; and an actor (70) for moving the support ring (32) from the supporting position to the release position.
18. The belt retractor according to claim 17, wherein a portion of the holder (34) that retains the support ring (32) in the supporting position is overcome as the support ring moves from the supporting position to the release position.
19. A belt retractor, comprising: a frame (10); a belt reel (12) rotatably arranged within the frame (10); a blocking mechanism (18) by which the belt reel (12) can be blocked within the frame (10); a first load limiter (14) detachably coupled to the belt reel (12); a second load limiter (36) connected to the first load limiter (14) in a rotationally fixed manner, the second load limiter (36) engaging and being rotatable relative to a surface (46) of the belt reel (12), rotation of the second load limiter (36) being countered by at least the friction between the second load limiter and the surface (46) of the belt reel (12); at least one load-transmitting bar (28) arranged at the belt reel (12), the at least one load-transmitting bar (28) having a coupling position in which the at least one load-transmitting bar couples the first load limiter (14) to the belt reel (12); a support ring (32) being movable between a supporting position in which the support ring retains the at least one load-transmitting bar (28) in the coupling position and a release position in which the support ring releases the at least one load-transmitting bar from the coupling position; and an actor (70) for moving the support ring (32) from the supporting position to the release position.
20. A belt retractor, comprising: a frame (10); a belt reel (12) rotatably arranged within the frame (10); a blocking mechanism (18) by which the belt reel (12) can be blocked within the frame (10); a load limiter (14) being detachably coupled to the belt reel (12); at least one load-transmitting bar (28) arranged at the belt reel (12), the at least one load-transmitting bar (28) having a coupling position in which the at least one load-transmitting bar couples the load limiter (14) to the belt reel (12); a support ring (32) being movable between a supporting position in which the support ring retains the at least one load-transmitting bar (28) in the coupling position and a release position in which the support ring releases the at least one load-transmitting bar from the coupling position; a holder (34) for retaining the support ring (32) in the supporting position, a portion of the holder (34) that retains the support ring (32) in the supporting position being overcome as the support ring moves from the supporting position to the release position; and an actor (70) for moving the support ring (32) from the supporting position to the release position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Hereinafter the invention will be described by way of an embodiment as illustrated in the enclosed drawings, wherein:
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DESCRIPTION
(18) By way of
(19) The belt retractor as a self-supporting component includes a frame 10 in which a belt reel 12 is arranged.
(20) A torsion rod 14 which is the core part of the load limiter extends through the belt retractor. The torsion rod 14 is assigned at one end (the left end in the Figures) to the belt reel 12 and at the other end (the right end in the Figures) is accommodated in a hub 16 in a rotationally fixed manner. At the hub a blocking mechanism 18 not explained in more detail here is disposed which serves for blocking the hub 16 fixedly relative to the frame 10, where necessary.
(21) Also, a drive wheel 20 is connected to the hub 16 in a rotationally fixed manner, with a so-called pre-tensioner, for example an electric motor, or a main tensioner, for example a load transmission element 24 adjustable in a piston 22 visible in
(22) The effects of the pre-tensioner and of the main tensioner are generally known and therefore shall be explained only roughly here. The pre-tensioner serves for rotating the belt reel in the winding direction, where necessary, so that the webbing is tensioned up to a particular pre-tensioning load. This operation is reversible. The main tensioner serves for driving the belt reel in the winding direction, where necessary, so that a definitely higher tensioning load is obtained within the webbing. The main tensioner can be activated merely once.
(23) At its end associated with the belt reel 12 the torsion rod 14 is provided with a driving toothing 26 in which the points of plural bars 28 engage, the bars being arranged in corresponding recesses 30 of the belt reel. There the bars 28 are retained by a support ring 32 which is fixed on the belt reel 12 by means of a holder 34.
(24) When a torque is exerted on the belt reel 12, for example by tension acting on the seat belt, said torque is transmitted via the edges of the recesses 30 and the bars 28 to the torsion rod 14 and from there into the hub 16. Assuming that the hub 16 is blocked fixedly relative to the frame, also the belt reel 12 is prevented from rotating relative to the frame, in any case as long as the acting torque is below the torque at which the torsion rod 14 is plastically twisted. The load transmission path mentioned here is indicated by broken lines in
(25) On the side of the belt reel 12 opposed to the bars 28, a corrugated disk 36 which is a central component of a further load limiter is arranged. The corrugated disk 36 is connected to the torsion rod 14 in a rotationally fixed manner at the end thereof associated with the hub 16 and is elastically clamped in the axial direction between an end face of the belt reel 12 and a cover 38.
(26) The corrugated disk 36 may be rotated between the belt reel 12 and the cover 38, when the acting torque is higher than a holding torque of the corrugated disk 36 which is composed of a friction component and a resistance of the corrugated disk against deformation.
(27) With respect to the second load limiter, a second load path inserted in
(28) By way of
(29) In the initial condition, both the load limiter utilizing the torsion rod 14 and the load limiter utilizing the corrugated disk 36 are active. In the diagram of
(30) At the point s.sub.2 the load limiter utilizing the torsion rod 14 is switched off so that only the load limiter utilizing the corrugated disk 36 continues to be active. Accordingly, the load within the webbing decreases to the load F.sub.II.
(31) Hereinafter, the structure of the load limiter comprising the corrugated disk 36 shall be explained in detail by way of
(32) The corrugated disk 36 has a flat disk-shaped portion 40 in the initial condition.
(33) At its inner circumferential edge, the corrugated disk 36 includes a collar 42 extending in the axial direction. The collar 42 is formed integrally with the disk-shaped portion 40 and shows a driver design, here in the form of a toothed profile.
(34) The toothed profile of the driver design 42 of the corrugated disk 36 is fixedly attached to an external toothing 44 by which the torsion rod 14 is also fixedly accommodated within the hub 16. Thus, the corrugated disk 36 is coupled in a rotationally fixed manner both to the right end of the torsion rod 14 in the Figures and to the hub 16.
(35) The corrugated disk 36, more exactly speaking the disk-shaped portion 40 thereof, is arranged between a first corrugated surface 46 and a second corrugated surface 48.
(36) The first corrugated surface 48 is one of the end faces of the belt reel 12. As is evident especially from
(37) The second corrugated surface 48 is configured as the inner surface of the cover 38. The contour of the second corrugated surface 48 corresponds to the contour of the first corrugated surface 46: At the inner circumference of the cover 38 the second corrugated surface 48 extends along a flat circle, while the second corrugated surface shows a sinusoidal curve at its outer circumference (cf. especially
(38) When the corrugated disk 36 is mounted, it is pushed onto the torsion rod 14 disposed inside the belt reel 12, more exactly speaking to the outer toothing 44 thereof (cf.
(39) In said pre-assembled state, the disk-shaped portion 40 of the corrugated disk 36 defines the distance between the first and second corrugated surfaces 46, 48 (cf.
(40) In order to completely mount the corrugated disk 36 with respect to its function as a load limiter, a crimping ring 54 having a C-shaped cross-section in the initial condition is pushed onto the cover 38. The cover 38 together with the crimping ring 54 then is pressed against the belt reel 12 in the axial direction until the disk-shaped portion 40 of the corrugated disk is deformed between the two corrugated surfaces 46, 48 (cf. especially
(41) Inside the end face of the belt reel 12 forming the first corrugated surface 46, the torsion rod 14 is supported in a bearing ring 39 in the area of the outlet from the belt reel 12. In this way, also the corrugated disk is centered between the belt reel 12 and the cover 38.
(42) When considering, for example,
(43) The friction component is defined by the surface nature and the contact force between the corrugated disk 36, on the one hand, and the two corrugated surfaces 46, 48, on the other hand. The deformation force component is defined by the resistance of the disk-shaped portion 48 which the latter sets against continuous deformation along the sinusoidal contour of the two corrugated surfaces 46, 48. In other words: By rotation of the corrugated disk 36 relative to the corrugated surfaces 46, 48 the corrugated disk 36 will be continuously bent in opposite directions especially along its outer circumference.
(44) By way of the
(45) It is the substantial characteristic of the load limiter utilizing the torsion rod 14 that the belt reel 12 can be uncoupled from the torsion rod 14. In this state, solely the load limiter utilizing the corrugated disk 36 is active.
(46) In the initial condition of the belt retractor, viz. during “normal operation”, the belt reel 12 is tightly coupled to the torsion rod 14, however. For this purpose, the bars 28 already mentioned before are used which are arranged in recesses 30 of the belt reel 12.
(47) The bars 28 are illustrated more clearly in the
(48) In the position shown in
(49) The support ring 32 is in charge of the fact that during torque transmission the bars 28 are not pressed outwardly out of the recesses 30. More exactly speaking, each of the bars 28 abuts, with a shoulder 62, on the inner circumference of the support ring 32.
(50) The support ring 32 in this case is provided with a support collar 64 bent in the axial direction.
(51) In the position shown in the
(52) The holder 34 is a plastic injection-molded part which is cage-shaped. In the broadest sense, the holder 34 is ring-shaped so that it is pushed onto an extension 13 of the belt reel 12.
(53) The holder 34 includes plural radially inwardly effective detent arms 66 by which it is fixed on the belt reel 12 in the axial direction.
(54) Moreover, the holder 34 includes plural radially outwardly acting retaining arms 68 to which the support collar 64 of the support ring 32 is adjacent. In this way, the support ring 32 is fixed on the belt reel 12 in the axial direction so that it supports the bars 28 in the radial direction in order to prevent the latter from leaving the recesses 30 when a torque is transmitted from the belt reel to the torsion rod.
(55) In order to release the coupling between the belt reel 12 and the torsion rod 14, the support ring 32 may be displaced in the axial direction until it stops supporting the bars 28 in the axial direction. For this purpose, an actor 70 is provided, as especially shown in
(56) The actor 70 comprises a case 72 in which a lifting ring 74 is rotatably accommodated. The lifting ring includes, along its outer circumference, plural radially orientated abutting edges 76 which are provided for interacting with lifting ramps 78 being disposed in the case.
(57) When the lifting ring 74 is in its initial position, the abutting edges 76 abut on the “lower” end of each lifting ramp 78, viz. relating to
(58) For adjusting the lifting ring 74 a so-called micro-gas generator 80 is provided which may be, for example, an igniter for a “large” gas generator as it is used to deploy a driver or passenger airbag. Basically, however, also any gas generator may be used which generates the desired amount of compressed gas within the desired period of time.
(59) The micro-gas generator 80 is accommodated in a seat 82 within the case 72 which shall be referred to as lifting case hereinafter due to the lifting movement of the lifting ring 74 produced.
(60) In the case 72 also a piston 84 which is in fluid communication with the micro-gas generator 80 is accommodated. The piston 84 abuts on an actuating tab 86 projecting from the lifting ring 74 in the radial direction. The actuating tab 86 in this case is formed integrally with the lifting ring.
(61) The lifting case 72 is attached to the frame 10 in the completely mounted state of the belt retractor (cf.
(62) The lifting ring is retained by fixing tabs 73 in its initial position so that there will be no friction with the support ring 32 rotating along with the belt reel 12.
(63) The micro-gas generator 80 is locked in the seat 82 associated therewith within the lifting case 72 by means of a retaining clip 90 (cf. especially
(64) The retaining clip 90 is a bent sheet metal part including a bracket 92, a retaining portion 94 closed in the circumferential direction and two detent arms 96.
(65) The bracket 92 is hooked in a counter bearing 98 provided on the lifting case 72 on the side of the seat 82 for the micro-gas generator 80.
(66) The retaining portion 94 abuts on a shoulder 81 provided at the micro-gas generator 80 on the side facing away from the piston 84. Since the retaining portion 94 is closed in the circumferential direction, i.e. is ring-shaped, it is prevented from slipping off the micro-gas generator 80.
(67) The detent arms 96 engage in appropriate recesses on the side of the lifting case 72 facing away from the counter bearing 98 laterally from the seat 82. As is evident especially from
(68) In this way, the micro-gas generator 80 is positioned with little effort, though very reliably, in the seat 82 dedicated thereto within the lifting case 72.
(69) When, starting from the state as shown in
(70) During said stroke the support ring 32 is shifted relative to the holder 34 in the axial direction so far that the action of the retaining arms 68 is overcome and the support ring 32, when viewed in the axial direction, is located outside the bars 28 (cf. especially
(71) In this condition of the support ring 32, the bars 28 may yield outwardly in the radial direction, when a torque is transmitted between the belt reel 12 and the torsion rod 14. Said radial movement of the bars 28 is assisted by the flanks of the teeth 60 and of the driver toothing 26 being inclined so that a force acting radially outwardly on the bars 28 is generated.