WO2024019332A1 - Module de prétension et rétracteur de ceinture de sécurité le comprenant - Google Patents

Module de prétension et rétracteur de ceinture de sécurité le comprenant Download PDF

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Publication number
WO2024019332A1
WO2024019332A1 PCT/KR2023/008379 KR2023008379W WO2024019332A1 WO 2024019332 A1 WO2024019332 A1 WO 2024019332A1 KR 2023008379 W KR2023008379 W KR 2023008379W WO 2024019332 A1 WO2024019332 A1 WO 2024019332A1
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WO
WIPO (PCT)
Prior art keywords
module
spindle
seat belt
housing
rotational force
Prior art date
Application number
PCT/KR2023/008379
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English (en)
Korean (ko)
Inventor
문찬기
유병개
김택춘
홍현기
윤호범
Original Assignee
아우토리브 디벨롭먼트 아베
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Publication of WO2024019332A1 publication Critical patent/WO2024019332A1/fr

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R22/00Safety belts or body harnesses in vehicles
    • B60R22/34Belt retractors, e.g. reels
    • B60R22/46Reels with means to tension the belt in an emergency by forced winding up
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R22/00Safety belts or body harnesses in vehicles
    • B60R22/34Belt retractors, e.g. reels
    • B60R22/46Reels with means to tension the belt in an emergency by forced winding up
    • B60R2022/4666Reels with means to tension the belt in an emergency by forced winding up characterised by electric actuators
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R22/00Safety belts or body harnesses in vehicles
    • B60R22/34Belt retractors, e.g. reels
    • B60R22/46Reels with means to tension the belt in an emergency by forced winding up
    • B60R2022/4685Reels with means to tension the belt in an emergency by forced winding up with means to adjust or regulate the tensioning force in relation to external parameters
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60YINDEXING SCHEME RELATING TO ASPECTS CROSS-CUTTING VEHICLE TECHNOLOGY
    • B60Y2400/00Special features of vehicle units
    • B60Y2400/70Gearings

Definitions

  • the present invention relates to a seat belt retractor, and more specifically, to a pre-tensioning module that smoothly retracts the seat belt webbing during normal driving of the car and reduces slack by winding the seat belt webbing just before an emergency situation such as a collision occurs. and a seat belt retractor to which it is applied.
  • vehicles are equipped with seat belt devices on seats to ensure the safety of occupants.
  • the seat belt device includes a seat belt retractor that operates to wind or withdraw a strip-shaped seat belt webbing (hereinafter referred to as 'webbing') that secures the occupant to a spool, and a tongue fixed to one end of the webbing that is detachable. It consists of a buckle that can be inserted.
  • 'webbing' a strip-shaped seat belt webbing
  • the seat belt retractor prevents an occupant wearing a seat belt from being thrown forward or leaving the seat due to driving inertia, etc. during a sudden stop or sudden acceleration due to a vehicle accident, etc.
  • This seat belt retractor allows the webbing to be pulled out under normal conditions when the seat belt is worn, but when a change in the webbing withdrawal acceleration or vehicle inclination is detected due to a vehicle collision, etc., it suppresses further pulling out of the webbing and causes the webbing to become loose.
  • It may include an emergency tensioning device and a pre-tensioning device that reduce sagging, that is, slack.
  • Patent Document 1 and Patent Document 2 below disclose seatbelt retractor technology that controls the retraction and withdrawal operations of seatbelt webbing.
  • Such a seat belt retractor may be mounted on a vehicle body, for example, a center pillar of a vehicle, a seat backrest, a rear pillar, etc. Accordingly, the mounting posture of the seat belt retractor can be changed in various ways depending on the structure of the center pillar, seat backrest, rear pillar, etc. That is, the seat belt retractor is not always mounted in a horizontal state, but may be mounted tilted at a certain angle from the horizontal state in the left-right direction or in the front-back direction.
  • seats used in self-driving cars are being developed so that they can rotate left and right, and the backrest can be rotated backwards up to 180°.
  • the seat belt retractor according to the prior art is fixed to the installation target, that is, the backrest of the seat or the car body, and the direction of the webbing is always fixed.
  • the seatbelt retractor applied to the integrated seatbelt device has a spindle installed on the seat backrest in the left and right direction of the car, that is, parallel to the axial direction of the backrest, and as the length of the webbing wrapped around the spindle increases, the seatbelt retractor The front-to-back width of the tractor increases.
  • the seat belt retractor according to the prior art requires a mounting space corresponding to the maximum width of the webbing wrapped around the spindle, which can be a factor that makes it difficult to slim the seat.
  • the pre-tensioner applied to the seat belt retractor is composed by assembling multiple parts to provide the function of transmitting or blocking rotational force, the structure is complicated and the overall size is unnecessarily increased. there was.
  • Patent Document 1 U.S. Patent No. 6,499,554 (registered on December 31, 2002)
  • Patent Document 2 U.S. Patent No. 6,443,382 (registered on September 3, 2002)
  • the purpose of the present invention is to solve the problems described above. It is installed on a seat belt retractor that secures and safely protects the occupants in the event of an emergency situation such as a car crash, and rolls up the seat belt webbing before an emergency situation occurs.
  • the goal is to provide a pretensioning module that reduces .
  • Another object of the present invention is to provide a pre-tensioning module that can be installed in a narrow space by reducing its volume and a seat belt retractor to which the same is applied.
  • Another object of the present invention is to provide a pre-tensioning module that can improve the coupling force between components provided in a power transmission unit to prevent vibration or noise due to incomplete coupling, and a seat belt retractor to which the same is applied.
  • the pre-tensioning module includes a drive motor that generates a rotational force to wind or unwind the seat belt webbing on the spindle and selectively transmits the rotational force generated by the drive motor to the spindle or It includes a power transmission unit that blocks, wherein the clutch unit is formed in a cylindrical shape with one side open and rotates forward and backward by the rotational force of the drive motor, a shaft disposed inside the housing, and inside the housing. It includes a travel gear arranged to make a linear reciprocating motion and a head that engages with the travel gear to receive rotational force, and a rib is formed inside the housing to transmit the rotational force of the housing to the travel gear.
  • the seat belt retractor to which the pre-tensioning module according to the present invention is applied has a spindle module including a spindle around which the seat belt webbing is wound, and the seat belt retractor immediately before an emergency situation occurs in the vehicle. It is characterized by including a pre-tensioning module that reduces slack by winding the webbing.
  • the clutch on and off functions can be implemented to transmit or block the rotational force generated by the drive motor provided in the pre-tensioning module to the spindle. The effect that there is is obtained.
  • the clutch function is provided to transmit or block the rotational force generated by the drive motor to the spindle using a clutch unit disposed along the same direction as the spindle, so that it can be applied even if the radial size of the pretensioner module is small. The effect is achieved.
  • the effect of being able to linearly reciprocate the travel gear along the axial direction of the shaft is obtained using the screw thread formed on the shaft.
  • the travel gear and the head are completely coupled by applying a stopper that maintains the coupled state of the travel gear and the head to the rib formed on the inner peripheral surface of the housing of the clutch unit, thereby preventing incomplete coupling of the travel gear and the head. This has the effect of preventing vibration or noise from occurring.
  • FIG. 1 is a perspective view of a seat belt retractor to which an emergency tensioning module is applied according to a preferred embodiment of the present invention
  • Figure 2 is a perspective view of the seat belt retractor shown in Figure 1 from another angle;
  • Figure 3 is a view showing the seat belt retractor shown in Figure 1 installed on the seat of a car;
  • Figure 4 is a perspective view of a pre-tensioning module according to a preferred embodiment of the present invention.
  • Figure 5 is an exploded perspective view of the pre-tensioning module shown in Figure 4, respectively;
  • Figure 6 is an exploded perspective view of the power transmission unit shown in Figure 5;
  • Figure 7 is a cross-sectional view taken along line A-A' shown in Figure 4.
  • Figure 8 is a diagram showing the operating state of the pretensioning module
  • Figure 9 is an enlarged perspective view of the housing shown in Figure 6;
  • the seat belt retractor according to the prior art is mounted so that the spindle is installed between both walls of the fixed frame and the spindle faces the same direction as the rotation axis of the backrest.
  • the seat belt retractor according to the prior art had a problem in that it was difficult to apply to the backrest of a slimmed seat, as the front-to-back width increased with the length of the seat belt webbing (hereinafter referred to as 'webbing') wrapped around the outer surface.
  • the present invention modularizes each component applied to the seat belt retractor by functional block and manufactures it by selectively combining modules corresponding to necessary functions.
  • the present invention changes the direction in which the spindle around which the webbing is wound is installed to minimize the front-to-back width of the seat belt retractor, making it slimmer.
  • the present invention can be modified to be mounted in various directions and angles on various mounting objects and locations, such as the backrest of the seat, as well as the car body, such as a pillar disposed on the side of the car body, a car body panel at the rear of the seat, and the roof or floor of the car body. It should be noted that this may occur.
  • FIG. 1 is a perspective view of a seat belt retractor to which an emergency tensioning module is applied according to a preferred embodiment of the present invention
  • FIG. 2 is a perspective view of the seat belt retractor shown in FIG. 1 from another angle
  • FIG. 3 is FIG. 1 This is a diagram showing the seat belt retractor shown in is installed on the seat of a car.
  • Figure 3(a) shows a front view of the sheet
  • Figure 3(b) shows a rear view of the sheet.
  • 'forward (F)' the direction toward which the steering wheel is facing based on the car's seat
  • 'rear (B)' the opposite direction
  • terms indicating directions such as 'left (L)', 'right (R)', 'upward (U)' and 'downward (D)' are based on the front (F) and back (B) above. It is defined as indicating each direction.
  • the seatbelt retractor 10 to which the emergency tensioning module according to a preferred embodiment of the present invention is applied has seatbelt webbing (hereinafter abbreviated as 'webbing') 21 wound.
  • the seat belt retractor may include a pre-tensioning module 50 and an additional function module that smoothly withdraws the webbing 21 during normal driving of the vehicle and reduces slack by winding the webbing 21 just before a collision occurs.
  • each part applied to the seat belt retractor 10 is manufactured by modularizing each functional block and selectively combining each modularized part.
  • the seat belt retractor 10 can be assembled by selectively combining the spindle module 20, the sensor module 30, the emergency tensioning module 40, the pre-tensioning module 50, and the additional function module. You can.
  • the additional function module includes a load control module 60 that adjusts the load acting on the webbing 21 according to the rider's physique condition or weight, etc., and a spindle module (60) that mechanically connects each module to control the force generated when each module is driven. It may include one or more of the connection modules 70 transmitted to 20).
  • the spindle module 20 is provided as a high level load limiter to provide a relatively large high load to the spindle 22 when the occupant seated in the corresponding seat is a relatively heavy adult male.
  • a limiter 25 may be provided.
  • the load control module 60 is provided as a low level load limiter that provides a relatively small low load to the spindle 22 when the passenger seated in the seat is a relatively light woman or child. 2 Limiters 61 may be provided.
  • connection module 70 functions to connect each module to each other so that the force generated from each module, for example, the emergency tensioning module 40 and the pre-tensioning module 50, is transmitted to the spindle module 20.
  • connection module 70 may include a plurality of gears connected to the drive shaft of each device, a plurality of rotation shafts on which each gear is installed, and a housing that shields the outer surfaces of each gear and the rotation shaft.
  • the spindle module 20 and the sensor module 30 are basic modules that make up the seat belt retractor 10. As shown in FIG. 2, they can be manufactured and assembled as individual modules, or integrated into one module. It may be possible.
  • the sensor module 30 may include an acceleration sensor that detects a change in acceleration of the webbing 21 and a tilt sensor that detects a change in inclination of the vehicle.
  • the spindle module 20 is provided with a spindle 22 on which webbing 21 is wound on the outer surface.
  • the spindle module 20 may operate to wind the webbing 21 when a change in the pull-out acceleration of the webbing 21 or a change in the inclination of the vehicle occurs due to a vehicle collision.
  • This spindle module 20 may be combined with the sensor module 30 to further provide a function of only retracting webbing in a certain section to secure a child seat.
  • the direction in which the webbing 21 is drawn out is set to upward (U), and the direction in which the spindle 22 is mounted is set to the forward and backward directions (F, B).
  • the thickness of the seat belt retractor 10 that is, the front-to-back width, is minimized.
  • each module may be manufactured with a thickness smaller than the thickness of the spindle module 20 based on the thickness of the spindle module 20, that is, the front-to-back width.
  • each module is arranged around the spindle module 20 on the side of the spindle module 20, that is, on the right or left, or on the top or bottom of the spindle module 20.
  • the pre-tensioning module 50 is disposed on the left side of the spindle module 20, and the sensor module 30 and the emergency tensioning module are placed on the right side of the spindle module 20. (40) can be arranged up and down.
  • the sensor module 30 and the emergency tensioning module 40 may be placed on the right side of the spindle module 20, and the pre-tensioning module 50 may be placed below the spindle module 20.
  • the pre-tensioning module 50 is disposed on the left or right side of the spindle module 20, and the sensor module 30 and the emergency tensioning module 40 are connected to the spindle module 20 and the pre-tensioning module 50. It may be placed at the bottom of .
  • the remaining modules except the spindle module 20, that is, the sensor module 30, the emergency tensioning module 40, the pre-tensioning module 50, and the additional function modules 60 and 70 are the spindle modules 60 and 70. It is arranged radially along the circumferential direction on the outer surface of the spindle 22 with the spindle module 20 having (22) as the axis.
  • a driving gear and connection module 70 installed on one or both sides and transmit power to the spindle 22.
  • the drive axes of the remaining modules may be arranged parallel or at right angles to the spindle 22.
  • the print tensioning module 50 may be excluded, or additional function modules may be assembled in combination, depending on the needs of the vehicle specifications, specifications of the seat belt retractor 10, etc. You can.
  • the remaining modules except the spindle module 20 maintain the front-to-back width of the seat belt retractor 10 mounted on the backrest 12 of the seat 11 constant, as shown in FIG. 3. So that it is manufactured to the same thickness as the spindle module 20 or to a thickness smaller than the thickness of the spindle module 20.
  • the amount of winding (or loading amount) and thickness of the seat belt webbing wound around the spindle are changed from the seat belt retractor to the spindle. It can be configured so as not to affect the width of the installed front-to-back direction.
  • the seat belt retractor 10 manufactures the thickness of each module to a minimum thickness, and arranges the remaining modules radially along the circumferential direction on the outer surface of the spindle based on the spindle module 20, so that the front and rear of the seat belt retractor It can be manufactured slim by minimizing the direction width.
  • the present invention can be installed in a narrow space by minimizing the overall volume of the seat belt retractor.
  • each combined module may be arranged side by side or at a right angle so that all axes provided in each module face the same direction, for example, front-to-back direction.
  • each module can be configured to continuously transmit or receive power using a power transmission unit such as a gear, chain, or belt.
  • the emergency tensioning module 40 functions to wind the webbing 21 around the spindle 22 using the pressure of the gas generated by operating the inflator with gunpowder in response to a detection signal that detects a vehicle collision. . Therefore, the emergency tensioning module 40 can reduce the slack of the webbing 21 by winding the webbing 21 in the event of a vehicle collision, thereby reducing the number of injuries to passengers.
  • the pre-tensioning module 50 functions to wind the webbing 21 around the spindle 22 by driving a motor capable of forward and reverse rotation when a collision of the vehicle is predicted through a sensor applied to the vehicle. That is, the pre-tensioning module 50 keeps the worn webbing 21 taut until a stronger acceleration or deceleration of the vehicle occurs even without an accident under normal driving conditions and prevents the webbing 21 from becoming loose. In order to prevent this possibility, it is possible to reduce the slack of the webbing 21 by wrapping the webbing 21 just before the collision of the vehicle, thereby reducing the number of injuries to passengers.
  • first and second brackets 23 and 24 that are coupled to each other and function as the housing 23 may be coupled to the front and rear sides of the spindle module 20, respectively.
  • a pull-out space 25 into which the webbing 21 is pulled out may be provided on one side of the first and second brackets 23 and 24, that is, at the lower left side.
  • the first bracket 23 may be placed on the front side of the spindle module 20, and the second bracket 24 may be placed on the rear side of the spindle module 24.
  • the first bracket 23 may be formed in a substantially disk-shaped or polygonal-plate shape to correspond to the front surface of the spindle module 20.
  • the second bracket 24 may be formed in a substantially circular or polygonal ring shape to correspond to the rear surface of the spindle module 24. That is, an installation hole 241 may be formed in the center of the second bracket 24 into which the spindle gear disposed on the rear side of the spindle 22 is installed. And, an elastic module 27 that provides elastic force to the spindle 22 may be coupled to the rear of the second bracket 24.
  • the pull-out space 26 is provided with a webbing guide 28 that guides the webbing being drawn into or pulled out from the spindle 22, and a pair of guide frames are provided at the top and bottom of the pull-out space 26, respectively. (29) is provided, and a bracket coupling portion coupled to the second bracket 24 may be provided at the rear end of each guide frame 29.
  • the webbing guide 28 guides the webbing 21 to be smoothly drawn in or out through a rotational motion when the webbing 21 is pulled in or out, and adjusts the pull-out space 26 into which the webbing 21 is pulled in or out. It performs the function of
  • the webbing guide 28 is installed along the front-back direction in the same manner as the spindle 22, and includes a rotating member 281 whose both ends are rotatably coupled to the first and second brackets 23 and 24, and both ends thereof. It may include a rotation pin 282 rotatably coupled to the inside of both ends of the rotation member 281.
  • the present invention is not necessarily limited to this, and the rotary member 281 and the rotary pin 282 may be provided integrally to adjust the withdrawal angle and direction of the webbing 21 in various ways.
  • the bracket coupling portion may be formed in a substantially circular or polygonal ring shape to correspond to the cross-sectional shape of the second bracket 24. That is, an installation hole into which the spindle gear is installed may be formed in the center of the bracket coupling portion.
  • This bracket coupling part can be firmly coupled to the second bracket 24 in various ways, such as bolting or welding, using a plurality of fastening protrusions protruding outward while the edges of the second bracket 24 are in contact with each other. there is.
  • a pair of guide frames 29 may provide a stopper function that limits the maximum angle at which the webbing guide 28 can rotate upward and downward.
  • the front-to-back width of the entire seat belt retractor 10 is the distance between the first and second brackets 23 and 24 disposed on both sides of the spindle module 20, or the distance between the first bracket 23 and the second bracket ( It may be limited to the distance between the outer plates of the elastic module 27 mounted on 24).
  • the present invention minimizes the front-to-back width of the entire seat belt retractor, thereby reducing the space required for installation, making it possible to install it even in a narrow space.
  • the seat belt retractor 10 installed on the driver's seat side
  • the seat belt retractor 10 according to the present invention can be installed not only on the driver's seat side, but also on the driver's seat side, without changing the configuration. It should be noted that it can also be applied to the passenger seat.
  • the worker sews one end of the webbing 21 into an approximately circular shape so that it can be wrapped once around the inner wall formed inside the spindle 22 and the overlapping portions. Subsequently, the circular portion is coupled to the inner wall and fixed inside the spindle 22, and the other end of the webbing 21 is pulled out to the outside of the spindle 22.
  • the spindle module 20 assembled in this way is coupled to the front of the reference plate 80, and the sensor module 30, emergency tensioning module 40, and pre-tensioning module 50 are connected based on the spindle module 20. And additional function modules, such as the load limiting module 60 and the connection module 70, are sequentially assembled so that they can be connected to each other at pre-selected positions on the reference plate 80.
  • the seat belt retractor 10 assembled through this process is mounted on an object such as the backrest 12 of the seat 11 or a body panel, and when an emergency situation such as a collision occurs during the driving process of the car, the webbing
  • the withdrawal operation of (21) is suppressed to restrain the occupants and protect them safely.
  • the seat belt device 100 to which the seat belt retractor 10 according to a preferred embodiment of the present invention is applied includes a strip-shaped webbing 21 and a seat 11 that secure the occupant.
  • the seat belt retractor 10, which is mounted on the backrest 12 and retracts the webbing 21 when necessary, the belt tongue 110 installed on the drawn end of the webbing 21, and the belt tongue 110 are removable. It includes a buckle 120 that is inserted.
  • a mounting space 13 in which the seat belt retractor 10 is mounted may be provided on the backrest 12 of the seat 11.
  • the mounting space 13 is provided inside the backrest 12, and a guide member 14 is installed on one side of the mounting space 13 to guide the webbing pulled out from the spindle module 20 to the outside of the backrest 12. It can be.
  • the mounting space 13 may be provided at the rear upper part of the backrest 12.
  • the mounting space 13 is shown approximately at the center of the upper part of the backrest 12, but the present invention is not necessarily limited thereto, and is located at a certain distance downward from the upper end of the backrest 12. It may be formed, or may be formed deviated from the center of the backrest 12 to the left or right.
  • the mounting space 13 may be provided in various locations on the vehicle body, such as a pillar, a vehicle body panel behind a seat, or the ceiling or floor of the vehicle body.
  • a space in which the webbing 21 pulled out from the seat belt retractor 10 is disposed toward the guide member 14 may be in communication with one side of the mounting space 13 .
  • the guide member 14 When applied to the top of one side of the backrest 12, for example, the driver's seat 11, the guide member 14 may be provided to partially cover the upper left side and the edge of the upper right side of the backrest 12.
  • the webbing 21 is wrapped around the spindle 22 with both ends facing in the front-to-back direction, and is positioned on the backrest through the mounting space 13 and the arrangement space 15 where the drawn-out webbing 21 is changed and arranged at various angles. (12) It is pulled out to the outside, and the pulling direction can be changed by the guide member 14 so that both ends face approximately left and right directions.
  • the webbing 21 is provided with an autonomous webbing adjusting unit 211 whose withdrawal direction and withdrawal angle are adjusted between the mounting space 12 provided on the backrest 12 and the guide member 14 installed on the upper end of the backrest 12. ) may include.
  • the autonomous webbing adjusting unit 211 is positioned between the spindle 22 and the guide member 14, that is, in the front-to-back direction within the arrangement space 15, so that both ends are oriented in the left-right or up-down direction.
  • the direction in which the tractor 10 is pulled out is changed.
  • the autonomous webbing adjusting unit 211 adjusts the angle and direction drawn from the spindle 22 toward the guide member 14 depending on the position of the guide member 14, and the webbing 21 is adjusted to the seat 11.
  • the angle and direction of the belt drawn from the backrest 12 toward the belt tongue 110 can be adjusted.
  • the present invention covers not only the backrest of the seat, but also the vehicle body, such as a filler disposed on the side of the vehicle body, a vehicle body panel on the rear of the seat, and the vehicle body. It can be modified to be installed in various locations such as the roof or floor.
  • the spindle 22 is arranged with its mounting direction set according to the mounting space 12 provided on the mounting object, and the seat belt retractor 10 is independent of the amount of webbing 21 wound around the spindle 22.
  • the width along the mounting direction can be maintained constant.
  • the installation direction and angle can be changed in various ways depending on the mounting object, and as a result, the direction and angle at which the seat belt webbing is pulled out can also be changed in various ways.
  • Figure 4 is a perspective view of a pre-tensioning module according to a preferred embodiment of the present invention
  • Figure 5 is an exploded perspective view of the pre-tensioning module shown in Figure 4
  • Figure 6 is an exploded perspective view of the power transmission unit shown in Figure 5. It is a perspective view
  • FIG. 7 is a cross-sectional view taken along line A-A' shown in FIG. 4.
  • the pre-tensioning module 50 includes a drive motor 51 and a webbing 21 that generate rotational force to wind or unwind the webbing 21. It includes a power transmission unit 52 that selectively transmits or blocks the rotational force generated by the drive motor 51 to the spindle 22 depending on whether the is wound.
  • the drive motor 51 and the power transmission unit 52 may each be installed inside separate casings.
  • the drive motor 51 can rotate in the forward or reverse direction according to a control signal from a control unit (not shown) provided in the vehicle.
  • control unit generates a control signal to rotate the drive motor 51 in one direction to smoothly pull out the webbing 21 when the vehicle is running normally, and drives the webbing 21 to be wound just before a collision occurs.
  • a control signal can be generated to rotate the motor 51 in the opposite direction.
  • the drive motor 51 may be arranged perpendicular to the spindle 22 in a direction perpendicular to the direction in which the spindle 22 is disposed on the top of the spindle 22, that is, along the left and right directions.
  • the present invention arranges the drive motor along the left and right directions so as to be perpendicular to the spindle, so that even if the diameter or length of the drive motor increases to increase the capacity of the drive motor, the effect on the front-to-back width of the seat belt retractor can be removed.
  • the output shaft of the drive motor 51 and the drive gear 511 installed on the output shaft may be disposed at the left end of the drive motor 51.
  • the drive motor 51 is accommodated inside a motor cover 512 that is formed in a substantially cylindrical shape with one side, the left side of which is opened when viewed in FIG. 5, and a gear housing 513 is located on the opened left side of the motor cover 512. This can be combined.
  • a power pin 514 that transmits power and control signals to the drive motor 51 may be disposed in the gear housing 513.
  • the power transmission unit 52 transmits the rotational force generated by the drive motor 51 to the spindle 22 so that the webbing 21 can be wound or withdrawn, and when the pre-tensioning module 50 is not in operation, the webbing 21 is It functions as a clutch on and off to block the rotational force of the drive motor 51 so that it can be pulled out smoothly.
  • the power transmission unit 52 is a clutch unit arranged side by side along the same direction as the spindle 22 on the upper part of the spindle 22 and transmitting or blocking rotational force depending on the rotation direction of the drive motor 51. (53) and a transmission gear 54 that transmits the rotational force transmitted from the clutch unit 53 to the spindle 22.
  • the clutch unit 53 is formed in a substantially cylindrical shape with an open front surface and includes a housing 81 that rotates by the rotational force of the drive motor 51, a shaft 82 disposed inside the housing 81, and a shaft 82 of the shaft 82. It may include a travel gear 83 that reciprocates linearly through a rotational motion, and a head 84 that engages the travel gear 83 and receives rotational force.
  • the power transmission unit 52 includes a first connection gear 55 that engages the drive gear 511 and transmits rotational force to the housing 81, and a head gear 841 installed at the rear end of the header 64. It may further include a second connecting gear 56 that engages.
  • a space in which the shaft 82, the travel gear 83, and the head 84 are installed is formed inside the housing 81, and a cover 85 can be coupled to the open front of the housing 81.
  • the cover 85 is formed in a substantially disk shape and can be coupled to the front end of the housing 81 using one or more engaging protrusions.
  • one or more coupling grooves into which one or more of the coupling protrusions are coupled may be formed at the front end of the housing 81.
  • a housing gear 811 having a plurality of teeth may be provided on the outer peripheral surface of the housing 81 to receive rotational force from the first connection gear 55. Therefore, the housing 81 can rotate by receiving the rotational force generated from the drive motor 51 through the first connection gear 55.
  • a plurality of ribs 812 are provided on which a plurality of locking protrusions 833 of the travel gear 83, which will be described below, are attached so as to transmit the rotational force of the housing 81 to the travel gear 83. may be formed to protrude.
  • the plurality of ribs 812 may be formed in parallel and spaced apart from each other at a predetermined distance along the longitudinal direction of the housing 81, that is, in the front-back direction.
  • the shaft 82 is formed in a substantially cylindrical shape and may be coupled to the housing 81 by penetrating the interior in the front-back direction. That is, the front end of the shaft 82 is coupled to the cover 85, and the head 84 can be rotatably coupled to the rear end of the shaft 82.
  • a plurality of screw threads 821 are formed on the outer peripheral surface of the shaft 82 to be screwed together with the travel gear 83, and a plurality of screw threads 821 are formed on the rear side to prevent forward movement of the head 84 to prevent the head 84 from moving forward.
  • a step 822 that fixes the position may be formed.
  • the travel gear 83 is formed in a substantially cylindrical shape with front and rear openings so that a shaft can be coupled thereto, and the inner peripheral surface of the travel gear 83 has a plurality of threads 821 formed on the outer peripheral surface of the shaft 82. A plurality of threads 831 corresponding to may be formed. Therefore, as shown in FIG. 6, the travel gear 83 reciprocates in a straight line along the front-back direction according to the rotation direction of the shaft 82 inside the housing 81.
  • This travel gear 83 engages with the head 84 by linear reciprocating motion to transmit the rotational force of the housing 81 to the head 84, and is separated from the head 84 to block the rotational force transmitted to the head 84. It performs the function of
  • first connection portion 832 and a second connection portion 842 each having a plurality of teeth formed to engage with each other may be provided at the rear end of the travel gear 83 and the front end of the head 84.
  • a plurality of locking protrusions 833 that engage the plurality of ribs 812 formed on the inner peripheral surface of the housing 81 may be formed to protrude.
  • the head 84 is formed in a substantially cylindrical shape with the front open, and at the rear end of the head 84 is a transmission gear 54 that transmits the rotational force transmitted while engaged with the travel gear 83 through the second connection gear 56. ), the axis on which the headgear 841 is mounted may be formed to protrude toward the rear.
  • an elastic member 86 that provides elastic force to the travel gear 83 and the head 84 may be installed in the internal space of the travel gear 83 and the head 84.
  • the elastic member 86 may be installed in a space formed inside the travel gear 83 and the head 84 by combining them.
  • the front end of the elastic member 86 may be supported on the thread 831 of the travel gear 83, and the rear end of the elastic member 86 may be supported on the front end wall of the head 84.
  • This elastic member 86 can use elastic force in normal times to prevent the travel gear 83 and the head 84 from moving or moving backward and forward, respectively.
  • the elastic member 86 is elastically deformed so that its length becomes shorter when the travel gear 83 moves backward, and provides elastic force when the travel gear 83 moves forward by rotation of the housing 81 and the shaft 82, thereby reducing the travel.
  • Gear 83 can be moved forward toward its initial position.
  • the first connection gear 55 is a first gear 551 engaged with the drive gear 511 and a housing gear 811 installed on the same axis as the first gear 551 and formed on the outer peripheral surface of the housing 81. It may include a second gear 552 engaged with.
  • the drive gear 511 and the first gear 551 may be provided with a worm and a worm gear to transmit rotational force in a right angle direction.
  • the second connection gear 56 includes a first gear portion 561 having a plurality of teeth engaged with the head gear 841 on the outer peripheral surface, and a second gear portion having a plurality of teeth engaged with the transmission gear 54 formed on the outer peripheral surface. It may include (562).
  • the transmission gear 54 is meshed with the second gear unit 562 of the second connection gear 56 and the driven gear (not shown) installed on the spindle 22 to transmit the rotational force transmitted through the clutch unit 53. It can be transmitted to the spindle 22.
  • This transmission gear 54 may be composed of one gear or a plurality of gears continuously meshed with each other.
  • the present invention can implement a clutch function to transmit or block the rotational force generated by the drive motor provided in the pre-tensioning module to the spindle.
  • the present invention can provide a clutch function to transmit or block the rotational force generated by the drive motor to the spindle using a clutch unit disposed along the same direction as the spindle. Therefore, the present invention can be applied even if the radial size of the pre-tensioner module is small.
  • the present invention can reciprocate the travel gear in a straight line along the axial direction of the shaft by using the screw thread formed on the shaft.
  • the operator couples the travel gear 83 and the head 84 of the clutch unit 53 to the front and rear sides of the shaft 82, respectively, inserts them into the housing 81, and inserts them into the open front of the housing 81. Attach the cover (85) to. At this time, an elastic member 86 is disposed between the travel gear 83 and the head 84.
  • the housing gear 811 formed on the outer peripheral surface of the housing 81 and the first connection gear 55 are engaged, and the head gear 841 mounted on the rear end of the head 84 is It is mounted to engage with the second connection gear 56.
  • the worker assembles the drive motor 51 and the transmission gear 54 so that they mesh with the first connection gear 55 and the second connection gear 56, respectively.
  • the pre-tensioning module 50 assembled through this process has a clutch-on function and a rotational force that transfers the rotational force generated by the drive motor 51 to the spindle 22 along the rotation direction of the drive motor 51. It performs a clutch off function to block transmission to the spindle 22.
  • Figure 8 is a diagram showing the operating state of the pre-tensioning module.
  • the clutch unit 53 can provide a clutch-on function that transfers the rotational force generated by the drive motor 51 to the spindle 22.
  • the clutch unit 53 can provide a clutch-off function that blocks the rotational force generated by the drive motor 51 from being transmitted to the spindle 22.
  • Figure 9 is an enlarged perspective view of the housing shown in Figure 6.
  • Figure 9(a) shows a state in which a straight rib is applied to the housing
  • Figure 9(b) shows a state in which a stepped portion is formed on the rib.
  • the housing 81 rotates in the forward or reverse direction by the rotational motion of the drive motor 51, and the travel gear 83 disposed inside the housing 81 has a rib formed on the inner peripheral surface of the housing 81. It rotates along the screw thread 821 formed on the shaft 82 and moves forward or backward by contact and rotation between the locking protrusion 833 formed on the outer peripheral surface of the travel gear 812 and the travel gear 83.
  • the travel gear 83 rotates in conjunction with the clockwise direction (CW) of the housing 81 and moves backward toward the head 84
  • the elastic member 86 installed between the travel gear 83 and the head 84 It moves backward while elastically deforming so that its length decreases. Therefore, the travel gear 83 engages with the head 84 and transmits the rotational force of the housing 81 and the shaft 82 to the transmission gear 54 through the head 84 and the second connecting gear 56.
  • the elastic member 86 functions to provide elastic force to the travel gear 83 to provide a clutch-off function when the housing 81 rotates counterclockwise.
  • the incomplete coupling state of the travel gear 83 and the head 84 causes the rotational force of the travel gear 83 to not be accurately transmitted to the head 84, and the Vibration and noise may be generated due to contact or collision between the first and second connection parts 832 and 842.
  • each rib 812 is provided with a stopper to prevent the travel gear 83 from flowing in the forward direction while moving backward, as shown in (b) of FIG. 9. It may include a functional stepped portion 813.
  • each rib 812 may be formed parallel to the substantially horizontal direction and may be formed to be stepped so that the heights of the front and rear ends are different from each other based on the stepped portion 813 formed at approximately the center.
  • the position of the step portion 813 may be set to a position that includes a gap up to the position in which the travel gear 83 is moved to its maximum rearward position so that it can remain coupled to the head 84.
  • the position of the step portion 813 varies depending on various conditions, such as the front-back width of the travel gear 83 and the first and second connection portions 832 and 842, and the maximum moving distance that the travel gear 83 moves in the front-back direction.
  • the settings can be changed.
  • the present invention is not limited to forming a double-bent stepped portion 813 on the rib 812.
  • the present invention maintains the first rib (not shown) in which the travel gear 83 is coupled to the head 84 and the travel gear 83 is disconnected from the head 84. It may be changed so that a stepped portion 813 is provided by forming a holding second rib (not shown) at a stepped position from the first rib.
  • the present invention can completely couple the travel gear and the head by applying a stopper that maintains the combined state of the travel gear and the head to the rib formed on the inner peripheral surface of the housing.
  • the present invention can prevent vibration or noise from occurring due to imperfect coupling between the travel gear and the head.
  • the clutch on and off functions can be implemented to transmit or block the rotational force generated by the drive motor provided in the pre-tensioning module to the spindle.
  • the present invention can provide a clutch function to transmit or block the rotational force generated by the drive motor to the spindle using a clutch unit disposed along the same direction as the spindle. Therefore, the present invention can be applied even if the radial size of the pre-tensioner module is small.
  • the present invention can reciprocate the travel gear in a straight line along the axial direction of the shaft by using the screw thread formed on the shaft.
  • the present invention covers not only the backrest of the seat, but also the vehicle body, such as a filler disposed on the side of the vehicle body, a vehicle body panel on the rear of the seat, and the vehicle body. It can be modified to be installed in various locations such as the roof or floor.
  • the present invention is not limited to the configuration of the seat belt retractor described with reference to FIGS. 1 and 2, and the configuration of the seat belt retractor can be changed in various ways and a pre-tensioning module can be applied to the changed seat belt retractor. It may be changed.
  • the present invention is applied to a pre-tensioning module that implements a clutch on and off function to transmit or block the rotational force generated by the drive motor provided in the pre-tensioning module to the spindle and to the seat belt retractor technology to which the same is applied.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Automotive Seat Belt Assembly (AREA)

Abstract

L'invention fournit un module de prétension et un rétracteur de ceinture de sécurité le comprenant, le module de prétension comprenant : un moteur d'entraînement générant une force de rotation de telle sorte qu'une sangle de ceinture de sécurité peut être enroulée sur d'une broche ou déroulée ; et une unité de transfert de puissance qui transfère ou bloque sélectivement la force de rotation générée par le moteur d'entraînement à la broche, l'unité de transfert de puissance comprenant : un boîtier dans lequel une partie d'embrayage est formée sous une forme cylindrique avec une surface ouverte et est tournée vers l'avant / vers l'arrière par la force de rotation du moteur d'entraînement ; un arbre disposé dans le boîtier ; un engrenage de déplacement disposé dans le boîtier et effectuant un mouvement de va-et-vient linéaire ; et une tête en prise avec l'engrenage de déplacement pour recevoir la force de rotation. Une structure ayant une nervure formée à l'intérieur de celle-ci pour transférer la force de rotation du boîtier à l'engrenage de déplacement est disposée dans le boîtier de sorte que des fonctions d'embrayage / arrêt peuvent être mises en œuvre pour transférer ou bloquer la force de rotation générée par le moteur d'entraînement disposé dans le module de prétension à la broche, et la force de couplage entre des composants disposés dans l'unité de transfert d'énergie est améliorée pour empêcher la génération de vibrations ou de bruit dus à un couplage incomplet.
PCT/KR2023/008379 2022-07-18 2023-06-16 Module de prétension et rétracteur de ceinture de sécurité le comprenant WO2024019332A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR10-2022-0088224 2022-07-18
KR1020220088224A KR102664598B1 (ko) 2022-07-18 2022-07-18 프리 텐셔닝 모듈 및 그가 적용된 시트벨트 리트랙터

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WO2024019332A1 true WO2024019332A1 (fr) 2024-01-25

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005053422A (ja) * 2003-08-07 2005-03-03 Takata Corp シートベルトリトラクタ
JP2011162157A (ja) * 2010-02-15 2011-08-25 Autoliv Development Ab シートベルト用リトラクタ
KR101766844B1 (ko) * 2016-06-10 2017-08-09 아우토리브 디벨롭먼트 아베 차량센서를 갖는 안전벨트 리트랙터
KR20170141251A (ko) * 2015-06-08 2017-12-22 오토리브 디벨로프먼트 에이비 시트 벨트용 리트랙터
JP2020011647A (ja) * 2018-07-19 2020-01-23 Joyson Safety Systems Japan株式会社 シートベルトリトラクタ

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005053422A (ja) * 2003-08-07 2005-03-03 Takata Corp シートベルトリトラクタ
JP2011162157A (ja) * 2010-02-15 2011-08-25 Autoliv Development Ab シートベルト用リトラクタ
KR20170141251A (ko) * 2015-06-08 2017-12-22 오토리브 디벨로프먼트 에이비 시트 벨트용 리트랙터
KR101766844B1 (ko) * 2016-06-10 2017-08-09 아우토리브 디벨롭먼트 아베 차량센서를 갖는 안전벨트 리트랙터
JP2020011647A (ja) * 2018-07-19 2020-01-23 Joyson Safety Systems Japan株式会社 シートベルトリトラクタ

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KR20240010899A (ko) 2024-01-25

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