Headrest for vehicle seat system

The headrest addresses the issue of unreliable side-to-side support and discomfort by using a movable frame and flexible fabric to adjust position, ensuring comfortable and reliable head support.

JP7843213B2Active Publication Date: 2026-04-09NHK SPRING CO LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-11-04
Publication Date
2026-04-09

AI Technical Summary

Technical Problem

Existing vehicle seat headrests fail to reliably support the occupant's head when it moves from side to side and do not allow the back of the head to comfortably move inward when it contacts the front surface, leading to discomfort.

Method used

A headrest with a hollow frame, a movable body, a drive mechanism, and a flexible fabric material that adjusts position using an actuator to create a clearance and support the head's sides, allowing the head to move comfortably and be reliably supported.

Benefits of technology

The headrest provides enhanced comfort by allowing the head to move inward and supports both sides effectively, improving the occupant's experience during vehicle movements.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide a headrest for a vehicle seat device which easily makes an occupant feel comfortable when supporting the back of the occupant's head and can reliably support both sides of the occupant's head when the occupant's head moves in a lateral direction.SOLUTION: A seat comprises: a hollow frame body 27 with an open front surface in a fore-and-aft direction; a movable body 35 provided inside the frame body and movable relative to the frame body in the fore-and-aft direction of the seat; a drive mechanism 30 capable of generating a drive force to move the movable body in the fore-and-aft direction of the seat relative to the frame body; a flexible cloth material 40 with left and right sides thereof fixed to the frame body and a part of a rear surface thereof fixed to a front surface of the movable body; and a skin material 48 covering the front surface of the frame body and a portion facing the cloth material in the fore-and-aft direction of the seat, thereof is flexible.SELECTED DRAWING: Figure 6
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Description

Technical Field

[0001] The present invention relates to a headrest of a vehicle seat device.

Background Art

[0002] Patent Documents 1 and 2 below disclose vehicle seat devices provided with headrests.

[0003] The headrest of Patent Document 1 below includes a hollow frame body with an open front surface, a moving body that can move in the seat front-rear direction with respect to the frame body, a drive mechanism capable of generating a driving force for moving the moving body in the seat front-rear direction with respect to the frame body, and a skin material that covers the frame body, the moving body, and the drive mechanism from the outer peripheral side. When the moving body is moved backward by the drive mechanism, a clearance is formed between the front surface of the skin material of the headrest and the moving body. Therefore, when the back of the occupant's head contacts the front surface of the skin material of the headrest, the back of the head easily moves to the inner side (rear side) of the headrest. Therefore, when the back of the occupant's head contacts the front surface of the skin material of the headrest, the occupant is likely to feel comfortable.

[0004] The headrest of Patent Document 2 below includes a headrest main body portion that constitutes the front portion of the headrest, side support portions that constitute both side portions of the headrest, and a drive mechanism. The distance between the left and right side support portions changes due to the driving force generated by the drive mechanism. Therefore, this headrest can support heads of various sizes by the left and right side support portions. Therefore, this headrest can reliably support the head when the occupant's head moves in the left-right direction.

Prior Art Documents

Patent Documents

[0005]

Patent Document 1

Patent Document 2

Summary of the Invention

[0006] The headrest described in Patent Document 1 above may not be able to reliably support the occupant's head when it moves from side to side.

[0007] The headrest described in Patent Document 2 above has a front portion that cannot move in the front-to-back direction. Therefore, when the back of the occupant's head comes into contact with the front portion of the headrest, it is difficult for the back of the head to move inward (towards the rear) of the headrest. In other words, when the back of the occupant's head comes into contact with the front surface material of the headrest described in Patent Document 2 above, the occupant is unlikely to feel comfortable.

[0008] In consideration of the above facts, the present invention aims to provide a headrest for a vehicle seat device that makes it easier for the occupant to feel comfortable when supporting the back of the occupant's head, and that can reliably support both sides of the occupant's head when the occupant's head moves in the left-right direction. [Means for solving the problem]

[0009] The headrest of a vehicle seat device according to claim 1 comprises: a hollow frame with an open front surface in the seat-front-rear direction; a movable body provided inside the frame and movable relative to the frame in the seat-front-rear direction; a drive mechanism capable of generating a driving force to move the movable body relative to the frame in the seat-front-rear direction; a flexible fabric material with its left and right sides fixed to the frame and a portion of its rear fixed to the front surface of the movable body; and a surface material that covers the front surface of the frame and has a flexible portion facing the fabric material in the seat-front-rear direction.

[0010] The headrest surface material of the vehicle seat device described in claim 1 covers the front surface of the frame. Furthermore, the portion of the surface material facing the fabric material in the front-rear direction of the seat is flexible. Furthermore, by adjusting the position of the moving body in the front-rear direction of the seat using a drive mechanism, a clearance is formed between the surface material and the moving body. Therefore, when the back of the occupant's head comes into contact with the front surface of the headrest surface material of claim 1, the back of the head easily moves towards the inside (rear) side of the headrest. Consequently, when the back of the occupant's head comes into contact with the front surface of the headrest surface material of the vehicle seat device described in claim 1, the occupant is more likely to feel comfortable.

[0011] Furthermore, the left and right sides of the flexible fabric material are fixed to the frame, and a portion of the rear surface of the fabric material is fixed to the front of the moving body. Therefore, the headrest of the vehicle seat device described in claim 1 can reliably support both sides of the occupant's head when the occupant's head moves in the left-right direction.

[0012] The headrest of the vehicle seat device according to claim 2 is the headrest of the vehicle seat device according to claim 1, wherein the fabric material is elastic.

[0013] The fabric material of the vehicle device described in claim 2 is elastic. Therefore, when the back of the occupant's head comes into contact with the front surface of the headrest's upholstery, the fabric material elastically deforms, allowing the back of the head to move backward. Accordingly, with the headrest of the vehicle seat device described in claim 2, the occupant is more likely to feel comfortable when the back of their head comes into contact with the front surface of the upholstery.

[0014] The headrest of the vehicle seat device according to claim 3 is the headrest of the vehicle seat device according to claim 1 or claim 2, wherein the upper and lower parts of the fabric material are fixed to the frame.

[0015] The upper and lower parts of the fabric material of the headrest of the vehicle seat device described in claim 3 are fixed to the frame. Therefore, the headrest of the vehicle seat device described in claim 3 can support the back of the occupant's head more reliably than when the upper and lower parts of the fabric material are not fixed to the frame.

[0016] The headrest of a vehicle seat device according to claim 4 is the headrest of a vehicle seat device according to claim 1 or claim 2, wherein the drive mechanism comprises an actuator that generates the driving force.

[0017] The headrest of the vehicle seat device described in claim 4 allows for easy adjustment of the seat's position in the forward-reverse direction by utilizing an actuator.

[0018] The headrest of a vehicle seat device according to claim 5 is the headrest of a vehicle seat device according to claim 1 or claim 2, wherein the drive mechanism comprises a compression coil spring that is expandable and contractible in the seat-front-rear direction and receives the moving force of the moving body when the moving body moves in the seat-front-rear direction, and a rubber member that is aligned with the compression coil spring in the seat-front-rear direction and receives the moving force from the moving body when the moving body moves in the seat-front-rear direction.

[0019] When the occupant's head moves in the longitudinal direction relative to the headrest of the vehicle seat device described in claim 5 due to longitudinal acceleration of the vehicle, the compression coil spring elastically deforms, causing the longitudinal position of the moving body to change according to the position of the head. In other words, the moving body follows the change in the position of the head. Furthermore, when the head exerts force on the moving body, the compression coil spring elastically deforms, absorbing the force exerted from the head to the surface material. Furthermore, when the head exerts force on the moving body, the rubber member exhibits a damping effect. Therefore, the headrest of the vehicle seat device described in claim 5 is more likely to make the occupant feel comfortable when supporting the occupant's head.

[0020] The headrest of a vehicle seat device according to claim 6 is the headrest of a vehicle seat device according to claim 5, wherein the drive mechanism is provided with a switching member that switches the drive mechanism between an unlocked state in which the moving force is allowed to be transmitted to the compression coil spring and a locked state in which the moving force is restricted from being transmitted to the compression coil spring.

[0021] In the headrest of the vehicle seat device according to claim 6, the drive mechanism is switched between an unlocked state and a locked state by a switching member. When the drive mechanism is in the unlocked state, the compression coil spring and the rubber member function, so that when the back of the occupant's head contacts the front surface of the skin material of the headrest, the occupant can easily feel comfort. On the other hand, when the drive mechanism is in the locked state, the compression coil spring does not function, so that the occupant's head can be supported more reliably.

Effect of the Invention

[0022] As described above, the headrest of the vehicle seat device according to the present invention can easily make the occupant feel comfort when supporting the back of the occupant's head, and can reliably support both sides of the head when the occupant's head moves in the left-right direction.

Brief Description of the Drawings

[0023] [Figure 1] It is a side view of a vehicle seat device having a headrest according to the first embodiment of the present invention and an occupant. [Figure 2] It is a longitudinal side view of the headrest according to the first embodiment. [Figure 3] It is a front view of the headrest when the skin material and the cushion material are removed. [Figure 4] It is a longitudinal side view of the headrest when the moving body moves from the front end position to the rear end position in FIG. 2. [Figure 5] It is a longitudinal side view of the headrest when the back of the occupant's head presses the front surface of the skin material of the headrest with the moving body at the front end position. [Figure 6] It is a longitudinal side view of the headrest when the back of the occupant's head presses the front surface of the skin material of the headrest with the moving body at the rear end position. [Figure 7] It is a cross-sectional view taken along the arrow 7-7 in FIG. 6. [Figure 8] It is a front view of the headrest when the skin material and the cushion material of the headrest according to the second embodiment of the present invention are removed. [Figure 9] This is a front view of the headrest with the surface material and cushioning material removed, according to the third embodiment of the present invention. [Figure 10] This is a longitudinal cross-sectional side view of the headrest according to the third embodiment, similar to Figure 6. [Figure 11] This is a longitudinal cross-sectional side view of a headrest according to the fourth embodiment of the present invention, similar to Figure 2. [Figure 12] This is a longitudinal cross-sectional side view of the headrest according to the fourth embodiment, similar to Figure 4. [Figure 13] This is a longitudinal cross-sectional side view of a headrest according to the fifth embodiment of the present invention, similar to Figure 2. [Figure 14] This is a longitudinal cross-sectional side view of the headrest according to the fifth embodiment, similar to Figure 4. [Modes for carrying out the invention]

[0024] The headrest 20 of the vehicle seat device according to the first embodiment of the present invention will be described below with reference to Figures 1 to 7. In each figure, arrows FR indicate the forward direction in the vehicle's longitudinal direction (seat longitudinal direction), arrows UP indicate the upward direction in the vehicle's vertical direction (seat vertical direction), and arrows LH indicate the left side in the vehicle's lateral direction (seat lateral direction). Hereafter, when simply referring to the longitudinal, lateral, and vertical directions, they will refer to the longitudinal direction of the seat, the left and right directions in the seat's lateral direction (vehicle width direction), and the up and down directions in the seat's vertical direction.

[0025] The vehicle seat device 15 (hereinafter referred to as the seat device) shown in Figure 1 is installed in the passenger compartment 11 of the vehicle 10. The seat device 15 comprises a seat cushion 16, a seat back 17 whose lower end is rotatably connected to the rear end of the seat cushion 16, and a headrest 20 connected to the upper end of the seat back 17. The seat cushion 16 is fixed to the upper rail of a slide rail device 13 that extends in the front-rear direction and is provided on the floor surface 12 of the passenger compartment 11.

[0026] The headrest 20 has a main body 25 and a headrest frame 50.

[0027] As shown in Figures 2 and 3, the main body 25 includes a frame 27, a drive mechanism 30, a movable body 35, a fabric material 40, and a surface material 48.

[0028] The frame 27, a one-piece molded product made of rigid resin, is a hollow body with only the front open. As shown in Figure 3, the front shape of the frame 27 is approximately square. For example, the frame 27 is manufactured from a resin material containing expanded polypropylene.

[0029] A drive mechanism 30 is provided in the internal space of the frame 27. The drive mechanism 30 includes an electric motor (actuator) 31 and a lead screw 33. The case 32 of the electric motor 31 is fixed to the inner surface of the rear of the frame 27 by fixing means (not shown). The electric motor 31 has a rotating shaft (not shown) that extends forward from the case 32. A lead screw 33, which is coaxial with the rotating shaft, is fixed to this rotating shaft. Therefore, the lead screw 33 rotates relative to the case 32 together with the rotating shaft.

[0030] As shown in Figure 1, a switch 23 is provided on the side of the main body 25. Furthermore, the electric motor 31 is connected to a control device (not shown). When the switch 23 is moved in a predetermined direction, power (forward rotation signal) from the battery (not shown) mounted on the vehicle 10 is sent from the control device to the electric motor 31, causing the rotation shaft and lead screw 33 of the electric motor 31 to rotate in the forward direction. On the other hand, when the switch 23 is moved in the opposite direction to the predetermined direction, power (reverse rotation signal) from the battery is sent from the control device to the electric motor 31, causing the rotation shaft and lead screw 33 to rotate in the reverse direction.

[0031] A movable body 35, which is a single molded product made of rigid resin, is provided in the internal space of the frame 27. For example, the movable body 35 is manufactured from a resin material including foamed polypropylene. The movable body 35 has a base portion 36 and a plate-shaped portion 37. A female screw groove (not shown) extending forward is formed on the rear end surface of the base portion 36, which is substantially parallel to the front-rear direction. A male screw groove formed on the surface of the lead screw 33 is screwed into the female screw groove. Furthermore, the base portion 36 is supported by a support means (not shown) fixed to the inner surface of the frame 27 so as to be immobile around the rotation axis and movable in the axial direction of the rotation axis. Therefore, when the electric motor 31 rotates forward, the base portion 36 moves relative to the electric motor 31 backward, and when the electric motor 31 rotates backward, the base portion 36 moves relative to the electric motor 31 forward.

[0032] The front end of the base 36 is fixed to the center of the rear surface of the plate-shaped portion 37. The plate-shaped portion 37 is perpendicular to the axis of the base 36 (the rotation axis mentioned above). The plate-shaped portion 37 is always located in the internal space of the frame 27. As shown in Figure 3, the front shape of the plate-shaped portion 37 is substantially the same as the front shape of the frame 27. However, the vertical and horizontal dimensions of the plate-shaped portion 37 are smaller than those of the frame 27. In other words, a clearance is formed between the inner circumferential surface of the frame 27 and the outer circumferential surface of the plate-shaped portion 37 in a front view. The position of the plate-shaped portion 37 shown in Figure 2 is the front end position of the plate-shaped portion 37. When the plate-shaped portion 37 is in the front end position, the front surface of the plate-shaped portion 37 is located slightly behind the front end surface of the frame 27. Also, in this state, when the occupant moves the switch 23 in the predetermined direction, the electric motor 31 rotates forward, and the base 36 and the plate-shaped portion 37 move relative to the electric motor 31 backward. As a result, the base portion 36 and the plate-like portion 37 move to the position shown in Figure 4, for example. The position of the plate-like portion 37 shown in Figure 4 is the rear end position of the plate-like portion 37. The plate-like portion 37 can move to any position between the front end position and the rear end position.

[0033] The elastic fabric material 40 is flexible. The fabric material 40 is, for example, a mesh-like fabric. As shown in Figure 3, the fabric material 40 has a main body portion 41 that is approximately square in front view. Furthermore, the fabric material 40 has an upper end fixing portion 42, a lower end fixing portion 43, a left end fixing portion 44, and a right end fixing portion 45 that extend outward from the periphery of the main body portion 41. The fabric material 40 is placed over the front surface of the frame 27 from the front. Furthermore, the upper end fixing portion 42 is fixed to the upper part of the front end surface of the frame 27, the lower end fixing portion 43 is fixed to the lower part of the front end surface of the frame 27, the left end fixing portion 44 is fixed to the left side of the front end surface of the frame 27, and the right end fixing portion 45 is fixed to the right side of the front end surface of the frame 27. Furthermore, as shown in Figures 2 and 3, the central part of the rear surface of the main body portion 41 is fixed to the central part 37M of the front surface of the plate-like portion 37 by fixing means. This fastening means is, for example, adhesive. As shown in Figure 2, when the plate-like portion 37 is in the front end position, the fabric material 40 is under tension. Furthermore, when the plate-like portion 37 moves rearward from the front end position, the fabric material 40 is also under tension. In other words, the fabric material 40 is always under tension.

[0034] As shown in Figure 2, the entire surface of the frame 27 is covered with a bag-shaped cushioning material 47. The cushioning material 47 is made of, for example, urethane. Furthermore, the entire surface of the cushioning material 47 is covered with a bag-shaped surface material 48 made of a flexible fabric. In addition, a pair of through holes (not shown) are formed on the lower surfaces of the cushioning material 47 and the surface material 48, respectively.

[0035] The metal headrest frame 50 has a pair of vertically extending support portions 51 on the left and right sides. The upper parts of the left and right support portions 51 are located in the internal space of the frame 27 through the aforementioned through holes and are fixed to the lower part of the frame 27. Furthermore, the lower ends of the left and right support portions 51 are slidably supported on the upper end of the seat back 17.

[0036] (Mechanism of Action and Effects) Next, the operation and effects of this embodiment will be described.

[0037] For example, consider the case where an occupant P1 is seated in the seat device 15, as shown in Figure 1, and the occupant P1A's head rests against the front of the surface material 48 of the main body 25. In this case, the plate-like portion 37 is positioned at the front end, as shown in Figure 2.

[0038] In this case, as shown in Figure 5, the occupant P1's occupant P1's head P1B pushes the approximate center of the front of the upholstery material 48 backward. As a result, the front of the upholstery material 48 is recessed backward, and the rear surface of the front of the cushioning material 47 comes into contact with the front surface of the fabric material 40 (main body 41). When the plate-shaped portion 37 is positioned at the front end, as shown in Figure 2, the front-rear distance between the front of the upholstery material 48 and the plate-shaped portion 37 is small when the occupant P1 is not seated in the seat device 15. Therefore, as shown in Figure 5, when the front of the upholstery material 48 is slightly recessed, the occupant P1's occupant P1's head P1B is supported by the upholstery material 48, cushioning material 47, main body 41, and plate-shaped portion 37. Consequently, in this case, for example, when the occupant P1's occupant P1's head P1B is pressed against the upholstery material 48 due to acceleration generated in the vehicle 10, the occupant P1's occupant P1's head P1B is reliably supported by the main body 25.

[0039] For example, when occupant P1 moves switch 23 in the predetermined direction, the electric motor 31 rotates forward, and the base 36 and plate-shaped portion 37 move relative to the electric motor 31 backward. As a result, the base 36 and plate-shaped portion 37 move to the rear end position shown in Figure 4, for example. In this case, as shown in Figure 4, when occupant P1 is not seated in the seat device 15, the front-to-back distance between the front of the upholstery material 48 and the plate-shaped portion 37 is large. That is, a large clearance in the front-to-back direction is formed between the front of the upholstery material 48 and the plate-shaped portion 37. Therefore, as shown in Figures 6 and 7, when force is applied from the back of the head P1B to the front of the upholstery material 48, the back of the head P1B is more likely to move towards the inside (rear side) of the main body 25. Therefore, in this case, for example, when the seat back 17 is tilted backward and the occupant P1's head P1B is pressed against the front of the upholstery material 48, the upholstery material 48, cushioning material 47, and main body 41 support the occupant P1's head P1B so that the occupant P1 can easily feel comfortable.

[0040] Furthermore, as shown in Figure 7, the left end fixing part 44 and the right end fixing part 45 are fixed to the frame 27, and the left and right sides of the main body part 41 support both sides of the occipital region P1B via the surface material 48 and cushioning material 47. Therefore, when the head P1A moves laterally relative to the headrest 20 due to vehicle vibration or the like, both sides of the occipital region P1B are reliably supported by the main body part 25.

[0041] Furthermore, as shown in Figure 6, the upper end fixing portion 42 and the lower end fixing portion 43 are fixed to the frame 27, and the upper and lower parts of the main body portion 41 support the upper and lower parts of the occipital region P1B via the skin material 48 and cushioning material 47. Therefore, compared to the case where the upper and lower parts of the main body portion 41 are not supported by the frame 27, the occipital region P1B is reliably supported by the main body portion 25.

[0042] Next, a headrest 20A according to the second embodiment of the present invention will be described with reference to Figure 8. Note that the same reference numerals are used for the same components as in the first embodiment, and their detailed descriptions are omitted.

[0043] The fabric material 40A of the headrest 20A in the second embodiment is molded from the same material as the fabric material 40, and has a main body portion 41, a left end fixing portion 44 and a right end fixing portion 45, but does not have an upper end fixing portion 42 and a lower end fixing portion 43.

[0044] Therefore, in the second embodiment as well, when the occupant P1's head P1A leans against the front of the surface material 48 of the main body 25, the left and right sides of the fabric material 40A (main body 41) support both sides of the occupant's head P1B via the surface material 48 and the cushioning material 47. As a result, when the head P1A moves laterally relative to the headrest 20A due to vehicle vibration or the like, both sides of the occupant's head P1B are reliably supported by the main body 25.

[0045] Next, a headrest 20B according to a third embodiment of the present invention will be described using Figures 9 and 10. Note that the same reference numerals are used for the same components as in the first embodiment, and detailed descriptions are omitted.

[0046] In the headrest 20B of the third embodiment, the portion of the fabric material 40 located above the center of the main body portion 41 is fixed to the upper part 37U of the front surface of the plate-shaped portion 37. Therefore, the shape and tension of the fabric material 40 when the occupant P1 is not seated in the seat device 15 are different from those of the fabric material 40 in the first embodiment.

[0047] As shown in Figure 10, in the third embodiment, when the occupant P1's head P1A leans against the front of the skin material 48 of the main body 25, the contact area between the lower part P1C of the occupant's head P1B and the main body 41 becomes larger than in the first embodiment. Therefore, the skin material 48, cushioning material 47, and fabric material 40 can more easily support the lower part P1C of the occupant's head P1B in a stable state.

[0048] Next, the headrest 20C according to the fourth embodiment of the present invention will be described with reference to Figures 11 and 12. Note that the same reference numerals are used for the same components as in the first embodiment, and detailed descriptions are omitted.

[0049] The headrest 20C of the fourth embodiment differs from that of the first embodiment in the configuration of the drive mechanism 55. The drive mechanism 55 is a manual drive mechanism and does not include an electric motor 31. The drive mechanism 55 comprises a base member 56, a cylindrical support member 58, a slider 60, a support pin 62, a first link 64, a support member 66, a support pin 68, a second link 70, a support pin 72, an operating lever 74, and a support pin 76.

[0050] A flat plate-shaped base member 56 is fixed to the front of the rear of the frame 27. The rear ends of a cylindrical support member 58 and a support member 66 are fixed to the front of the base member 56. The cylindrical support member 58 is substantially parallel to the front-rear direction and has an opening on its front end face. Furthermore, an elongated hole 59 is formed on the side of the cylindrical support member 58, connecting the outer circumferential space of the cylindrical support member 58 with the internal space of the cylindrical support member 58. The front end of the slider 60, which is substantially parallel to the front-rear direction, is fixed to the rear end face of the base 36. Furthermore, the rear of the slider 60 is slidably inserted into the internal space of the cylindrical support member 58 through the opening on the front end face of the cylindrical support member 58. Furthermore, one end of a support pin 62, which is parallel to the left-right direction, is fixed to the side of the slider 60, and the other end of the support pin 62 is located on the outer circumferential side of the cylindrical support member 58 via the elongated hole 59.

[0051] One end of a support pin 68, parallel to the support pin 62, is fixed to the middle portion of the support member 66. The support pin 68 rotatably supports the middle portion of the first link 64. Furthermore, a part of the first link 64 located on the outer circumference of the cylindrical support member 58 is rotatably supported by the support pin 62. One end of a support pin 72, parallel to the support pin 62, is fixed to the lower part of the first link 64. Furthermore, the support pin 72 rotatably supports the second link 70. A roughly L-shaped operating lever 74 is fixed to the end of the second link 70 opposite to the support pin 72. The operating lever 74 has a connecting portion 74A fixed to the second link 70, and a gripping portion 74B extending from the end of the connecting portion 74A opposite to the second link 70 and perpendicular to the connecting portion 74A. A portion of the operating lever 74 is inserted into a through hole 78 formed in the lower part of the frame 27, cushioning material 47, and surface material 48, and the lower end of the connecting portion 74A and the gripping portion 74B are located below the lower part of the surface material 48. A bracket (not shown) is fixed to the lower surface of the surface material 48, and one end of a support pin 76 parallel to the support pin 62 is fixed to this bracket. Furthermore, the connection portion between the connecting portion 74A and the gripping portion 74B is rotatably supported by the support pin 76.

[0052] The crew member can rotate the operating lever 74 around the support pin 76 while gripping the gripping portion 74B. Furthermore, the bracket is provided with a stopper mechanism. When the crew member applies an external force to the operating lever 74, the operating lever 74 rotates around the support pin 76. When the external force applied by the crew member to the operating lever 74 is removed, the stopper mechanism fixes the rotational position of the operating lever 74.

[0053] As shown in Figures 11 and 12, when the occupant rotates the operating lever 74 while gripping the gripping portion 74B, the first link 64 rotates around the support pin 68, and the slider 60 slides in the front-rear direction relative to the cylindrical support member 58. At this time, the support pin 62 rotates around the support pin 68, but a clearance is formed between the inner surface of the elongated hole 59 and the outer surface of the support pin 62 to prevent them from coming into contact. As a result, the base portion 36 moves relative to the cylindrical support member 58 in the front-rear direction. Therefore, the headrest 20C of the fourth embodiment can exhibit the same effects as the headrest 20 of the first embodiment.

[0054] Next, the headrest 20D according to the fifth embodiment of the present invention will be described with reference to Figures 13 and 14. Note that the same reference numerals are used for the same components as in the fourth embodiment, and detailed descriptions are omitted.

[0055] The headrest 20D of the fifth embodiment differs from that of the fourth embodiment in the configuration of the drive mechanism 80. The drive mechanism 80 is a manual drive mechanism and does not include an electric motor 31. The drive mechanism 80 comprises a slider 60, a base member 81, a cylindrical support member 83, a compression coil spring 85, a damper rubber (rubber member) 89, a switching member 93, a retaining member 95, and a gripping part 97.

[0056] A flat plate-shaped base member 81 is fixed to the front of the rear of the frame 27. The rear end of a cylindrical support member 83 is fixed to the front of the base member 81. The cylindrical support member 83 is substantially parallel to the front-rear direction, and openings are provided on its front and rear ends. The rear of the slider 60 is slidably inserted into the internal space of the cylindrical support member 83 through the opening on the front end of the cylindrical support member 83. Furthermore, a compression coil spring 85 is provided in the internal space of the cylindrical support member 83, with its axis extending in the front-rear direction. The rear end of the compression coil spring 85 is fixed to the base member 81, and the front end of the compression coil spring 85 is fixed to the rear end surface of the slider 60. The rear end surface of a cylindrical damper rubber 89 is fixed to the front end surface of the slider 60. The slider 60, the compression coil spring 85, and the damper rubber 89 are substantially coaxial with each other. A locking hole 88 is provided in the middle of the slider 60, which penetrates the slider 60 in the vertical direction.

[0057] Through holes 91 are formed in the lower parts of the frame 27, cushioning material 47, and surface material 48. Furthermore, a support mechanism (not shown) fixed to the lower part of the frame 27 is provided in the internal space of the frame 27. The support mechanism supports a switching member 93 that is substantially parallel to the vertical direction so that it can slide in the vertical direction. The lower part of the switching member 93 passes through the through holes 91 and is located below the lower part of the surface material 48. A retaining member 95 is fixed to the middle part of the switching member 93. When viewed along the axis of the switching member 93, the outer surface of the retaining member 95 is located on the outer side of the through holes 91. Furthermore, a gripping portion 97, which is an annular member, is fixed to the lower end of the switching member 93.

[0058] When no external force other than the biasing force of the compression coil spring 85 acts on the movable body 35 and the slider 60, the movable body 35 is positioned at the front end due to the biasing force of the compression coil spring 85, as shown in Figure 13. When the movable body 35 is at the front end, the lock hole 88 and the through hole 91 of the slider 60 are coaxial. Therefore, when the switching member 93 moves to the locked position shown in Figure 13, the upper end of the switching member 93 enters the lock hole 88. As a result, the drive mechanism 80 enters a locked state in which the movable body 35 and the slider 60 cannot move in the front-rear direction relative to the cylindrical support member 83, and the compression coil spring 85 cannot be elastically deformed. On the other hand, when the occupant moves the switching member 93 downward using the gripping part 97, the switching member 93 moves to the unlocked position shown in Figure 14, and the upper end of the switching member 93 escapes from the lock hole 88. Therefore, the drive mechanism 80 enters an unlocked state in which the movable body 35 and the slider 60 can move in the front-rear direction relative to the cylindrical support member 83.

[0059] When the occupant P1's occupant P1's head P1B pushes backward against the approximate center of the front part of the surface material 48 of the headrest 20D while the drive mechanism 80 is locked, the front part of the surface material 48 indents backward, and the occupant P1B is supported by the surface material 48, the cushion material 47, and the main body 41. As a result, the occupant P1's occupant P1's head P1B is reliably supported by the main body 25. Furthermore, the damper rubber 89 exerts a damping effect even when the drive mechanism 80 is locked. As a result, the damper rubber 89 can absorb minute vibrations generated in the vehicle 10. One example of such minute vibrations is the vibration caused by the idling of the vehicle 10's engine.

[0060] On the other hand, when the occupant P1's occupant P1B pushes backward against the approximate center of the front part of the surface material 48 of the headrest 20D, which is in the unlocked state of the drive mechanism 80, the compression coil spring 85 is compressed by the force transmitted from the occupant P1B to the plate-shaped part 37 via the surface material 48, cushion material 47, and main body 41, causing the plate-shaped part 37 to move backward. In other words, the occupant P1B, which is in contact with the front part of the surface material 48, moves to the inside (rear side) of the main body 25.

[0061] Furthermore, when the head P1A moves in the longitudinal direction relative to the headrest 20D due to longitudinal acceleration generated in the vehicle 10, the compression coil spring 85 elastically deforms, causing the longitudinal position of the plate-shaped portion 37 to change according to the position of the occupant's head P1B. That is, the plate-shaped portion 37 follows the change in position of the occupant's head P1B. Furthermore, when the occupant's head P1B exerts force on the plate-shaped portion 37 through the front surface of the surface material 48, the compression coil spring 85 elastically deforms, absorbing the force exerted from the occupant's head to the surface material. Furthermore, when the occupant's head P1B exerts force on the plate-shaped portion 37 through the front surface of the surface material 48, the damper rubber 89 exerts a damping effect. As a result, when the headrest 20D supports the occupant's head P1B, the occupant P1 is more likely to feel comfortable.

[0062] Although embodiments of the present invention have been described above, the present invention is not limited to the above embodiments.

[0063] For example, at least one of the frame 27 and the movable body 35 may be made of a material other than resin. For example, at least one of the frame 27 and the movable body 35 may be made of metal.

[0064] When the plate-like portion 37 is located at the front end position, the front surface of the plate-like portion 37 may be on the same plane as the front end surface of the frame 27.

[0065] The fabric materials 40 and 40A may be elastic fabric materials that are not mesh-like.

[0066] The fabric materials 40, 40A, and 40B do not need to be elastic. [Explanation of Symbols]

[0067] 15. Vehicle seating system (seat system) 20 20A 20B 20C 20D Headrest 27 Frame 30 Drive mechanism 31 Electric motor (actuator) 35 Mobile Unit 40 40A Cloth material 48 Skin material 55 Drive mechanism 80 Drive mechanism 85 Compression coil spring 89. Damper rubber (rubber component) 93 Switching member

Claims

1. A hollow frame with the front of the seat open in the front-to-back direction, A movable body provided inside the frame, which is movable relative to the frame in the front-rear direction of the sheet, A drive mechanism capable of generating a driving force to move the movable body relative to the frame in the seat front-rear direction, A flexible fabric material, the left and right sides of which are fixed to the frame and a portion of the rear surface which is fixed to the front surface of the movable body, A surface material that covers the front surface of the frame and has flexibility in the portion facing the fabric material in the front-to-back direction of the seat, A headrest for a vehicle seat system equipped with [a specific feature / feature].

2. The headrest of a vehicle seat device according to claim 1, wherein the fabric material is elastic.

3. The headrest of a vehicle seat device according to claim 1 or claim 2, wherein the upper and lower parts of the fabric material are fixed to the frame.

4. The headrest of a vehicle seat device according to claim 1 or claim 2, wherein the drive mechanism comprises an actuator that generates the driving force.

5. The aforementioned drive mechanism, A compression coil spring that expands and contracts in the seat-front-rear direction receives the force of movement of the moving body when the moving body moves in the seat-front-rear direction, When the moving body moves in the front-rear direction of the seat, the compression coil spring and rubber members aligned in the front-rear direction of the seat receive the moving force from the moving body, A headrest for a vehicle seat device according to claim 1 or claim 2, comprising the above.

6. The aforementioned drive mechanism, The headrest of a vehicle seat device according to claim 5, further comprising a switching member that switches the drive mechanism between an unlocked state, which allows the moving force to be transmitted to the compression coil spring, and a locked state, which restricts the transmission of the moving force to the compression coil spring.

Citation Information

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