Vehicular seat

The vehicle seat design addresses the issue of foreign body sensations by coupling the headrest frame to the rear surface of a movable frame within the seat, ensuring a comfortable seating experience.

JP2025091406APending Publication Date: 2025-06-18TS TECH CO LTD
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Patent Information

Application Number
JP2024213742
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-12-06
Filing Date
2024-12-06
Publication Date
2025-06-18

AI Technical Summary

Technical Problem

In existing vehicle seats, the headrest attachment portion protrudes forward, potentially causing a foreign body sensation for the seated person.

Method used

A vehicle seat design where the headrest frame is coupled to the rear surface of a movable frame that is rotatably coupled to the base frame, preventing the connection portion from protruding forward.

Benefits of technology

This design allows for the connection of a headrest frame without causing a foreign body sensation, enhancing user comfort by eliminating protrusions that could irritate the seated person.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a vehicular seat that comprises a base frame and a movable frame which can be inclined with respect to the base frame, which enables a headrest frame to be connected to the movable frame, while preventing a feeling of a foreign body from being given to a seated person.SOLUTION: In a vehicular seat 1, a seat back frame 5 has a base frame 11 and a movable frame 12 turnably joined to the base frame. The base frame comprises a pair of base side members 14 extending in a vertical direction. The movable frame has a pair of left and right side members 38 turnably joined to the base members respectively with a turning shaft X extending in a lateral direction as a center, and a movable upper member 39 connecting upper ends of movable side members to each other. A headrest frame is supported on the movable frame and the head rest frame is joined to a rear surface of the movable frame.SELECTED DRAWING: Figure 2
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Description

Technical Field

[0001] The present invention relates to a vehicle seat, and more particularly to a vehicle seat in which the upper part is tiltable in the front-rear direction with respect to the lower part of the seat back frame.

Background Art

[0002] Patent Document 1 discloses a vehicle seat including a seat back frame and a middle folding frame tiltably connected to the seat back frame. A pair of headrest attachment portions for supporting a headrest are provided on the front surface of the middle folding frame.

Prior Art Documents

Patent Documents

[0003]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0004] In the vehicle seat described in Patent Document 1, the headrest attachment portion is coupled to the front surface of the middle folding frame and protrudes forward from the front surface of the middle folding frame. Therefore, there is a risk that the seated person may feel a foreign body sensation due to the headrest attachment portion or the legs of the headrest frame.

[0005] In view of the above background, an object of the present invention is to provide a vehicle seat including a base frame and a movable frame tiltable with respect to the base frame, capable of connecting a headrest frame to the movable frame while preventing a foreign body sensation from being given to a seated person.

Means for Solving the Problems

[0006] In order to solve the above problems, an aspect of the present invention is a vehicle seat (1), wherein a seat back frame (5) constituting the skeleton of the seat back (5) includes a base frame (11) and a movable frame (12) rotatably coupled about a rotation axis extending left and right with respect to the base frame. The base frame includes a pair of base side members (14) extending in the vertical direction, and the movable frame includes a pair of left and right movable side members (38) rotatably coupled to the base side members about a rotation axis (X) extending left and right, respectively, and a movable upper member (39) connecting the upper ends of the movable side members. A headrest frame is supported by the movable frame, and the headrest frame is coupled to the rear surface of the movable frame.

[0007] According to this aspect, the headrest frame is coupled to the rear surface of the movable frame. Thereby, since the connection portion of the headrest frame to the movable frame does not protrude forward of the movable frame, it is possible to provide a vehicle seat capable of connecting the headrest frame to the movable frame while preventing a foreign body sensation from being given to the seated person.

[0008] In the above aspect, preferably, each of the movable side members includes a side portion (41) extending in the vertical direction and a shoulder portion (42) extending upward and inclined inward of the seat from the upper end of the side portion, bending upward at a bent portion and further extending upward. The headrest frame includes a pair of vertical portions (65) arranged at intervals in the left and right directions and a horizontal portion (66) extending in the left and right directions and connecting the upper ends of the vertical portions. The vertical portions are coupled to the bent portions at their lower ends.

[0009] According to this aspect, the headrest frame can be coupled to a portion of the movable frame having high rigidity.

[0010] In the above aspect, preferably, the base frame extends in the left - right direction and includes a base upper member (15) that connects the upper ends of the base side members. On the front surface of the base upper member, a recessed portion (105) that recesses rearward is formed behind the vertical portion.

[0011] According to this aspect, a space for accommodating functional components can be formed on the front surface of the base upper member.

[0012] In the above aspect, preferably, an actuator (98) is provided for rotating the movable frame with respect to the base frame by approaching and separating the upper part of the base frame and the upper part of the movable frame. The actuator connects the front surface of the base upper member and a portion between the two bent portions of the movable frame.

[0013] According to this aspect, the connection portion between the actuator and the movable frame can be arranged at a position closer to the center of the seat in the left - right direction. Thereby, the actuator can stably rotate the movable frame.

[0014] In the above aspect, preferably, the vertical portion includes a headrest side portion (68) that is coupled to the bent portion and extends upward, and a headrest shoulder portion (69) that extends upward and obliquely inward from the upper end of the headrest side portion and bends upward at a headrest bent portion (70). The connection portion between the actuator and the movable frame is located between the headrest bent portions in a front view.

[0015] According to this aspect, the connection portion between the actuator and the movable frame can be arranged at a position closer to the center of the seat in the left - right direction. Thereby, the actuator can stably rotate the movable frame.

[0016] In the above aspect, preferably, the base side member is provided with a rotation bracket (40) for rotatably coupling the movable side member, and when the upper portion of the movable side member rotates until it is located at the most rearward position, in a top view, the shoulder portion is located behind the rotation bracket.

[0017] According to this aspect, the position of the movable frame when it tilts most rearward can be set to an appropriate position.

[0018] In the above aspect, preferably, a pressure receiving member (74) for supporting the back of the seated person is provided, the pressure receiving member is supported on each of the movable side members via a bridging member (87), the movable side member is provided with an attachment member (90) for attaching the bridging member, and when the upper portion of the movable side member rotates until it is located at the most rearward position, in a top view, the shoulder portion is located in front of the attachment member.

[0019] According to this aspect, the position of the movable frame when it tilts most rearward can be set to an appropriate position.

Advantages of the Invention

[0020] One aspect of the present invention is a vehicle seat (1), wherein a seat back frame (5) constituting the skeleton of the seat back (5) has a base frame (11) and a movable frame (12) rotatably coupled about a rotation axis extending left and right with respect to the base frame. The base frame includes a pair of base side members (14) extending in the vertical direction, and the movable frame has a pair of left and right movable side members (38) rotatably coupled to the base side members about a rotation axis (X) extending left and right, respectively, and a movable upper member (39) connecting the upper ends of the movable side members. A headrest frame is supported on the movable frame, and the headrest frame is coupled to the rear surface of the movable frame.

[0021] According to this aspect, the headrest frame is coupled to the rear surface of the movable frame. Thereby, since the connection portion of the headrest frame to the movable frame does not protrude forward of the movable frame, it is possible to provide a vehicle seat capable of connecting the headrest frame to the movable frame while preventing a foreign body sensation from being given to the seated person.

[0022] In the above aspect, preferably, each of the movable side members includes a side portion (41) extending in the vertical direction, and a shoulder portion (42) extending upward and inclined inward of the seat from the upper end of the side portion, bending upward at a bent portion and further extending upward. The headrest frame includes a pair of vertical portions (65) arranged at intervals in the left-right direction, and a horizontal portion (66) extending in the left-right direction and connecting the upper ends of the vertical portions. The vertical portions are coupled to the bent portions at their lower ends.

[0023] According to this aspect, the headrest frame can be coupled to a portion of the movable frame having high rigidity.

[0024] In the above aspect, preferably, the base frame extends in the left-right direction and includes a base upper member (15) connecting the upper ends of the base side members. A recess (105) recessed rearward is formed on the front surface of the base upper member behind the vertical portion.

[0025] According to this aspect, a space for accommodating functional components can be formed on the front surface of the base upper member.

[0026] In the above aspect, preferably, an actuator (98) for rotating the movable frame with respect to the base frame by approaching and separating the upper portion of the base frame and the upper portion of the movable frame is provided. The actuator connects the front surface of the base upper member and a portion between the two bent portions of the movable frame.

[0027] According to this aspect, the connection portion between the actuator and the movable frame can be arranged at a position closer to the center of the seat in the left-right direction. Thereby, the movable frame can be stably rotated by the actuator.

[0028] In the above aspect, preferably, the vertical portion includes a headrest side portion (68) that is coupled to the bent portion and extends upward, and a headrest shoulder portion (69) that extends upward and obliquely inward from the upper end of the headrest side portion and bends upward at a headrest bent portion (70) and further extends upward. The connection portion between the actuator and the movable frame is located between the headrest bent portions in a front view.

[0029] According to this aspect, the connection portion between the actuator and the movable frame can be arranged at a position closer to the center of the seat in the left-right direction. Thereby, the movable frame can be stably rotated by the actuator.

[0030] In the above aspect, preferably, the base side member is provided with a rotation bracket (40) for rotatably coupling the movable side member. When the upper portion of the movable side member rotates until it is located most rearward, the shoulder portion is located behind the rotation bracket in a top view.

[0031] According to this aspect, the position of the movable frame when it tilts most rearward can be set to an appropriate position.

[0032] In the above aspect, preferably, a pressure receiving member (74) for supporting the back of the seated person is provided. The pressure receiving member is supported on each of the movable side members via a bridging member (87). The movable side member is provided with a mounting member (90) for attaching the bridging member. When the upper portion of the movable side member rotates until it is located most rearward, the shoulder portion is located in front of the mounting member in a top view.

[0033] According to this aspect, the position of the movable frame when it tilts backward most can be set to an appropriate position.

Brief Description of the Drawings

[0034]

Figure 1

Figure 2

Figure 3

Figure 4

Figure 5

Figure 6

Figure 7

Figure 8

Figure 9

Figure 10

Figure 11

Figure 12

Figure 13

Figure 14

Embodiment for Carrying out the Invention

[0035] Hereinafter, with reference to the drawings, an embodiment in which the vehicle seat according to the present invention is applied to an automobile seat will be described. In the following description, the left and right are defined based on the occupant sitting on the seat.

[0036] In addition, the direction toward the center in the left - right direction (also referred to as the seat width direction) of the seat in a front view is described as the inner side of the seat (or the inside of the seat). Further, the direction away from the center in the left - right direction of the seat is described as the outer side of the seat (or the outside of the seat).

[0037] <Overall Configuration of the Seat> As shown in FIG. 1, the vehicle seat (hereinafter, seat 1) is placed on a floor 3 that defines the bottom of a passenger compartment 2 (also referred to as a vehicle compartment) of an automobile. The seat 1 has a seat cushion 4 provided on the floor 3, a seat back 5 extending upward from the rear of the seat cushion 4, and a headrest 6 provided on the upper part of the seat back 5. The seat cushion 4 constitutes a seating surface 4S and supports the buttocks of the seated person. The seat back 5 constitutes a backrest surface 5S facing forward and supports the back of the seated person. The headrest 6 is arranged behind the head of the seated person. The seat cushion 4 may be supported by the floor 3 via a slide device (not shown) so as to be slidable back and forth.

[0038] The seat back 5 includes a base portion 8 that constitutes the lower half of the backrest surface 5S and a movable portion 9 that constitutes the upper half of the backrest surface 5S. The movable portion 9 passes through its lower part and is connected and supported to the base portion 8 so as to be rotatable about a rotation axis X (also referred to as a pivot axis) extending in the left - right direction. Thereby, the upper half of the backrest surface 5S is configured to be tiltable with respect to the lower half. In the present embodiment, the headrest 6 is fixed to the upper part of the movable portion 9.

[0039] In Seat 1, the upper half of the backrest surface 5S is configured to be tiltable with respect to the lower half, and the central portion of the seat back 5 can be bent. Therefore, the seat back 5 of Seat 1 is also referred to as a center-fold seat back. Hereinafter, the position of the movable part 9 when the upper part of the movable part 9 is tilted most backward is described as the upright position (also referred to as the rear tilt position), and the movable part 9 rotates about the rotation axis X from the upright position, and the position of the movable part 9 when its upper part is tilted most forward is described as the forward tilt position.

[0040] The seat cushion 4 includes a seat cushion frame (not shown) that forms a skeleton, a pad member (not shown) supported by the seat cushion frame, and a skin material (not shown) that covers at least a part of the surface of the pad member. The pad member that constitutes the seat cushion 4 is formed of an elastic cushion material such as polyurethane foam, and the skin material that covers the pad member is preferably formed of genuine leather, synthetic leather, fabric, or the like. The seat cushion 4 is configured by covering the seat cushion frame with the pad member and the skin material.

[0041] The seat back 5 includes a seat back frame 10 that forms a skeleton, a pad member (not shown) supported by the seat back frame 10, and a skin material (not shown) that covers at least a part of the surface of the pad member. So that the seat back 5 can be easily bent, the pad member may be configured separately for the upper half that constitutes the movable part 9 and the lower half that constitutes the base part 8, or the upper half that constitutes the movable part 9 and the lower half that constitutes the base part 8 may be integrally configured. Similarly, the skin material may be configured separately for the upper half that constitutes the movable part 9 and the lower half that constitutes the base part 8.

[0042] Next, the details of the seat back frame 10 will be described.

[0043] As shown in Fig. 2, the seat back frame 10 includes a base frame 11 that forms the skeleton of the base portion 8, and a movable frame 12 that forms the skeleton of the movable portion 9 and is rotatably coupled to the base frame 11 about the rotation axis X. At the lower part of the base frame 11, a reclining shaft 13 to which a seat cushion frame is connected is provided.

[0044] <Base frame> As shown in Figs. 2, 3(A) and 3(B), the base frame 11 has a rectangular frame shape including a pair of left and right base side members 14, a base upper member 15, and a base lower member 16. The base side members 14 each extend in the vertical direction and are arranged at intervals in the left and right directions. The base upper member 15 extends in the left and right directions and connects the upper parts (the upper ends in this embodiment) of the two base side members 14. The base lower member 16 also extends in the left and right directions and connects the lower parts of the two base side members 14. Thereby, the base frame 11 forms a rectangular frame body when viewed from the front.

[0045] In this embodiment, as shown in Fig. 3(B), the base frame 11 includes two base middle members 17 that connect the central portions in the vertical direction of the left base side member 14 and the central portions in the vertical direction of the right base side member 14. The two base middle members 17 are arranged at intervals in the vertical direction. Hereinafter, the upper base middle member 17 is referred to as the upper middle member 17U, and the lower base middle member 17 is referred to as the lower middle member 17D. The central portion in the left and right direction of the upper middle member 17U and the central portion in the left and right direction of the base upper member 15 are connected by a central member 18.

[0046] In addition, each of the base side members 14 is provided with a plate-like side edge portion 19 that extends from the rear end into the seat and has a front-facing surface. The front surface of the side edge portion 19 and the wall surface inside the seat of the base side member 14 are connected at a substantially right angle when viewed from above.

[0047] As shown in FIGS. 4, 5(A) and 5(B), the base frame 11 includes a front panel 20 (also referred to as a front member or a front frame) and a rear panel 21 (also referred to as a rear member or a rear frame).

[0048] As shown in FIG. 5(A), the front panel 20 has a rectangular frame shape formed by a bent sheet metal member. The front panel 20 constitutes the seating side of the base frame 11 and receives the load of the occupant. As shown in FIG. 5(B), the rear panel 21 also has a rectangular frame shape formed by a bent sheet metal member. The rear panel 21 is disposed at a position facing the front panel 20 and constitutes the side of the base frame 11 away from the seated person.

[0049] As shown in FIG. 6, the rear panel 21 has an outer frame portion 21A that constitutes the seat outer surface of the base side member 14, a first extending portion 21B that extends from the front edge of the outer frame portion 21A into the seat interior, and a second extending portion 21C that extends from the rear edge of the outer frame portion 21A into the seat interior. The front panel 20 has an inner frame portion 20A that constitutes the seat inner portion of the base side member 14, a third extending portion 20B that extends from the front edge of the inner frame portion 20A to the outside of the seat, and a fourth extending portion 20C that extends from the front edge of the inner frame portion 20A into the seat interior. The inner frame portion 20A and the outer frame portion 21A are opposed to each other and are disposed at a spaced-apart position. The first extending portion 21B and the third extending portion 20B are overlapped, and the second extending portion 21C and the fourth extending portion 20C are overlapped and joined (by welding in this embodiment), whereby the rear panel 21 is joined to the front panel 20 at the edge. The rear panel 21 cooperates with the front panel 20 to form a closed cross-sectional structure P. Thereby, a cavity 22 is formed in the base frame 11, and the base frame 11 is configured to be hollow.

[0050] In this embodiment, the second extension portion 21C connects the left and right outer frame portions 21A in part, and the fourth extension portion 20C also connects the inner frame portion 20A in part. The base middle member 17 is formed by overlapping and joining the second extension portion 21C and the fourth extension portion 20C. The center member 18 (specifically, the vertical center portion of the center member 18) is mainly composed of only the rear panel 21.

[0051] <Airbag module> As shown in FIGS. 3(A) and 3(B), two airbag modules 24 are coupled to the base frame 11. One airbag module 24 is coupled to the outer side (left side in this embodiment) of the side surface of the base frame 11 (base side member 14). Thus, the airbag module 24 coupled to the outer side of the base frame 11 constitutes the outer airbag module 24L.

[0052] The other airbag module 24 is coupled to the inner side (right side in this embodiment) of the base frame 11 (base side member 14). Thus, the airbag module 24 coupled to the inner side of the base frame 11 constitutes the inner airbag module 24R including the near-side airbag.

[0053] The outer airbag module 24L and the inner airbag module 24R are respectively located on the left and right sides of the movable frame 12 and are coupled to the outer side surface of the seat of the rear panel 21. Thus, the airbag modules 24 are provided on both the left and right outer side surfaces of the seat of the base frame 11. Therefore, the airbag 25 can be deployed on both sides outside the seat of the seated person, enhancing the safety of the seat 1.

[0054] <Airbag module - Bolt hole - Access hole> As shown in FIG. 6, the airbag module 24 includes an airbag 25, an inflater 26 that inflates the airbag 25 by introducing gas into the airbag 25, and a case 27 that houses the airbag 25 and the inflater 26. A retainer 28 is provided on the side surface of the airbag module 24 on the inner side of the seat. The inflater 26 is provided with a plurality of stud bolts 29. The stud bolts 29 penetrate through the bottom wall of the case 27 located on the inner side of the seat and the retainer 28, and protrude to the inner side of the seat.

[0055] As shown in FIGS. 4 and 5(B), fastening holes 30 for passing the stud bolts 29 are provided in the outer frame portion 21A of the rear panel 21. The stud bolts 29 are respectively inserted into the corresponding fastening holes 30, and nuts 31 are coupled thereto, whereby the airbag module 24 is fastened to the side surface of the base side member 14 on the outer side of the seat (that is, the side surface of the rear panel 21 on the outer side of the seat). Hereinafter, the joint portion of the rear panel 21 with the outer airbag module 24L on the outer side will be described as a rear joint portion 32. In the present embodiment, the rear joint portion 32 is constituted by the fastening holes 30.

[0056] As shown in FIGS. 2 and 5(A), the front panel 20 is provided with access holes 33 which are through holes for accessing the fastening holes 30 from the inner side of the seat.

[0057] As shown in FIG. 4, at least one (preferably both) of the width in the front-rear direction and the width in the vertical direction of the access hole 33 is configured to be larger than that of the fastening hole 30, and the area of the opening portion of the access hole 33 is formed to be larger than the area of the opening portion of the fastening hole 30. Thereby, since an operator can easily pass the nut 31 and tools through the access hole 33, the assembling workability of the airbag module 24 can be improved.

[0058] In this embodiment, two stud bolts 29 are provided in each airbag module 24. Further, four fastening holes 30 are arranged vertically side by side in one base side member 14 so that the airbag module 24 can be assembled at two vertical positions (hereinafter, the upper position and the lower position). Hereinafter, the four fastening holes 30 will be described in order from the top as the first fastening hole 30A, the second fastening hole 30B, the third fastening hole 30C, and the fourth fastening hole 30D.

[0059] When the stud bolts 29 are respectively inserted into and fastened to the first fastening hole 30A and the third fastening hole 30C, the airbag module 24 is assembled to the base side member 14 at the upper position. On the other hand, when the stud bolts 29 are respectively inserted into and fastened to the second fastening hole 30B and the fourth fastening hole 30D, the airbag module 24 is assembled to the base side member 14 at the lower position.

[0060] Therefore, two access holes 33 are provided in the inner frame portion 20A of the front panel 20, namely, an upper access hole 33A disposed inside the seat of the first fastening hole 30A and the second fastening hole 30B, and a lower access hole 33B disposed inside the seat of the third fastening hole 30C and the fourth fastening hole 30D. The upper access hole 33A and the lower access hole 33B are formed vertically side by side in the front panel 20.

[0061] As shown in FIG. 4, the upper access hole 33A is formed so as to overlap the first fastening hole 30A and the second fastening hole 30B in a side view. The upper edge of the upper access hole 33A is located above the upper edge of the first fastening hole 30A, and the lower edge of the upper access hole 33A is located below the lower edge of the second fastening hole 30B.

[0062] The lower access hole 33B is formed so as to overlap the third fastening hole 30C and the fourth fastening hole 30D in a side view. The upper edge of the lower access hole 33B is located above the upper edge of the third fastening hole 30C, and the lower edge of the lower access hole 33B is located below the lower edge of the fourth fastening hole 30D.

[0063] <Bead> As shown in FIGS. 2 and 5(A), a bead 35 is provided in the vicinity of the access hole 33 of the front panel 20. The bead 35 functions as a rigidity improving portion that enhances the rigidity of the vicinity of the access hole 33 of the front panel 20. In the present embodiment, the bead 35 is provided at a corner portion 36, which is behind the two access holes 33 and is a connecting portion between the side edge portion 19 and the base side member 14 (inner frame portion 20A). The bead 35 forms a protruding ridge at the corner portion 36. The bead 35 may be formed by being pushed out (bent) in a direction in which the front panel 20 inclines forward toward the inside of the sheet at the corner portion 36.

[0064] FIG. 7(A) shows an enlarged view of the vicinity of the bead 35 of the front panel 20. As shown in FIG. 7(A), one bead 35 is provided at the corner portion 36 of the front panel 20 so as to extend in the vertical direction. The upper end of the bead 35 is located below the upper end of the upper access hole 33A. The lower end of the bead 35 is located below the lower end of the lower access hole 33B.

[0065] However, the number, shape, and arrangement of the beads 35 are not limited to the mode shown in FIG. 7(A). FIGS. 7(B) to (D) show modified examples of the number, shape, and arrangement of the beads 35.

[0066] In the example shown in FIG. 7(B), one bead 35 is provided at the corner portion 36 so as to extend in the vertical direction. The upper end of the bead 35 is located above the upper end of the upper access hole 33A. The lower end of the bead 35 is located below the lower end of the lower access hole 33B.

[0067] In the example shown in FIG. 7(C), one bead 35 is provided at the corner portion 36 so as to extend in the vertical direction. The upper end of the bead 35 is located above the upper end of the upper access hole 33A. The lower end of the bead 35 is located above the lower end of the lower access hole 33B.

[0068] In the example shown in FIG. 7(D), a plurality of beads 35 are arranged side by side in the vertical direction. The beads 35 may be arranged at equal intervals in the vertical direction. The upper end of the bead 35 located at the uppermost side is positioned above the upper access hole 33A. The lower end of the bead 35 located at the lowermost side is positioned below the lower access hole 33B.

[0069] In FIGS. 7(A) to 7(D), the beads 35 provided on the outer vehicle base side member 14 are shown, but beads 35 having shapes corresponding to the respective examples may be provided on the inner vehicle base side member 14. Note that the beads 35 provided on the outer vehicle base side member 14 and the beads 35 provided on the inner vehicle base side member 14 may have the same (symmetrical) shape, or one may be formed to be longer than the other. Also, in the example shown in FIG. 7(D), the number of beads 35 provided on the outer vehicle base side member 14 and the number of beads 35 provided on the inner vehicle base side member 14 may be different.

[0070] As shown in FIG. 6, the front panel 20 may be coupled to the rear panel 21 at a position avoiding the beads 35. Thereby, the front panel 20 and the rear panel 21 can be easily coupled. Note that for the coupling between the front panel 20 and the rear panel 21, various known methods such as joining by laser welding or bolt fastening can be employed.

[0071] On the other hand, the front panel 20 may be coupled to the rear panel 21 at a position overlapping the beads 35. Thereby, the front panel 20 can be coupled to the rear panel 21 at a highly rigid portion.

[0072] <Movable frame> As shown in FIGS. 2, 8, and 9, the movable frame 12 includes a pair of left and right movable side members 38 and a movable upper member 39. The movable side members 38 are spaced apart left and right and extend in the vertical direction respectively. The movable upper member 39 extends in the left-right direction and connects the upper portions of the two movable side members 38. Each of the movable side members 38 is rotatably coupled to the base side member 14 about a rotation axis X via a rotation bracket 40 (also referred to as a mounting member) at its lower end. Thus, as can be understood from FIGS. 2 and 9, the movable frame 12 is rotatably coupled (i.e., tiltably) to the base frame 11 about the rotation axis X.

[0073] In this embodiment, the movable frame 12 is formed of a bent pipe material, but is not limited to this mode and may be formed of one or more sheet metal members.

[0074] Specifically, as shown in FIG. 9, each of the movable side members 38 has a movable member side portion 41 constituting the lower portion and a movable member shoulder portion 42 constituting the central and upper portions. The movable member side portions 41 extend in the vertical direction respectively. Each of the movable member side portions 41 is rotatably connected about the rotation axis X via a rotation bracket 40 inside the seat of the base side member 14 at its lower end. The movable member shoulder portions 42 are respectively connected to the upper ends of the movable member side portions 41. The movable member shoulder portions 42 extend obliquely upward from the upper ends of the movable member side portions 41 toward the inside of the seat, then bend upward at the movable member bent portion 43, and further extend upward. The movable member shoulder portion 42 of the left movable side member 38 is connected to the left end of the movable upper member 39 at its upper end, and the movable member shoulder portion 42 of the right movable side member 38 is connected to the right end of the movable upper member 39 at its upper end.

[0075] In addition, in the present embodiment, as shown in FIG. 2, an auxiliary member 44 connected to the left and right movable side members 38 is provided on the movable frame 12. The auxiliary member 44 is formed by a bent wire and is coupled to the corresponding movable side members 38 at both the left and right ends, respectively.

[0076] As shown in FIG. 10, the rotation bracket 40 is fixed to the base frame 11 (specifically, the base side member 14), and the movable frame 12 is connected to the base frame 11 (base side member 14) so as to be rotatable about the rotation axis X (also referred to as rotatable).

[0077] The rotation bracket 40 is formed by a bent sheet metal member. The rotation bracket 40 includes a rotation bracket front portion 45 coupled to the inner side surface of the sheet of the base side member 14 on one side of the left and right, and a rotation bracket rear portion 46 extending inward from the rear edge of the rotation bracket front portion 45 and coupled to the front surface of the side edge portion 19.

[0078] The rotation bracket front portion 45 has a flat plate portion 45A and a bulging portion 45B bulging inward of the sheet. The plate portion 45A is disposed along the inner side surface of the sheet of the front panel 20 constituting the base side member 14. The bulging portion 45B is circular in side view. The bulging portion 45B is spaced apart from the inner side surface of the sheet of the front panel 20 constituting the base side member 14. Through holes 48 (see FIG. 9) are provided at the lower ends of the movable side members 38, respectively. A pin 49 (see FIG. 10) that passes through the through hole 48 and extends in the left - right direction is fixed to the bulging portion 45B. Thereby, the movable side member 38 is rotatably coupled to the pin 49 about the rotation axis X. Thereby, the movable side members 38 are each rotatably connected to the inner side surface of the sheet of the bulging portion 45B about the rotation axis X.

[0079] As shown in FIG. 9, bolt holes 50 are provided in the front part 45 and the rear part 46 of the rotating bracket, respectively. Hereinafter, the bolt hole 50 provided in the front part 45 of the rotating bracket will be referred to as the front bolt hole 50A, and the bolt hole 50 provided in the rear part 46 of the rotating bracket will be referred to as the rear bolt hole 50B.

[0080] On the wall constituting the inner side of the seat of the base side member 14 of the front panel 20, a stud bolt 52 protruding inward of the seat is provided. As shown in FIGS. 5(A) and 5(B), in the present embodiment, a first through hole 53 penetrating the wall is provided in the wall constituting the inner side of the seat of the base side member 14 of the front panel 20. The stud bolt 52 is inserted into the first through hole 53 and fixed to the front panel 20. A second through hole 54 penetrating in the plate thickness direction (front-rear direction) is provided in a portion of the first through hole 53 located on the inner side of the seat of the side edge portion 19. In the present embodiment, the second through hole 54 penetrates the front panel 20 and the rear panel 21, respectively. However, the second through hole 54 may be configured to penetrate only the front panel 20.

[0081] The stud bolt 52 is inserted into the front bolt hole 50A and the first through hole 53, and a nut 55 is coupled to the stud bolt 52, whereby the front part 45 of the rotating bracket is fastened to the side surface on the inner side of the seat of the base side member 14. A bolt 56 is inserted into the rear bolt hole 50B and the second through hole 54 and a nut 57 is coupled thereto, whereby the rear part 46 of the rotating bracket is fastened to the front surface of the side edge portion 19. Thereby, the rotating bracket 40 is fastened and fixed to the inner surface on the inner side of the seat of the front panel 20 and the side edge portion 19.

[0082] Hereinafter, the first through hole 53 and the second through hole 54, which are the coupling portions of the front panel 20 with the rotating bracket 40, will be collectively referred to as the front coupling portion 58. The rotating bracket 40 is fastened to the front coupling portion 58 of the front panel 20, and the movable frame 12 is rotatably coupled to the front coupling portion 58 via the rotating bracket 40. Two front coupling portions 58 are provided on the front panel 20.

[0083] As shown in FIG. 2, the rotating bracket 40 is located between the outer airbag module 24L and the inner airbag module 24R. The rotating bracket 40 is located above the rear coupling portion 32. Thereby, both of the two front coupling portions 58, which are the coupling portions with the movable frame 12 of the front panel 20, are located above the rear coupling portion 32. As shown in FIG. 10, the front coupling portions 58 are respectively provided in front of and behind the rear coupling portion 32. In this way, since the rotating bracket 40 is coupled to the front panel 20 before and after the rear coupling portion 32 respectively, the movable frame 12 can be firmly coupled to the front panel 20.

[0084] As shown in FIGS. 9 and 10, the rotating bracket 40 includes a flange portion 60. The flange portion 60 is formed in a plate shape extending forward from the lower edge of the rear portion 46 of the rotating bracket. The flange portion 60 is formed in a rectangular plate shape having a surface facing in the vertical direction. As shown in FIG. 10, an insertion hole 62 penetrating in the vertical direction is provided at substantially the center in the front-rear, left-right directions of the flange portion 60. In the present embodiment, the insertion hole 62 is circular in a top view.

[0085] As shown in FIG. 9, the flange portion 60 is located between the two front coupling portions 58 in the front-rear direction. That is, the front coupling portions 58 are arranged in front of and behind the flange portion 60.

[0086] <Headrest frame> As shown in FIG. 2, a headrest frame 64 is coupled to the rear surface of the movable frame 12. The headrest frame 64 is a frame for supporting or constituting the headrest 6, and in the present embodiment, it is provided for supporting the headrest 6.

[0087] As shown in FIGS. 2 and 3(A), the headrest frame 64 includes a pair of left and right vertical portions 65 spaced apart left and right, and a horizontal portion 66 extending left and right and connecting the upper edges of the vertical portions 65. The lower ends of the vertical portions 65 are respectively coupled to the movable member bending portions 43. Thereby, the headrest frame 64 is fixed to the movable side member 38.

[0088] Each of the vertical portions 65 has a headrest side portion 68 and a headrest shoulder portion 69. The headrest side portion 68 is coupled to the movable side member 38 at its end and extends upward. The headrest side portion 68 may be coupled (welded) to the movable member bending portion 43. The headrest shoulder portion 69 is coupled to the upper end of the headrest side portion 68 at its end. The headrest shoulder portion 69 extends upward and obliquely inward of the seat from the upper end of the headrest side portion 68, bends upward at the headrest bending portion 70, and further extends upward.

[0089] In this embodiment, the headrest frame 64 is constituted by a bent pipe material, but is not limited to this aspect, and may be constituted by one or more sheet metal members.

[0090] The headrest 6 is fixed to the upper part of the headrest frame 64. The headrest 6 can be constituted by a plate-like member (not shown) facing in the front-rear direction, a pad member (not shown) provided on the front surface of the plate-like member, and a skin material (not shown) covering the front surface of the pad member. By fixing the plate-like member to the headrest frame 64 at the rear surface, the headrest 6 may be coupled to the upper front surface of the headrest frame 64.

[0091] <Pressure-receiving member> As shown in Fig. 2, the seat back frame 10 is provided with a pressure-receiving member 72 for supporting the load of the seated person. The pressure-receiving member 72 includes a lower pressure-receiving member 73 provided on the base frame 11 and an upper pressure-receiving member 74 provided on the movable frame 12. The lower pressure-receiving member 73 is supported by the base frame 11, and the upper pressure-receiving member 74 is mainly supported by the movable frame 12. The upper pressure-receiving member 74 is arranged above the lower pressure-receiving member 73 in a front view.

[0092] <Lower pressure-receiving member> The lower pressure-receiving member 73 is arranged behind the lower half of the back of the seated person and supports the load of the lower half of the back of the seated person. As shown in Fig. 2, the lower pressure-receiving member 73 is constituted by a plate-like member having a flat plate shape. The lower pressure-receiving member 73 may be constituted by a resin plate-like member, or may be constituted by a metal plate material or the like.

[0093] As shown in Fig. 3(A), the lower pressure-receiving member 73 includes a lower main portion 76 having a front surface facing the front-rear direction, and a pair of left and right lower side portions 77 provided at the left and right edges of the lower main portion 76 respectively. The lower main portion 76 has a rectangular shape extending in the vertical direction in a front view. Each of the lower side portions 77 is connected to the edge portion outside the seat of the lower main portion 76. The lower side portion 77 has a rectangular shape with a triangular notch at the upper end outside the seat.

[0094] As shown in Figs. 2 and 3(A), the lower pressure-receiving member 73 is arranged between the left base side member 14 and the right base side member 14. The lower pressure-receiving member 73 is supported by the left base side member 14 and the right base side member 14 via a lower erection member 79.

[0095] The lower erection member 79 is constituted by a bent metal rod-shaped member (a round rod in this embodiment). Note that the lower erection member 79 may be constituted by a metal pipe material.

[0096] As shown in Fig. 9, the lower-mounted member 79 has a pair of left and right latching portions 80 and a connecting portion 81 that extends in the left-right direction and connects the lower ends of the latching portions 80. Each latching portion 80 has an outer vertical portion 80A that extends upward from the outer end of the seat of the connecting portion 81, a lower horizontal portion 80B that extends inward of the seat from the outer vertical portion 80A, an inner vertical portion 80C that extends upward from the inner end of the seat of the lower horizontal portion 80B, and an upper horizontal portion 80D that extends outward of the seat from the inner vertical portion 80C. At the outer end of the seat of the upper horizontal portion 80D, there are provided retaining portions 80E that extend downward toward the outside of the seat, bend at their extending ends, and extend downward. As shown in Fig. 2, a hook 81A is provided on the connecting portion 81, and the hook 81A is hooked and fixed to an appropriate position of the base lower member 16. Thereby, the connecting portion 81 is connected to the base lower member 16 (see Fig. 2).

[0097] As shown in Fig. 9, the retaining portion 80E of the lower-mounted member 79 is inserted through the insertion hole 62 of the flange portion 60. That is, the one end side of the lower-mounted member 79 is prevented from falling off from the insertion hole 62, and the one end side of the lower-mounted member 79 is coupled to the flange portion 60. Thereby, the lower-mounted member 79 can be coupled to the rotation bracket 40 by a simple method. The flange portion 60 and the insertion hole 62 provided in the flange portion 60 constitute an attachment portion 82 for attaching one end of the lower-mounted member 79.

[0098] In this way, since the member for connecting the movable frame 12 and the base frame 11 and the member for attaching the lower-mounted member 79 to the base frame 11 can be constituted by a single rotation bracket 40 (attachment member), the number of parts of the seat 1 can be reduced without separately providing a member for coupling the lower-mounted member 79 to the base frame 11.

[0099] Also, one end of the lower-mounted member 79 is coupled to the flange portion 60 of the rotation bracket 40. Therefore, the rigidity of the portion of the rotation bracket 40 where the lower-mounted member 79 is attached can be increased.

[0100] In addition, the front coupling portion 58 is provided in front of and behind the mounting portion 82, respectively. Therefore, compared with the case where the front coupling portion 58 is provided only on one side in the front and rear directions, the rotating bracket 40 can be firmly coupled to the front panel 20, and the lower installation member 79 can be stably supported by the front panel 20.

[0101] A plurality of hooks (not shown) that are hooked on the lower installation member 79 are provided on the rear surface of the lower pressure receiving member 73. By hooking the hooks on the lower installation member 79, the lower pressure receiving member 73 is coupled to the lower installation member 79. Thereby, the lower pressure receiving member 73 is coupled to each of the base side members 14 via the lower installation member 79.

[0102] <Upper pressure receiving member> The upper pressure receiving member 74 is disposed behind the upper part of the back of the seated person and supports the load on the upper part of the back of the seated person. As shown in FIG. 2, the upper pressure receiving member 74 is also constituted by a plate-like member like the lower pressure receiving member 73. The upper pressure receiving member 74 may be constituted by a resin plate-like member, or may be constituted by a metal plate material or the like.

[0103] As shown in FIG. 3(A), the upper pressure receiving member 74 includes a flat upper main portion 84 having a front surface facing in the front-rear direction, and a pair of left and right upper side portions 85 provided on the left and right edges of the upper main portion 84, respectively. As shown in FIG. 2, each of the upper side portions 85 has a flat plate shape, is connected to the edge portion outside the seat (that is, the left and right side edges) of the upper main portion 84, and extends forward toward the outside of the seat. Thereby, the upper pressure receiving member 74 has a shape along the back of the seated person.

[0104] As shown in FIGS. 2 and 3(A), an upper installation member 87 for coupling the upper pressure receiving member 74 to the movable side member 38 is provided on each of the movable side members 38.

[0105] As shown in FIG. 9, the upper installation member 87 is composed of a pair of left and right side frames 88. The side frame 88 is composed of a bent metal rod-shaped member (round rod in this embodiment). Note that the side frame 88 may be composed of a metal pipe material.

[0106] The side frame 88 has an upper vertical portion 88A extending in the vertical direction, an inclined portion 88B inclined downward from the lower end of the upper vertical portion 88A toward the inside of the seat, a lower vertical portion 88C extending downward from the lower end of the inclined portion 88B, and a lower horizontal portion 88D extending outward from the lower end of the lower vertical portion 88C.

[0107] Each of the movable side members 38 is provided with a mounting bracket 90 for mounting the upper installation member 87.

[0108] The mounting bracket 90 is at the central portion of the movable side member 38, and more specifically, is fixed to the upper portion of the movable member side portion 41. In this embodiment, the mounting bracket 90 is composed of a bent sheet metal member and is fixed to the upper portion of the movable member side portion 41 by welding.

[0109] The mounting bracket 90, similar to the lower installation member 79, includes a flange portion 91. The flange portion 91 has a plate shape with a main surface facing the vertical direction. The flange portion 91 is provided with a mounting hole 92 penetrating in the vertical direction. The upper end of the upper vertical portion 88A of the upper installation member 87 is inserted into the mounting hole 92. Thereby, the upper installation member 87 is mounted on the movable side member 38 via the mounting bracket 90. That is, the mounting bracket 90 constitutes a portion where the upper installation member 87 and the movable frame 12 are connected.

[0110] A bent portion 93 bent in the horizontal direction is provided at the upper edge of the upper vertical portion 88A to prevent the upper vertical portion 88A from coming out of the mounting hole 92. Thereby, the side frames 88 are respectively coupled to the movable side members 38, and the upper installation member 87 is coupled to and supported by the movable side members 38.

[0111] A plurality of hooks (not shown) that are hooked to the upper erection member 87 are provided on the rear surface of the upper pressure receiving member 74. By hooking the hooks to the upper erection member 87, the upper pressure receiving member 74 is coupled to the front surface of the upper erection member 87 and is coupled and supported on the front side of the upper erection member 87. The upper pressure receiving member 74 is coupled to each of the movable side members 38 via the upper erection member 87.

[0112] In the present embodiment, as shown in FIG. 9, a cylindrical member 94 (also referred to as a collar) is provided on the lower erection member 79. The upper erection member 87 is inserted into the cylindrical member 94 together with the lower erection member 79 at the lower edge (lower horizontal portion 88D) and is coupled to the cylindrical member 94. Thereby, the upper pressure receiving member 74 is connected to the lower erection member 79 so as to be tiltable in the front-rear direction. That is, the cylindrical member 94 functions as a connecting portion between the lower erection member 79 and the upper pressure receiving member 74. In order to facilitate the assembly of the cylindrical member 94, one slit (not shown) extending in the left-right direction may be provided on the rear surface of the cylindrical member 94. The cylindrical member 94 may be made of metal or may be made of resin or the like.

[0113] As shown in FIG. 8, when the movable frame 12 rotates about the rotation axis X and tilts forward, a load is applied to the upper pressure receiving member 74 via the upper erection member 87 to cause the upper pressure receiving member 74 to tilt forward. Since the upper pressure receiving member 74 is tiltably connected to the lower erection member 79 via the cylindrical member 94, the upper pressure receiving member 74 rotates following the tilt of the movable frame 12. Therefore, by connecting the lower erection member 79 and the upper erection member 87 with the cylindrical member 94 while reducing the influence of the tilt of the movable frame 12, the upper pressure receiving member 74 can be stably supported by the seat back frame 10.

[0114] One end of the lower erection member 79 is inserted into the insertion hole 62 of the flange portion 60 and is prevented from coming off. Therefore, the lower erection member 79 is supported by the flange portion 60 so as to be slidable in the penetrating direction of the insertion hole 62. Therefore, when the upper erection member 87 is pulled upward, the lower erection member 79 can be moved following it.

[0115] As shown in FIG. 3(A), the upper part 85 on the left side of the upper pressure receiving member 74 and the movable member shoulder part 42 on the left side of the movable side member 38 are arranged at positions aligned in the vertical direction in a front view. Similarly, the upper part 85 on the right side of the upper pressure receiving member 74 and the movable member shoulder part 42 on the right side of the movable side member 38 are arranged at positions aligned in the vertical direction in a front view.

[0116] As a result, the upper main part 84 is arranged behind the center of the back of the seated person, and the upper part 85 is arranged at a position along the left and right side parts of the back of the seated person. That is, the upper pressure receiving member 74 can be arranged along the back of the seated person.

[0117] In the present embodiment, as shown in FIG. 3(A), notches 95 that are notched upward are provided at the lower edges of the upper parts 85 respectively. Thereby, when the movable part 9 is in the upright position, the rotation bracket 40 can be visually recognized from the front by the operator performing the assembly work, and the assembly workability of the seat 1 is improved.

[0118] In FIG. 11, a first virtual plane S1 along the front surface of the lower main part 76 is shown by a two-dot chain line. As shown in FIG. 11, the cylindrical member 94 is located behind the first virtual plane S1. That is, when viewed in the direction along the front surface of the lower main part 76, the cylindrical member 94 is arranged behind the lower main part 76, and the lower erection member 79 and the upper pressure receiving member 74 are connected behind the lower main part 76. Thereby, it is possible to prevent the seated person from feeling a foreign body sensation due to the connection part between the lower erection member 79 and the upper pressure receiving member 74.

[0119] In FIG. 11, a second virtual plane S2 along the front surface of the upper main part 84 is shown by a one-dot chain line. As shown in FIG. 11, the cylindrical member 94 is located behind the second virtual plane S2. That is, when viewed in the direction along the front surface of the upper main part 84, the cylindrical member 94 is arranged behind the upper main part 84, and the lower erection member 79 and the upper pressure receiving member 74 are connected behind the upper main part 84. Thereby, it is possible to prevent the seated person from feeling a foreign body sensation due to the connection part between the lower erection member 79 and the upper pressure receiving member 74.

[0120] Note that the lower pressure receiving member 73 is not coupled to the movable frame 12 and may be coupled to and supported only by the base frame 11. The upper pressure receiving member 74 is not coupled to the base frame 11 and may be coupled to and supported only by the movable frame 12. Thereby, the lower pressure receiving member 73 can rotate with respect to the movable frame 12, and the upper pressure receiving member 74 can rotate with respect to the base frame 11. Thereby, a pressure receiving member 72 that can further reduce the influence of the tilting of the movable frame 12 can be configured.

[0121] <Actuator> As shown in FIGS. 2 and 8, the seat back 5 includes an actuator 98 for tilting (rotating) the movable portion 9. The actuator 98 is provided between the base frame 11 and the movable frame 12.

[0122] As shown in FIG. 8, the actuator 98 includes a motor 98A, a lead screw 98B, and a gear box 98C that converts the rotation of the motor 98A into the linear motion of the lead screw 98B. The gear box 98C includes gears and a housing that houses the gears. The housing is provided with a through hole through which the lead screw 98B passes. When the output shaft of the motor 98A rotates, one end of the lead screw 98B protrudes or retracts and moves in a direction approaching or separating from the housing. In the present embodiment, the axial direction of the output shaft of the motor 98A and the axial direction of the lead screw 98B are configured to be orthogonal to each other.

[0123] A connecting member 100 is fixed to the movable upper member 39, and the lead screw 98B is rotatably connected to the connecting member 100 at its end about an axis Y extending in the left-right direction. Thereby, the actuator 98 is rotatably connected to the movable upper member 39 at the end of the lead screw 98B (the upper end in FIG. 2) about the left-right direction as the axis Y.

[0124] Note that since the connecting member 100 is fixed to the movable upper member 39, the actuator 98 is connected to the portion between the two movable member bending portions 43 of the movable frame 12. Also, as shown in Fig. 3(A), the connection portion between the actuator 98 and the movable frame 12 is located between the headrest bending portions 70 in a front view.

[0125] As shown in Fig. 8, the gear box 98C is rotatably connected to the first connecting bracket 102 about an axis Z in the left - right direction. The first connecting bracket 102 is fixed to the second connecting bracket 103, and the second connecting bracket 103 is fixed to the base upper member 15. Thereby, the gear box 98C is rotatably connected to the base upper member 15 about an axis Z extending in the left - right direction.

[0126] Thereby, one end of the actuator 98 (corresponding to the end of the gear box 98C) is rotatably connected to the base upper member 15 about an axis Z extending in the left - right direction. The other end of the actuator 98 (corresponding to the lead screw 98B) is rotatably connected to the movable upper member 39 about an axis Y extending in the left - right direction. Thus, the movable side member 38 and the corresponding base side member 14, one end of the actuator 98 and the base upper member 15, and the other end of the actuator 98 and the movable upper member 39 are rotatably connected about axes Y and Z extending in the left - right direction, respectively. Thereby, the actuator 98 connects the base upper member 15 and the movable upper member 39, and by driving the actuator 98, it is possible to rotate the movable upper member 39 to approach and separate from the base upper member 15.

[0127] In this embodiment, the actuator 98 was configured to move the movable upper member 39 closer to and away from the base upper member 15, but the present invention is not limited to this aspect. Specifically, the actuator 98 only needs to be connected to the upper part of the base frame 11 other than the base upper member 15 (specifically, the part above the rotation axis X) and the movable upper member 39, and may be configured to perform at least one of the operations of moving the movable upper member 39 closer to and away from the upper part of the base frame 11.

[0128] When the end of the lead screw 98B moves in the direction of protruding from the gear box 98C due to the drive of the actuator 98, the movable upper member 39 is pushed forward with respect to the base upper member 15. As a result, the movable frame 12 rotates about the rotation axis X with respect to the base frame 11 in the direction of tilting forward with respect to the base frame 11.

[0129] When the end of the lead screw 98B moves in the direction of retracting into the gear box 98C due to the drive of the actuator 98, the movable upper member 39 is pulled toward the side of the base upper member 15. As a result, the movable frame 12 rotates about the rotation axis X with respect to the base frame 11 in the direction of tilting backward with respect to the base frame 11.

[0130] In this way, the actuator 98 tilts the movable frame 12 with respect to the base frame 11 and displaces (specifically, rotationally displaces) the movable part 9 between the forward tilt position and the upright position.

[0131] As shown in FIGS. 2 and 8, at least one of the base frame 11 and the movable frame 12 is provided with a receiving recess 105 for receiving at least a part of the actuator 98. In the present embodiment, the receiving recess 105 is provided at the front surface of the base upper member 15 and at the central portion in the left - right direction thereof. As shown in FIG. 2, the receiving recess 105 is formed as a recess that is recessed rearward (in a direction away from the movable upper member 39) at the front surface of the base upper member 15. At least a part of the actuator 98 (for example, a part of the motor 98A and the lead screw 98B) is received inside the receiving recess 105 in a side view (see FIG. 4).

[0132] The receiving recess 105 is at the front surface of the base upper member 15, where the front panel 20 and the rear panel 21 face each other front - to - rear, and are provided at a position where both overlap in the front - rear direction.

[0133] As shown in FIG. 8, the gear box 98C is pivotally supported by the first connection bracket 102. The second connection bracket 103 has a U - shaped cross - section that opens rearward. The second connection bracket 103 is respectively joined (by welding in the present embodiment) to the upper surface and the front surface (the bottom surface of the receiving recess 105) of the portion of the base upper member 15 where the receiving recess 105 is provided. The first connection bracket 102 is connected to the front surface of the second connection bracket 103.

[0134] The second connection bracket 103 is joined at a position where the front panel 20 and the rear panel 21 of the seat - back frame 10 face each other. Thereby, the actuator 98 is supported via the second connection bracket 103 at a position where the front panel 20 and the rear panel 21 of the seat - back frame 10 face each other. Thereby, the actuator 98 can be supported at a portion of the base frame 11 where the rigidity is high and it is difficult to deform.

[0135] Note that since the connecting member 100 is fixed to the movable upper member 39, the actuator 98 is connected to the movable upper member 39, that is, the portion between the two movable member bending portions 43 of the movable frame 12. Therefore, the connection portion between the actuator 98 and the movable frame 12 can be arranged at a position closer to the center of the seat in the left - right direction. As a result, the actuator 98 can stably rotate (tilt) the movable frame 12, for example, as compared with the case where the actuator 98 is connected to the movable side member 38.

[0136] However, specifically, the second connecting bracket 103 is provided at a position biased to either the left - hand or right - hand side in the left - right direction of the receiving recess 105. Therefore, the lead screw 98B is arranged at a position biased to either the left - hand or right - hand side (the outside of the vehicle in this embodiment) in the receiving recess 105. With this arrangement, a sufficient space for accommodating the motor 98A can be ensured between the wall surface defining the other side (the inside of the vehicle in this embodiment) in the left - right direction of the receiving recess 105 and the lead screw 98B.

[0137] <Arrangement of members in the upright position and the forward - tilt position> As shown in FIG. 12, when the movable part 9 is in the upright position (when the movable upper member 39 is located at the rearmost position), in a top view, the movable member shoulder part 42 is located behind the rotating bracket 40. Also, at least a part of the movable member shoulder part 42 is located in front of the mounting bracket 90 (the portion where the upper - mounted member 87 and the movable frame 12 are connected). However, the entire movable member shoulder part 42 may be located in front of the mounting bracket 90. Also, at least a part of the mounting bracket 90 is located in front of the actuator 98, and preferably the entire mounting bracket 90 is located in front of the actuator 98.

[0138] By configuring in this way, the upright position can be set to an appropriate position where the movable part 9 does not tilt too much forward or backward, and a large - sized occupant can sit down relaxedly.

[0139] In addition, since the mounting bracket 90 is positioned in front of the actuator 98 and the upper pressure receiving member 74 is supported on the front side of the upper erection member 87, the upper pressure receiving member 74 is disposed in front of the actuator 98. Therefore, it is possible to prevent giving a foreign body sensation to the seated person by the actuator 98.

[0140] As shown in FIGS. 13 and 14, when the movable part 9 is in the forward tilt position (when the movable upper member 39 is located at the most forward position), the portion (flange part 60) where the lower erection member 79 and the seat back frame 10 are connected is located behind the front end of the actuator 98.

[0141] By configuring in this way, the forward tilt position can be set to an appropriate position capable of supporting the back of a relatively small-sized seated person.

[0142] Also, as shown in FIG. 2, when the movable part 9 is in the upright position, the upper main part 84 of the upper pressure receiving member 74 and the left and right upper side parts 85 are each located above the rotation axis X (see also FIG. 4). Thereby, since the upper pressure receiving member 74 can be rotationally moved so as to protrude forward from the position where the upper part thereof tilts backward due to the forward tilt of the movable frame 12 (see FIG. 14), the upper pressure receiving member 74 can be supported by the movable frame 12 so that the back of a small-sized seated person can be supported by the rotation of the movable frame 12.

[0143] As shown in FIG. 14, in either case where the movable part 9 is in the upright position or the forward tilt position, at least a part of the actuator 98 is located behind the upper pressure receiving member 74. Also, at least a part of the actuator 98 is located behind the headrest frame 64.

[0144] <Method for manufacturing a seat> Next, a method for manufacturing the sheet 1 will be described. The method for manufacturing the sheet 1 includes a first step of manufacturing the base frame 11, a second step of rotatably assembling the movable frame 12 to the base frame 11, a third step of respectively assembling the upper erection member 87 and the lower erection member 79 to the first erection member and the second erection member, a fourth step of assembling the first erection member and the second erection member, and a fifth step of connecting the actuator 98 to the movable frame 12 and the base frame 11. After the fifth step, the headrest 6, the pad member, and the skin material are sequentially assembled.

[0145] The first step includes a step of manufacturing the front panel 20 and the rear panel 21 by pressing, and a step of connecting the front panel 20 and the rear panel 21 at the peripheral portion to form the base frame 11. The front panel 20 and the rear panel 21 may be connected by welding, or may be connected by fastening using bolts and nuts.

[0146] The first step may preferably include a step in which the stud bolt 52 is inserted into and fixed to the first through hole 53 of the front panel 20. This step may be provided before the step of connecting the front panel 20 and the rear panel 21.

[0147] Further, the first step may preferably include a step of fixing (welding in this embodiment) the second connection bracket 103 to the base upper member 15. This step may be performed after the front panel 20 and the rear panel 21 are connected. In this step, the second connection bracket 103 may be connected (welded) to the upper surface and the lower surface of the base upper member 15.

[0148] The second step includes a step of fixing the connecting member 100 to the movable frame 12 by welding or the like, a step of fixing the headrest frame 64 to the movable frame 12, a step of rotatably coupling the movable frame 12 to the rotation bracket 40, and a step of fixing the rotation bracket 40 to the base frame 11. The step of fixing the headrest frame 64 to the movable frame 12 includes a step of coupling (welding in this embodiment) the lower end of the vertical portion 65 to the movable member bending portion 43 of the movable frame 12. The step of rotatably coupling the movable frame 12 to the rotation bracket 40 includes a step of inserting a pin 49 into a through hole 48 provided at the lower end of the movable side member 38 and rotatably connecting the lower end of the movable side frame to the bulging portion 45B of the rotation bracket 40.

[0149] The step of fixing the rotation bracket 40 to the base frame 11 may include a step of positioning the rotation bracket 40 by inserting it into the front bolt hole 50A with respect to the stud bolt 52 provided in the first through hole 53 of the front panel 20, and then, by inserting a bolt 56 into the rear bolt hole 50B and the second through hole 54 of the rotation bracket 40 and coupling a nut 57, coupling (fastening in this embodiment) the rear portion 46 of the rotation bracket and the front panel 20. Thereby, after the operator positions the rotation bracket 40 once, the operator can perform the work of coupling the rotation bracket 40 to the base frame 11, so that the ease of assembly work can be improved.

[0150] Note that the step of fixing the rotation bracket 40 to the base frame 11 may also include a step of coupling the front portion 45 of the rotation bracket and the front panel 20 by attaching a nut 55 to the stud bolt 52.

[0151] The third step may include a step of coupling a hook provided on the rear surface of the upper pressure receiving member 74 to the upper erection member 87 and a step of coupling a hook provided on the rear surface of the lower pressure receiving member 73 to the lower erection member 79. In addition, the third step may include a step of coupling the upper erection member 87 and the lower erection member 79 with a cylindrical member 94.

[0152] The fourth step includes inserting the end of the upper installation member 87 from below into the mounting hole 92 provided in the flange portion 91 of the mounting bracket 90, and inserting the end of the lower installation member 79 from above into the insertion hole 62 provided in the flange portion 60 of the rotation bracket 40. In the step of inserting the end of the upper installation member 87 from below, the operator may insert the end of the upper installation member 87 above the position where it should be arranged after installation (also referred to as overstroking), and then perform the step of inserting the end of the lower installation member 79 into the insertion hole 62 from above. Thereby, after assembling the upper installation member 87, the lower installation member 79 can be attached, so that the assembly workability can be improved.

[0153] The fifth step includes rotatably connecting the first connection bracket 102 to the gear box 98C, fixing the first connection bracket 102 to the second connection bracket 103, and rotatably connecting the end of the lead screw 98B to the connection member 100. After these three steps, the actuator 98 is connected to the base frame 11 and the movable frame 12.

[0154] Next, the effects of the seat 1 will be described.

[0155] As shown in FIG. 2, the pressure receiving member 72 that supports the load of the seated person includes a lower pressure receiving member 73 provided on the base frame 11 and an upper pressure receiving member 74 provided on the movable frame 12. Therefore, compared with the case where the upper pressure receiving member 74 and the lower pressure receiving member 73 are integrally formed, stress is less likely to occur inside the pressure receiving member 72, and the pressure receiving member 72 is more likely to follow the tilting of the movable portion 9.

[0156] In the present embodiment, the upper installation member 87 is connected to the lower installation member 79 via the cylindrical member 94. Therefore, the upper pressure receiving member 74 is connected to the lower installation member 79 so as to be tiltable in the front-rear direction. Thereby, the upper pressure receiving member 74 can be well supported by the movable frame 12 at the upper and lower portions, and the upper pressure receiving member 74 can be well followed with respect to the tilting of the movable frame 12.

[0157] The base frame 11 (base upper member 15) is provided with a receiving recess 105 for receiving at least a part of the actuator 98. Thus, by providing the receiving recess 105 recessed rearward in the base upper member 15, a space for accommodating functional components can be formed within the receiving recess 105. Also, the actuator 98 and the base frame 11 are arranged so as to overlap in side view. Therefore, the actuator 98 can be arranged compactly (i.e., such that the thickness at the upper part of the seat back frame 10 is reduced).

[0158] The actuator 98 is arranged between the base frame 11 and the movable frame 12. Therefore, by forming the receiving recess 105 to be recessed rearward at the front surface of the base upper member 15, the actuator 98 can be easily accommodated in the receiving recess 105.

[0159] Also, the headrest frame 64 is coupled to the rear surface of the movable frame 12 and is supported by the movable frame 12. Therefore, the connection portion of the headrest frame 64 to the movable frame 12 does not protrude forward of the movable frame 12. Thus, the headrest frame 64 can be connected to the movable frame 12 while preventing a foreign body sensation from being given to the seated person.

[0160] The movable frame 12 is coupled to the front panel 20 via a rotation bracket 40, and the airbag module 24 is coupled to the rear panel 21. With this configuration, compared to the case where the movable frame 12 and the airbag module 24 are provided on the same panel, the movable frame 12 and the airbag module 24 are more likely to be spaced apart. Therefore, the influence due to the rotation of the movable frame 12 is less likely to affect the airbag module 24. Also, since the deployment of the airbag 25 can be prevented from being obstructed by the movable frame 12, the airbag 25 can be deployed well, and the safety of the seat 1 is enhanced.

[0161] In the present embodiment, the rotating bracket 40 is located above the coupling portion (rear coupling portion 32) of the airbag module 24 of the rear panel 21. As a result, the coupling portion (front coupling portion 58) of the movable frame 12 of the front panel 20 is located above the coupling portion (rear coupling portion 32) of the airbag module 24 of the rear panel 21. Therefore, since the movable frame 12 and the airbag module 24 are coupled at positions separated in the vertical direction of the base frame 11, it is possible to prevent the deployment of the airbag 25 from being inhibited by the movable frame 12.

[0162] Also, in both the forward-tilt position and the upright position of the movable portion 9, at least a part of the actuator 98 is located behind the upper pressure receiving member 74. Therefore, it is possible to prevent giving a foreign body sensation to the seated person by the actuator 98 as compared with the case where the entire actuator 98 is disposed in front of the upper pressure receiving member 74.

[0163] With the above, the description of the specific embodiment is completed, but the present invention can be widely modified and implemented without being limited to the above embodiment.

[0164] For example, in the above embodiment, an example in which the pressure receiving member 72 is constituted by the upper pressure receiving member 74 and the lower pressure receiving member 73 is described, but the pressure receiving member 72 may be constituted by two or more plate members arranged substantially parallel to the backrest surface 5S. In that case, the plate members may be coupled to either one of the seat back frame 10 and the movable frame 12 at both ends, and may be rotatably connected to adjacent plate members about a rotation axis X extending in the left-right direction.

[0165] In the above embodiment, the receiving recess 105 is provided in the base frame 11, but it may be provided in the movable frame 12. In that case, the receiving recess 105 may be formed to be recessed forward in the movable upper frame, and at least a part of the lead screw 98B may be accommodated in the receiving recess 105. Alternatively, the receiving recess 105 may be provided in each of the base frame 11 and the movable frame 12. Further, in the above embodiment, an example in which the actuator 98 is received in the receiving recess 105 has been described, but various functional components other than the actuator 98 can be accommodated in the receiving recess 105.

[0166] In the above embodiment, an example in which the present invention is applied to a vehicle seat has been described, but the seat 1 according to the present invention can also be applied to various seats such as aircraft seats and railway seats. Further, not all of the components of the seat 1 shown in the above embodiment are necessarily essential, and they can be appropriately selected.

Explanation of Reference Numerals

[0167] 1: Seat 5: Seat back 6: Headrest 10: Seat back frame 11: Base frame 12: Movable frame 14: Base side member 15: Base upper member 38: Movable side member 39: Movable upper member 40: Rotating bracket 41: Side portion of movable member (an example of side portion) 42: Shoulder portion of movable member (an example of shoulder portion) 64: Headrest frame 65: Vertical portion 66: Horizontal portion 68: Side portion of headrest 69: Shoulder portion of headrest 70: Bending portion of headrest 74: Upper pressure receiving member (an example of pressure receiving member) 82: Mounting part 87: Upper installation member (an example of an installation member) 90: Mounting bracket (an example of a mounting member) 98: Actuator 105: Receiving recess (an example of a recess) X: Rotation axis

Claims

1. A vehicle seat, comprising: The seat back frame constituting the framework of the seat back includes a base frame and a movable frame rotatably connected to the base frame about a rotation axis extending laterally relative to the base frame, The base frame includes a pair of base side members extending in a vertical direction, the movable frame includes a pair of left and right movable side members each rotatably connected to the base side member about a pivot axis extending in the left and right direction, and a movable upper member connecting upper ends of the movable side members, A headrest frame is supported on the movable frame, The headrest frame is coupled to a rear surface of the movable frame.

2. Each of the movable side members includes a side portion extending in a vertical direction, and a shoulder portion extending from an upper end of the side portion toward an inside of the seat at an inclination upward and bending upward at a bending portion and further extending upward, The headrest frame includes a pair of vertical portions spaced apart from each other on the left and right, and a horizontal portion extending left and right and connecting upper ends of the vertical portions, 2. The vehicle seat according to claim 1, wherein the vertical portion is joined at a lower end to the bent portion.

3. the base frame includes a base upper member extending in the left-right direction and connecting upper ends of the base side members, 3. The vehicle seat according to claim 2, wherein a recess that is recessed rearward is formed on the front surface of the base upper member behind the vertical portion.

4. an actuator that connects an upper portion of the base frame and an upper portion of the movable frame and extends and contracts to rotate the movable frame relative to the base frame; 4. The vehicle seat according to claim 3, wherein the actuator connects a front surface of the base upper member and a portion of the movable frame between the bent portions.

5. the vertical portion has a headrest side portion connected to the bent portion and extending upward, and a headrest shoulder portion extending from an upper end of the headrest side portion toward the inside of the seat at an incline, and bending upward at the headrest bent portion and extending further upward, The vehicle seat according to claim 4, wherein a connection portion between the actuator and the movable frame is located between the headrest bent portions in a front view.

6. The base side member is provided with a pivot bracket for rotatably connecting the movable side member, 3. The vehicle seat according to claim 2, wherein when the upper portion of the movable side member is rotated to its rearmost position, the shoulder portion is located rearward of the pivot bracket in a top view.

7. A pressure-receiving member is provided to support the back of a seated occupant, the pressure-receiving member is supported by each of the movable side members via a bridging member, The movable side member is provided with a mounting member for mounting the installation member, 3. The vehicle seat according to claim 2, wherein when the upper portion of the movable side member is rotated to its rearmost position, the shoulder portion is located in front of the mounting member in a top view.

Citation Information

Patent Citations

  • Vehicular seat

    JP2017094872A