Side airbag device

The side airbag device with a multi-chambered airbag cushion and sail panels stabilizes deployment and reduces head rotation, enhancing occupant protection by applying tension to maintain the airbag's shape and restrain the head effectively.

JP7796883B2Active Publication Date: 2026-01-09AUTOLIV DEV AB
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Patent Information

Application Number
JP2024540352
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2022-08-10
Filing Date
2023-07-24
Publication Date
2026-01-09
Estimated Expiration
2043-07-24

AI Technical Summary

Technical Problem

Existing side airbag devices face challenges in stabilizing the deployment direction of far side airbags due to potential contact with occupants and require complex installation processes, which can be disrupted if the tension tether deviates from its predetermined position.

Method used

A side airbag device with a bag-shaped airbag cushion that includes a main chamber, a first sub-chamber, and a second sub-chamber, along with non-inflatable sail panels that restrain the occupant's head and maintain the deployment direction by applying tension to the raised portion from both sides.

Benefits of technology

The device enhances occupant protection by preventing head rotation and reducing injury levels through early restraint, maintaining the airbag's shape, and improving overall protection performance without significant design changes.

✦ Generated by Eureka AI based on patent content.

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Abstract

[Problem] To provide a side airbag device that can improve protection performance for passengers. [Solution] A side airbag device 100 comprises a bag-shaped air bag cushion 118 that is provided on a lateral part of a seat back 106 of a seat 104 and that uses gas supplied from an inflator 120 to expand and deploy. The air bag cushion 118 has a main chamber 124B that expands and deploys on a lateral part of a seat back 112 and a first sub-chamber 126B that expands and deploys so as to project on the seat back 112 side from the main chamber 124B. The main chamber 124B includes a protrusion 166 that protrudes above the first sub-chamber 126B. The air bag cushion 118 further includes a non-expansion first sail panel 128B that is stretched over the inner angle 174 between the protrusion 166 and the first sub-chamber 126B.
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Description

[Technical Field]

[0001] The present invention relates to a side airbag device including a bag-shaped airbag cushion that inflates and deploys to the side of an occupant in a vehicle seat in the event of a side collision of the vehicle. [Background technology]

[0002] Airbag devices have become standard equipment on most modern vehicles. Airbag devices are safety devices that operate in emergencies such as vehicle collisions, and protect occupants by inflating and deploying an airbag cushion using gas pressure. For example, side airbag devices are equipped with a bag-shaped airbag cushion that inflates and deploys to the side of a vehicle seat occupant in the event of a side collision.

[0003] Typically, when a vehicle is subjected to a lateral impact, the occupant moves in the vehicle width direction. For example, in the event of a side collision in which an object (colliding object) such as another vehicle or a utility pole strikes the passenger side door, side airbags that protect the occupant can be broadly divided into two types. The first is the so-called near side airbag. The near side airbag inflates and deploys between the passenger seat and the side door to prevent the occupant on the side of the vehicle that comes into contact with the colliding object (the near side occupant; in this case, the passenger side occupant) from colliding with the side door. The second is the so-called far side airbag (see, for example, Patent Document 1). The far side airbag inflates and deploys between the driver's seat and the passenger seat to protect the occupant (the far side occupant; in this case, the driver's side occupant) who moves toward the center of the vehicle due to a lateral impact.

[0004] Patent Document 1 describes a vehicle safety device that includes a far side airbag and a tension tether connected to the far side airbag. Both longitudinal ends of the tension tether are connected to a seatback frame. When the far side airbag is inflated and deployed, the tension tether extends upward from a portion of the upper end of the seatback frame that is further outward from the headrest and then hooks onto the headrest from the rear of the seat. The tension tether then extends from the top surface of the headrest to the top surface of the far side airbag, then passes along the vehicle interior side of the far side airbag and extends to the seatback frame.

[0005] Patent Document 1 states that the far side airbag is supported from the inside of the vehicle width direction by the tension tether, and that the tension tether does not come into contact with the occupant when the far side airbag inflates and deploys, thereby stabilizing the deployment direction of the far side airbag. [Prior art documents] [Patent documents]

[0006] [Patent Document 1] Japanese Patent Application Laid-Open No. 2014-51138 Summary of the Invention [Problem to be solved by the invention]

[0007] In the vehicle safety device of Patent Document 1, the far side airbag is supported from the inside in the vehicle width direction by a tension tether, and it is necessary to prevent contact between the occupant and the tension tether when the far side airbag inflates and deploys. This places restrictions on the installation position of the tension tether, and the installation process is time-consuming. Furthermore, if the tension tether deviates from its predetermined position when the far side airbag inflates and deploys, it becomes difficult to stabilize the deployment direction of the far side airbag.

[0008] In view of the above problems, an object of the present invention is to provide a side airbag device that can improve the occupant protection performance. [Means for solving the problem]

[0009] In order to solve the above problems, a typical configuration of a side airbag device according to the present invention is a side airbag device including a predetermined inflator and a bag-shaped airbag cushion that is provided on the side of a seatback of a vehicle seat and inflates and deploys using gas supplied from the inflator, wherein the airbag cushion has a main chamber that inflates and deploys on the side of the seatback, and a first sub-chamber that protrudes from the main chamber towards the seatback and inflates and deploys, the main chamber includes a raised portion that rises above the first sub-chamber when inflated and deployed, and the airbag cushion further has a non-inflatable first sail panel that is stretched across the inner angle between the raised portion and the first sub-chamber.

[0010] With this configuration, not only do the main chamber and the first sub-chamber restrain the occupant from the side during a collision, but the first sail panel can also restrain the occupant's head early. In particular, the first sail panel can prevent the occupant's head from rotating to the side, thereby reducing the strain on the head and reducing the injury level of the occupant. Therefore, with this configuration, it is possible to provide a side airbag device with improved occupant protection performance.

[0011] The first sail panel may be provided to connect the upper end of the raised portion and the protruding tip of the first sub-chamber.

[0012] According to the above configuration, the first sail panel can be suitably deployed between the raised portion and the first sub-chamber.

[0013] The airbag cushion is preferably positioned so that the raised portion is located to the side of the head of an occupant seated in the vehicle seat, and the first sail panel is taut to the side of the occupant's head when the main chamber and the first sub-chamber are inflated and deployed.

[0014] According to the above configuration, it is possible to preferably restrain the head of the occupant by utilizing the first sail panel.

[0015] The airbag cushion may further include a second sub-chamber that protrudes from the main chamber in a direction opposite to the first sub-chamber and inflates and deploys, and a second non-inflatable sail panel that is stretched across the inner angle between the raised portion and the second sub-chamber.

[0016] According to the above configuration, tension is applied to the raised portion from the left and right by the first sail panel and the second sail panel, which maintains the shape of the raised portion and keeps the first sail panel in a taut state, making it possible for the raised portion and the first sail panel to suitably restrain the head and other parts of the occupant.

[0017] The second sail panel may be provided to connect the upper end of the raised portion to the protruding tip of the second sub-chamber.

[0018] According to the above configuration, the second sail panel can be suitably deployed between the raised portion and the second sub-chamber.

[0019] The raised portion of the main chamber may be inflated and deployed in a state where it protrudes forward compared to the portion of the main chamber below the raised portion.

[0020] According to the above configuration, the raised portion and the first sail panel connected to the raised portion can widely and suitably restrain the head and other parts of the occupant. [Effects of the Invention]

[0021] According to the present invention, it is possible to provide a side airbag device that can improve the occupant protection performance. [Brief explanation of the drawings]

[0022] [Figure 1] 1 is a diagram illustrating an example of an outline of a side airbag device according to an embodiment of the present invention; [Figure 2] 2A to 2C are diagrams illustrating the airbag cushion of FIG. 1 from various directions. [Figure 3] 2 is a front view illustrating the relationship between the airbag cushion and each seat in FIG. 1. FIG. [Figure 4] 3A and 3B are diagrams illustrating modified examples of the airbag cushion of FIG. 2. [Figure 5] 2(b) is a diagram illustrating a further modified example of the airbag cushion of FIG. DETAILED DESCRIPTION OF THE INVENTION

[0023] Preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings. Dimensions, materials, and other specific values ​​shown in the embodiments are merely examples for facilitating understanding of the invention and, unless otherwise specified, do not limit the present invention. In this specification and drawings, elements having substantially the same functions and configurations are designated by the same reference numerals to avoid redundant explanation, and elements not directly related to the present invention are not shown.

[0024] Fig. 1 is a diagram illustrating an example of an outline of a side airbag device 100 according to an embodiment of the present invention. It is assumed that an occupant 122 in Fig. 1 is seated in a normal position in a vehicle seat 104. The seat 104 is assumed to be a right front seat (e.g., a driver's seat) in a vehicle, and has a seat back 106 and a seat cushion 108 on which the occupant 122 sits.

[0025] In this embodiment, when the occupant 122 is seated in the seat 104 in a normal posture, the direction that the occupant 122 faces is referred to as forward, and the opposite direction is referred to as backward. When the occupant 122 is seated in the seat 104 in a normal posture, the right side of the occupant 122 is referred to as the right direction, and the left side of the occupant 122 is referred to as the left direction. When the occupant 122 is seated in a normal posture, the direction of the head of the occupant 122 is referred to as upward, and the direction of the waist of the occupant 122 is referred to as downward. In the drawings used in the following description, the front, back, left, right, up, and down directions relative to the above-mentioned occupant are indicated as Front, Back, Left, Right, Up, and Down, as necessary.

[0026] Generally, vehicle seats may be able to rotate in any direction. Therefore, the direction relative to the occupant seated in the seat 104 may differ from the direction relative to the vehicle itself. In this embodiment, the "up," "down," and "up-and-down" directions of the vehicle refer to directions on a line connecting the center of the ceiling and the center of the floor of the vehicle, with the direction toward the ceiling being "up" and the direction toward the floor being "down." The "front," "rear," and "front-and-rear" directions of the vehicle refer to the forward direction of the vehicle as the "forward" direction and the backward direction of the vehicle as the "rear" direction. Furthermore, the width direction of the vehicle refers to the direction in which normal seats are arranged side by side, and is perpendicular to the "front-and-rear" direction.

[0027] In this embodiment, the seat opposite the driver's seat refers to the passenger seat. The seat opposite the passenger seat refers to the driver's seat. In other words, when a seat and the seat opposite the seat are described, if the seat is the driver's seat, the opposite seat is the passenger seat. On the other hand, if the seat is the passenger seat, the opposite seat is the driver's seat.

[0028] The occupant 122 in FIG. 1 is an example of a dummy used in automobile crash tests. Dummies that can be used for the occupant 122 include, for example, the AM50 and AF05 Hybrid III frontal crash dummies. The AM50 is a dummy that simulates a male with a height of 175 cm and a weight of 78 kg, which corresponds to 50% of the average American adult male. The AF05 is a dummy that simulates a petite female with a height of 145 cm, a seated height of 79 cm, and a weight of approximately 45 kg.

[0029] In addition to the frontal collision dummy, a side collision dummy, a child dummy, or even a rear collision dummy may be used as appropriate for the occupant 122. Each of these dummies is created based on the standards of the NHTSA (National Highway Traffic Safety Administration).

[0030] 1 can be built into each side of a seat back 106 of a seat 104. As an example, the side airbag device 110 of this embodiment is assumed to be built into the seat 104 on the vehicle center side.

[0031] The side airbag device 100 is designed so that a bag-shaped airbag cushion 118 inflates and deploys from the seat 104 to the side of the occupant 122. The airbag cushion 118 uses gas supplied from an inflator 120 (see FIG. 2(a)), which is a gas generator, to split the surface of the seatback 106 and inflate and deploy to the side of the occupant 122.

[0032] 2A and 2B are diagrams illustrating the airbag cushion 118 of Fig. 1 from various directions. Fig. 2A is a perspective view of the airbag cushion 118 of Fig. 1.

[0033] The airbag cushion 118 is formed into a bag shape by, for example, sewing the front and back of a base fabric that forms the surface of the airbag cushion 118 together, or by weaving using an OPW (One-Piece Woven) method.

[0034] The inflation section of the airbag cushion 118 is broadly composed of a central main chamber 124B, a first sub-chamber 126B on the occupant's side, and a second sub-chamber 126C on the opposite side. When the airbag cushion 118 is inflated and deployed, the airbag cushion 118 deploys so that the first sub-chamber 126B, the main chamber 124B, and the second sub-chamber 126C are lined up in this order along the left-right direction of the seat 104, as viewed from the seat 104 (see FIG. 3).

[0035] The main chamber 124B includes a base 168 and a raised portion 166, and is inflated and deployed to the side of the occupant 122 seated in the seat 104 (see FIG. 1). The base 168 is a portion that forms the central area of ​​the main chamber 124B. The raised portion 166 is inflated and deployed so as to rise higher than the first sub-chamber 126B and the second sub-chamber 126C.

[0036] The first sub-chamber 126B inflates and deploys so as to protrude from the base 168 of the main chamber 124B toward the seat back 106 where the occupant 122 (see FIG. 1) is located. The upper surface of the first sub-chamber 126B forms a support portion 170, which is capable of receiving the head 142 of the occupant 122 when it falls down.

[0037] The second sub-chamber 126C inflates and deploys so as to protrude from the base 168 of the main chamber 124B in the opposite direction to the first sub-chamber 126B. The upper surface of the second sub-chamber 126C forms a support portion 172, which protrudes toward another seat 110 (see FIG. 3), which will be described later, and is capable of catching the head of an occupant in the seat 110 when it falls forward.

[0038] The airbag cushion 118 includes a first sail panel 128B and a second sail panel 128C as sail-like, non-inflatable sections.

[0039] When the airbag cushion 118 is inflated and deployed, the first sail panel 128B is connected to a right edge 178 extending along the front-to-rear direction of the upper surface of the raised portion 166 and to a right edge 180 extending along the front-to-rear direction of the support portion 170, which is the upper surface portion of the first sub-chamber 126B. As a result, the airbag cushion 118 is in a state where the edges of the raised portion 166 and the first sub-chamber 126B are connected to each other by the first sail panel 126B.

[0040] The first sail panel 128B is stretched across the interior angle 174 between the raised portion 166 and the first sub-chamber 126B, that is, the angle formed by the right side surface 182 extending in the vertical direction on the right side of the raised portion 166 in the left-right direction and the upper surface (support portion 170) of the first sub-chamber 126B extending in the left-right direction. The first sail panel 128B is tensioned between the raised portion 166 and the first sub-chamber 126B as the raised portion 166 and the first sub-chamber 126B inflate and deploy.

[0041] As shown in Figure 1, the deployed first sail panel 128B forms a surface (which may include a flat or curved surface) in which a straight line L1 connecting the right edge 178 of the raised portion 166 and the right edge 180 of the first sub-chamber 126B is continuously connected in the front-to-rear direction so as to face the head 142 of the occupant 122 (see Figure 1) from the side. This surface is an inclined surface that slopes downward from the upper part of the raised portion 166 toward the part of the first sub-chamber 126B on the occupant side. By forming this inclined surface, the first sail panel 128B can efficiently receive the head 142 of the occupant 122 in the seat 104.

[0042] When the airbag cushion 118 is inflated and deployed, the second sail panel 128C is connected to a left edge 184 extending along the front-to-rear direction of the upper surface of the raised portion 166 and a left edge 186 extending along the front-to-rear direction of the support portion 172, which is the upper surface portion of the second sub-chamber 126C. As a result, the airbag cushion 118 is in a state where the edges of the raised portion 166 and the second sub-chamber 126C are connected by the second sail panel 126C.

[0043] The second sail panel 12C is stretched across the interior angle 176 between the raised portion 166 and the second sub-chamber 126C, i.e., the angle formed by the left side surface 188 extending in the vertical direction on the left side of the raised portion 166 in the horizontal direction and the upper surface (support portion 172) of the second sub-chamber 126C extending in the horizontal direction. The second sail panel 128C is also tensioned between the raised portion 166 and the second sub-chamber 126C as the raised portion 166 and the second sub-chamber 126C inflate and deploy.

[0044] The deployed second sail panel 128C forms a surface (which may include a flat or curved surface) in which a straight line L2 (see FIG. 1) connecting the left edge 184 of the raised portion 166 and the left edge 186 of the second sub-chamber 126C is continuously connected in the front-to-rear direction so as to face the side of the head of an occupant seated in the seat 110 (see FIG. 3). This surface is an inclined surface that slopes from the top of the raised portion 166 downward toward the part of the second sub-chamber 126C on the occupant's side of the seat 110. By forming this inclined surface, the second sail panel 128C can efficiently receive the head of an occupant sitting in the seat 110.

[0045] Fig. 2(b) is a diagram illustrating the airbag cushion 118 of Fig. 1 as viewed from above. The first sail panel 128B and the second sail panel 128C pull the raised portion 166 from both sides in the width direction of the seat 104 (see Fig. 1), thereby supporting the posture of the raised portion 166. This allows the raised portion 166 to maintain its raised shape even when subjected to a load from the head 142, etc. of the occupant 122, and allows the head 142, etc. to be suitably restrained.

[0046] 1, the airbag cushion 118 is disposed so that the raised portion 166 is located to the side of the head 142 of the occupant 122 in the seat 104. The first sail panel 128B is configured to be in a taut state to the side of the head 142 of the occupant 122 when the raised portion 166 of the main chamber 124B and the first sub-chamber 126B are inflated and deployed.

[0047] The first sail panel 128B is provided to connect the upper end of the raised portion 166 and the tip of the first sub-chamber 126B that protrudes toward the seat back 112. The first sail panel 128B is pulled and deployed between the raised portion 166 and the support portion 170, and is in a tensioned state so as to form an uninflated plane between the raised portion 166 and the support portion 170. This allows the airbag cushion 118 to receive the head 142 of the occupant 122 by the reaction force of the tensioned first sail panel 128B when the head 142 of the occupant 122 falls to the side.

[0048] With the above configuration, not only do the main chamber 124B and the first sub-chamber 126B restrain the occupant 122 from the side during a collision, but the first sail panel 128B can also restrain the head 142 of the occupant 122 early on. In particular, the first sail panel 128B can prevent the head 142 of the occupant 122 from rotating so as to fall to the side, thereby reducing the burden on the head 142 and reducing the injury level of the occupant 122. Therefore, with the above configuration, it is possible to provide a side airbag device 100 with improved protection performance for the occupant 122.

[0049] FIG. 3 is a diagram illustrating the relationship between the airbag cushion 118 and each seat in FIG. 1 as viewed from the front.

[0050] In the vehicle, another seat 110 is disposed adjacent to the seat 104. The seat 110 is, for example, a passenger seat on the left front seat, and has a seat back 112 and a seat cushion (not shown). The side airbag device 100 can be built into the side of the seat back of each seat not only on the side toward the center of the vehicle, but also on the side toward the side door.

[0051] The second sail panel 128C is provided to connect the upper end of the raised portion 166 and the tip of the second sub-chamber 126C that protrudes on the opposite side from the first sub-chamber 126B. The second sail panel 128C is pulled and deployed between the raised portion 166 and the support portion 172, and is in a tensioned state so as to form an uninflated plane between the raised portion 166 and the support portion 172. This enables the airbag cushion 118 to receive the head of an occupant in the other seat 110 by the reaction force of the tensioned second sail panel 128C, even if the head of the occupant falls to the side.

[0052] By applying tension to the raised portion 166 from the left and right by the first sail panel 128B and the second sail panel 128C, the shape of the raised portion 166 is maintained and the first sail panel 128B and the second sail panel 128C can be kept in a tensed state. Therefore, with this airbag cushion 118, it is possible to preferably restrain the heads and the like of the occupants in each of the seats 104, 110 by utilizing the raised portion 166, the first sail panel 128B, and the second sail panel 128C.

[0053] It is known that in a vehicle emergency, the angular velocity and angular acceleration of an occupant's head are likely to increase the injury level to the brain. In this regard, in the airbag cushion 118 of this embodiment, the first sail panel 128B and the second sail panel 128C are stretched on both sides of the raised portion 166, and therefore the occupant's head can be restrained by the first sail panel 128B and the second sail panel 128C earlier than in a case where only an inflatable portion such as the raised portion 166 is provided. Therefore, with the airbag cushion 118, it is possible to suppress the rotation of the occupant's head so that it falls to the side, and to suitably suppress the injury level to the occupant.

[0054] As described above, the airbag cushion 118 can improve occupant protection performance by utilizing the first sail panel 128B and the second sail panel 128C, without making major design changes to the shape, etc., of conventional airbag cushions. The airbag cushion 118 can achieve earlier head restraint while still satisfying the restraint performance and packaging performance of conventional airbag cushions, thereby contributing to further improvement of occupant restraint performance.

[0055] Figure 4 is a diagram illustrating a modified example (airbag cushion 200) of the airbag cushion 118 of Figure 2. In the following description, components that have already been described will be assigned the same reference numerals and their description will be omitted. Furthermore, components with the same names as components already described will have the same configuration and function even if assigned different reference numerals.

[0056] 4(a) is a perspective view of the airbag cushion 200. The main chamber 202 of the airbag cushion 200 has a raised portion 204 that protrudes forward compared to the base portion 168 below.

[0057] The airbag cushion 200 inflates and deploys at an angle such that the base 168 of the main chamber 202, the first sub-chamber 126B, and the second sub-chamber 126C are aligned with the seat back 106 (see FIG. 3). The raised portion 204 inflates and deploys at an angle such that it rises upward from the base 168.

[0058] The raised portion 204 inflates and deploys so that its front side curves forward and protrudes. The first sail panel 208B has a shape that is close to an inverted trapezoid, with one side 210 connected to the raised portion 204 being longer than the other side 212 connected to the support portion 170. The second sail panel 208C (see Figure 4(b)) on the opposite side has the same configuration.

[0059] Fig. 4(b) is a diagram illustrating the airbag cushion 200 of Fig. 4(a) as viewed from above. As described above, in the airbag cushion 200, the raised portion 204 of the main chamber 202 is raised upward and forward compared to the lower inflatable portions such as the base portion 168 (see Fig. 4(a)) and the first sub-chamber 126B when inflated and deployed.

[0060] The raised portion 204 protrudes forward, making it longer in the front-to-rear direction, and its long front-to-rear side surfaces 214, 216 can be used to fully restrain the head of an occupant in the seats 104, 110 (see Figure 3). The first sail panel 208B and the second sail panel 208C are also inverted trapezoidal in shape, with a larger upper surface area, making it possible to fully receive the head of an occupant in the seats 104, 110.

[0061] As described above, the airbag cushion 200 also makes it possible to widely and suitably restrain the head and other parts of the occupant in the seats 104, 110 by means of the raised portion 204, the first sail panel 208B, and the second sail panel 208C.

[0062] Figure 5 is a diagram illustrating a further modification (airbag cushion 220) of the airbag cushion 118 of Figure 2(b). The airbag cushion 220 of Figure 5 is composed of a main chamber 124B, a first sub-chamber 126B, and a first sail panel 128B, and omits the second sub-chamber 126C and second sail panel 128C of Figure 2(b).

[0063] The airbag cushion 220 also allows the first sail panel 128B to appropriately receive the head 142 of the occupant 122 (see FIG. 1), making it possible to restrain the occupant 122 while minimizing the injury level of the occupant 122. In particular, when the head 142 enters the first sail panel 128B, the raised portion 166 is pulled by the first sail panel 128B and tilts toward the head 142 to receive the head 142, making it possible to achieve early restraint of the head 142 with the airbag cushion 220.

[0064] 2 and 4, the first and second sail panels are arranged symmetrically, but they can also be arranged asymmetrically. For example, the first sail panel 128B in Fig. 2(a) could be connected to the raised portion 166 at a higher position than the second sail panel 128C, or the second sail panel 128C could be connected to the support portion 172 at a location further away from the raised portion 166 so that the angle of inclination is smaller than that of the first sail panel 128B.

[0065] While the preferred embodiments of the present invention have been described above with reference to the accompanying drawings, it goes without saying that the present invention is not limited to these examples. It is clear that those skilled in the art can conceive of various modifications and alterations within the scope of the claims, and it is understood that these modifications and alterations also fall within the technical scope of the present invention.

[0066] Furthermore, in the above embodiment, an example has been described in which the side airbag device 100 according to the present invention is applied to an automobile, but it can also be applied to aircraft, ships, and other vehicles in addition to automobiles, and similar effects can be obtained. [Industrial Applicability]

[0067] The present invention can be used in a side airbag device that includes a bag-shaped cushion that inflates and deploys to the side of an occupant in a vehicle seat in the event of a side collision of the vehicle. [Explanation of symbols]

[0068] 100...side airbag device, 102...vehicle, 104...seat, 106...seat back, 108...seat cushion, 110...seat, 112...seat back, 114...seat cushion, 118...airbag cushion, 120...inflator, 122...occupant, 124B...main chamber, 126B...first sub-chamber, 126C...second sub-chamber, 128B...first sail panel, 128C...second sail panel, 142...head, 166...bulge portion, 168...base portion, 170...support portion, 172...support portion, 174...inner angle, 176...inner angle, 178...right edge, 180...right edge, 182...right side, 184...left edge, 186...left edge, 188...left side, L1...straight line, L2...straight line, 200...airbag cushion, 202...main chamber, 204...raised portion, 208B...first sail panel, 208C...second sail panel, 210...one side, 212...other side, 214...side, 220...airbag cushion

Claims

1. A side airbag device including a predetermined inflator and a bag-shaped airbag cushion that is provided on a side of a seat back of a vehicle seat and inflates and deploys using gas supplied from the inflator, The airbag cushion is a central main chamber that inflates and deploys at the side of the seat back; a first sub-chamber that protrudes from the main chamber toward an occupant seated in the vehicle seat and inflates and deploys; a second sub-chamber that protrudes from the main chamber in a direction opposite to the first sub-chamber and expands; and the airbag cushion is inflated and deployed so that the first sub-chamber, the main chamber, and the second sub-chamber are arranged side by side in this order along the left-right direction of the vehicle seat, as viewed from the vehicle seat; the main chamber includes a raised portion that rises above the first sub-chamber when inflated and deployed, The airbag cushion further includes a first non-inflatable sail panel stretched across an interior angle between the raised portion and the first sub-chamber.

2. A side airbag device as described in Claim 1, characterized in that the airbag cushion further has a non-inflatable second sail panel stretched across the inner angle between the raised portion and the second sub-chamber.

3. A side airbag device comprising a predetermined inflator and a bag-shaped airbag cushion that is provided on the side of a seat back of a vehicle seat and inflates and deploys using gas supplied from the inflator, The airbag cushion is a main chamber that inflates and deploys at a side portion of the seat back; a first sub-chamber that projects from the main chamber toward the seat back and inflates and deploys, the main chamber includes a raised portion that rises above the first sub-chamber when inflated and deployed, the airbag cushion further includes a first uninflated sail panel spanning an interior angle between the raised portion and the first sub-chamber; The first sail panel is provided to connect the upper end of the raised portion and the protruding tip of the first sub-chamber.

4. the airbag cushion is disposed so that the raised portion is located to the side of the head of an occupant seated in the vehicle seat, 4. The side airbag device according to claim 1, wherein the first sail panel is in a taut state on the side of the occupant's head when the main chamber and the first sub-chamber are inflated and deployed.

5. the airbag cushion further comprises: a second sub-chamber that protrudes from the main chamber in a direction opposite to the first sub-chamber and expands; a second uninflated sail panel spanning an interior angle between the ridge and the second sub-chamber; 4. The side airbag device according to claim 3, further comprising:

6. 6. The side airbag device according to claim 2 or 5, wherein the second sail panel is provided so as to connect an upper end of the raised portion and the protruding tip of the second sub-chamber.

7. 4. The side airbag device according to claim 1, wherein the raised portion of the main chamber is inflated and deployed in a state where it protrudes forward compared to a portion of the main chamber below the raised portion.

Citation Information

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