External airbag
09650014 ยท 2017-05-16
Assignee
Inventors
- Hiroshi Suemune (Tokyo, JP)
- Yoshiyuki HASHIMOTO (Tokyo, JP)
- Akihiro Onodera (Tokyo, JP)
- Hiroshi Yoneyama (Tokyo, JP)
- Daisuke Ototsuji (Tokyo, JP)
- Isamu NAGASAWA (Tokyo, JP)
Cpc classification
B60R2021/003
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An external airbag includes: lateral edge bags in a pair that are deployed to extend upward along respective front pillars from lower ends of the respective front pillars, in front of the respective front pillars, the respective front pillars being disposed on both widthwise sides of a windshield of an automobile; and a posture holding member that couples upper ends of the lateral edge bags in the pair to each other.
Claims
1. An external airbag comprising: lateral edge bags in a pair that are deployed to extend upward along respective front pillars from lower ends of the respective front pillars, in front of the respective front pillars, the respective front pillars being disposed on both widthwise sides of a windshield of an automobile; and a posture holding member that couples upper ends of the lateral edge bags in the pair to each other, wherein the posture holding member is disposed to hide a front edge of a roof panel from a front side, the front edge being provided along an upper edge of the windshield.
2. The external airbag according to claim 1, further comprising a linear member that extends between the lateral edge bags in the pair.
3. The external airbag according to claim 2, wherein the linear member is disposed in a net pattern between the lateral edge bags in the pair.
4. The external airbag according to claim 1, further comprising a lower edge bag that is deployed along a cowl panel that is disposed at a lower edge portion of the windshield.
5. The external airbag according to claim 2, further comprising a lower edge bag that is deployed along a cowl panel that is disposed at a lower edge portion of the windshield.
6. An external airbag comprising: lateral edge bags in a pair that are deployed to extend upward along respective front pillars from lower ends of the respective front pillars, in front of the respective front pillars, the respective front pillars being disposed on both widthwise sides of a windshield of an automobile; and a posture holding member that couples upper ends of the lateral edge bags in the pair to each other, wherein the lateral edge bags in the pair are deployed to cover the respective front pillars from lower ends to upper ends, and wherein the posture holding member is disposed to hide a front edge of a roof panel from a front side, the front edge being provided along an upper edge of the windshield.
7. The external airbag according to claim 6, further comprising a linear member that extends between the lateral edge bags in the pair.
8. The external airbag according to claim 7, wherein the linear member is disposed in a net pattern between the lateral edge bags in the pair.
9. The external airbag according to claim 6, further comprising a lower edge bag that is deployed along a cowl panel that is disposed at a lower edge portion of the windshield.
10. The external airbag according to claim 7, further comprising a lower edge bag that is deployed along a cowl panel that is disposed at a lower edge portion of the windshield.
11. An external airbag comprising: lateral edge bags in a pair that are deployed to extend upward along respective front pillars from lower ends of the respective front pillars, in front of the respective front pillars, the respective front pillars being disposed on both widthwise sides of a windshield of an automobile; a posture holding member that couples upper ends of the lateral edge bags in the pair to each other; and a linear member that extends between the lateral edge bags in the pair.
12. The external airbag according to claim 11, wherein the linear member is disposed in a net pattern between the lateral edge bags in the pair.
13. The external airbag according to claim 11, further comprising a lower edge bag that is deployed along a cowl panel that is disposed at a lower edge portion of the windshield.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(11) Hereinafter, the implementations of the present disclosure will be described with reference to the accompanying drawings.
(12) <A First Implementation>
(13)
(14) It is to be noted that in the automobile M, the windshield W is provided rearwardly from the lower edge to the upper edge in an inclined manner, front pillars P in a pair are provided along both lateral edges of the windshield W in an inclined manner, and a roof panel is disposed rearwardly from the upper edge of the windshield W. In addition, cowl panel L is disposed along the lower edge of the windshield W and the front edge B (a portion corresponding to the front brace) of the roof panel is positioned along the upper edge of the windshield W, and front hood H is provided so as to project forward from a vicinity of the lower edge of the windshield W and to cover the front of the automobile M.
(15) The lateral edge bags 1 are deployed so as to cover the front pillars P from the lower ends to the upper ends. The lower edge bag 2 is deployed so as to cover the cowl panel L from the front side, and both ends of the lower edge bag 2 are coupled to the lower ends of the lateral edge bags 1. Also, the lower portion of the lower edge bag 2 is fixed to the automobile M. The lateral edge bags 1 and the lower edge bag 2 are formed so as to project forward from the windshield W with a certain thickness T. In addition, the lateral edge bags 1 and the lower edge bag 2 have a continuous circular cross section, and the insides thereof, which are hollowly formed, are coupled so as to communicate with each other.
(16) The posture holding member 3 supports the lateral edge bags 1 to hold their posture. The posture holding member 3 has an elongated shape and one end thereof is coupled to one upper end portion of the lateral edge bags 1 and the other end is coupled to the other upper end portion of the lateral edge bags 1. In addition, the posture holding member 3 is formed to be long widthwise in a direction along the windshield W and is disposed to substantially face a front edge portion B of the roof panel so as to hide the front edge portion B of the roof panel from the front side. The posture holding member 3 may be composed of, for instance, a tether, the ground fabric of the external airbag, or a thin airbag.
(17)
(18) At this point, as illustrated in
(19) In addition, while the lateral edge bags 1 are deployed along the front pillars P, the lower edge bag 2 is also exposed to the outside of the vehicle and is deployed along the cowl panel L. In this manner, as illustrated in
(20) It is to be noted that the direction of deployment of the external airbag is controllable, for instance, by the direction of deployment gas injected from the inflator 5, the shape of the external airbag, and the manner in which the external airbag is folded. Also, the order of deploying the external airbag is controllable by the manner of folding, and for instance, by folding the external airbag so that the upper ends of the lateral edge bags 1 and the posture holding member 3 are disposed outwardly, the external airbag may be deployed as described above.
(21) Next, an example will be described in which the external airbag is deployed to protect a subject to be protected. First, when a subject to be protected such as a pedestrian or a bicycle rider approaches the front of the automobile M, a detection sensor (not illustrated) mounted on the automobile M detects the subject to be protected. As a detection sensor, it is possible to utilize, for instance, a sensor that detects a subject to be protected by emitting laser to the subject, and a sensor that detects a subject based on an image obtained from a camera. When it is determined that the subject to be protected collides with the automobile M based on detection information obtained from the detection sensor, as illustrated in
(22) When the deployment gas is injected into the external airbag, as illustrated in
(23) When the lateral edge bags 1 are deployed so as to cover the front pillars P from the lower end to the upper end, the posture holding member 3 is positioned to hide the front edge portion B of the roof panel from the front side. In addition, while the lateral edge bags 1 are deployed, the lower edge bag 2 is deployed so as to cover the cowl panel L. In this manner, the lateral edge bags 1 and the lower edge bag 2 are deployed along the front pillars P and the cowl panel L, and thus the view of a driver of the automobile M is not obstructed but the view of the driver at the time of deployment is secured. Since the deployed external airbag has a shape surrounding the windshield W, the view of the driver is secured even after the deployment.
(24) In this manner, as illustrated in
(25) Thus, by deploying the external airbag as described above, it is possible to receive the subject to be protected C thrown into a wide range. For instance, as illustrated in
(26) As illustrated in
(27) It is to be noted that the lateral edge bags 1 are preferably deployed so as to project forwardly from the windshield W with thickness T that allows the subject C to get caught inside the lateral edge bags 1. In addition, the posture holding member 3 is preferably provided upwardly in the direction of the thickness T of the lateral edge bags 1a and 1b. This reliably reduces the risk of the subject to be protected C being thrown over the lateral edge bags 1 and the posture holding member 3 to the outside of the external airbag.
(28) In this manner, it is possible to protect the subject C from direct collision with the front pillars P or the front edge portion B of the roof panel and simultaneously to protect the subject C from being thrown to the outside of the lateral edge bags 1 and the posture holding member 3 to be involved in a secondary collision with an oncoming vehicle. In the case where the subject to be protected C is thrown toward the cowl panel L, the subject C is received by the lower edge bag 2, thereby enabling the subject C to be protected from direct collision with the cowl panel L.
(29) According to the present implementation, coupling the upper end portions of the lateral edge bags 1 by the posture holding member 3 allows the posture of the external airbag to be easily stabilized at the time of deployment and after the deployment. In addition, the lateral edge bags 1, the lower edge bag 2, and the posture holding member 3 allow the subject C to be protected from direct collision with solid parts of the automobile M and simultaneously allow the subject C, which is thrown in various directions, to be kept inside the external airbag.
(30) <A Second Implementation>
(31) The external airbag in the first implementation may be provided with linear members that extend between the lateral edge bags 1. For instance, as illustrated in
(32) Thus, the subject C thrown toward the windshield W may be received by the linear members 21. At this point, the collision energy of the subject C may be absorbed by the linear members 21 which bend in the space between the linear members 21 and the windshield W, thereby enabling the subject C to be protected from direct collision with the windshield W. It is to be noted that the subject C thrown in a lateral direction of the automobile M may be received by the upper half of the inner walls of the lateral edge bags 1, and the subject C thrown in an upward direction of the automobile M may be received by the posture holding member 3. Also, since the lateral edge bags 1 are mutually coupled by the linear member 21, the posture of the external airbag may be more stabilized at the time of deployment and after the deployment. In addition, disposition of the linear members 21 in a net pattern allows the view of the driver to be secured.
(33) As illustrated in
(34) <A Third Implementation>
(35) Although the lateral edge bags 1 and the lower edge bag 2 are formed to have a continuous circular cross section in the first and second implementations, it is sufficient to be able to receive the subject to be protected C, and the cross section is not limited to be circular.
(36) For instance, as illustrated in
(37) According to the present implementation, the end 32 of the lateral edge bags 31 is formed to be bent inwardly, and thus it is possible to reliably support the outwardly thrown subject C and to keep the subject C inside the external airbag.
(38) <A Fourth Implementation>
(39) Although the lateral edge bags in the pair and the lower edge bag are formed with an uniform thickness T in the first to third implementations, the thickness T may be changed according to the location of disposition.
(40) For instance, as illustrated in
(41) According to the present implementation, reduced thickness T in part allows the speed of deployment to be improved and a housing space to be decreased, and increased thickness T of the upper end of each lateral edge bag 41 allows a function of receiving the subject C to be maintained. It is to be noted that the thickness T of the external airbag is preferably changed according to the direction in which the subject to be protected C is thrown. For instance, when it is probable that the subject to be protected C is thrown toward the lower edge of the windshield W, the external airbag may be formed so that the thickness T gradually increases from the upper edge side to the lower edge side of the windshield W.
(42) It is to be noted that in the first to fourth implementations, the posture holding member 3 is disposed with the widthwise long surface thereof substantially parallel to the windshield W. However, it is sufficient that the upper end portions of the lateral edge bags in the pair be coupled, and the shape and orientation of the posture holding member 3 are not particularly limited. For instance, as illustrated in