This application is a National Stage Entry application of PCT International Application No. PCT/JP2015/060063, filed on Mar. 31, 2015, which claims the priority benefit of Japanese Patent Application No. 2014-173599, filed on Aug. 28, 2014, the entire contents of both of which are hereby incorporated by reference.
1. Technical Field
The present invention relates to a structure for absorbing an impact applied from the inside or outside of a vehicle near a seat belt anchor bolt by which a trough ring (unit for hanging a seat belt by causing the seat belt to pass therethrough) is attached to a vehicle body panel.
2. Description of the Background
Conventionally, there has been adopted an impact absorbing structure, for example, as disclosed in Patent Literature 1, near a seat belt anchor bolt for absorbing an impact applied from the inside of a vehicle via a vehicle interior component or an impact applied from the outside of the vehicle via a vehicle body panel.
Specifically, in the impact absorbing structure of Japanese Patent Application Laid-open 2009-220713 (hereinafter referred to as “Patent Literature 1”), in the vicinity of a seat belt anchor bolt (22), impact absorbing ribs (57a, 57b) are arranged on a back face of a vehicle interior component (7). Ends of the impact absorbing ribs (57a, 57b) faces to a head part of the seat belt anchor bolt (22).
In the impact absorbing structure of Patent Literature 1, in the vicinity of the seat belt anchor bolt (22), when an impact is applied from the inside of the vehicle via the vehicle interior component (7) or when an impact is applied from the outside of the vehicle via the vehicle body panel (5), the applied impact is to be absorbed while the head part of the seat belt anchor bolt (22) crushes the impact absorbing ribs (57a, 57b). Accordingly, in a case that clearance between the head part of the seat belt anchor bolt (22) and the impact absorbing ribs (57a, 57b) is not sufficient, there is a problem that sufficient impact absorbing effect cannot be obtained because the impact absorbing ribs is crushed in a relatively early stage after the impact occurs.
In the above description, reference signs in Patent Literature 1 are shown in parentheses.
Being different from the impact absorbing structure in Patent Literature 1, for example, an impact absorbing structure 40 illustrated in
The impact absorbing structure 40 in
However, according to the impact absorbing structure 40 in
Thus, crushing of the impact absorbing box 5 is unstable such that the impact absorbing box 5 is not crushed as designed, so that impact absorption effects are fluctuating and unstable.
To solve the abovementioned problem, an object of the present invention is to provide an impact absorbing structure near a seat belt anchor bolt suitable for obtaining unfluctuating and stable impact absorption effects with stable crushing of an impact absorbing box.
To achieve the abovementioned object, the present invention provides an impact absorbing structure is located between a vehicle body panel and a vehicle interior component to absorb an impact applied from outside or inside of a vehicle near a seat belt anchor bolt that protrudes from the vehicle body panel toward the inside of the vehicle. The impact absorbing structure includes a cylinder body that accommodates a head part of the seat belt anchor bolt; an impact absorbing box that is arranged adjacently to the cylinder body, the impact absorbing box including a top plate facing the vehicle body panel; a base that supports the impact absorbing box; an attaching unit that attaches the base to a back face of the vehicle interior component; a stepped portion that is arranged on a side face of the impact absorbing box as a base point of crush deformation of the impact absorbing box; and a rib that is arranged between the impact absorbing box and the cylinder body, the rib configured to prevent escape of the impact absorbing box due to tilting thereof.
In the present invention, the rib may have a divergent shape as being spread from the vicinity of the stepped portion toward the vicinity of a bottom part of the impact absorbing box.
In the present invention, a bottom part of the cylinder body and a bottom part of the rib may be integrated by being connected with a connecting rib.
In the impact absorbing structure near a seat belt anchor bolt of the present invention, in addition to arrange the impact absorbing box as a member to actually absorb an impact, a stepped portion is arranged on a side face of the impact absorbing box as a base point of crush deformation of the impact absorbing box, and a rib is arranged between the impact absorbing box and the cylinder body to prevent escape of the impact absorbing box due to tilting thereof. Accordingly, effects described below are obtained.
Effect 1
In the vicinity of a seat belt anchor bolt, there are variations in directions in which impacts are applied from the inside of a vehicle via a vehicle interior component or in which impacts are applied from the outside of the vehicle via a vehicle body panel. That is, impacts are not always applied from the same direction. According to the present invention, even when a direction of an impact varies, the impact absorbing box is to be crushed surely in the same direction since the impact absorbing box is to be crushed with the stepped portion on the side face being a base point. That is, crushing of the impact absorbing box is stable. Thus, the present invention can provide the impact absorbing structure near a seat belt anchor bolt suitable for obtaining unfluctuating and stable impact absorbing effects.
Effect 2
In particular, according to the present invention, when the impact absorbing box is to be tilted by an impact in a direction to escape from the seat belt anchor bolt, holding action to prevent the tilting is exerted by the rib being pulled in the tilting direction. Accordingly, the tilting of the impact absorbing box can be effectively suppressed. Thus, it is also possible to obtain an effect that crushing of the impact absorbing box becomes more stable such that the impact absorbing box is crushed as designed.
Effect 3
Since an impact is absorbed by the impact absorbing box instead of a conventional cross-shaped rib, the present invention can provide the impact absorbing structure having an increased absorption amount of impact energy as being suitable for satisfying a necessary impact energy absorption amount.
In the following, preferable embodiments of the present invention will be explained with reference to the attached drawings.
General Description of Seat Belt Apparatus
A seat belt apparatus 1 in
The through-ring 3 is attached directly to the vehicle body panel W 1. The through-ring 3 is swingable to each side about a seat belt anchor bolt B1.
Description of Impact Absorbing Structure Near Seat Belt Anchor Bolt
The seat belt anchor bolt B1 is a protruding object (vehicle body panel protruding object) protruding from the vehicle body panel W1 toward the inside of the vehicle. An impact absorbing structure 4 near the seat belt anchor bolt B1 is located between the vehicle body panel W1 and the vehicle interior component W2 as illustrated in
Specifically, the impact absorbing structure 4 includes a cylinder body 12 that accommodates a head part of the seat belt anchor bolt B1, an impact absorbing box 5 that is arranged adjacently to the cylinder body 12 and that includes a top plate 5A facing the vehicle body panel W1, a base 6 that supports the impact absorbing box 5, and an attaching unit 7 that attaches the base 6 to a back face of the vehicle interior component W1.
The impact absorbing box 5 includes four side plates 5B, 5C, 5D, 5E integrally formed at edge parts of the top plate 5A to be into a trapezoidal shape in side view.
Further, the impact absorbing structure 4 in
In the impact absorbing structure 4 in
For example, the stepped portion 8 may be arranged at any of the side plates 5C to 5E other than the side plate 5B so that the impact absorbing box 5 is to be crushed as buckling in any direction other than a direction toward the seat belt anchor bolt B1. Further, two or more of the stepped portions 8 may be arranged at a single side plate among the four side plates 5B to 5E. Further, one or a plurality of stepped portions 8 may be arranged at each of two or more of the side plates among the four side plates 5B to 5E.
Further, the impact absorbing structure 4 in
The inventor confirmed occurrence of the escaping-slipping phenomenon due to tilting of the impact absorbing box 5 in the impact absorbing structure 40 illustrated in
In contrast, according to the impact absorbing structure 4 illustrated in
In the impact absorbing structure 4 in
Further, in the impact absorbing structure 4 in
The impact absorbing structure 4 in
The base 6 to support the impact absorbing box 5 is arranged below the impact absorbing box 5. In the impact absorbing structure 4 in
Referring to
According to the impact absorbing structure 4 of the present embodiment as described above, in the vicinity of the seat belt anchor bolt B1, even when a direction of an impact applied from the inside of the vehicle via the vehicle interior component W2 or a direction of an impact applied from the outside of the vehicle via the vehicle body panel W1 varies, the impact absorbing box 5 is to be crushed surely in the same direction since the impact absorbing box 5 is to be crushed with the stepped portion 8 on the side face being a base point. That is, it is possible to obtain unfluctuating and stable impact absorbing effects with stable crushing of the impact absorbing box 5.
In particular, according to the impact absorbing structure 4 of the present embodiment, when the impact absorbing box 5 is to be tilted by an impact in a direction to escape from the seat belt anchor bolt B1, holding action to prevent the tilting is exerted by the rib 9 being pulled in the tilting direction. Accordingly, the tilting of the impact absorbing box 5 can be effectively suppressed. Thus, crushing of the impact absorbing box 5 becomes more stable such that the impact absorbing box 5 is crushed as designed.
Not limited to the embodiments described above, the present invention may be modified variously by a person skilled in the art within the technical scope of the present invention.
Number | Date | Country | Kind |
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2014-173599 | Aug 2014 | JP | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/JP2015/060063 | 3/31/2015 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2016/031287 | 3/3/2016 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
5641195 | Patel | Jun 1997 | A |
5779270 | Tanaka | Jul 1998 | A |
5791687 | Gotou | Aug 1998 | A |
5833303 | Kawai | Nov 1998 | A |
6007100 | Steffens, Jr. | Dec 1999 | A |
6050631 | Suzuki | Apr 2000 | A |
6244626 | Monaghan | Jun 2001 | B1 |
6302477 | Satou | Oct 2001 | B1 |
6454305 | Prottengeier | Sep 2002 | B1 |
6733064 | Fox | May 2004 | B2 |
6749224 | Stojanovski | Jun 2004 | B1 |
6832800 | Hwang | Dec 2004 | B2 |
20050181178 | Murayama | Aug 2005 | A1 |
20090289470 | Dix | Nov 2009 | A1 |
Number | Date | Country |
---|---|---|
0763449 | Mar 1997 | EP |
0965495 | Dec 1999 | EP |
2910410 | Jun 2008 | FR |
09-076875 | Mar 1997 | JP |
2002-029257 | Jan 2002 | JP |
2009-220713 | Oct 2009 | JP |
10-0374620 | Jun 2003 | KR |
Entry |
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International Search Report for International Application No. PCT/JP2015/060063 dated May 19, 2015, Japan. |
Number | Date | Country | |
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20170253209 A1 | Sep 2017 | US |