The present application claims priority to Japanese patent application JP 2021-143662, filed Sep. 3, 2021, the entire contents of which being incorporated herein by reference in its entirety.
The present disclosure relates to a lower vehicle-body structure of a vehicle in which plural sets of suspension links included in a rear suspension apparatus are provided so as to extend to the vehicle-width-direction inner side from a lower position of a wheel well.
In general, a rear suspension apparatus includes plural sets of suspension links that extend to the vehicle-width-direction inner side from a lower position of a wheel well.
When underfloor traveling air from the vehicle-body lower side becomes entrained with respect to the abovementioned rear suspension apparatus and peripheral portions thereof, the deterioration of the aerodynamic characteristics is caused. In order to solve the problem as above, an undercover has been mounted on a lower portion of a suspension link as disclosed in Patent Literature 1. However, there has been a problem in that a relatively large undercover member is needed for the lower portion of the suspension link, and it becomes disadvantageous in terms of weight and cost.
Thus, an object of the present disclosure is to provide a lower vehicle-body structure of a vehicle capable of suppressing the deterioration of aerodynamic characteristics at a space-saving undercover member utilizing a lower surface of a suspension link by the undercover member flush with the lower surface of the suspension link.
One embodiment of the present disclosure is a lower vehicle-body structure of a vehicle, the lower vehicle-body structure being provided with plural sets of suspension links included in a rear suspension apparatus, the plural sets of suspension links being provided so as to extend to a vehicle-width-direction inner side from a lower position of respective wheel wells. The lower vehicle-body structure is characterized in that: a set of a pair of left and right first suspension links out of the suspension links is respectively configured in a U-shape of which upper surface is opened in cross-section; and a first undercover member that covers a vehicle-body lower surface so as to be flush with a lower surface of each of the first suspension links is provided on a side portion of the first suspension link.
The abovementioned rear suspension apparatus may be a multi-link rear suspension apparatus. The abovementioned first suspension link may be set to be a lower lateral link.
By the embodiment of the present disclosure, the deterioration of the aerodynamic characteristics can be suppressed by the space-saving first undercover member effectively utilizing the lower surface of the first suspension link by the first undercover member flush with the lower surface of the first suspension link.
In other words, the lower surface of the first suspension link is utilized as a part of the undercover portion. Therefore, the area of the first undercover member can be reduced by the amount, thereby saving space. In addition, a case where the underfloor traveling air becomes entrained by the rear suspension apparatus and peripheral parts thereof can be suppressed by the first undercover member.
As an aspect of the present disclosure, a second undercover member that covers the vehicle-body lower surface so as to be flush with the lower surface of the abovementioned first suspension link may be provided on each of another set of a pair of left and right second suspension links positioned on a vehicle front side of the abovementioned first suspension links out of the abovementioned suspension links.
The abovementioned second suspension links may be set to be lower trailing links in the multi-link rear suspension apparatus.
By the aspect of the present disclosure, the deterioration of the aerodynamic characteristics can be further suppressed by the second undercover member and the first undercover member positioned on the front side and the rear side.
As an aspect of the present disclosure, a third undercover member that covers the vehicle-body lower surface may be provided on at least the vehicle-width-direction inner side of the second undercover member.
By the aspect of the present disclosure, the rectification effect of the underfloor traveling air can be further improved together with each of the first and second undercover members serving as other undercover members.
As an aspect of the present disclosure, a curvature portion may be formed in the first undercover member along a curvature shape of a lower surface of the first suspension link.
By the aspect of the present disclosure, the curvature portion of the first undercover member extends along the curvature shape of the lower surface of the first suspension link, and hence the rectification function of the underfloor traveling air can be ensured.
As an aspect of the present disclosure, a plurality of ribs that extend in a front-rear direction of the vehicle so as to protrude to a vehicle lower side may be provided on a lower surface of the second undercover member.
By the aspect of the present disclosure, a case where the underfloor traveling air that flows toward the rear side from the front side through the lower portion of the second undercover member is released to the left and right in the vehicle width direction can be suppressed by the ribs, thereby improving the rectification effect.
According to the present disclosure, the deterioration of the aerodynamic characteristics can be suppressed at the space-saving undercover member utilizing the lower surface of the suspension link by the undercover member flush with the lower surface of the suspension link.
An object of suppressing the deterioration of aerodynamic characteristics at a space-saving undercover member utilizing a lower surface of a suspension link by the undercover member or structure flush with the lower surface of the suspension link is attained by a lower vehicle-body structure of a vehicle, the lower vehicle-body structure being provided with plural sets of suspension links included in a rear suspension apparatus, the plural sets of suspension links being provided so as to extend to a vehicle-width-direction inner side from a lower position of respective wheel wells. The lower vehicle-body structure of a vehicle is characterized in that: a set of a pair of left and right first suspension links out of the suspension links is respectively configured in a U-shape of which upper surface is opened in cross-section; and a first undercover member or structure that covers a vehicle-body lower surface so as to be flush with a lower surface of each of the first suspension links is provided on a side portion of the first suspension link.
One embodiment of the present disclosure is described in detail with reference to the drawings below.
The drawings illustrate a lower vehicle-body structure of a vehicle according to some embodiments of the present disclosure.
In
From a rear end portion of the rear floor panel 1 to a rear end portion of the front floor panel, rear side frames 3 each having a front-rear two-part split structure that extend in the front-rear direction of the vehicle are provided on both of left and right vehicle-width-direction end portions of those floor panels.
Side sills (not shown) that extend to the vehicle front side to be continuous from the rear side frames 3 are provided, and rear end portions of the side sills are provided so as to overlap with front end portions of the rear side frames 3. The rear side frames 3 and the side sills described above are all vehicle-body strength members.
Meanwhile, as illustrated in
The rear bumper 4 is an injection molded article of resin installed along a lower end portion of the rear portion of the vehicle. The rear bumper 4 covers a vehicle-body rear structure formed by a rear bumper reinforcement, a rear portion of the rear floor panel 1, a rear portion of the rear side frame 3, a rear end panel, and the like, and a silencer 10 described below from the rear side.
As illustrated in
As illustrated in
The rear bumper 4 has lower corner walls 4C continuous with vehicle-width-direction outer portions of the lower wall portion 7 and lower portions of the side wall portions 4B, and openings 8 from which exhaust gas exhausted from tail pipes 12, 13 described below is discharged to the vehicle rear side are formed in rear surface portions of those lower corner walls 4C.
The vehicle of the present embodiment is a front-engine rear-drive (front-engine rear-wheel drive) type, that is, a so-called FR-type. Therefore, in the vehicle-width-direction center of the front floor panel, a tunnel portion 9 that extends in the front-rear direction of the vehicle and protrudes to the vehicle cabin side is provided (see
As illustrated in
As illustrated in the same drawing, in the vehicle-width-direction center of a front portion of the silencer 10, the silencer 10 has an inlet pipe 11 that introduces exhaust gas into the silencer 10. On both of left and right end portions of the silencer 10 in the vehicle width direction, the tail pipes 12, 13 each having an L-shape in bottom view are provided. Rear end portions 12a, 13a of the tail pipes 12, 13 face the openings 8 in the rear bumper 4. As illustrated in
On lower portions of the pair of left and right rear side frames 3, a rear suspension apparatus 20 that independently suspends left and right rear wheels (not shown) is provided (see
As illustrated in
The front cross member 21 connects front sides of the pair of left and right side cross members 23, 23 to each other in the vehicle width direction. The rear cross member 22 connects rear sides of the pair of left and right side cross members 23, 23 to each other in the vehicle width direction.
The side cross members 23 extend in the vehicle front-rear direction. Parts in the side cross members 23 on the front side of sections connected to the front cross member 21 extend to the vehicle front side and the vehicle-width-direction outer side. Vehicle-body mounting members 25 are provided on front end portions of the side cross members 23.
Parts in the side cross members 23 on the rear side of sections connected to the rear cross member 22 extend to the vehicle rear side and the vehicle-width-direction outer side. Vehicle-body mounting members 26 are provided on rear end portions of the side cross members 23.
The multi-link rear suspension includes five suspension links on each of the left and right sides. Those five suspension links have three lower links positioned on the lower side and two upper links positioned on the upper side, and the suspension cross member 24 and wheel support members (not shown) of the rear wheels are connected to each other by the five suspension links 27 to 31 on each side.
The three lower links positioned on the lower side include a lower lateral link 27, a toe control link 28 positioned on the rear side of the lower lateral link 27, and a lower trailing link 29 positioned on the front side of the lower lateral link 27.
The two upper links positioned on the upper side include an upper lateral link 30, and an upper trailing link 31 positioned on the front side of the upper lateral link 30.
The lower lateral link 27 extends from a mounting portion 32 toward the vehicle-body outer side in the vehicle width direction, and an end portion 27a on the rear wheel side is connected to the wheel support member.
The toe control link 28 extends from a mounting portion toward the vehicle-body outer side to be tilted forward, and an end portion 28a on the rear wheel side is connected to the wheel support member.
The lower trailing link 29 extends from a mounting portion toward the vehicle-body outer side to be tilted rearward, and an end portion 29a on the rear wheel side is connected to the wheel support member.
The upper lateral link 30 extends from a mounting portion 33 toward the vehicle-body outer side to be tilted forward, and an end portion 30a on the rear wheel side is connected to the wheel support member.
The upper trailing link 31 extends from a mounting portion 34 toward the vehicle-body outer side to be tilted rearward, and an end portion 31a on the rear wheel side is connected to the wheel support member.
As illustrated in
The rear suspension apparatus 20 includes a suspension damper 36.
The suspension damper 36 includes a strut 37, and a coil spring provided between an upper seat and a lower seat in a tensioned state. An upper end portion of the suspension damper 36 is attached to the rear side frame 3, and a lower end portion of the suspension damper 36 is attached to the lower lateral link 27.
In other words, the multi-link rear suspension apparatus 20 has a total of five sets of suspension links (a total of five sets, that is, the lower lateral links 27, the toe control links 28, the lower trailing links 29, the upper lateral links 30, and the upper trailing links 31), and each of those suspension links are provided so as to extend from a lower position of a wheel well to the vehicle-width-direction inner side.
As illustrated in
The stabilizer 40 suppresses the roll angle (for example, the vehicle body is tilted when the vehicle turns a corner, and the tilt angle is referred to as a roll angle) at the time of bump or rebound of only one wheel by resistance of torsional rigidity.
On lower portions of the vehicle-body mounting members 25 on the front end portions, brackets 41 that extend from the lower portions toward the vehicle-outer-direction front sides are provided.
Out of the abovementioned suspension links (the lower lateral links 27, the toe control links 28, the lower trailing links 29, the upper lateral links 30, and the upper trailing links 31), the lower lateral links 27 serving as one set of a pair of left and right first suspension links are each configured in a U-shape in cross-section of which upper surface is opened as illustrated in
In other words, as illustrated in
As illustrated in
As illustrated in
As a result, the deterioration of the aerodynamic characteristics is suppressed since the first undercover member 51 saves the space as a result of effectively utilizing the lower surface of the lower lateral link 27 by the first undercover member 51 being flush with the lower surface of the lower lateral link 27. In other words, by using the lower surface of the lower lateral link 27 as a part of the undercover portion, the area of the first undercover member 51 is reduced by the amount, thereby reducing space. In addition, a case where underfloor traveling air becomes entrained by the rear suspension apparatus 20 and peripheral parts thereof at the first undercover member 51 is suppressed.
As illustrated in
Meanwhile, a plurality of mounting pieces 42 are integrally provided on the rear wall 27d of the lower lateral link 27. The first undercover member 51 is mounted on the lower lateral link 27 by connecting and fixing the mounting seat 51b of the first undercover member 51 to the mounting pieces 42 of the lower lateral link 27 with use of mounting members 43 such as bolts and nuts.
As illustrated in
As a result, the deterioration of the aerodynamic characteristics is further suppressed by the second undercover member 52 and the first undercover member 51 positioned on the front side and the rear side.
As illustrated in
Meanwhile, the lower trailing link 29 is formed in an inverted U-shape in cross-section. A plurality of mounting pieces 44 that extend from lower ends of a front wall and a rear wall of the lower trailing link 29 front-rear direction are integrally formed. The second undercover member 52 is mounted on the lower trailing link 29 by connecting and fixing the mounting seat 52b of the second undercover member 52 to the mounting pieces 44 of the lower trailing link 29 with use of mounting members 45 such as bolts and nuts.
As a result, a case where underfloor traveling air that flows toward the rear side from the front side through a lower portion of the second undercover member 52 is released to the left and right in the vehicle width direction is suppressed by the plurality of ribs 52d, thereby improving the rectification effect. In addition, the rigidity of the second undercover member 52 is improved by the ribs 52d.
As illustrated in
As a result, the rectification effect of the underfloor traveling air is further improved together with each of the first and second undercover members 51, 52 serving as other undercover members.
As illustrated in
Incidentally, as illustrated in
On the bottom wall 51a of the first undercover member 51, curvature portions 54, 55 are provided along the curvature shape portions 48, 49 of the lower lateral link 27. As a result, the curvature portions 54, 55 of the first undercover member 51 extend along the curvature shapes of the lower surface of the lower lateral link 27 serving as the first suspension link, and the rectification function of the underfloor traveling air is ensured.
As illustrated in
Similarly, as illustrated in
In the drawings, an arrow F indicates the vehicle front side, an arrow R indicates the vehicle rear side, an arrow IN indicates the inner side in the vehicle width direction, an arrow OUT indicates the outer side in the vehicle width direction, and an arrow UP indicates the vehicle upper side.
As above, the lower vehicle-body structure of the vehicle according to the present embodiment, in which the plural sets of suspension links (see each of the links 27 to 31) included in the rear suspension apparatus 20 are provided so as to extend to the vehicle-width-direction inner side from the lower position of the respective wheel wells, is characterized in that the set of a pair of left and right first suspension links (lower lateral links 27) out of the abovementioned suspension links (each of the links 27 to 31) is respectively configured in a U-shape of which upper surface is opened in cross-section, and the first undercover member 51 that covers the vehicle-body lower surface so as to be flush with the lower surface of each of the first suspension links (lower lateral links 27) is provided on the rear side portion of the first suspension link (lower lateral link 27) (see
According to the lower vehicle-body structure of the vehicle as above, the deterioration of the aerodynamic characteristics can be suppressed by the space-saving first undercover member 51 effectively utilizing the lower surface of the first suspension link (lower lateral link 27) by the first undercover member 51 flush with the lower surface of the first suspension link (lower lateral link 27).
In other words, the lower surface of the first suspension link (lower lateral link 27) is utilized as a part of the undercover portion. Therefore, the area of the first undercover member 51 can be reduced by the amount, thereby saving space. In addition, a case where the underfloor traveling air becomes entrained by the rear suspension apparatus 20 and peripheral parts thereof can be suppressed at the first undercover member 51.
The first undercover member 51 is provided on the rear side portion of the lower lateral link 27 in the abovementioned embodiment, but a structure in which the first undercover member 51 is provided on a front side portion of the lower lateral link 27 may be employed.
In the lower vehicle-body structure of the vehicle, the second undercover member 52 that covers the vehicle-body lower surface so as to be flush with the lower surface of the abovementioned first suspension link (lower lateral link 27) is provided on each of another set of a pair of left and right second suspension links (lower trailing links 29) positioned on the vehicle front side of the abovementioned first suspension link (lower lateral link 27) out of the abovementioned suspension links (see each of the links 27 to 31) (see
According to the lower vehicle-body structure of the vehicle, the deterioration of the aerodynamic characteristics can be further suppressed by the second undercover member 52 and the first undercover member 51 positioned on the front side and the rear side.
In the lower vehicle-body structure of the vehicle, the third undercover member 53 that covers the vehicle-body lower surface is provided on at least the vehicle-width-direction inner side of the second undercover member 52 (see
According to the lower vehicle-body structure of the vehicle, the rectification effect of the underfloor traveling air can be further improved together with each of the first and second undercover members 51, 52 serving as other undercover members.
In the lower vehicle-body structure of the vehicle, the curvature portions 54, 55 are formed in the first undercover member 51 along the curvature shape of the lower surface of the abovementioned first suspension link (lower lateral link 27) (see
According to the lower vehicle-body structure of the vehicle, the curvature portions 54, 55 of the first undercover member 51 extend along the curvature shape of the lower surface of the first suspension link (lower lateral link 27), and hence the rectification function of the underfloor traveling air can be ensured.
In the lower vehicle-body structure of the vehicle, on the lower surface of the second undercover member 52, the plurality of ribs 52d that extend in the front-rear direction of the vehicle so as to protrude to the vehicle lower side are provided (see
According to the lower vehicle-body structure of the vehicle as above, a case where the underfloor traveling air that flows toward the rear side from the front side through the lower portion of the second undercover member 52 is released to the left and right in the vehicle width direction can be suppressed by the ribs 52d, thereby improving the rectification effect.
In terms of correspondence between the configuration of the present disclosure and the abovementioned embodiment, the suspension links of the present disclosure correspond to the lower lateral link 27, the toe control link 28, the lower trailing link 29, the upper lateral link 30, and the upper trailing link 31 of the present embodiment. Similarly, one set of a pair of left and right first suspension links corresponds to the lower lateral links 27, and the other set of a pair of left and right second suspension links corresponds to the lower trailing links 29. However, the present disclosure is not limited to the configuration of the abovementioned embodiment.
For example, in the abovementioned embodiment, the multi-link rear suspension apparatus 20 including the lower lateral link 27, the toe control link 28, the lower trailing link 29, the upper lateral link 30, and the upper trailing link 31 has been exemplified as the rear suspension apparatus 20. However, the present disclosure can be applied to a lower vehicle-body structure of a vehicle including a double-wishbone rear suspension apparatus including a pair of left and right front-side lower arms, a pair of left and right rear-side lower arms, a pair of left and right front-side upper arms, a pair of left and right rear-side upper arms, and a pair of left and right control links.
As described above, one embodiment of the present disclosure is useful for a lower vehicle-body structure of a vehicle in which plural sets of suspension links included in a rear suspension apparatus are provided so as to extend to the vehicle-width-direction inner side from a lower position of respective wheel wells.
Number | Date | Country | Kind |
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2021-143662 | Sep 2021 | JP | national |
Number | Name | Date | Kind |
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9902225 | Riegelsberger | Feb 2018 | B2 |
10246136 | Scholz | Apr 2019 | B2 |
20190199133 | Yuasa | Jun 2019 | A1 |
Number | Date | Country |
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2019-177775 | Oct 2019 | JP |
2019166988 | Oct 2019 | JP |
Entry |
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JP2019166988A Machine English translation (Year: 2018). |
JP2019166988A Machine English translation (Year: 2019). |
Number | Date | Country | |
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20230070828 A1 | Mar 2023 | US |