Front Lower Body Structure of Vehicle Having Improved Stiffness
20220119043 ยท 2022-04-21
Inventors
Cpc classification
B62D25/2018
PERFORMING OPERATIONS; TRANSPORTING
B62D21/15
PERFORMING OPERATIONS; TRANSPORTING
B62D27/023
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A front lower body structure of a vehicle includes a front side rear lower member connected from a front side member disposed on one side of a fender apron to a side sill inner, a center floor side upper member disposed in a longitudinal direction of the vehicle and extending from an upper surface of a dash panel to a center floor panel, and a reinforcement bracket connecting the front side rear lower member with the center floor side upper member.
Claims
1. A front lower body structure of a vehicle comprising: a front side rear lower member connected from a front side member disposed on one side of a fender apron to a side sill inner; a center floor side upper member disposed in a longitudinal direction of the vehicle and extending from an upper surface of a dash panel to a center floor panel; and a reinforcement bracket connecting the front side rear lower member with the center floor side upper member.
2. The structure of claim 1, further comprising a reinforcement groove disposed in a direction in which the front side rear lower member and the center floor side upper member are connected to the reinforcement bracket.
3. The structure of claim 1, wherein: a first end of the reinforcement bracket is bonded to a front sub-frame rear mounting bracket having a front sub-frame fastened to the front side rear lower member; and a second end of the reinforcement bracket is bonded to the center floor side upper member.
4. The structure of claim 1, wherein the reinforcement bracket comprises: a main body part; a reinforcement groove formed to be stepped with the main body part; and a flange part formed along a circumference of the main body part.
5. The structure of claim 4, wherein the flange part comprises: a first flange part formed on one side of the main body part and bonded to the front side rear lower member; a second flange part bonded to the center floor side upper member; and a third flange part connecting the first flange part with the second flange part along the circumference of the main body part.
6. The structure of claim 5, wherein the first flange part is welded to at least one of the front side rear lower member or a front sub-frame rear mounting bracket.
7. The structure of claim 5, wherein the second flange part is welded with the dash panel and the center floor side upper member by three layers.
8. The structure of claim 4, wherein the reinforcement groove is formed to be stepped with the main body part to be directed to an inside of the reinforcement bracket from the main body part.
9. A vehicle comprising: a front side rear lower member connected from a front side member disposed on one side of a fender apron to a side sill inner; a center floor side upper member disposed in a longitudinal direction of the vehicle and extending from an upper surface of a dash panel to a center floor panel; and a reinforcement bracket connecting the front side rear lower member with the center floor side upper member, the reinforcement bracket comprising: a main body part comprising a metallic plate; a reinforcement groove formed to be stepped with the main body part; and a flange part formed along a circumference of the main body part.
10. The vehicle of claim 9, wherein the reinforcement groove is disposed in a direction in which the front side rear lower member and the center floor side upper member are connected to the reinforcement bracket.
11. The vehicle of claim 9, wherein: a first end of the reinforcement bracket is bonded to a front sub-frame rear mounting bracket having a front sub-frame fastened to the front side rear lower member; and a second end of the reinforcement bracket is bonded to the center floor side upper member.
12. The vehicle of claim 9, wherein the flange part comprises: a first flange part formed on one side of the main body part and bonded to the front side rear lower member; a second flange part bonded to the center floor side upper member; and a third flange part connecting the first flange part with the second flange part along the circumference of the main body part.
13. The vehicle of claim 12, wherein the first flange part is welded to at least one of the front side rear lower member or a front sub-frame rear mounting bracket.
14. The vehicle of claim 12, wherein the second flange part is welded with the dash panel and the center floor side upper member by three layers.
15. The vehicle of claim 9, wherein the reinforcement groove is formed to be stepped with the main body part to be directed to an inside of the reinforcement bracket from the main body part.
16. A method of forming a front lower body structure of a vehicle, the method comprising: connecting a front side rear lower member from a front side member disposed on one side of a fender apron to a side sill inner; positioning a center floor side upper member in a longitudinal direction of the vehicle and extending from an upper surface of a dash panel to a center floor panel; and connecting the front side rear lower member with the center floor side upper member with a reinforcement bracket.
17. The method of claim 16, further comprising: bonding a first end of the reinforcement bracket to a front sub-frame rear mounting bracket having a front sub-frame fastened to the front side rear lower member; and bonding a second end of the reinforcement bracket to the center floor side upper member.
18. The method of claim 16, wherein the reinforcement bracket comprises: a main body part; a reinforcement groove formed to be stepped with the main body part; and a flange part formed along a circumference of the main body part, wherein the flange part comprises: a first flange part formed on one side of the main body part and bonded to the front side rear lower member; a second flange part bonded to the center floor side upper member; and a third flange part connecting the first flange part with the second flange part along the circumference of the main body part.
19. The method of claim 18, further comprising: welding the first flange part to at least one of the front side rear lower member or a front sub-frame rear mounting bracket; and welding the second flange part with the dash panel and the center floor side upper member by three layers.
20. The method of claim 18, wherein the reinforcement groove is formed to be stepped with the main body part to be directed to an inside of the reinforcement bracket from the main body part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF ILLUSTRATIVE EMBODIMENTS
[0034] Hereinafter, a front lower body structure of a vehicle having improved stiffness according to embodiments of the present disclosure will be described in detail with reference to the accompanying drawings.
[0035] As illustrated in
[0036] The front lower body structure of the vehicle according to embodiments of the present disclosure is preferably for an electric vehicle in which a center panel 18 is not formed on the center floor panel 14.
[0037] The front side member 12 is formed on one side of the fender apron 11 in the longitudinal direction of the vehicle.
[0038] The front side rear lower member 13 formed on the rear of the front side member 12 is connected to the side sill side of the vehicle, that is, the side sill inner 17. Since the front side member 12 is located inside the fender apron ii and the side sill inner 17 is located on the side end of the vehicle, the front side rear lower member 13 is disposed to be tilted from the front inside of the vehicle toward the rear outside of the vehicle.
[0039] The center floor side upper member 15 is formed in the longitudinal direction of the vehicle to extend from the upper surface of the dash panel 21 to the center floor panel 14.
[0040] The reinforcement bracket 22 is provided such that the load transferred from the front side rear lower member 13 to the side sill inner 17 is distributed to the front side rear lower member 13. The reinforcement bracket 22 connects the front side rear lower member 13 with the center floor side upper member 15 to form the pass through which the load is transferred from the front side rear lower member 13 toward the center floor side upper member 15 as well as the side sill inner 17, thereby inducing the load distribution.
[0041] In the electric vehicle, to secure a space in which the high-voltage battery B (shown in
[0042] Therefore, the reinforcement bracket 22 is provided such that the load in the front and rear direction is transferred from the front side rear lower member 13 to the center floor side upper member 15 formed in the electric vehicle.
[0043] As illustrated in
[0044] The main body part 22a is formed of a metallic plate to form a load pass from the front side rear lower member 13 to the center floor side upper member 15.
[0045] The reinforcement groove 22b is formed to be stepped with the main body part 22a on the intermediate portion of the main body part 22a. The reinforcement groove 22b is formed to be directed to the inside of the vehicle from the front side member 12. The pass, through which the load is transferred in the direction in which the reinforcement groove 22b is formed, is formed.
[0046] At this time, the reinforcement groove 22b is formed to be stepped with the main body part 22a from the main body part 22a toward the inside of the reinforcement bracket 22, such that the shape of the cross section perpendicular to the load pass is formed to be bent (see
[0047] The load input from the front end of the vehicle is transferred along the front side rear lower member 13 and then a part (see the solid arrow illustrated in
[0048] As illustrated in
[0049]
[0050] A first welding part W11 has the first flange part 22c welded with the front sub-frame rear mounting bracket 19 in the intermediate portion of the first flange part 22c by plug welding.
[0051] A second welding part W12 has the front side rear lower member 13 and the reinforcement bracket 22 welded. The second welding part W12 is located on the first flange part 22c. At this time, the second welding part W12 is located higher than a fourth welding part W21. That is,
[0052] A third welding part W13 has the reinforcement bracket 22 and the dash panel 21 welded. The third welding part W13 may be located on a portion located on the rear of the vehicle from the main body part 22a in the second flange part 22d.
[0053] The fourth welding part W21 has the reinforcement bracket 22 welded with the front sub-frame rear mounting bracket 19 and the front side rear lower member 13. The reinforcement bracket 22 may be welded with the front sub-frame rear mounting bracket 19 and the front side rear lower member 13 on both ends of the first flange part 22c in the front and rear direction of the vehicle.
[0054] A fifth welding part W22 has the reinforcement bracket 22 welded with the center floor side upper member 15 and the dash panel 21. The second flange part 22d is welded with the center floor side upper member 15 and the dash panel 21 on the side of the reinforcement bracket 22, which is located inside the vehicle. At this time, the fifth welding part W22 is preferably welded to be formed on a plurality of points to enhance the bonding force.
[0055] A sixth welding part W23 has the reinforcement bracket 22 bonded with the front side rear lower member 13 and the dash panel 21. The second flange part 22d located on the front side of the vehicle from the main body part 22a is welded with the front side member 12 and the dash panel 21 to form the sixth welding part W23.
[0056] A seventh welding part W31 has the reinforcement bracket 22 welded with the front side rear lower member 13, the center floor side upper member 15, and the dash panel 21. The seventh welding part W31 may be located on the portion in which the first flange part 22c and the second flange part 22d are connected in the reinforcement bracket 22. Particularly, the seventh welding part W31 may be located on the portion in which the first flange part 22c and the second flange part 22d are connected to the main body part 22a on the rear of the vehicle.
[0057] Meanwhile, the first welding part W11 is welded by plug welding, and the second welding part W12 to seventh welding part W31 are welded by spot welding.