Connecting structure of electric vehicle
11492045 · 2022-11-08
Assignee
Inventors
Cpc classification
B60Y2306/01
PERFORMING OPERATIONS; TRANSPORTING
B60K1/04
PERFORMING OPERATIONS; TRANSPORTING
B62D27/023
PERFORMING OPERATIONS; TRANSPORTING
B62D25/2036
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60J7/00
PERFORMING OPERATIONS; TRANSPORTING
B62D21/15
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A connection structure of an electric vehicle includes a cross member provided in a width direction of a vehicle body, a side member provided in a vehicle body length direction, and a joint member inserted into the cross member and connected to the side member. The joint member includes an insert portion inserted into the cross member, and a clamping portion connected to the side member.
Claims
1. A connection structure of an electric vehicle, the connection structure comprising: a cross member provided in a width direction of a vehicle body; a side member provided in a vehicle body length direction; and a joint member inserted into the cross member and connected to the side member.
2. The connection structure of claim 1, wherein the joint member comprises: an insert portion inserted into the cross member; and a clamping portion connected to the side member.
3. The connection structure of claim 2, wherein the joint member includes a strength bead formed in the width direction of the vehicle body.
4. The connection structure of claim 2, further comprising a strength rib formed inside the insert portion in the width direction of the vehicle body.
5. The connection structure of claim 2, further comprising a connection hole for connection with the cross member formed in up and down directions in the insert portion.
6. The connection structure of claim 5, further comprising a seat rail connected through the connection hole.
7. The connection structure of claim 2, wherein: the side member includes an inner sill panel configured to be connected with the vehicle body; and a panel hole is formed in the inner sill panel, and the insert portion is connected to the cross member through the panel hole.
8. The connection structure of claim 7, further comprising a sealing member configured to seal the panel hole.
9. The connection structure of claim 1, wherein the cross member comprises a connection flange connected to the side member.
10. A connection structure of an electric vehicle, the connection structure comprising: a cross member provided in a width direction of a vehicle body; a side member provided in a vehicle body length direction, wherein the side member comprises: an inner sill panel configured to connect with the vehicle body; an outer sill panel connecting with the inner sill panel; and a side sill reinforcement inserted inside the inner sill panel and the outer sill panel; and a joint member inserted into the cross member and connected to the side member, wherein the joint member comprises: an insert portion inserted into the cross member; and a clamping portion connected to the side member, wherein the clamping portion is connected to the side sill reinforcement.
11. The connection structure of claim 10, wherein the joint member and the side sill reinforcement comprise an aluminum material.
12. The connection structure of claim 11, wherein the joint member and the side sill reinforcement are welded together.
13. A vehicle comprising: a vehicle body including a floor panel; a battery case mounted under the floor panel of the vehicle body; a cross member provided in a width direction of the vehicle body; a side member provided in a length direction of the vehicle body; and a joint member comprising an insert portion inserted into the cross member and a clamping portion connected to the side member.
14. The vehicle of claim 13, wherein the joint member includes a strength bead formed in the width direction of the vehicle body.
15. The vehicle of claim 13, further comprising a strength rib formed inside the insert portion in the width direction of the vehicle body.
16. The vehicle of claim 13, further comprising a connection hole for connection with the cross member formed in up and down directions in the insert portion.
17. The vehicle of claim 16, further comprising a seat rail connected through the connection hole.
18. The vehicle of claim 13, wherein: the side member includes an inner sill panel connected with the vehicle body; and a panel hole is formed in the inner sill panel, and the insert portion is connected to the cross member through the panel hole.
19. The vehicle of claim 18, further comprising a sealing member configured to seal the panel hole.
20. The vehicle of claim 13, wherein the cross member comprises a connection flange connected to the side member.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) These drawings are for reference only in describing exemplary embodiments of the present invention, and therefore, the technical idea of the present invention should not be limited to the accompanying drawings.
(2)
(3)
(4)
(5)
(6)
(7)
(8) The following elements are used to describe embodiments of the present invention.
(9) TABLE-US-00001 10: vehicle body 20: floor panel 30: cross member 32: connection portion 34: connection flange 40: side member 42: inner sill panel 44: panel hole 46, 48: sealing member 50: outer sill panel 60: joint member 62: insert portion 64: strength rib 66: connection hole 68: clamping portion 70, 71: strength bead 80: side sill reinforcement 90: battery case 100: seat rail 102: connection bolt
DETAILED DESCRIPTION OF ILLUSTRATIVE EMBODIMENTS
(10) In the following detailed description, only certain exemplary embodiments of the present invention have been shown and described, simply by way of illustration.
(11) As those skilled in the art would realize, the described embodiments may be modified in various different ways, all without departing from the spirit or scope of the present invention.
(12) Parts indicated by the same reference numerals throughout the specification mean the same components.
(13) In the drawings, the thickness of layers, films, panels, regions, etc., are exaggerated for clarity.
(14) When a part such as a layer, film, region, or plate is said to be “on” another part, this includes not only the case directly above the other part, but also the case where there is another part in between.
(15) In contrast, when an element is referred to as being “directly on” another element, there are no intervening elements present.
(16) Throughout the specification, when a part “includes” a certain component, it means that other components may be further included rather than excluding other components unless specifically stated to the contrary.
(17) Exemplary embodiments of the present invention will hereinafter be described in detail with reference to the accompanying drawings.
(18)
(19) Referring to
(20)
(21) Referring to
(22) The cross member 30 has a roughly “U” shape in its cross-section, and the floor panel 20 and the cross member 30 are connected to form a connection portion 32.
(23) The joint member 60 can be inserted into the connection portion 32 to connect to the cross member 30. Therefore, the cross member 30 and the side member 40 are connected through the connection portion 32 to maintain connectivity, and it is possible to suppress the bending of the side member 40 in the event of a side collision of the vehicle.
(24)
(25) Referring to
(26) The joint member 60 may have strength beads 70 and 71 formed in the width direction of the vehicle body 10. Therefore, even if an impact load is transmitted to the lateral direction of the vehicle body 10, bending of the side member 40 can be suppressed by the strength bead 70 and 71 of the joint member 60. The strength beads 70 and 71 may be formed in the width direction of the vehicle body 10 as shown in the drawing.
(27) Inside the insert portion 62, a strength rib 64 formed in the width direction of the vehicle body 10 may be formed. Therefore, even if an impact load is transmitted to the lateral direction of the vehicle body 10, bending of the insert portion 62 can be suppressed by the strength rib 64 of the joint member 60. The strength rib 64 may be formed in the width direction of the vehicle body 10 as shown in the drawing.
(28) In the insert portion 62, a connection hole 66 for connection with the cross member 30 may be formed in up and down directions. For example, a connection bolt 102 is engaged in the connection hole 66 so that the joint member 60 and the cross member 30 can be connected.
(29) A seat rail 100 can also be connected through the connection hole 66. In other words, the seat rail 100 is disposed on the cross member 30 and the connection bolt 102 is engaged to connect the joint member 60, the cross member 30 and the seat rail 100, and thus, the assembly process may be simplified and the number of parts to engage may be reduced. In other words, the joint member 60 can serve as a mounting bracket to mount the seat rail 100, thereby increasing the connection strength with the seat.
(30) Referring to
(31) A panel hole 44 is formed in the inner sill panel 42 so that the insert portion 62 can be connected to the cross member 30 through the panel hole 44. Therefore, the number of parts for connection between the side member 40 and the vehicle body 10 can be reduced, and the connection strength can be increased.
(32) The connection structure of an electric vehicle according to an exemplary embodiment of the present invention may further include sealing members 46 and 48 for sealing the panel hole 44. The sealing members 46 and 48 may prevent foreign substances from penetrating into the side member 40.
(33) The connection structure of an electric vehicle according to an exemplary embodiment of the present invention may further include a side sill reinforcement 80 inserted inside the inner sill panel 42 and the outer sill panel 50.
(34) The clamping portion 68 can be connected to the side sill reinforcement 80. The side sill reinforcement 80 is inserted inside a “U” shape cross-section of the clamping portion 68 so that the clamping portion 68 and the side sill reinforcement 80 can be firmly connected.
(35) The joint member 60 and the side sill reinforcement 80 can be formed of aluminum material. Therefore, it is possible to reduce the entire weight of the connection structure of an electric vehicle according to an exemplary embodiment of the present invention.
(36) The joint member 60 and the side sill reinforcement 80 may be welded together. The joint member 60 and the side sill reinforcement 80 can be formed by aluminum extrusion and can be connected by welding, for example CO2 welding.
(37)
(38) Referring to
(39)
(40) As shown in
(41) The bending of the insert portion 62 can be suppressed by the strength rib 64 of the lattice pattern, thus preventing the battery case 90 from being damaged.
(42) In addition, the cross member 30 can be connected through the connection hole 66, and additionally the seat rail 100 can be engaged, reducing the number of parts.
(43) The joint member 60 connects the side sill reinforcement 80 in the length direction of the vehicle body 10 and the cross member 30 in the width direction of the vehicle body 10 without disconnection, which is advantageous in distributing the collision load.
(44) The side sill reinforcement 80 and the joint member 60 can be firmly connected to secure an engaging integrity, and road noise transmission can be reduced.
(45) While this invention has been described in connection with what is presently considered to be practical exemplary embodiments, it is to be understood that the invention is not limited to the disclosed embodiments. On the contrary, it is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims.