TORSION BEAM SUSPENSION
20230286349 ยท 2023-09-14
Assignee
Inventors
Cpc classification
B60G2202/136
PERFORMING OPERATIONS; TRANSPORTING
B60G2200/23
PERFORMING OPERATIONS; TRANSPORTING
B60G21/051
PERFORMING OPERATIONS; TRANSPORTING
B60G2206/20
PERFORMING OPERATIONS; TRANSPORTING
B60G2200/21
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A torsion beam suspension includes two trailing arm portions, in which each of the trailing arm portions includes an elastic supporting portion and an extending portion, and the extending portion extends from the elastic supporting portion toward an inner side of a vehicle body in a width direction, and a torsion beam fixed to the extending portion of each of the trailing arm portions.
Claims
1. A torsion beam suspension, comprising: two trailing arm portions, wherein each of the trailing arm portions comprises an elastic supporting portion and an extending portion, and the extending portion extends from the elastic supporting portion toward an inner side of a vehicle body in a width direction; and a torsion beam fixed to the extending portion of each of the trailing arm portions.
2. The torsion beam suspension according to claim 1, wherein each of the trailing arm portions further comprises a vehicle body fixing portion and an inclination portion, the vehicle body fixing portion extends from the extending portion toward a front of the vehicle body and is fixed to the vehicle body, and the inclination portion is inclined from the vehicle body fixing portion toward the inner side of the vehicle body in the width direction and is connected to the extending portion.
3. The torsion beam suspension according to claim 2, wherein a material of each of the trailing arm portions comprises aluminum, and a material of the torsion beam comprises iron.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0006]
[0007]
DETAILED DESCRIPTION OF DISCLOSED EMBODIMENTS
[0008] The disclosure provides a torsion beam suspension, which may improve a capacity of a torsion beam to resist lateral force.
[0009] The disclosure provides a torsion beam suspension, including two trailing arm portions, in which each of the trailing arm portions includes an elastic supporting portion and an extending portion, and the extending portion extends from the elastic supporting portion toward an inner side of a vehicle body in a width direction, and a torsion beam fixed to the extending portion of each of the trailing arm portions.
[0010] In an embodiment of the disclosure, each of the trailing arm portions further includes a vehicle body fixing portion and an inclination portion. The vehicle body fixing portion extends from the extending portion toward a front of the vehicle body and is fixed to the vehicle body. The inclination portion is inclined from the vehicle body fixing portion toward the inner side of the vehicle body in the width direction and is connected to the extending portion.
[0011] In an embodiment of the disclosure, a material of each of the trailing arm portions includes aluminum, and a material of the torsion beam includes iron.
[0012] Based on the above, in the torsion beam suspension of the disclosure, the torsion beam and the trailing arm portion are not integrally formed, and the trailing arm portion has the extending portion extending toward the inner side of the vehicle body in the width direction for fixing to the torsion beam. As a result, the length of the torsion beam in the width direction of the vehicle body is reduced, and the structural strength and stiffness thereof may be improved, so that it is not easy to bend due to the lateral force. Therefore, the torsion beam suspension of the disclosure may improve the capacity of the torsion beam to resist the lateral force.
[0013] FIC. 1 is a top view of a torsion beam suspension according to an embodiment of the disclosure, in which axes X, Y, and Z are marked. Referring to
[0014]
[0015] In the above configuration, the torsion beam 120 and the trailing arm portion 110 are not integrally formed. The trailing arm portion 110 has the extending portion 114 extending toward the inner side of the vehicle body 50 in the width direction for fixing to the torsion beam 120. As a result, a length of the torsion beam 120 in the width direction of the vehicle body 50 is reduced, and structural strength and stiffness thereof may be improved, so that it is not easy to bend due to the lateral force. Therefore, the torsion beam suspension 100 in this embodiment may improve a capacity of the torsion beam 120 to resist the lateral force, avoiding the bending of the torsion beam 120 due to the lateral force, so as to maintain required characteristics of a toe angle and lateral stiffness of a ground point.
[0016] In the torsion beam suspension 100 in this embodiment, a material of the two trailing arm portions 110 is, for example, aluminum, so that the trailing arm portions 110 have a relatively small weight and may be manufactured into an integrally formed structure. A material of the torsion beam 120 is, for example, iron, so that the torsion beam 120 has the sufficient structural strength and stiffness. In other embodiments, the trailing arm portions 110 and the torsion beam 120 may be manufactured by other types of materials respectively, and the disclosure is not limited thereto.
[0017] In this embodiment, each of the trailing arm portions 110 further includes an inclination portion 118. The inclination portion 118 is inclined from the vehicle body fixing portion 116 toward the inner side of the vehicle body 50 in the width direction and is connected to the extending portion 114. By forming the inclination portion 118 between the vehicle body fixing portion 116 and the extending portion 114, the trailing arm portion 110 may be prevented from extending outward in the width direction of the vehicle body 50 due to the lateral force, thereby maintaining the good characteristics of the toe angle and lateral stiffness of the ground point.
[0018] Based on the above, in the torsion beam suspension of the disclosure, the torsion beam and the trailing arm portion are not integrally formed, and the trailing arm portion has the extending portion extending to the inner side of the vehicle body in the width direction for fixing to the torsion beam. As a result, the length of the torsion beam in the width direction of the vehicle body is reduced, and the structural strength and stiffness thereof may be improved, so that it is not easy to bend due to the lateral force. Therefore, the torsion beam suspension of the disclosure may improve the capacity of the torsion beam to resist the lateral force.
[0019] Finally, it should be noted that the above embodiments are only used to illustrate but not to limit the technical solutions of the disclosure. Although the disclosure has been described in detail with reference to the foregoing embodiments, persons skilled in the art should understand that they may still modify the technical solutions described in the foregoing embodiments or equivalently replace some or all of the technical features. However, the modifications or replacements do not cause the spirit of the corresponding technical solution to deviate from the scope of the technical solution according to each embodiment of the disclosure.