Support structure for vehicle and method of manufacturing the same
11167794 ยท 2021-11-09
Assignee
Inventors
Cpc classification
B60G2206/50
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A support structure for a vehicle molded by a casting mold, provided between a vehicle body and a vehicle component, and including a support portion which supports the vehicle component and a rib which is continuously formed on the support portion. The support structure for a vehicle includes a core portion recessed in a direction different from a mold split direction of the casting mold on a side surface portion of the rib.
Claims
1. A support structure for a vehicle molded by a casting mold, provided between a vehicle body and a vehicle component, and includes a support portion which supports the vehicle component and a rib continuously formed on the support portion, comprising: a core portion which is recessed in a surface portion of the rib and which extends into a wall of a main body on an opposing side of a fitting hole.
2. The support structure for a vehicle according to claim 1, wherein the core portion includes an inclined wall surface expanding from a bottom surface of the core portion to an outer surface of the rib.
3. The support structure for a vehicle according to claim 2, wherein the inclined wall surface is smoothly continuous with the bottom surface and the outer surface of the rib.
4. The support structure for a vehicle according to claim 1, wherein a thickness from a bottom surface of the core portion to an inner surface of the rib is equal to a thickness from the inner surface to an outer surface of a tip end portion of the rib.
5. The support structure for a vehicle according to claim 2, wherein a thickness from a bottom surface of the core portion to an inner surface of the rib is equal to a thickness from the inner surface to an outer surface of a tip end portion of the rib.
6. The support structure for a vehicle according to claim 3, wherein a thickness from a bottom surface of the core portion to an inner surface of the rib is equal to a thickness from the inner surface to an outer surface of a tip end portion of the rib.
7. A method of manufacturing the support structure for a vehicle provided between the vehicle body and the vehicle component and includes the support portion which supports the vehicle component and the rib continuously formed on the support portion of claim 1, comprising: casting the support structure by a casting mold, wherein the casting includes forming a core portion recessed in a direction different from a mold split direction on a side surface portion of the rib by punching with a punching mold that slides in a direction different from the mold split direction of the casting mold.
8. The support structure for a vehicle according to claim 1, wherein the main body extends from the rib and includes the fitting hole.
9. The support structure for a vehicle according to claim 8, wherein the core portion has an upper side that extends onto the main body.
10. The support structure for a vehicle according to claim 8, further comprising a support portion connected to a periphery of the main body via the rib.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
DETAILED DESCRIPTION
(4) Hereinafter, embodiments of the present invention will be described in detail.
(5)
(6) The steering knuckle 10 according to the embodiment of the present invention, as described above, which is molded by a casting mold and is provided between a vehicle body and a vehicle component. And the steering knuckle 10 includes a support portion 12 for supporting the vehicle component and a rib 14 continuously formed on the support portion 12. The steering knuckle 10 comprises a core portion 16 recessed in a direction different from a mold split direction of the casting mold on the side surface of the rib 14.
(7) The steering knuckle 10 which transmits the transmission force from the steering to the wheels, more specifically, has a complicated and irregular shape comprising a main body 20 including a cylindrical fitting hole 18 into which an axle (bearing) is fitted and fixed, and a support portion 12 connected to a periphery of the main body 20 via the rib 14 and connecting and supporting the vehicle component on a vehicle body side, such as an upper suspension, a lower suspension, and a steering arm.
(8) Since the steering knuckle 10 has a complicated and irregular shape as described above, the steering knuckle 10 is cast using a casting mold having a mold split structure.
(9) The steering knuckle 10 is preferably cast from aluminum or an alloy thereof. Alternatively, copper, magnesium, or an alloy thereof may be used. Alternatively, iron or an alloy thereof may be used.
(10) The rib 14 is formed to have a draft angle as a whole, then the mold can be split. Then, in a portion having a draft angle, and therefore, having a wall thickness, the core portion 16 recessed in the direction different from the mold split direction of the casting mold is formed, so that the film is thin. As a result, the weight can be reduced while required strength is secured. That is, since there is no unnecessary portion on the side surface of the rib due to the restriction of the draft angle, the weight can be reduced.
(11) It is preferable that the thickness A from the bottom surface 16b of the core portion 16 to the inner surface 14b of the rib 14 and the thickness B from the inner surface 14b to the outer surface 14c of the tip end portion 14a of the rib 14 are substantially equal. As a result, the required strength can be provided without applying unnecessary thickness to the entire rib 14.
(12) Further, as shown in
(13) Further, as clearly shown in
(14)
(15) The casting mold 22 includes a fixed mold 24, a movable mold 26, and a punching mold 28.
(16) The movable mold 26 moves in the left-right direction in
(17) The punching mold 28 is provided slidably in a direction different from the opening/closing direction of the movable mold 26, whereby the core portion 16 is recessed on the outer surface of the rib 14.
(18) The drive mechanism of the movable mold 26 and the slide mechanism of the punching mold 28 can adopt a known mechanism.
(19) That is, according to the method of manufacturing the steering knuckle 10 in the present embodiment, by using the casting mold 22 and punching with the punching mold 28 sliding in a direction different from the mold split direction of the casting mold 22, the core portion 16 recessed in a direction different from a mold split direction of the casting mold 22 is formed on the side surface portion of the rib 14. As a result, an unnecessary portion on the side surface of the rib 14 due to the restriction of the draft angle can be easily punched, and the weight can be reduced.
(20) Although the steering knuckle 10 is described as an example of the support structure for the vehicle in the above embodiment, the support structure for the vehicle is not limited thereto, and the present invention can also be applied to, for example, an engine mount that supports an engine on a vehicle body.