Integral compound bulging process for automotive driving axle

A drive axle and bulging technology, which is applied in the field of mechanical processing, can solve the problems of difficult quality assurance, blank utilization rate, high comprehensive mechanical properties of production efficiency, complex bulging mechanism and process, etc., and achieve the effect of quality assurance

Inactive Publication Date: 2013-01-23
CHONGQING UNIVERSITY OF SCIENCE AND TECHNOLOGY +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] Disadvantages: It is difficult to control the forming flow, prone to cracks and pores, and the weight is large, the subsequent processing is complicated, and the welding process is prone to cracks and deformation;
[0010] Disadvantages: There are many processes, which are only suitable for the production of axle housings with simple geometric shapes, and the strength of the produced axle housings is low, and the cost is high; in addition, there are high requirements for welding, quality is difficult to guarantee, and cracks, deformations, and leaks are prone to occur. Defects, and the welding zone is prone to fatigue fracture;
[0014] Disadvantages: horizontal cracks are prone to occur at the longitudinal slit, uneven width of the flanging at the pipa bag, and easy wrinkling and straining on the side;
[0018] Disadvantages: the bulging force is difficult to control, the bulging mechanism and process are complicated, and cracks are easy to occur;
[0022] Disadvantages: The process is still immature, the requirements for high-pressure hydraulic sources are high, oil leakage and environmental pollution are easy, and the initial investment takes time and money;
[0026] 1. Most of the axle housing forming methods actually used in my country are casting forming process and stamping-welding forming process. Other forming methods are rarely used due to technical and economic reasons, or are in the research and experimental stage;
[0027] 2. The bulging force of mechanical bulging is difficult to control, the bulging mechanism and process are complicated, and cracks are easy to occur, but the blank utilization rate, production efficiency, and comprehensive mechanical properties are high;

Method used

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  • Integral compound bulging process for automotive driving axle
  • Integral compound bulging process for automotive driving axle
  • Integral compound bulging process for automotive driving axle

Examples

Experimental program
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Effect test

no. 1 example

[0070] Such as figure 1 As shown, it is a schematic diagram of the structure of the first embodiment of the overall composite bulging device of the automobile drive axle suitable for the overall composite bulging process of the automobile drive axle of the present invention after the bulging deformation of the workpiece is completed, which is shown as a mechanical push rod type bulging method; figure 2 It is a structural schematic diagram of the integral composite bulging device of the automobile drive axle in this embodiment before the workpiece is bulging and deformed.

[0071] The integral composite bulging device of the automobile drive axle in this embodiment includes a bulging inner mold 1 , a bulging outer mold 2 and a bulging force generating device for applying bulging force to the bulging inner mold 1 . The bulging inner mold 1 includes an upper module 1a and a lower module 1b respectively matched with the upper and lower inner walls of the axle housing pipa bag 5a...

no. 2 example

[0087] Figure 5 It is a structural schematic diagram of the second embodiment of the integral compound bulging device of the automobile drive axle suitable for the integral compound bulging process of the automobile drive axle of the present invention after the bulging deformation of the workpiece is completed, which is shown as a spiral thrust bulging method; Figure 6 It is a structural schematic diagram of the integral composite bulging device of the automobile drive axle in this embodiment before the workpiece is bulging and deformed.

[0088] The two thrust devices in this embodiment are the thrust hydraulic cylinder 3 and the thrust hydraulic cylinder 4 which are respectively located at both ends of the bulging inner mold 1 and are used to provide thrust. Apply hydraulic pressure to the end. The pressure generating device of this embodiment is at least one multi-stage hydraulic cylinder 6 arranged between the upper module 1a and the lower module 1b, and the multi-stage...

no. 1 Embodiment

[0118] The wall thickness of the axle housing workpiece 5 of the present embodiment is 1.5 mm, and its specific process parameters of bulging deformation are as follows:

[0119] 1. Thermal expansion method:

[0120] 1) The axle housing workpiece 5 is heated to 600°C during bulging deformation

[0121] In the yield stage of the deformation of the axle housing workpiece 5, the maximum bulging force required by the axle housing workpiece is 2000~2200KN and fluctuates with the yield strain law of the axle housing workpiece shell. The thrust of the thrust hydraulic cylinder 3 and the thrust hydraulic cylinder 4 is 0KN, the maximum pressure of the multi-stage hydraulic cylinder 6 acting on the upper module 1a and the lower module 1b is 2000~2200KN and fluctuates with the yield strain law of the axle housing workpiece;

[0122] In the bulging stage of the deformation of the axle housing workpiece 5, the bulging force required by the axle housing workpiece 5 gradually increases to 9...

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Abstract

The invention discloses an integral compound bulging process for an automotive driving axle. The process comprises the following steps of: 1) placing an opened axle housing workpiece into an external bulging mold; 2) extending the internal bulging mold into a bulged deformed area of the axle housing workpiece from an inner hole at one end of the axle housing workpiece; 3) closing the external bulging mold; 4) applying equal thrust parallel to the axial direction of the axle housing workpiece to the internal bulging mold by utilizing thrust devices at the two ends of the internal bulging mold respectively, and applying pressure perpendicular to the axial direction of the axle housing workpiece to an upper module and a lower module by utilizing a pressure generation device, wherein the thrust is decomposed into a perpendicular thrust component which acts on the upper and lower module and is perpendicular to the axial direction of the axle housing workpiece and a parallel thrust component parallel to the axial direction of the axle housing workpiece under the action of a link mechanism, bulging force on the axle housing workpiece is the resultant force of the perpendicular thrust component and the pressure, and the axle housing workpiece is bulged and deformed under the action of the bulging force; and 5) performing unloading and demolding.

Description

technical field [0001] The invention belongs to the technical field of mechanical processing, in particular to an overall composite bulging process of an automobile drive axle. Background technique [0002] The automobile manufacturing industry plays a pivotal role in my country's national economy. In recent years, my country's national economy has developed rapidly, and at the same time the automobile industry has also flourished. From the whole vehicle to the performance of the components, it has become the main subject of current industrial research, and the axle housing is one of the important parts of the automobile. The axle housing not only supports the automobile, but also serves as the differential and the final drive And the housing that drives the wheel drive. The quality of the automobile axle housing has a great influence on the performance of the vehicle. The axle housing not only needs to have sufficient strength, stiffness and fatigue life, but also has a si...

Claims

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Application Information

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IPC IPC(8): B21D31/04
Inventor 徐明龚仕林刘复元肖大志周雄林顺洪陈超杨治明董季玲欧忠文胡玉梅
Owner CHONGQING UNIVERSITY OF SCIENCE AND TECHNOLOGY
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