Study on Squeeze Casting Process of the Integrated Aluminum Alloy Subframe

被引:0
作者
Dashuang Zhou
Zhengyang Kang
Xiaoping Su
机构
[1] Changzhou University,School of Mechanical and Rail Transit
[2] Nanjing Tech University,School of Mechanical and Power Engineering
来源
International Journal of Metalcasting | 2024年 / 18卷
关键词
integrated aluminum alloy subframe; squeeze casting; virtual casting; response surface methodology; process optimization;
D O I
暂无
中图分类号
学科分类号
摘要
The subframe is a crucial load-bearing part of the chassis, playing a significant role in ensuring the safety and reliability of the vehicle. In this study, we aim to investigate the squeeze casting process of an integrated aluminum alloy subframe. Using relevant design criteria and casting theory, we have determined the optimal squeeze casting process for the whole subframe. The experimental factors for the subframe squeeze casting include pouring temperature, die temperature, filling velocity, and pressure holding time, while the response indexes are porosity, secondary dendrite arm spacing, and solidification time. These criteria were chosen based on their importance in determining the quality and mechanical properties of the casting. By studying the squeeze casting process of the integrated aluminum alloy subframe, we hope to improve the safety and reliability of chassis components. In this manuscript, the Box–Behnken design methodology was used to design the experiment scheme, and virtual casting simulation method is used to simulate the casting, and the input–output relationship model was developed. On this basis, the optimal process parameter combination was obtained by using the mayfly algorithm based on orthogonal and chaotic strategy (MAOLC). Simultaneously, the trial production test was carried out on the squeeze casting machine to verify the optimal parameters. X-ray inspection, metallographic structure testing, and mechanics performance testing show that the casting has no casting defects and has good mechanical properties.
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页码:1085 / 1106
页数:21
相关论文
共 81 条
[11]  
Hwang J(2021)Parametric optimization in squeeze casting of AA6061–Si3N4 composites using Taguchi method J. Ceram. Process. Res. 22 470-863
[12]  
Kwon H(2021)Effect of squeeze casting parameters on the wear properties of A390 aluminum alloy Int. J. Metalcast. 15 852-365
[13]  
Lin C(2001)Pressure counter pressure casting (PCPC) for automotive aluminum structural components SAE Trans. 110 360-9
[14]  
Wu S(2001)Estimation of interfacial heat transfer coefficient in indirect squeeze casting AFS Trans. 109 1-4
[15]  
Lue S(2017)Xing Z Numerical simulation and process optimization of squeeze casting process of an automobile control arm Int. J. Adv. Manuf. Technol. 88 1-1602
[16]  
Maj J(2020)Numerical simulation of mold filling and particulate flow of A356/SiCp indirect squeeze casting J. Compos. Mater. 54 1593-1155
[17]  
Węglewski W(2022)Experimental and numerical evaluation of squeeze cast Al–Si–Cu–Ni–Mg alloy for piston applications Mater. Manuf. Process. 37 1145-922
[18]  
Bochenek K(2022)Optimization of squeeze casting process of gearbox cover based on FEM and Box–Behnken design Int. J. Adv. Manuf. Technol. 13 915-42
[19]  
Li R(2019)Study on reduction in shrinkage defects in HPDC component by optimization of localized squeezing process Int. J. Metalcast. 10 32-228
[20]  
Liu L(2016)Effect of cooling process on porosity in the aluminum alloy automotive wheel during low-pressure die casting Int. J. Metalcast. 15 216-15