Mathematical morphology approach to internal defect analysis of A356 aluminum alloy wheel hubs
Author:
Publisher
American Institute of Mathematical Sciences (AIMS)
Subject
General Mathematics
Link
http://www.aimspress.com/article/10.3934/math.2020209/pdf
Reference22 articles.
1. t al. Simulating the Residual Stress in an A356 Automotive Wheel and Its Impact on Fatigue Life;P. Li, D. M. Maijer, T. C. Lindley;Metall. Mater. Trans. B
2. t al. Microstructure and mechanical properties of A356 aluminum alloy wheels prepared by thixo-forging combined with a low superheat casting process;S. Wang, N. Zhou, W. Qi;T. Nonferr. Metal. Soc.
3. i>Numerical study of influence of oblique plate length and cooling rate on solidification and macrosegregation of A356 aluminum alloy melt with experimental comparison;N. K. Kund, P. Dutta;J. Alloy. Compod.
4. t al. Effects of melt treatment temperature and isothermal holding parameter on water-quenched microstructures of A356 aluminum alloy semisolid slurry;L. Ming, Y. Li, G. Bi;T. Nonferr. Metal. Soc.
5. t al. Examination and Simulation of Silicon Macrosegregation in A356 Wheel Casting
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1. Uneven distribution of cooling rate, microstructure and mechanical properties for A356-T6 wheels fabricated by low pressure die casting;Journal of Manufacturing Processes;2024-10
2. Performance Enhancing of Large Aluminum Alloy Wheels Through Coupled Solidification-Fatigue Stress Simulation;2024
3. Integration of Deep Learning Network and Robot Arm System for Rim Defect Inspection Application;Sensors;2022-05-22
4. Wheel Hub Defects Image Recognition Base on Zero-Shot Learning;Applied Sciences;2021-02-08
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