Al1050大块冷喷涂层的性能表征及添加剂生长过程中热力学效应的数值研究

M. Sokore, S. Deng, H. Liao, R. Raoelison, Shuohong Gao
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引用次数: 0

摘要

冷喷涂是一种新兴的增材制造方法,它使用微米级粉末的高速碰撞,能够产生固态键合。这样的原理导致了最近各种表面功能化和增材制造应用涂层的发展。本文对冷喷涂过程中添加剂生长对镀层性能(极限强度和孔隙率)的影响进行了实验研究。矿床特征表明存在极限强度梯度。从底部到顶部试样的极限强度降低,但孔隙度值变化不明显。孔隙度的演化不允许建立一个广义的变化规律。对添加剂生长过程的数值分析表明,添加剂生长过程中堆积粉的热力学响应会降低粘结能力、热力学热(由于塑性功)和热动力学梯度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Property Characterization of Al1050 Bulk Cold Spray Deposits and Numerical Study of Thermomechanical Effects during the Additive Growth
Cold Spraying is an emerging additive manufacturing method that uses a high-speed collision of micrometre sized powders capable of producing a solid-state bonding. Such a principle has led to the recent development of a coating for various surface functionalization and additive manufacturing applications. This paper is the result of an experimental study on the evolution of the deposit properties (ultimate strength, and porosity) generated by the additive growth during cold spraying. The deposit characterization shows the existence of ultimate strength gradient. For samples taken from the bottom to the top of the deposit, the ultimate strength decreases but there is no significant change in porosity value. The porosity evolutions do not allow to establish a generalized law of variation. The numerical analysis of the additive growth shows that the thermomechanical response of the stacking powder during the additive growth can decrease the bonding capacity, the thermomechanical heating (due to the plastic work) and the gradient of thermal kinetics.
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