Surface evolution of Al-Si-Cu alloy in thermal shock under different heating speeds升温速率对Al-Si-Cu 合金在热震过程中的表面演变行为及机理影响

被引:0
|
作者
Lei Liu
Hai-jun Zhang
Bo-yan Li
Zhong Yang
Tong Bao
Jian-ping Li
Yong-chun Guo
Feng Xia
Wei Yang
Hai-ying Li
机构
[1] Xi’an Technological University,School of Materials and Chemical Engineering
[2] China North Engine Research Institute (Tianjin),undefined
来源
Journal of Central South University | 2021年 / 28卷
关键词
Al alloy; piston; thermal shock; heating speed; surface roughness; 铝合金; 活塞; 热震; 升温速率; 表面粗糙度;
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学科分类号
摘要
In order to understand the initial surface damage of Al piston in unsteady thermal environment like knock combustion, T6 heat treated cast Al-Si-Cu alloy was thermal shocked under different heating speeds between room temperature and 450 °C by adjusting the environmental temperature. The surface evolution was mainly characterized in view of roughness, hardness, morphology, texture, phase and element distribution. Results indicated that both the roughness and hardness went up to the maximum and then decreased with rising heating speed. Micro-structure and phase analysis suggested that the interactions of solid phase transition and oxidation with enhancing thermal stress took responsible for the surface evolution.
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页码:2988 / 2998
页数:10
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