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首页> 外文期刊>Journal of Materials Engineering and Performance >EN AW-4032 T6 Piston Alloy After High-Temperature Exposure: Residual Strength and Microstructural Features
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EN AW-4032 T6 Piston Alloy After High-Temperature Exposure: Residual Strength and Microstructural Features

机译:高温暴露后en AW-4032 T6活塞合金:剩余强度和微观结构特征

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摘要

This study aims to evaluate the effects of prolonged thermal exposure on both microstructural evolution and mechanical properties of the EN AW-4032 T6 piston alloy. For the purpose, the experimental activities have been carried out on samples machined from forged and heat-treated automotive pistons. The effects of overaging have been investigated in the temperature range of 140-290 degrees C, firstly by evaluating the time-temperature-hardness curves and then by carrying out room-temperature tensile tests on overaged samples. The material softening was substantial and extremely rapid when the soaking temperature exceeded 250 degrees C. During overaging, both the tensile strength and the residual hardness considerably decreased, and a relationship between these parameters has been established. The alloy behavior in the plastic field has been modeled according to the Hollomon's equation, showing that both the strain hardening exponent and the strength coefficient are a function of the residual hardness. The results were finally related to the corresponding microstructural changes: OM and FEG-SEM metallographic and fractographic analyses on overaged samples gave evidence of coarsened precipitates along the grain boundaries.
机译:本研究旨在评估长时间热暴露对腹膜腹部微观结构演化和力学性能的影响。为此目的,已经在由锻造和热处理的汽车活塞加工的样品上进行了实验活动。首先通过评估时间 - 硬度曲线,然后通过在覆盖的样品上进行室温拉伸试验来评估时间 - 硬度曲线的温度范围内研究了过度的效果。当浸泡温度超过250摄氏度时,材料软化是显着的并且极快的。在过度升高期间,拉伸强度和残留硬度显着降低,并且已经建立了这些参数之间的关系。塑料场中的合金行为根据霍洛姆的等式进行了建模,表明应变硬化指数和强度系数都是残留硬度的函数。结果最终与相应的微观结构变化有关:OM和FEG-SEM金相和覆盖样品的FEG-SEM金相和Fretography分析给出了沿晶界粗糙的沉淀物的证据。

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