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首页> 外文期刊>Journal of Materials Research and Technology >Effect of morphological changes of eutectic Si particles on the ambient and high temperature tensile properties of Zr containing Al–Si alloys
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Effect of morphological changes of eutectic Si particles on the ambient and high temperature tensile properties of Zr containing Al–Si alloys

机译:共晶Si颗粒形态变化对含Al-Si合金的环境和高温拉伸性能的影响

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摘要

In the present study, the morphological evolution of eutectic Si particles subjected to extended thermal modification and chemical treatment has been investigated for Zr containing A354 and A356 alloys along with its effect on the mechanical properties. Thermal modification of silicon particles proved to be more effective in the Sr-modified alloys rather than their Sr-free counterparts. The evolution of silicon particles during extended solution treatments followed the same trends and sequences for non-modified and Sr-modified 354- and 356-type alloys, at different evolution rates. The coarsening of eutectic Si particles occurred through particle coalescence and Ostwald ripening mechanisms. While both mechanisms were active at the same time, however, they operated independently and additively. The pinholes observed in the silicon particles derive from the impression or imprint left behind from the collision of small particles with, and their diffusion into, larger particles. With respect to the tensile test data obtained at room temperature, solution heat treatment improved the UTS and ductility values of both Sr-modified and non-modified alloys in the first 100h of the treatment followed by reduction in the values as a result of the morphological changes in the Si particles; however, YS values remained almost unchanged. Morphological changes in the Si particles had a very limited effect on the high temperature tensile properties and, surprisingly, this limited effect extended to the ductility values as well.
机译:在本研究中,已经研究了含有A354和A356合金的Zr的Zr R Zr的共晶Si颗粒的形态学演化以及其对机械性能的影响。硅颗粒的热改性证明在SR改性合金中更有效,而不是其无Sr的对应物。在延长溶液处理期间硅颗粒的进化遵循不同的进化速率的非改性和SR改性354-和356型合金的相同趋势和序列。共晶Si颗粒的粗化通过颗粒聚结和OSTWALD成熟机构发生。然而,两种机制同时都是活跃的,但是,它们独立地和瘾地操作。在硅颗粒中观察到的针孔从小颗粒的碰撞中留下的印模或印记,它们的扩散较大的颗粒。关于在室温下获得的拉伸试验数据,溶液热处理在治疗的第一个100H中改善了SR改性和非改性合金的UTS和延展性值,然后由于形态学而减少了值Si粒子的变化;但是,ys值几乎不变。 Si颗粒的形态变化对高温拉伸性质的影响非常有限,令人惊讶的是,该有限效应也延伸到延展性值。

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