Precipitation hardening in Mg-Zn-Sn alloys with minor additions of Ca and Si

S. Cohen, G. Goren-Muginstein, S. Avraham, B. Rashkova, G. Dehm, M. Bamberger
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引用次数: 16

Abstract

Al-free Mg – Zn alloys with alternative alloying elements were investigated in order to form Mg – Zn-based alloys with improved thermal stability. Based on thermodynamic calculations, Zn and Sn additives are expected to form stable intermetallic phases with Mg and cause precipitation hardening. An Mg alloy containing 4.5 wt.% Zn and 3.8 wt.% Sn was examined in detail and subsequently alloyed with Ca and Si, in order to promote additional precipitation. The as-cast microstructure and its stability during exposure to elevated temperatures were investigated. Precipitation hardening was investigated in the temperature range of 175 – 250 °C by Vickers hardness measurements and analysis of the microstructure evolution, using X-ray diffraction and electron microscopy techniques. During aging at 175 °C for 1 to 96 h, two hardness maxima were observed: the first after 2 h, and the second after 16 h. The occurrence of two hardness peaks can be related to a precipitation sequence. Firstly, MgZn2 precipitates form, and secondly Mg2Sn. The results indicate that the precipitation mechanism is most likely diffusion-controlled. The precipitates are uniformly distributed in the Mg matrix with two morphologies: needle- and plate-like shapes. The addition of Si and Ca did not result in the expected effect on the precipitation behavior.
微量Ca和Si对Mg-Zn-Sn合金析出硬化的影响
为了制备热稳定性更好的镁锌基合金,研究了添加替代合金元素的无铝镁锌合金。基于热力学计算,Zn和Sn的添加有望与Mg形成稳定的金属间相并引起沉淀硬化。对含有4.5 wt.% Zn和3.8 wt.% Sn的镁合金进行了详细的研究,并随后与Ca和Si合金化,以促进附加析出。研究了铸态组织及其在高温下的稳定性。在175 ~ 250°C的温度范围内,通过维氏硬度测量和x射线衍射和电子显微镜技术分析了合金的显微组织演变。在175℃时效1 ~ 96 h的过程中,出现了2 h和16 h后的两个硬度峰值。这两个硬度峰的出现与析出顺序有关。首先析出MgZn2,其次析出Mg2Sn。结果表明,沉淀机制很可能是扩散控制的。析出相在Mg基体中均匀分布,呈针状和片状两种形态。Si和Ca的加入并未对沉淀行为产生预期的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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