Effects of Grain Size, Cooling Rate, and Sample Preparation on the Phase Transition from Protoenstatite to Clinoenstatite

S. Ohi, Tatsuya Osako, A. Miyake
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引用次数: 1

Abstract

X-ray diffraction experiments were carried out with protoenstatite, chemical composition Mg2Si2O6, in order to clarify the conditions under which protoenstatite can be retained at room temperature. Our results show that grain size, cooling rate, and shear stress during sample preparation clearly affect the transition from protoenstatite to clinoenstatite. Smaller protoenstatite grains were more likely to be retained, and the relationship between the retained volume ratio of the protoenstatite and grain size was statistically consistent with martensitic nucleation. The most protoenstatite was retained in the experiment using a cooling rate of 3 °C/min; the retained volume ratio decreased in experiments with both faster and slower cooling rates. The martensitic transformation of protoenstatite to clinoenstatite is promoted by shear stress caused by a fast cooling rate. Shear stress caused by grinding and polishing also promotes the transformation, but ion milling, used to prepare samples for transmission electron microscope observation, leaves the protoenstatite unchanged. Therefore, samples including protoenstatite should be prepared without producing shear stress so that the protoenstatite can be observed.
晶粒尺寸、冷却速度和样品制备对原顽辉石向斜顽辉石相变的影响
对化学成分为Mg2Si2O6的原辉石进行了x射线衍射实验,以明确其在室温下保留的条件。结果表明,制备过程中的晶粒尺寸、冷却速率和剪切应力对原顽辉石向斜顽辉石的转变有明显影响。较小的原顽辉体晶粒更容易被保留,原顽辉体的保留体积比与晶粒尺寸的关系与马氏体形核具有统计学上的一致性。当冷却速度为3°C/min时,保留的原硬辉石最多;实验中,冷却速度越快和越慢,保留体积比越小。快速冷却速率引起的剪切应力促进了原顽辉体向斜顽辉体的马氏体转变。研磨和抛光产生的剪切应力也促进了相变,但用于制备透射电镜观察样品的离子研磨使原顽辉石保持不变。因此,包括原顽辉石在内的样品应在不产生剪切应力的情况下制备,以便观察到原顽辉石。
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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