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Avoiding error of determining the martensite finish temperature due to thermal inertia in differential scanning calorimetry : model and experiment of Ni-Ti and Cu-Al-Ni shape memory alloys

机译:避免差示扫描量热法中因热惯性而导致确定马氏体终点温度的误差:Ni-Ti和Cu-Al-Ni形状记忆合金的模型和实验

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摘要

It is known that the thermal effect (thermal inertia) in differential scanning calorimetry causes significant error of measuring the martensite finish temperature (Mf) in shape memory alloy, while the start temperature (Ms) is virtually unaffected. This article shows that the error can be avoided by accounting for the thermal effect quantitatively by mathematical modeling, if the kinetics of the martensitic transformation is properly prescribed. In common with two representative shape memory alloys, Cu-Al-Ni and Ni-Ti alloys, exponential decay is appropriate for expressing the kinetics. The model analysis is extended to the two methods of extrapolation which aims at excluding the thermal effect from DSC data. One is the extrapolation of the cooling rate to zero, and the other is that of the mass of sample to zero. It is shown that both extrapolations construct a temperature between the Ms and Mf. Typically, the temperature is below the Ms by one-third of the interval between the two temperatures.
机译:众所周知,差示扫描量热法中的热效应(热惯性)在形状记忆合金中测量马氏体终了温度(Mf)时会引起很大的误差,而开始温度(Ms)实际上不受影响。本文表明,如果适当规定了马氏体相变的动力学,则可以通过数学模型定量考虑热效应来避免误差。与两种代表性的形状记忆合金Cu-Al-Ni和Ni-Ti合金相同,指数衰减适用于表达动力学。模型分析扩展到两种外推方法,旨在从DSC数据中排除热效应。一种是将冷却速率外推到零,另一种是将样品质量外推到零。结果表明,两种外推法都可以在Ms和Mf之间建立温度。通常,温度低于Ms两个温度之间的间隔的三分之一。

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