形状记忆合金纤维感应加热中的潜热效应

PAMM Pub Date : 2023-11-23 DOI:10.1002/pamm.202300300
S. Descher, Philipp Krooß, Felix Ewald, Sebastian Wolf, Detlef Kuhl
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引用次数: 0

摘要

本研究的动机是一种感应加热工艺,用于制造一种新型改良超高性能混凝土。在这种新型材料中,使用形状记忆合金制成的纤维来增加最大可能的纤维体积分数,或产生内部压应力状态。与其他研究不同的是,该研究基于热分析,强调了从马氏体到奥氏体的微观结构转变。动态扫描量热法测量结果是开发现象学相变模型的基础。该模型将局部温度和温度速率与相指标的变化速率联系起来,模拟马氏体向奥氏体的转变。潜热通过焓法进行考虑,感应加热过程通过现象学模型进行考虑。文中介绍了对嵌入混凝土中的单根纤维进行加热的纯热力学过程的研究结果。研究结果表明,潜热效应会延迟相变,纤维活化过程对感应热非常敏感。此外,研究还发现,潜热会导致纤维径向方向的转化出现强烈的不均匀状态,这对热力学过程和实验结果的解释具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Latent heat effects in inductive heating of shape memory alloy fibers
Motivation of the present work is an inductive heating process, used in manufacturing a new kind of improved ultra‐high performance concrete. In this novel material, fibers made out of shape memory alloys are used to increase the maximum possible fiber volume fraction, or to create an internal state of compressive stress. In contrast to other works, the underlying microstructure transformation from martensite to austenite is highlighted based on thermal analysis. Dynamic scanning calorimetry measurements are adapted as basis for development of a phenomenological phase transformation model. It relates local temperature and temperature rate to the rate of change of the phase indicator, modeling the transformation of martensite to austenite. Latent heat is considered by an enthalpy method, the inductive heating process is considered by a phenomenological model. Study results for a purely thermodynamic process of heating a single fiber embedded in concrete are presented. They show that latent heat effects delay phase transformation and the process of fiber activation is very sensitive to the induced heat. Furthermore, it is discovered that latent heat causes a strongly inhomogeneous state of transformation in radial direction of the fiber, which is of great importance for thermomechanical processes and the interpretation of experimental results.
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