Study of the law of stress magnetisation based on the magnetic memory effect under weak magnetic excitation

Penghao Liu, Juwei Zhang, Bo Liu
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Abstract

Based on the metal magnetic memory effect, this paper improves the Jiles-Atheron (J-A) force-magnetic coupling model under the condition of applying a weak magnetic excitation, introduces the relative magnetic induction parameter into the theoretical derivation process and explores the stress magnetisation law for the damaged part of a broken wire rope. The Ansys simulation platform is used to construct a force-magnetic coupling simulation model of the steel wire rope and finite element analysis is carried out. Combined with a static tensile test, the validity of the resulting theoretical model is verified. The results show that there is a certain relationship between the relative magnetic induction of the steel wire rope sample and the tensile stress. Its distribution can be used to evaluate the stress development trend and provide early warning of the final failure of the specimen, which provides a basis for future quantitative evaluation of damage status.
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基于弱磁激励下的磁记忆效应的应力磁化规律研究
本文基于金属磁记忆效应,改进了弱磁激励条件下的 Jiles-Atheron (J-A)力磁耦合模型,在理论推导过程中引入了相对磁感应参数,并探索了断裂钢丝绳受损部分的应力磁化规律。利用 Ansys 仿真平台构建了钢丝绳的力磁耦合仿真模型,并进行了有限元分析。结合静态拉伸试验,验证了所得理论模型的有效性。结果表明,钢丝绳样品的相对磁感应强度与拉伸应力之间存在一定的关系。其分布可用来评估应力的发展趋势,并为试样的最终失效提供预警,为今后定量评估损伤状况提供依据。
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