磁流变固体材料磁致伸缩特性模型研究综述

Muhamad Amirul Sunni Rohim, N. Nazmi, I. Bahiuddin, S. Mazlan, Nur Azmah Nordin
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引用次数: 0

摘要

磁性聚合物复合材料(MPC)是一种可以在外部磁场的控制下改变其磁致伸缩性能和力学性能的智能材料。该材料由带有磁性颗粒的软聚合物基体组成。最近,被称为磁流变(MR)固体状材料的MPC材料,如MR弹性体(MRE)和MR泡沫,因其在软传感器和执行器应用中的潜力而被广泛探索。由于材料的柔韧性和对低磁场强度敏感的磁致伸缩现象,有必要建立模型来理解其力学特性和磁致伸缩行为,这将有助于磁致伸缩器件的发展。因此,本文将介绍已经应用的各种磁致伸缩模型,每种模型的挑战,设备应用的重要参数以及机器学习模型对MPC的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A mini review on modeling magnetostriction behavior of magnetorheological solid materials
Magnetic Polymer Composites (MPC) materials are a kind of smart materials whose magnetostriction behavior and mechanical properties can be altered in a controlled fashion by an external magnetic field. The material is composed of a soft polymer matrix with magnetic particles. Recently, MPC materials known as Magnetorheological (MR) solid-like materials such as MR elastomer (MRE) and MR foam have been widely explored for their potential for soft sensor and actuator application. Due to the flexibility of the material and magneto-induced phenomena that sensitive to low magnetic field strength, it is necessary to have model for understanding their mechanical characteristics and magnetostriction behavior, which will contribute in the development of MR devices. Therefore, this review paper will present various magnetostriction model that has been applied, the challenges of each model, an important parameter for device application and opportunities of machine learning model towards MPC are also highlighted.
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