Kang Sung Soon, Choi Kisuk, Nam Jae-Do, Choi Hyoung Jin
Department of Polymer Science and Engineering, Inha University, Incheon 22212, Korea.
Department of Polymer Science and Engineering, School of Chemical Engineering, Sungkyunkwan University, Suwon 16419, Korea.
Materials (Basel). 2020 Oct 15;13(20):4597. doi: 10.3390/ma13204597.
Magnetorheological (MR) elastomers become one of the most powerful smart and advanced materials that can be tuned reversibly, finely, and quickly in terms of their mechanical and viscoelastic properties by an input magnetic field. They are composite materials in which magnetizable particles are dispersed in solid base elastomers. Their distinctive behaviors are relying on the type and size of dispersed magnetic particles, the type of elastomer matrix, and the type of non-magnetic fillers such as plasticizer, carbon black, and crosslink agent. With these controllable characteristics, they can be applied to various applications such as vibration absorber, isolator, magnetoresistor, and electromagnetic wave absorption. This review provides a summary of the fabrication, properties, and applications of MR elastomers made of various elastomeric materials.
磁流变(MR)弹性体成为最强大的智能先进材料之一,通过输入磁场,其机械和粘弹性性能可以可逆、精细且快速地调节。它们是可磁化颗粒分散在固体基础弹性体中的复合材料。它们独特的行为取决于分散磁性颗粒的类型和尺寸、弹性体基体的类型以及增塑剂、炭黑和交联剂等非磁性填料的类型。凭借这些可控特性,它们可应用于各种领域,如减振器、隔振器、磁阻器和电磁波吸收。本文综述了由各种弹性体材料制成的磁流变弹性体的制备、性能及应用。