Isotropic Magnetorheological(各向同性磁流变)研究综述
Isotropic Magnetorheological 各向同性磁流变 - The magnetoelastic lap-shear behaviors of isotropic magnetorheological (MR) elastomers containing different concentration of silicon oil were investigated under a gradient magnetic field produced by a permanent magnet. [1]研究了含有不同浓度硅油的各向同性磁流变(MR)弹性体在永磁体产生的梯度磁场下的磁弹性搭接剪切行为。 [1]
isotropic magnetorheological elastomer 各向同性磁流变弹性体
The effects of iron particle volume fraction (PVF) on the dynamic compression mode properties of isotropic and anisotropic magnetorheological elastomers (MREs) are experimentally investigated considering wide ranges of excitation frequency (1 Hz to 30 Hz), strain amplitude (2. [1] The paper presents experimental research and viscoelastic modeling of stress relaxation response of isotropic magnetorheological elastomer (MRE). [2] The filler content in the anisotropic magnetorheological elastomers was optimized by measuring the field-dependent elastic modulus in the presence of an externally applied magnetic field. [3] A series of isotropic magnetorheological elastomers (MREs) with different initial surface roughness were prepared, and a sliding friction platform with MRE - copper block pair was built to carry out magnetic-controlled friction characteristic experiment. [4] Both experimental and modeling studies on the dynamic shear storage and loss moduli of isotropic magnetorheological elastomers (MREs) were carried out in this work. [5] Experimental research and numerical computation of stress relaxation behavior of an anisotropic magnetorheological elastomer (MRE) have been conducted in this paper. [6] The study involves the development of isotropic magnetorheological elastomer composites (i-MREs) with improved mechanical properties, their preparations, and properties characterizations. [7]考虑到宽范围的激励频率(1 Hz 至 30 Hz)、应变幅度(2. [1] 本文介绍了各向同性磁流变弹性体 (MRE) 应力松弛响应的实验研究和粘弹性建模。 [2] 通过在存在外加磁场的情况下测量场相关的弹性模量来优化各向异性磁流变弹性体中的填料含量。 [3] 制备了一系列具有不同初始表面粗糙度的各向同性磁流变弹性体(MREs),并搭建了MRE-铜块副滑动摩擦平台进行磁控摩擦特性实验。 [4] 在这项工作中,对各向同性磁流变弹性体 (MRE) 的动态剪切存储和损耗模量进行了实验和建模研究。 [5] 本文对各向异性磁流变弹性体(MRE)的应力松弛行为进行了实验研究和数值计算。 [6] 该研究涉及开发具有改进的机械性能的各向同性磁流变弹性体复合材料 (i-MRE)、它们的制备和性能表征。 [7]