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Material characteristics of an ER fluid and its influence on damping forces of an ER damper Part I: material characteristics

机译:ER流体的材料特性及其对ER阻尼器阻尼力的影响第一部分:材料特性

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This paper presents experimental result son material properties of an electro-rheological (ER) fluid subjected to temperature variations, mechanical and electrical fatigues. As a first step, an Arabic gum-based ER fluid is made by choosing 30/100 of particle weight-concentration. Using the couette type of the electroviscometer,the field-dependent yield shear stress and current density of the ER fluid are measured by changing the operating temperature from -5degC to 85degC. A recuperating cylinder mechanism is then manufactured to test mechanical endurance of the ER fluid. Under the specific excitation stroke and frequency, the variation of the yield shear stress is investigated with respect to the operating cycle up to one million cycles. In addition, following the construction of test mechanism for electrical endurance of the ER fluid, the yield shear stress and surface roughness of the electrode are evaluated as a function of the number of the electric-field cycle.
机译:本文介绍了受温度变化,机械和电气疲劳影响的电流变(ER)流体材料性能的实验结果。第一步,通过选择30/100的颗粒浓度来制备基于阿拉伯树胶的ER流体。使用couette型电粘度计,通过将工作温度从-5degC更改为85degC,来测量与磁场有关的屈服剪切应力和ER流体的电流密度。然后制造出一个再生气缸机构,以测试ER流体的机械耐久性。在特定的激励冲程和频率下,研究了直至一百万次循环的屈服剪切应力相对于工作循环的变化。此外,在构建用于ER流体电耐性的测试机构之后,根据电场循环次数评估电极的屈服剪切应力和表面粗糙度。

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