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Effect of Temperature and Relative Humidity on Friction and Wear Properties of Silicone-Based Magnetorheological Elastomer

机译:温度和相对湿度对硅氧烷基磁流变摩擦体摩擦性能的影响

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摘要

In this study, the effect of varying temperature and humidity on the friction and wear properties of a silicone-based isotropic magnetorheological (MR) elastomer were examined with an applied magnetic field. Specifically, MR elastomer specimens were fabricated, and a temperature- and humidity-adjustable reciprocating friction tester was employed. The results indicated that the friction coefficient decreased across all tests when a magnetic field was applied. The friction coefficient increased when the temperature increased and slightly decreased following an increase in relative humidity. The wear depth results also exhibited an increasing pattern as the temperature increased and a decreasing pattern when the relative humidity increased. The surface state experienced significant changes under varying temperatures and relative humidity conditions with and without a magnetic field.
机译:在该研究中,用施加的磁场检查不同温度和湿度对基于硅氧烷类各向同性磁流变学(MR)弹性体的摩擦和磨损性质的影响。 具体地,制造先生弹性体标本,采用温度和湿度可调节的往复摩擦测试仪。 结果表明,当施加磁场时,摩擦系数在所有测试中降低。 在相对湿度的增加之后,当温度升高并且略微降低时,摩擦系数增加。 当相对湿度增加时,磨损深度结果也表现出随着温度的增加和减小的图案而呈增加。 表面状态在不同温度和相对湿度条件下具有显着变化,具有磁场。

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