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首页> 外文期刊>MATEC Web of Conferences >Investigation of tensile properties of RTV Silicone based Isotropic Magnetorheological Elastomers.
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Investigation of tensile properties of RTV Silicone based Isotropic Magnetorheological Elastomers.

机译:RTV硅基各向同性磁流变弹性体的拉伸性能研究。

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Magnetorheological elastomer (MRE) consists of an elastomer matrix and a Ferro-magnetic ingredient. The mechanical properties of MR elastomers can be reversibly controlled by applying a magnetic field of suitable intensity. The current work focusses on the enhancement of tensile property of RTV (Room Temperature Vulcanization) silicone based elastomer. The influence of Carbonyl iron powder (CIP) content and magnetic field were experimentally investigated. Addition of CIP increases the tensile modulus but it reduces the percentage elongation and tensile strength making it brittle. Under the influence of magnetic field, the enhancement of tensile properties up to 20% content was linear. The behavior above 20% is observed to be non-linear. The onset of non-linear stress-strain behavior is investigated. Regression equation is developed from the experimental data relating percentage content with the mechanical properties of MRE. The developed equation predicted the behavior of 27% MRE with an error of less than 8%. Hyperelastic model developed by Yeoh was fitted to the stress-strain behavior of MRE with minimal error.
机译:磁流变弹性体(MRE)由弹性体基质和铁磁成分组成。 MR弹性体的机械性能可以通过施加适当强度的磁场来可逆地控制。当前的工作集中在增强RTV(室温硫化)有机硅基弹性体的拉伸性能上。实验研究了羰基铁粉(CIP)含量和磁场的影响。 CIP的添加可提高拉伸模量,但会降低伸长率和拉伸强度百分比,使其变脆。在磁场的影响下,拉伸性能的提高达到20%是线性的。观察到高于20%的行为是非线性的。研究了非线性应力应变行为的发生。通过将百分比含量与MRE的机械性能相关的实验数据建立了回归方程。开发的方程式预测MRE的行为为27%,误差小于8%。由Yeoh开发的超弹性模型以最小的误差拟合到MRE的应力应变行为。

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