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Research on Static Viscoelastic and Tribological Properties of PP-EPDM, PP-GF30 and ABS in Automobile

机译:PP-EPDM,PP-GF30和ABS静态粘弹性和摩擦学性能研究

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To establish the relationship between the static viscoelastic and the tribological properties, creep and friction experiments were performed on PP-EPDM, PP-GF30 and ABS through a UMT-II multi-functional micro-friction test machine. Results showed that PP-EPDM has the smallest creep rate and the better dimensional stability. This was related to the more complicated internal net structure, and the local slip and diffusion were more difficult than PP-GF30 and ABS under load. The Simulation Study of Burgers model founded that the viscosity coefficients of PP-EPDM was the smallest and the stiffness coefficient was the biggest, which exhibited a more apparent viscosity performance. The friction coefficient and wear depth of PP-EPDM were smaller than those of PP-GF30 and ABS, therefore, it has better wear resistance. Higher viscosity performance is favourable for friction coefficient improvement, and this goes against improving the wear resistance. Under the same conditions, PP-EPDM will be a better choice.
机译:为了通过UMT-II多功能微摩擦试验机在PP-EPDM,PP-GF30和ABS上进行静态粘弹性和摩擦学性能之间的关系,通过UMT-II多功能微摩擦试验机对PP-EPDM,PP-GF30和ABS进行蠕变和摩擦实验。结果表明,PP-EPDM具有最小的蠕变率和更好的尺寸稳定性。这与更复杂的内部净结构有关,并且局部滑动和扩散比PP-GF30和载荷更困难。汉堡模型的仿真研究成立于PP-EPDM的粘度系数是最小,刚度系数最大,其呈现出更明显的粘度性能。 PP-EPDM的摩擦系数和磨损深度小于PP-GF30和ABS的磨损深度,因此,它具有更好的耐磨性。较高的粘度性能有利于摩擦系数改善,这抗抗耐磨性。在相同的条件下,PP-EPDM将是一个更好的选择。

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