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A new high frequency dynamic mechanical analysis system: An approach to direct high frequency testing of tire tread rubber

机译:一种新的高频动态机械分析系统:引进轮胎胎面橡胶的高频测试方法

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摘要

Dynamic Mechanical Analysis (DMA) systems are measurement devices for obtaining master curves and complex modules of viscoelastic materials, such as rubbers. The conventional DMAs measurement systems in market have several limitations, which restrict their ability for operating at high frequencies. Thus, Williams, Landel and Ferry (WLF) relation is used to produce master curves and predict the material properties at high frequencies. In conventional DMAs, experiments are done in a range of temperatures, and then a master curve is made for a chosen reference temperature by shifting the measurements data to high frequencies. Therefore, the obtained results, which are not based on direct measurements, can be inaccurate. In order to overcome this problem a new simple shear high-frequency DMA (HFDMA) system is designed and built to directly measure the dynamic mechanical properties of viscoelastic material at high frequencies and the strain levels sufficient for tire manufacturers. The new HFDMA can be used to test any viscoelastic materials which have glass transmission temperature (Tg) lower than mom temperature (about 23 degrees C) such as the Styrene-butadiene rubber (SBR). The SBR is the base material for tire tread. The designing process of this new HFDMA is presented in this paper. The rubber specimen shape is chosen by taking into account the shear elastic wave effect, bending, buckling effect and heat generation in the specimen. The repeatability test is accomplished to ensure that the results obtained from the new HFDMA are repeatable and the repeatability uncertainty is about 0.04%. The new HFDMA is validated by comparing to the direct test results of conventional DMA at 100 Hz. The direct high frequency (5 kHz) complex shear modulus and damping factor are compared with the master curve of the conventional DMA developed by the use of WLF relation for SBR. This comparison revealed that the complex shear modulus and damping factor of the SBR obtained from the HFDMA at 5 kHz and 0.05% strain amplitude are about 7% and 6.5% higher than those obtained from the conventional DMA, respectively.
机译:动态机械分析(DMA)系统是用于获得粘弹性材料的主曲线和复杂模块的测量装置,例如橡胶。市场中的传统DMA测量系统有几个限制,限制了它们在高频下运行的能力。因此,威廉姆斯,斗位和渡轮(WLF)关系用于生产主曲线并预测高频下的材料特性。在传统的DMA中,在一系列温度下进行实验,然后通过将测量数据转移到高频率来进行主曲线。因此,可以不准确地获得所获得的结果,这不是基于直接测量。为了克服这一问题,设计了一种新的简单剪切高频DMA(HFDMA)系统,以直接测量高频率下粘弹性材料的动态机械性能,以及足以用于轮胎制造商的应变水平。新的HFDMA可用于测试任何粘弹性的粘弹性材料,其具有低于MOM温度(约23℃)的玻璃透射温度(TG),例如苯乙烯 - 丁二烯橡胶(SBR)。 SBR是轮胎胎面的基础材料。本文提出了这篇新的HFDMA的设计过程。通过考虑样品中的剪切弹性波效应,弯曲,屈曲效应和发热来选择橡胶样品形状。完成可重复性测试以确保从新的HFDMA获得的结果是可重复的,可重复性不确定性约为0.04%。通过与100Hz的传统DMA的直接测试结果进行比较,验证新的HFDMA。将直接高频(5 kHz)复合剪切模量和阻尼因子与通过使用WLF关系开发的传统DMA的MAST曲线进行比较。该比较显示,从5kHz和0.05%应变幅度的HFDMA获得的SBR的复合剪切模量和阻尼因子分别比从常规DMA获得的7%和6.5%。

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