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Noise Generation and Propagation Control in Disc Brake Systems Using Composite Friction Materials Composed of Thermoplastic Elastomers as Viscoelastic Materials

机译:使用热塑性弹性体组成的复合摩擦材料作为粘弹性材料的盘式制动器系统中的噪声产生和传播控制

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Attempts have been made for the first time to produce a thermal sensitive friction material by the inclusion of thermoplastic elastomers (TPE) with combined plastic and rubbery properties as viscoelastic polymeric mate-rials into the composition of the friction material for the purpose of increasing damping behavior.To evaluate the viscoelastic parameters such as loss factor (tan S) and elastic modulus (E') of the friction material on the molecular scale,dynamic mechanical thermal analysis was performed on the samples.Natural frequencies and mode shapes of the friction material and brake disc were determined by modal analysis.Styrene-butadiene-sty-rene (SBS),styrene-ethylene-butylene-styrene (SEBS) and nitrile rubber/polyvinyl chloride (NBR/PVC) blend systems have been used as TPE materials.However,NBR/PVC and SEBS were found to be more effective in preventing the noise generation and reducing the ampli-tude of the brake vibrations.All the friction materials containing TPEs exhibited more damping characteris-tics within a wide range of temperature compared with the damping characteristics of the reference sample.
机译:为了增加阻尼性能,已经首次尝试通过将具有塑料和橡胶组合性能的热塑性弹性体(TPE)作为粘弹性聚合物材料来生产热敏摩擦材料。为了在分子尺度上评估摩擦材料的粘弹性参数,例如损耗因子(tan S)和弹性模量(E'),对样品进行了动态机械热分析。摩擦材料的固有频率和振型以及通过模态分析确定了制动盘,已将苯乙烯-丁二烯-苯乙烯(SBS),苯乙烯-乙烯-丁烯-苯乙烯(SEBS)和丁腈橡胶/聚氯乙烯(NBR / PVC)共混体系用作TPE材料。 ,NBR / PVC和SEBS可以更有效地防止产生噪音并减少制动振动的幅度。所有含TPE的摩擦材料均显示出与参考样品的阻尼特性相比,其在宽温度范围内的阻尼特性。

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