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Dynamic Tensile Stress-Compressive Stress Behavior of Thermoplastic Matrix Composite Materials Reinforced with Continuous Fiber for Automotive Damping and Anti-Vibration Structural Elements

机译:汽车阻尼和减振结构元件用连续纤维增强的热塑性基复合材料的动态拉伸应力-压缩应力行为

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摘要

Continuous Fibers-Reinforced Thermoplastic Composites (CFRTP) are presented as light materials, capable of offering a short production time with the possibility of being recycled. These properties make them ideal for automotive applications, aiming to reduce the consumption and emission of polluting gases. This article analyzed the dynamic tensile stress-compressive stress behavior of CFRTP in structural elements of the car with anti-vibration and damping functions. The data available in the literature on the reliable and usual compliance of the properties required for CFRTP, to be applied in the automotive structural elements, is scarce and insufficient. In order to analyze whether CFRTP feeds the demanding requirements of car manufacturers and if they provide advantages over the metal materials currently used, this article developed a method of reliable verification of their dynamic tensile and compression behavior. The methodology developed could be used as a guide to characterizing any combination of vulcanized rubber adhesive joints with CFRTP, regardless of the materials and additives used. The results obtained showed that there exists CFRTP that fits the requirements of the car manufacturers for this type of component and also offers dynamic advantages over the materials currently used as anti-vibration elements.
机译:连续纤维增强热塑性复合材料(CFRTP)以轻质材料形式出现,能够在短时间内生产并可以回收利用。这些特性使其成为汽车应用的理想选择,旨在减少污染气体的消耗和排放。本文分析了具有减振和减振功能的汽车结构部件中CFRTP的动态拉伸应力-压缩应力行为。关于在汽车结构元件中应用的CFRTP所需性能的可靠且通常的合规性,文献中的可用数据很少且不足。为了分析CFRTP是否满足汽车制造商的苛刻要求,以及它们是否比当前使用的金属材料更具优势,本文开发了一种可靠验证其动态拉伸和压缩行为的方法。所开发的方法学可以用作表征硫化橡胶粘合接头与CFRTP的任意组合的指南,而与所使用的材料和添加剂无关。获得的结果表明,存在满足汽车制造商对此类组件要求的CFRTP,并且相对于当前用作防振元件的材料还具有动态优势。

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