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Dynamic characteristics and processing of fillers in polyurethane elastomers for vibration damping applications

机译:用于减振应用的聚氨酯弹性体中填料的动态特性和加工

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摘要

Polyurethane elastomers have the potential of being used to reduce vibrational noise in many engineering applications. The performance of the elastomer is directly related to matching the nature of the mechanical loss characteristics to the frequency and temperature dependence of the source of the vibration. Materials with a broad frequency response and good mechanical properties are desirable for situations were load bearing and isolation becomes an issue. Because automobile, and other related vehicles operate over a broad temperature range, it is desirable for the damping characteristics of the elastomer to ideally be independent of temperature and frequency. In practice, this is not possible and the creation of materials with a broad spectrum response is desirable. In this paper, the effects of various fillers on the breadth and temperature dependence of the vibration damping characteristics of a filled and crosslinked polyurethane elastomer are explored. The fillers studied are wollastonite, barium sulphate and talc. These materials have different shapes, sizes and surface chemistry and undergo different types of interaction with the matrix. The vibration damping characteristics were further varied by the use of a crosslinking agent. Data presented on the rheological characteristics indicate the strength of the filler-polyol interactions. Dielectric relaxation and dynamic mechanical thermal analysis demonstrate the way in which changes in the type of filler, concentration and amount of crosslinker lead to changes in the location and breadth of the energy dissipation process in these elastomers. The vibration damping characteristics of a selected material are presented to demonstrate the potential of these materials.
机译:聚氨酯弹性体在许多工程应用中具有减少振动噪声的潜力。弹性体的性能与将机械损耗特性的性质与振动源的频率和温度相关性直接相关。对于承受载荷和隔离成为问题的情况,需要具有宽频率响应和良好机械性能的材料。由于汽车和其他相关车辆在较宽的温度范围内运行,因此理想的是弹性体的阻尼特性理想地与温度和频率无关。实际上,这是不可能的,并且希望产生具有宽光谱响应的材料。在本文中,探索了各种填料对填充和交联聚氨酯弹性体的减振特性的宽度和温度依赖性的影响。研究的填料是硅灰石,硫酸钡和滑石。这些材料具有不同的形状,大小和表面化学性质,并与基质发生不同类型的相互作用。减振特性通过使用交联剂而进一步变化。关于流变特性的数据表明了填料-多元醇相互作用的强度。介电弛豫和动态机械热分析表明了填料的类型,交联剂浓度和数量的变化导致这些弹性体中能量消散过程的位置和宽度发生变化的方式。介绍了所选材料的减振特性,以证明这些材料的潜力。

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