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Escaping the Ashby limit for mechanical damping/stiffness trade-off using a constrained high internal friction interfacial layer

机译:使用受约束的高内部摩擦界面层来逃避Ashby极限的机械阻尼/刚度折衷

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摘要

The development of new materials with reduced noise and vibration levels is an active area of research due to concerns in various aspects of environmental noise pollution and its effects on health. Excessive vibrations also reduce the service live of the structures and limit the fields of their utilization. In oscillations, the viscoelastic moduli of a material are complex and it is their loss part – the product of the stiffness part and loss tangent – that is commonly viewed as a figure of merit in noise and vibration damping applications. The stiffness modulus and loss tangent are usually mutually exclusive properties so it is a technological challenge to develop materials that simultaneously combine high stiffness and high loss. Here we achieve this rare balance of properties by filling a solid polymer matrix with rigid inorganic spheres coated by a sub-micron layer of a viscoelastic material with a high level of internal friction. We demonstrate that this combination can be experimentally realised and that the analytically predicted behaviour is closely reproduced, thereby escaping the often termed ‘Ashby’ limit for mechanical stiffness/damping trade-off and offering a new route for manufacturing advanced composite structures with markedly reduced noise and vibration levels.
机译:由于对环境噪声污染及其对健康的影响各方面的关注,开发具有降低的噪声和振动水平的新材料是一个活跃的研究领域。过度的振动还会缩短结构的使用寿命并限制其使用范围。在振荡中,材料的粘弹性模量很复杂,它的损耗部分(刚度部分和损耗正切的乘积)通常被视为噪声和减振应用中的品质因数。刚度模量和损耗角正切通常是互斥的,因此开发同时兼具高刚度和高损耗的材料是一项技术挑战。在这里,我们通过在固态聚合物基质中填充刚性无机球,实现了这种稀有的性能平衡,这些刚性无机球被具有高内摩擦力的粘弹性材料的亚微米层覆盖。我们证明了这种组合可以通过实验实现,并且可以很好地重现分析预测的行为,从而摆脱了通常被称为“阿什比”(Ashby)的机械刚度/阻尼折衷限制,并为制造具有显着降低的噪声的先进复合结构提供了一条新途径和振动水平。

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