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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Modal damping in vibrating objects via dissipation from dispersed frictional microcracks
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Modal damping in vibrating objects via dissipation from dispersed frictional microcracks

机译:通过分散的摩擦微裂纹的消散来振动物体的模态阻尼

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Many materials under multiaxial periodic loading exhibit rate-independent internal dissipation per cycle. Constitutive modelling for such dissipation under spatially variable triaxial stresses is needed for calculating modal damping of solid bodies using computational packages. Towards a micro-mechanically motivated model for such dissipation, this paper begins with a frictional microcrack in a linearly elastic solid under far-field time-periodic tractions. The material is assumed to contain many such non-interacting microcracks. Single-crack simulations, in two and three dimensions, are conducted using ABAQUS. The net cyclic single-crack dissipation under arbitrary triaxial stresses is found to match, up to one fitted constant, a formula based on a pseudostatic spring-block model. That formula is used to average the energy dissipation from many randomly oriented microcracks using Monte Carlo averaging. A multivariate polynomial is fitted to the Monte Carlo results. The polynomial is used in finite-element simulation of a solid object, wherein modal analysis is followed by computation of the net cyclic energy dissipation via elementwise integration. The net dissipation yields an equivalent modal damping. In summary, starting from a known formula for a single crack, this paper develops and implements a method for computationally modelling the modal damping of arbitrarily shaped solid bodies.
机译:在多轴周期性载荷下,许多材料的每个循环都具有速率无关的内部耗散。需要使用空间上可变的三轴应力下的这种耗散本构模型,以使用计算包来计算固体的模态阻尼。对于这种消散的微机械动力模型,本文从远场时间周期牵引下线性弹性固体中的摩擦微裂纹开始。假定该材料包含许多这种非相互作用的微裂纹。使用ABAQUS进行二维和三维单裂纹模拟。发现在任意三轴应力下的净循环单裂纹耗散与拟静态弹簧模块模型的公式(最多一个拟合常数)匹配。该公式用于使用蒙特卡洛平均值对许多随机取向的微裂纹的能量耗散进行平均。将多元多项式拟合到蒙特卡洛结果。多项式用于固体对象的有限元模拟,其中模态分析之后是通过逐元素积分计算净循环能量耗散。净耗散产生等效的模态阻尼。总而言之,从已知的单个裂纹公式开始,本文开发并实现了一种用于对任意形状的实体的模态阻尼进行计算建模的方法。

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