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Mullins effect modelling and experiment for anti-vibration systems

机译:防振系统的Mullins效果建模和实验

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摘要

An approach based on rebound energy (resilience) change is proposed to predict stabilisation of the Mullins effect for anti-vibration systems. A silicone rubber product manufactured in industry was selected for experimentation and verification. A Mullins indicator, in terms of the maximum loading forces over the accumulated residual deflection throughout the loading-unloading cycles, is proposed as a criterion to evaluate the stabilisation of the Mullins effect. Industry typically employs a three-loading/unloading-cycle routine on this silicone rubber product to remove the Mullins effect by approximately 75%. To achieve 95% accuracy for stabilisation, seven loading-unloading cycles are suggested. Verification shows that the proposed approach predicts results very close to measured experimental values, and the method can be used for engineering design and industrial applications.
机译:提出了一种基于回弹能量(回弹力)变化的方法来预测防振系统的穆林斯效应的稳定性。选择了工业生产的硅橡胶产品进行实验和验证。根据在整个加载-卸载循环中累积的剩余挠度上的最大加载力,提出了Mullins指标,作为评估Mullins效应稳定性的标准。工业上通常对该硅橡胶产品采用三个加载/卸载循环程序,以消除Mullins效应约75%。为了达到95%的稳定精度,建议进行七个装卸循环。验证表明,该方法预测的结果非常接近实测实验值,并且该方法可用于工程设计和工业应用。

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