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PREDICTION OF HEAT GENERATION IN RUBBER OR RUBBER-METAL SPRINGS

机译:预测橡胶或金属橡胶弹簧的发热量

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摘要

The temperature of rubber or rubber-metal springs increases under cyclic loading, due to hysteresis losses and low rubber thermal conductivity. Hysteresis losses correspond to energy dissipation from the rubber, which is primarily converted into heat. This well-known phenomenon, called heat build-up, is the primary reason for rubber aging. Increase in temperature within the rubber compound leads to degradation of its physical and chemical properties, increase in stiffness and loss of damping capability. This paper presents a novel procedure of heat generation prediction in rubber or rubber-metal springs. The procedure encompasses the prediction of hysteresis loss, i. e. dissipated energy within the rubber, by finite element analysis and application of a modern visco-plastic rubber constitutive model. The obtained dissipated energy was used as an input for transient thermal analysis. Verification of the proposed procedure was performed by comparison of simulation results with experimentally obtained data during the dynamic loading of the rubber specimen. The proposed procedure is highly computationally efficient and it enables time integration, which can be problematic in coupled mechanical thermal analysis.
机译:由于磁滞损耗和低橡胶导热性,橡胶或橡胶金属弹簧的温度在循环载荷下会升高。磁滞损耗对应于橡胶的能量耗散,该能量主要转化为热量。这种众所周知的现象,即发热,是橡胶老化的主要原因。橡胶混合物中温度的升高会导致其物理和化学性能下降,刚度增加以及阻尼能力下降。本文提出了一种在橡胶或橡胶金属弹簧中预测热量产生的新方法。该过程包括磁滞损耗的预测,即。 e。通过有限元分析和现代粘塑性橡胶本构模型的应用来耗散橡胶中的能量。所获得的耗散能量用作瞬态热分析的输入。通过在橡胶试样的动态加载过程中将仿真结果与实验获得的数据进行比较,对所提出的程序进行了验证。所提出的过程具有很高的计算效率,并且可以实现时间积分,这在耦合机械热分析中可能会出现问题。

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