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METHODOLOGY FOR STRUCTURAL ANALYSIS OF HYPERELASTIC MATERIALS WITH EMBEDDED MAGNETIC MICROWIRES

机译:具有嵌入式磁性微量的超弹性材料结构分析方法

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摘要

The article deals with the mechanical tensile tests of the hyperelastic materials and its mechanical properties estimation using embedded magnetic microwires. Hyperelastic materials are specific because of the elasticity, which means that they return to their original shape after the forces have been removed. The article processes the issue of the structural analysis of the hyperelastic materials, where the methodology for hyperelastic materials laws together with its implementation in the Creo-Simulate software is described. After the comparison of the simulation results with the experimental results a very good compliance was achieved. The created methodology together with the application of the tensile stress sensors based on the magnetic microwires embedded directly in the conveyor belts mean a significant improvement of the manufacturing and operation of the conveyor belts.
机译:本文涉及使用嵌入式磁性微线的高弹性材料和其机械性能估计的机械拉伸试验。 超弹性材料是特异性的弹性,这意味着在拆除力后它们返回原始形状。 该物品处理超弹性材料的结构分析问题,其中描述了超弹性材料法与其在Creo-Simuly软件中的实现一起进行的方法。 在仿真结果与实验结果比较后,实现了非常好的合规性。 基于直接在传送带中的磁性微束的抗拉应力传感器的施加方式与抗拉应力传感器的应用相同意味着传送带的制造和操作的显着改善。

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