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The micro physical mechanism study of metal rubber material on compressive performance

机译:金属橡胶材料对压缩性能的微观物理机制研究

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Metal rubber material is a new type of elastic and porous material which develops from metal materials. The macro-structure of metal rubber is reticular just as high polymer, made up of fine metal wires. In this paper, the testing equipment which can test micro-motion of metal rubber is designed and the compressive force-displacement curve along molding of metal rubber has gain. The cure along molding of metal rubber has three different characteristic stages. In different characteristic stages, the deformation of metal rubber material has different micro physical mechanism. The micro physical mechanism of different deformation periods is summarized by the micro analyses of three different characteristic curve stages and the study of metal rubber molding technology. Based on the manufacture technology and molding process, the spring wires in metal rubber material have contacted adequately after molding. The micro physical mechanism of metal rubber material in this stage is produced by blank tear combination deformation in linear elastic of spring wires. Because of the deformation stage is very little; the stiffness of metal rubber material is represented linear characteristic in this stage. The contacted points of spring wires are slide along with deformation increasing. The stiffness of metal rubber material is reduced after early linear deformation stage. The compressive force-displacement curve represents soft characteristic stage in macro- expression. When the most contacted points of spring wires are slide along with deformation increasing, the stiffness of metal rubber material is rapid rise. The exponential reinforcement stage is caused by the strongly constraints among spring wires. The micro physical mechanism can explain the different characteristic stages of metal rubber material on compressive performance.
机译:金属橡胶材料是一种从金属材料开发的新型弹性和多孔材料。金属橡胶的宏观结构与高分子一样高,由精细金属线组成。在本文中,设计了可以测试金属橡胶微观运动的测试设备,并且沿着金属橡胶的成型具有沿着金属橡胶的压缩力 - 位移曲线。沿着金属橡胶模塑的固化具有三种不同的特征阶段。在不同的特征阶段,金属橡胶材料的变形具有不同的微观物理机制。三种不同特征曲线阶段的微分析和金属橡胶模塑技术的研究总结了不同变形周期的微观物理机制。基于制造技术和成型工艺,金属橡胶材料中的弹簧线已经在成型后充分接触。该阶段中金属橡胶材料的微观物理机理是通过弹簧丝的线性弹性的空白撕裂组合变形产生的。因为变形阶段很少;金属橡胶材料的刚度在该阶段表示线性特性。弹簧线的接触点随着变形的增加而载滑。早期线性变形阶段后,金属橡胶材料的刚度降低。压缩力 - 位移曲线代表宏观表达中的柔和特征阶段。当弹簧线的最多接触点随着变形的增加而增加时,金属橡胶材料的刚度迅速上升。指数加强阶段由弹簧丝之间的强制引起的。微物理机制可以解释金属橡胶材料的不同特性阶段对压缩性能。

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