首页> 外文会议>Asian Pacific Conference on Fracture and Strength;APCFS; 20061122-25;20061122-25; Sanya(CN);Sanya(CN) >Influence of Temperature and Heat-Aged Condition on the Deformation Behavior of Rubber Material Using SHPB Technique with a Pulse Shaper
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Influence of Temperature and Heat-Aged Condition on the Deformation Behavior of Rubber Material Using SHPB Technique with a Pulse Shaper

机译:SHPB技术和脉冲整形器的温度和热老化条件对橡胶材料变形行为的影响

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摘要

The Split Hopkinson Pressure Bar (SHPB) technique with some special experimental apparatus can be used to obtain the dynamic material behavior under high strain rate loading conditions. An experimental technique that modifies the conventional SHPB has been developed for measuring the compressive stress strain responses of materials with low mechanical impedance and low compressive strengths such as rubber. This paper uses PEEK (Poly-ether-ether-ketone plastic) bars to achieve a closer impedance match between the pressure bar and the specimen materials. In addition, a pulse shaper is utilized to lengthen the rise time of the incident pulse to ensure stress equilibrium and homogeneous deformation of the rubber specimen. It is confirmed that the modified technique is useful to record the dynamic deformation behavior of rubbers under various conditions such as high strain rate with various temperature effect. Furthermore, the dynamic deformation behaviors of heat-aged rubber material under compressive high strain rate are evaluated using the modified SHPB technique.
机译:分裂霍普金森压力棒(SHPB)技术和一些特殊的实验设备可用于获得高应变速率载荷条件下的动态材料性能。已经开发出一种修改常规SHPB的实验技术,用于测量具有低机械阻抗和低抗压强度的材料(例如橡胶)的压缩应力应变响应。本文使用PEEK(聚醚醚醚酮塑料)棒来实现压力棒和样品材料之间更紧密的阻抗匹配。另外,利用脉冲整形器来延长入射脉冲的上升时间,以确保橡胶试样的应力平衡和均匀变形。可以确认,该改进技术可用于记录橡胶在各种条件下的动态变形行为,例如在高应变率和各种温度效应的情况下。此外,使用改进的SHPB技术评估了热老化橡胶材料在压缩高应变速率下的动态变形行为。

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