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Dynamic Deformation Behavior of Soft Materials at the Low Temperature Using SHPB Technique and Pulse shaper

机译:SHPB技术和脉冲整形器在低温下软材料的动态变形行为

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摘要

This paper presents a modified Split Hopkinson Pressure Bar(SHPB) technique to obtain compressive stress-strain data for a rubber material. An experimental technique with a modified 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 a rubber. This paper uses an aluminum pressure bar to achieve a closer impedance match between the pressure bar and the specimen materials. In addition, a pulse shaper is utilized to lengthen the rising time of the incident pulse to ensure stress equilibrium and homogeneous deformation of a rubber. It is found that the modified technique can determine the dynamic deformation behavior of rubbers under various conditions such as high strain rate and low temperature effects.
机译:本文提出了一种改进的分裂霍普金森压杆(SHPB)技术,以获得橡胶材料的压缩应力-应变数据。已经开发出一种经过改进的常规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。本文使用铝制压力棒来实现压力棒与样本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,以确保橡胶的应力平衡和均匀变形。发现改进的技术可以确定橡胶在诸如高应变速率和低温效应的各种条件下的动态变形行为。

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