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Improved Kolsky tension bar for high-rate tensile characterization of materials

机译:改进的Kolsky张力杆可实现材料的高倍率拉伸表征

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摘要

A new Kolsky tension bar has been re-designed and developed at Sandia National Laboratories, CA. The new design uses the concept that a solid striker is fired to impact an end cap attached to the open end of the gun barrel to generate dynamic tensile loading. The gun barrel here serves as part of the loading device. The incident bar that is connected to the gun barrel and the transmission bar follow the design similar to the Kolsky compression bar. The bar supporting and aligning systems are the same as those in the Kolsky compression bar design described by Song et al (2009 Meas. Sci. Technol. 20 115701). Due to the connection complication among the gun barrel, bars and specimen, stress-wave propagation in the new Kolsky tension bar system is comprehensively analyzed. Based on the stress-wave analysis, the strain gage location on the incident bar needs to be carefully determined. A highly precise laser-beam measurement system is recommended to directly measure the displacement of the incident bar end. Dynamic tensile characterization of a 4330-V steel using this new Kolsky tension bar is presented as an example.
机译:加利福尼亚桑迪亚国家实验室已重新设计和开发了新的Kolsky张力杆。新设计采用的概念是,发射坚固的撞针以撞击连接到枪管开口端的端盖,以产生动态拉伸载荷。枪管在这里用作装载装置的一部分。连接到枪管和传输杆的入射杆采用类似于Kolsky压缩杆的设计。杆支撑和对准系统与Song等人(2009 Meas。Sci。Technol。20 115701)描述的Kolsky压杆设计相同。由于枪管,枪身和试样之间的连接复杂,因此对新的Kolsky拉杆系统中的应力波传播进行了综合分析。基于应力波分析,需要仔细确定入射条上的应变仪位置。建议使用高精度激光束测量系统直接测量入射棒端的位移。以这种新型的Kolsky张力杆为例,对4330-V钢进行了动态拉伸表征。

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