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Electromagnetic Cam Driven Compression Testing Equipment

机译:电磁凸轮驱动压缩测试设备

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摘要

This paper presents innovative equipment for the compression testing of materials under high rates of loading (above 1,000 s ~(-1)). The equipment consists of an electromagnetic actuator, a fixed housing containing two flat compression platens, a translating cam and a follower. The electromagnetic actuator makes possible reaching high strain rates with a very precise control of the impact velocity and of the energy transmitted to the translating cam. The cam profile enables compression testing to be performed under the strain rate vs. strain loading paths that are commonly found in manufacturing in order to meet the machine-tool and process combined specifications. Special emphasis is placed on the adequacy of the proposed electromagnetic cam drive compression testing equipment to characterize material behaviour in orthogonal metal cutting because non-proportional loading paths during metal cutting are known to have significant influence on the material stress response. The flow curves obtained by means of the equipment are implemented in a finite element computer program and applied in the numerical simulation of orthogonal metal cutting under different cutting velocities.
机译:本文提出了创新的设备,用于在高负载率(高于1000 s〜(-1))下进行材料的压缩测试。该设备由一个电磁致动器,一个包含两个扁平压盘的固定壳体,一个平移凸轮和一个从动件组成。电磁执行器可以非常精确地控制冲击速度和传递到平移凸轮的能量,从而达到较高的应变率。凸轮轮廓使压缩测试可以在应变率与应变加载路径之间进行,这在制造中很常见,以满足机床和工艺组合的规格。特别要强调的是,所提出的电磁凸轮驱动压缩测试设备是否足以表征正交金属切削中的材料性能,因为已知金属切削过程中的非比例加载路径会对材料应力响应产生重大影响。利用该设备获得的流动曲线在有限元计算机程序中实现,并应用于不同切削速度下正交金属切削的数值模拟。

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