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Experimental study of the high strain rate shear behaviour of Ti6Al4V

机译:Ti6Al4V高应变率剪切行为的实验研究

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摘要

Three different high strain rate shear test techniques are applied on the titanium alloy Ti6Al4V. Two techniques for testing of bulk materials and one technique for sheet materials are used: torsion of thin-walled tubes, compression of hat-shaped specimens and tension of planar shear specimens. The tests are carried out on respectively torsion, compression and tensile split Hopkinson bar setups. Although shear stresses dominate the stress state in these three tests, the local stress state and its distribution and evolution are different. Therefore, the three techniques are considered to be rather complementary than equivalent tests. In this work, the value of the three test techniques for material characterization is evaluated. Where possible, digital image correlation (DIC) is used to clarify the test results. In addition, parameters difficult to assess experimentally are estimated through finite element simulations of the three tests.
机译:三种不同的高应变速率剪切试验技术施加在钛合金Ti6Al4V上。使用两种用于测试散装材料的技术和一种用于片材技术的技术:薄壁管的扭转,帽形试样的压缩和平面剪切样品的张力。测试是分别进行扭转,压缩和拉伸分裂霍普金森棒设置。虽然剪切应力在这三个测试中占据应力状态,但局部应力状态及其分布和进化不同。因此,三种技术被认为是与等同试验相当互补。在这项工作中,评估了用于材料表征的三种测试技术的值。在可能的情况下,数字图像相关(DIC)用于阐明测试结果。此外,通过三次测试的有限元模拟估计实验难以评估的参数。

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