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20). 38 Adiabatic Shear Localization Compression/Shear Test The determination of the propensity of materials for adiabatic shear failure can be examined by a new special bi-axial dynamic compression/shear test. 18). Meyer and Kru¨ger [56] described the test assembly and the use of the drop-weight tower in the ASM Handbook. The drop-weight tower, which is described by Meyer and Kru¨ger [56], has a maximum loading velocity of about 3 m/s and a falling mass of 600 kg. This falling mass can be stopped at desired displacements, at which a visualization of the development of adiabatic shear bands versus applied strains can be observed.

Meyer and Kru¨ger [56] described the test assembly and the use of the drop-weight tower in the ASM Handbook. The drop-weight tower, which is described by Meyer and Kru¨ger [56], has a maximum loading velocity of about 3 m/s and a falling mass of 600 kg. This falling mass can be stopped at desired displacements, at which a visualization of the development of adiabatic shear bands versus applied strains can be observed. 17A) was invented by Meyer [83] and used by Meyer and Staskewitsch [84] and Meyer et al.

15). 15 Hat-shaped specimen with additional compression stress, according to Couque [41] and Teng et al. [42]. band in the gauge section is strongly influenced by loading velocity. With higher side pressure, the shear-failure strain for tungsten alloy is increased, similar to Kru¨ger’s results [39]. Couque explained this behaviour by the decreasing portion of plastic work converted in heat with increasing pressure. Teng et al. 15 [41]. The material data from experimental investigations of Couque were used.

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