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Increase in the plasticity of molybdenum after high-rate deformation under pressure

机译:在压力下高速变形后钼的可塑性增加

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The dependence of the plasticity of polycrystalline molybdenum on the strain rate has been studied after deformation performed under pressure and at an ambient temperature of 293 K. The samples were deformed in tensile tests. The strain rate of tensile deformation and the pressure in each experiment are constant. The range of the strain rate is 8.3 x 10(-7) to 8.3 m/s and the pressure is 0.1-500 MPa. At a pressure of ambient atmosphere, molybdenum at a strain rate less than 200 s(-1) in value (10(2.3) s(-1)) fractures in a brittle manner with zero residual strain. The brittle fracture of the working part of a cylindrical sample occurs simultaneously in several places. The molybdenum plasticity decreases in the range of low strain rates regardless of the pressure and, on the contrary, plasticity under pressure increases in the range of high strain rates. The strain rate of tensile deformation at which the dependence of the plasticity on the strain rate under pressure changes is 8.3 x 10(-4) m/s (a strain rate of 0.25 s(-1)). The high plasticity of molybdenum after deformation under pressure is observed at high strain rates.
机译:在压力下进行的变形和293k的环境温度下,研究了多晶钼的可塑性对应变速率的依赖性。样品在拉伸试验中变形。拉伸变形的应变速率和每个实验中的压力是恒定的。应变率的范围为8.3×10(-7)至8.3米/秒,压力为0.1-500MPa。在环境气氛的压力下,应变速率的钼在少于200秒(-1)(10(2.3)S(-1))骨折以额外的余量菌株。圆柱形样品的工作部分的脆性断裂在几个地方同时发生。无论压力如何,钼塑性在低应变速率范围内降低,并且相反,压力下的可塑性增加了高应变率的范围。拉伸变形的应变率在压力变化下塑性对应变率的依赖性为8.3×10(-4)m / s(菌株0.25 s(-1))。在高应变率下观察到压力变形后的钼的高可塑性。

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