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CHARACTERIZATION OF A FERRITIC STAINLESS SHEET STEEL IN SIMPLE SHEAR AND UNIAXIAL TENSION AT DIFFERENT STRAIN RATES

机译:不同应变速率下简单剪切和单轴张力下的铁素体不锈钢钢的特征

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In this study the mechanical properties of ferritic stainless steel EN 1.4521 (AISI 444) were characterized in uniaxial tension and simple shear. The specimen geometries were designed so that tests could be carried out both with a conventional uniaxial materials testing machine and at high strain rates with the Tensile Hopkinson Split Bar method. During the tests, specimen surface deformation was measured using a three dimensional digital image correlation technique based on a two-camera stereovision setup. This technique allowed direct measurement of the specimen gauge section deformation during the test. Test results indicate that the selected approach is suitable for large strain plastic deformation characterization of ductile metals. The stress-strain data obtained from the simple shear tests shows a correlation with the tensile test results according to the von Mises effective stress-strain criterion. Since necking is absent in shear, test data can be obtained at considerably higher plastic strains than in tension. However, the final fracture occurs under a complex loading mode due to the distortion of the specimen geometry and multiaxial loading introduced by the simple shear arrangement. Test results also show that reliable material data can be obtained at high strain rates.
机译:在该研究中,铁素体不锈钢EN 1.4521(AISI 444)的机械性能在单轴张力和简单的剪切中表征。试样的几何形状被设计成使得测试可能与测试机的传统的单轴材料和在与拉伸霍普金森拆分条方法高应变速率下进行两者。在测试期间,使用基于双摄像头立体型设置的三维数字图像相关技术测量样本表面变形。该技术允许在测试期间直接测量样品仪表变形。测试结果表明,所选方法适用于延性金属的大菌株塑性变形表征。从简单的剪切测试获得的应力 - 应变数据显示根据von MIMES有效应力 - 应变标准的与拉伸试验结果相关。由于在剪切中不存在颈颈,因此可以在比张力中的塑性菌株相当高的塑性菌株获得测试数据。然而,由于通过简单的剪切装置引入的样本几何形状和多轴加载,最终断裂在复杂的加载模式下发生。测试结果还表明,可以在高应变率下获得可靠的材料数据。

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