Microstructure and Cryogenic Mechanical Properties of a 316L Plate and Its Weldments

Ke Han, R. Walsh, V. Toplosky, R. Goddard, M. Bird
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引用次数: 2

Abstract

This paper reports a study to relate microstructure to cryogenic mechanical properties of a 316L plate and its weldments. Both the tensile and fracture toughness test values at 4 K are governed by microstructure that is influenced by the thermo‐mechanical treatment of the materials. The mechanical properties are better when the loading direction is parallel to the rolling directions. 77 K Charpy impact values show much stronger dependence on the orientations than 4 K fracture toughness and tensile test values. This indicates that the anisotropy in microstructure results in much higher anisotropy in fracture mechanisms in dynamic mode than in static mode. Therefore, care has to be taken when one relates the 77 K Charpy impact strength to 4 K fracture toughness. Stress relieve in weldment enhances the fracture toughness and yield strength, but reduces the strain‐hardening rate and ultimate tensile strength.
316L板材及其焊接件的显微组织和低温力学性能
本文报道了316L板材及其焊接件的显微组织与低温力学性能的关系。在4k时的拉伸和断裂韧性测试值都受微观结构的影响,微观结构受材料的热处理的影响。当加载方向与轧制方向平行时,其力学性能较好。与4k的断裂韧性和拉伸试验值相比,77k的Charpy冲击值对取向的依赖性更强。这表明微观结构的各向异性导致动态模式下断裂机制的各向异性比静态模式下断裂机制的各向异性高得多。因此,当将77 K夏比冲击强度与4 K断裂韧性联系起来时,必须小心。焊件的应力消除提高了断裂韧性和屈服强度,但降低了应变硬化率和极限抗拉强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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