首页> 外文期刊>Journal of testing and evaluation >Fracture and Adiabatic Heating of Thick-Section Weldment in Fe-24Cr-15Ni-4Mn-0.32N Stainless Steel with Ni-Base Filler Metals at 4 K
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Fracture and Adiabatic Heating of Thick-Section Weldment in Fe-24Cr-15Ni-4Mn-0.32N Stainless Steel with Ni-Base Filler Metals at 4 K

机译:Fe-24Cr-15Ni-4Mn-0.32N含镍基钎料的不锈钢厚截面焊缝的断裂和绝热加热在4 K下

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摘要

Type JN1, a nitrogen-strengthened austenitic stainless steel [Fe-24Cr-15Ni-4Mn-0.32N (wt%)], is emerging as the preferred structural material for superconducting fusion magnet casings to operate in liquid helium at 4 K. In order to evaluate the fracture toughness and the adiabatic heating of thick-section (200 mm) weldment in JN1 forged stainless-steel plate with Ni-base filler metals, elastic-plastic fracture toughness tests were performed with 25-mm-thick compact tension specimens at 4K. Thermocouples were used to measure the temperature rise near the crack tip. The effect of specimen location and nitrogen content on the fracture toughness parameters, and the temperature rise during dynamic crack growth, are discussed.
机译:JN1型是一种氮强化奥氏体不锈钢[Fe-24Cr-15Ni-4Mn-0.32N(wt%)],它已成为超导融合磁体外壳在4 K的液氦中运行的首选结构材料。为了评估带有镍基填充金属的JN1锻造不锈钢板的厚截面(200毫米)焊件的断裂韧性和绝热加热,在25毫米厚的致密拉伸试样上进行了弹塑性断裂韧性测试。 4K。使用热电偶来测量裂纹尖端附近的温度升高。讨论了试样位置和氮含量对断裂韧性参数以及动态裂纹扩展过程中温度升高的影响。

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