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HAZ Properties of High Nitrogen Austenitic Stainless Steel

机译:高氮奥氏体不锈钢的热影响区性能

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摘要

HAZ (Heat Affected Zone of weldments) properties were investigated for a high nitrogen austenitic stainless steel with a chemical composition of Fe-0.02C-0.15Si-6.00Mn-10.0Ni-23.0Cr-2.00Mo-0.48N-0.14V. Thermal cycle of HAZ was simulated by the thermal cycle simulator (Gleeble 1500). The heat treatment was applied to the Charpy test size sample without notch under various peak temperatures and/or the holding times condition. V-notch Charpy test was performed at the temperature range of 273 ~ 77 K. Metallographic examination also was carried out. The simulated specimens revealed a slight embrittlement compared with the base materials. The impact toughness of the specimens deteriorated with the decreasing test temperature. The particles precipitating at grain boundary were observed in low toughness specimens. The results from Charpy V-notch test, however, showed that significant degradation of absorbed energy caused by brittle fracture was not observed for the specimen tested in the test temperature range.
机译:研究了化学成分为Fe-0.02C-0.15Si-6.00Mn-10.0Ni-23.0Cr-2.00Mo-0.48N-0.14V的高氮奥氏体不锈钢的HAZ(焊件的受热影响区)性能。用热循环模拟器(Gleeble 1500)模拟热影响区的热循环。在各种峰值温度和/或保温时间条件下,对夏比试验尺寸的样品进行热处理而无缺口。在273〜77 K的温度范围内进行V型缺口夏比试验。还进行了金相检查。与基础材料相比,模拟样品显示出轻微的脆化。试样的冲击韧性随着测试温度的降低而降低。在低韧性试样中观察到在晶界沉淀的颗粒。但是,夏比V型缺口试验的结果表明,在测试温度范围内,未观察到由脆性断裂引起的吸收能的显着降低。

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