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Grain Size Effect on the Hot Ductility of High-Nitrogen Austenitic Stainless Steel in the Presence of Precipitates

机译:粒度对沉淀物存在高氮奥氏体不锈钢的热延展性

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Precipitation occurs easily during the hot forming of high-nitrogen austenitic stainless steels, which reduces their hot ductility significantly. The effect of grain size on the hot ductility of high-nitrogen austenitic stainless steel in the presence of precipitates was investigated. Different grain sizes of 18Mn18Cr0.5N steel specimens, with and without precipitates, were hot-tension tested. The precipitate morphology, fracture surface, and cracks were studied by scanning electron microscopy, transmission electron microscopy, and electron backscatter diffraction analysis. For the 18Mn18Cr0.5N steel, damage-formation strains of all grain-size specimens were reduced by the precipitates during the hot-tension test. Crack-formation sites were located at grain boundaries and were independent of the Taylor factor. A larger grain size resulted in an increased sensitivity of the fracture strain to precipitates. When the grain size was smaller than 51 μm, the fracture strain became insensitive to the precipitates. A method was suggested to mitigate surface cracking for metal materials with a high precipitation tendency.
机译:在高氮奥氏体不锈钢的热成型期间容易发生沉淀,这显着降低了它们的热延展性。研究了晶粒尺寸对沉淀物存在下高氮奥氏体不锈钢的热延展性的影响。不同粒度为18mn18cr0.5n钢样品,有和没有沉淀物的钢标本进行了热张力。通过扫描电子显微镜,透射电子显微镜和电子反向散射衍射分析研究沉淀形态,断裂表面和裂缝。对于18Mn18Cr0.5N钢,在热张力试验期间,通过沉淀物降低了所有晶粒尺寸样本的损伤形成菌株。裂缝形成位点位于晶界,并与泰勒因子无关。较大的晶粒尺寸导致裂缝应变的敏感性增加沉淀。当晶粒尺寸小于51μm时,裂缝应变对沉淀物不敏感。建议一种方法来减轻具有高沉淀倾向的金属材料的表面裂化。

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