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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Nanograined/Ultrafine-Grained Structure and Tensile Deformation Behavior of Shear Phase Reversion-Induced 301 Austenitic Stainless Steel
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Nanograined/Ultrafine-Grained Structure and Tensile Deformation Behavior of Shear Phase Reversion-Induced 301 Austenitic Stainless Steel

机译:剪切相变诱导的301奥氏体不锈钢的纳米晶/超细晶组织和拉伸变形行为

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摘要

We describe here an electron microscopy study of shear reversion-induced nanograined/ultrafine-grained (NG/UFG) structure and evolution of tensile strained microstructure in metastable type 301 austenitic stainless steel. The NG/UFG structure with grain size in the range of 200 to 500 nm was obtained by severe cold deformation and controlled annealing in the narrow temperature range of 973 to 1073 K (700 to 800 ℃). The different stages of annealing involve the following: (a) transformation of strain-induced martensite to highly dislocated lath-type austenite, (b) formation of dislocation-cell structure and transformation to recovered austenite structure with defect-free subgrains, and (c) coalescence of subgrains to form a NG/UFG structure concomitant with a completely recrystallized structure, and consistent with martensitic shear-type phase reversion mechanism. The optimized cold working and annealing treatment resulted in NG/UFG material with a high yield strength (~1000 MPa) and high ductility (~30 pct) combination. Multiple deformation mechanisms were identified from postmortem electron microscopy examination of tensile strained NG/UFG 301 austenitic stainless steel and include dislocation glide and twinning. The evidence of heterogeneous nucleation of overlapping stacking faults and partial dislocations points toward deformation.
机译:我们在这里描述了一种电子显微镜研究,研究了亚稳态301型奥氏体不锈钢的剪切回复诱导纳米晶粒/超细晶粒(NG / UFG)结构以及拉伸应变微观组织的演变。在973至1073 K(700至800℃)的狭窄温度范围内,通过剧烈的冷变形和受控退火得到了晶粒尺寸为200至500 nm的NG / UFG结构。退火的不同阶段涉及以下内容:(a)应变诱导马氏体转变为高度错位的板条型奥氏体;(b)形成位错胞结构,并转变为具有无缺陷亚晶粒的回收奥氏体结构;以及(c )亚晶粒的聚结以形成NG / UFG结构,并伴有完全重结晶的结构,并与马氏体剪切型相变机制一致。经过优化的冷加工和退火处理使得NG / UFG材料具有高屈服强度(〜1000 MPa)和高延展性(〜30 pct)的组合。拉伸变形NG / UFG 301奥氏体不锈钢的事后电子显微镜检查确定了多种变形机理,包括位错滑移和孪晶。重叠的堆垛层错和部分位错的异质形核的证据指向变形。

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