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首页> 外文期刊>Metallography, Microstructure, and Analysis >Substructure Formation, Texture, and Mechanical Behavior of Warm Rolled 2205-Type Duplex Stainless Steel
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Substructure Formation, Texture, and Mechanical Behavior of Warm Rolled 2205-Type Duplex Stainless Steel

机译:温暖轧制2205型双相不锈钢的下结构形成,质地和力学行为

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摘要

The microstructural evolution and mechanical behavior of 2205 duplex stainless steel were studied after plate warm rolling at 600 degrees C with 60 and 80% thickness reduction, using different microscopy techniques, X-ray diffraction, and tensile and hardness testing. The microstructures of the warm-rolled specimens consisted of flattened wavy grains. The texture evolution during rolling in the ferrite domain presented alpha-fiber and rotated cube components, while the austenite showed brass, copper, and cube components to a lesser extent. Intense formation of entanglement and dislocation forests characterized the microstructure. In ferrite, there was an intense formation of dislocation substructures and cell blocks. In austenite, the substructure was characterized by planar gliding and the formation of dislocation entanglements. After warm rolling, the tensile strength reached 1185 and 1328 MPa at 60 and 80% thickness reduction, respectively. Compared with the as-received steel, the warm work raised the mechanical strength level by between 65 and 72%. These results highlight the prospects for innovative routes to the industrial production of this class of duplex stainless steel, such as cold rolling suppression, considering even ductility reduction.
机译:使用不同的显微镜技术,X射线衍射和拉伸和硬度试验,研究了2205双相不锈钢2205双相不锈钢的微观结构演化和力学行为。温轧样本的微观结构包括扁平的波状晶粒。在铁氧体结构域中轧制过程中的纹理演化呈现α-纤维和旋转立方体组分,而奥氏体在较小程度上显示黄铜,铜和立方体部件。纠缠和脱位林的强烈形成表征了微观结构。在铁素体中,存在脱位次结构和细胞块的强烈形成。在奥氏体中,所述子结构的特征在于平面滑动和脱位纠缠的形成。在暖轧后,分别在60%和80%的厚度下达到1185和1328MPa的拉伸强度。与接收钢相比,温暖的工作将机械强度水平升高到65%和72%之间。这些结果突出了创新路线的前景,以这种双工不锈钢工业生产,如冷轧抑制,考虑甚至延展性降低。

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