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首页> 外文期刊>Archives of Metallurgy and Materials >EFFECT OF HEAT TREATMENT ON THE MICROSTRUCTURE AND TENSILE DEFORMATION BEHAVIOR OF OXIDE DISPERSION STRENGTHENED ALLOYS MANUFACTURED BY COMPLEX MILLING PROCESS
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EFFECT OF HEAT TREATMENT ON THE MICROSTRUCTURE AND TENSILE DEFORMATION BEHAVIOR OF OXIDE DISPERSION STRENGTHENED ALLOYS MANUFACTURED BY COMPLEX MILLING PROCESS

机译:热处理对复杂铣削工艺制造的氧化物分散加强合金的微观结构和拉伸变形特性的影响

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This study attempted to manufacture an ODS alloy by combining multiple milling processes in mechanical alloying stage to achieve high strength and fracture elongation. The complex milling process of this study conducted planetary ball milling, cryogenic ball milling and drum ball milling in sequential order, and then the microstructure and tensile deformation behavior were investigated after additional heat treatment. The oxide particles distributed within the microstructure were fine oxide particles of 5 similar to 20 nm and coarse oxide particles of 100 similar to 200 nm, and the oxide particles were confirmed to be composed of Cr, Ti, Y and O. Results of tensile tests at room temperature measured yield strength, tensile strength and elongation as 1320 MPa, 2245 MPa and 4.2%, respectively, before heat treatment, and 1161 MPa, 2020 MPa and 5.5% after heat treatment. This results indicate that the ODS alloy of this study gained very high strengths compared to other known ODS alloys, allowing greater plastic zones.
机译:该研究试图通过在机械合金阶段中的多铣削过程结合以实现高强度和骨折伸长率来制造ODS合金。本研究的复杂铣削过程通过顺序进行行星球铣削,低温球铣削和鼓球铣削,然后在额外的热处理后研究了微观结构和拉伸变形行为。分布在微结构内的氧化物颗粒是与20nm的细氧化物颗粒,且粗氧化物颗粒100类似于200nm,并确认氧化物颗粒由Cr,Ti,Y和O.构成。拉伸试验的结果在室温下,在热处理之前,在热处理之前,测量屈服强度,拉伸强度和伸长率,分别为1120MPa,2245MPa和4.2%,并在热处理后1161MPa,2020MPa和5.5%。结果表明,与其他已知的ODS合金相比,该研究的ODS合金获得了非常高的强度,允许更大的塑料区。

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