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Effect of Deformation Heat Treatment on the Structure of Two-Phase Steel in a Bimetal Composite and its Mechanical Properties

机译:变形热处理对双相复合材料中两相钢结构的影响及其机械性能

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摘要

Features are revealed for the inheritance of bimetallic rolled product of dendrite inhomogeneity of the cast structure of two-phase austenite-ferrite steel applied in the form of a cladding layer on a base of low-alloy steel. It is shown that the banded and fiber structure of a cladding layer on rolled product is the result of retention of chemical liquation and rebuilding of the surfacing dendritic structure. Results are given for quantitative analysis of specimen fractures tested in static tension in the form of two parameters, i.e., work for plastic deformation localization and specific area of a fracture surface characterizing the energy content of failure. Areas of the surface of all fractures having a complex configuration are determined with considerable accuracy due to the original procedure of digital measurement of a three-dimensional failure surface from results of photogrammetric exposure on a meso-macro-scale followed by recreation of a complete three-dimensional model of the relief. Quantitative properties of fractures are supplemented by the strength and ductility indices of bimetallic rolled product, which makes it possible to substantiate the optimum version of final heat treatment and material use taking account of carbon content in the main layer.
机译:为施工结构的双相奥氏体 - 铁氧体钢铸造结构的双金属轧制产品的继承的特征揭示了在低合金钢基部的包层层的形式中施加的。结果表明,轧制产品上的包层层的带状和纤维结构是保留化学性的结果,并重建浮出树突结构。给出了在静态张力中测试的标本骨折的定量分析,以两个参数的形式,即用于塑性变形定位和裂缝表面的特定面积的塑性变形定位和表征失败能量含量的特定区域。由于从摄影测量结果上的Photo-MeSo-Moco-Scale上的Photo-Meticric曝光的结果,通过恢复完整的三个 - 减轻救济模型。裂缝的定量性能由双金属轧制产品的强度和延展性指标补充,这使得可以在主层中考虑碳含量来证实最终热处理和材料的最佳版本。

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