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Microstructure And Mechanical Property Of Copper Bearing Eutectoid Steel

机译:含铜共析钢的组织和力学性能

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Isothermal heat treatment was performed for austenitized Cu bearing eutectoid steels (Fe-0.8%C-Cu alloys). Microstructural observations revealed that the pearlite transformation is significantly retarded by the addition of Cu, but the morphology of pearlite, such as lamellar spacing and block size, are hardly influenced by the Cu addition. From the result of chemical analysis for cementite phase, it was found that the redistribution of Cu had occurred between ferrite and cementite through the interfacial diffusion during pearlite transformation and then the precipitation of Cu takes place simultaneously within ferrite phase. Furthermore, in the 2% Cu steel, age hardening behavior was found at the same temperature applied to the isothermal pearlite transformation. This means that the precipitation of Cu does not complete on pearlite transformation and the ferrite in pearlite structure is in the supersaturated state. Yield strength and tensile strength of the pearlite steels depend on not only lamellar spacing but also the dispersion of Cu particles within the ferrite phase. For example, 2% Cu addition increases yield strength and tensile strength by about 250 MPa without reducing ductility so much.
机译:对奥氏体含铜共析钢(Fe-0.8%C-Cu合金)进行了等温热处理。显微组织观察表明,添加铜显着阻碍了珠光体的转变,但是添加铜几乎不会影响珠光体的形态,例如层状间距和块尺寸。根据渗碳体相的化学分析结果,发现在珠光体相变过程中,Cu通过界面扩散在铁素体与渗碳体之间发生了再分布,然后在铁素体相中同时发生了Cu的析出。此外,在2%Cu钢中,在等温珠光体相变的相同温度下发现时效硬化行为。这意味着,在珠光体相变时,Cu的析出不完全,珠光体组织中的铁素体处于过饱和状态。珠光体钢的屈服强度和抗拉强度不仅取决于层状间距,还取决于Cu颗粒在铁素体相中的分散性。例如,添加2%的Cu可使屈服强度和抗拉强度提高约250 MPa,而不会大大降低延展性。

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