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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Microstructure-Property Relationship in Cold-Drawn Pearlitic Steel Wires
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Microstructure-Property Relationship in Cold-Drawn Pearlitic Steel Wires

机译:冷拉珠光钢丝中的组织性质关系

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摘要

The difficulty in predicting flow stress of a cold-drawn pearlitic steel wire arises from the complex microstructural transformations induced by cold drawing. For assessing properly the different contributions to strengthening, four quantities must first be expressed as a function of strain epsilon (i) residual volume fraction of cementite; (ii) interlamellar spacing lambda taking initial orientation of cementite lamellae into account; (iii) carbon concentration in ferrite deduced from strain-induced carbon partitioning between ferrite and cementite; and (iv) density of dislocations. Combination of these four expressions shows that cementite is able to significantly deviate from stoichiometry before dissolving, and that dislocations alone in ferrite are not able to control the decomposition of cementite unless epsilon reaches 4, implying involvement of solid solution. At epsilon>1.5 when all lamellae are parallel to the wire axis and Voigt model can be applied, it is found that strain hardening is negligible, ferrite hardening by carbon in solid solution is canceled out by cementite softening and flow stress is better described by the Orowan mechanism (1/lambda than by the Hall-Petch law (1/root lambda dependence).
机译:预测冷绘珠光钢丝的流量应力的难度是由冷拉伸诱导的复杂微观结构变换产生的。对于正确评估对加强的不同贡献,必须首先表达四种数量作为菌株Epsilon (I)残留体积分数的渗碳物; (ii)岩石间距λ将粘液薄膜初始取向考虑; (iii)铁素体中的碳浓度从铁氧体和渗碳物之间的应变诱导的碳分配引导; (iv)脱位密度。这四种表达的组合表明,渗透石能够在溶解前显着偏离化学计量,并且单独的脱位在铁素体中不能控制渗碳物的分解,除非epsilon达到4,暗示固体溶液的参与。在Epsilon> 1.5时,当所有薄片均平行于线轴和voigt模型时,发现应变硬化可忽略不计,通过渗碳溶液抵消固体溶液中的铁氧体硬化,并通过渗碳盐软化和流量应力更好地描述orowan机制(比Hall-Petch法(1 / Root Lambda依赖)的机制(1 / Lambda)。

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