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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Impulse Excitation Internal Friction Study of Dislocation and Point Defect Interactions in Ultra-Low Carbon Bake-Hardenable Steel
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Impulse Excitation Internal Friction Study of Dislocation and Point Defect Interactions in Ultra-Low Carbon Bake-Hardenable Steel

机译:超低碳可硬化钢中位错和点缺陷相互作用的脉冲激励内摩擦研究

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摘要

The simultaneous presence of interstitial solutes and dislocations in an ultra-low carbon bake-hardenable steel gives rise to two characteristic peaks in the internal friction (IF) spectrum: the dislocation-enhanced Snoek peak and the Snoek-Ke-Koster peak. These IF peaks were used to study the dislocation structure developed by the pre-straining and the static strain aging effect of C during the bake-hardening process. A Ti-stabilized interstitial-free steel was used to ascertain the absence of a γ-peak in the IF spectrum of the deformed ultra-low carbon steel. The analysis of the IF data shows clearly that the bake-hardening effect in ultra-low carbon steel is entirely due to atmosphere formation, with the dislocation segment length being the main parameter affecting the IF peak amplitude. Recovery annealing experiments showed that the rearrangement of the dislocation structure lead to the elimination of the C atmosphere.
机译:在超低碳可烘烤硬化钢中同时存在间隙溶质和位错会在内部摩擦(IF)谱中产生两个特征峰:位错增强的Snoek峰和Snoek-Ke-Koster峰。这些IF峰用于研究烘烤硬化过程中C的预应变形成的位错结构和C的静态应变时效效应。使用Ti稳定的无间隙钢来确定变形超低碳钢的IF光谱中不存在γ峰。对中频数据的分析清楚地表明,超低碳钢的烘烤硬化效应完全归因于气氛的形成,位错段长度是影响中频峰幅度的主要参数。恢复退火实验表明,位错结构的重排导致消除了C气氛。

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