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Thermodynamics Analysis of Multiple Microelements’ Coupling Behavior in High Fatigue Resistance 50CrVA Spring Steel with Nanoparticles

机译:纳米颗粒高抗疲劳50CrVA弹簧钢中多种微量元素偶联行为的热力学分析

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摘要

Solid solution and coupling precipitation behavior of multiple microelements in 50CrVA spring steel under different temperatures were analyzed based on thermodynamics. Quantitative relationships between the multiple microelements’ contents and secondary phases, and their effects on fatigue life, were systematically studied in conjunction with the secondary phase microstructure characterization using scanning and transmission electron microscopy, etc. The solid solution contents of different microelements decreased as the temperature decreased, especially N and Ti, but the number of compounds gradually increased when the temperature decreased. Carbonitride constitutional liquation occurred in 50CrVA-S1# spring steel-containing microparticles, and without carbonitrides, constitutional liquation occurred in 50CrVA-S2# spring steel-containing nanoparticles. The experimental results indicate that the fatigue life reduces by about an order of magnitude when the secondary phase size changes from nanometers to microns, and the corresponding relationship among multiple microelements, microstructure of secondary phases, and fatigue life, was established in this spring steel.
机译:基于热力学,分析了50CrVA弹簧钢中多种微量元素在不同温度下的固溶和耦合析出行为。结合扫描和透射电子显微镜等对第二相微观结构的表征,系统地研究了多种微量元素的含量与次生相之间的定量关系及其对疲劳寿命的影响。随着温度的升高,不同微量元素的固溶体含量降低。减少,尤其是氮和钛,但随着温度降低,化合物的数量逐渐增加。含50CrVA-S1#弹簧钢的微粒中发生碳氮化物的液化,没有含碳氮化物的含50CrVA-S2#弹簧钢的纳米颗粒中发生的液化。实验结果表明,当次级相尺寸从纳米级变为微米级时,疲劳寿命降低了一个数量级,并且在该弹簧钢中建立了多种微量元素,次级相的微观结构与疲劳寿命之间的对应关系。

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