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首页> 外文期刊>Materials Science and Engineering >Effects of subsequent treatments on the microstructure and mechanical properties of SKD11 tool steel samples processed by multi-stage thixoforging
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Effects of subsequent treatments on the microstructure and mechanical properties of SKD11 tool steel samples processed by multi-stage thixoforging

机译:后续处理对多阶段触变处理SKD11工具钢样品组织和力学性能的影响

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摘要

In this study, multi-stage thixoforging and subsequent heat treatments of SKD11 tool steel samples were physically simulated by experiments. The microstructure and mechanical properties of various regions in the multi-stage thixoforged SKD11 samples before and after different heat treatments were investigated. The effects of the heat treatments on the former solid and liquid areas of the multi-stage thixoforged SKD11 sample were quite different, because the contents of alloying elements and microstructural morphologies in these areas were different. Static recrystallization of austenite, precipitation of carbides, growth of austenite, dissolution of carbides, and martensitic transformation occurred sequentially in the former solid areas of the multi-stage thixoforged SKD11 sample during annealing, quenching, and tempering. The values of the residual stress and volume fractions of austenite and martensite in the former solid areas changed significantly by the above microstructural evolution sequence. However, heat treatments slightly affected the volume fraction, distribution, and morphology of the carbides in the former liquid areas of the multi-stage thixoforged SKD11 sample. The mechanical properties of the centre regions of the multi-stage thixoforged SKD11 samples were adjustable during heat treatment because of the low volume fraction (approximately 10%) and dispersed distribution of the carbides in these regions. It is difficult to improve the mechanical properties of the edges of multi-stage thixoforged SKD11 samples by heat treatments owing to the high volume fraction (approximately 45%) and net-shaped morphologies of the carbides in these regions because they were abundant in the former liquid phase.
机译:在这项研究中,通过实验模拟了SKD11工具钢样品的多阶段触变组织和随后的热处理。研究了多阶段触变性SKD11样品在不同热处理前后的各个区域的显微组织和力学性能。热处理对多阶段触变性SKD11样品之前的固体和液体区域的影响是完全不同的,因为这些区域中合金元素的含量和微观结构形态是不同的。在退火,淬火和回火过程中,多阶段触变SKD11样品的先前固体区域中,奥氏体静态重结晶,碳化物沉淀,奥氏体生长,碳化物溶解和马氏体相变依次发生。通过上述显微组织演化顺序,在以前的固体区域中残余应力和奥氏体和马氏体的体积分数的值发生了显着变化。但是,热处理对多阶段触变SKD11样品前液体区域中碳化物的体积分数,分布和形态有轻微的影响。由于在这些区域中碳化物的体积分数低(大约10%)和分散分布,因此在热处理过程中可以调节多阶段触变性SKD11样品中心区域的机械性能。由于这些区域中碳化物的体积分数高(约45%)和网状形态,因此难以通过热处理来改善多级触变性SKD11样品边缘的机械性能。液相。

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