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Preservation of Geometrical Integrity of Supersolidus-Liquid-Phase-Sintered SKD11 Tool Steels Prepared with Powder Injection Molding

机译:粉末注射成型超固相液相烧结SKD11工具钢的几何完整性的保持

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摘要

The powder injection molded SKD11 tool steels often manifest shape retention problems during supersolidus liquid phase sintering due to the difficulties in controlling the amount of liquid phase. The typical temperature range for the sintering of SKD11 is only 10 K, between 1503 and 1513 K (1230 and 1240 °C), and this narrow sintering range demands a special furnace with very uniform temperature distribution. Through the addition of carbides, in particular TiC, this problem is resolved by enlarging the liquid + γ + carbide region in the phase diagram and by impeding the grain growth with the carbides. The resulting sintering window is broadened to 40 K, between 1513 and 1553 K (1240 and 1280 °C). The relevant mechanisms on the improvement of shape retention are discussed with a focus on the effect of carbide addition on the changes in the phase diagram and the microstructure. A guideline for the selection of effective carbides is also proposed based on the experimental results and the phase diagram analyses.
机译:由于难以控制液相量,粉末注射成型的SKD11工具钢经常在超固相液相烧结过程中表现出形状保持问题。 SKD11烧结的典型温度范围仅为10 K,介于1503和1513 K(1230和1240°C)之间,而这种狭窄的烧结范围要求使用温度分布非常均匀的特殊熔炉。通过添加碳化物,特别是TiC,可以通过扩大相图中的液体+γ+碳化物区域并通过碳化物阻止晶粒长大来解决该问题。所得的烧结窗口在1513和1553 K(1240和1280°C)之间扩大到40K。讨论了改善形状保持力的相关机理,重点讨论了碳化物添加对相图和微观结构变化的影响。根据实验结果和相图分析,还提出了选择有效碳化物的指南。

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