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A novel C-free Co-based alloy for high temperature tooling applications

机译:适用于高温模具应用的新型无碳钴基合金

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The principle failure mechanism in thixoforming dies is thermal fatigue as the mechanical loading is modest owing to a mushy feedstock. A novel C-free Co-based alloy was submitted to thermal cycling under conditions which mimic thixoforming of steels. The eutectic carbides, typical of Stellite alloys, are replaced in this alloy with Mo-rich coarse secondary phase particles dispersed predominantly at interdendritic sites. Its response to thermal cycling is remarkable with at least a threefold service life extension with respect to the Stellite 6 alloy, identified to be the best die material for steel thixoforming until today. The superior thermal fatigue performance of the present alloy is attributed to its resistance to high temperature oxidation, to a Co-based matrix free of brittle carbides and to its potential to retain its mechanical strength at elevated temperatures.
机译:触变性成型模具的主要失效机理是热疲劳,因为原料糊状导致机械负荷适中。新型无C的Co基合金在模拟钢触变性的条件下进行了热循环。 Stellite合金中典型的共晶碳化物在该合金中被主要分布在枝晶间位点的富含Mo的粗第二相颗粒代替。相对于Stellite 6合金,其对热循环的响应显着提高了至少三倍的使用寿命,而Stellite 6合金被认为是迄今为止钢触变成型的最佳模具材料。本合金的优异的热疲劳性能归因于其对高温氧化的抵抗力,无脆性碳化物的Co基基体以及在高温下保持其机械强度的潜力。

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