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氬氣霧化Rene'95合金粉末顆粒二次枝晶間距的研究

The Study of Second Dendrite Arm Spacings of Argon-atomised Rene' 95 Alloy Powder

  • 摘要: 本文利用光學顯微鏡定量金相法測量了氬氣霧化Rene’95粉末高溫合金粉末顆粒的平均二次枝晶間距,應用牛頓冷卻定律得出粉末顆粒的冷卻速度,并計算了粉末顆粒完全凝固所需要的時間。在此基礎上推導出了Rene’95合金粉末顆粒的二次枝晶間距、顆粒直徑以及冷卻速度和凝固速度、凝固時間之間的關系。d=0.242D0.489,d=10.9V0.488,d=2.47(de/dt)-0.492,d=39.28tk0.245。研究結果表明:氬氣霧化Rene'95合金粉末顆粒凝固時,滿足一般鑄造合金時的關系式,即d=av-n,d=btn,n基本上在1/3~1/2之間。

     

    Abstract: The second dendrite arm spacings were measured by the method of stereolog-ical metallography method. The cooling rate is determined by the Newton's Cooling Law, and the time required for entirely solidification of powder particles is calculated as well. The second dendrite arm space of Rene'95 alloy powder is related with the particle size, cooling rate、solidifying rate and the time needed for solidification. The relationships are represented as d=0.242D0.489, d=102.9v-0.488, d=2.47 (dε/dt)-0.492, and d=39.28tk0.245.
    The results of the study made it clear that the commom equations of casting, i, e, d=av-n, d=btn, where n is between l/3-l/2, can be applied to the olidification process of argon-atomised Rene'95 alloy powder particles.

     

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