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奥氏体晶粒长大的英文

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"奥氏体晶粒长大"怎么读用"奥氏体晶粒长大"造句

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  • austenite grain growth

例句与用法

  • Austenite grain growth behavior of steel 33mn2v designed for oil - well tubes
    奥氏体晶粒长大规律
  • The effect of heating technique on the size of austenite crystal grain and the solid solution of ti nb
    固溶及奥氏体晶粒长大的影响
  • In this paper . monte carlo ( mc ) technique was used to simulate the grain growth in heat - affected zone of an ultra - fine grain steel
    本文采用montecarlo ( mc )模拟技术对超细晶粒钢铁材料焊接haz的奥氏体晶粒长大进行了研究。
  • The combined effect of v and re can delay the dynamic recrystallization , refine the grain and second phase particles , and promote the precipitation of v ( c , n ) considerably
    钒和稀土复合微合金化有更强的推迟形变奥氏体动态再结晶,抑制奥氏体晶粒长大和细化晶粒的作用。
  • Based upon the 3d isothermal mc software , an integrate 3d non - isothermal mc simulation system was developed , which is a microsoft windows based computer program . input the temperature field data and material properties , the program can simulate the evolution of grain structure , both image of simulated grain structure and numerical datum reflecting grain size distribution can be produced by the program
    在三维等温mc模拟软件的基础上,作者开发了用于模拟焊接haz晶粒长大的三维非等温mc集成模拟软件系统,该软件基于微软windows操作系统,输入温度场数据和必要的参数,软件就能够模拟奥氏体晶粒长大的整个过程,模拟结果以反映晶粒分布的图像和数据文件的形式提供。
  • We apply the system to the ultra - fine grain steel welding , the simulated mean grain size in cghaz agreed well with the corresponding independent experimental data . in this paper , three factors influencing the grain growth , the steep temperature gradient in haz . the grain boundary liquid and the precipitates particle , were studied specially using mc technique
    研究表明温度梯度造成的“热钉扎”现象和晶界液化现象都对靠近熔合线附近的晶粒长大有明显的阻碍作用,对最终的晶粒大小分布有重要的影响:而800mpa超细晶粒钥中的tin粒子山于溶解温度高,抑制奥氏体晶粒长大的效果十分显著。
  • Some factors influencing the grain growth were studied in detail using mc technique . the mc simulation of grain growth can provide not only grain growth kinetics but also detailed information on temporal grain morphology evolution . furthermore , mc technique can easily simulate the " thermal pin " phenomenal caused by steep temperature gradient near the weld interface
    采用mc模拟技术,不仅能够模拟焊接haz奥氏体晶粒长大的动力学过程,而且能够逼真地模拟奥氏体晶粒微观形貌的变化,更重要的是它可以很好地模拟焊接haz存在的陡峭的温度梯度对奥氏体晶粒长大的影响。
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