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Application of transient nonlinear thermal analysis on quenching of hot die steel

机译:瞬态非线性热分析在热模钢淬火中的应用

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Hot die steels contact with high temperature metals,and possess well thermal conductivity,wear resistance and red hardness.The carbon content should be controlled in the range of 0.3wt.% to 0.6wt.%,and added alloy elements to improve hardenability.The complex composition of the alloy affects its thermal and physical properties.For billets with large volume,it is difficult to measure the temperature of all parts.Through numerical simulation,the temperature field distribution in quenching process of hollow steel pipe with a length of 7 m is obtained by adopting the transient nonlinear thermal analysis algorithm of general finite element software.The results show that the steel temperature decreases to the target temperature of 19°C,it takes about 10 to 12 minutes for the thin wall and 18 to 20 minutes for the thick wall.It is about 4 minutes to descend martensite transition temperature of 265°C at the thick end.Steel temperature decreases to medium temperature,with the wall thickness increases,time slightly longer.The characteristics and phase changing latent heat of hot die steel quenching process are taken into account,and the corresponding treatment is carried out when setting thermophysical parameters.The accurate simulation results are obtained and have certain significance for the research of related materials heat treatment.
机译:热管钢与高温金属接触,具有良好的导热性,耐磨性和红色硬度。碳含量应控制在0.3wt%至0.6wt。%,加入合金元素,以提高淬透性。合金的复杂组合物影响其热和物理性质。对于具有大容积的坯料,难以测量所有部件的温度。用数值模拟,空心钢管淬火过程中的温度场分布,长度为7米通过采用一般有限元软件的瞬态非线性热分析算法来获得。结果表明,钢温度降低到19°C的目标温度,薄壁约为10至12分钟,18至20分钟厚壁为约4分钟,以在厚端下降265°C的马氏体过渡温度。灯泡温度降至中温度,墙壁厚度reases,时间略较长。考虑了热模钢淬火过程的特性和相变潜热,并在设定热神族时进行相应的处理。获得准确的仿真结果并对研究具有一定的重要性相关材料热处理。

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