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激光熔覆过程中单个颗粒温升的解析公式
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作者 高月华 杨坤 +1 位作者 刘其鹏 石姗姗 《大连交通大学学报》 CAS 2023年第3期74-78,共5页
提出了激光熔覆过程中单个粉末颗粒温升的解析公式,该公式考虑了粉末颗粒的固液相变及颗粒材料热物性参数随温度的变化。通过具体算例验证了考虑粉末颗粒固液相变的必要性以及发展公式的有效性。考虑和未考虑相变计算的单个颗粒的温度... 提出了激光熔覆过程中单个粉末颗粒温升的解析公式,该公式考虑了粉末颗粒的固液相变及颗粒材料热物性参数随温度的变化。通过具体算例验证了考虑粉末颗粒固液相变的必要性以及发展公式的有效性。考虑和未考虑相变计算的单个颗粒的温度结果相差超过200℃。将应用发展公式预测结果与已有的仿真结果进行对比,结果表明:直径为85、75和55μm的颗粒,两个结果的相对误差分别为5.5%、5.3%和11.6%。研究结果为激光熔覆及增材过程中颗粒温升的精确计算提供了理论参考。 展开更多
关键词 激光熔覆 颗粒温升 解析研究 固液相变 热物性
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Effect of baking processes on properties of TiB_2/C composite cathode material 被引量:1
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作者 吕晓军 李劼 +1 位作者 赖延清 方钊 《Journal of Central South University》 SCIE EI CAS 2009年第3期429-433,共5页
Pitch and TiB2/C green composite cathode material were respectively analyzed with simultaneous DSC-TGA, and effects of three baking processes of TiB2/C composite cathode material, i.e. K25, K5 and M5, on properties of... Pitch and TiB2/C green composite cathode material were respectively analyzed with simultaneous DSC-TGA, and effects of three baking processes of TiB2/C composite cathode material, i.e. K25, K5 and M5, on properties of TiB2/C composite cathode material were investigated. The results show that thermogravimetrie behavior of pitch and TiB2/C green composite cathode is similar, and appears the largest mass loss rate in the temperature range from 200 to 600 ℃. The bulk density variation of sample K5 before and after baking is the largest (11.9%), that of sample K25 is the second, and that of sample M5 is the smallest (6.7%). The crushing strength of sample M5 is the biggest (51.2 MPa), that of sample K2.5 is the next, and that of sample K5 is the smallest (32.8 MPa). But, the orders of the electrical resistivity and electrolysis expansion of samples are just opposite with the order of crushing strength. The heating rate has a great impact on the microstructure of sample. The faster the heating rate is, the bigger the pore size and porosity of sample are. Compared with the heating rate between 200 and 600℃ of samples K25 and K5, that of sample M5 is slower and suitable for baking process of TiB2/C composite cathode material. 展开更多
关键词 aluminum electrolysis TiB2/C composite cathode material baking process
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