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Effect of High Pressure on the Melting and Solidifying Behavior of a Railway Frog Steel
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作者 吴素君 ma dong +1 位作者 han bo chen lei 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2017年第4期921-925,共5页
Microstructural evolutions of the railway frog steel solidified under different pressure were studied using OM, FEGSEM, and TEM. The influences of pressure on the solidification, grain sizes, and morphology of carbide... Microstructural evolutions of the railway frog steel solidified under different pressure were studied using OM, FEGSEM, and TEM. The influences of pressure on the solidification, grain sizes, and morphology of carbides of the steel were analyzed. It is found that the melting point of the steel increases with the pressure and the solidified microstructure under high pressure does not vary significantly with the melting temperature. The experimental results show that the solidified microstructure consisting of complete equiaxed dendrites is remarkably refined through the increase of pressure, with the mean dendrite arm spacing of about 24, 18, and 8 μm under 3, 6, and 10 GPa, respectively. It is also revealed by TEM observation that the precipitates change from needle-like and rhombic carbide(M3C) forms during normal(atmospheric) pressure solidification into nodulized hexagonal precipitate M7C3 at 3 GPa, and M(23)C6 at 6 GPa and 10 GPa, which is associated with the undercooling and distribution of the trace elements. The diameter of the precipitates is between 80 nm and 200 nm. 展开更多
关键词 high pressure solidification melting point equiaxed dendrites precipitates
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Properties of Liquid Nickel along Melting Lines under High Pressure
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作者 曹启龙 汪盼盼 +3 位作者 黄多辉 杨俊升 万明杰 王藩侯 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第8期116-119,共4页
We report a molecular dynamics study of structural and transport properties of liquid nickel under high pres- sures. Pressure dependencies of pair distribution function and pair correlation entropy along the melting l... We report a molecular dynamics study of structural and transport properties of liquid nickel under high pres- sures. Pressure dependencies of pair distribution function and pair correlation entropy along the melting line indicate that the configuration change along melting lines decreases with increasing pressure. The calculated diffusion coefficients and viscosity by using entropy-scaling laws with modified parameters and ideal parameters are compared with those extracted from mean-square displacement or the Stokes-Einstein relation. The results suggest that the entropy-scaling laws hold well for coefficients and viscosity increase moderately with liquid nickel under high-pressure conditions, and the diffusion pressure along melting lines. 展开更多
关键词 Properties of Liquid Nickel along melting Lines under high pressure
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How to detect melting in laser heating diamond anvil cell
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作者 杨留响 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第7期31-35,共5页
Research on the melting phenomenon is the most challenging work in the high pressure/temperature field. Until now,large discrepancies still exist in the melting curve of iron, the most interesting and extensively stud... Research on the melting phenomenon is the most challenging work in the high pressure/temperature field. Until now,large discrepancies still exist in the melting curve of iron, the most interesting and extensively studied element in geoscience research. Here we present a summary about techniques detecting melting in the laser heating diamond anvil cell. 展开更多
关键词 high pressure laser melting diamond anvil cell
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