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熔体温度处理工艺
相关语句
  melt temperature treatment
     Effect of melt temperature treatment on solidification structure of A319 alloy
     熔体温度处理工艺对A319合金组织和性能的影响
短句来源
     In this paper, Al-7%Si,Al-12%Si and Al-20%Si alloys were investigated with their solidification structure and differential thermal analysis curve attained in different melt temperature treatment process.
     本文以Al-7%Si、Al-12%Si和Al-20%Si合金为研究对象,在不同的熔体温度处理工艺下,得到其凝固组织和相应的差示扫描量热(DSC)分析曲线。
短句来源
     The effect of melt temperature treatment on the microstructure of Al 25%Si alloy has been studied in this paper.
     研究了熔体温度处理工艺对Al 2 5%Si合金显微组织的影响 .
短句来源
     The effect of composition of Cu, Fe, Mg on the solidification structure and mechanical properties of the hypoeutectic A356 alloy treated by melt temperature treatment (MTT) process was studied.
     运用熔体温度处理工艺 ,研究了A35 6铝合金中Cu ,Fe ,Mg成分的变化对凝固组织及性能的影响。
短句来源
  “熔体温度处理工艺”译为未确定词的双语例句
     A STUDY OF MELT THERMAL TREATMENT IMPOSED ON HYPOEUTECTIC Al-Si ALLOY
     亚共晶Al-Si合金熔体温度处理工艺参数研究
短句来源
     Effect of Protecting Flux Imposed on Melt Thermal Treatment
     保护熔剂对熔体温度处理工艺及效果的影响
短句来源
     The results of solidification structure observation and mechanical properties evaluation show that the MTT process can obviously restrain the precipitation, change the morphology of intermetallic compound by the size decreasing, such as Cu-rich, Fe-rich and Mg-rich phase. So the mechanical properties are improved.
     组织观察和性能测试结果表明 ,熔体温度处理工艺能够明显抑制富Cu、富Mg、富Fe等金属间化合物相的析出 ,改善和减小了富Cu、富Mg、富Fe相析出形貌和尺寸 ,显著地提高合金力学性能。
短句来源
  相似匹配句对
     b) Higher overheating temperature of the melt;
     b)提高熔体处理温度
短句来源
     Effect of Protecting Flux Imposed on Melt Thermal Treatment
     保护熔剂对熔体温度处理工艺及效果的影响
短句来源
     A STUDY OF MELT THERMAL TREATMENT IMPOSED ON HYPOEUTECTIC Al-Si ALLOY
     亚共晶Al-Si合金熔体温度处理工艺参数研究
短句来源
     Effect of melt temperature treatment on solidification structure of A319 alloy
     熔体温度处理工艺对A319合金组织和性能的影响
短句来源
     Study on the processing of the raw hemp
     大麻处理工艺
短句来源
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The effect of melt temperature treatment on the microstructure of Al 25%Si alloy has been studied in this paper. It is found that melt temperature treatment can make the primary crystal grains of Al 25%Si alloy be fined considerably. The size of the primary crystal grains in Al 25%Si alloy is decreased from 100 μm to 15 μm. The efficiency of melt temperature treatment on Al 25%Si alloy dependents on the degrees of the temperature at which the higher and lower temperature melts are mixed. The primary crystal...

The effect of melt temperature treatment on the microstructure of Al 25%Si alloy has been studied in this paper. It is found that melt temperature treatment can make the primary crystal grains of Al 25%Si alloy be fined considerably. The size of the primary crystal grains in Al 25%Si alloy is decreased from 100 μm to 15 μm. The efficiency of melt temperature treatment on Al 25%Si alloy dependents on the degrees of the temperature at which the higher and lower temperature melts are mixed. The primary crystal grains of Al 25%Si alloy decrease as the temperature of the higher temperature melts increases. On condition that the temperature of the lower temperature melts is constant, the primary crystal grains of Al 25%Si alloy first decrease as the temperature of the lower temperature melts increases; then, the primary crystals grains of Al 25%Si alloy increase with the temperature of the lower temperature melts when the temperature of the lower temperature melts exceeds 630 ℃.

研究了熔体温度处理工艺对Al 2 5%Si合金显微组织的影响 .结果发现 :熔体温度处理可使Al 2 5%Si合金初生硅的尺寸大大减小 ,初生硅尺寸可由处理前的 10 0 μm左右减小到处理后的 15μm左右 ;Al 2 5%Si合金熔体温度处理的效果主要受低温和高温熔体温度的影响 .高温熔体温度越高 ,初生硅的尺寸越小 ;在高温熔体温度为 950℃时 ,初生硅的尺寸先随低温金属熔体温度的升高而减小 ,低温金属熔体温度升高到 6 30℃后 ,初生硅的尺寸又随低温金属熔体温度的升高而增大

The effect of a new process, the melt temperature treatment(MTT) process on the solidification structure of A319 alloy has been studied. Through the investigation of the cooling rate and the holding time of the mixing melt, the results show that the cooling rate has little effect on the size of the primary dendritic either treated with MTT or not, however, the MTT process can restrain the intercrystalline compound phase from precipitating and promote the homogenization of the microstructure. With the holding...

The effect of a new process, the melt temperature treatment(MTT) process on the solidification structure of A319 alloy has been studied. Through the investigation of the cooling rate and the holding time of the mixing melt, the results show that the cooling rate has little effect on the size of the primary dendritic either treated with MTT or not, however, the MTT process can restrain the intercrystalline compound phase from precipitating and promote the homogenization of the microstructure. With the holding time of the mixing melt going, the tensile strength of the samples measured appears low→high→low trend in values. The mechanism of the MTT was analyzed with the theory of atom clusters.

研究了熔体温度处理工艺对A319合金凝固组织的影响 ,通过对冷却速度和混合熔体停留时间的考察 ,发现不同的冷却速度对经过和不经过熔体温度处理的凝固组织初生枝晶尺寸作用不大 ,但对凝固组织中的晶间化合物相的析出有很大影响。研究结果表明 ,熔体温度处理工艺有利于抑制晶间化合物的析出 ,促进组织的均匀性。随着混合熔体停留时间的延长 ,试样的拉伸性能表现出由低到高、再由高到低的变化规律 ,从原子团簇的角度分析了熔体温度处理工艺对凝固组织的作用机制

The effect of composition of Cu, Fe, Mg on the solidification structure and mechanical properties of the hypoeutectic A356 alloy treated by melt temperature treatment (MTT) process was studied. The results of solidification structure observation and mechanical properties evaluation show that the MTT process can obviously restrain the precipitation, change the morphology of intermetallic compound by the size decreasing, such as Cu-rich, Fe-rich and Mg-rich phase. So the mechanical properties are improved. Finally,...

The effect of composition of Cu, Fe, Mg on the solidification structure and mechanical properties of the hypoeutectic A356 alloy treated by melt temperature treatment (MTT) process was studied. The results of solidification structure observation and mechanical properties evaluation show that the MTT process can obviously restrain the precipitation, change the morphology of intermetallic compound by the size decreasing, such as Cu-rich, Fe-rich and Mg-rich phase. So the mechanical properties are improved. Finally, the experimental results were analyzed according to the theory of atom clusters.

运用熔体温度处理工艺 ,研究了A35 6铝合金中Cu ,Fe ,Mg成分的变化对凝固组织及性能的影响。组织观察和性能测试结果表明 ,熔体温度处理工艺能够明显抑制富Cu、富Mg、富Fe等金属间化合物相的析出 ,改善和减小了富Cu、富Mg、富Fe相析出形貌和尺寸 ,显著地提高合金力学性能。用团簇理论分析和解释了有关的实验现象和结果。

 
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