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1)  molten temperature region
熔化温度区间
1.
The molten temperature region of its coating is determined and the mechanical performance of molten metal welded with this electrode is measures.
分析了 CJ4 2 1立向下电焊条的主要工艺特点 ,对 CJ4 2 1立向下焊条药皮的熔化温度区间进行了测定 ,对焊条的熔敷金属力学性能进行了检测 。
2)  zone-melting temperature
区熔温度
3)  melting temperature
熔化温度
1.
Study on size effect of melting temperature of Pb nanowires;
铅纳米线熔化温度的尺寸效应研究
2.
Molecular dynamic study on size dependent melting temperature of Pb nanofilms;
铅纳米薄膜熔化温度尺寸效应的分子动力学研究
3.
Influence of interaction among agglomerative flux components on melting temperature of flux;
焊剂组元间交互作用对熔化温度的影响
4)  melting point
熔化温度
1.
Free energy method and the melting point of aluminum under the zero pressure;
自由能方法与零压下Al的熔化温度
2.
The effects of Li2O,NaF,Al2O3 and ZnO on soften and melting point of glass frits was studied.
研究了Li2O,NaF,Al2O3和ZnO对玻璃体系软化温度和熔化温度的影响,在此基础上研制出了软化温度Tg低于500℃、熔化温度Tm低于560℃的低温无铅玻璃。
3.
The influences of copper on properties of Zn-Al solders for Al/Cu brazing,which include wettability,shear strength of joint,microstructure of weld and melting point were studied.
研究了Cu元素对铝/铜钎焊用Zn-Al钎料的熔化温度、铺展性、接头剪切强度及焊缝组织的影响。
5)  melting range
熔化区间
1.
The melting temperature and melting range of converter slag bearing vanadium and titanium oxides were measured.
研究了主要组元对含 V2 O5、Ti O2 钢渣熔化性温度及熔化区间的影响 ,提出了含 V2 O5、Ti O2 钢渣进行溅渣护炉的控制方向。
2.
Compared with conventional specimens,the molten temperature of the rapid solidification specimens can be reduced with smaller melting range.
与相同成分普通凝固试样相比,快速凝固试样的熔化温度降低,熔化区间变窄,熔化区间最大的减小幅度可达12。
6)  temperature range
温度区间
1.
The thermodynamic calculation of the optimum temperature range for the decomposition of calcium carbonate and the desulfurization by calcium oxide is presented in this paper.
实验分解CaCO3,并进行CaO脱除SO2适宜温度区间的热力学分析和计算,结合CaO的水合活性实验研究,得出了炉内最佳的喷钙脱硫温度为950℃,适宜温度区间为846~1 491℃。
2.
The influence of the temperature span, temperature range, flow time and flow rate were investigated in the experiment.
对温度区间、温度跨度、流动时间和流量几种情况的研究表明在实验范围内,温度跨度和流量的增大会使制冷量减小,流动时间的增加会使制冷量加速减小,温度区间跨越居里点能使制冷量有所增大。
3.
The effect of temperature range for ultrasonic treatment on solidification structure of AZ91D and AZ31B magnesium alloy was investigated and the mechanism of refining solidification structure of magnesium alloy by power ultrasonic treatment was discussed.
研究了超声处理温度区间对AZ91D和AZ31B镁合金凝固组织的影响,探讨了功率超声细化镁合金凝固组织的机理。
补充资料:铂电阻温度表(见电阻温度表)


铂电阻温度表(见电阻温度表)


表。bod旧nZu wendubiao铂电阻温度表见电阻温
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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