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1)  fusion temperature
熔化温度;聚变温度
2)  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
3)  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。
4)  fusion point
聚变温度
5)  Melting temperature
熔化性温度
1.
Taking the slag sample of Ji'gang BF as the base,the content of SiO_2、CaO、MgO and Al_2O was adjusted and the effect of content of Al_2O_3 and MgO and the dualistic basicity on melting temperature and viscosity of slag were studied.
以济钢现场高炉渣样为基准,通过调整炉渣中二氧化硅、氧化钙、氧化镁、三氧化二铝的质量分数,在实验室研究了三氧化二铝、氧化镁的质量分数和二元碱度对炉渣的熔化性温度和炉渣粘度的影响,从而确定现有原燃料条件下对高炉冶炼最有利的炉渣中三氧化二铝、氧化镁的质量分数和二元碱度。
2.
,Ltd,the influences of MgO and(CaO/SiO_2)on the viscosity and melting temperature of BF slag have been studied,aiming at prioiding a theoretical guideline for optimizing the BF slag making in the plant.
根据唐山钢铁有限责任公司第二炼铁厂高炉的原料条件和冶炼情况,研究了MgO、二元碱度(CaO/S iO2)对高炉渣的流动性黏度以及熔化性温度的影响,为唐钢高炉优化造渣制度提供实验和理论依据,结果表明:炉渣碱度在1。
3.
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。
6)  temperature changes
温度变化
1.
Finite element analysis of the influences of temperature changes on one portal frame;
温度变化对某门式刚架影响的有限元分析
2.
Based on the simplified heat transfer model,the surface temperature changes and distribution of radiant intensity of ship were simulated.
在简化舰船动态传热模型的基础之上,模拟出舰船表面瞬时温度变化与目标辐射强度的周向分布结果。
3.
Based on the simplified heat transfer model of target,the transient temperature changes were calculated, and comparing temperature of target with that of background,it found that there is a distinctive temperature variance of the target and the background and the difference can reach about 10℃.
在简化目标传热模型的基础之上,计算出目标的瞬时温度变化,并与背景的温度比较发现,目标与背景在一天之中均存在明显温差,最大温差可达10℃。
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。
参考词条