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1)  lattice temperature
晶格温度
1.
The space distributing characteristics of lattice temperature are described,and the influence of t_ temp(delay time of lattice temperature) on t_ drain(delay time of drain voltage) is proposed.
提出并证明了等温分析和电热分析分别得到的LDMOS的触发点是不同的;分析了局部晶格温度在空间上的分布特点;并提出晶格温度弛豫时间会影响漏极电压弛豫时间。
2)  lattice temperature rise
晶格温升
3)  liquidus temperature
初晶温度
1.
Effect of NaCl and LiF on liquidus temperature of molten cryolite-based aluminum electrolyte;
NaCl和LiF的添加对铝电解质初晶温度影响的研究
2.
Study on new device for testing liquidus temperature of aluminium electrolyte and mathematical model of liquidus temperature;
铝电解质初晶温度测定装置及初晶点数模的研究
3.
Study on direct determination of liquidus temperature of aluminium electrolyte;
直接测定铝电解质初晶温度的研究
4)  crystallization temperature
析晶温度
1.
The SPS sintering behavior and mechanism were discussed and the crystallization temperature of fused silica was calculated and compared with the experimental value.
文章讨论了SPS方法制备熔融石英陶瓷材料的烧结行为和烧结机理,计算了熔融石英陶瓷的析晶温度并与实际测试结果进行了比较。
5)  crystallization temperature
结晶温度
1.
Crystallization Temperature of CaO-SiO_2-Na_2O-CaF_2-Al_2O_3-MgO;
CaO-SiO_2-Na_2O-CaF_2-Al_2O_3-MgO渣系的结晶温度
2.
The effect of crystallization temperatures(100 ℃~140 ℃) on the production of β crystal form in isotactic polypropylene nucleated by pimelic acid,magnesium pimelate and aluminium pimelate respectively had been studied in this paper.
研究了结晶温度(100℃~140℃)对庚二酸、庚二酸镁、庚二酸铝成核等规聚丙烯中β晶型生成的影响。
3.
The effects of R,Na2CO3 content,CaF2 content,Al2O3 content and MgO content on crystallization temperature were determined.
利用差热分析仪,研究连铸保护渣的结晶温度与碱度、Na2CO3含量、CaF2含量、Al2O3含量和MgO含量之间的关系,进而通过建立非线性规划模型,对连铸保护渣的结晶性能进行优化设计和模型预测。
6)  crystallization temperature
晶化温度
1.
Effect of crystallization temperature on microstructure and performance of cordierite glass-ceramics;
晶化温度对堇青石玻璃陶瓷结构及性能的影响
2.
Influence of crystallization temperature on amorphous Cr-Fe-C alloy plated layer
晶化温度对非晶态Cr-Fe-C合金镀层的影响
3.
The influences of factors, including aging time,crystallization time and crystallization temperature on the formation of nanoparticle NaY molecular sieve were investigated.
未添加任何添加剂的普通原料,用原位水热法合成出纳米Y型分子筛,讨论了不同的陈化时间,不同的晶化时间以及不同晶化温度对制备纳米Y型分子筛的影响,并考察了纳米Y型分子筛的热稳定性。
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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