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1)  glass transition temperature
玻璃转变温度
1.
Amorphous metallic plastic based on cerium is a new class of bulk metallic glasses with an ultralow glass transition temperature much lower than the boiling point of water close to room temperature,at which temperature it′s high strength is comparable to that of super-strength Al-and Mg-based crystalline alloys.
铈基非晶态金属塑料是一种新的块状非晶合金材料,它具有低于开水温度(100℃)的玻璃转变温度
2.
The supercooled liquid range ΔT_x(=T_x-T_g) and the reduced glass transition temperature T_(rg)=(T_g/T_m) of Fe_(74)Al_4Sn_2P_(10)Si_4B_4C_2 bulk amorphous alloy are 17 K and 0.
用该方法制备的Fe74Al4Sn2P10Si4B4C2 块体非晶合金棒材,其超冷液相区温度ΔTx=17 K,约化玻璃转变温度 Trg=0 637,具有很强的玻璃形成能力。
3.
By the substitution of Si for 1%Ti, the glass transition temperature T_g, crystallization temperature T_ x1 and temperature interval of super cooled liquid region ΔT_x and reduced glass transition temperature T_ rg of the alloy are proved to be changed from 672K, 735K, 63K and 0.
结果表明用1%Si替换Ti后,合金的玻璃转变温度、晶化温度、过冷液相区、约化玻璃温度分别从672K,735K,63K和0。
2)  glass transition temperature
玻璃化转变温度
1.
Microstructure and glass transition temperature of star-shaped styrene-isoprene-butadiene copolymer prepared with N-multi-Li initiator;
氮官能化多锂引发合成星形苯乙烯-异戊二烯-丁二烯共聚物的微观结构和玻璃化转变温度
2.
A new method and equipment of determining glass transition temperature of amorphous macromolecule powders;
非晶态粉体玻璃化转变温度的测量方法与装置
3.
Determining the glass transition temperature of amorphous powders with dilatometer;
用热膨胀法测量非晶态粉体的玻璃化转变温度
3)  glass-transition temperature
玻璃化转变温度
1.
The results showed that the glass-transition temperature of thiosulfinates was-36.
本文对采用乙醇浸提法从大蒜中提取硫代亚磺酸酯的玻璃化转变温度和不同温度下的贮存稳定性进行了研究,并探讨了硫代亚磺酸酯不稳定的机理。
2.
It was proved that the introduced flexible isopropylidene could improve the solubility of the polymer and lower the glass-transition temperature.
将含有柔性异亚丙基团的4,4’-(4,4’-异亚丙基二苯氧基)双苯酐(BSAA)与3,3’,4,4’-二苯醚四酸二酐(ODPA)共同作为二酐单体与4,4’-二氨基二苯砜(DDS)共聚得到含砜基的聚酰亚胺,研究了共聚物在多种常用溶剂中的溶解性,并检测了共聚物薄膜的可见光透过性能和玻璃化转变温度,探讨了共聚物的溶解性、光透过性能以及玻璃化转变温度与柔性单体含量之间的关系。
4)  glass transition temperature
玻璃态转变温度
1.
Based on the understanding of the relation between glass transition temperature and stickiness,the reason of sticking of substances containing different kinds of sugars on the drier chamber wall during their spray drying was analysed and six(methods) were suggested to solve this problem,including modification of the substances and improvement of design of the drying process.
从玻璃态转变温度着手,分析了在喷雾干燥中含有不同品种糖类物料粘壁的原因,提出了改性或在设计干燥流程时的6种应对方法。
2.
The glass transition temperature (Tg) of dough was not related to RS type.
结果表明:添加不同种类的抗性淀粉玻璃态转变温度(Tg)基本没有发生变化;而随着添加抗性淀粉量的增加,Tg有轻微的上升。
5)  near the glass transition temperature
近玻璃转变温度
6)  high glass transition temperature
高玻璃化转变温度
补充资料:双向转变
分子式:
CAS号:

性质:又称双向转变。在一定温度范围内随温度升高低温晶型向高温晶型转化,而当温度下降至一定温度高温晶型回到原来的低温晶型称为可逆转变。如α石英和β石英在573℃的相互转变。

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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