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1)  glass transition behavior
玻璃转变行为
1.
The glass transition behaviors of the novel multicomponent Mg-based Mg-Ln-TM bulk metallic glasses are investigated, including the specific thermal capacitance difference between the amorphous solid and the supper-cooled liquid, the significant glass transition phenomenon, the temperature region and viscosity of supper-cooled liquid.
研究了新型多组元Mg基Mg Ln TM大块非晶合金玻璃转变行为 ,包括非晶固体与过冷液体之间的比热容差和明显的玻璃转变现象、过冷液相区的宽度以及过冷液体的黏性行为等。
2)  galss transition behavior
玻璃化转变行为
3)  Glass Transition
玻璃转变
1.
Dynamic relaxation of polystyrene/poly(ethylene oxide)blends above glass transition temperature;
在玻璃转变温度及其以上温区聚苯乙烯/聚氧化乙烯共混物的动力学弛豫行为
2.
Effect of pre-annealing time on glass transition and crystallization behavior of Cu_(50)Zr_(42)Al_8 bulk amorphous alloy;
预退火时间对Cu_(50)Zr_(42)Al_8玻璃转变及晶化行为的影响
3.
Kinetic property of glass transition of bulk Mg-based amorphous alloy;
镁基大块非晶玻璃转变的动力学性质
4)  glassy behavior
玻璃态行为
5)  glass transition
玻璃化转变
1.
Low temperature performance of fluoroubbers is evaluated by glass transition;
用玻璃化转变评价氟橡胶的低温性
2.
Fissure formation in rice kernel based on glass transition theory;
基于玻璃化转变的稻谷爆腰产生机理分析
3.
Glass Transition of Atactic Poly(methylmethacrylate) under High Pressure;
高压下无规聚甲基丙烯酸甲酯的玻璃化转变
6)  Glass transition
玻璃态转变
1.
When monitoring the rice quality after processed under different bran removal degree,we draw a conclusion that the more the degree of bran removal,the less the protein,and we got a better cooking quality when the degree ranges from 9% to 13%,and the best degree was 13% in which we got a low and narrow gelatinization temperature and high glass transition temperature.
结果表明:随碾减率的增加,大米蛋白质减少;碾减率在9%~13%时,蒸煮品质较好,最适碾减率应在13%;在最适碾减率的情况下,糊化温度低,糊化前后温度范围(TC-T0)小,大米玻璃态转变温度Tg高。
2.
Food glass transition properties based on physico chemical principles are reviewed in the article.
本文从物理化学角度初步研究了玻璃态转变的基本理论。
补充资料:玻璃化转变
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性质: 无定型物质的玻璃态和液态之间的转变。对于聚合物来说是非晶聚合物的玻璃态与高弹态之间的转变。玻璃化转变也发生于结晶聚合物的非晶区中。发生玻璃化转变的温度称为玻璃化温度,以Tg表示,是高聚物的特征温度。它是非晶态热塑性塑料使用温度的上限,是橡胶使用温度的下限。玻璃化转变对聚合物性能尤其是力学性能变化很大,非晶聚合物的模量可产生3~4个数量级的变化。

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