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首页> 外文期刊>International Journal of Optoelectronic Engineering >The Correlation between Reduced Glass Transition Temperature and Glass Forming Ability of Undercooled Polymeric Glasses
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The Correlation between Reduced Glass Transition Temperature and Glass Forming Ability of Undercooled Polymeric Glasses

机译:过冷聚合物玻璃降低的玻璃化转变温度与玻璃形成能力的相关性

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摘要

The thermodynamic behaviour of glass forming undercooled melt have been studied by analysing the temperature dependence of the Gibbs free energy difference (ΔG) for six polymeric glass forming materials[O-terphenyl, Tri-α-naphthyl benzene, Glycerol, Ethanol, 2-methylpentane and Phenyl salicylate (salol)] between the undercooled melt and the corresponding equilibrium solid phases. The expression obtained by expanding free energies of the undercooled liquid and solid phases of the materials in the form of Taylor’s series expansion. The procedure for the estimation of the ideal glass transition temperature has been reviewed together its importance in the glass forming ability of materials. The glass forming ability of undercooled materials is also explained in terms of ratio of reduced glass transition temperature and ideal glass transition temperature. It has also reported that Glycerol has the largest melting interval with the poorest glass forming ability among these six polymers. It has also been found that the best polymeric glass forming materials are at near eutectic composition. There is a strong correlation between glass forming ability of these polymeric materials.
机译:通过分析六种聚合物玻璃成型材料[O-三苯,三α-萘苯,甘油,乙醇,2-甲基戊烷]的吉布斯自由能差(ΔG)的温度依赖性,研究了玻璃成型过冷熔体的热力学行为。和过水的熔融物和相应的平衡固相之间的水杨基苯酚(水杨酸)。通过以泰勒级数展开的形式扩展材料的过冷液相和固相的自由能而获得的表达式。评估了理想玻璃化转变温度的估算方法,并综合了其在材料玻璃成形能力中的重要性。还通过降低的玻璃化转变温度与理想的玻璃化转变温度的比率来说明过冷材料的玻璃形成能力。还已经报道甘油在这六种聚合物中具有最大的熔融间隔和最差的玻璃形成能力。还已经发现,最好的聚合物玻璃形成材料处于近共晶组成。这些聚合材料的玻璃形成能力之间有很强的相关性。

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