玻璃化转变温度是什么?如何用DSC方法来测定玻璃化转变温度?

2025-03-26 08:13:16
推荐回答(1个)
回答1:

对于非晶聚物,对它施加恒定的力,观察它发生的形变与温度的关系,通常特称为温度形变曲线或热机械曲线。非晶聚物有三种力学状态,它们是玻璃态、高弹态和粘流态。在温度较低时,材料为刚性固体状,与玻璃相似,在外力作用下只会发生非常小的形变,此状态即为玻璃态:当温度继续升高到一定范围后,材料的形变明显地增加,并在随后的一定温度区间形变相对稳定,此状态即为高弹态,温度继续升高形变量又逐渐增大,材料逐渐变成粘性的流体,此时形变不可能恢复,此状态即为粘流态。我们通常把玻璃态与高弹态之间的转变,称为玻璃化转变,它所对应的转变温度即是玻璃化转变温度,或是玻璃化温度。
目前用于玻璃化温度测定的热分析方法主要为差热分析(DTA)和差示扫描量热分析法(DSC)。DSC具体指,当温度逐渐升高,通过高分子聚合物的玻璃化转变温度时,DSC曲线上的基线向吸热方向移动。假设A点是开始偏离基线的点。将转变前后的基线延长,两线之间的垂直距离 为阶差ΔJ,在ΔJ/2 处可以找到C点,从C点作切线与前基线相交于B点,B点所对应的温度值即为玻璃化转变温度Tg。具体情况可参考相关的资料

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