Horiuchi A
Shika Rikogaku Zasshi. 1979 Jul;20(51):155-61.
Aging effect on the mechanical properties in fluid resins was pointed out, but little was studied on this point. Relationship between amount of residual monomer in the samples prepared by fluid resin and the mechanical properties, brinell hardness, tensile strength, were studied. Test pieces just as polymerized in the size were used. Weights of specimens kept at three different circumstances, in the air at 20 degrees C, in a water bath at 37 degrees C and in a desiccator at 11 mmHg and 40 degrees C, was checked at the prescribed time to clarify the amount of residual monomer and the mechanical properties were measured at the same time. Amount of weight loss, due to evaporation of MMA, must improve the mechanical properties. The improvement by postpolymerization could be neglected. Rate of the weight loss suggests that residual monomer must mainly be at the surface. Molecular weight of PMMA, 86.4 X 10(4) did not have any effect on the mechanical properties and on the evaporation rate of monomers from polymerized specimens. To improve the mechanical properties of fluid resin must be to decrease residual monomer as much as possible in the fluid resin especially at the surface area.
老化对流体树脂力学性能的影响已被指出,但在这方面的研究很少。研究了由流体树脂制备的样品中残余单体含量与力学性能、布氏硬度、拉伸强度之间的关系。使用了尺寸刚聚合时的试件。在规定时间检查了分别保存在三种不同环境下的试样重量,这三种环境分别是:20℃空气中、37℃水浴中以及11mmHg和40℃的干燥器中,以确定残余单体的含量,并同时测量力学性能。由于甲基丙烯酸甲酯蒸发导致的重量损失量必然会改善力学性能。后聚合作用带来的改善可以忽略不计。重量损失率表明残余单体主要存在于表面。聚甲基丙烯酸甲酯分子量86.4×10⁴对力学性能以及聚合试件中单体的蒸发速率没有任何影响。要改善流体树脂的力学性能,必须尽可能减少流体树脂中尤其是表面积处的残余单体。