Stress analysis of a light-cured composite resin due to polymerization shrinkage

K. Arakawa, Sane Jae Yoon, M. Nishimura
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Abstract

This study examined the shrinkage stress of a light-cured composite resin on cavity wall experimentally and analytically. The shrinkage force was measured using artificial cylindrical cavities fabricated in two stainless steel plates and a load-cell attached to the steel plate. An analytical model was introduced to evaluate the stress distribution in the cavities and to compare the shrinkage force experimentally determined, and following results were obtained: (1) The shrinkage force was dependent on both the cavity depth and irradiation time of the resin. (2) The analytical model can predict all the important features of the shrinkage force. (3) The stress on the cavity wall was dependent on the irradiation time.
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光固化复合树脂聚合收缩应力分析
本文对光固化复合树脂在空腔壁上的收缩应力进行了实验和分析研究。收缩力的测量采用在两块不锈钢板上制造的人造圆柱形空腔和连接在钢板上的测力元件。采用解析模型对空腔内的应力分布进行了分析,并与实验测定的收缩力进行了比较,得到了以下结果:(1)收缩力与空腔深度和树脂辐照时间有关。(2)该分析模型可以预测收缩力的所有重要特征。(3)腔壁上的应力与辐照时间有关。
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