Taylor R L, Liauw C M, Maryan C
The Manchester Metropolitan University, Department of Chemistry and Materials, John Dalton Building, Chester Street, Manchester, M1 5GD, UK.
J Mater Sci Mater Med. 2003 Jun;14(6):497-502. doi: 10.1023/a:1023451812658.
Variation of the crosslinker/resin ratio of a room temperature condensation cure maxillofacial silicone elastomer has caused considerable changes in the mechanical properties and deterioration by Candida albicans. Increasing the crosslinker/resin ratio caused a decrease in the tensile strength and stiffness of the elastomer. However, tear strength appeared to show an optimum value at the recommended crosslinker/resin ratio. These effects were due to the low molar mass silicone polymer that acts as a carrier for the actual crosslinking additive. The general decrease in mechanical properties was accompanied by an increase in the hexane extractables content and an increase in the Si-H content of the elastomer. The unbound polymer (extractable material) content of the elastomer was found to influence the colonization of the material by C. albicans. An increase in the unbound polymer content corresponded to an increasing number of hyphae and blastospores observed penetrating into the elastomer. The data obtained in this study have significant implications concerning the degree of control of elastomer formulation and the deterioration of maxillofacial appliances.
室温缩合固化颌面硅橡胶弹性体的交联剂/树脂比例变化,已导致其力学性能发生显著变化,并受到白色念珠菌的侵蚀。增加交联剂/树脂比例会导致弹性体的拉伸强度和刚度降低。然而,撕裂强度在推荐的交联剂/树脂比例下似乎呈现出最佳值。这些影响是由于低摩尔质量的硅氧烷聚合物充当实际交联添加剂的载体。力学性能的普遍下降伴随着弹性体中己烷可提取物含量的增加以及硅氢键(Si-H)含量的增加。发现弹性体中未结合的聚合物(可提取物)含量会影响白色念珠菌在材料上的定植。未结合聚合物含量的增加对应于观察到的侵入弹性体的菌丝和芽生孢子数量的增加。本研究获得的数据对于弹性体制剂的控制程度以及颌面矫治器的劣化具有重要意义。