[各种光固化复合树脂的热循环表面降解]。

S Hirabayashi, R Nomoto, I Harashima, T Hirasawa
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引用次数: 0

摘要

通过热循环、丙烯酸酯接枝聚合处理的GR无机填料、硅烷偶联剂处理的LF无机填料、PC硅化无机填料和有机复合填料以及含有机复合填料的mfr型SI,研究了4种市购光固化复合树脂的耐久性。对这些材料进行了10,000,30,000和50,000次热循环(4℃-60℃),并通过热循环材料表面的机械性能测量和SEM观察来评估材料在热循环中的劣化。热循环对所有材料的抗压强度和弯曲弹性模量变化不大。弯曲强度、牙刷耐磨性和表面硬度在0 ~ 30000次热循环之间随热循环次数的增加而降低,30000次热循环后变化不大。5万次热循环后的抗弯强度与未热循环试样的比例分别为GR 75%、LF 60%、PC 50%和SI 65%。材料的劣化表现为在填料与基体的界面处产生裂纹。含有机复合填料的SI和PC在热循环过程中产生裂纹的时间相对较早,含硅化无机填料的LF在热循环过程中产生裂纹的时间相对较晚,且LF的裂纹数量少于SI和PC。另一方面,对于GR,即使经过5万次热循环也没有观察到裂纹。由此可以推测,接枝聚合预处理填料对提高复合树脂的耐久性更为有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[The surface degradation of various light-cured composite resins by thermal cycling].

The durability of four commercially available light-cured composite resins was investigated by thermal cycling, GR containing inorganic fillers treated with the graft polymerization of acryl ester, LF inorganic fillers treated with a silane coupling agent, PC silanized inorganic fillers and organic composite fillers, and the MFR-type SI containing the organic composite fillers. These materials were given 10,000, 30,000 and 50,000 thermal cycles (4 degrees C-60 degrees C) and the deterioration of materials by thermal cycling was evaluated by the measurement of the mechanical properties and the SEM observations of the surface of the thermocycled materials. Compressive strength and bending elastic moduli for all materials did not change greatly by thermal cycling. However, bending strength, toothbrush abrasion resistance and surface hardness decreased with increasing number of thermal cycles between 0 and 30,000, and changed little after 30,000 cycles. The percentage of bending strength after 50,000 thermal cycles to that of the non-thermocycled sample was 75% for GR, 60% for LF, 50% for PC and 65% for SI, respectively. Deterioration of materials was observed as cracks on the surface, which generated at the interface of the filler and matrix. The cracks generated relatively earlier during thermal cycling for SI and PC which contained the organic composite filler, later for LF which contained the silanized inorganic fillers, and the number of cracks on LF were fewer than SI and PC. On the other hand, for GR, no cracks were observed even after 50,000 thermal cycles. From these results, it can be presumed that the pre-treatment of filler by the graft polymerization is more effective to improve the durability of composite resin.

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