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热应力对纳米填充树脂复合材料模拟局部和整体磨损的影响

Influence of Thermal Stress on Simulated Localized and Generalized Wear of Nanofilled Resin Composites.

作者信息

Tsujimoto A, Barkmeier W W, Takamizawa T, Latta M A, Miyazaki M

出版信息

Oper Dent. 2018 Jul/Aug;43(4):380-390. doi: 10.2341/16-206-L.

Abstract

OBJECTIVE

This study investigated the influence of thermal stress on the simulated localized and generalized wear of nanofilled resin composites.

METHODS

Six nanofilled resin composites were evaluated and then subjected to a wear challenge of 400,000 cycles in a Leinfelder-Suzuki (Alabama) wear simulation device after 24 hours of water storage (24-hour group) and 24 hours of water storage and 10,000 thermal cycles (TC group). Simulated localized wear was generated using a stainless-steel ball bearing, and simulated generalized wear was generated using a flat-ended stainless-steel cylinder. Wear testing was accomplished in a water slurry of polymethyl methacrylate beads. Simulated localized and generalized wear was determined using a noncontact profilometer (Proscan 2100) in conjunction with Proscan and AnSur 3D software.

RESULTS

Wear was significantly different ( p<0.05) among the resin composites for both simulated localized and generalized wear of either the 24-hour group or the TC group. The simulated localized wear of the TC group was significantly greater than that of the 24-hour group; however, the simulated generalized wear of most of the resin composites of the TC group was not significantly different from that of the 24-hour group.

CONCLUSION

The simulated localized and generalized wear of nanofilled resin composites is material dependent. The simulated localized wear of nanofilled resin composites appears to be influenced by thermal stress, whereas this effect is not as apparent in simulated generalized wear testing.

摘要

目的

本研究调查了热应力对纳米填充树脂复合材料模拟局部磨损和全面磨损的影响。

方法

对六种纳米填充树脂复合材料进行评估,然后在储水24小时后(24小时组)以及储水24小时并经过10000次热循环后(热循环组),在莱因费尔德-铃木(阿拉巴马州)磨损模拟装置中对其进行400000次循环的磨损测试。使用不锈钢滚珠轴承产生模拟局部磨损,使用平头不锈钢圆柱体产生模拟全面磨损。磨损测试在聚甲基丙烯酸甲酯珠粒的水浆中进行。使用非接触轮廓仪(Proscan 2100)结合Proscan和AnSur 3D软件测定模拟局部磨损和全面磨损。

结果

对于24小时组或热循环组的模拟局部磨损和全面磨损,树脂复合材料之间的磨损存在显著差异(p<0.05)。热循环组的模拟局部磨损显著大于24小时组;然而,热循环组大多数树脂复合材料的模拟全面磨损与24小时组没有显著差异。

结论

纳米填充树脂复合材料的模拟局部磨损和全面磨损取决于材料。纳米填充树脂复合材料的模拟局部磨损似乎受热应力影响,而在模拟全面磨损测试中这种影响不那么明显。

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