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新型复合修复材料的磨损行为

Wear behavior of new composite restoratives.

作者信息

Yap Adrian U J, Tan C H, Chung S M

机构信息

Department of Restorative Dentistry, Faculty of Dentistry, National University of Singapore, Republic of Singapore.

出版信息

Oper Dent. 2004 May-Jun;29(3):269-74.

Abstract

This study investigated the wear resistance of recently introduced nanofill (Filtek Supreme [FS], 3M-ESPE) and ormocer (Admira [AM], Voco) composites and compared their wear characteristics to microfill (Filtek A110 [AO], 3M-ESPE]), minifill (Esthet X [EX], Dentsply; Filtek Z250 [ZT], 3M-ESPE) and polyacid-modified (Dyract AP [DY], Dentsply) composites. Six specimens were made for each material. The specimens were conditioned for one week in distilled water at 37 degrees C and subjected to wear testing at 20 MPa contact stress against SS304 counter-bodies using reciprocal compression-sliding wear instrumentation. Distilled water was used as lubricant. Wear depth (microm) was measured using profilometry every 5,000 cycles up to 20,000 cycles. The results were analyzed using ANOVA/Scheffe's test (p<0.05). Wear of the materials was cycle and fatigue dependent. Although no significance in wear was observed between materials after 5,000 cycles of wear testing, significant differences were observed at 10,000 cycles and greater. After 20,000 cycles of wear testing, ranking was as follows: ZT > DY >AM > AO > FS > EX. Wear ranged from 39.90 microm for EX to 113.32 microm for ZT. The wear resistance of ZT and DY was significantly lower than AO, FS and EX In addition, ZT experienced significantly more wear than AM. Under the conditions of this in-vitro study, the wear resistance of nanofill and ormocer composites was comparable or superior to polyacid-modified, microfill and minifill composites.

摘要

本研究调查了最近推出的纳米填料(Filtek Supreme [FS],3M-ESPE)和有机陶瓷(Admira [AM],Voco)复合材料的耐磨性,并将它们的磨损特性与微填料(Filtek A110 [AO],3M-ESPE)、细填料(Esthet X [EX],登士柏;Filtek Z250 [ZT],3M-ESPE)和聚酸改性(Dyract AP [DY],登士柏)复合材料进行比较。每种材料制作六个试样。试样在37℃蒸馏水中放置一周进行预处理,然后使用往复压缩滑动磨损仪器在20MPa接触应力下与SS304对磨体进行磨损测试。使用蒸馏水作为润滑剂。使用轮廓仪每5000次循环测量一次磨损深度(微米),直至20000次循环。结果采用方差分析/谢费检验进行分析(p<0.05)。材料的磨损与循环和疲劳有关。虽然在5000次磨损测试循环后,材料之间未观察到显著的磨损差异,但在10000次及以上循环时观察到显著差异。经过20000次磨损测试循环后,排名如下:ZT > DY > AM > AO > FS > EX。磨损范围从EX的39.90微米到ZT的113.32微米。ZT和DY的耐磨性显著低于AO、FS和EX。此外,ZT的磨损明显多于AM。在本体外研究条件下,纳米填料和有机陶瓷复合材料的耐磨性与聚酸改性、微填料和细填料复合材料相当或更优。

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