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树脂复合材料的磨损率。

Wear rates of resin composites.

机构信息

Department of General Dentistry, Creighton University School of Dentistry, Omaha, NE, USA.

出版信息

Oper Dent. 2013 Mar-Apr;38(2):226-33. doi: 10.2341/12-112-L. Epub 2012 Aug 3.

Abstract

SUMMARY A laboratory study was conducted to examine the wear of resin composite materials using a generalized wear simulation model. Ten specimens each of five resin composites (Esthet•X [EX], Filtek Supreme Plus [SP], Filtek Z250 [Z2], Tetric EvoCeram [EC], and Z100 Restorative [Z1]) were subjected to wear challenges of 100,000, 400,000, 800,000, and 1,200,000 cycles. The materials were placed in cylinder-shaped stainless-steel fixtures, and wear was generated using a flat stainless-steel antagonist in a slurry of polymethylmethacrylate beads. Wear (mean facet depth [μm] and volume loss [mm(3)]) was determined using a noncontact profilometer (Proscan 2000) with Proscan and ProForm software. Statistical analysis of the laboratory data using analysis of variance and Tukey's post hoc test showed a significant difference (p<0.05) for mean wear facet depth and volume loss for both the number of cycles and resin composite material. Linear regression analysis was used to develop predictive wear rates and volume loss rates. Linear wear was demonstrated with correlation coefficients (R(2)) ranging from 0.914 to 0.995. Mean wear values (mean facet depth [μm]) and standard deviations (SD) for 1200K cycles were as follows: Z1 13.9 (2.0), Z2 26.7 (2.7), SP 30.1 (4.1), EC 31.8 (2.3), and EX 67.5 (8.2). Volume loss (mm(3)) and SDs for 1200K cycles were as follows: Z1 0.248 (0.036), Z2 0.477 (0.044), SP 0.541 (0.072), EC 0.584 (0.037), and EX 1.162 (0.139). The wear rate (μm) and volume loss rate (mm(3)) per 100,000 cycles for the five resin composites were as follows: wear rate Z1 0.58, EC 1.27, Z2 1.49, SP 1.62, and EX 4.35, and volume loss rate Z1 0.009, EC 0.024, Z2 0.028, SP 0.029, and EX 0.075. The generalized wear model appears to be an excellent method for measuring relative wear of resin composite materials.

摘要

总结 一项实验室研究使用广义磨损模拟模型来检查树脂复合材料的磨损。每种材料各有 10 个样本,共 5 种树脂复合材料(Esthet•X [EX]、Filtek Supreme Plus [SP]、Filtek Z250 [Z2]、Tetric EvoCeram [EC]和 Z100 修复体 [Z1]),每个样本经历 100000、400000、800000 和 1200000 个循环的磨损挑战。将材料置于圆柱形不锈钢夹具中,使用不锈钢平面拮抗剂在聚甲基丙烯酸甲酯珠粒的浆料中产生磨损。使用非接触式轮廓仪(Proscan 2000)和 Proscan 及 ProForm 软件,通过测量面深(μm)和体积损失(mm(3))来确定磨损情况。使用方差分析和 Tukey 事后检验对实验室数据进行统计分析,结果显示循环次数和树脂复合材料的面深均值和体积损失均值均有显著差异(p<0.05)。线性回归分析用于建立预测磨损率和体积损失率。线性磨损与相关系数(R(2))的范围为 0.914 至 0.995。1200K 循环的平均磨损值(面深均值,μm)和标准差(SD)如下:Z1 13.9(2.0),Z2 26.7(2.7),SP 30.1(4.1),EC 31.8(2.3),EX 67.5(8.2)。1200K 循环的体积损失(mm(3))和标准差(SD)如下:Z1 0.248(0.036),Z2 0.477(0.044),SP 0.541(0.072),EC 0.584(0.037),EX 1.162(0.139)。5 种树脂复合材料的每 100000 次循环的磨损率(μm)和体积损失率(mm(3))如下:磨损率 Z1 0.58,EC 1.27,Z2 1.49,SP 1.62,EX 4.35,体积损失率 Z1 0.009,EC 0.024,Z2 0.028,SP 0.029,EX 0.075。广义磨损模型似乎是测量树脂复合材料相对磨损的极好方法。

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