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压头载荷对一种树脂复合材料维氏显微硬度和压痕深度的影响。

Effect of Indenter Load on Vickers Microhardness and Indentation Depth of One Resin Composite.

作者信息

Price Richard B, Sullivan Braden

机构信息

Department Dental Clinical Sciences, Dalhousie University, 5981 University Avenue, Halifax, NS B3H 4R2, Canada.

出版信息

Materials (Basel). 2024 Dec 17;17(24):6156. doi: 10.3390/ma17246156.

Abstract

The load and size of the indentation may affect the hardness value. This study investigated the effect of the indentation size on the microhardness of one resin-based composite (RBC). Metal molds 4 mm deep and 12 mm in diameter were filled with Tetric EvoCeram Bulk Fill (Ivoclar) and light-cured for 10 s using a broad-spectrum LED curing light. The Vickers microhardness and the degree of conversion (DC) at the top and bottom surfaces were measured 24 h later before and after polishing the RBC. The microhardness measurements were made using 50, 100, 300 and 1000-gf loads with the same 8 s dwell time. The DC was measured in the same region using mid FT-IR spectroscopy. Repeated measures analysis of variance tests were used to determine if the surface (top vs. bottom) or the indenter loads had a significant effect on the VH, or if polishing affected the VH and the DC (alpha = 0.05). It was found that the indenter load did not affect the Vickers hardness of the unpolished top surface ( = 0.759), the polished top surface ( = 0.374), or the polished bottom surface ( = 0.083) of the Tetric EvoCeram Bulk Fill. Increasing the indenter load did increase the VH of the unpolished surface at the bottom ( < 0.0001). Polishing increased the DC by 13.5% at the top and by 46.7% at the bottom surface.

摘要

压痕的载荷和尺寸可能会影响硬度值。本研究调查了压痕尺寸对一种树脂基复合材料(RBC)显微硬度的影响。将4毫米深、12毫米直径的金属模具填充Tetric EvoCeram Bulk Fill(义获嘉),并使用广谱LED固化灯光固化10秒。24小时后,在对RBC进行抛光前后,测量其顶面和底面的维氏显微硬度以及转化率(DC)。显微硬度测量使用50、100、300和1000 gf的载荷,保压时间均为8秒。在同一区域使用中红外光谱测量DC。采用重复测量方差分析来确定表面(顶部与底部)或压头载荷是否对维氏硬度有显著影响,或者抛光是否会影响维氏硬度和DC(α = 0.05)。结果发现,压头载荷对Tetric EvoCeram Bulk Fill未抛光的顶面(P = 0.759)、抛光的顶面(P = 0.374)或抛光的底面(P = 0.083)的维氏硬度没有影响。增加压头载荷确实会增加底部未抛光表面的维氏硬度(P < 0.0001)。抛光使顶面的DC增加了13.5%,使底面的DC增加了46.7%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c667/11678071/492d820d3ed6/materials-17-06156-g001.jpg

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