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首页> 外文期刊>The Journal of Prosthetic Dentistry >The effect of different investment techniques on the surface roughness and irregularities of gold palladium alloy castings.
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The effect of different investment techniques on the surface roughness and irregularities of gold palladium alloy castings.

机译:不同投资技术对金钯合金铸件表面粗糙度和不规则性的影响。

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摘要

STATEMENT OF PROBLEM: Surface roughness and irregularities can affect the fit of a restoration. It is unknown whether different investment techniques have an effect on surface roughness and irregularities of gold palladium alloy castings. PURPOSE: The purpose of this study was to evaluate the surface roughness and irregularities of gold palladium alloy castings obtained using different investment techniques. MATERIAL AND METHODS: Forty disk-shaped wax patterns were prepared and divided into 4 groups. A phosphate-bonded, carbon-free investment was used for the investment procedures. Twenty specimens were invested using a vacuum mixer, while the remainder were invested using a vacuum mixer and investor. The specimens in both broad categories were divided evenly to set in 2 different conditions of pressure. Half were left to set under atmospheric pressure for 1 hour, while the rest were placed in a compression chamber under a pressure of 3 bars for 24 minutes, then allowed to bench set for another 36 minutes. A profilometer was used to evaluate the surface roughness (mum) of the castings. The specimens were also studied under x10 magnification for surface irregularities. Two-way ANOVA was used to examine the relationships among surface roughness, investing, and pressure (alpha=.05). Logistic regression was used to explore the relationships among surface irregularities, investing, and pressure. RESULTS: Two-way ANOVA for surface roughness did not reveal any statistically significant differences. However, there was a trend for the specimens set under atmospheric pressure to present lower values of surface roughness than the specimens set under positive pressure (P=.095). The logistic regression for surface irregularities showed a highly significant impact of pressure. The odds of any surface irregularities for specimens under atmospheric pressure were 9.12 times higher than the odds for specimens under positive pressure (P=.016). CONCLUSIONS: Within the limitations of this study, the results suggest that specimens set under atmospheric pressure are much more likely to present surface irregularities than specimens set under positive pressure. The use of pressure can help produce castings with fewer surface irregularities.
机译:问题陈述:表面粗糙度和不规则度会影响修复体的适合度。尚不清楚不同的投资技术是否会对金钯合金铸件的表面粗糙度和不规则性产生影响。目的:本研究的目的是评估使用不同投资技术获得的金钯合金铸件的表面粗糙度和不规则性。材料与方法:制备了40个盘状蜡模并将其分为4组。磷酸盐键合无碳投资用于投资程序。使用真空混合器投资了20个标本,其余使用真空混合器和投资方进行了投资。将这两个大类的样品均匀地分成两个不同的压力条件。将一半在大气压下放置1小时,将其余的放置在3巴压力下的压缩室中24分钟,然后再放置36分钟。使用轮廓仪来评估铸件的表面粗糙度(μm)。还以x10放大倍率研究了样品的表面不规则性。双向方差分析用于检查表面粗糙度,投资和压力之间的关系(alpha = .05)。使用逻辑回归分析探索表面不规则性,投资和压力之间的关系。结果:表面粗糙度的双向方差分析没有显示任何统计学上的显着差异。但是,在大气压下放置的样品存在比在正压下放置的样品低的表面粗糙度的趋势(P = .095)。表面不规则性的逻辑回归显示压力的显着影响。大气压下样品表面不规则的几率比正压下样品的几率高9.12倍(P = .016)。结论:在本研究的范围内,结果表明,与在正压下放置的标本相比,在大气压下放置的标本更有可能出现表面不规则性。压力的使用可以帮助生产具有较少表面不规则性的铸件。

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