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Hardness, Behavior and Metal Surface Evaluation of Recasting Non-Precious Dental Alloys

机译:铸造非贵重牙科合金的硬度,行为和金属表面评估

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Recasting of economic alloys can change several properties. The number of recasting was found to have negligible effect on surface texture and on the amount of corrosion products released. The methods and equipments utilized in the casting of an alloy are important on the quality of casting. Carbon incorporated in a noble or economic alloy during casting is known to affect the mechanical values of the metal. In the present study we aimed to investigate the change in structure and metal hardness due to recasting. Materials and method: The effect of recasting, up to four times of a non precious "Finalloy" commercial dental alloy on their Rocwell C hardness behavior and their microstructures was inspected. Using "Kerr casting waxes" patterns were prepared similar to the samples from "Finalloy". The investments were pre-heated to phase at temperatures between 900°C and 1000°C. The alloy was melted by an acetylene-oxygen flame in a silicate crucible and four groups were compared: New alloy and alloys casted two, three, and four times (n = 7). After casting, Brinell harnesses were recorded. Values of Rocwell C strength, for each specimen group were analyzed by one-way analysis of variance, followed by the Student-Newman-Keuls multiple range test. A metal microscope was used to evaluate the surface morphology of the samples before hardness tests. 1st Casting :30.65 ± 0.3 kgf, 2nd Casting: 31.33 ± 0.4 kgf, 3rd Casting:34.80 ± 0.3 kgf, 4th Casting: 35.5 ± 28 kgf represents the Rocwell hardness of the castings. The results showed that hardness, increased with repeated castings. The experimental data indicates that increasing the number of successive recasting of "Finalloy" enhances the Rocwell C hardness, thus, after remelting and recasting, the biological properties decreases. Microscope study. Increase of the carbon content on the gren bounders of a cobalt-chromium alloy causes a considerable change in its microstructure. The hardness and yield point for 0.05 %, 0.1 % and 0.2 % tensile strength and elongation were determined for these test-pieces. The results showed that hardness, yield points and tensile strength increased with increased carbon content, whereas the elongation lessened. We determined that carbon concentrated at gren bounders. The clinical importance of the study is that recasting affected the properties of the metal, for best biological results with dental alloys always new metals must be used.
机译:经济合金的重铸可以改变几种性质。发现重铸次数对表面纹理和释放的腐蚀产品的效果可忽略不计。合金铸造中使用的方法和设备对铸造质量很重要。已知在铸造期间掺入贵族或经济合金的碳以影响金属的机械值。在本研究中,我们旨在调查由于重铸而导致的结构和金属硬度的变化。材料和方法:重铸的效果,高达四次非珍贵的“FINOLOY”商业牙科合金对其罗克威尔C硬度行为及其微观结构进行了检查。使用“克尔铸造蜡”图案类似于来自“FINALLOY”的样品。在900℃和1000℃之间的温度下预先加热投资。该合金通过硅酸盐坩埚中的乙炔 - 氧气熔化,比较四组:新的合金和合金铸造2,三,四次(n = 7)。铸造后,记录了布里宁线束。通过单向分析的单向分析来分析rocwell C强度的价值,对每个标本组进行分析,其次是学生 - 纽曼 - 龙尔多范围测试。使用金属显微镜在硬度测试之前评估样品的表面形态。第一铸件:30.65±0.3 kgf,第二铸造:31.33±0.4 kgf,3rd铸件:34.80±0.3 kgf,第4次铸造:35.5±28 kgf表示铸件的rocwell硬度。结果表明硬度,重复铸件增加。实验数据表明,增加“FINALLOY”的连续重铸次数增强了罗频群C硬度,因此,在重熔和重铸后,生物学性质降低。显微镜研究。钴 - 铬合金的GREN边界上的碳含量的增加导致其微观结构的相当大的变化。测定这些试剂件的硬度和屈服点0.05%,0.1%和0.2%的拉伸强度和伸长率。结果表明,随着碳含量增加,硬度,屈服点和拉伸强度增加,而伸长率降低。我们确定碳浓缩在Gren边界。该研究的临床重要性是,重铸的影响影响了金属的性质,尽量用牙科合金的最佳生物学效果总是必须使用新的金属。

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