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首页> 外文期刊>The Journal of Indian Prosthodontic Society >Investigation of Marginal Fit and Surface Roughness of Crowns, Due to Different Bench Set and Different Burnout Temperature Using Base Metal Alloy
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Investigation of Marginal Fit and Surface Roughness of Crowns, Due to Different Bench Set and Different Burnout Temperature Using Base Metal Alloy

机译:使用贱金属合金研究由于不同的工作台组和不同的燃耗温度导致的冠的边缘拟合和表面粗糙度

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摘要

The conventional investing technique is used most commonly for casting. Inspite of the popularity of this technique, it is very time consuming. To save time of the patient, dentist and dental laboratory technician, accelerated casting technique can be used. This study uses different bench set and different burnout temperatures and has been carried to investigate their effects on marginal fit and surface roughness. A total of 40 wax patterns were made simulating the artificial crown from the first master die and 20 rectangular wax patterns were made from the second master die. Twenty castings simulating the crown and 10 castings of rectangular plates were obtained by short protocol represented as Group A and C, similarly the remaining castings were obtained by standard protocol and represented as Group B and D. Marginal discrepancy of both Group A and B were determined by using Travelling microscope, whereas Perthometer was used for quantitative evaluation of average surface roughness of both Group C and D. Scanning electron microscope evaluated the surface roughness qualitatively for the specimens of both Groups C and D. The obtained values of Group A and C and Group C and D were subjected to statistical analysis. Qualitative analysis of Group C and D were done. Accelerated/short protocol gives similar results in terms of marginal fit and surface roughness as compared to the conventional/standard protocol and is definitely a time saving procedure.
机译:传统的投资技术最常用于铸造。尽管该技术很流行,但它非常耗时。为了节省患者,牙医和牙科实验室技术人员的时间,可以使用加速铸造技术。这项研究使用了不同的实验台和不同的燃尽温度,并进行了研究以研究它们对边缘拟合和表面粗糙度的影响。总共制作了40个蜡模,以模拟来自第一个母模的人造牙冠,并制作了20个矩形蜡模,由第二个母模制成。通过简短的协议获得了20个模拟冠的铸件,并通过A组和C组的简短协议获得了10个矩形板的铸件,类似地,通过标准协议获得了B组和D组的剩余铸件。确定了A组和B组的边际差异使用旅行显微镜,而用Perthometer定量评估C组和D组的平均表面粗糙度。扫描电子显微镜定性评估C组和D组的样品的表面粗糙度。 C组和D组进行统计分析。对C组和D组进行了定性分析。与常规/标准协议相比,加速/简短协议在边缘拟合和表面粗糙度方面给出相似的结果,并且绝对是节省时间的过程。

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