桥台
万能试验机
植入
抗压强度
压缩(物理)
流离失所(心理学)
活塞(光学)
材料科学
十字头
口腔正畸科
结构工程
复合材料
工程类
医学
抗弯强度
外科
极限抗拉强度
物理
光学
心理学
波前
心理治疗师
作者
Pradyumna Kumar Sahoo,Smita R. Priyadarshini,Abhaya Chandra Das,Saurav Panda,Purobi Choudhury,Pragyan Paramita Swain
标识
DOI:10.4103/jpbs.jpbs_193_23
摘要
A BSTRACT Objectives: The study was done to assess the implant–abutment interface static compressive. strength of three design types and implant–abutment connection failure style. Materials and Methods: The implants at 306 with respect to the y-axis were aligned using a stainless steel holding device. Twenty specimens from each system totaled 60 total. A unidirectional vertical piston in a computer-controlled universal testing machine (MTS 810) generated static compression loading until failure. Specimens were macroscopically examined for fracture of the screw and implant, abutment looseness, and longitudinal displacement. Analysis of variance was used to analyze the data (ANOVA). Result: The screw-vent system had a mean compressive strength of 335.6 22.7 psi for the Unipost system, 384.3 37.1 psi for the screw-vent system, and 245.3 25.4 psi for the ITI-1 piece abutment connection. Conclusion: The connection between the Unipost implant and abutment showed a statistically significant variation.
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