应用粘结剂喷射技术增材制造可移动部分钛材料假体的研究报告

Cecilia Hagman, Per Svanborg
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摘要

目的:测量钴铬选择性激光熔化可摘局部义齿框架与钛粘结剂喷射可摘局部义齿框架的表面粗糙度并比较其配合度。材料和方法:采用3Shape软件设计可移动部分假体框架,然后采用选择性激光熔化钴铬材料和粘结剂喷射技术制备钛材料。测定骨架重量,用白光干涉法测定骨架表面参数Sa、Sds和Sdr。通过目测和冲压试验对框架的配合度进行了分析。结果:钴铬骨架和钛骨架在印后状态下的重量分别为15.66 g和7.43 g。经过精加工和抛光后,钴铬框架的外表面光泽度高,表面光滑,Sa和Sdr参数值较低。目视检查发现钛框架有间隙,压紧测试发现相同材料的移动大于0.5 mm。结论:Ti骨架具有较高的表面粗糙度,抛光后光洁度较低。此外,Ti框架的拟合性在临床上也不能被接受。钛的增材制造粘结剂喷射技术需要改进或调整设置才能用于临床可摘局部义齿。采用选择性激光熔化法制备的钴铬骨架具有良好的临床配合度和表面粗糙度。
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Additive Manufacturing of a Removable Partial Prosthesis in Titanium Using Binder Jetting Technology: A Brief Research Report
Objective: The purpose of this study was to measure the surface roughness and compare the fit of a cobalt-chromium selective laser-melted removable partial denture framework and a titanium binder jetting removable partial denture framework. Materials and methods: A design for a removable partial prosthesis framework was made using 3Shape software, and thereafter, one framework was additively manufactured in cobalt-chromium with selective laser melting and one in titanium using binder jetting technology. The weight of the frameworks was measured, and the surface parameters Sa, Sds, and Sdr were measured by white light interferometry. The fit of the frameworks was analyzed using visual inspection and the pressing test. Results: The weight of the frameworks in their post-printed state was 15.66 g and 7.43 g for cobalt-chromium and titanium, respectively. After finishing and polishing, the cobalt-chromium framework’s outer surface showed a high shine and smooth surface, with lower values in the Sa and Sdr parameters. The visual inspection showed gaps in the titanium framework, and the pressing test detected movement greater than 0.5 mm for the same material. Conclusion: The Ti framework showed higher surface roughness and was left with a lackluster finish after polishing. Also, the fit of the Ti framework was not clinically acceptable. The additive manufacturing binder jetting technology for titanium needs improvement or an adjustment of the settings to be used for clinically removable partial dentures. The cobalt-chromium framework manufactured by selective laser melting showed an acceptable clinical fit and surface roughness.
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