Department of Removable Prosthodontics, Tsurumi University School of Dental Medicine.
Dent Mater J. 2021 Mar 31;40(2):265-271. doi: 10.4012/dmj.2020-206. Epub 2020 Dec 24.
The purpose of this literature review was to verify the laboratory efficiency of additive manufacturing (AM) systems for removable partial denture (RPD) frameworks. All available relevant articles in English published from 1990 to 2020 were found by searching online databases and by hand research. A total of 17 articles dealt with the surface roughness, fitness accuracy, and retentive forces of AM frameworks. The surface roughness of AM was inferior to that of casting and milling. Whether conventional cast or AM RPD frameworks had superior fitness accuracy could not be clarified. As compared with casting and AM, milling enabled the fabrication of RPD clasps with comparable or better fitness accuracy. Over time, AM clasps had retentive force values of superior consistency as compared with those of conventional cast clasps. Clasps fabricated by repeated laser sintering and high-speed milling could obtain smoother surfaces and more suitable retention than those of AM clasps.
本次文献回顾的目的是验证可摘局部义齿(RPD)支架增材制造(AM)系统的实验室效率。通过在线数据库检索和手工检索,查找了 1990 年至 2020 年期间所有可用的英文相关文章。共有 17 篇文章涉及 AM 支架的表面粗糙度、适配精度和固位力。AM 的表面粗糙度不如铸造和铣削。尚无法明确常规铸造或 AM RPD 支架具有更高的适配精度。与铸造和 AM 相比,铣削可制造具有可比或更好适配精度的 RPD 卡环。随着时间的推移,AM 卡环的固位力值比常规铸造卡环更稳定。经过多次激光烧结和高速铣削制造的卡环,其表面更光滑,固位力更合适。