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选择性激光熔化制造可摘局部义齿支架的工艺参数优化

Process parameter optimization for removable partial denture frameworks manufactured by selective laser melting.

作者信息

Hwang Seyeon, An Sangsup, Robles Ubaldo, Rumpf Raymond C

机构信息

Team Manager, ICT Business Division, Dentium Co, Ltd, Suwon, Gyeonggi-do, Republic of Korea.

Director, ICT Business Division, Dentium Co, Ltd, Suwon, Gyeonggi-do, Republic of Korea.

出版信息

J Prosthet Dent. 2023 Jan;129(1):191-198. doi: 10.1016/j.prosdent.2021.04.021. Epub 2021 Jun 10.

Abstract

STATEMENT OF PROBLEM

Selective laser melting (SLM), an additive manufacturing technology, is expected to replace the traditional lost-wax casting process used in producing removable partial denture (RPD) frameworks. However, studies comparing the accuracy of RPD frameworks and the effects of process parameters are lacking.

PURPOSE

The purpose of this in vitro study was to optimize SLM process parameters and use a quantitative analysis method to improve the accuracy of 3D-printed RPD frameworks.

MATERIAL AND METHODS

The orientation and support structure of Kennedy Class II RPDs were designed in various ways by using 2 different software programs, CAMbridge and Magics. The optimum melt-pool parameters, including laser power, scan speed, hatch distance, and layer thickness, were determined empirically before manufacturing 12 RPD frameworks with 4 different process designs by using SLM (n=3). The accuracy of the RPD frameworks was determined by 3D scanning and comparing the 3D scan data with the original standard tessellation language (STL) RPD design with the best-fit algorithm of the Geomagic software program.

RESULTS

Optimum melt-pool parameters were found with the function of density, surface roughness, and productivity (P=180 W, v=1200 mm/s, h=60 μm, t=30 μm). RPD frameworks fabricated by the optimized process parameters (167 ±105 μm) showed significantly better (P<.05) mean ±standard deviation accuracy than the 3 other groups of RPD frameworks manufactured by using the nonoptimized process parameters (180 ±121 μm to 222 ±136 μm). The best accuracy was found with the transverse orientation and interconnected support structure.

CONCLUSIONS

With the optimized design of process parameters, clinically acceptable RPD frameworks were produced. The accuracy of RPD frameworks fabricated by using SLM varied according to the design of the process parameters, indicating that SLM technology can replace the traditional lost-wax casting process.

摘要

问题陈述

选择性激光熔化(SLM)作为一种增材制造技术,有望取代用于制作可摘局部义齿(RPD)支架的传统失蜡铸造工艺。然而,目前缺乏比较RPD支架精度以及工艺参数影响的研究。

目的

本体外研究的目的是优化SLM工艺参数,并使用定量分析方法提高3D打印RPD支架的精度。

材料与方法

通过使用2种不同的软件程序CAMbridge和Magics,以多种方式设计Kennedy II类RPD的方向和支撑结构。在使用SLM制造具有4种不同工艺设计的12个RPD支架(n = 3)之前,根据经验确定最佳熔池参数,包括激光功率、扫描速度、扫描间距和层厚。通过3D扫描并使用Geomagic软件程序的最佳拟合算法将3D扫描数据与原始标准镶嵌语言(STL)RPD设计进行比较,来确定RPD支架的精度。

结果

通过密度、表面粗糙度和生产率的函数确定了最佳熔池参数(P = 180 W,v = 1200 mm/s,h = 60 μm,t = 30 μm)。由优化工艺参数制造的RPD支架(167±105μm)的平均±标准差精度显著优于使用非优化工艺参数制造的其他3组RPD支架(180±121μm至222±136μm)(P<.05)。横向方向和互连支撑结构的精度最佳。

结论

通过优化工艺参数设计,生产出了临床可接受的RPD支架。使用SLM制造的RPD支架的精度根据工艺参数的设计而变化,这表明SLM技术可以取代传统的失蜡铸造工艺。

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