首页> 外文期刊>The International journal of oral & maxillofacial implants >Additive manufacturing technology (direct metal laser sintering) as a novel approach to fabricate functionally graded titanium implants: preliminary investigation of fabrication parameters.
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Additive manufacturing technology (direct metal laser sintering) as a novel approach to fabricate functionally graded titanium implants: preliminary investigation of fabrication parameters.

机译:增材制造技术(直接金属激光烧结)作为制造功能梯度钛植入物的一种新方法:制造参数的初步研究。

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This article describes the preliminary findings of the mechanical properties of functionally graded titanium with controlled distribution of porosity and a reduced Young's modulus on the basis of a computeraided design (CAD) file, using the rapid-prototyping, direct metal laser sintering (DMLS) technique.Sixty specimens of Ti-6Al-4V were created using a DMLS machine (M270) following the standard for tensile testing of metals. One group was fabricated with only 170 W of laser energy to create fully dense specimens (control group). The remaining specimens all featured an outer fully dense "skin" layer and a partially sintered porous inner "core" region. The outer "skin" of each specimen was scanned at 170 W and set at a thickness of 0.35, 1.00, or 1.50 mm for different specimen groups. The inner "core" of each specimen was scanned at a lower laser power (43 or 85 W).The partially sintered core was clearly visible in all specimens, with somewhat greater porosity with the lower laser power. However, the amount of porosity in the core region was not related to the laser power alone; thinner skin layers resulted in higher porosity for the same power values in the core structure. The lowest Young's modulus achieved, 35 GPa, is close to that of bone and was achieved with a laser power of 43 W and a skin thickness of 0.35 mm, producing a core that comprised 74% of the total volume.Additive manufacturing technology may provide an efficient alternative way to fabricate customized dental implants based on a CAD file with a functionally graded structure that may minimize stress shielding and improve the long-term performance of dental implants.
机译:本文基于计算机辅助设计(CAD)文件,使用快速成型,直接金属激光烧结(DMLS)技术,描述了功能梯度钛的机械性能的初步发现,该孔隙率具有受控的孔隙率分布并具有降低的杨氏模量遵循金属拉伸试验的标准,使用DMLS机器(M270)创建了60个Ti-6Al-4V样品。一组仅用170 W的激光能量制成,以制作完全致密的样品(对照组)。其余标本均具有外部完全致密的“皮”层和部分烧结的多孔内部“芯”区域。在170 W下扫描每个样本的外部“皮肤”,并针对不同样本组将其设置为0.35、1.00或1.50 mm的厚度。在较低的激光功率(43或85 W)下扫描每个样品的内部“芯”。在所有样品中清晰可见部分烧结的芯,在较低的激光功率下孔隙率更大。但是,纤芯区域的孔隙率与光功率无关。对于核心结构中相同的功率值,表皮层越薄,孔隙率越高。最低的杨氏模量(35 GPa)接近骨骼,是在43 W的激光功率和0.35 mm的表皮厚度下实现的,其芯的总模量为总体积的74%。一种有效的替代方法,可基于具有功能渐变结构的CAD文件制造定制的牙科植入物,该结构可最大程度地减少应力屏蔽并改善牙科植入物的长期性能。

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