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采用三维打印技术开发轻质高强度中空钛镀义齿材料。

Development of lightweight and high-strength hollow titanium-plated denture material using three-dimensional printing.

机构信息

Course of Applied Science, Field of Developmental Science of Oral Biomaterials, The Nippon Dental University Graduate School of Life Dentistry at Niigata, 1-8 Hamaura-cho, Chuo-ku, Niigata City, Niigata, 951-8580, Japan.

Department of Dental Materials Science, The Nippon Dental University School of Life Dentistry at Niigata, 1-8 Hamaura-cho, Chuo-ku, Niigata City, Niigata, 951-8580, Japan.

出版信息

Odontology. 2024 Oct;112(4):1157-1166. doi: 10.1007/s10266-024-00923-3. Epub 2024 Mar 25.

Abstract

Owing to its desirable ability to fabricate complex shapes, three-dimensional printing is preferred over casting for manufacturing dentures. Furthermore, titanium is widely used in dental implants and dentures because of its high corrosion resistance, biocompatibility, strength, and low density. In this study, we aimed to develop a new metal denture material from three-dimensional-printed (3DP) to achieve lighter weight and greater strength than those of PMMA dentures. Hollow (3DP-H) structure and solid (3DP-S) structure titanium plate specimens of 0.5, 1.0, and 3.0 mm in thickness were used. Casted Ti, casted Co-Cr, and PMMA plates were fabricated for comparison. Elastic modulus, density, thermal conductivity, hardness, and proof stress of the specimens were measured and plotted on a radar chart to enable multifaceted evaluation. The results indicated that the density of the 3DP-H plates reduced by 28-36% compared with those of 3DP-S and cast Ti plates. The weight of the metal-denture-equivalent section of the 0.5-mm-thick 3DP-H titanium-plated denture reduced to two-thirds that of the 2.0-mm-thick PMMA denture. The proof stress of the 0.5-mm-thick 3DP-H plate increased to about 3 times that of the 2.0-mm-thick PMMA plate. The total value of the 0.5-mm-thick 3DP-H titanium plates was higher than it of the 1.0-mm-thick PMMA plates. This study suggests that it is possible to produce 3DP-H titanium plate dentures exhibiting not only extremely lightweight compared to conventional PMMA dentures but also sufficient strength.

摘要

由于其能够制造复杂形状的理想能力,三维打印在制造义齿方面优于铸造。此外,钛由于其高耐腐蚀性、生物相容性、强度和低密度而广泛用于牙科植入物和义齿。在这项研究中,我们旨在开发一种新的金属义齿材料,该材料由三维打印(3DP)制成,其重量比 PMMA 义齿更轻,强度更大。使用了 0.5、1.0 和 3.0 毫米厚的空心(3DP-H)结构和实心(3DP-S)结构钛板试样。为了进行比较,还制作了铸造 Ti、铸造 Co-Cr 和 PMMA 板。测量了试样的弹性模量、密度、导热系数、硬度和屈服强度,并绘制在雷达图上,以便进行多方面的评估。结果表明,与 3DP-S 和铸造 Ti 板相比,3DP-H 板的密度降低了 28-36%。0.5 毫米厚 3DP-H 钛板义齿的金属义齿等效截面的重量减少到 2.0 毫米厚 PMMA 义齿的三分之二。0.5 毫米厚 3DP-H 板的屈服强度增加到约 2.0 毫米厚 PMMA 板的 3 倍。0.5 毫米厚 3DP-H 钛板的总价值高于 1.0 毫米厚 PMMA 板。本研究表明,有可能生产出 3DP-H 钛板义齿,与传统 PMMA 义齿相比不仅极轻,而且具有足够的强度。

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