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两步法包埋涂料法制作钛可摘局部义齿支架。

Fabrication of titanium removable dental prosthesis frameworks with a 2-step investment coating method.

机构信息

Department of Restorative Science, Baylor College of Dentistry, Texas A&M Health Science Center, Dallas, Texas 75246,USA.

出版信息

J Prosthet Dent. 2012 Jun;107(6):393-9. doi: 10.1016/S0022-3913(12)60098-5.

Abstract

STATEMENT OF PROBLEM

Although pure titanium is known to have good biocompatibility, a titanium alloy with better strength is needed for fabricating clinically acceptable, partial removable dental prosthesis (RDP) frameworks.

PURPOSE

The mechanical properties of an experimental Ti-5Al-5Cu alloy cast with a 2-step investment technique were examined for RDP framework applications.

MATERIAL AND METHODS

Patterns for tests for various properties and denture frameworks for a preliminary trial casting were invested with a 2-step coating method using 2 types of mold materials: a less reactive spinel compound (Al(2)O(3)·MgO) and a less expensive SiO(2)-based material. The yield and tensile strength (n=5), modulus of elasticity (n=5), elongation (n=5), and hardness (n=8) of the cast Ti-5Al-5Cu alloy were determined. The external appearance and internal porosities of the preliminary trial castings of denture frameworks (n=2) were examined with a conventional dental radiographic unit. Cast Ti-6Al-4V alloy and commercially pure titanium (CP Ti) were used as controls. The data for the mechanical properties were statistically analyzed with 1-way ANOVA (α=.05).

RESULTS

The yield strength of the cast Ti-5Al-5Cu alloy was 851 MPa and the hardness was 356 HV. These properties were comparable to those of the cast Ti-6Al-4V and were higher than those of CP Ti (P<.05). One of the acrylic resin-retention areas of the Ti-5Al-5Cu frameworks was found to have been incompletely cast.

CONCLUSIONS

The cast biocompatible experimental Ti-5Al-5Cu alloy exhibited high strength when cast with a 2-step coating method. With a dedicated study to determine the effect of sprue design on the quality of castings, biocompatible Ti-5Al-5Cu RDP frameworks for a clinical trial can be produced.

摘要

问题陈述

虽然纯钛具有良好的生物相容性,但为了制造临床可接受的局部可摘义齿(RDP)修复体,需要一种强度更高的钛合金。

目的

本研究采用两步浇注技术对实验性 Ti-5Al-5Cu 合金的机械性能进行了评估,以满足 RDP 修复体支架的应用需求。

材料和方法

采用两步包埋法,使用两种类型的铸型材料(反应性较低的尖晶石化合物(Al2O3·MgO)和价格较低的 SiO2 基材料)对各种性能测试用的模型和初步试铸义齿框架进行了包埋。对铸造 Ti-5Al-5Cu 合金的屈服强度和拉伸强度(n=5)、弹性模量(n=5)、伸长率(n=5)和硬度(n=8)进行了测定。使用常规牙科射线照相单元对初步试铸义齿框架(n=2)的外部外观和内部孔隙进行了检查。将铸造 Ti-6Al-4V 合金和商用纯钛(CP Ti)作为对照。使用单向方差分析(α=.05)对机械性能数据进行了统计分析。

结果

铸造 Ti-5Al-5Cu 合金的屈服强度为 851 MPa,硬度为 356 HV。这些性能与铸造 Ti-6Al-4V 相当,高于 CP Ti(P<.05)。Ti-5Al-5Cu 框架的一个丙烯酸树脂保留区域被发现铸造不完全。

结论

采用两步包埋法铸造的生物相容性实验性 Ti-5Al-5Cu 合金具有高强度。通过专门研究确定浇口设计对铸件质量的影响,可以生产用于临床试验的生物相容性 Ti-5Al-5Cu RDP 修复体。

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