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金属合金与牙科陶瓷弹性性能的测定

Determination of elastic properties of metal alloys and dental porcelains.

作者信息

Suansuwan N, Swain M V

机构信息

Biomaterials Science Research Unit, Faculty of Dentistry, The University of Sydney, Australia.

出版信息

J Oral Rehabil. 2001 Feb;28(2):133-9. doi: 10.1046/j.1365-2842.2001.00642.x.

Abstract

This study aimed to determine Young's modulus, shear modulus and Poisson's ratio of some metal alloys and dental porcelains used in fixed prosthodontics using the technique of impulse excitation of vibration. It also aimed to compare Young's modulus values of these materials with those obtained using the other two methods: the four-point flexural test and the indentation test using the ultra micro-indentation system (UMIS). Five types of metal alloys and four types of dental porcelains were tested. The samples were prepared to a rectangular shape of approximately 8 x 30 x 1.5 mm. Frequency of vibration in a sample was read when a singular elastic strike was made with an impulse tool. The elastic constants were calculated from the frequency of vibration, dimension and mass of each sample. Young's modulus values resulting from the impulse excitation of vibration are not significantly different (P<0.05) from those obtained using the flexural test and the UMIS test in most metal alloys but are different in titanium, titanium alloy and most of the dental porcelains. The technique of impulse excitation of vibration has proven to be an accurate method and is simple to operate. The elastic properties of these alloys and porcelains are essential for determining the other mechanical properties (fracture toughness) and are relevant in clinical application.

摘要

本研究旨在采用振动冲击激发技术测定固定修复中使用的某些金属合金和牙科陶瓷的杨氏模量、剪切模量和泊松比。它还旨在将这些材料的杨氏模量值与使用其他两种方法获得的值进行比较:四点弯曲试验和使用超微压痕系统(UMIS)的压痕试验。测试了五种类型的金属合金和四种类型的牙科陶瓷。将样品制备成约8×30×1.5mm的矩形。当用冲击工具进行单次弹性撞击时,读取样品中的振动频率。根据每个样品的振动频率、尺寸和质量计算弹性常数。在大多数金属合金中,振动冲击激发产生的杨氏模量值与使用弯曲试验和UMIS试验获得的值无显著差异(P<0.05),但在钛、钛合金和大多数牙科陶瓷中有所不同。振动冲击激发技术已被证明是一种准确的方法,且操作简单。这些合金和陶瓷的弹性性能对于确定其他力学性能(断裂韧性)至关重要,并且在临床应用中具有相关性。

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