金属-陶瓷修复体力学性能研究。(第一部分)通过拉出试验估算粘结强度[作者简介]。

K Asaoka, N Kuwayama
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引用次数: 0

摘要

金属-陶瓷复合材料作为瓷与金属的融合修复体,已被广泛应用于生物材料。但主要的反对意见,使用这些材料作为修复材料,是其缺乏强度,特别是拉伸和剪切强度。并对具有较强粘结强度的材料进行了研究。另一方面,金属-陶瓷界面的结合强度通常是通过拉拔试验来测量的。同时指出了拉拔试验存在的问题。因此,采用轴对称有限元法对金属-陶瓷复合材料的拉拔变形进行了模拟。计算了沿界面方向的剪应力分布和陶瓷内部的主应力分布。得到了以下结果:(1)陶瓷和金属的剪切应力和最大主应力沿界面迅速减小。(2)高杨氏模量合金的应力集中系数小于低杨氏模量合金的应力集中系数。因此,前者在退出测试中更有说服力。(3)剪切应力集中不影响金属-陶瓷界面长度。当试样的界面长度大于临界长度时,在相同的拉拔力下,陶瓷将发生初始裂纹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Studies on the mechanical properties of a metal-ceramic restoration. (Part I) Estimation of the bond strength by pull-out test (author's transl)].

Metal-ceramic composite materials as a porcelain fused to metal restoration, have been used for biomaterials. But the chief objection, to use of these materials as restorative materials, is its lack of strength, particularly tensile and shear strength. And the materials to have strong bond strength have been studied. On the other hand, the bond strength along metal-ceramic interface have usually measured by a pull out test. At the same time, the objection of the pull out test are pointed out. So, the deformation of metal-ceramic composite materials by the pull out test were simulated to use the axi-symmetric finite element method. And shear stress distribution along the interface and the principal stress distribution in ceramic were calculated. The following results were obtained. (1) Shear stress along the interface and maximum principal stresses in ceramic and in metal decrease rapidly along the interface. (2) The stress concentration factor as the case of the alloy with high Young's modulus is smaller than that of the alloy with low Young's modulus. So, the former would be stronger about the pull out test. (3) Metal-ceramic interface length is not affected for shear stress concentration. If the specimen has more than the critical interface length, the initial crack in ceramic would be occurred at the same pull out force.

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