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微观结构对云母微晶玻璃接触损伤和强度退化的作用

Role of microstructure on contact damage and strength degradation of micaceous glass-ceramics.

作者信息

Peterson I M, Wuttiphan S, Lawn B R, Chyung K

机构信息

Materials Science and Engineering Laboratory, National Institue of Standards and Technology, Gaithersburg, Maryland, USA.

出版信息

Dent Mater. 1998 Jan;14(1):80-9. doi: 10.1016/s0109-5641(98)00013-x.

Abstract

OBJECTIVES

This study examines the hypothesis that microstructure plays a critical role in the accumulation of strength-degrading damage in dental ceramics. A series of micaceous glass-ceramics crystallized from a common glass composition, using heat treatments to increase the diameter and aspect ratio of mica platelets, is used as a model ceramic system.

METHODS

Damage modes are investigated by Hertzian contact testing. Four-point bend tests on indented specimens quantify the influence of single-cycle and multi-cycle damage on strength.

RESULTS

Two competing damage modes are observed: fracture, by tensile-induced cone cracking at the macroscopic level; and quasi-plastic deformation, by shear-induced yield at the microscopic level. The quasi-plastic mode becomes more dominant as the microstructures become coarser and more elongate. Bend tests show severe strength losses in the finer grain structures where cone cracking dominates, but relatively small losses in the coarser grain structures where quasi-plasticity dominates. Whereas natural strengths decline with increasing crystallization temperature, the strengths after indentation damage attain a maximum at intermediate crystallization temperatures. Multiple-cycle contact loading reduces strengths even further, and at relatively low indentation loads, indicating susceptibility to fatigue. Finite element modelling is carried out to evaluate the stress components that drive the damage modes.

SIGNIFICANCE

Microstructure is confirmed to be a controlling factor in determining the nature and degree of strength-impairing damage accumulation in dental ceramics. The Hertzian test provides a means of characterizing such damage in the context of clinical function.

摘要

目的

本研究检验微观结构在牙科陶瓷强度退化损伤积累中起关键作用这一假设。使用一系列由普通玻璃成分结晶而成的云母微晶玻璃,通过热处理增加云母片晶的直径和纵横比,将其用作模型陶瓷体系。

方法

通过赫兹接触试验研究损伤模式。对压痕试样进行四点弯曲试验,量化单循环和多循环损伤对强度的影响。

结果

观察到两种相互竞争的损伤模式:宏观层面上由拉伸引起的锥形开裂导致的断裂;微观层面上由剪切引起的屈服导致的准塑性变形。随着微观结构变得更粗大且更细长,准塑性模式变得更加占主导地位。弯曲试验表明,在锥形开裂占主导的细晶粒结构中强度损失严重,而在准塑性占主导的粗晶粒结构中强度损失相对较小。尽管自然强度随着结晶温度的升高而下降,但压痕损伤后的强度在中间结晶温度下达到最大值。多循环接触加载会进一步降低强度,且在相对较低的压痕载荷下就会出现,表明材料易疲劳。进行有限元建模以评估驱动损伤模式的应力分量。

意义

微观结构被证实是决定牙科陶瓷中强度削弱损伤积累的性质和程度的控制因素。赫兹试验提供了一种在临床功能背景下表征此类损伤的方法。

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