Suppr超能文献

通过赫兹接触对牙科陶瓷进行力学表征。

Mechanical characterization of dental ceramics by hertzian contacts.

作者信息

Peterson I M, Pajares A, Lawn B R, Thompson V P, Rekow E D

机构信息

Materials Science and Engineering Laboratory, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA.

出版信息

J Dent Res. 1998 Apr;77(4):589-602. doi: 10.1177/00220345980770041201.

Abstract

Hertzian indentation testing is proposed as a protocol for evaluating the role of microstructure in the mechanical response of dental ceramics. A major advantage of Hertzian indentation over more traditional fracture-testing methodologies is that it emulates the loading conditions experienced by dental restorations: Clinical variables (masticatory force and cuspal curvature) identify closely with Hertzian variables (contact load and sphere radius). In this paper, Hertzian responses on four generic dental ceramics systems-micaceous glass-ceramics, glass-infiltrated alumina, feldspathic porcelain, and transformable zirconiaare presented as case studies. Ceramographic sectioning by means of a "bonded-interface" technique provides new information on the contact damage modes. Two distinct modes are observed: "brittle" mode, classic macroscopic fracture outside the contact (ring, or cone cracks), driven by tensile stresses; and "quasi-plastic" mode, a relatively new kind of deformation below the contact (diffuse microdamage), driven by shear stresses. A progressive transition from the first to the second mode with increasing microstructural heterogeneity is observed. The degree of quasi-plasticity is readily apparent as deviations from ideal linear elastic responses on indentation stress-strain curves. Plots of threshold loads for the initiation of both fracture and deformation modes as a function of indenter radius constitute "damage maps" for the evaluation of prospective restoration damage under typical masticatory conditions. The degree of damage in both modes evolves progressively with load above the thresholds. Strength tests on indented specimens quantify sustainable stress levels on restoration materials after damage. The most brittle responses are observed in the fine glass-ceramics and porcelain; conversely, the most quasi-plastic responses are observed in the coarse glass-ceramics and zirconia; the medium glass-ceramics and alumina exhibit intermediate responses. Implications of the results in relation to future materials characterization, selection, and design are considered in the clinical context.

摘要

提出赫兹压痕测试作为一种评估微观结构在牙科陶瓷力学响应中作用的方案。与更传统的断裂测试方法相比,赫兹压痕的一个主要优点是它模拟了牙科修复体所经历的加载条件:临床变量(咀嚼力和牙尖曲率)与赫兹变量(接触载荷和球体半径)密切相关。在本文中,作为案例研究,展示了对四种通用牙科陶瓷系统——云母微晶玻璃、玻璃渗透氧化铝、长石质瓷和可转化氧化锆的赫兹响应。通过“粘结界面”技术进行的陶瓷切片提供了有关接触损伤模式的新信息。观察到两种不同的模式:“脆性”模式,即由拉应力驱动的接触外部经典宏观断裂(环形或锥形裂纹);以及“准塑性”模式,即由剪应力驱动的接触下方相对较新的一种变形(弥散微损伤)。随着微观结构不均匀性的增加,观察到从第一种模式到第二种模式的逐渐转变。准塑性程度在压痕应力 - 应变曲线上表现为与理想线性弹性响应的偏差,很容易看出。将断裂和变形模式起始的阈值载荷作为压头半径的函数绘制的图构成了“损伤图”,用于评估典型咀嚼条件下预期修复体的损伤情况。两种模式下的损伤程度随着载荷超过阈值而逐渐演变。对压痕试样进行的强度测试量化了损伤后修复材料的可持续应力水平。在细晶微晶玻璃和瓷中观察到最脆的响应;相反,在粗晶微晶玻璃和氧化锆中观察到最准塑性的响应;中晶微晶玻璃和氧化铝表现出中间响应。在临床背景下考虑了结果对未来材料表征、选择和设计的影响。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验