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Influence of veneer thickness on residual stress profile in veneering ceramic: Measurement by hole-drilling

机译:饰面厚度对饰面陶瓷残余应力分布的影响:钻孔测量

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摘要

Objectives. The veneering process of frameworks induces residual stresses and can initiate cracks when combined with functional stresses. The stress distribution within the veneering ceramic as a function of depth is a key factor influencing failure by chipping. This is a well-known problem with Yttria-tetragonal-zirconia-polycrystal based fixed partial dentures. The objective of this study is to investigate the influence of veneer thickness on the stress profile in zirconia- and metal-based structures. Methods. The hole-drilling method, often used for engineering measurements, was adapted for use with veneering ceramic. The stress profile was measured in bilayered disc samples of 20 mm diameter, with a 1 mm thick zirconia or metal framework. Different veneering ceramic thicknesses were performed: 1 mm, 1.5 mm, 2 mm, 2.5 mm and 3mm. Results. All samples exhibited the same type of stress vs. depth profile, starting with com-pressive at the ceramic surface, decreasing with depth up to 0.5-1.0 mm from the surface, and then becoming compressive again near the framework, except for the 1.5 mm-veneered zirconia samples which exhibited interior tensile stresses. Stresses in the surface of metal samples were not influenced by veneer thickness. Variation of interior stresses at 1.2 mm from the surface in function of veneer thickness was inverted for metal and zirconia samples. Significance. Veneer thickness influences in an opposite way the residual stress profile in metal- and in zirconia-based structures. A three-step approach and the hypothesis of the crystalline transformation are discussed to explain the less favorable residual stress development in zirconia samples.
机译:目标。框架的装饰过程会引起残余应力,并在与功能应力结合时会引发裂纹。饰面陶瓷内的应力分布随深度的变化是影响切屑破坏的关键因素。这是基于氧化钇-四方-氧化锆-多晶体的固定局部义齿的众所周知的问题。这项研究的目的是研究单板厚度对氧化锆和金属基结构应力分布的影响。方法。通常用于工程测量的钻孔方法适用于饰面陶瓷。在直径为20毫米,厚度为1毫米的氧化锆或金属框架的双层圆盘样品中测量应力分布。进行了不同的饰面陶瓷厚度:1 mm,1.5 mm,2 mm,2.5 mm和3mm。结果。所有样品均表现出相同类型的应力与深度的关系曲线,从陶瓷表面的压缩开始,直到距表面的深度达0.5-1.0 mm逐渐减小,然后在框架附近再次压缩,除了1.5 mm内氧化锆样品,表现出内部拉应力。金属样品表面的应力不受单板厚度的影响。对于金属和氧化锆样品,距表面1.2 mm处的内部应力随表面饰板厚度的变化被反转。意义。单板厚度以相反的方式影响金属基和氧化锆基结构中的残余应力分布。讨论了三步法和晶体转变的假设,以解释氧化锆样品中残余应力发展不太理想的情况。

著录项

  • 来源
    《Dental materials》 |2012年第2期|p.160-167|共8页
  • 作者单位

    Department of Fixed Prosthodontics, Institute of Dentistry, University of Liege Hospital (ULg CHU), 45 Quai G. Kurth, Liege 4020, Belgium,Unite de Recherches Biomateriaux Innovants et Interfaces (URB2I-EA4462), Uniuersite Paris Descartes, Sorbonne Paris Cite, Faculte de Chirurgie Dentaire, Paris, France;

    Department of Mechanical Engineering, University of British Columbia, Vancouver, Canada;

    Department of Fixed Prosthodontics, Institute of Dentistry, University of Liege Hospital (ULg CHU), 45 Quai G. Kurth, Liege 4020, Belgium;

    Unite de Recherches Biomateriaux Innovants et Interfaces (URB2I-EA4462), Uniuersite Paris Descartes, Sorbonne Paris Cite, Faculte de Chirurgie Dentaire, Paris, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    residual stress; hole-drilling; zirconia; veneering ceramic; thickness;

    机译:残余应力钻孔氧化锆饰面陶瓷厚度;

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