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

机译:氧化锆骨架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. Framework design is reported to influence chipping in zirconia-based restorations, which is an important cause of failure of such restorations. Residual stress profile in the veneering ceramic after the manufacturing process is an important predictive factor of the mechanical behavior of the material. The objective of this study is to investigate the influence of framework thickness on the stress profile measured in zirconia-based structures. Methods. The stress profile was measured with the hole-drilling method in bilayered disc samples of 20 mm diameter with a 1.5 mm thick veneering ceramic layer. Six different framework thicknesses from 0.5 mm to 3 mm were studied. Two different cooling procedures were also investigated. Results. Compressive stresses were observed in the surface, and tensile stresses in the depth of most of the samples. The slow cooling procedure was found to promote the development of interior tensile stresses, except for the sample with a 3 mm thick framework. With the tempering procedure, samples with a 1.5 mm thick framework exhibited the most favorable stress profile, while thicker and thinner frameworks exhibited respectively in surface or interior tensile stresses. Significance: The measurements performed highlight the importance of framework thickness, which determine the nature of stresses and can explain clinical failures encountered, especially with thin frameworks. The adequate ratio between veneering ceramic and zirconia is hard to define, restricting the range of indications of zirconia-based restorations until a better understanding of such a delicate veneering process is achieved.
机译:目标。据报道,框架设计会影响基于氧化锆的修复体的碎裂,这是此类修复体失败的重要原因。制造工艺后的贴面陶瓷中的残余应力分布是材料机械性能的重要预测因素。这项研究的目的是调查框架厚度对基于氧化锆的结构中测得的应力分布的影响。方法。用钻孔方法在直径为20毫米,厚度为1.5毫米的饰面陶瓷层的双层圆盘样品中测量应力分布。研究了从0.5 mm到3 mm的六种不同的框架厚度。还研究了两种不同的冷却程序。结果。在大多数样品的表面观察到压缩应力,在深度观察到拉伸应力。发现慢冷却程序会促进内部拉伸应力的发展,除了具有3毫米厚框架的样品外。通过回火程序,具有1.5毫米厚框架的样品表现出最有利的应力分布,而较厚和较薄的框架分别表现出表面或内部拉应力。启示:进行的测量突出了框架厚度的重要性,该厚度决定了应力的性质并可以解释所遇到的临床失败,特别是对于薄框架而言。难以定义饰面陶瓷与氧化锆之间的适当比例,从而限制了基于氧化锆的修复体的适应症范围,直到对这种精致的饰面工艺有了更好的理解。

著录项

  • 来源
    《Dental materials》 |2012年第4期|p.378-384|共7页
  • 作者单位

    Department of Fixed Prosthodontics, Institute of Dentistry, University of Liege Hospital (ULg CUV), 45 Quai G. Kurth, Liege 4020, Belgium,Unite de Recherches Biomateriaux Innouants 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 CUV), 45 Quai G. Kurth, Liege 4020, Belgium;

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

  • 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; chipping; veneering ceramic; framework; thickness;

    机译:残余应力钻孔氧化锆碎裂饰面陶瓷框架厚度;

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