[A mechanical study on new ceramic crowns and bridges for clinical use].

T Hino
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Abstract

By the recent development of new ceramics, i.e. castable glass ceramics and high strength porcelain, the clinical use of all-ceramic bridges as well as all-ceramic crowns have been expected. The purpose of this study was to evaluate the mechanical properties of new ceramics and to analyze the stress distributions in new ceramic crowns and bridges. The Young's modulus, flexural strength and diametral tensile strength of four types of new ceramics (DICOR, BIORAM-C, OPTEC, and HI-CERAM) were measured, and the fracture loads of new ceramic anterior crowns and bridges on the metal abutments were evaluated. Three dimensional finite element analyses of new ceramic anterior crowns and bridges were also carried out to investigate the effects of various mechanical factors; locations of loading point, types of ceramics, thickness of crowns, luting materials, core materials, and designs of fixed joints. In each experiment, the loading forces were applied at 45 degree to the tooth axis. The results were summarized as follow; 1) DICOR showed the highest flexural strength. HI-CERAM hard core porcelain showed the highest Young's modulus and tensile strength. 2) HI-CERAM crowns showed the highest fracture load among the new ceramic crowns. DICOR bridges were significantly stronger than BIORAM-C bridges. The stress analyses of the experimental cases indicated that the fractures of crowns and bridges occurred by the concentration of tensile stresses. 3) By the load at the incisal edge, the highest tensile stresses were caused in the crown. In the crown with 0.5 mm thickness at axial wall, high tensile stresses were observed at more wide regions of palatal side than in the crown with 0.75 mm or 1 mm thickness. However, in the case with an enamel layer remained on the surface of the abutment tooth, the stresses were reduced in spite of the crown thickness. When the abutment tooth was restored with a metal post and core, the stresses of the crown decreased in comparison with the natural abutment tooth. 4) In case of bridges, high tensile stresses concentrated at the fixed joints under any loading point. The stresses tended to rise slightly according to the increase of the Young's modulus of bridges. The aluminous core material which had high Young's modulus was effective for the reduction of the stresses at the surface of the bridge. Those tensile stresses were reduced remarkably by increasing the thickness of the fixed joints toward the labial and vertical side.(ABSTRACT TRUNCATED AT 400 WORDS)

新型陶瓷冠桥临床应用的力学研究
随着新型陶瓷如可浇注玻璃陶瓷和高强度陶瓷的发展,全瓷桥和全瓷冠的临床应用已被期待。本研究的目的是评估新型陶瓷的力学性能,并分析新型陶瓷冠和桥的应力分布。测量了四种新型陶瓷(DICOR、BIORAM-C、OPTEC、HI-CERAM)的杨氏模量、抗弯强度和直径抗拉强度,评估了新型陶瓷前冠和桥在金属基台上的断裂载荷。对新型陶瓷前冠和前桥进行了三维有限元分析,探讨了各种力学因素的影响;加载点的位置,陶瓷的种类,冠的厚度,套管材料,芯材,固定接头的设计。在每个实验中,加载力与齿轴呈45度角。结果总结如下:1) DICOR的抗弯强度最高。HI-CERAM硬核瓷具有最高的杨氏模量和抗拉强度。2)新型陶瓷冠中,HI-CERAM冠的断裂载荷最大。DICOR桥明显强于BIORAM-C桥。实验结果表明,冠和桥的断裂是由拉应力集中引起的。3)在切缘处的载荷作用下,冠处的拉应力最大。在轴壁厚度为0.5 mm的冠中,腭侧的高拉应力区域比厚度为0.75 mm和1 mm的冠更宽。然而,在基牙表面保留牙釉质层的情况下,尽管冠厚,应力也会减少。用金属桩核修复牙体后,牙冠的应力较天然牙体降低。4)对于桥梁,在任意荷载点下,高拉应力集中在固定缝处。随着桥梁杨氏模量的增加,应力有轻微上升的趋势。铝芯材料具有较高的杨氏模量,可以有效地降低桥梁表面的应力。通过增加固定关节向唇侧和垂直侧的厚度,这些拉应力显著降低。(摘要删节为400字)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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