首页> 外文期刊>The Journal of Prosthetic Dentistry >Influence of a tungsten metal conditioner on the adhesion and residual stress of porcelain bonded to cobalt-chromium alloy
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Influence of a tungsten metal conditioner on the adhesion and residual stress of porcelain bonded to cobalt-chromium alloy

机译:钨金属调节剂对钴铬合金烤瓷附着力和残余应力的影响

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Statement of problem. Cobalt-chromium (CoCr) metal ceramic restorations are known to be more susceptible to cracking and interfacial failures. This is partially related to their high potential for oxidation compared with restorations made with high noble alloys. One approach that may improve their compatibility is the use of bonding agents. Purpose. The purpose of this study was to investigate the influence of a tungsten metal conditioner on the adhesion and residual stress of porcelain bonded to a cobalt-chromium alloy. Material and methods. Eighty-one metal-porcelain bilayered specimens were manufactured and tested with a 4-point bend for adhesion and with Vickers indentation for residual stress determination. The strain energy release rate for adhesion energy and indentation residual stress was evaluated for specimens layered with and without tungsten (W) metal conditioner. Subsequent scanning electron microscopy and energy dispersive spectrometry were performed to identify fracture behavior and chemical and phase compositions. Results. The average strain energy release rate of the specimen group tested without the W metal conditioner was significantly higher (P.05) (44.70 J/m2) than that of the group with the W metal conditioner (28.65 J/m2). The average residual stress of the specimen group with (0.1 MPa) and without (1.61 MPa) the W metal conditioner did not differ significantly. Scanning electron microscopy and energy dispersive spectrometry analysis enabled the modes of failure to be determined and indicated the mechanisms by which the W metal conditioner influenced the bond. Conclusions. The W metal conditioner used in this study significantly lowered the strain energy release rate of the porcelain-cobalt-chromium interface and did not have a significant influence on the residual stress state of the porcelain.
机译:问题陈述。已知钴铬(CoCr)金属陶瓷修复体更容易产生裂纹和界面破坏。与用高贵金属制成的修复体相比,这部分与它们的高氧化潜力有关。可以提高其相容性的一种方法是使用粘合剂。目的。这项研究的目的是研究钨金属调理剂对粘结在钴铬合金上的瓷器的附着力和残余应力的影响。材料与方法。制作了八十一个金属-陶瓷双层样品,并通过四点弯曲测试其粘附性,并使用维氏压痕测试残余应力。对于有和没有钨(W)金属调理剂的样品,评估了其粘附能和压痕残余应力的应变能释放速率。随后进行了扫描电子显微镜和能量色散光谱分析,以确定断裂行为以及化学和相组成。结果。没有使用W金属调节剂的样品组的平均应变能释放速率显着高于使用W金属调节剂的样品组(28.65 J / m2)(P <.05)(44.70 J / m2)。含(0.1 MPa)和不含(1.61 MPa)W金属调理剂的试样组的平均残余应力没有显着差异。扫描电子显微镜和能量色散光谱分析可以确定失效模式,并指出W金属调节剂影响键的机理。结论。本研究中使用的W金属调理剂显着降低了瓷钴钴界面的应变能释放速率,并且对瓷器的残余应力状态没有显着影响。

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