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首页> 外文期刊>Materials science & engineering >Surface analysis and shear bond strength of zirconia on resin cements after non-thermal plasma treatment and/or primer application for metallic alloys
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Surface analysis and shear bond strength of zirconia on resin cements after non-thermal plasma treatment and/or primer application for metallic alloys

机译:非热等离子体处理和/或金属合金底涂后的氧化锆在水泥上的表面分析和剪切粘结强度

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摘要

There is no established protocol for bonding zirconia (Y-TZP) with resin cements. Non-thermal plasma (NTP) may be an alternative for the clinical problems related to adhesion. The purpose of the present study was to characterize the surface of Y-TZP exposed to methane (CH_4) NTP or coated with a layer of primer for metal alloys and the association between the two methods and to evaluate the effect of NTP treatment on bond strength between Y-TZP and two resin cements. A total of 235 Y-TZP discs (8×2 mm) were distributed into five groups: Co (no surface treatment), Pr (primer), NTP (methane plasma), Pr + NTP and NTP + Pr. The effect of the treatment type on the surface free energy, morphology, topography and chemical composition of the Y-TZP discs was investigated. The discs were cemented to composite resin substrates using Panavia F2.0 or RelyX U200. Shear bond strength (n = 10) analyses were performed (1 mm/min) before and after thermocyding (5-55 ℃, 2000 cycles) on the bonded specimens. The data were analyzed with one and three-way ANOVAs and Bonferroni tests (a = 0.05). NTP reduced the surface energy and roughness of the Y-TZP discs. SEM-EDS and XPS analyses showed the presence of the organic thin film, which significantly improved the bond strength results when Rely × U200 was used, whereas the primer treatment was more effective with Panavia F2.0. Thermocyding significantly reduced the bond strength results of the NTP and Pr + NTP groups cemented with Rely × U200 and the Pr and NTP + Pr groups cemented with Panavia F2.0. Nonthermal plasma improves the bond strength between Rely × U200 and Y-TZP and also seems to have water-resistant behavior, whereas Panavia F2.0 showed better results when associated with primer.
机译:没有建立将氧化锆(Y-TZP)与树脂胶粘剂粘合的协议。非热等离子体(NTP)可能是与粘附相关的临床问题的替代方法。本研究的目的是表征暴露于甲烷(CH_4)NTP或涂有金属合金底漆层的Y-TZP表面以及两种方法之间的联系,并评估NTP处理对键合强度的影响在Y-TZP和两种树脂水泥之间。总共235张Y-TZP圆盘(8×2毫米)被分为五组:Co(未表面处理),Pr(底漆),NTP(甲烷等离子体),Pr + NTP和NTP + Pr。研究了处理方式对Y-TZP光盘表面自由能,形态,形貌和化学成分的影响。使用Panavia F2.0或RelyX U200将光盘粘合到复合树脂基板上。在粘合样品的热切(5-55℃,2000次循环)之前和之后进行了剪切粘合强度(n = 10)分析(1 mm / min)。用单向和三向方差分析和Bonferroni检验分析数据(a = 0.05)。 NTP减少了Y-TZP光盘的表面能和粗糙度。 SEM-EDS和XPS分析表明存在有机薄膜,当使用Rely×U200时,显着改善了粘合强度结果,而使用Panavia F2.0进行底漆处理更有效。热循环显着降低了用Rely×U200粘结的NTP和Pr + NTP组以及用Panavia F2.0粘结的Pr和NTP + Pr组的结合强度结果。非热等离子体提高了Rely×U200与Y-TZP之间的结合强度,并且似乎具有耐水性能,而Panavia F2.0与底漆结合时显示出更好的结果。

著录项

  • 来源
    《Materials science & engineering 》 |2017年第3期| 284-292| 共9页
  • 作者单位

    Department of Dental Materials and Prosthodontics, Aracatuba Dental School, Univ. Estadual Paulista - UNESP, Aracatuba, Sao Paulo, Brazil;

    Department of Prosthodontics and Periodontology, Piracicaba Dental School, University of Campinas (UNICAMP), Piracicaba, Sao Paulo, Brazil;

    Institute of Physics Gleb Wataghin, University of Campinas (UNICAMP), Cidade Universitaria Zeferino Vaz, Barao Geraldo, Campinas, Sao Paulo, Brazil;

    Department of Dental Materials and Prosthodontics, Aracatuba Dental School, Univ. Estadual Paulista - UNESP, Aracatuba, Sao Paulo, Brazil;

    Laboratory of Technological Plasmas (LaPTec), Engineering College, Univ. Estadual Paulista - UNESP, Sorocaba, Sao Paulo, Brazil;

    Department of Clinical Sciences, Faculty of Dentistry, University of Toronto, Toronto, ON, Canada;

    Department of Prosthodontics and Periodontology, Piracicaba Dental School University of Campinas (UNICAMP), Piracicaba, Sao Paulo, Brazil;

    Department of Dental Materials and Prosthodontics, Aracatuba Dental School Univ. Estadual Paulista - UNESP, Aracatuba, Sao Paulo, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Zirconia; Resin cement; Bond strength;

    机译:氧化锆树脂水泥;粘结强度;

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