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首页> 外文期刊>Odontology >Evaluation of two dual-functional primers and a tribochemical surface modification system applied to the bonding of an indirect composite resin to metals
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Evaluation of two dual-functional primers and a tribochemical surface modification system applied to the bonding of an indirect composite resin to metals

机译:评估两种双功能底漆和摩擦化学表面改性体系,以将间接复合树脂粘合到金属上

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摘要

We evaluated the effects of two dual-functional primers and a tribochemical surface modification system on the bond strength between an indirect composite resin and gold alloy or titanium. Disk specimens (diameter, 10 mm; thickness, 2.5 mm) were cast from type 4 gold alloy and commercially pure titanium. The specimens were wetground to a final surface finish using 600-grit silicone carbide paper. The specimens were then air-dried and treated using the following four bonding systems: (1) air-abrasion with 50–70 μm alumina, (2) system 1 + alloy primer, (3) system 1 + metal link primer, and (4) tribochemical silica/silane coating (Rocatec). A light-polymerizing indirect composite resin (Ceramage) was applied to each metal specimen and polymerized according to the manufacturer’s specifications. Shear bond strengths (MPa) were determined both before and after thermocycling (4°C and 60°C for 1 min each for 20 000 cycles). The values were compared using analysis of variance, post hoc Scheffe tests, and Mann-Whitney U tests (alpha = 0.05). The strengths decreased after thermocycling for all combinations. For both gold alloy and titanium, the bond strength with air-abrasion only was statistically lower than that with the other three modification methods after thermocycling. Titanium exhibited a significantly higher value (13.4 MPa) than gold alloy (10.5 MPa) with the air. abrasion and alloy primer system. Treatment with the tribochemical system or air abrasion followed by treatment with dual-functional priming agents was found to be effective for enhancement of the bonding between the indirect composite and gold alloy or titanium.
机译:我们评估了两种双功能底漆和摩擦化学表面改性体系对间接复合树脂与金合金或钛之间的结合强度的影响。圆盘样品(直径10毫米;厚度2.5毫米)由4型金合金和市售纯钛铸造而成。使用600粒度的碳化硅纸将样品湿磨至最终表面光洁度。然后将样品风干并使用以下四个粘合系统进行处理:(1)用50-70μm氧化铝进行空气磨蚀;(2)系统1 +合金底漆;(3)系统1 +金属链接底漆;和( 4)摩擦化学二氧化硅/硅烷涂层(Rocatec)。将轻聚合间接复合树脂(Ceramage)应用于每个金属样品,并根据制造商的说明进行聚合。在热循环之前和之后测定剪切粘结强度(MPa)(4℃和60℃,分别进行1万次,共2万次循环)。使用方差分析,事后Scheffe检验和Mann-Whitney U检验(α= 0.05)对这些值进行比较。所有组合的热循环后强度降低。对于金合金和钛,在热循环后,仅具有空气磨损的粘结强度在统计学上均低于其他三种改性方法。与空气中的金合金(10.5 MPa)相比,钛具有更高的值(13.4 MPa)。耐磨和合金底漆系统。发现用摩擦化学系统处理或空气磨蚀,然后用双功能底漆处理,对于增强间接复合材料与金合金或钛之间的结合是有效的。

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  • 来源
    《Odontology》 |2009年第2期|103-108|共6页
  • 作者单位

    Department of Applied Prosthodontics Nagasaki University Graduate School of Biomedical Sciences Nagasaki Japan;

    Division of General Dentistry Nagasaki University Hospital of Medicine and Dentistry 1-7-1 Sakamoto Nagasaki 852-8501 Japan;

    Department of Applied Prosthodontics Nagasaki University Graduate School of Biomedical Sciences Nagasaki Japan;

    Department of Fixed Prosthodontics Nihon University School of Dentistry Tokyo Japan;

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

    Bond strength; Gold alloy; Titanium; Primer; Silica coating;

    机译:粘结强度;金合金;钛;底漆;二氧化硅涂层;

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