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Influence of air-abrasion and subsequent heat treatment on bonding between zirconia framework material and indirect composites

机译:空气磨蚀及后续热处理对氧化锆骨架材料与间接复合材料粘结的影响

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The purpose of this study was to evaluate the influence of air-abrasion and subsequent heat treatment on the shear bond strength of the bond between indirect composites and a zirconia material. Four surface preparations were employed; ground flat, then heated to regenerate the crystal phase (C); air-abraded with alumina for 10 s (S10), for 20 s (S20), and air-abraded for 10 s and heated (H). Disks were primed with Alloy Primer and bonded either with Estenia or with Gradia composite. XRD analysis suggested that the monoclinic zirconia content was increased by air-abrasion, and decreased by heating. The surface roughness of S10, S20 and H disks was similar. Nevertheless, H groups showed lower bond strengths than the S10 and S20 groups both before and after thermal cycling. Although alumina air-abrasion considerably enhanced bonding between zirconia and indirect composites, subsequent heat treatment had a negative effect on the durability of bond strength.
机译:这项研究的目的是评估空气磨损和随后的热处理对间接复合材料与氧化锆材料之间的粘结的剪切粘结强度的影响。采用了四种表面处理;磨平,然后加热以再生结晶相(C);用氧化铝风化10 s(S10),20 s(S20),然后风化10 s并加热(H)。圆盘用Alloy Primer涂底漆,并用Estenia或Gradia复合材料粘结。 XRD分析表明,单斜氧化锆含量通过空气磨蚀而增加,而通过加热而降低。 S10,S20和H盘的表面粗糙度相似。然而,热循环前后,H基团的结合强度均低于S10和S20基团。尽管氧化铝的空气磨损大大增强了氧化锆与间接复合材料之间的结合力,但随后的热处理却对结合强度的持久性产生了负面影响。

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