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首页> 外文期刊>Key Engineering Materials >Influence of Margin Geometry on Failure of Brittle Coatings on Compliant Substrates: Relevance to Failure of Dental Crowns
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Influence of Margin Geometry on Failure of Brittle Coatings on Compliant Substrates: Relevance to Failure of Dental Crowns

机译:边缘几何形状对柔韧性涂层在基体上的破坏的影响:与牙冠破坏的相关性

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摘要

This paper explores the so-called "margin failures" observed in loaded curved bi-layer structures. Hemispherical bi-layer model test specimens consisting of glass shells with varying margin geometry filled with epoxy resin, simulating brittle crowns on tooth dentine, are loaded with compliant indenters along the (convex) axis of symmetry. Using this unique setup, the influence of margin geometry on margin failure is examined. Nearly all previous studies have utilised hard spherical indenters of various radii, and examined crack initiation and evolution at the contact point. However, the modes of fracture observed in this traditional contact problem, surface cone cracking or flexure-induced radial cracking initiate close to or inside the (small) contact area, and thus not explain the margin failures commonly observed by dentists. Crack growth at the margins distant from the contact zone cannot be generated under indentation using hard spherical indenters. The use of a compliant (soft) indenter distributes the indentation force over a large contact area, generating a compressive zone underneath the contact, and effectively inhibiting the modes of fracture typically observed using hard indenters (radial and cone cracking). Consequently, significant tensile stresses at the support margin become dominant, and the focus shifts to fracture initiating at the support margins. In this study, cylindrical indenters composed of PTFE Teflon, with a modulus several orders of magnitude lower than the indented materials, are used to examine margin fracture in brittle crown like structures. The specific focus is the effect of margin geometry - Chamfered; Round; Shoulder margins are examined, and their influences on crack initiation and damage evolution are reported.
机译:本文探讨了在加载的弯曲双层结构中观察到的所谓“边际故障”。半球形双层模型试样由模拟环氧树脂在牙本质上的脆性牙冠的,边缘几何形状各不相同的玻璃壳组成,并填充有环氧树脂,沿着(凸)对称轴加载顺应性压头。使用这种独特的设置,可以检查边缘几何形状对边缘失败的影响。几乎所有以前的研究都使用了各种半径的硬球形压头,并检查了接触点处的裂纹萌生和扩展。然而,在这种传统的接触问题中观察到的断裂模式是表面锥裂或由弯曲引起的径向裂纹在(小)接触区域附近或内部引发,因此不能解释牙医通常观察到的切缘失败。在使用硬球形压头的压痕作用下,无法在远离接触区域的边缘产生裂纹扩展。顺应性(软)压头的使用将压痕力分布在较大的接触面积上,在接触下方产生压缩区,并有效地抑制了通常使用硬压头观察到的断裂模式(径向和圆锥形裂纹)。因此,在支撑边缘处的显着拉伸应力成为主导,并且焦点转移到在支撑边缘处开始的断裂。在这项研究中,由聚四氟乙烯聚四氟乙烯制成的圆柱压头(模量比压痕材料低几个数量级)用于检查脆性冠状结构的边缘断裂。重点是边距几何形状的影响-倒角;回合;检查了肩缘,并报告了其对裂纹萌生和损伤演变的影响。

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