[Studies on the dynamic durability of dental restorative materials. Part 4. Materials evaluation of initial and fatigue specimen for composite resins by acoustic emission method].

S Kondo, S Okawa, T Hanawa, T Sugawara, M Ota
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Abstract

Present study is directed towards development for a method of materials evaluation of the static and dynamic properties for dental restorative materials and nondestructive inspection of the dental restorations in oral cavity by acoustic emission (AE) method. AE characteristics and deformation-fracture behavior of hour commercial composite resins under three points bending test are examined in order to evaluate initial and fatigue specimen for conventional and microfilled composite resins. Experimental results obtained are as follows: (1) Deformation-fracture behavior of conventional and microfilled composite resins exhibits different mode, corresponding to relatively brittle and ductile fracture behavior, respectively. Therefore, the primary sources of AE for conventional and microfilled composite resins under bending test are related mainly to the nucleation and propagation of cracks and plastic deformation, respectively. (2) In conventional composite resins under bending test, the burst type AE signal of higher amplitude and shorter decay time and more many AE total counts tend to be observed. In microfilled composite resins under bending test, the burst type AE signal of lower amplitude and longer decay time and more a few total counts tend to be observed. (3) Composite resins, particularly conventional composite resins under unload and repeated bending load are indicative of different AE characteristics. Accordingly, application of AE method for composite resins offers a method to evaluate the static and dynamic strength of composite resins. (4) In conventional composite resins under bending test, as characteristic AE are observed in a few stress regions before fracture, it may be possible to monitor nondestructively the restorations in oral cavity by using AE method.

牙体修复材料动态耐久性研究。第4部分。用声发射法评价复合树脂的初始和疲劳试样[j]。
本研究旨在开发一种基于声发射技术的口腔修复材料静、动态性能评价方法和口腔修复体无损检测方法。为了评价常规复合树脂和微填充复合树脂的初始试样和疲劳试样,研究了复合树脂在三点弯曲试验下的声发射特征和变形断裂行为。实验结果表明:(1)常规复合树脂与微填充复合树脂的变形断裂行为表现出不同的模式,分别对应于相对脆性和韧性断裂行为。因此,在弯曲试验中,常规复合树脂和微填充复合树脂声发射的主要来源分别与裂纹的成核和扩展以及塑性变形有关。(2)在常规复合树脂的弯曲试验中,往往能观察到振幅更高、衰减时间更短、声发射总数更多的突发型声发射信号。在微填充复合树脂的弯曲试验中,往往观察到振幅较低、衰减时间较长、总计数较少的突发型声发射信号。(3)复合树脂,特别是常规复合树脂在卸载和反复弯曲载荷作用下,表现出不同的声发射特性。因此,声发射法在复合树脂中的应用为评价复合树脂的静、动强度提供了一种方法。(4)在常规复合树脂的弯曲试验中,由于在断裂前的少数应力区观察到特征声发射,因此声发射方法可以无损地监测口腔内的修复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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