首页> 外文期刊>International Journal of Damage Mechanics >Fundamental mechanical behaviors of dental restorative materials resin composites due to compressive and flexural loading and internal damage evaluation
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Fundamental mechanical behaviors of dental restorative materials resin composites due to compressive and flexural loading and internal damage evaluation

机译:牙科恢复材料树脂复合材料的基本机械行为由于压缩和弯曲载荷和内部损伤评估

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Development of internal damage within resin composites was evaluated under compressive loading in order to predict crack initiation and fracture. Moreover, three-point bending tests were also carried out in order to clarify mechanical behavior and fracture under tensile stress state in comparison with those under compressive stress state. Both of them were conducted for the purpose of obtaining data to formulate constitutive equations for resin composites and to implement precise numerical simulation. Columnar specimens for compression tests and square pole specimens for three-point bending tests were prepared by using clinical resin composites. In compression tests, loading-unloading (or -reloading) was given to columnar specimens and Young's modulus was evaluated by the gradient of stress-strain curves under unloading. Internal damage was evaluated from the variation of Young's modulus as a scalar damage variable based on the continuum damage mechanics. The variation of apparent density and residual strain at vanished stress were also discussed in association with the development of internal damage. Accumulation of internal damage was found on the stress-strain curve under loading-unloading-reloading in comparison with the curve under monotonic loading. On the other hand, in three-point bending tests, dependence of stress-strain curves on light curing time and strain rate was clarified. Since compression tests have been carried out under similar experimental conditions by authors so far, mechanical behaviors of resin composites under tensile stress state were discussed in comparison with those under compressive stress state. Brittleness under tensile stress state was indicated in comparison with compressive stress state.
机译:在压缩载荷下评估树脂复合材料中的内部损伤的研制,以预测破裂启动和裂缝。此外,还进行了三点弯曲试验,以便与压缩应力状态下的那些相​​比,以阐明拉伸应力状态下的力学行为和裂缝。为了获得数据以制定用于树脂复合材料的组成方程并实施精确的数值模拟,进行了两者。通过使用临床树脂复合材料制备用于压缩试验的柱状标本和三点弯曲试验的正方形标本。在压缩测试中,给予柱状标本和较小的模量通过在卸载下的应力 - 应变曲线的梯度评估杨氏模量。根据基于连续损伤力学的标量损伤变量,从杨氏模量的变化评估内部损坏。还与内部损伤的发育结合讨论了消失胁迫下表观密度和残余菌株的变化。与单调载荷下的曲线相比,在加载卸载重新加载下的应力 - 应变曲线上发现内部损伤的积累。另一方面,在三点弯曲试验中,澄清了应力 - 应变曲线对光固化时间和应变率的依赖性。由于基于作者的类似实验条件,因此,迄今为止,迄今为止,讨论了与压缩应力状态下的抗压应力状态下树脂复合材料的机械行为。与压缩应力状态相比,表明了拉伸应力状态下的脆性。

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