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Miniature specimens for fracture toughness evaluation of dental resin composites

机译:用于牙科树脂复合材料断裂韧性评估的微型样品

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Objective. Millimeter-scale ("miniature") specimens enable in-situ evaluation of mechanical properties of engineering materials at reduced cost. Here three such specimens for measuring fracture toughness (K-c) are developed and implemented to new dental materials. The latter include concurrent methacrylate-based and new ether-based resin composites designed to reduce polymerization stress and enhance service life in restored teeth.Methods. Fracture toughness of four experimental and one commercial dental resin composites are evaluated using three-point bending (3PB), wedge double-cantilever-beam (WDCD) and edge chipping miniature test specimens. The values of Kc were compared with those obtained following ISO standard method ISO6872: 2014. The stress intensity factor (K) for the 3PB and WDCB specimens was determined using linear fracture mechanics analyses made in conjunction with the Finite Element technique, with due consideration given to the finite width of pre-crack.Results. Analytic expressions for predicting Kc were developed for all three miniature specimens. The width of pre-crack, generally neglected for conventional specimens, significantly affect K. Measured K-c conclusively agree with those of commercial or well-studied materials as obtained using conventional specimens, with error bounded by 5-10 percent.Significance. The edge chipping test was successfully applied for the first time to non-brittle materials like dental resin composites. The miniature specimens developed will expedite the evaluation of fracture toughness of dental resin composites by saving materials and provide needed in-situ assessment capability. The chipping test which requires no introduction of initial crack and involves no use of elastic constants is especially suitable to functionally graded materials and in-situ study of restored teeth. The WDCB specimen enables stable crack growth, a useful trait in fatigue studies. (C) 2018 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:目的。毫米级(“微型”)样品能够以较低的成本就地评估工程材料的机械性能。在这里,开发了三个用于测量断裂韧性(K-c)的样本,并将其应用于新的牙科材料。后者包括同时存在的甲基丙烯酸酯基和新型醚基树脂复合材料,旨在降低聚合应力并延长修复牙齿的使用寿命。使用三点弯曲(3PB),楔形双悬臂梁(WDCD)和边缘碎裂微型测试样品评估了四种实验性和一种商用牙科树脂复合材料的断裂韧性。将Kc值与按照ISO标准方法ISO6872:2014获得的值进行比较。3PB和WDCB试样的应力强度因子(K)是通过结合有限元技术进行的线性断裂力学分析确定的到预裂的有限宽度。结果。对所有三个微型标本开发了用于预测Kc的解析表达式。预裂纹的宽度通常被常规样品所忽略,对K有很大影响。测得的K-c最终与使用常规样品获得的商业或经过充分研究的材料的K-c一致,误差范围为5-10%。边缘碎裂测试首次成功地应用于非脆性材料,例如牙科树脂复合材料。开发的微型标本将通过节省材料来加快牙科树脂复合材料断裂韧性的评估,并提供所需的现场评估能力。不需要引入初始裂纹且不使用弹性常数的崩裂测试特别适合于功能分级材料和原位修复牙齿的研究。 WDCB试样可实现稳定的裂纹扩展,这是疲劳研究中的有用特性。 (C)2018牙科材料学院。由Elsevier Inc.出版。保留所有权利。

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