首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Effects of biocompatible Nanofillers on mixed-mode I and II fracture toughness of PMMA base dentures
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Effects of biocompatible Nanofillers on mixed-mode I and II fracture toughness of PMMA base dentures

机译:生物相容性纳米填料对PMMA底牙齿混合模式I和II裂缝韧性的影响

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yy A modified single edge cracked bend beam specimen called "inclined edge crack asymmetric bend" (IE-CAB) specimen was designed and proposed for investigating mixed mode I/II fracture toughness behavior of brittle materials. Using a large number of finite element analyses performed for different geometry and loading conditions, it was demonstrated that unlike the conventional single edge notch beam specimen, the IE-CAB configuration can provide full combinations of mode mixities from pure mode I to pure mode II. Then the IE-CAB specimen was employed for mixed mode I/II fracture toughness testing of two PMMA based denture materials (i.e. neat PMMA and toughened PMMA with Nano-hydroxyapatite (HAP)and Nano-alumina (Al2O3) particles). The obtained experimental results showed that adding bio-compatible (HAP and Al2O3) Nano-particles can increase both modes I and II fracture resistance (K-Ic and K-IIc) values of base PMMA denture. However, the influence of such particles was more pronounced on enhancing mode I fracture toughness (K-Ic) value. Pure mode II fracture toughness value was obtained less than the pure mode I fracture toughness in the tested specimen showing the higher crack growth risk of such PMMA base dentures against dominantly shear loads. The well-known maximum tangential stress theory was also used for estimating the obtained experimental data both for mixed mode fracture toughness and fracture initiation direction in the tested PMMA base denture materials.
机译:YY改进的单边缘破裂弯梁样本称为“倾斜边缘裂缝不对称弯曲”(即驾驶室)样本,并提出用于研究脆性材料的混合模式I / II断裂韧性行为。使用针对不同几何和装载条件执行的大量有限元分析,证明了与传统的单边缘凹凸束标本不同,IE-CAB配置可以从纯模式I到纯模式II提供模式混合的完全组合。然后,使用IE-CAB样本用于混合模式I / II裂缝韧性试验,其两种基于PMMA的义肢材料(即纯PMMA和纳米羟基磷灰石(HAP)和纳米 - 氧化铝(Al2O3)颗粒的颗粒)。所获得的实验结果表明,添加生物相容性(HAP和Al 2 O 3)纳米颗粒可以增加基础PMMA义齿的模态I和II裂缝抗性(K-IC和K-IIC)值。然而,对增强模式I断裂韧性(K-IC)值更加明显这种颗粒的影响更加明显。纯模式II断裂韧性值小于测试样本中的纯模式I断裂韧性,显示出这种PMMA底部假牙对主要剪切载荷的裂纹生长风险较高。众所周知的最大切向应力理论也用于估计所获得的实验数据,用于在经过测试的PMMA底座义齿材料中用于混合模式断裂韧性和断裂起始方向。

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