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Mixed-mode fracture of synthesized nanocrystalline forsterite for biomedical applications

机译:用于生物医学应用的合成纳米晶体叉炉的混合模式骨折

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Nanocrystalline forsterite is an important biocompatible, nanostructured bioceramic. Various studies have examined essential properties of this biomaterial, including bioactivity, biocompatibility, typical mechanical features, etc. In this research nanocrystalline forsterite powder was produced by the sol-gel method and was characterized via XRD and SEM analysis. By pressurizing the nanopowder under 200 MPa and sintering at 1500 degrees C, semi-circular bending (SCB) samples were prepared with cracks of different angles. Fracture tests were then performed under mode-I, mode-II and mixed-mode loading in order to investigate the fracture resistance of forsterite. The specimens were all failed in a brittle manner. The results, then, were compared with two common mixed-mode fracture models called maximum tangential stress (MTS) and generalized maximum tangential stress (GMTS). The generalized MTS criterion provided very good estimations for the experimental results.
机译:纳米晶体Forsterite是一个重要的生物相容,纳米结构的生物陶瓷。 各种研究已经检查了这种生物材料的必要性,包括生物活性,生物相容性,典型的力学特征等。在该研究中,通过溶胶 - 凝胶法生产纳米晶体粉末粉末,并通过XRD和SEM分析表征。 通过在200MPa下加压纳米粉末并在1500℃下烧结,使用不同角度的裂缝制备半圆形弯曲(SCB)样品。 然后在模式-I,模式-II和混合模式负载下进行裂缝试验,以研究Forsterite的骨折性。 标本全部以脆性方式失败。 然后,结果与称为最大切向应力(MTS)和广义最大切向应力(GMT)的两个常见混合模式断裂模型进行比较。 广义的MTS标准为实验结果提供了非常好的估计。

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