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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Quantifying the mode II critical strain energy release rate of borate bioactive glass coatings on Ti6Al4V substrates
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Quantifying the mode II critical strain energy release rate of borate bioactive glass coatings on Ti6Al4V substrates

机译:量化硼酸盐生物活性玻璃涂层在Ti6Al4V基材上的模式II临界应变能释放速率

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摘要

Bioactive glasses have been used as coatings for biomedical implants because they can be formulated to promote osseointegration, antibacterial behavior, bone formation, and tissue healing through the incorporation and subsequent release of certain ions. However, shear loading on coated implants has been reported to cause the delamination and loosening of such coatings. This work uses a recently developed fracture mechanics testing methodology to quantify the critical strain energy release rate under nearly pure mode II conditions, G(IIC), of a series of borate-based glass coating/Ti6A14V alloy substrate systems. Incorporating increasing amounts of SrCO3 in the glass composition was found to increase the G(IIC) almost twofold, from 25.3 to 46.9 J/m(2). The magnitude and distribution of residual stresses in the coating were quantified, and it was found that the residual stresses in all cases distributed uniformly over the cross section of the coating. The crack was driven towards, but not into, the glass/Ti6Al4V substrate interface due to the shear loading. This implied that the interface had a higher fracture toughness than the coating itself.
机译:生物活性玻璃已被用作生物医学植入物的涂层,因为它们可以配制以通过掺入和随后的某些离子释放来促进骨整合,抗菌性行为,骨形成和组织愈合。然而,据报道,涂层植入物的剪切负载导致这种涂层的分层和松动。这项工作采用最近开发的骨折力学测试方法来量化几乎纯模式II条件下的临界应变能量释放速率,G(IIC),其中一系列硼酸硼基玻璃涂层/ Ti6a14V合金基板系统。发现含有玻璃组合物中的升高量的Srco3含有较高的Srco3,从25.3-46.9J / m(2)中增加G(IIC)。涂层中残余应力的大小和分布量化,发现所有情况下的残余应力均匀地分布在涂层的横截面上。由于剪切载荷,裂缝朝向,但不是进入玻璃/ Ti6Al4V衬底界面。这意味着界面具有比涂层本身更高的断裂韧性。

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