首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Use of focused ion beam milling for investigating the mechanical properties of biological tissues: a study of human primary molars.
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Use of focused ion beam milling for investigating the mechanical properties of biological tissues: a study of human primary molars.

机译:使用聚焦离子束铣削来研究生物组织的力学性能:人初级臼齿的研究。

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In this paper, the usefulness of the specimen shaping ability of focused ion beam (FIB) milling in the micrometer scale and the high force resolution of the nanoindentation technique are demonstrated on human primary teeth. Micro-cantilevers, with a triangular cross-section <5 microm in width and 10 microm in length, were produced within 50 microm of the dentin-enamel junction (DEJ) using FIB milling, and were point-loaded at their free ends at 20 microN/s until failure using a nanoindenter. The elastic modulus and flexural strength of such micro-samples of human enamel, and their variation with respect to prism orientation, were studied and compared to data from bulk enamel measured using nanoindentation and three-point bend tests. The elastic modulus of the micro-cantilever samples was found to be comparable to that obtained by nanoindentation on bulk samples, but it demonstrated significant anisotropy commensurate with the microstructure of enamel which was not measurable using nanoindentation on bulk samples. The flexural strength of the enamel micro-cantilevers also exhibited strong anisotropy, and was about one order of magnitude higher than that of bulk specimens measured by three-point bending. Through a Weibull analysis, this size dependence of the strength was found to be similar to the normal behaviour in brittle materials. The flexural strength of the enamel samples was also found to be sensitive to changes in the degree of mineralization of the samples.
机译:本文在人的原发性牙齿上证明了聚焦离子束(FIB)铣削的标本成形能力的有用性和纳米压齿技术的高力分辨率。微悬臂器,具有三角形横截面<5微米的长度和10微米的长度,在50微米的牙本质 - 搪瓷结(DEJ)中使用FIB铣削生产,并在20时在其自由端部装载微米/ s直至使用纳米印文失效。研究了人牙釉质的这种微样品的弹性模量和抗弯强度,以及它们相对于棱镜取向的变化,并与使用纳米凸缘和三点弯曲试验测量的散装搪瓷的数据进行比较。发现微悬臂样品的弹性模量与通过批量样品的纳米凸缘获得的可比性相当,但它表明了与搪瓷的微观结构相称的显着各向异性,其在批量样品上使用纳米凸缘不可测量。牙釉质微悬臂器的弯曲强度也表现出强烈的各向异性,并且比三点弯曲测量的散装样品高约一个数量级。通过威布尔分析,发现这种强度的尺寸依赖性与脆性材料中的正常行为类似。还发现牙釉质样品的弯曲强度对样品的矿化程度的变化敏感。

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