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VARIABILITY OF NANOINDENTATION RESPONSES OF BONE AND ARTIFICIAL BONE-LIKE COMPOSITES

机译:骨和人造骨样复合材料的纳米取向反应的变异性

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摘要

Nanoindentation is a popular technique for measuring the intrinsic mechanical response of bone and has been used to measure a single-valued elastic modulus. However, bone is a composite material with 20-80 nm hydroxyapatite plates embedded in a collagen matrix, and modem instrumentation allows for measurements at these small length scales. The present study examines the indentation response of bone and artificial gelatin-apatite nanocomposite materials across three orders of magnitude of lengthscale, from nanometers to micrometers, to isolate the composite phase contributions to the overall response. The load-displacement responses were variable and deviated from the quadratic response of homogeneous materials at small depths. The distribution of apparent elastic modulus values narrowed substantially with increasing indentation load. Indentation of particulate nanocomposites was simulated using finite element analysis. Modeling results replicated the convergence in effective modulus seen in the experiments. It appears that the apatite particles are acting as the continuous ("matrix") phase in bone and nanocomposites.
机译:纳米压痕是一种用于测量骨骼固有机械响应的流行技术,已用于测量单值弹性模量。但是,骨骼是一种复合材料,在胶原蛋白基质中嵌入了20-80 nm的羟基磷灰石板,现代仪器可以在这些小长度范围内进行测量。本研究研究了从纳米到微米三个长度范围的骨和人造明胶-磷灰石纳米复合材料的压痕响应,以分离出复合相对整体响应的贡献。载荷-位移响应是可变的,并且偏离均匀材料在小深度的二次响应。表观弹性模量值的分布随着压痕载荷的增加而明显变窄。使用有限元分析模拟颗粒纳米复合材料的压痕。建模结果重复了实验中看到的有效模量收敛。看来磷灰石颗粒在骨和纳米复合材料中充当连续相(“基质”)。

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