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Effects of surface roughness and maximum load on the mechanical properties of cancellous bone measured by nanoindentation

机译:纳米压痕法测量表面粗糙度和最大载荷对松质骨力学性能的影响

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摘要

The effects of two key experimental parameters on the measured nanomechanical properties of lamellar and interlamellar tissue were examined in dehydrated rabbit cancellous bone. An anhydrous sample preparation protocol was developed to maintain surface integrity and produce RMS surface roughnesses approx 10 nm (5 X 5-mu m~2 area). The effects of surface roughness and maximum nanoindentation load on the measured mechanical properties were examined in two samples of differing surface roughness using maximum loads ranging from 250 to 3000 mu N. As the ratio of indentation depth to surface roughness decreased below approx 3:1, the variability in material properties increased substantially. At low loads, the indentation modulus of the lamellar bone was -20 percent greater than that of the interlamellar bone, while at high loads the measured properties of both layers converged to an intermediate value. Relatively shallow indentations made on smooth surfaces revealed significant differences in the properties of lamellar and interlamellar bone that support microstructural observations that lamellar bone is more mineralized than interlamellar bone.
机译:在脱水兔松质骨中检查了两个关键实验参数对测量的层状和层间组织纳米力学性能的影响。开发了一种无水样品制备方案,以保持表面完整性并产生大约10 nm(5 X5-μm〜2面积)的RMS表面粗糙度。在两个表面粗糙度不同的样品中,使用250至3000μN的最大载荷检查了表面粗糙度和最大纳米压痕载荷对测得的机械性能的影响。随着压痕深度与表面粗糙度之比降低到约3:1以下,材料特性的可变性大大增加。在低载荷下,层状骨的压痕模量比层间骨的压痕模量大-20%,而在高载荷下,两层的测量性能均收敛至中间值。在光滑表面上形成的相对较浅的压痕显示出层状和层间骨特性的显着差异,这支持了微观结构观察,即层状骨比层间骨矿化程度更高。

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