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Effect of cyclic loading on the nanoscale deformation of hydroxyapatite and collagen fibrils in bovine bone

机译:循环载荷对牛骨中羟磷灰石和胶原原纤维纳米级变形的影响

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Cyclic compressive loading tests were carried out on bovine femoral bones at body temperature (37 ?C), with varying mean stresses (-55 to -80MPa) and loading frequencies (0.5-5 Hz). At various times, the cyclic loading was interrupted to carry out high-energy X-ray scattering measurements of the internal strains developing in the hydroxyapatite (HAP) platelets and the collagen fibrils. The residual strains upon unloading were always tensile in the HAP and compressive in the fibrils, and each increases in magnitude with loading cycles, which can be explained from damage at the HAP-collagen interface and accumulation of plastic deformation within the collagen phase. The samples tested at a higher mean stress and stress amplitude, and at lower loading frequencies exhibit greater plastic deformation and damage accumulation, which is attributed to greater contribution of creep. Synchrotron microcomputed tomography of some of the specimens showed that cracks are produced during cyclic loading and that they mostly occur concentric with Haversian canals.
机译:牛股骨在体温(37°C)下进行了循环压缩载荷试验,平均应力(-55至-80MPa)和载荷频率(0.5-5 Hz)变化。在不同的时间,循环加载被中断,以对羟磷灰石(HAP)血小板和胶原原纤维中形成的内部菌株进行高能X射线散射测量。卸荷时的残余应变在HAP中始终是拉伸的,在原纤维中是压缩的,并且每个应变的大小都随加载周期的增加而增加,这可以从HAP-胶原蛋白界面处的损伤和胶原相内塑性变形的积累中得到解释。在较高的平均应力和应力振幅以及较低的加载频率下测试的样品表现出较大的塑性变形和损伤累积,这归因于蠕变的更大贡献。某些样品的同步加速器计算机断层扫描显示,裂纹在循环加载过程中产生,并且裂纹大多与哈弗斯运河同心。

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