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Ductility and brittleness of bone

机译:骨骼的延展性和脆性

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Human, bovine and equine bones show brittle to ductile transitions as a function of strain rate. The transition is not sharp, but occurs around a strain rate of 10~(-1) s~(-1). At lower rates, the strength. increases proportional to the logarithm of the strain rate, at higher rates it decreases. Additionally, the work of fracture peaks around 10~(-1) s~(-1). Thermal activation analysis gives an activation volume of (1 nm)~3, an activation enthalpy of 1 eV and an activation energy of about 0.5 eV. Plastic deformation occurs both within and between collagen fibrils. In the fibrils, the existence of screw dislocations parallel to the collagen molecules with a Burger's vector of 1 nm length is postulated. Deformation occurs by thermally activated kink pair formation in these defects.
机译:人,牛和马的骨骼显示出从应变速率到脆性到延性的转变。转变不是很明显,而是在10〜(-1)s〜(-1)的应变率附近发生。在较低的速率下,强度较高。与应变率的对数成正比地增加,而在较高的应变率时则减小。另外,断裂功在10〜(-1)s〜(-1)附近达到峰值。热活化分析给出的活化体积为(1 nm)〜3,活化焓为1 eV,活化能约为0.5 eV。塑性变形发生在胶原原纤维内部和之间。在原纤维中,假定存在与胶原分子平行的螺旋位错,其具有1nm长的汉堡矢量。在这些缺陷中,通过热活化扭结对的形成而发生变形。

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