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首页> 外文期刊>Journal of Biomechanics >The effect of recovery time and test conditions on viscoelastic measures of tensile damage in cortical bone.
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The effect of recovery time and test conditions on viscoelastic measures of tensile damage in cortical bone.

机译:恢复时间和测试条件对皮质骨拉伸损伤的粘弹性测量的影响。

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摘要

Stiffness degradation and strength degradation are often measured to monitor and characterize the effects of damage accumulation in bone. Based on evidence that these properties could be affected by not only damage magnitude but also test conditions, the present study investigated the effect of hold condition and recovery time on measures of tensile damage. Machined human femoral cortical bone specimens were subjected to tensile tests consisting of a pre-damage diagnostic loading cycle, a damage loading cycle and post-damage cycle. Controlled variables were recovery time (1, 10, and 100min) and hold condition (zero load or zero strain) after the damage cycle. Damage measures were calculated as the ratio of each post-damage cycle to the pre-damage value for loading modulus, secant modulus, unloading modulus, stress relaxation and strain (stress) recovery at 1min post-diagnostic time. The damage cycle caused reductions in all measures, and some measures varied with recovery time and hold condition. Apparent modulus degradation for both hold conditions decreased with recovery time. Stress relaxation was unaffected by recovery time for both hold conditions. Zero-strain hold conditions resulted in lower values for degradation of modulus and change of relaxation. Stress or strain recovery after the damage cycle was evident through 100min, but 90% of the recovery occurred within 10min. The results demonstrate that choice of test conditions can influence the apparent magnitude of damage effects. They also indicate that 10min recovery time was sufficient to stabilize most measures of the damage state.
机译:通常测量刚度降低和强度降低以监测和表征骨中损伤累积的影响。基于这些性质不仅会受到破坏程度的影响,而且还会受到测试条件的影响的证据,本研究调查了保持条件和恢复时间对拉伸损伤测量的影响。对加工过的人股骨皮质骨标本进行拉伸测试,包括破坏前的诊断加载循环,破坏加载循环和破坏后循环。控制变量是损坏周期后的恢复时间(1、10和100分钟)和保持状态(零载荷或零应变)。计算损伤度量值,作为每个损伤后周期与损伤前值的比值,以用于诊断后1分钟的加载模量,割线模量,卸载模量,应力松弛和应变(应力)恢复。损坏周期导致所有措施的减少,并且某些措施随恢复时间和保持条件而变化。两种保持条件下的表观模量降解均随恢复时间的延长而降低。两种保持条件下的恢复时间都不会影响应力松弛。零应变保持条件导致较低的模量降级和松弛变化值。损伤循环后的应力或应变恢复在100分钟内是明显的,但是90%的恢复发生在10分钟内。结果表明,测试条件的选择会影响表观的损伤效果。他们还表明10分钟的恢复时间足以稳定大多数损坏状态的度量。

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