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可注射胶原蛋白生物材料的剪切蠕变

Shear creep of injectable collagen biomaterials.

作者信息

Wallace D G, Rhee W, Weiss B

出版信息

J Biomed Mater Res. 1987 Jul;21(7):861-80. doi: 10.1002/jbm.820210704.

Abstract

Shear creep experiments in a parallel-plate apparatus were carried out on two injectable forms of collagen: semidilute nonfibrillar solutions (32 and 45 mg protein/mL) and aqueous fibrillar suspensions (at 35 and 65 mg/mL). Nonfibrillar solutions were more easily deformed than fibrillar suspensions, and both materials continued to deform slowly, even at long times (up to 6 X 10(4) sec). When the creep compliance, J(t), was plotted versus t1/3, regions of linear dependence were identified, which indicated that the materials were undergoing Andrade creep. At higher stress levels, J(t) diverged from t1/3, and true viscous flow occurred. A delayed viscosity could be calculated which agreed with viscosities derived from measurements under conditions of steady shear Couette flow. The time of onset of viscous flow was identified with a specific strain for each material, suggesting yield strain behavior. An analysis of recovery curves showed that at low stress levels or for short experimental times, the Boltzmann superposition was approximately obeyed, indicating linear behavior. At high stress levels and times greater than 10(3) sec, both nonfibrillar solutions and fibrillar suspensions showed marked curvature of stress-strain curves, which indicated that the materials are nonlinear in creep.

摘要

在平行板装置中对两种可注射形式的胶原蛋白进行了剪切蠕变实验

半稀释非纤维状溶液(32和45毫克蛋白质/毫升)和水性纤维状悬浮液(35和65毫克/毫升)。非纤维状溶液比纤维状悬浮液更容易变形,并且两种材料即使在长时间(长达6×10⁴秒)也继续缓慢变形。当将蠕变柔量J(t)与t¹/³作图时,确定了线性相关区域,这表明材料正在经历安德拉德蠕变。在较高应力水平下,J(t)偏离t¹/³,并且发生了真正的粘性流动。可以计算出延迟粘度,其与在稳态剪切库埃特流动条件下测量得出的粘度一致。粘性流动开始的时间与每种材料的特定应变相关,表明存在屈服应变行为。对恢复曲线的分析表明,在低应力水平或短实验时间下,近似遵循玻尔兹曼叠加原理,表明为线性行为。在高应力水平和大于10³秒的时间下,非纤维状溶液和纤维状悬浮液的应力-应变曲线均显示出明显的曲率,这表明材料在蠕变中是非线性的。

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