首页> 外文会议>Pacific Rim International Conference on Advanced Materials and Processing(PRICM 5) pt.3 >Dynamic rheological behaviors of the bone scaffold reinforced by chitin fibres
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Dynamic rheological behaviors of the bone scaffold reinforced by chitin fibres

机译:几丁质纤维增强骨支架的动态流变行为

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In this study, a novel bioabsorbable porous bone scaffold reinforced by chitin fibres was prepared, the porosity of which is about 90 % and the pore size is approximately 200um. The Advanced Rheological Enlarged System (ARES) was used to study the dynamic rheological behaviors of the ropy materials which would be made into the reinforced scaffold. The increase of the fibres' volume content (C_f) enhanced the complex modulus (G ) and complex viscosity (η~*) of the materials, the reason of which is that the fibres formed networks in the materials. When Cf increased from 35 % to 45 %, the storage modulus (G') and loss modulus (G") curve showed obvious yielding behavior, which indicates that G' and G" of the materials are hardly variable in a wide range. When Cf was more than 35 %, the loss factor (tan8) was obviously lower than 1 and the materials exhibited viscoelastic properties, which result in a disadvantage for materials' processing.
机译:在这项研究中,制备了一种新型的由几丁质纤维增强的可生物吸收的多孔骨支架,其孔隙率约为90%,孔径约为200um。使用高级流变放大系统(ARES)研究将被制成增强型脚手架的ropy材料的动态流变行为。纤维体积含量(C_f)的增加增强了材料的复数模量(G)和复数粘度(η〜*),其原因是纤维在材料中形成了网状结构。当Cf从35%增加到45%时,储能模量(G')和损耗模量(G“)曲线显示出明显的屈服行为,这表明材料的G'和G”在宽范围内几乎不变。当Cf大于35%时,损耗因子(tan8)明显低于1,并且材料表现出粘弹性,这对材料的加工造成不利影响。

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