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首页> 外文期刊>Biomaterials >Mechanical properties and strength retention of carbon fibre-reinforced liquid crystalline polymer (LCP/CF) composite: an experimental study on rabbits.
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Mechanical properties and strength retention of carbon fibre-reinforced liquid crystalline polymer (LCP/CF) composite: an experimental study on rabbits.

机译:碳纤维增强液晶聚合物(LCP / CF)复合材料的力学性能和强度保持率:对兔子的实验研究。

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摘要

A novel composite material with ultra-high flexural strength and cortical-bone-matched elastic modulus made of liquid crystalline polymer reinforced with carbon fibres (LCP/CF) is described. Cylindrical rods of 3.2 mm diameter and 50 mm length were fabricated by a preimpregnation/pultrusion method. The initial mechanical properties of the LCP/CF rods were as follows: flexural strength 448 MPa, flexural modulus 43 GPa, shear strength 164 MPa, and interlaminar shear strength 15.3 MPa. In the in vitro study the LCP/CF rods were immersed in phosphate-buffered saline of 37 degrees C for 12, 24, and 52 weeks. In the in vivo study the LCP/CF rods were implanted into the medullary cavity of both femora and subcutaneous tissue of the New Zealand White rabbits for 12, 24, and 52 weeks. The flexural strength of the LCP/CF rods at 52 weeks was 463 MPa in saline, 467 MPa in the subcutaneous tissue and 466 MPa in the medullary cavity of the femur. The flexural modulus was 44.6, 48.9 and 46.2 GPa, respectively. The corresponding shear strength values were 160, 178 and 181 MPa. We conclude that the LCP/CF is a promising material for high-load applications and the LCP/CF rods retain their initial mechanical properties in one-year follow-up in vivo and in vitro.
机译:描述了一种由碳纤维增强的液晶聚合物(LCP / CF)制成的具有超高抗弯强度和皮质骨匹配弹性模量的新型复合材料。通过预浸渍/拉挤法制造直径为3.2mm,长度为50mm的圆柱棒。 LCP / CF棒的初始机械性能如下:弯曲强度448 MPa,弯曲模量43 GPa,剪切强度164 MPa,层间剪切强度15.3 MPa。在体外研究中,将LCP / CF棒浸入37摄氏度的磷酸盐缓冲盐水中12、24和52周。在体内研究中,将LCP / CF棒植入新西兰白兔的股骨和皮下组织的髓腔中12、24和52周。 LCP / CF棒在52周时的弯曲强度在生理盐水中为463 MPa,在皮下组织中为467 MPa,在股骨髓腔中为466 MPa。弯曲模量分别为44.6、48.9和46.2GPa。相应的剪切强度值为160、178和181 MPa。我们得出的结论是,LCP / CF棒是高负荷应用的有前途的材料,LCP / CF棒在体内和体外的一年随访中保持了其最初的机械性能。

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