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Experimental study on magnesium wire-polylactic acid biodegradable composite implants under in vitro material degradation and fatigue loading conditions

机译:体外材料降解和疲劳负载条件下镁铁乳酸可生物降解复合材料植入物的实验研究

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摘要

This study investigated the fatigue life of biodegradable magnesium wire-polylactic acid (Mg/PLA) composite implants during the initial patient rehabilitation period under physiological loads through experimental and finite element methods. Under a simulated body fluid condition, the fatigue life was observed to be completely affected by material degradation, which accelerated the pitting corrosion of the composite bone plate. The mechanical behaviour of Mg/PLA composite bone plate was investigated under physiological loading conditions for the case of a tibial fracture with a 3 mm gap. A three-point bending fatigue test setup was employed to validate the fatigue characteristics of composite specimens. Finally, to alleviate the generated stress and enhance the fatigue resistance of fully biodegradable composites, a hybrid composite bone plate is proposed. At the screw section, the hybrid composite is partly composed of a comparatively more fatigue-safe nondegradable glass-polypropylene composite, which improves the healing performance of the fractured tibia.
机译:本研究研究了通过实验和有限元方法在生理载荷下的初始患者康复期间生物降解镁线 - 聚乳酸(Mg / PLA)复合植入物的疲劳寿命。在模拟体液条件下,观察到疲劳寿命完全受到物质劣化的影响,这加速了复合骨板的点蚀腐蚀。在具有3mm间隙的胫骨骨折的病例下研究了Mg / PLA复合骨板的机械特性。采用三点弯曲疲劳试验装置来验证复合标本的疲劳特性。最后,为了缓解产生的应力并提高完全可生物降解复合材料的疲劳性,提出了一种混合复合骨板。在螺纹部分,杂化复合材料部分由相对更疲劳安全的玻璃聚丙烯复合材料部分组成,可提高骨折胫骨的愈合性能。

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