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Investigations on fatigue analysis and biomimetic mineralization of glass fiber/sisal fiber/chitosan reinforced hybrid polymer sandwich composites

机译:玻璃纤维/ Sisa纤维/壳聚糖增强杂种聚合物夹芯复合材料疲劳分析及仿生矿化的研究

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In this study, chitosan/sisal/glass fiber (CS/SF/GF) reinforced hybrid polymer composite for femur bone fracture plate was developed. The CS/SF/GF hybrid composite possesses exclusive sandwich assembly and includes epoxy/GF/CS as the peripheral layers and epoxy/CS/SF as the inner layers. The composite arrangement be similar to the human bone assembly spongy interior cancellous medium and stiff peripheral cortical. The objective of this investigation was to determine the fatigue properties of CS/SF/GF hybrid sandwich composites, because cyclical loading is the foremost loads experienced by a femur plate during normal day to day activities such as walking and running. Tensile and fatigue properties were studied as per ASTM (D3039 and D3479) standards. Morphological behaviour of fractured fatigue samples was considered using scanning electron microscope. The biomimetic activity of CS/SF/GF composites was examined using biomimetic mineralization techniques with the help of simulated body fluid (SBF). The tensile study results proved that the A6 hybrid CS/SF/CTS composites impart higher ultimate tensile strength of 146?MPa and tensile modulus of 6.814?GPa compared to other combinations. The fatigue results revealed that the fatigue life of A5 hybrid CS/SF/GF composites withstand more than 1 million cycles (1.20?×?106) compared to other combinations. The presence of bone like apatite layer (Ca, Sr, Pb, Si, Ba, K, Pd and CI) from Simulated Body Fluid (SBF) onto CS/SF/GF layer were confirmed by XRD, SEM-EDAX and FT-IR. Further, the calcium/phosphate (Ca/P) ratio was found to be approximately 1.67 which is needed for the biological apatite layer formation, this proved the formation of apatite layer on the CS/SF/GF composite surface. The experimental test results proved that GF/SF/CTS/EP hybrid composite can be used for orthopaedic bone fracture plate applications.
机译:在本研究中,开发了抗壳聚糖/剑麻/玻璃纤维(CS / SF / GF)股骨骨折板的增强杂化聚合物复合材料。 CS / SF / GF杂化复合材料具有独家夹心组件,包括环氧/ GF / CS作为外周层和环氧/ CS / SF作为内层。复合布置类似于人骨组装海绵状内部松质介质和僵硬的外周皮质。该研究的目的是确定CS / SF / GF杂交夹层复合材料的疲劳性能,因为循环载荷是股骨板在正常日常活动中经历的最重要载荷,例如步行和运行。根据ASTM(D3039和D3479)标准进行拉伸和疲劳性能。考虑使用扫描电子显微镜考虑裂缝疲劳样品的形态学行为。在模拟体液(SBF)的帮助下,使用仿生矿化技术检查CS / SF / GF复合材料的仿真活性。拉伸研究结果证明A6杂交CS / SF / CTS复合材料赋予较高的抗拉强度为146Ω·MPa和拉伸模量,与其他组合相比。疲劳结果表明,与其他组合相比,A5杂交CS / SF / GF复合材料的疲劳寿命可承受超过100万次循环(1.20?×106)。通过XRD,SEM-eDAX和FT-IR确认将来自模拟体液(SBF)上的模拟体液(SBF)上的磷灰石层(Ca,Sr,Pb,Si,Ba,k,Pd和Ci)的存在于CS / SF / GF层上。此外,发现钙/磷酸盐(CA / P)比例为生物磷灰石层形成所需的约1.67,这证明了在CS / SF / GF复合表面上形成了磷灰石层。实验试验结果证明,GF / SF / CTS / EP杂化复合材料可用于整形外科骨折板应用。

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