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Influence of copper composition on mechanical properties of biodegradable material Mg-Zn-Cu for orthopedic application

机译:铜组合物对矫形施用生物降解材料Mg-Zn-Cu的力学性能

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Implant is usually used as a treatment of bone fracture. At the moment, non-biodegradable implants is still widely employed in this application. Non-biodegradable implant requires re-surgery to retrieve implants that are installed in the body. It increase the cost and it is painful for the patient itself. In order to solve the problem, Mg-based biodegradable metals is developing so that the material will be compatible with body and gradually degrade in patient's body. However, magnesium has several disadvantages such as high degradation rates and low mechanical properties when compared to the mechanical properties of natural bone. Therefore, it is necessary to add elements into the magnesium alloy. In this research, copper (Cu) was alloyed in Mg alloy based biodegradable material. In addition, Cu is not only strengthening the structure but also for supporting element for the immune system, antibacterial and antifungal. The purpose of this research is to improve mechanical properties of Mg-based biodegradable material using Cu alloying. Powder metallurgy method was used to fabricate the device. The variation used in this research is the composition of Cu (0.5, 1, and 1.5% Cu). The porosity test was performed using apparent porosity test, compressive test and hardness test to know the mechanical properties of the alloy, and the weightless test to find out the material degradation rate. Based on the results can be conclude that Mg-Zn-Cu alloy material with 1% Cu composition is the most suitable specimen to be applied as a candidate for orthopedic devices material with hardness value is 393.6 MPa. Also obtained the value of the compressive test is 153 MPa.
机译:植入物通常用作骨折的治疗。此时,在本申请中仍然广泛使用非生物降解的植入物。非生物降解的植入物需要重新手术以检索安装在体内的植入物。它增加了成本,患者本身是痛苦的。为了解决问题,基于Mg的可生物降解金属是开发的,使得材料与体内兼容并逐渐降解患者的身体。然而,与天然骨的机械性能相比,镁具有若干缺点,例如高降解速率和低机械性能。因此,必须将元素加入镁合金中。在该研究中,铜(Cu)用基于Mg合金的可生物降解材料合金化。另外,Cu不仅强化结构,而且还用于免疫系统的支撑元件,抗菌和抗真菌。本研究的目的是使用Cu合金化改善基于Mg基可生物降解材料的机械性能。粉末冶金方法用于制造装置。本研究中使用的变异是Cu(0.5,1和1.5%Cu)的组成。使用表观孔隙率测试,压缩试验和硬度测试进行孔隙率测试,以了解合金的机械性能,并且无失重测试以找出材料降解速率。基于该结果,可以得出结论,具有1%Cu组合物的Mg-Zn-Cu合金材料是最合适的样品作为透雕底透雕装置材料具有硬度值的候选物是393.6MPa。也获得了压缩试验的值为153MPa。

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