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Stress-strain analysis of porous scaffolds made from titanium alloys synthesized via SLS method

机译:SLS法合成钛合金多孔支架的应力应变分析

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A layer-by-layer selective laser sintering (SLS) technology seems to be greatly promising for solving the plastic surgery problems, particularly those pertaining to the facial reconstruction. Made from titanium-based alloys (titanium or nitinol, i.e. NiTi-intermetallic phase), the porous scaffolds for cranioplasty are an efficient tool for rectifying the face defects and for the dental orthopedic surgery. The progress in the oral surgery and teeth implantation is caused by the problem of an osteointegration on the one hand, and by achievements of the implant synthesis techniques, on the other hand. An important problem thereby is a profound study of the stress-strain behavior of porous implants under the masticatory load or pressure. In the present study the ways for the optimization of the porous implant structural and strength properties as the function of the laser synthesis parameters are described. The finite element approach (ANSYS) was used here for a complex dowel description and numerical simulations.rnIn order to evaluate the processes in the porous implant under the external loading, a CAD 3D model was built for different internal and external configurations of the implant and/or initial shape of powdered particles. The stress-strain dependences were calculated that displayed the irregularity of the stress distribution by the implant volume in the bone tissue. Most of the values are concentrated in places of object contact.
机译:层层选择性激光烧结(SLS)技术似乎对于解决整形外科问题特别是与面部修复有关的问题很有希望。由钛基合金(钛或镍钛诺,即NiTi-金属间化合物相)制成的用于颅骨成形的多孔支架是矫正面部缺陷和进行骨科手术的有效工具。口腔手术和牙齿植入的进展一方面是由于骨整合的问题,另一方面是由于植入物合成技术的成就。因此,重要的问题是对咀嚼负荷或压力下多孔植入物的应力-应变行为的深入研究。在本研究中,描述了根据激光合成参数优化多孔植入物结构和强度特性的方法。为了有限度地描述销钉和进行数值模拟,这里使用了有限元方法(ANSYS)。为了评估多孔加载在外部载荷下的过程,针对不同的内部和外部配置,建立了一个CAD 3D模型。 /或粉末状颗粒的初始形状。计算出应力-应变依赖性,该依赖性显示出骨骼组织中植入物体积造成应力分布的不规则性。大多数值集中在对象接触的地方。

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