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Laser Surface Texturing of Alumina/Zirconia Composite Ceramics for Potential Use in Hip Joint Prosthesis

机译:用于髋关节假体的氧化铝/氧化锆复合陶瓷的激光表面纹理化

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The use of metal shell to fix an acetabular cup to bone in hip joint prosthesis carries some limitations, including restrictions in prosthetic femur ball diameter and in patient’s range of motion. These drawbacks could be ideally overcome by using a monolithic ceramic acetabular cup, but the fixation of such an implant to host bone still remains a challenge. Since porous surfaces are known to promote more bone tissue interlocking compared to smooth materials, in this work the surfaces of sintered alumina/zirconia composite ceramics were treated by a pulsed laser radiation at 1064 nm with a pulse width in the nanosecond range, in order to impart controlled textural patterns. The influence of laser process parameters (e.g., energy per pulse, repetition rate, scanning speed, repetition number, angle of laser beam, and number of cycles) on the roughness and texture orientation was systematically investigated. The obtained surface topographies were inspected by optical and scanning electron microscopy, and the roughness was assessed by contact profilometry. Surface roughness could be modulated in the range of 3 to 30 μm by varying the processing parameters, among which the number of cycles was shown to play a major role. The laser treatment was also successfully adapted and applied to ceramic acetabular cups with a curved profile, thus demonstrating the feasibility of the proposed approach to process real prosthetic components.
机译:使用金属壳将髋臼杯固定到髋关节假体的骨头上存在一些限制,包括假体股骨球直径和患者运动范围的限制。通过使用整体式陶瓷髋臼杯可以理想地克服这些缺陷,但是将这种植入物固定在宿主骨骼上仍然是一个挑战。由于与光滑材料相比,已知多孔表面可促进更多的骨组织互锁,因此在这项工作中,用1064 nm的脉冲激光辐射(脉冲宽度在纳秒范围内)对氧化铝/氧化锆烧结陶瓷的表面进行处理,以便赋予受控的纹理图案。系统地研究了激光加工参数(例如每脉冲能量,重复率,扫描速度,重复次数,激光束角度和循环次数)对粗糙度和纹理取向的影响。通过光学和扫描电子显微镜检查获得的表面形貌,并通过接触轮廓测定法评估粗糙度。通过改变加工参数,可以在3至30μm的范围内调节表面粗糙度,其中循环次数起主要作用。激光治疗也成功地应用于具有弯曲轮廓的陶瓷髋臼杯,从而证明了所提出的方法来处理实际假体组件的可行性。

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