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Customized a Ti6Al4V Bone Plate for Complex Pelvic Fracture by Selective Laser Melting

机译:通过选择性激光熔化定制用于复杂骨盆骨折的Ti6Al4V骨板

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摘要

In pelvic fracture operations, bone plate shaping is challenging and the operation time is long. To address this issue, a customized bone plate was designed and produced using selective laser melting (SLM) technology. The key steps of this study included designing the customized bone plate, metal 3D printing, vacuum heat treatment, surface post-processing, operation rehearsal, and clinical application and evaluation. The joint surface of the bone plate was placed upwards with respect to the build platform to keep it away from the support and to improve the quality of the joint surface. Heat conduction was enhanced by adding a cone-type support beneath the bone plate to prevent low-quality fabrication due to poor heat conductivity of the Ti-6Al-4V powder. The residual stress was eliminated by exposing the SLM-fabricated titanium-alloy bone plate to a vacuum heat treatment. Results indicated that the bone plate has a hardness of HV1 360–HV1 390, an ultimate tensile strength of 1000–1100 MPa, yield strength of 900–950 MPa, and an elongation of 8%–10%. Pre-operative experiments and operation rehearsal were performed using the customized bone plate and the ABC-made pelvic model. Finally, the customized bone plate was clinically applied. The intraoperative C-arm and postoperative X-ray imaging results indicated that the customized bone plate matched well to the damaged pelvis. The customized bone plate fixed the broken bone and guides pelvis restoration while reducing operation time to about two hours. The customized bone plate eliminated the need for preoperative titanium plate pre-bending, thereby greatly reducing surgical wounds and operation time.
机译:在骨盆骨折手术中,骨板成形困难且手术时间长。为了解决这个问题,使用选择性激光熔化(SLM)技术设计和生产了定制的骨板。这项研究的关键步骤包括设计定制的骨板,金属3D打印,真空热处理,表面后处理,手术演练以及临床应用和评估。骨板的接合面相对于构建平台向上放置,以使其远离支撑件并提高接合面的质量。通过在骨板下方添加锥形支撑物来增强热传导,以防止由于Ti-6Al-4V粉末导热性差而导致的低质量制造。通过将SLM制造的钛合金接骨板进行真空热处理,可以消除残余应力。结果表明,骨板的硬度为HV1 360–HV1 390,极限抗拉强度为1000–1100 MPa,屈服强度为900–950 MPa,伸长率为8%–10%。使用定制的骨板和ABC制作的骨盆模型进行术前实验和手术演练。最后,定制的骨板在临床上得到了应用。术中C臂和术后X射线成像结果表明,定制的骨板与受损骨盆匹配良好。定制的骨板固定骨折的骨头并引导骨盆恢复,同时将手术时间减少到大约两个小时。定制的骨板消除了术前钛板预弯曲的需要,从而大大减少了手术伤口和手术时间。

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