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All-digital rapid design and manufacture of metal customized surgical guide plate
1. 华南理工大学 机械与汽车工程学院,广东 广州,510641
2. 2.广州军区广州总医院华侨科,广东 广州,510010
收稿日期:2009-06-30,
修回日期:2009-09-09,
网络出版日期:2010-05-25,
纸质出版日期:2010-05-25
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吴伟辉,杨永强,何兴容,丁焕文. 金属质个性化手术模板的全数字化快速设计及制造[J]. 光学精密工程, 2010,18(5):1135-1143
WU Wei-hui, YANG Yong-qiang, HE Xing-rong, et al. All-digital rapid design and manufacture of metal customized surgical guide plate
为满足手术模板对快速成型、精确定位和个性化的要求,基于逆向工程结合正向建模设计和选区激光熔化快速成型技术提出了一种全数字化设计、制造金属质个性化手术模板的方法。分析了手术模板的医学需求,从成型方式以及扫描策略两方面提出缩减成型时间、减轻成型件重量以及减少热变形的方案。分别研究了致密态成型和非致密态成型两种工艺,其中非致密态成型采用高扫描速度实现,成型过程采用邻层互错、正交及分区扫描策略。利用上述方法,成功设计了一套手术模板,并分别利用致密态以及非致密态两种方式对模板成型。结果表明,模板尺寸精度达±0.5 mm;另外,与致密态成型方式相比,非致密态方式的成型时间减少了43.3%,模板重量减轻了18%。该方法成型的手术模板已成功应用于临床。
In order to meet the needs of surgical guide plates for short-time design and producing circles
precise positioning and convenient operation
a method of all-digital rapid design and manufacture for metal customized surgical guide plates was proposed by using reverse-engineering
forward-design and selective laser melting technologies. Based on analysis of surgical needs
the method for shortening manufacture time
reducing plate weight and improving plate dimensional accuracy was figured out and both near-full-density-state forming and porous-state forming were investigated. The later used a high scanning speed to produce porous light part and shorten producing time
meanwhile it used offsetting scanning lines in two adjacent layers
orthogonal scanning and partition scanning to improve dimensional accuracy. Finally
according to the above ideas
a surgical guide plate model was designed successfully
and two metal guide plates were manufactured by porous-state forming and near-full-density-state forming
respectively. Results show that the dimensional accuracies of two plates are all ± 0.5 mm
but the manufacture time and weight of the porous plate have decreased by 43.3% and 18.2% as compared with that of the near-full density plate. The guide plate made by this method has been successfully applied to a surgery.
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