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The application of the skipped layer interior method and higher deposition height to accelerate fabrication speed of the model maker rapid prototyping system

机译:跳过层内部方法和更高的沉积高度的应用可加快模型制造者快速原型系统的制造速度

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摘要

The Model Maker (MM) process is one of the jet deposition rapid prototyping (RP) systems that delivers material through a jet and deposits the liquefied material onto a platform to build a physical model. The fabrication speed of the MM model is extremely low because of the low deposition rate and cutting operation. In order to accelerate the fabrication speed of the MM, the line pitch of the MM processing parameters was reconfigured to increase the deposition rate and, hence, increase the deposition height. The cutting operation of the MM removes almost half of the deposited material because of the requirements of model accuracy and layer thickness. In order to reduce the amount of the removed material, a skipped layer interior method was employed. The reconfiguration of the line pitch to increase deposition height enabled more interior layers to be skipped and, hence, less deposited material was removed. Therefore, the fabrication speed was significantly accelerated. The results show that the average model printing time saved was around 40% for all layer thicknesses, while the model accuracy and the layer thickness were still the same as in the original MM process.
机译:Model Maker(MM)工艺是喷射沉积快速成型(RP)系统之一,该系统可通过喷射将材料输送并将液化的材料沉积到平台上以建立物理模型。 MM模型的制造速度极低,这是因为沉积速率和切割操作低。为了加快MM的制造速度,MM加工参数的线间距被重新配置为增加沉积速率,并因此增加沉积高度。由于模型精度和层厚的要求,MM的切割操作几乎可以去除一半的沉积材料。为了减少去除的材料量,采用了跳过层内部方法。线间距的重新配置以增加沉积高度使得能够跳过更多的内层,因此,去除了更少的沉积材料。因此,大大提高了制造速度。结果表明,所有层厚度的平均模型打印时间节省了约40%,而模型精度和层厚度仍与原始MM工艺相同。

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