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Freeform Extrusion of High Solids Loading Ceramic Slurries, Part Ⅱ: Extrusion Process Control

机译:高固体挤出加载陶瓷浆料,第Ⅱ部分:挤出过程控制

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Part Ⅰ of this paper provided a detailed description of a novel fabrication machine for high solids loading ceramic slurry extrusion and presented an empirical model of the ceramic extrusion process, with ram velocity as the input and extrusion force as the output. A constant force is desirable in freeform extrusion processes as it correlates with a constant material deposition rate and, thus, good part quality. The experimental results in Part Ⅰ demonstrated that a constant ram velocity will produce a transient extrusion force. In some instances the extrusion force increased until ram motor skipping occurred. Further, process disturbances, such as air bubble release and nozzle clogging that cause sudden changes in extrusion force, were often present. In this paper a feedback controller for the ceramic extrusion process is designed and experimentally implemented. The controller intelligently adjusts the ram motor velocity to maintain a constant extrusion force. Since there is tremendous variability in the extrusion process characteristics, an on-off controller is utilized in this paper. Comparisons are made between parts fabricated with and without the feedback control. It is demonstrated that the use of the feedback control reduces the effect of process disturbances (I.e., air bubble release and nozzle clogging) and dramatically improves part quality.
机译:本文第Ⅰ部分提供了一种用于高固体装载陶瓷浆料挤出的新型制造机器的详细描述,并呈现了陶瓷挤出工艺的经验模型,RAM速度为输入和挤出力作为输出。在自由挤出工艺中希望恒定力,因为它与恒定材料沉积速率相关,因此良好的部分质量。第一部分的实验结果证明了恒定的柱塞速度将产生瞬态挤出力。在某些情况下,挤出力增加到RAM电机跳跃发生。此外,通常存在处理扰动,例如气泡释放和喷嘴堵塞,导致挤出力突然变化。在本文中,设计和实验实施了陶瓷挤出过程的反馈控制器。控制器智能地调节RAM电机速度以保持恒定的挤出力。由于挤出处理特性存在巨大变化,因此本文使用了开关控制器。在具有和无反馈控制的部件之间进行比较。结果证明,使用反馈控制降低了过程干扰(即气泡释放和喷嘴堵塞)的效果,并显着提高了部件质量。

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