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首页> 外文期刊>Rapid prototyping journal >Investigating pressure advance algorithms for filament-based melt extrusion additive manufacturing: theory, practice and simulations
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Investigating pressure advance algorithms for filament-based melt extrusion additive manufacturing: theory, practice and simulations

机译:调查压力提前算法,用于丝丝熔体挤出添加剂制造业:理论,实践与仿真

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Purpose This paper aims to present the mathematical foundation of so-called advance algorithms, developed to compensate for defects during acceleration and deacceleration of the print head in filament-based melt extrusion additive processes. It then investigates the validity of the mathematical foundation, its performance on a low-cost system and the effect of changing layer height on the algorithm's associated process parameter. Design/methodology/approach This study starts with a compilation and review of literature associated with advance algorithms, then elaborates on its mathematical foundation and methods of implementation. Then an experiment displaying the performance of the algorithm implemented in Marlin machine firmware, Linear Advance 1.0, is performed using three different layer heights. The results are then compared with simulations of the system using Simulink. Findings Findings suggests that advance algorithms following the presented approach is capable of eliminating defects because of acceleration and deacceleration of the print head. The results indicate a layer height dependency on the associated process parameter, requiring higher compensation values for lower layer heights. It also shows higher compensation values for acceleration than deacceleration. Results from the simulated mathematical model correspond well with the experimental results but predict some rapid variations in flow rate that is not reflected in the experimental results.
机译:目的本文旨在介绍所谓的预先算法的数学基础,该算法开发,以补偿丝网熔体挤出添加剂方法的加速和脱色期间的缺陷。然后,它研究了数学基础的有效性,它在低成本系统上的性能以及在算法相关过程参数上改变层高度的影响。设计/方法/方法本研究开始于与先进算法相关的文献的编译和审查,然后详细说明其数学基础和实施方法。然后,使用三种不同的层高度执行显示在Marlin机器固件中实现的算法性能的实验。然后将结果与使用Simulink的系统的模拟进行比较。调查结果表明表明,由于打印头的加速和DeaCeleration,所提出的方法之后的预先算法能够消除缺陷。结果表明了对相关过程参数的层高度依赖性,需要更高的较低层高度的补偿值。它还显示了比DEACCELERATER更高的加速度的补偿值。模拟数学模型的结果与实验结果相处不同,但预测了在实验结果中没有反映的流速的一些快速变化。

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