首页|基于复合路径的连续纤维熔丝挤出成形轨迹优化研究

基于复合路径的连续纤维熔丝挤出成形轨迹优化研究

扫码查看
轨迹规划技术在复合材料熔丝挤出成形中非常关键,合理的轨迹可以提高增材制造成形零件的表面质量和强度.针对复合材料熔丝挤出成形的特点,结合多种路径规划算法,提出一种复合路径填充算法.引入NURBS曲线生成轮廓偏置路径,以保持切片轮廓的精度;在切片层的内部区域生成Zigzag填充路径,并在路径转折处进行圆弧优化,减少了约85%空行程,提高了成形效率;然后,基于生成的路径构建时间分析数学模型,以提前对整个制造过程所需的总体时间进行预估及分析,达到对制造过程的前馈控制;最后,使用复合路径填充算法对典型结构体进行模拟制造,相较传统算法减少了 28.3%~36.2%制造时间,提高了制造效率.
Analysis for Fusion Extrusion Trajectory Optimization of Continuous Fiber Based on Composite Paths
Trajectory planning technology plays an extremely important role in the extrusion molding of composite fuse,and the rea-sonable trajectory can improve the surface quality and strength of the parts formed by additive manufacturing.According to characteris-tics of extrusion molding of composite fuse,a composite path filling algorithm was proposed by combining multiple path planning algo-rithms.NURBS curve was introduced to generate contour bias path,so as to maintain the precision of slice contour;the Zigzag filling path was generated in the inner area of the slice layer,and arc optimization was conducted at the path turning point,about 85% of the non-cutting stroke was reduced and the forming efficiency was improved;a mathematical model of time analysis was built based on the gener-ated path,so as to predict and analyze the total time required by the whole manufacturing process in advance,and to achieve the feedfor-ward control of the manufacturing process;finally,the composite path filling algorithm was used to simulate and manufacture the typical structures,which reduced 28.3% to 36.2% of manufacturing time and improved manufacturing efficiency compared with the traditional algorithm.

additive manufacturingtrajectory planningcomposite pathsfeedforward controltime analysis model

朱珮旗、樊红日、钱波、茅健

展开 >

上海工程技术大学机械与汽车工程学院,上海 201620

增材制造 轨迹规划 复合路径 前馈控制 时间分析模型

国家自然科学基金青年科学基金

51705307

2024

机床与液压
中国机械工程学会 广州机械科学研究院有限公司

机床与液压

CSTPCD北大核心
影响因子:0.32
ISSN:1001-3881
年,卷(期):2024.52(2)
  • 20