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Topology and Size Optimization of a Gantry-type Industrial 3D Printer’s Beam

机译:龙门式工业3D打印机光束的拓扑和尺寸优化

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This paper aims at the influence of vibration of a gantry-type industrial 3D printer's beam on the precision of the printed parts. On this basis, a method based on topology optimization and size optimization is proposed to improved the beam structure. By establishing the equivalent dynamic model of the beam, the natural frequencies and mode shapes are solved and verified by the harmonic response test, with the beam's vibration obtained in X, Y and Z directions. Through the acceleration test, the impact of the vibration of the 3D printer on the printing accuracy is analyzed under typical conditions. The results show that the natural frequency and harmonic response performance of the optimized beam is greatly improved with better stiffness in operation.
机译:本文针对龙门式工业3D打印机光束的振动对打印零件的精度的影响。在此基础上,提出了一种基于拓扑优化和尺寸优化的方法来改善梁的结构。通过建立梁的等效动力学模型,通过谐波响应测试来求解和验证固有频率和振型,并获得梁在X,Y和Z方向上的振动。通过加速测试,可以分析典型条件下3D打印机振动对打印精度的影响。结果表明,优化后的梁的固有频率和谐波响应性能得到了极大的改善,并且具有更好的操作刚度。

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