基于计算机数控的气动冲床的设计与制造

P Nagaprakash, C. M. Sundaram, A. V. Rajan, J. C. Samy, Durai A. Vembathu Rajesh
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引用次数: 0

摘要

冲孔在工业上有广泛的用途。孔需要在片上打孔;需要装配用的各种材料的管子。在这里,各种材料上的孔是通过施加气动力来促进的,这是由计算机数控完全自动化的。冲孔钣金所需的压力高达10bar。冲孔运动由g码和m码通过Master Cam软件对气缸的各个位置进行控制。通过Multisim软件对电路进行了设计和分析。通过Arduino电路板对链链轮和气缸的运动进行延时控制。延时编码由Arduino软件编码。对不同材料冲孔所需的总冲孔力进行了分析和评价。然后,得出哪一种适合在易破碎的条件下冲孔。关键词:数控,气动,Master Cam & Multisim软件,Arduino电路板
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Design and Fabrication of Computerized Numerical Control Based Pneumatic Punching Machine
Punching has a wide usage in industries. Holes need to be punched in sheets; pipes of a various materials for assembly purpose are demanded. Here, the promotion of holes in various materials is carried by applying pneumatic force which was fully automated by computerized numerical control. The pressure is required up to 10bar to punch the sheet metal. Punching movement is controlled by G-codes & M-codes through Master Cam software for various position of pneumatic cylinder. The circuit is designed and analysed through Multisim software. The movement of chain & sprocket and pneumatic cylinder were gets time delayed its working by Arduino circuit board. The coding for time delay is coded by Arduino software. The total punching force required for punch the different material is analyzed and evaluated. Then, conclude which one is suitable for punching the material in easily and non-broke able condition. Keywords— CNC, Pneumatic, Master Cam & Multisim Software, Arduino Circuit Board.
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