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作 者:杨起帆 蒋志维 YANG Qi-fan;JIANG Zhi-wei(College of Electrical and Mechanical Engineering,Northeast Forestry University,Harbin Heilongjiang 150006,China)
机构地区:[1]东北林业大学机电工程学院,黑龙江哈尔滨150006
出 处:《林业机械与木工设备》2023年第9期46-49,56,共5页Forestry Machinery & Woodworking Equipment
摘 要:针对我国木工机械行业数控化发展起步较晚、圆锯机存在设计能力弱、加工精度低、效率低、性能差等问题,提出了一种高精密数控优选多片圆锯机的设计方案。通过分层次结构布局和双排式锯片集成设计,采用高稳定无角位偏移精准传输结构和伺服独立控制模块锯片群,实现了高精度的锯切和自动化加工;通过仿真模拟与参数优化,优化了圆锯片的切割过程和振动控制,提高了加工精度和效率。高精密数控优选多片圆锯机的成功开发将促进木工机械行业的重大变革,推动木材加工和家具制造企业的快速发展,具有良好的市场前景和社会经济效益。In response to the late start of CNC development in China's woodworking machinery industry and the problems of weak design ability,low machining accuracy,low efficiency,and poor performance of circular saw machines,a design scheme for high-precision CNC optimized multi blade circular saw machines is proposed.This scheme adopts a hierarchical structure layout and a dual row saw blade integrated design,using a highly stable angular displacement accurate transmission structure and a servo independent control module saw blade group,achieving high-precision sawing and automated processing.Through simulation and parameter optimization,the cutting process and vibration control of the circular saw blade were optimized,improving machining accuracy and efficiency.The successful development of this project will promote significant changes in the woodworking machinery industry,promote the rapid development of wood processing and furniture manufacturing enterprises,and have good market prospects and socio-economic benefits.
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