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五支装品吸烟包装成型试验平台的设计与开发
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Abstract:
随着卷烟市场对卷烟包装的形式要求越来越高,在卷烟营销过程中对于品吸烟的包装形式提出了更高的要求,既要便于分发又要经济实惠,因此五支装抽屉式卷烟产品的需求越来越大。然而目前卷烟工厂针对五支装抽屉式卷烟产品的生产主要还是依靠手工包装,生产效率低,产品质量的一致性差。因此本文运用模块化的理念设计一种满足五支装抽屉式卷烟产品生产的实验平台,针对五支装抽屉式卷烟产品的包装工艺特点,将五支装抽屉式卷烟产品生产的实验平台设计成四工位结构,通过凸轮分割器将四工位连接成一个圆形的转台结构。在个各工位分别设计内盒下纸模块、烟支推送模块、内盒折叠模块和外盒成型模块,通过四个工位各功能模块的结构设计、执行机构选型以及组装调试协同作业,完成五支装抽屉式卷烟产品的包装,实验论证了设计的可靠性,五支装抽屉式卷烟产品生产的实验平台包装速度达到10包/min,可以稳定运行。
As the cigarette market has higher and higher requirements for the form of cigarette packaging, higher requirements have been put forward for the packaging form of cigarette smoking in the process of cigarette marketing, which should be easy to distribute and economical, so the demand for five-drawer cigarette products is increasing. However, at present, the production of five-drawer cigarette products in cigarette factories mainly relies on manual packaging, with low production efficiency and poor product quality consistency. Therefore, this paper uses the modular concept to design an experimental platform for the production of five-drawer cigarette products. According to the packaging process characteristics of five-drawer cigarette products, the experimental platform for the production of five-drawer cigarette products is designed into a four-station structure, and the four stations are connected into a circular turntable structure through a CAM separator. In each station, the inner box paper module, cigarette push module, inner box folding module and outer box forming module are designed respectively. Through the structural design of each function module in the four stations, the selection of actuator and the assembly and debugging cooperation, the packaging of five drawer cigarette products is completed. The reliability of the design is demonstrated by experiments. The experimental platform for the production of five-drawer cigarette products has a packaging speed of 10 packets/min, which can run stably.
[1] | 施忠兵, 吴建军, 陆宇桢. ZB45异型硬盒硬条包装机组的设计[J]. 烟草科技, 2020, 53(11): 97-102. |
[2] | 叶恒宇, 卢泉波, 林智华. 异型规格条盒纸自动化包装试验装置的研究与实现[J]. 工业控制计算机, 2020, 33(10): 148-149. |
[3] | 祁跃东, 马立, 李存华. 小包和条包异型尺寸在康巴斯包装机上的适应性分析及改造[J]. 郑州轻工业学院学报, 2014(2): 31-34. |
[4] | 卢泉波, 林智华, 叶恒宇. 基于GD包装技术平台的异型规格透明纸自动化包装试验装置的研究与实现[J]. 工业控制计算机, 2020, 33(9): 142-144. |
[5] | 李亚春, 马云参, 桂云峰. 多种尺寸自适应软包装或硬包装卷烟包装成型系统[P]. 中国, CN201610969026.6. 2017-07-11. |
[6] | 李亚春, 马云参, 桂云峰. 一种针对烟草捆包的调节装置和卷烟推进运动包装装置[P]. 中国, CN201621160663.0. 2017-04-26. |
[7] | 赵建, 张晓丹, 张子强, 等. 模块化机械设备及模块化设计方法综述[J]. 华中科技大学学报(自然科学版), 2021, 49(10): 19-29. |
[8] | 顾新建, 马步青, 顾福, 等. 产品模块化中的一些智能方法[J]. 机械工程学报, 2021, 57(17): 1-9. |
[9] | 陈娇, 顾元庆. 折纸运动学综述[J]. 力学进展, 2023, 53(1): 154-197. |
[10] | 朱元. SFC在西门子S7-1200编程教学中的应用[J]. 高等教育学报, 2015(5): 26-27. |
[11] | 罗志云, 朱崇阳, 陈军. 基于PLC的气动机械手调试与操作控制[J]. 电子测试, 2017(13): 12-13. |