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作 者:陈水胜[1] 杨立[1] 袁博 CHEN Shui-sheng;YANG Li;YUAN Bo(Hubei University of Technology,Wuhan 430068,China;Wuhan City Polytechnic,Wuhan 430202,China)
机构地区:[1]湖北工业大学,武汉430068 [2]武汉城市职业技术学院,武汉430202
出 处:《包装工程》2022年第21期198-205,共8页Packaging Engineering
基 金:武汉市市属高校产学研研究项目(CXY202020);武汉城市职业学院科研创新团队建设计划资助项目(2020whcvcTD02)。
摘 要:目的提升瓦楞机的主要性能指标,以满足高效高质的瓦楞成型要求。方法通过研究瓦楞纸板成型质量的影响因素、现有瓦楞机传动系统的特点,以及传动系统刚度对其性能的影响,提出一种可抑制振动的差齿传动高刚度结构及控制方案,开展仿真研究,改进现有机型的传动系统结构并进行试验验证。结果得到优化前后瓦楞辊的角速度和角加速度曲线,发现角速度波动范围由75~225 deg/s变化到100~150 deg/s,角加速度波动范围由−740~370 deg/s^(2)变化到−100~110 deg/s^(2)。试验测量发现,瓦楞纸板厚度极值之差从0.23 mm降低至0.09 mm,噪声同比减少了4%~15.2%。结论差齿传动方案是可行的,为提高瓦楞机传动系统刚度、提升瓦楞成型质量给出新思路,并提供了技术支持。The work aims to improve the main performance indicators of the corrugator to meet the requirements of high-efficiency and high-quality corrugated forming.After the affecting factors of corrugated board forming quality and the characteristics of the existing corrugator transmission system were studied,the high-rigidity structure and control scheme of differential gear transmission that could suppress vibration were proposed aiming at effect of the rigidity of the transmission system on its performance.Then,simulation research was carried out and experimental verification was conducted by improving the transmission system structure of existing model.The angular velocity and angular acceleration curves of the corrugated roll before and after the optimization were obtained.It was found that the angular velocity fluctuation range was from 75-225 deg/s to 100-150 deg/s,and the angular acceleration fluctuation range was from‒740-370 deg/s^(2) to‒100-110 deg/s^(2).According to the experimental measurement results,the difference in the extreme thickness of corrugated board decreased from 0.23 mm to 0.09 mm,and the noise was reduced by 4%-15.2%on year-on-year basis.Therefore,the differential gear transmission scheme is feasible,which provides new ideas and technical support for improving the rigidity of the corrugator transmission system and the quality of corrugated forming.
分 类 号:TB486[一般工业技术—包装工程] TH132[机械工程—机械制造及自动化]
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