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作 者:高文英 林静[1] 李宝筏[1] 王伟[1] 谷士艳[1] GAO Wen-ying;LIN Jing;LI Bao-fa;WANG Wei;GU Shi-yan(College of Engineering,Shenyang Agricultural University,Shenyang 110866,China)
出 处:《吉林大学学报(工学版)》2022年第4期970-980,共11页Journal of Jilin University:Engineering and Technology Edition
基 金:国家自然科学基金项目(51275318);公益性行业(农业)科研专项项目(201503116-09);辽宁省农村经济委员会与质量技术监督局地方标准项目(2016160-27)。
摘 要:针对玉米秸秆深埋还田机田间作业过程中振动剧烈的问题,对其振动特性进行了研究,并以提高低阶固有频率为目标优化机具结构,提高机具作业效果。通过模态分析,获取机具的固有频率;田间测试得到机具8个测试点的振动特性及功率谱;应用ISIGHT耦合平台对机具主结构进行了参数优化,避开了机具外部主要激振频率。研究表明:机具在田间作业过程中的振动主要由前进速度、自身结构、外部激励及地表情况决定,覆土装置和镇压装置具有一定的吸能减振作用,其中机具尾部已经发生共振;影响机具振动的主频集中在8~16 Hz,接近机具1阶和2阶固有频率;优化后机具主结构的1阶固有频率提升至20.348 Hz,可有效避免共振。田间试验表明,机具优化后作业过程中振动减少,噪音降低,作业效果良好,为秸秆深埋还田机具的设计优化提供了一定的理论参考。To solving the problems of severe vibration and poor stability of maize straw deep bury and returning machine during the field operation,the vibration characteristics and influence rules of the machine are studied. In addition,increasing its low-order natural frequency is taken as the goal to optimize the structure of the implement and improve its operating effect. First,the natural frequencies of the machines are extracted through finite element modal analysis. Secondly,through the field testing,the amplitude statistical characteristics and power spectrum of the eight test points on the machines are obtained to analyze their impact on the vibration characteristics of the whole machine. Finally, based on the ISIGHT multidisciplinary software platform,the sequence quadratic programming method is used to optimize the parameters of the main structure of the implements,avoid the main external excitation frequency and optimize the structure of the implement. The research shows that machine vibration is mainly determined by forward speed,its own structure,and the conditions of soil and ground surface. When the implements operate,resonance has occurred at the tail of the frame,the covering device and the suppression wheel have a certain adsorption effect on vibration. Through the analysis on power spectrum,the main frequency that affects the vibration of the implement is concentrated at 8~16 Hz,which is close to the first-order and the second-order natural frequencies. The optimized first-order natural frequency of the main structure of the whole machine is increased to 20.348 Hz,which effectively avoids the resonance. The field experiment shows that the optimized implements can reduces vibration and noise during operation,and the effect of the operation is good,which provides a certain theoretical reference for the design optimization of the maize straw deep bury and returning machine.
关 键 词:农业机械化 秸秆深埋还田机 振动 频率 结构优化
分 类 号:S222.4[农业科学—农业机械化工程]
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