低矮型自走式果园喷雾机动力底盘设计
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国家高技术研究发展计划(863计划)资助项目(2008AA100903);国家公益性行业(农业)科研专项经费资助项目(201203025)


Design of Power Chassis for Low Self-propelled Orchard Sprayer
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    摘要:

    针对传统果园种植模式迫切需要行间高通过性植保动力机械的现状,设计了低矮型自走式果园喷雾机动力底盘。通过理论计算与虚拟样机分析,设计了多动力输出分动装置,实现各工作部件独立运转;行走变速箱与高低速挡位配合操作,实现(3+1)×2个挡位,并可根据路面状况进行两驱与四驱自由切换;整机行间最低通过高度1600mm;前轮越障高度随药量变化缓慢,由87mm下降到70mm,后轮越障高度与喷雾机重心无关;最小转弯半径2000mm左右。基于Creo的仿真结果显示机具稳定性好,变速范围为1.5~16km/h,药箱药液量的变化对整机重心变化及其坡道行驶稳定特性影响较小。

    Abstract:

    A low self-propelled sprayer for conventional orchard was developed in order to solve the plant protection mechanization. The power distribution unit was designed by theoretical analysis and virtual prototype to realize all working parts running independently. Eight shifts were designed by main and assistant gear-box. The sprayer could switch two-wheel drive to four-wheel drive according to running condition. Its minimum trafficable height was 1600mm. In the dosage range of 0~400L, the front wheels crossed obstacles reduced from the 87mm to the 70mm, and rear wheel obstacles height was independent of dosage. The minimum turning radius was about 2000mm. The simulation result by Creo Parametric 2.0 showed the sprayer worked steadily, and the velocity was between 1.5 to 16km/h. The effects of pesticide volume on centre of gravity and stability were little.

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丁素明,傅锡敏,薛新宇,周良富,吕晓兰.低矮型自走式果园喷雾机动力底盘设计[J].农业机械学报,2013,44(Supp1):100-106.

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  • 在线发布日期: 2013-10-22
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