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4CX-1型大葱收获机的研究 被引量:8
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作者 张军强 任冬梅 李青江 《农业装备与车辆工程》 2012年第9期43-44,51,共3页
4CX-1型大葱收获机是一种三点悬挂牵引式大葱收获机械。拖拉机作为配套动力牵引机架前行;PTO后动力输出作为驱动动力,带动刀盘式开沟器旋转,在大葱葱垄靠近拖拉机一侧开取沟槽,后刀深入沟槽底部,在葱垄底部切割抬升葱垄,松动大葱包络土... 4CX-1型大葱收获机是一种三点悬挂牵引式大葱收获机械。拖拉机作为配套动力牵引机架前行;PTO后动力输出作为驱动动力,带动刀盘式开沟器旋转,在大葱葱垄靠近拖拉机一侧开取沟槽,后刀深入沟槽底部,在葱垄底部切割抬升葱垄,松动大葱包络土壤,起到大葱收获的目的。其制造成本较低;同时可以适用于多种块茎类作物的收获,具有很好的通用性强;以拖拉机作为配套动力操作方便,适用于中国大葱的小规模种植模式。 展开更多
关键词 三点悬挂 后动力输出 开沟器 后刀
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4CX-1型大葱收获机的优化设计 被引量:6
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作者 李青江 闵令强 +1 位作者 孙志民 秦喜田 《农业装备与车辆工程》 2013年第8期63-67,共5页
4CX-1型大葱收获机是一种三点悬挂牵引式大葱收获机械;拖拉机作为驱动动力牵引机架前行。这里对大葱收获机的总体结构进行了优化设计;对刀盘进行了优化设计,确定了刀盘的旋向、结构以及刀具数量;对后刀进行受力分析、三维建模的应力分... 4CX-1型大葱收获机是一种三点悬挂牵引式大葱收获机械;拖拉机作为驱动动力牵引机架前行。这里对大葱收获机的总体结构进行了优化设计;对刀盘进行了优化设计,确定了刀盘的旋向、结构以及刀具数量;对后刀进行受力分析、三维建模的应力分析并优化,确定良好的结构形式。使大葱收获机有较好的经济性和稳定性。 展开更多
关键词 大葱收获机 旋耕 后刀 应力分析
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Effect of flank angle and friction coefficient on contact stress of turbine rotor 被引量:1
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作者 WU Xiao-zan TAO Qing-bin +1 位作者 CHEN An-ping XU Hui 《Journal of Central South University》 SCIE EI CAS 2013年第7期1792-1796,共5页
In order to simulate the stress of turbine rotor in aeroengine, based on the ANSYS, the simplification model of the turbine rotor was built up. By applying the simplification model, the contact stress of turbine rotor... In order to simulate the stress of turbine rotor in aeroengine, based on the ANSYS, the simplification model of the turbine rotor was built up. By applying the simplification model, the contact stress of turbine rotor was computed. The maximum contact stress appears at the chamfer below the flank, which agrees with experiment result. At the same time, the contact stress changing with the flank angle and friction coefficient was calculated, The results show that the contact stress in the flank increases slowly with the increase of flank angle; with the friction coefficient increasing, the contact stress in flank length decreases; the contact stress will not change when the friction coefficient is over 0.25. 展开更多
关键词 AEROENGINE contact stress ANSYS optimization design
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A New Manufacturing Method for Hourglass Worm Gear Hob Based on a Semi⁃automatic CAD
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作者 LONG Xinjiani LI Haitao +3 位作者 RUI Chengjie YANG Jie ZHANG Xiaodi WEI Wenjun 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2020年第6期914-927,共14页
The top relief surfaces of an hourglass worm gear hob are ground manually in the traditional manufacturing process,which cannot ensure the width of the land surfaces of the hob.Moreover,each geometric feature of the h... The top relief surfaces of an hourglass worm gear hob are ground manually in the traditional manufacturing process,which cannot ensure the width of the land surfaces of the hob.Moreover,each geometric feature of the hob has been produced through different manufacturing techniques and machine tools,which results in low efficiency.To solve this problem,we propose a semi-automatic computer aided design(CAD)method for hobs.The point clouds of each feature surface of a hob are calculated by combing mathematical equations of the top relief surfaces built by the proposed method with other existing equations of hob surfaces.According to the point clouds,the method can achieve the automatic modeling for the hob in three-dimensional(3D)software by classifying and extracting the parameter information of the feature-hierarchical knowledge of the hob.Based on the generated 3D model,the entire surfaces of the hob can be manufactured on a four-axis computer numerical control(CNC)milling machine through only twice clamping.Verification of the width of the land surface of the hob manufactured by semi-automatic CAD method on a measuring projector proved the precision of the designed width can be ensured.The edge of the contact area on the worm wheel in a meshing experiment is clear and distinct,which means the worm gear drive is meshed well and the hob manufactured by the proposed method has improved machinability.The method simplifies the processing technique,and improves the design efficiency and production accuracy. 展开更多
关键词 hourglass worm gear hob top relief surface feature-hierarchical knowledge SEMI-AUTOMATIC computer aided design(CAD)
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