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基于薯类收获机的装配式设计可行性分析

王本祥 蒋俊凤 张谦 蒋永梅 毛丹丹

农机化研究2025,Vol.47Issue(4):132-136,5.
农机化研究2025,Vol.47Issue(4):132-136,5.DOI:10.13427/j.issn.1003-188X.2025.04.019

基于薯类收获机的装配式设计可行性分析

Feasibility Analysis of Assembly Design Based on Potato Harvester

王本祥 1蒋俊凤 2张谦 3蒋永梅 3毛丹丹2

作者信息

  • 1. 日照市农业技术服务中心,山东 日照 276800
  • 2. 河南平芝高压开关有限公司,河南 平顶山 467000
  • 3. 国网浙江省电力有限公司 舟山供电公司,浙江 舟山 316000
  • 折叠

摘要

Abstract

With the goal of further improving the comprehensive operation efficiency of potato harvesters,research was conducted on their structural assembly and operation control from the perspective of product design optimization.Consider-ing the characteristics of the operation object and design index requirements of the potato harvester,the implementation mechanism of mechanical assembly design was adopted to build an accurate processing model for the assembly design of the potato harvester,and the design and assembly of core components were carried out.Through the control and monito-ring of the execution process,the assembly design of the potato harvester was completed,and the entire machine was presented for potato excavation experiments.The results showed that the assembly design based on the potato harvester was correct and feasible,and its overall assembly accuracy could reach 97.58%.All operation indicators performed well,and the damage rate during the operation process could be reduced to 2.78%.When the operation speed was 0.8 m/s and the vibration speed was 90 r/min,the bright potato rate could reach 96.70%,which was superior to the design indicators re-quirements for potato harvesting and has high availability and reliability.This design approach would provide practical reference value for researchers to break through the research and innovation of potato harvesting equipment.

关键词

薯类收获机/装配式设计/破损率/明薯率/控制监测

Key words

potato harvester/assembled design/damage rate/bright potato rate/control and monitoring

分类

农业科技

引用本文复制引用

王本祥,蒋俊凤,张谦,蒋永梅,毛丹丹..基于薯类收获机的装配式设计可行性分析[J].农机化研究,2025,47(4):132-136,5.

基金项目

山东省科学技术厅重点研发计划项目(2022CXGC020704) (2022CXGC020704)

农机化研究

OA北大核心

1003-188X

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