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基于TRIZ理论的转盘式挤奶机器人结构设计
引用本文:王成军,李少强.基于TRIZ理论的转盘式挤奶机器人结构设计[J].科学技术与工程,2022,22(7):2770-2775.
作者姓名:王成军  李少强
作者单位:安徽理工大学人工智能学院;安徽理工大学机械工程学院
基金项目:安徽省高校协同创新项目(GXXT2019018);安徽省高校协同创新项目(GXXT2019021)
摘    要:为解决转盘式挤奶机智能化程度不足的问题,设计了一种适用于大中型牧场的高效率智能化挤奶设备.基于TRIZ(theory of inventive problem solving)理论,采用九屏分析法和因果轴分析法,得出影响牧场智能化发展的因素;结合现场实际情况,运用技术矛盾法、物理矛盾法和物场-模型法对分析出的问题进行求...

关 键 词:转盘式挤奶机器人  TRIZ  双向夹持器  创新设计
收稿时间:2021/5/1 0:00:00
修稿时间:2021/11/25 0:00:00

Design and Analysis of A New Rotary Milking Robot Based on TRIZ Theory
Wang Chengjun,Li Shaoqiang.Design and Analysis of A New Rotary Milking Robot Based on TRIZ Theory[J].Science Technology and Engineering,2022,22(7):2770-2775.
Authors:Wang Chengjun  Li Shaoqiang
Institution:School of Artificial Intelligence,Anhui University of Science and Technology,Huainan
Abstract:In order to solve the problem that the intelligent degree of rotary milking machine is insufficient, a kind of high efficiency intelligent milking equipment is designed for large and medium-sized pastures. Based on TRIZ theory, nine-screen analysis method and cause-and-effect axis analysis method were used to get the factors affecting the development of intelligent pasture. Combining with the actual situation, using the method of technical contradiction, physical contradiction method and field - model method to analysis the problem solving, against the mechanical arm, the end executor, three axis translation device innovation on the key parts such as design, completed the milking disc structure design of the robot,set the experimental prototype. Set up a milk cup grab and a set of experiments, the results show that the robot grab milk cup success rate was 100%, the set of cup success rate was 97.2%, the average time of 5.8 s at a time. Compared with manual milking, the efficiency improved by at least 98 %. The designed rotary milking robot meets the requirements of use. milking disc intelligent robot product development and subsequent pasture research to provide the basis.
Keywords:rotary milking robot      TRIZ      bidirectional gripper      innovative design
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