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Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science | 2018

Design and experiment of automatic transplanting device for potted tomato seedlings

Jin Xin; Zhao Kaixuan; Ji Jiangtao; Ma Hao; Pang Jing; Qiu Zhaomei

In this study, an automatic machine for transplanting potted tomato seedlings was designed, based on the analysis of physical characteristics of the main varieties of tomato seedlings. The machine is composed of a horizontal and vertical seedling supply mechanism, a picking mechanism composed with a gear-rod component, a planting part featured with an eccentric-disk parallelogram duckbilled mechanism, and a control system. The control system included position sensors, stepper motor, variable-frequency motor and program controller. The force condition for successful picking potted tomato seedlings was studied by analyzing the force and motion during the taking procedure with the use of analytical graphic method. Combined with the parameters of physical characteristics of tomato seedlings, the key parameters of the machine was determined, which included L1u2009=u2009105u2009mm as the distance between the point of the gripper needles and the center of rotation, L0u2009=u200918u2009mm as the initial opening distance between the two gripper needles, and su2009=u200940u2009mm as the distance between the two gripper needles when they were at the upper hinge point of the clamping hands. The key structure and the parameters of the seedlings-taking part were determined by theoretical calculation according to the position of the seedling during taking and dropping procedure, and the requirement of the motion. The machine was tested by using the potted tomato seedlings. The result showed that the seedling picking rate was 92.35%–86.61%, and the leakage rate was 12.57%–18.03%, when the transplanting speed was between 60 and 90 seedlings per minute. The result demonstrated that the machine was feasible to transplant the potted tomato seedlings efficiently.


Archive | 2006

Miniature cereal combined harvesrter matched with walking tractor

Liu Shiduo; Ni Chang An; Shi Qingxiang; Wang Guoxin; Ji Jiangtao; Gao Chunyan; Pang Jing; Ding Huiling


Archive | 2016

Amplitude modulation is not to going maize harvesting apparatus and maize picker

Wang Xianren; Li Xinping; Pang Jing; Geng Lingxin; Wang Shengsheng; Zhou Hanmi


Archive | 2015

Cleaning system and combined grain harvester adopting same

Shi Qingxiang; Liu Shiduo; Ni Changan; Ding Huiling; Wang Guoxin; Geng Lingxin; Wang Shengsheng; Yi Wenjing; Pang Jing; Zhang Lijuan; Wang Rongxian; Gao Chunyan


Archive | 2017

Garlic clove extrusion, peeling and peel twisting peeling machine

Li Xinping; Geng Lingxin; Xiong Shi; Yu Yafei; Pang Jing; Wang Shengsheng; Xin Li; Zhou Qiang


Archive | 2017

Automatic sack filling machine of weighing

Pang Jing; Wang Shengsheng; Li Xinping; Geng Lingxin; Xin Li; Liu Chong; Yu Guanghui; Zhang Zhanshuo


Archive | 2017

Low-loss threshing device applicable to buckwheat grain classification

Geng Lingxin; Sun Chenglong; Wang Shengsheng; Pang Jing; Li Xinping; Ji Jiangtao; Yang Fang; Liu Chunya


Archive | 2017

Young garlic shoot harvester

Geng Lingxin; Zhang Lijuan; Li Xinping; Wang Shengsheng; Pang Jing


Archive | 2017

Selfleveling stabilized platform

Yu Guanghui; Pang Jing; Liu Chong; Zhang Xiaoli; Hu Guang; Sun Jialu


Archive | 2017

Self-levelling stabilizing platform

Yu Guanghui; Pang Jing; Liu Chong; Zhang Xiaoli; Hu Guang; Sun Jialu

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Li Xinping

Shenyang Agricultural University

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Ji Jiangtao

Henan University of Science and Technology

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Jin Xin

Henan University of Science and Technology

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Li Mingyong

Henan University of Science and Technology

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Yang Fang

North China University of Science and Technology

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Ma Hao

Henan University of Science and Technology

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Qiu Zhaomei

Henan University of Science and Technology

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Wang Jun

Chinese Academy of Sciences

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Du Xinwu

Henan University of Science and Technology

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