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Design and performance test on segmented‐differential threshing and separating unit for head‐feed combine harvester

In order to solve the contradiction between incomplete thresh, separation loss, and grain breakage rate during the harvest of super hybrid rice by the conventional threshing and separating unit for the head‐feed combine harvester, the segmented‐differential threshing and separating unit for the head...

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Autores principales: Tian, Liquan, Lin, Xue, Xiong, Yongsen, Ding, Zhao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8116852/
https://www.ncbi.nlm.nih.gov/pubmed/34026069
http://dx.doi.org/10.1002/fsn3.2202
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author Tian, Liquan
Lin, Xue
Xiong, Yongsen
Ding, Zhao
author_facet Tian, Liquan
Lin, Xue
Xiong, Yongsen
Ding, Zhao
author_sort Tian, Liquan
collection PubMed
description In order to solve the contradiction between incomplete thresh, separation loss, and grain breakage rate during the harvest of super hybrid rice by the conventional threshing and separating unit for the head‐feed combine harvester, the segmented‐differential threshing and separating unit for the head‐feed combine harvester was developed. The unit was mainly composed of a coaxial segmented‐differential threshing drum and rotary concave screen. This paper expounds on the structure and working principle of segmented‐differential threshing and separating unit. With the rotate speed of the segmented‐differential drum, the linear velocity of the rotary concave screen, and the clamping chain speed as the test factors, the grain loss rate, breakage rate, and impurity rate as the performance indicators, three‐factor quadratic regression orthogonal rotation combination design test is performed. This paper analyzes the test results by using the Design‐Expert6.0.10 software, establishes a performance indicator mathematic model of the threshing and separating unit, and determines the optimal working parameter combination. Moreover, this paper performs a contrast test of the segmented‐differential threshing and separating unit to the conventional single‐speed unit, and using MATLAB software to establish a distribution model of threshed materials and make an analysis. Results show that when the rotate speed of low‐speed/high‐speed drum in the segmented‐differential threshing and separating unit was 505/680 r/min, the linear velocity of the rotary concave screen was 1 m/s and the clamping chain speed was 1.26 m/s, the grain loss rate, breakage rate, and impurity rate were 1.94%, 0.21%, and 0.56%, respectively.
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spelling pubmed-81168522021-05-20 Design and performance test on segmented‐differential threshing and separating unit for head‐feed combine harvester Tian, Liquan Lin, Xue Xiong, Yongsen Ding, Zhao Food Sci Nutr Original Research In order to solve the contradiction between incomplete thresh, separation loss, and grain breakage rate during the harvest of super hybrid rice by the conventional threshing and separating unit for the head‐feed combine harvester, the segmented‐differential threshing and separating unit for the head‐feed combine harvester was developed. The unit was mainly composed of a coaxial segmented‐differential threshing drum and rotary concave screen. This paper expounds on the structure and working principle of segmented‐differential threshing and separating unit. With the rotate speed of the segmented‐differential drum, the linear velocity of the rotary concave screen, and the clamping chain speed as the test factors, the grain loss rate, breakage rate, and impurity rate as the performance indicators, three‐factor quadratic regression orthogonal rotation combination design test is performed. This paper analyzes the test results by using the Design‐Expert6.0.10 software, establishes a performance indicator mathematic model of the threshing and separating unit, and determines the optimal working parameter combination. Moreover, this paper performs a contrast test of the segmented‐differential threshing and separating unit to the conventional single‐speed unit, and using MATLAB software to establish a distribution model of threshed materials and make an analysis. Results show that when the rotate speed of low‐speed/high‐speed drum in the segmented‐differential threshing and separating unit was 505/680 r/min, the linear velocity of the rotary concave screen was 1 m/s and the clamping chain speed was 1.26 m/s, the grain loss rate, breakage rate, and impurity rate were 1.94%, 0.21%, and 0.56%, respectively. John Wiley and Sons Inc. 2021-03-08 /pmc/articles/PMC8116852/ /pubmed/34026069 http://dx.doi.org/10.1002/fsn3.2202 Text en © 2021 Jinhua Polytechnic. Food Science & Nutrition published by Wiley Periodicals LLC https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Tian, Liquan
Lin, Xue
Xiong, Yongsen
Ding, Zhao
Design and performance test on segmented‐differential threshing and separating unit for head‐feed combine harvester
title Design and performance test on segmented‐differential threshing and separating unit for head‐feed combine harvester
title_full Design and performance test on segmented‐differential threshing and separating unit for head‐feed combine harvester
title_fullStr Design and performance test on segmented‐differential threshing and separating unit for head‐feed combine harvester
title_full_unstemmed Design and performance test on segmented‐differential threshing and separating unit for head‐feed combine harvester
title_short Design and performance test on segmented‐differential threshing and separating unit for head‐feed combine harvester
title_sort design and performance test on segmented‐differential threshing and separating unit for head‐feed combine harvester
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8116852/
https://www.ncbi.nlm.nih.gov/pubmed/34026069
http://dx.doi.org/10.1002/fsn3.2202
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