Design and Parameter Optimization of Disc Type Cutting Device for Castor Stem

To increase the cutting efficiency for castor stem, the castor harvester cutting device was developed. The structure of the disc cutting device was designed. Cutting blade angle, sufficient working and minor cutting edge lengths were determined, which were 20°, 73 mm and 19.8 mm, respecti...

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Main Authors: Junming Hou, Jingbo Bai, Enchao Yao, Hongjie Zhu
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9233329/
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spelling doaj-fef417a1483d414bbd0a95342a42dc8f2021-03-30T04:14:28ZengIEEEIEEE Access2169-35362020-01-01819115219116210.1109/ACCESS.2020.30325359233329Design and Parameter Optimization of Disc Type Cutting Device for Castor StemJunming Hou0https://orcid.org/0000-0002-9706-964XJingbo Bai1Enchao Yao2https://orcid.org/0000-0001-8662-9595Hongjie Zhu3https://orcid.org/0000-0002-1482-5383School of Engineering, Shenyang Agricultural University, Shenyang, ChinaSchool of Engineering, Shenyang Agricultural University, Shenyang, ChinaSchool of Engineering, Shenyang Agricultural University, Shenyang, ChinaSchool of Engineering, Shenyang Agricultural University, Shenyang, ChinaTo increase the cutting efficiency for castor stem, the castor harvester cutting device was developed. The structure of the disc cutting device was designed. Cutting blade angle, sufficient working and minor cutting edge lengths were determined, which were 20°, 73 mm and 19.8 mm, respectively. The finite element model of disc cutter for castor stem was established. The incision volume was selected as the cutting performance evaluation index. The cutting process of the cutter was simulated. The results show that the cutting performance of the trapezoidal cutter is preferable to that of the rectangular and the curved cutters. When cutting blade cuts the stem, the volume of the incision decreases first and then increases, and the size of the incision increases with the increase of cutting edge angle. When the blade angle is 10°, the cutter has the ideal cutting quality. Considering the blade angle, the slip angle, and the angle of the cutter head as factors, the virtual test of the cutter was made with the incision volume as the index. The response surface analysis was used to obtain the cutter structure parameters when the incision volume was the least. The result for the blade, slip and cutter head inclination angles are 14.06°, 19.93°, and 10.54°, respectively. The cutting efficiency evaluation index (one-time cutting) was established to optimize the cutter running parameters. The results show that when the cutter moving speed was 1.011 m/s and the cutter rotation speed was 282.0 r/min, the maximum cutting efficiency is 2.25 castor stems/s.https://ieeexplore.ieee.org/document/9233329/Castor stemcuttingdesignfinite elementoptimized design
collection DOAJ
language English
format Article
sources DOAJ
author Junming Hou
Jingbo Bai
Enchao Yao
Hongjie Zhu
spellingShingle Junming Hou
Jingbo Bai
Enchao Yao
Hongjie Zhu
Design and Parameter Optimization of Disc Type Cutting Device for Castor Stem
IEEE Access
Castor stem
cutting
design
finite element
optimized design
author_facet Junming Hou
Jingbo Bai
Enchao Yao
Hongjie Zhu
author_sort Junming Hou
title Design and Parameter Optimization of Disc Type Cutting Device for Castor Stem
title_short Design and Parameter Optimization of Disc Type Cutting Device for Castor Stem
title_full Design and Parameter Optimization of Disc Type Cutting Device for Castor Stem
title_fullStr Design and Parameter Optimization of Disc Type Cutting Device for Castor Stem
title_full_unstemmed Design and Parameter Optimization of Disc Type Cutting Device for Castor Stem
title_sort design and parameter optimization of disc type cutting device for castor stem
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description To increase the cutting efficiency for castor stem, the castor harvester cutting device was developed. The structure of the disc cutting device was designed. Cutting blade angle, sufficient working and minor cutting edge lengths were determined, which were 20°, 73 mm and 19.8 mm, respectively. The finite element model of disc cutter for castor stem was established. The incision volume was selected as the cutting performance evaluation index. The cutting process of the cutter was simulated. The results show that the cutting performance of the trapezoidal cutter is preferable to that of the rectangular and the curved cutters. When cutting blade cuts the stem, the volume of the incision decreases first and then increases, and the size of the incision increases with the increase of cutting edge angle. When the blade angle is 10°, the cutter has the ideal cutting quality. Considering the blade angle, the slip angle, and the angle of the cutter head as factors, the virtual test of the cutter was made with the incision volume as the index. The response surface analysis was used to obtain the cutter structure parameters when the incision volume was the least. The result for the blade, slip and cutter head inclination angles are 14.06°, 19.93°, and 10.54°, respectively. The cutting efficiency evaluation index (one-time cutting) was established to optimize the cutter running parameters. The results show that when the cutter moving speed was 1.011 m/s and the cutter rotation speed was 282.0 r/min, the maximum cutting efficiency is 2.25 castor stems/s.
topic Castor stem
cutting
design
finite element
optimized design
url https://ieeexplore.ieee.org/document/9233329/
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AT enchaoyao designandparameteroptimizationofdisctypecuttingdeviceforcastorstem
AT hongjiezhu designandparameteroptimizationofdisctypecuttingdeviceforcastorstem
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