Selection of Design Scheme for an Ultrahigh-Pressure Hydrostatic Extrusion Cylinder

In this study, the mechanical models of a multilayer combined extrusion cylinder and a steel-wire-winding extrusion cylinder were established and compared using a finite element simulation and existing experimental cases. This work provides theoretical support for the selection of an ultrahigh-press...

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Main Authors: Jian Yang, Lei Zhang, Jun Zhang, Hao Wang, Dong Zhang, Yuanxin Luo, Yongqin Wang
Format: Article
Language:English
Published: MDPI AG 2023-09-01
Series:Actuators
Subjects:
Online Access:https://www.mdpi.com/2076-0825/12/10/369
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author Jian Yang
Lei Zhang
Jun Zhang
Hao Wang
Dong Zhang
Yuanxin Luo
Yongqin Wang
author_facet Jian Yang
Lei Zhang
Jun Zhang
Hao Wang
Dong Zhang
Yuanxin Luo
Yongqin Wang
author_sort Jian Yang
collection DOAJ
description In this study, the mechanical models of a multilayer combined extrusion cylinder and a steel-wire-winding extrusion cylinder were established and compared using a finite element simulation and existing experimental cases. This work provides theoretical support for the selection of an ultrahigh-pressure extrusion cylinder. Comparative analysis of an ultrahigh-pressure extrusion structure was carried out. The mathematical optimization model is established based on the mechanical model, and the ultimate bearing capacities of the schemes are compared. Additionally, the winding mode and the number of core layers of the extrusion cylinder are compared and analyzed, which provides a theoretical basis for the parameter design of the steel-wire-winding ultrahigh-pressure extrusion cylinder. This work holds good theoretical significance and practical value for the promotion and application of ultrahigh-pressure hydrostatic extrusion technology.
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spelling doaj.art-000272eaf02f4c4e93f9d38c624437582023-11-19T15:16:03ZengMDPI AGActuators2076-08252023-09-01121036910.3390/act12100369Selection of Design Scheme for an Ultrahigh-Pressure Hydrostatic Extrusion CylinderJian Yang0Lei Zhang1Jun Zhang2Hao Wang3Dong Zhang4Yuanxin Luo5Yongqin Wang6College of Mechanical and Vehicle Engineering, Chongqing University, Chongqing 400044, ChinaCollege of Mechanical and Vehicle Engineering, Chongqing University, Chongqing 400044, ChinaThe State Key Laboratory of Metal Extrusion and Forging Equipment Technology, China Heavy Machinery Research Institute Inc., Xi’an 710018, ChinaCollege of Mechanical and Vehicle Engineering, Chongqing University, Chongqing 400044, ChinaCollege of Mechanical and Vehicle Engineering, Chongqing University, Chongqing 400044, ChinaCollege of Mechanical and Vehicle Engineering, Chongqing University, Chongqing 400044, ChinaCollege of Mechanical and Vehicle Engineering, Chongqing University, Chongqing 400044, ChinaIn this study, the mechanical models of a multilayer combined extrusion cylinder and a steel-wire-winding extrusion cylinder were established and compared using a finite element simulation and existing experimental cases. This work provides theoretical support for the selection of an ultrahigh-pressure extrusion cylinder. Comparative analysis of an ultrahigh-pressure extrusion structure was carried out. The mathematical optimization model is established based on the mechanical model, and the ultimate bearing capacities of the schemes are compared. Additionally, the winding mode and the number of core layers of the extrusion cylinder are compared and analyzed, which provides a theoretical basis for the parameter design of the steel-wire-winding ultrahigh-pressure extrusion cylinder. This work holds good theoretical significance and practical value for the promotion and application of ultrahigh-pressure hydrostatic extrusion technology.https://www.mdpi.com/2076-0825/12/10/369multilayer combined extrusion cylindermathematical optimization modelsteel-wire-winding extrusion cylinderultrahigh-pressure hydrostatic extrusion cylinder
spellingShingle Jian Yang
Lei Zhang
Jun Zhang
Hao Wang
Dong Zhang
Yuanxin Luo
Yongqin Wang
Selection of Design Scheme for an Ultrahigh-Pressure Hydrostatic Extrusion Cylinder
Actuators
multilayer combined extrusion cylinder
mathematical optimization model
steel-wire-winding extrusion cylinder
ultrahigh-pressure hydrostatic extrusion cylinder
title Selection of Design Scheme for an Ultrahigh-Pressure Hydrostatic Extrusion Cylinder
title_full Selection of Design Scheme for an Ultrahigh-Pressure Hydrostatic Extrusion Cylinder
title_fullStr Selection of Design Scheme for an Ultrahigh-Pressure Hydrostatic Extrusion Cylinder
title_full_unstemmed Selection of Design Scheme for an Ultrahigh-Pressure Hydrostatic Extrusion Cylinder
title_short Selection of Design Scheme for an Ultrahigh-Pressure Hydrostatic Extrusion Cylinder
title_sort selection of design scheme for an ultrahigh pressure hydrostatic extrusion cylinder
topic multilayer combined extrusion cylinder
mathematical optimization model
steel-wire-winding extrusion cylinder
ultrahigh-pressure hydrostatic extrusion cylinder
url https://www.mdpi.com/2076-0825/12/10/369
work_keys_str_mv AT jianyang selectionofdesignschemeforanultrahighpressurehydrostaticextrusioncylinder
AT leizhang selectionofdesignschemeforanultrahighpressurehydrostaticextrusioncylinder
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AT haowang selectionofdesignschemeforanultrahighpressurehydrostaticextrusioncylinder
AT dongzhang selectionofdesignschemeforanultrahighpressurehydrostaticextrusioncylinder
AT yuanxinluo selectionofdesignschemeforanultrahighpressurehydrostaticextrusioncylinder
AT yongqinwang selectionofdesignschemeforanultrahighpressurehydrostaticextrusioncylinder