Investigations of the Elongational Deformation Induced by Pins in Pin-Barrel Cold-Feed Extruders

This paper is a study on the elongational deformation induced by pins in pin-barrel cold-feed extruders. The mathematical model is established by using simple flow field, plate model, and Newton constitutive relation. It is proved that there is elongational deformation when the fluid bypasses the pi...

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Main Authors: Zhilin Wang, Yiren Pan, Yanchang Liu, Jing Huang, Ning Wang, Xuehua Hu
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Advances in Polymer Technology
Online Access:http://dx.doi.org/10.1155/2022/3513804
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author Zhilin Wang
Yiren Pan
Yanchang Liu
Jing Huang
Ning Wang
Xuehua Hu
author_facet Zhilin Wang
Yiren Pan
Yanchang Liu
Jing Huang
Ning Wang
Xuehua Hu
author_sort Zhilin Wang
collection DOAJ
description This paper is a study on the elongational deformation induced by pins in pin-barrel cold-feed extruders. The mathematical model is established by using simple flow field, plate model, and Newton constitutive relation. It is proved that there is elongational deformation when the fluid bypasses the pin, and the elongational deformation is quantitatively calculated. The finite element method is used to simulate the flow field of the screw mixing section of the pin-barrel cold-feed extruder with different specifications. The velocity vector nephogram in the simulation results is analyzed by numerical analysis of elongational deformation and compared with the theoretical elongational deformation value. The results show that the simulated and theoretical values of elongational deformation are approximately consistent. The numerical analysis of the key factors affecting the elongational deformation shows that the elongational deformation will gradually increase with the increase of screw diameter. For the screw of the same specification, the increasing helical angle will reduce the elongational deformation, and the increasing rotational speed will linearly increase the elongational deformation in unit time. This study can be used to roughly estimate the elongational deformation induced by pins and establish the mixing theoretical model of the pin-barrel cold-feed extruder.
format Article
id doaj-art-8d35123c99e946ec95c5276bfbd3c8c0
institution Kabale University
issn 1098-2329
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series Advances in Polymer Technology
spelling doaj-art-8d35123c99e946ec95c5276bfbd3c8c02025-02-03T06:06:53ZengWileyAdvances in Polymer Technology1098-23292022-01-01202210.1155/2022/3513804Investigations of the Elongational Deformation Induced by Pins in Pin-Barrel Cold-Feed ExtrudersZhilin Wang0Yiren Pan1Yanchang Liu2Jing Huang3Ning Wang4Xuehua Hu5Institute of Mechanical and Electrical EngineeringInstitute of Mechanical and Electrical EngineeringInstitute of Mechanical and Electrical EngineeringInstitute of Mechanical and Electrical EngineeringInstitute of Mechanical and Electrical EngineeringInstitute of Mechanical and Electrical EngineeringThis paper is a study on the elongational deformation induced by pins in pin-barrel cold-feed extruders. The mathematical model is established by using simple flow field, plate model, and Newton constitutive relation. It is proved that there is elongational deformation when the fluid bypasses the pin, and the elongational deformation is quantitatively calculated. The finite element method is used to simulate the flow field of the screw mixing section of the pin-barrel cold-feed extruder with different specifications. The velocity vector nephogram in the simulation results is analyzed by numerical analysis of elongational deformation and compared with the theoretical elongational deformation value. The results show that the simulated and theoretical values of elongational deformation are approximately consistent. The numerical analysis of the key factors affecting the elongational deformation shows that the elongational deformation will gradually increase with the increase of screw diameter. For the screw of the same specification, the increasing helical angle will reduce the elongational deformation, and the increasing rotational speed will linearly increase the elongational deformation in unit time. This study can be used to roughly estimate the elongational deformation induced by pins and establish the mixing theoretical model of the pin-barrel cold-feed extruder.http://dx.doi.org/10.1155/2022/3513804
spellingShingle Zhilin Wang
Yiren Pan
Yanchang Liu
Jing Huang
Ning Wang
Xuehua Hu
Investigations of the Elongational Deformation Induced by Pins in Pin-Barrel Cold-Feed Extruders
Advances in Polymer Technology
title Investigations of the Elongational Deformation Induced by Pins in Pin-Barrel Cold-Feed Extruders
title_full Investigations of the Elongational Deformation Induced by Pins in Pin-Barrel Cold-Feed Extruders
title_fullStr Investigations of the Elongational Deformation Induced by Pins in Pin-Barrel Cold-Feed Extruders
title_full_unstemmed Investigations of the Elongational Deformation Induced by Pins in Pin-Barrel Cold-Feed Extruders
title_short Investigations of the Elongational Deformation Induced by Pins in Pin-Barrel Cold-Feed Extruders
title_sort investigations of the elongational deformation induced by pins in pin barrel cold feed extruders
url http://dx.doi.org/10.1155/2022/3513804
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AT yirenpan investigationsoftheelongationaldeformationinducedbypinsinpinbarrelcoldfeedextruders
AT yanchangliu investigationsoftheelongationaldeformationinducedbypinsinpinbarrelcoldfeedextruders
AT jinghuang investigationsoftheelongationaldeformationinducedbypinsinpinbarrelcoldfeedextruders
AT ningwang investigationsoftheelongationaldeformationinducedbypinsinpinbarrelcoldfeedextruders
AT xuehuahu investigationsoftheelongationaldeformationinducedbypinsinpinbarrelcoldfeedextruders