"Numerical simulation and optimization of homogenization section screw based on response surface method "

The Box-Behnken method in the response surface method was used to design and analyze the experiment. A multi-factor quadratic polynomial ma-thematical model of the homogenization section screw structure and extrusion effect of the rubber injection machine was established. The influence of the homoge...

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Main Author: WANG Yu-peng, XIN Jin-wei, MA Zi-chen, JIAN Ran-ran, MIAO Qing, ZENG Xian-kui
Format: Article
Language:zho
Published: Editorial Office of China Synthetic Rubber Industry 2025-01-01
Series:Hecheng xiangjiao gongye
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Online Access:http://hcxjgy.paperopen.com/oa/DArticle.aspx?type=view&id=202501005
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author WANG Yu-peng, XIN Jin-wei, MA Zi-chen, JIAN Ran-ran, MIAO Qing, ZENG Xian-kui
author_facet WANG Yu-peng, XIN Jin-wei, MA Zi-chen, JIAN Ran-ran, MIAO Qing, ZENG Xian-kui
author_sort WANG Yu-peng, XIN Jin-wei, MA Zi-chen, JIAN Ran-ran, MIAO Qing, ZENG Xian-kui
collection DOAJ
description The Box-Behnken method in the response surface method was used to design and analyze the experiment. A multi-factor quadratic polynomial ma-thematical model of the homogenization section screw structure and extrusion effect of the rubber injection machine was established. The influence of the homogenization section screw structural para-meters on the extrusion effect and their interaction were discussed. The regression equation obtained from the experiment was used to optimize the homogenization section structural parameters of the rubber injection machine rod. The results showed that the difference between the predicted values of each parameter obtained by simulation and the si-mulated values was within 2%. The optimal parameters were the screw groove depth of 8.29 mm, screw pitch of 60.17 mm, and screw peak axial width of 5 mm. At this time, the standard deviation of the outlet temperature was reduced by 3.5%, and the temperature uniformity of the screw homogenization section improved; the average outlet velocity was increased by 9.7%, and the plasticizing capacity improved significantly.
format Article
id doaj-art-216b045e37ec490b9e93d6b2886e6553
institution OA Journals
issn 1000-1255
language zho
publishDate 2025-01-01
publisher Editorial Office of China Synthetic Rubber Industry
record_format Article
series Hecheng xiangjiao gongye
spelling doaj-art-216b045e37ec490b9e93d6b2886e65532025-08-20T01:50:26ZzhoEditorial Office of China Synthetic Rubber IndustryHecheng xiangjiao gongye1000-12552025-01-01481232810.19908/j.cnki.ISSN1000-1255.2025.01.0023"Numerical simulation and optimization of homogenization section screw based on response surface method "WANG Yu-peng, XIN Jin-wei, MA Zi-chen, JIAN Ran-ran, MIAO Qing, ZENG Xian-kui0"School of Mechanical and Electrical Engineering, Qingdao University of Science and Technology, Qingdao 266061, China"The Box-Behnken method in the response surface method was used to design and analyze the experiment. A multi-factor quadratic polynomial ma-thematical model of the homogenization section screw structure and extrusion effect of the rubber injection machine was established. The influence of the homogenization section screw structural para-meters on the extrusion effect and their interaction were discussed. The regression equation obtained from the experiment was used to optimize the homogenization section structural parameters of the rubber injection machine rod. The results showed that the difference between the predicted values of each parameter obtained by simulation and the si-mulated values was within 2%. The optimal parameters were the screw groove depth of 8.29 mm, screw pitch of 60.17 mm, and screw peak axial width of 5 mm. At this time, the standard deviation of the outlet temperature was reduced by 3.5%, and the temperature uniformity of the screw homogenization section improved; the average outlet velocity was increased by 9.7%, and the plasticizing capacity improved significantly. http://hcxjgy.paperopen.com/oa/DArticle.aspx?type=view&id=202501005response surface method, injection plasticization,screw structure, numerical simulation,
spellingShingle WANG Yu-peng, XIN Jin-wei, MA Zi-chen, JIAN Ran-ran, MIAO Qing, ZENG Xian-kui
"Numerical simulation and optimization of homogenization section screw based on response surface method "
Hecheng xiangjiao gongye
response surface method, injection plasticization,screw structure, numerical simulation,
title "Numerical simulation and optimization of homogenization section screw based on response surface method "
title_full "Numerical simulation and optimization of homogenization section screw based on response surface method "
title_fullStr "Numerical simulation and optimization of homogenization section screw based on response surface method "
title_full_unstemmed "Numerical simulation and optimization of homogenization section screw based on response surface method "
title_short "Numerical simulation and optimization of homogenization section screw based on response surface method "
title_sort numerical simulation and optimization of homogenization section screw based on response surface method
topic response surface method, injection plasticization,screw structure, numerical simulation,
url http://hcxjgy.paperopen.com/oa/DArticle.aspx?type=view&id=202501005
work_keys_str_mv AT wangyupengxinjinweimazichenjianranranmiaoqingzengxiankui numericalsimulationandoptimizationofhomogenizationsectionscrewbasedonresponsesurfacemethod