Compression Mechanical Performance Simulation and Parameter Optimization of Degradable Ureteral Stent Based on ABAQUS

TS101.2; The compression performance of a degradable ureteral stent is analyzed and the parameters are optimized by a finite element modeling method.The degradable ureteral stent explored in this paper is developed from poly(glycolic acid)(PGA)and poly(lactic-co-glycolic acid)(PLGA)degradable materi...

Full description

Saved in:
Bibliographic Details
Published in东华大学学报(英文版) Vol. 40; no. 1; pp. 1 - 7
Main Authors LIU Lu, LIU Xiaoyan, HAO Kuangrong
Format Journal Article
LanguageEnglish
Published College of Information Science and Technology,Donghua University,Shanghai 201620,China 2023
Engineering Research Center of Digitized Textile&Apparel Technology,Ministry of Education,Donghua University,Shanghai 201620,China
Subjects
Online AccessGet full text

Cover

Loading…
Abstract TS101.2; The compression performance of a degradable ureteral stent is analyzed and the parameters are optimized by a finite element modeling method.The degradable ureteral stent explored in this paper is developed from poly(glycolic acid)(PGA)and poly(lactic-co-glycolic acid)(PLGA)degradable materials.Based on the actual measurement of fabric structure parameters,the three-dimensional model of the stent is established with the help of the modeling software.The finite element analysis software is used to simulate the compression process of the degradable ureteral stent.The parameters of materials,interactions and boundary conditions are set according to the compression environment of the stent for modeling and simulation.On this basis,the friction coefficient of yarns,the yarn radius,and the braided angle of the stent are further compared.The comparison test is carried out by a single variable.The experimental results show that the change of yarn friction coefficient has little influence on the compressive stress,while the yarn radius and the braided angle of the stent have a great influence on the compressive stress.
AbstractList TS101.2; The compression performance of a degradable ureteral stent is analyzed and the parameters are optimized by a finite element modeling method.The degradable ureteral stent explored in this paper is developed from poly(glycolic acid)(PGA)and poly(lactic-co-glycolic acid)(PLGA)degradable materials.Based on the actual measurement of fabric structure parameters,the three-dimensional model of the stent is established with the help of the modeling software.The finite element analysis software is used to simulate the compression process of the degradable ureteral stent.The parameters of materials,interactions and boundary conditions are set according to the compression environment of the stent for modeling and simulation.On this basis,the friction coefficient of yarns,the yarn radius,and the braided angle of the stent are further compared.The comparison test is carried out by a single variable.The experimental results show that the change of yarn friction coefficient has little influence on the compressive stress,while the yarn radius and the braided angle of the stent have a great influence on the compressive stress.
Author LIU Lu
HAO Kuangrong
LIU Xiaoyan
AuthorAffiliation College of Information Science and Technology,Donghua University,Shanghai 201620,China;Engineering Research Center of Digitized Textile&Apparel Technology,Ministry of Education,Donghua University,Shanghai 201620,China
AuthorAffiliation_xml – name: College of Information Science and Technology,Donghua University,Shanghai 201620,China;Engineering Research Center of Digitized Textile&Apparel Technology,Ministry of Education,Donghua University,Shanghai 201620,China
Author_xml – sequence: 1
  fullname: LIU Lu
– sequence: 2
  fullname: LIU Xiaoyan
– sequence: 3
  fullname: HAO Kuangrong
BookMark eNo9kE1PAjEQhnvARET-gunVw-K03d2WI6CiCQYMciaz2xaW7HZJu0Tir7cE4xze-XryTjJ3pOdaZwh5YDBiY6XSp8OI5ZInGecw4hBVAMge6f9Pb8kwhAPEyLlMYdwnp1nbHL0JoWod_TDlHl1VYk1XxtvWN-hKQ9dVc6qxuxDoNF2hx8Z0xtPlsaua6ue6ai19NjuPGova0I2_ENFo3RnX0SkGo2mkJtPJ52Z9T24s1sEM__KAbF5fvmZvyWI5f59NFklgkLIkl0yrzGSCC2ttjlwWgCAkIGNMiFgpnUFusyIKKJ2qyKrYp6W0rCzFgDxefb_RWXS77aE9eRcvbvVen8_F1sQ3CWAATPwCVMNhZA
ClassificationCodes TS101.2
ContentType Journal Article
Copyright Copyright © Wanfang Data Co. Ltd. All Rights Reserved.
Copyright_xml – notice: Copyright © Wanfang Data Co. Ltd. All Rights Reserved.
DBID 2B.
4A8
92I
93N
PSX
TCJ
DOI 10.19884/j.1672-5220.202203007
DatabaseName Wanfang Data Journals - Hong Kong
WANFANG Data Centre
Wanfang Data Journals
万方数据期刊 - 香港版
China Online Journals (COJ)
China Online Journals (COJ)
DatabaseTitleList
DeliveryMethod fulltext_linktorsrc
Discipline Engineering
EndPage 7
ExternalDocumentID dhdxxb_e202301001
GroupedDBID -02
-0B
-SB
-S~
188
2B.
4A8
5VR
5XA
5XC
8RM
92D
92I
92M
93N
9D9
9DB
ABJNI
ACGFS
ADMLS
AFUIB
ALMA_UNASSIGNED_HOLDINGS
CAJEB
CCEZO
CDRFL
CHBEP
CW9
FA0
JUIAU
PSX
Q--
R-B
RT2
S..
T8R
TCJ
TGH
TTC
U1F
U1G
U5B
U5L
UGNYK
UZ2
UZ4
ID FETCH-LOGICAL-s1041-671d85e5323fff6a27b0a0370a111330378d506f5b06f08d48e5386f54c7f1cc3
ISSN 1672-5220
IngestDate Thu May 29 03:59:43 EDT 2025
IsPeerReviewed true
IsScholarly true
Issue 1
Keywords geometric model
finite element modeling method
degradable ureteral stent
compression performance
Language English
LinkModel OpenURL
MergedId FETCHMERGED-LOGICAL-s1041-671d85e5323fff6a27b0a0370a111330378d506f5b06f08d48e5386f54c7f1cc3
PageCount 7
ParticipantIDs wanfang_journals_dhdxxb_e202301001
PublicationCentury 2000
PublicationDate 2023
PublicationDateYYYYMMDD 2023-01-01
PublicationDate_xml – year: 2023
  text: 2023
PublicationDecade 2020
PublicationTitle 东华大学学报(英文版)
PublicationTitle_FL Journal of Donghua University(English Edition)
PublicationYear 2023
Publisher College of Information Science and Technology,Donghua University,Shanghai 201620,China
Engineering Research Center of Digitized Textile&Apparel Technology,Ministry of Education,Donghua University,Shanghai 201620,China
Publisher_xml – name: Engineering Research Center of Digitized Textile&Apparel Technology,Ministry of Education,Donghua University,Shanghai 201620,China
– name: College of Information Science and Technology,Donghua University,Shanghai 201620,China
SSID ssj0000627409
Score 2.2257073
Snippet TS101.2; The compression performance of a degradable ureteral stent is analyzed and the parameters are optimized by a finite element modeling method.The...
SourceID wanfang
SourceType Aggregation Database
StartPage 1
Title Compression Mechanical Performance Simulation and Parameter Optimization of Degradable Ureteral Stent Based on ABAQUS
URI https://d.wanfangdata.com.cn/periodical/dhdxxb-e202301001
Volume 40
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV1Lj9MwELbK7gUOiKd4y0L4VGVxEidxjkmbVYEuC-pW6q1y6oT2sK3UbaSFH86ZmdibGuhh4WI5tuuoni-esT3fmJB3voiUD5ayB_qn9IRUkVcmYejFpZ-qVMe8brlVZ5_j0VR8nEWzXu-n47XU7MqTxY-DvJL_kSqUgVyRJfsPku06hQLIg3whBQlDeisZ48ds_FjxxAU5vO2Qf3HIAJPVpb2gy_ACFDpjYWDEc5grLi0JEy3GIUaN0C2RarrFFhgmZIeeAjkoOo2HClmefbURC605ywrBcsnSASsiJodMFpjJBMuSNjNkWexkYiYzlkWsOGX5gEnJCslkznIfq1KohV8lTKZtlWnT7VOMP0z748Z9mq3U5vse3KPsvP-pUetv243VxnYzwzCNjTfRfpvE8rDMhGknOByh_VkDoG8IXS0b5bivQOEE99iXatUHqyYOOJR0l5Db6T1OcOkdcHf-N-GifsO5mcx9xypIDqqbVEph9M1NxycBUpdDbq7y_SOUt17q6-tyXuE_5xj86g45DmB5AwrlOBuejSfd7iAGjxatf1LXs6W34yvfH3xhSztb1zAEjoV08YDct0sbmhmcPiS9av2I3HMCXj4mjYNYukcsdRBL94ilIA_aIZa6iKWbmu4RS28QS1vE0haxFFoZxD4h09PiYjDy7MUf3pXPhe_Fia9lVEVhENZ1HasgKbniYcIVaOYQjK5E6ojHdVRCwqUWEtpKeBaLpPYXi_ApOVpv1tUzQrXwNbTlWutAlJLLSqiKh3WULCoNfT4nb-2gze2HfTX_S0wvbtPoJbmLebM994oc7bZN9RoM1l35xkr3FwGEjRQ
linkProvider EBSCOhost
openUrl ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=Compression+Mechanical+Performance+Simulation+and+Parameter+Optimization+of+Degradable+Ureteral+Stent+Based+on+ABAQUS&rft.jtitle=%E4%B8%9C%E5%8D%8E%E5%A4%A7%E5%AD%A6%E5%AD%A6%E6%8A%A5%EF%BC%88%E8%8B%B1%E6%96%87%E7%89%88%EF%BC%89&rft.au=LIU+Lu&rft.au=LIU+Xiaoyan&rft.au=HAO+Kuangrong&rft.date=2023&rft.pub=College+of+Information+Science+and+Technology%2CDonghua+University%2CShanghai+201620%2CChina&rft.issn=1672-5220&rft.volume=40&rft.issue=1&rft.spage=1&rft.epage=7&rft_id=info:doi/10.19884%2Fj.1672-5220.202203007&rft.externalDocID=dhdxxb_e202301001
thumbnail_s http://utb.summon.serialssolutions.com/2.0.0/image/custom?url=http%3A%2F%2Fwww.wanfangdata.com.cn%2Fimages%2FPeriodicalImages%2Fdhdxxb-e%2Fdhdxxb-e.jpg