STUDY ON MECHANICAL PROPERTIES OF POROUS STRUCTURES BASED ON TPMS

In order to explore the influence of different TPMS pore structures on the mechanical properties of the porous scaffold, TPMS expressed by implicit function was used as the basic pore unit to construct the micro-porous structure. TPMS porous scaffolds with different structural characteristics were c...

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Main Authors: WANG MaoHua, DUAN MingDe, YANG ZiWei, ZHANG ZhuangYa, WANG Pei, HAN ZongZheng
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2022-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2022.02.023
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author WANG MaoHua
DUAN MingDe
YANG ZiWei
ZHANG ZhuangYa
WANG Pei
HAN ZongZheng
author_facet WANG MaoHua
DUAN MingDe
YANG ZiWei
ZHANG ZhuangYa
WANG Pei
HAN ZongZheng
author_sort WANG MaoHua
collection DOAJ
description In order to explore the influence of different TPMS pore structures on the mechanical properties of the porous scaffold, TPMS expressed by implicit function was used as the basic pore unit to construct the micro-porous structure. TPMS porous scaffolds with different structural characteristics were constructed by defining the distance function, And AlSi10 Mg porous scaffolds were prepared by SLM. Finite element Method(FEM) analysis and mechanical test method were used to study the influence of different pore structure characteristics on mechanical performance of porous TPMS scaffolds and analyze the influence law of different distance function k values on porosity, elastic modulus, yield strength and failure of Primitive(P) and F-RD porous structure scaffolds. Finite element analysis and experimental results show that with the increase of distance function k, the elastic modulus and yield strength of the P unit porous scaffold presented an increasing trend, However, the elastic modulus and yield strength of the FRD unit porous scaffold showed a downward trend, Moreover, Comparing to FRD unit, P unit porous scaffolds were more likely to be crushing, through the control of the TPMS types and the distance function k value, the porosity, elastic modulus and yield strength of the porous scaffold can be effectively adjusted. The results provide a basis for the design of tissue-engineered bone scaffolds.
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institution Kabale University
issn 1001-9669
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publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-fa087fcd77484345af994262aedfc0e92025-01-15T02:24:29ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692022-01-014442443129911141STUDY ON MECHANICAL PROPERTIES OF POROUS STRUCTURES BASED ON TPMSWANG MaoHuaDUAN MingDeYANG ZiWeiZHANG ZhuangYaWANG PeiHAN ZongZhengIn order to explore the influence of different TPMS pore structures on the mechanical properties of the porous scaffold, TPMS expressed by implicit function was used as the basic pore unit to construct the micro-porous structure. TPMS porous scaffolds with different structural characteristics were constructed by defining the distance function, And AlSi10 Mg porous scaffolds were prepared by SLM. Finite element Method(FEM) analysis and mechanical test method were used to study the influence of different pore structure characteristics on mechanical performance of porous TPMS scaffolds and analyze the influence law of different distance function k values on porosity, elastic modulus, yield strength and failure of Primitive(P) and F-RD porous structure scaffolds. Finite element analysis and experimental results show that with the increase of distance function k, the elastic modulus and yield strength of the P unit porous scaffold presented an increasing trend, However, the elastic modulus and yield strength of the FRD unit porous scaffold showed a downward trend, Moreover, Comparing to FRD unit, P unit porous scaffolds were more likely to be crushing, through the control of the TPMS types and the distance function k value, the porosity, elastic modulus and yield strength of the porous scaffold can be effectively adjusted. The results provide a basis for the design of tissue-engineered bone scaffolds.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2022.02.023TPMSPore structureMechanical propertiesPorous scaffoldDistance function k
spellingShingle WANG MaoHua
DUAN MingDe
YANG ZiWei
ZHANG ZhuangYa
WANG Pei
HAN ZongZheng
STUDY ON MECHANICAL PROPERTIES OF POROUS STRUCTURES BASED ON TPMS
Jixie qiangdu
TPMS
Pore structure
Mechanical properties
Porous scaffold
Distance function k
title STUDY ON MECHANICAL PROPERTIES OF POROUS STRUCTURES BASED ON TPMS
title_full STUDY ON MECHANICAL PROPERTIES OF POROUS STRUCTURES BASED ON TPMS
title_fullStr STUDY ON MECHANICAL PROPERTIES OF POROUS STRUCTURES BASED ON TPMS
title_full_unstemmed STUDY ON MECHANICAL PROPERTIES OF POROUS STRUCTURES BASED ON TPMS
title_short STUDY ON MECHANICAL PROPERTIES OF POROUS STRUCTURES BASED ON TPMS
title_sort study on mechanical properties of porous structures based on tpms
topic TPMS
Pore structure
Mechanical properties
Porous scaffold
Distance function k
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2022.02.023
work_keys_str_mv AT wangmaohua studyonmechanicalpropertiesofporousstructuresbasedontpms
AT duanmingde studyonmechanicalpropertiesofporousstructuresbasedontpms
AT yangziwei studyonmechanicalpropertiesofporousstructuresbasedontpms
AT zhangzhuangya studyonmechanicalpropertiesofporousstructuresbasedontpms
AT wangpei studyonmechanicalpropertiesofporousstructuresbasedontpms
AT hanzongzheng studyonmechanicalpropertiesofporousstructuresbasedontpms