X-cor夹层结构拉伸模量有限元分析

通过分析X-cor夹层结构中Z-pin端部的细观结构,提出Z-pin端部树脂区椭圆形态的基本假设并建立X-cor夹层结构拉伸模量的有限元模型,利用大型有限元软件ANSYS对其拉伸模量进行了数值计算。研究了Z-pin植入角度、直径和密度的改变对X-cor夹层结构拉伸模量的影响。结果表明:X-cor夹层结构的拉伸模量随Z-pin植入角度增加而减小,随Z-pin直径和密度增加而增加。通过有限元模型的计算,得到了X-cor夹层结构参数对其拉伸模量的影响规律,数值计算结果误差范围是±10%,验证了所提的有限元模型的合理性,说明该模型可用于预测其拉伸模量。...

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Published in材料工程 no. 6; pp. 80 - 85
Main Author 党旭丹 卫萌 肖军
Format Journal Article
LanguageChinese
Published 河南工程学院机械工程系,郑州,451191%郑州大学材料科学与工程学院,郑州,450001%南京航空航天大学材料科学与技术学院,南京,210016 2012
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ISSN1001-4381
1001-4381
DOI10.3969/j.issn.1001-4381.2012.06.018

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Abstract 通过分析X-cor夹层结构中Z-pin端部的细观结构,提出Z-pin端部树脂区椭圆形态的基本假设并建立X-cor夹层结构拉伸模量的有限元模型,利用大型有限元软件ANSYS对其拉伸模量进行了数值计算。研究了Z-pin植入角度、直径和密度的改变对X-cor夹层结构拉伸模量的影响。结果表明:X-cor夹层结构的拉伸模量随Z-pin植入角度增加而减小,随Z-pin直径和密度增加而增加。通过有限元模型的计算,得到了X-cor夹层结构参数对其拉伸模量的影响规律,数值计算结果误差范围是±10%,验证了所提的有限元模型的合理性,说明该模型可用于预测其拉伸模量。
AbstractList 通过分析X-cor夹层结构中Z-pin端部的细观结构,提出Z-pin端部树脂区椭圆形态的基本假设并建立X-cor夹层结构拉伸模量的有限元模型,利用大型有限元软件ANSYS对其拉伸模量进行了数值计算。研究了Z-pin植入角度、直径和密度的改变对X-cor夹层结构拉伸模量的影响。结果表明:X-cor夹层结构的拉伸模量随Z-pin植入角度增加而减小,随Z-pin直径和密度增加而增加。通过有限元模型的计算,得到了X-cor夹层结构参数对其拉伸模量的影响规律,数值计算结果误差范围是±10%,验证了所提的有限元模型的合理性,说明该模型可用于预测其拉伸模量。
TB332; 通过分析X-cor夹层结构中Z-pin端部的细观结构,提出Z-pin端部树脂区椭圆形态的基本假设并建立X-cor夹层结构拉伸模量的有限元模型,利用大型有限元软件ANSYS对其拉伸模量进行了数值计算.研究了Z pin植入角度、直径和密度的改变对X cor夹层结构拉伸模量的影响.结果表明:X-cor夹层结构的拉伸模量随Z-pin植入角度增加而减小,随Z-pin直径和密度增加而增加.通过有限元模型的计算,得到了X-cor夹层结构参数对其拉伸模量的影响规律,数值计算结果误差范围是±10%,验证了所提的有限元模型的合理性,说明该模型可用于预测其拉伸模量.
Author 党旭丹 卫萌 肖军
AuthorAffiliation 河南工程学院机械工程系,郑州451191 郑州大学材料科学与工程学院,郑州450001 南京航空航天大学材料科学与技术学院,南京210016
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Author_FL DANG Xu-dan
XIAO Jun
WEI Meng
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DocumentTitleAlternate Finite Element Computation of X-cor Sandwich's Tensile Modulus
DocumentTitle_FL Finite Element Computation of X-cor Sandwich's Tensile Modulus
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Keywords Z-pin
有限元
拉伸模量
X-cor夹层结构
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Notes 11-1800/TB
After ana basic hypothesis that zing photomicrographs of Z-pin ends' micro-structures in X-eor sandwich, the the resin regions around Z-pin ends are elliptic is proposed. The finite element model of X-cor sandwich's tensile modulus was established and the finite element software ANSYS was used in the computation of tensile modulus. The effects of Z-pin angle, diameter and density on the X-cor sandwich's tensile modulus were analyzed. The numerical analysis results indicate that as the Z-pin angle increases the X-cor sandwich's tensile modulus decreases, as the Z-pin diameter in- creases the X-cor sandwich's tensile modulus increases and as the Z-pin density increases the X-cor sandwich's tensile modulus also increases. Through the analysis of finite element model, the effect trends of X-cor sandwich' parameters to the tensile modulus are achieved and the error range is ±10%. So the rationality of proposed finite element model is verified and the finite element model can be used to evaluate the X-cor
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PublicationTitle 材料工程
PublicationTitleAlternate Journal of Materials Engineering
PublicationTitle_FL Journal of Materials Engineering
PublicationYear 2012
Publisher 河南工程学院机械工程系,郑州,451191%郑州大学材料科学与工程学院,郑州,450001%南京航空航天大学材料科学与技术学院,南京,210016
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TB332; 通过分析X-cor夹层结构中Z-pin端部的细观结构,提出Z-pin端部树脂区椭圆形态的基本假设并建立X-cor夹层结构拉伸模量的有限元模型,利用大型有限元软件ANSYS对其拉伸模量进行了数值计算.研究了Z pin植入角度、直径和密度的改变对X...
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StartPage 80
SubjectTerms X-cor夹层结构
Z-pin
拉伸模量
有限元
Title X-cor夹层结构拉伸模量有限元分析
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