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基于复合材料力学模型的生态复合墙体研究 被引量:6
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作者 张程华 黄炜 +2 位作者 赵冬 张荫 侯莉娜 《工程力学》 EI CSCD 北大核心 2012年第8期249-254,共6页
生态复合墙体作为生态复合墙结构的主要受力构件,它是由生态复合墙板与隐形外框组成的墙肢或墙段。复合墙体构造上的特殊性及多种材料的使用,使其弹性常数不易确定,进而影响墙体抗侧刚度的计算。基于前期试验研究,针对墙体独特构造,结... 生态复合墙体作为生态复合墙结构的主要受力构件,它是由生态复合墙板与隐形外框组成的墙肢或墙段。复合墙体构造上的特殊性及多种材料的使用,使其弹性常数不易确定,进而影响墙体抗侧刚度的计算。基于前期试验研究,针对墙体独特构造,结合复合材料力学理论,建立适用于生态复合墙体的弹性阶段模型——双向纤维单层复合材料模型,推导出墙体弹性模量及剪切模量实用计算公式,为生态复合墙体的实用抗侧刚度计算公式提供必要的参数;利用弹性力学对各向异性等效弹性板的抗侧刚度进行推导,理论计算与试验结果的对比分析表明:在生态复合墙体抗侧刚度计算中,复合材料力学简化模型具有实用性和有效性。 展开更多
关键词 生态复合墙体 弹性抗侧刚度 复合材料力学模型 双向纤维单层复合材料模型 各向异性弹性板
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基于试验的节能砌块隐形密框墙体复合材料力学模型 被引量:1
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作者 李升才 王会丽 《工程力学》 EI CSCD 北大核心 2010年第9期161-167,共7页
该文在六片1/2比例节能砌块隐形密框墙体低周反复加载拟静力试验基础上,并结合节能砌块隐形密框墙体的特殊构造,建立了弹性阶段墙体的复合材料等效弹性板力学简化模型,其中包括两种正交各向异性复合材料计算模型,进而将墙体简化为各向... 该文在六片1/2比例节能砌块隐形密框墙体低周反复加载拟静力试验基础上,并结合节能砌块隐形密框墙体的特殊构造,建立了弹性阶段墙体的复合材料等效弹性板力学简化模型,其中包括两种正交各向异性复合材料计算模型,进而将墙体简化为各向同性的计算模型,给出了墙体弹性模量及剪切模量实用计算公式,为节能砌块隐形密框墙体的实用弹性刚度计算公式提供了必要的参数。将理论计算与试验结果进行对比分析,对墙体的弹性抗侧刚度的计算公式进行修正,提出了适合于节能砌块隐形密框墙体的弹性抗侧刚度的计算公式。结果表明:复合材料力学简化模型具有一定的理论依据和实用价值,能够满足实际工程计算需要。 展开更多
关键词 节能砌块隐形密框墙体 拟静力试验 复合材料力学模型 弹性抗侧刚度 弹性常数
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MICRO MECHANICAL ANALYSIS OF 3-D WOVEN COMPOSITES 被引量:2
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作者 周光明 周储伟 王新峰 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2004年第3期163-167,共5页
A micro mechanical model is carried out to predict micro stresses and macro elastic properties of 3-D woven composites. A unit cell is composed of two phases. One is fiber yarn and the other is resin or fiber yarn in ... A micro mechanical model is carried out to predict micro stresses and macro elastic properties of 3-D woven composites. A unit cell is composed of two phases. One is fiber yarn and the other is resin or fiber yarn in transverse. The additional shearing introduced by bending of fiber yarn is considered. The method to determine the microstructure is also discussed. This model is applied to the analysis of a 3-D woven graphite/epoxy composite. Micro stresses of the cell are studied, and then macro modulus is obtained by employing the average method. The predictions agree well with experimental results. 展开更多
关键词 micro mechanics 3-D woven composites Galerkin method
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INTERFACE DAMAGE ANALYSIS OF FIBER REINFORCED COMPOSITES WITH DUCTILE MATRIX 被引量:1
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作者 周储伟 王鑫伟 +1 位作者 杨卫 方岱宁 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2000年第2期119-123,共5页
A cohesive zone model is employed to simulate the fiber/matrix interface damage of composites with ductile matrix. The study is carried out to investigate the dependence of the interface damage and the composite tensi... A cohesive zone model is employed to simulate the fiber/matrix interface damage of composites with ductile matrix. The study is carried out to investigate the dependence of the interface damage and the composite tensile strength on the micro parameters of the composite. These parameters contain fiber packing pattern, fiber volume fraction, and the modulus ratio of the fiber to the matrix. The investigation reveals that though the high fiber vo lume fraction, the high fiber′s modulus and the square fiber packing can supply strong reinforcement to the composite, the interface damage is susceptible in these cases. The tensile strength of the composite is dominated by the interface strength when the interface debonding occurs. 展开更多
关键词 fiber reinforced composite micro mechanics cohesive zone model interface damage tensile strength
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INCLINED LAMINAL COMBINATION MODEL OF 3D BRAIDED COMPOSITES
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作者 周光明 王鑫伟 乔新 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 1995年第1期8-14,共7页
As an advanced composite material, the 3D braided composite has received more and more attention in foreign countries. However, it has received less attention in China. The geometric unit cell which can describe the b... As an advanced composite material, the 3D braided composite has received more and more attention in foreign countries. However, it has received less attention in China. The geometric unit cell which can describe the basic structure and the relationship between the braiding angle and geometric parameters of the fabric and fiber volume ratio are given in this paper based on two 3D braiding processes, namely, the four-step and the twostep ones. Several existing mechanical models to predict groperties of the 3D braided comPOsites are discussed and their shortcomings are pointed out herein. Then a new model called the inclined laminal combination model is proposed, which is based on the classical laminated plate theory and can predict the basic mechanical behavior of the two 3D braided composites with four-step or two-step braid. In the model, each yarn in the unit cell is regarded as an inclined laminate and then a 3D analysis is performed. It is found that the predicted mechanical properties of the 3D braided composites by the proposed model are compared well with the experimental data. 展开更多
关键词 COMPOSITES mechanical properties unit cell mechanical model 3D braided
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PREDICTION OF TEXTILE FABRIC REINFORCED COMPOSITE PROPERTIES BASED ON NODE INTERPOLATION CELL METHOD
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作者 孙杰 宋迎东 +1 位作者 高希光 孙志刚 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2011年第1期129-136,共8页
Node interpolation cell method(NICM)is a micromechanics method employing the virtual displacement principle and the representative volume element(RVE)scheme to obtain the relationship between the global and the lo... Node interpolation cell method(NICM)is a micromechanics method employing the virtual displacement principle and the representative volume element(RVE)scheme to obtain the relationship between the global and the local strain.Mechanical properties of 2-D textile fabric reinforced ceramic matrix composites are predicted by NICM.Microstructures of 2-D woven and braided fabric reinforced composite are modeled by two kinds of RVE scheme.NICM is used to predict the macroscopic mechanical properties.The fill and warp yarns are simulated with cubic B-spline and their undulating forms are approximated by sinusoid.The effect of porosity on the fiber and matrix are considered as a reduction of elastic module.The connection of microstructure parameters and fiber volume fraction is modeled to investigate the reflection on the mechanical properties.The results predicted by NICM are compared with that by the finite element method(FEM).The comparison shows that NICM is a valid and feasible method for predicting the mechanics properties of 2-D woven and braided fabric reinforced ceramic matrix composites. 展开更多
关键词 textile composites mechanical properties CERAMIC node interpolation cell method
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A mesomechanical ductility model of SiC_p/Al composite
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作者 陈康华 黄大为 +2 位作者 宋日文 李侠 方玲 《Journal of Central South University of Technology》 EI 2006年第4期325-331,共7页
Based on tensile cracking of SiC_p and decohesion of the interface between SiC_p and Al matrix, a mesomechanical model for tensile deformation of SiC_p/Al composites was developed. The microcracks and multi-scale seco... Based on tensile cracking of SiC_p and decohesion of the interface between SiC_p and Al matrix, a mesomechanical model for tensile deformation of SiC_p/Al composites was developed. The microcracks and multi-scale second phase particles were assumed to distribute homogeneously. A nonlinear quantitative relationship between tensile ductility and volume fraction of SiC_p was established based on the model. The tensile ductility values of 2xxx SiC_p/Al and 6xxx SiC_p/Al composites predicted by the model are in good agreement with the experimental values. The analysis of effects of multi-scale second phases on the ductility of the composites indicates that the ductility decreases with the increase of the volume fraction of SiC_p and precipitates in Al matrix and is almost independent of constituents and dispersoids. 展开更多
关键词 SICP/AL COMPOSITE MESOMECHANICS tensile ductility model
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Three-Dimensional Thermal-Stress Analysis of Semi-infinite Transversely Isotropic Composites
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作者 TOKOVYY Yuriy BOIKO Dmytro GAO Cunfa 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第1期18-28,共11页
By making use of the direct integration method,an exact analysis of the general three-dimensional thermoelasticity problem is performed for the case of a transversely isotropic homogeneous half-space subject to local ... By making use of the direct integration method,an exact analysis of the general three-dimensional thermoelasticity problem is performed for the case of a transversely isotropic homogeneous half-space subject to local thermal and force loadings.The material plane of isotropy is assumed to be parallel to the limiting surface of the halfspace.By reducing the original thermoelasticity equations to the governing ones for individual stress-tensor components,the effect of material anisotropy in the stress field is analyzed with regard to the feasibility requirement,i.e.,the finiteness of the stress field at a distance from the disturbed area.As a result,the solution is constructed in the form of explicit analytical dependencies on the force and thermal loadings for various kinds of transversely isotropic materials and agrees with the basic principles of the continua mechanics.The solution can be efficiently used as a benchmark one for the direct computation of temperature and thermal stresses in transversely isotropic semi-infinite domains,as well as for the verification of solutions constructed by different means. 展开更多
关键词 three-dimensional problem analytical solution transversely isotropic composites semi-infinite model force and thermal loadings finite stress distributions
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Dynamic analytic model of mechanism with links fabricated from symmetric laminates
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作者 蔡敢为 常平平 +2 位作者 马存志 王汝贵 李兆军 《Journal of Central South University of Technology》 EI 2006年第6期624-630,共7页
A four-bar linkage mechanism with links fabricated from symmetric laminates was studied. The mass matrix of the beam dement was obtained in light of the mass distribution characteristics of composite materials. The st... A four-bar linkage mechanism with links fabricated from symmetric laminates was studied. The mass matrix of the beam dement was obtained in light of the mass distribution characteristics of composite materials. The stiffness matrix of the beam element was derived from the constitutive equations of each layer and the relationship between the strain distribution and the node displacement of the beam element. The specific damping capacity of the beam element was analyzed according to the strain distribution of the beam element and the strain energy dissipation caused by vibration in each direction of each layer; and the damping coefficients were obtained according to the principle that the total energy dissipation of the beam element was equal to the work done by the equivalent damping force during a cycle of vibration, from which the damping matrix of the dynamic equations was obtained. Using the finite element method, the dynamic analytic model of the mechanism was obtained. The dynamic responses and natural frequency of the mechanism were obtained by simulation, respectively, and those of the simulation obtained by the proposed model were analyzed and compared with the results obtained by the conventional model. The work provides theoretical basis to a certain extent for the further research on nonlinear vibration characteristics and optimum design of this kind of mechanism. 展开更多
关键词 linkage mechanism finite element method composite materials DAMPING dynamic analysis
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A Simulation Software for the Prediction of Thermal and Mechanical Properties of Wood Plastic Composites
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作者 Ritu Gupta Norrozila Binti Sulaiman +1 位作者 Arun Gupta M.D.H. Beg 《Computer Technology and Application》 2013年第1期1-5,共5页
Modelling and simulation has become an important tool in research and development. Simulation models are used to develop better understanding of the internal properties and impact of various parameters on the final qu... Modelling and simulation has become an important tool in research and development. Simulation models are used to develop better understanding of the internal properties and impact of various parameters on the final quality of the product or process. Simulation model reduces the number of experiments and saves the wastage of material, time and money and are widely used in automobile industry, aircrafts manufacturing, process engineering, training for military, health care sector and many more. Wood Plastic Composite (WPC) is a bio-composite made by mixing wood fibers and plastic granules together at high temperature by compression molding or injection molding. A large quantity of WPC is rejected due to poor quality and low mechanical strength. There is a need to improve the understanding of the wood plastic composites, with both theoretical and experimental analysis. The impact of various parameters and processing conditions on the final product is not known to the industry people, due to less simulation models in this field. A new simulation software WPC Soft is developed to predict the mechanical and thermal properties of WPC. The software can predict the mechanical and thermal properties of WPC. The simulation results were validated with the experimental results and it was observed that the predicted values are quite close to the experimental values and with the further refining of the model, prediction can be further improved. The present simulation software can be easily used by the industry people and it requires very little knowledge of computers or modeling for its operation. 展开更多
关键词 Wood plastic composite simulation software heat transfer mechanical properties.
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A Novel Method for the Fabrication of Granular Hydroxyapatite-bentonite Composite Adsorbents for the Removal of Pb2+ from an Aqueous Solution
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作者 ThiMinh Hieu Do Pham ThanhThao Tran AnhKhoaTon Minh Vien Le 《Journal of Environmental Science and Engineering(B)》 2016年第7期371-378,共8页
Granular HApB composite adsorbents, with dimensions of 4 mm × 4 mm, were prepared for the removal of lead from an aqueous solution. The effectiveness of the composites for Pb2+ removal from an aqueous solution w... Granular HApB composite adsorbents, with dimensions of 4 mm × 4 mm, were prepared for the removal of lead from an aqueous solution. The effectiveness of the composites for Pb2+ removal from an aqueous solution with different initial concentrations, adsorbent doses and reaction times were examined. The Langmuir isotherms, Freundlich isotherm models and pseudo-second order kinetic model were used in this analysis. It was found that the Langmuir model fitted the experimental data better than the Freundlich model, with a maximum adsorption capacity of 93.37 mg.g-1. The pseudo-second order kinetic model also fit the experiment data well with an adsorption capacity of 70.73 mg.g-1 after being reused for 3 times. Furthermore, the composites may possibly be used in processes for industrial water treatment. 展开更多
关键词 Environment AFFORESTATION poplar plantations timber marketing.
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Modeling of mechanical behaviors for natural fiber reinforced composites under hygrothermal ageing
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作者 Zheng Zhong Fang Tian 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2017年第12期80-82,共3页
In recent years,natural fiber reinforced composites have been widely applied to various industrial products for their excellent environmental-friendly performance.It is essential to understand the mechanical propertie... In recent years,natural fiber reinforced composites have been widely applied to various industrial products for their excellent environmental-friendly performance.It is essential to understand the mechanical properties of natural fiber reinforced composites under their in-service environment.Compared with synthetic fibers,the hydrophilicity of natural fibers could result in a much larger quantity of water absorption from the moisture atmosphere,which would have adverse consequences for the durability of natural fiber reinforced composites[1].The environmental temperature would affect the 展开更多
关键词 reinforced DURABILITY MOISTURE consequences friendly ageing CONSTITUTIVE HAVE HYDROLYSIS DETERIORATION
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