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国家自然科学基金(11227801)

作品数:12 被引量:25H指数:3
相关作者:李艳杰吴丹王庆华谢惠民更多>>
相关机构:清华大学济南大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划更多>>
相关领域:理学电子电信机械工程一般工业技术更多>>

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12 条 记 录,以下是 1-10
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Elastic constants characterization on graphite at 500℃ by the virtual fields method被引量:1
2014年
In this paper the elastic constants of graphite at elevated temperature were experimentally investigated by using the virtual fields method(VFM). A new method was presented for the characterization of mechanical properties at elevated temperature. The three-point bending tests were performed on graphite materials by an universal testing machine equipped with heating furnace. Based on the heterogeneous deformation fields measured by the digital image correlation(DIC) technique, the elastic constants were then extracted by using VFM.The measurement results of the elastic constants at 500℃ were obtained. The effect on the experimental results was also analyzed. The successful results verify the feasibility of using the proposed method to measure the properties of graphite at high temperature, and the proposed method is believed to have a good potential for further applications.
Baoqiao GuoHuaixi WangHuimin XiePengwan Chen
关键词:石墨材料字段三点弯曲试验数字图像相关
Identification of the elastic stiffness of composites using the virtual fields method and digital image correlation被引量:5
2015年
This paper presents an effective methodology for characterizing the mechanical parameters of composites using digital image correlation combined with the virtual fields method.By using a three-point bending test configuration,this method can identify all mechanical parameters of the material with merely a single test.Successful results verified that this method is especially effective for characterizing composite materials.In this study,the method is applied to measure the orthotropic elastic parameters of fiber-reinforced polymer-matrix composites before and after the hygrothermal aging process.The results indicate that the hygrothermal aging environment significantly influences the mechanical property of a composite.The components of the parameters in the direction of the fiber bundle decreased significantly.From the accuracy analysis,we found that the actual measurement accuracy is sensitive to a shift of the horizontal edges and rotation of the vertical edges.
Lebin JiangBaoqiao GuoHuimin Xie
关键词:纤维增强聚合物基复合材料数字图像相关弹性刚度湿热老化
Study of the location of testing area in residual stress measurement by Moiré interferometry combined with hole-drilling method被引量:2
2014年
This paper investigates the effect of the location of testing area in residual stress measurement by Moiréinterferometry combined with hole-drilling method.The selection of the location of the testing area is analyzed from theory and experiment.In the theoretical study,the factors which affect the surface released radial strainεr were analyzed on the basis of the formulae of the hole-drilling method,and the relations between those factors andεr were established.By combining Moiréinterferometry with the hole-drilling method,the residual stress of interference-fit specimen was measured to verify the theoretical analysis.According to the analysis results,the testing area for minimizing the error of strain measurement is determined.Moreover,if the orientation of the maximum principal stress is known,the value of strain will be measured with higher precision by the Moiréinterferometry method.
QIN LeXIE HuiMinZHU RongHuaWU DanCHE ZhiGangZOU ShiKun
关键词:试验区
聚合物膜上的微尺度金属导线在力电耦合作用下的屈曲行为(英文)被引量:2
2014年
研究一种典型的微尺度康铜线/聚合物膜结构在力电耦合作用下的屈曲行为。根据卸载后康铜线从聚合物基底上屈曲的现象,评估康铜线与聚合物基底间的界面韧性。此外,力电耦合作用还会诱发新的失稳模态。在电载荷和拉伸载荷作用下,康铜线易在屈曲时发生断裂。在电载荷和压缩载荷作用下,康铜线易在屈曲区域的顶部发生折叠,偶尔还会向聚合物基底内部方向发生屈曲。分析了这些失稳模态的产生机理。
王庆华岸本哲谢惠民李艳杰吴丹
关键词:失稳模态
Stress-induced butterfly and square-like magnetostriction loops transition被引量:1
2017年
The stress-induced magnetic domain switching in Fe Ga thin films is studied using phase-field method.In particular,the magnetic field is applied along the [110] direction and biaxial stresses are applied along[100] and [010].A compressive pre-stress corresponds to a smaller coercive magnetic field while a tensile pre-stress corresponded to a larger coercive field.At the same time,it is also found that the transition between butterfly and square-like magnetostriction loops occurs at the critical opposite biaxial stress state.The two different evolutions correspond to two different mechanisms:one is that the single domain swings across a fan area back and forth;the other is that the single domain turns a clockwise circle.The results can be explained by the stress tuned anisotropy energy well.
Zengyao LvHonglong ZhangChao ZhangYongmao Pei
关键词:相场方法轴向应力
Coherent gradient sensing method for measuring thermal stress field of thermal barrier coating structures
2017年
Coherent gradient sensing(CGS)method can be used to measure the slope of a reflective surface,and has the merits of full-field,non-contact,and real-time measurement.In this study,the thermal stress field of thermal barrier coating(TBC)structures is measured by CGS method.Two kinds of powders were sprayed onto Ni-based alloy using a plasma spraying method to obtain two groups of film–substrate specimens.The specimens were then heated with an oxy-acetylene flame.The resulting thermal mismatch between the film and substrate led to out-of-plane deformation of the specimen.The deformation was measured by the reflective CGS method and the thermal stress field of the structure was obtained through calibration with the help of finite element analysis.Both the experiment and numerical results showed that the thermal stress field of TBC structures can be successfully measured by CGS method.
Kang MaHuimin Xie
Characterization for elastic constants of fused deposition modelling-fabricated materials based on the virtual fields method and digital image correlation被引量:3
2017年
Fused deposition modelling(FDM), a widely used rapid prototyping process, is a promising technique in manufacturing engineering. In this work, a method for characterizing elastic constants of FDM-fabricated materials is proposed. First of all, according to the manufacturing process of FDM, orthotropic constitutive model is used to describe the mechanical behavior. Then the virtual fields method(VFM) is applied to characterize all the mechanical parameters(Q_(11), Q_(22), Q_(12), Q_(66)) using the full-field strain,which is measured by digital image correlation(DIC). Since the principal axis of the FDM-fabricated structure is sometimes unknown due to the complexity of the manufacturing process, a disk in diametrical compression is used as the load configuration so that the loading angle can be changed conveniently. To verify the feasibility of the proposed method, finite element method(FEM) simulation is conducted to obtain the strain field of the disk. The simulation results show that higher accuracy can be achieved when the loading angle is close to 30?. Finally, a disk fabricated by FDM was used for the experiment. By rotating the disk, several tests with different loading angles were conducted. To determine the position of the principal axis in each test, two groups of parameters(Q_(11), Q_(22), Q_(12), Q_(66)) are calculated by two different groups of virtual fields. Then the corresponding loading angle can be determined by minimizing the deviation between two groups of the parameters. After that, the four constants(Q_(11), Q_(22), Q_(12), Q_(66)) were determined from the test with an angle of 27?.
Quankun CaoHuimin Xie
关键词:FUSEDDEPOSITIONFIELDSORTHOTROPICCONSTITUTIVEDISK
Mechanics of flexible and stretchable piezoelectrics for energy harvesting被引量:5
2015年
As rapid development in wearable/implantable electronic devices benefit human life in daily health monitoring and disease treatment medically, all kinds of flexible and/or stretchable electronic devices are booming, together with which is the demanding of energy supply with similar mechanical property. Due to its ability in converting mechanical energy lying in human body into electric energy, energy harvesters based on piezoelectric materials are promising for applications in wearable/implantable device's energy supply in a renewable, clean and life-long way. Here the mechanics of traditional piezoelectrics in energy harvesting is reviewed, including why piezoelectricity is the choice for minor energy harvesting to power the implantable/wearable electronics and how. Different kinds of up to date flexible piezoelectric devices for energy harvesting are introduced, such as nanogenerators based on Zn O and thin and conformal energy harvester based on PZT. A detailed theoretical model of the flexible thin film energy harvester based on PZT nanoribbons is summarized, together with the in vivo demonstration of energy harvesting by integrating it with swine heart. Then the initial researches on stretchable energy harvesters based on piezoelectric material in wavy or serpentine configuration are introduced as well.
CHEN YingLU BingWeiOU DaPengFENG Xue
关键词:PZT薄膜压电材料植入式
Constitutive parameters identification of thermal barrier coatings using the virtual fields method
2019年
Thermal barrier coatings (TBCs) are widely applied in thermal components to protect metallic components. Owing to the complex layered structure of TBCs and difficult preparation of coating, the mechanical characterization of TBCs should be of primary importance. With regard to TBCs, this study deals with the constitutive parameters identification of bi-material. Considering the complex construction and boundary of bi material, the virtual fields method (VFM) was employed in this study. A methodology based on the optimized virtual fields method combined with moire interferometry was proposed for the constitutive parameters identification of bi-material. The feasibility of this method is verified using simulated deformation fields of a two-layer material subjected to three point ben ding loading. As an application, the deformation fields of the TBC specimens were measured by moire interferometry. Then, lhe mechanical parameters of the coating were identified by the proposed method. The identification results indicate that Young's modulus of the TBC top coating is 89.91 GPa, and its Poisson's ratio is 0.23.
Mengmeng ZhouHuimin XieLuming Li
关键词:FIELDSBARRIERCOATINGSINTERFEROMETRY
Chemo-mechanical coupling effect on high temperature oxidation:A review被引量:1
2019年
The rapid development in the field of chemo-mechanical coupling has drawn increasing attention in recent years. Chemomechanical coupling phenomena exist in many research areas, ranging from development of advanced batteries, biomechanical engineering, hydrogen embrittlement, and high temperature oxidation, etc. In this review, we attempt to provide an overview of the recent advances in chemo-mechanical coupling study on high temperature oxidation. The theoretical frameworks, computational modeling, and experimental studies on this subject are summarized and discussed. The stress-diffusion coupling effect in diffusion-controlled oxidation process, stress-induced evolution of oxide morphology in microscale experiment, and stressoxidation interaction at crack front for intergranular fracture are highlighted. In addition, potential applications and possible methods via surface engineering for improving oxidation-resistance of high temperature structural materials are briefly discussed.
FANG XuFeiLI YanYUE MengKunFENG Xue
关键词:COUPLINGOXIDATIONMICROSCALEEXPERIMENTFRACTURE
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