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Unveiling the underlying mechanism of forming edge cracks upon high strain-rate rolling of magnesium alloy 被引量:9
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作者 Biwu Zhu Xiao Liu +4 位作者 Chao Xie Jing Su Pengcheng Guo Changping Tang Wenhui Liu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2020年第15期59-65,共7页
In the current study,high strain-rate rolling(≥10 s-1) has been successfully employed to produce Mg-3 A1-1 Zn alloy sheets to a high reduction of 82% with a fine grain structure in a single pass.The underlying mechan... In the current study,high strain-rate rolling(≥10 s-1) has been successfully employed to produce Mg-3 A1-1 Zn alloy sheets to a high reduction of 82% with a fine grain structure in a single pass.The underlying mechanism of forming primary and secondary edge cracks has been investigated.It is found that dynamic recrystallization(DRX) induced by subgrains tends to blunt cracks,while twinning-induced D RX is mainly observed around sharp crack tips.The motion of emitted dislocations from blunted cracks is inhibited by the DRX grain boundaries.This,on one hand,increases local work hardening,and on the other hand,causes stress concentration alo ng grain boundaries especially in the triple junctions leading to the formation of secondary cracks. 展开更多
关键词 Edge crack Secondary crack High strain-rate rolling AZ31 magnesium alloy Dynamic recrystallization
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Material embrittlement in high strain-rate loading 被引量:12
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作者 Xiuxuan Yang Bi Zhang 《International Journal of Extreme Manufacturing》 2019年第2期53-71,共19页
Material embrittlement is often encountered in machining,heat treatment,hydrogen and lowtemperature conditions among which machining is strain-rate related.More strain-rate evoked embrittlement is expected in material... Material embrittlement is often encountered in machining,heat treatment,hydrogen and lowtemperature conditions among which machining is strain-rate related.More strain-rate evoked embrittlement is expected in material loading processes,such as in high-speed machining and projectile penetration.In order to understand the fundamental mechanisms of the strain-rate evoked material embrittlement,this study is concerned with the material responses to loading at high strain-rates.It then explores the strain-rate evoked material embrittlement and fragmentation during high strain-rate loading processes and evaluates various empirical and physical models from different researchers for the assessment of the material embrittlement.The study proposes strain-rate sensitivity for the characterization of material embrittlement and the concept of the pseudo embrittlement for material responses to very high strain-rates.A discussion section is arranged to explore the underlying mechanisms of the strain-rate evoked material embrittlement and fragmentation based on dislocation kinetics. 展开更多
关键词 EMBRITTLEMENT strain rate strain-rate sensitivity DISLOCATION
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Strain-rate Sensitivity of Aluminum 2024-T6/TiB_2 Composites and Aluminum 2024-T6 被引量:1
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作者 朱德智 郑振兴 CHEN Qi 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2015年第2期256-260,共5页
Strain-rate sensitivities of 55vol%-65vol% aluminum 2024-T6/TiB2 composites and the corresponding aluminum 2024-T6 matrix were investigated using split Hopkinson pressure bar method. The experimental results showed th... Strain-rate sensitivities of 55vol%-65vol% aluminum 2024-T6/TiB2 composites and the corresponding aluminum 2024-T6 matrix were investigated using split Hopkinson pressure bar method. The experimental results showed that 55vol%-65vol% aluminum 2024-T6/TiB2 composites exhibited significant strain-rate sensitivities, which were three times higher than the strain-rate sensitivity of the aluminum 2024-T6 matrix. The strain-rate sensitivity of the aluminum 2024-T6 matrix composites rose obviously with increasing reinforcement content(up to 60%), which agreed with that from the previous researches. But it decreased as the ceramic reinforcement content reached 65%. After high strain rates compression, a large number of dislocations and micro-cracks were found inside the matrix and the Ti B2 particles, respectively. These micro-cracks can accelerate the brittle fracture of the composites. The aluminum 2024-T6/Ti B2 composites showed various fracture characteristics and shear instability was the predominant failure mechanism under dynamic loading. 展开更多
关键词 composite materials mechanical properties dynamic compression strain-rate sensitivity
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PRINCIPAL COMPONENT DECOMPOSITION BASED FINITE ELEMENT MODEL UPDATING FOR STRAIN-RATE-DEPENDENCE NONLINEAR DYNAMIC PROBLEMS 被引量:1
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作者 GUO Qintao ZHANG Lingmi TAO Zheng 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2008年第5期70-74,共5页
Thin wail component is utilized to absorb impact energy of a structure. However, the dynamic behavior of such thin-walled structure is highly non-linear with material, geometry and boundary non-linearity. A model upda... Thin wail component is utilized to absorb impact energy of a structure. However, the dynamic behavior of such thin-walled structure is highly non-linear with material, geometry and boundary non-linearity. A model updating and validation procedure is proposed to build accurate finite element model of a frame structure with a non-linear thin-walled component for dynamic analysis. Design of experiments (DOE) and principal component decomposition (PCD) approach are applied to extract dynamic feature from nonlinear impact response for correlation of impact test result and FE model of the non-linear structure. A strain-rate-dependent non-linear model updating method is then developed to build accurate FE model of the structure. Computer simulation and a real frame structure with a highly non-linear thin-walled component are employed to demonstrate the feasibility and effectiveness of the proposed approach. 展开更多
关键词 strain-rate-dependent Finite element model updating Nonlinear dynamics Response surface
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Effects of Calcium and Yttrium on Microstructure and Mechanical Properties of High Strain-Rate Rolled AZ91D Magnesium Alloy
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作者 SHEN Yanjin 《Journal of Donghua University(English Edition)》 EI CAS 2018年第2期149-153,共5页
Effects of calcium( Ca) and yttrium( Y) on microstructure and mechanical properties of high strain-rate rolled AZ91 D magnesium alloy were studied. High strain-rate rolling can improve the strength and plasticity of m... Effects of calcium( Ca) and yttrium( Y) on microstructure and mechanical properties of high strain-rate rolled AZ91 D magnesium alloy were studied. High strain-rate rolling can improve the strength and plasticity of magnesium alloy sheets.Additions of Ca and Y into AZ91 D can refine grains and modify the size and the distribution of the precipitated phases. After solution treatment( 418 ℃ and 20 h) and high strain-rate rolling( heating at420 ℃ for 10 min firstly and then rolling from 10 mm to 2 mm in thickness via a single pass),the tensile strength of the AZ91 D-0. 2%Ca alloy was 1. 3% higher than that of the AZ91 D-0. 4 D%Y alloy,and the tensile strength of the AZ91 D-0. 2%Ca-0. 4%Y alloy was about 8. 3% and 6. 9% higher than those of the AZ91 D-0. 4%Y and the AZ91 D-0. 2%Ca alloys respectively. 展开更多
关键词 HIGH strain-rate ROLLING magnesium alloy microstructure mechanical properties TENSILE strength grain size
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Effects of grain size and Al addition on the activation volume and strain-rate sensitivity of CoCrFeMnNi high-entropy alloy
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作者 H.T.Jeong W.J.Kim 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第12期242-252,共11页
The activation volume(V∗)and strain-rate sensitivity exponent(m)of CoCrFeMnNi and Al_(0.5)CoCrFeMnNi high entropy alloys(HEAs)with various grain sizes(ranging between 2.4 and 356μm)were measured at different strain r... The activation volume(V∗)and strain-rate sensitivity exponent(m)of CoCrFeMnNi and Al_(0.5)CoCrFeMnNi high entropy alloys(HEAs)with various grain sizes(ranging between 2.4 and 356μm)were measured at different strain rates and strain levels at room temperature.As the strain rate decreased,the plastic strain decreased,and the grain size increased,V∗increased.The enhanced solid-solution strengthening by addition of aluminum decreased V∗.The Hassen plot was modified to capture the grain-size depen-dence of V∗by considering the grain-size dependence of the dislocation density.As the plastic strain increased,the strain rate decreased,and the grain size decreased,m decreased.The behavior of m could be quantitatively predicted by using equations derived for the grain-size-dependent V∗and flow stress.The difference in the grain-size dependence of m between conventional face centered cubic(FCC)metals and FCC HEAs over the nanograin size range could not be explained in terms of a relatively large Hall-Petch slope of the FCC HEAs compared with that of the FCC conventional metals,but was explainable in terms of a substantially higher probability of activation of grain-boundary diffusion-controlled grain-boundary-sliding mechanism at nanograin sizes in the FCC conventional metals than in the FCC HEAs. 展开更多
关键词 Grain size High entropy alloys Activation volume strain-rate sensitivity Solid solution
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A QUASI-FLOW CONSTITUTIVE MODEL WITH STRAIN-RATE DEPENDENCE
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作者 胡平 申国哲 杨光 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2004年第3期283-291,共9页
In this paper,the proposed is a quasi-flow constitutive model with strain-rate sen- sitivity for elastic plastic large deformation.The model is based on the Quasi-flow Corner theory, and is suitable for the sheet meta... In this paper,the proposed is a quasi-flow constitutive model with strain-rate sen- sitivity for elastic plastic large deformation.The model is based on the Quasi-flow Corner theory, and is suitable for the sheet metal forming process simulation with a variable punch machine velocity. Uniaxial tensile tests and deep-drawing tests of a circular blank with square punch are carried out and numerically simulated.The consistency between the experimental and the numerically simulated results shows the validity of the present new constitutive model. 展开更多
关键词 strain-rate sensitivity quasi-flow constitutive model sheet metal forming
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Advanced test methods of material property characterization:high strain-rate testing and experimental simulation of multiaxial stress states
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作者 Reinhard BARDENHEIER 《Baosteel Technical Research》 CAS 2010年第S1期122-,共1页
Optimum utilization of the loading capability of engineering materials is an important and active contribution to protect nature's limited resources,and it is the key for economic design methods.In order to make u... Optimum utilization of the loading capability of engineering materials is an important and active contribution to protect nature's limited resources,and it is the key for economic design methods.In order to make use of the materials' resources,those must be known very well;but conventional test methods will offer only limited informational value.The range of questions raised is as wide as the application of engineering materials,and partially they are very specific.The development of huge computer powers enables numeric modelling to simulate structural behaviour in rather complex loading environments-so the real material behaviour is known under the given loading conditions.Here the art of material testing design starts.To study the material behaviour under very distinct and specific loading conditions makes it necessary to simulate different temperature ranges,loading speeds, environments etc.and mostly there doesn't exist any commonly agreed test standard.In this contribution two popular,non-standard test procedures and test systems will be discussed on the base of their application background,special design features as well as test results and typically gained information:The demand for highspeed tests up to 1000 s^(-1) of strain rate is very specific and originates primarily in the automotive industry and the answers enable CAE analysis of crashworthiness of vehicle structures under crash conditions.The information on the material behaviour under multiaxial loading conditions is a more general one.Multiaxial stress states can be reduced to an equivalent stress,which allows the evaluation of the material's constraint and criticality of stress state.Both discussed examples shall show that the open dialogue between the user and the producer of testing machines allows custom-tailored test solutions. 展开更多
关键词 economic design numeric modelling simulation high strain-rate testing strain- rate sensitivity CRASHWORTHINESS multiaxial stress state material constraint equivalent stress state
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A revisit of strain-rate frequency superposition of dense colloidal suspensions under oscillatory shears
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作者 李俊杰 程璇 +1 位作者 张颖 孙尉翔 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第8期1873-1882,共10页
Strain-rate frequency superposition(SRFS) is often employed to probe the low-frequency behavior of soft solids under oscillatory shear in anticipated linear response. However, physical interpretation of an apparently ... Strain-rate frequency superposition(SRFS) is often employed to probe the low-frequency behavior of soft solids under oscillatory shear in anticipated linear response. However, physical interpretation of an apparently well-overlapped master curve generated by SRFS has to combine with nonlinear analysis techniques such as Fourier transform rheology and stress decomposition method. The benefit of SRFS is discarded when some inconsistencies of the shifted master curves with the canonical linear response are observed. In this work, instead of evaluating the SRFS in full master curves, two criteria were proposed to decompose the original SRFS data and to delete the bad experimental data. Application to Carabopol suspensions indicates that good master curves could be constructed based upon the modified data and the high-frequency deviations often observed in original SRFS master curves are eliminated. The modified SRFS data also enable a better quantitative description and the evaluation of the apparent structural relaxation time by the two-mode fractional Maxwell model. 展开更多
关键词 strain-rate frequency superposition medium amplitude oscillatory shear linear viscoelasticity fractional Maxwell model
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Energy Absorption of Pultruded Glass-Graphite/Epoxy Hybrid Composites under High Strain-Rate Induced Transverse Tension
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作者 Damian Stoddard Suman Babu Ukyam +1 位作者 R. Mantena Prabhakar Arunachalam Rajendran 《Open Journal of Composite Materials》 2018年第2期43-53,共11页
This paper focuses on the dynamic tensile response of glass-graphite/epoxy composites illustrating improvement in energy absorption through hybridization. The dynamic response and energy absorption characteristics of ... This paper focuses on the dynamic tensile response of glass-graphite/epoxy composites illustrating improvement in energy absorption through hybridization. The dynamic response and energy absorption characteristics of pultruded hybrid combinations of glass and graphite fibers in an epoxy matrix subjected to induced transverse tension at high strain-rate in a modified Split Hopkinson Pressure Bar (SHPB) apparatus, are presented. Transverse tensile strength was determined by diametral compression of disc samples (Brazilian indirect tensile test method). Diametral crack initiation and strain to failure were monitored with a Shimadzu HPV-2 high-speed video camera at a recording speed of 500,000 fps and Digital Image Correlation (DIC). Adequate measures were taken to ensure that initiation of specimen failure occurred at the exact center of the disc specimen, and propagated through the diameter along the compressive loading axis, for the induced transverse tension tests to be valid. A study of the strength and specific energy absorption demonstrates the benefits of hybridization. Under induced transverse tensile loading condition, the pure glass/epoxy (GL60) exhibited higher strength than pure graphite/epoxy (GR60). Pure graphite/epoxy (GR60) has higher specific energy absorption capacity than pure glass/epoxy (GL60) in transverse tension. Among all hybrids, GR30 has the highest specific energy absorption under transverse tension. Overall, hybrid GL48, with 48% low-cost glass fibers in the inner core and 12% high-cost graphite fibers in outer shell, was found to exhibit better performance under induced transverse tension at high strain-rates, showing the benefits of hybridization. 展开更多
关键词 Pultruded Composites HYBRIDS HIGH strain-rate SHPB Dynamic Energy Absorption BRAZILIAN Disc Indirect Tensile Test
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Dynamic Response of Pultruded Glass-Graphite/Epoxy Hybrid Composites Subjected to Transverse High Strain-Rate Compression Loading
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作者 Mohammad Afrough Tejas S. Pandya +1 位作者 Seyed Soheil Daryadel Prabhakar Raju Mantena 《Materials Sciences and Applications》 2015年第11期953-962,共10页
In a previous study, the energy absorption and dynamic response of different combinations of cylindrical fiber-reinforced pultruded hybrid composite samples made of unidirectional glass and graphite fiber/epoxy, were ... In a previous study, the energy absorption and dynamic response of different combinations of cylindrical fiber-reinforced pultruded hybrid composite samples made of unidirectional glass and graphite fiber/epoxy, were investigated under longitudinal compression loading. It was found that placing glass fibers in the inner core of composites resulted in a higher ultimate compressive strength and specific energy absorption. In this study, the dynamic responses of pultruded glass-graphite/epoxy hybrid specimens with rectangular cross-section subjected to transverse compression loading are reported. Crack initiation and propagation was monitored using a high-speed video camera, and the effects of hybridization were analyzed. It was found that the location of glass or graphite fibers inside the pultruded composites has no significant effect on the ultimate compressive strength under such transverse compression loading. The energy absorption in all the hybrid specimens was almost identical. Graphite/epoxy composite showed higher specific energy absorption due to its lower density, and glass/epoxy composite had the lowest specific energy absorption. 展开更多
关键词 Pultruded Composites HIGH strain-rate Compression Loading SHPB Energy Absorption TRANSVERSE Loadings
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Dynamic recrystallization of electroformed copper liners of shaped charges in high-strain-rate plastic deformation
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作者 WenhuaiTian QiSun 《Journal of University of Science and Technology Beijing》 CSCD 2002年第5期343-346,共4页
The microstructures in the electroformed copper liners of shapedcharges after high-strain-rate plastic deformation were in-vestigated by transmission electron microscopy(TEM). Meanwhile, theorientation distribution of... The microstructures in the electroformed copper liners of shapedcharges after high-strain-rate plastic deformation were in-vestigated by transmission electron microscopy(TEM). Meanwhile, theorientation distribution of the grains in the recovered slug wasexamined by the electron backscattering Kikuchipattern(EBSP)technique. EBSP analysis illustrated that unlike theas-formed electro- formed copper liners of shaped charges the grainorientations in the recovered slug are distributed along randomly allthe directions after undergoing heavily strain deformation athigh-strain rate. Optical microscopy shows a typicalrecrystallization structure, and TEM exam- ination revealsdislocation cells existed in the thin foil specimen. These resultsindicate that dynamic recovery and recrystallization occur duringthis plastic deformation process, and the associated deformationtemperature is considered to be higher than 0.6 times the meltingpoint of copper. 展开更多
关键词 ELECTROFORMATION high-strain-rate deformation dynamic recovery andrecrystallization transmission electron microscopy
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MICROSTRUCTURAL CHARACTERISTICS ASSOCIATED WITH HIGH- STRAIN-RATE PLASTIC DEFORMATION IN THE ELECTROFORMED COPPER LINER OF SHAPED CHARGES 被引量:4
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作者 A.L. Fan W.H. Tian +1 位作者 Q. Suns B.S. Wang 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2005年第5期620-626,共7页
The microstructures of electroformed copper liners of shaped charges that had undergone high-strain-rate deformation were observed by optical microscopy (OM) and scanning electron microscopy (SEM). Meanwhile, the ... The microstructures of electroformed copper liners of shaped charges that had undergone high-strain-rate deformation were observed by optical microscopy (OM) and scanning electron microscopy (SEM). Meanwhile, the orientation distribution of the grains in the recovered jet was examined by electron backscattering Kikuchi pattern (EBSP) technique. EBSP analysis reveals that the fibrous texture observed in the as-electroformed copper liners disappeared after explosive detonation deformation. OM observation shows that the microstructure evolves system- atically from the jet center to its perimeter during cooling from high temperatures after explosive detonation deformation. This microstructural characteristic is similar to that of solidification, i.e. there exist equiaxed grains in the center of the jet and significant columnar grains around the equiaxed grains. The result reveals that there is melting-related phenomenon in the jet center. Corresponding microhardness variations from the jet center to its perimeter is also determined. All the phenomena can be explained by a strong gradient of temperature across the section of the jet during plastic deformation at high-strain-rate. 展开更多
关键词 JETTING ELECTROFORMATION microstructure hardness ultra-high strain rate deformation
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Comparison of microstructures in electroformed and spin-formed copper liners of shaped charge undergone high-strain-rate deformation 被引量:4
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作者 范爱玲 李树奎 +1 位作者 田文怀 王富耻 《中国有色金属学会会刊:英文版》 EI CSCD 2007年第6期1447-1450,共4页
The as-formed and post-deformed microstructures in both electroformed and spin-formed copper liners of shaped charge were studied by optical microscopy(OM), electron backscattering Kikuchi patterns(EBSP) technique and... The as-formed and post-deformed microstructures in both electroformed and spin-formed copper liners of shaped charge were studied by optical microscopy(OM), electron backscattering Kikuchi patterns(EBSP) technique and transmission electron microscopy(TEM). The deformation was carried out at an ultra-high strain rate. OM analysis shows that the initial grains of the electroformed copper liner are finer than those of the spin-formed copper liners. Meanwhile, EBSP analysis reveals that the fiber texture exists in the electroformed copper liners, whereas there is no texture observed in the spin-formed copper liners before deformation. Having undergone high-strain-rate deformation the grains in the recovered slugs, which are transformed from both the electroformed and spin-formed copper liners, all become small. TEM observations of the above two kinds of post-deformed specimens show the existence of cellular structures characterized by tangled dislocations and subgrain boundaries consisting of dislocation arrays. These experimental results indicate that dynamic recovery and recrystallization play an important role in the high-strain-rate deformation process. 展开更多
关键词 微观结构 高疲劳率变形 动态恢复
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Comparison of the historic seismicity and strain-rate pattern from a dense GPS-GNSS network solution in the Italian Peninsula 被引量:3
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作者 Giuseppe Casula Maria Giovanna Bianchi 《Geodesy and Geodynamics》 2016年第5期303-316,共14页
We present a dense crustal velocity field and corresponding strain-rate pattern computed using Global Positioning System(GPS)- Global Navigation Satellite System(GNSS) data from several hundred permanent stations ... We present a dense crustal velocity field and corresponding strain-rate pattern computed using Global Positioning System(GPS)- Global Navigation Satellite System(GNSS) data from several hundred permanent stations in the Italian Peninsula. GPS data analysis is based on the GAMIT/GLOBK 10.6 software, which was developed and maintained mainly by Massachusetts Institute of Technology(MIT), using tools based on the distributed-sessions approach implemented in this package. The GPS data span the period from January 2008 to December 2012 and come from several different permanent GPS networks in Italy. The GLOBK package implemented in the last version of the GAMIT package is used to compute the position time-series and velocities registered in the International Terrestrial Reference Frame(ITRF) 2008. The resulting high-density intra-plate velocity field provides indications of the tectonics of the Mediterranean region. A computation of the strain-rate pattern from GPS data is performed and compared with the map of the epicentral locations of historical earthquakes that occurred in the last 1000 years in the Italian territory, showing that, in general, higher crustal deformation rates are active in regions affected by seismicity of greater magnitude. 展开更多
关键词 GPS Strain rate Distributed sessions TECTONICS
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Strain-rate effect on initial crush stress of irregular honeycomb under dynamic loading and its deformation mechanism 被引量:4
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作者 Peng Wang Zhijun Zheng +1 位作者 Shenfei Liao Jilin Yu 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2018年第1期117-129,共13页
The seemingly contradictory understandings of the initial crush stress of cellular materials under dynamic loadings exist in the literature, and a comprehensive analysis of this issue is carried out with using direct ... The seemingly contradictory understandings of the initial crush stress of cellular materials under dynamic loadings exist in the literature, and a comprehensive analysis of this issue is carried out with using direct information of local stress and strain. Local stress/strain calculation methods are applied to determine the initial crush stresses and the strain rates at initial crush from a cell-based finite element model of irregular honeycomb under dynamic loadings. The initial crush stress under constant-velocity compression is identical to the quasi-static one, but less than the one under direct impact, i.e. the initial crush stresses under different dynamic loadings could be very different even though there is no strain-rate effect of matrix material. A power-law relation between the initial crush stress and the strain rate is explored to describe the strain-rate effect on the initial crush stress of irregular honeycomb when the local strain rate exceeds a critical value, below which there is no strain-rate effect of irregular honeycomb. Deformation mechanisms of the initial crush behavior under dynamic loadings are also explored.The deformation modes of the initial crush region in the front of plastic compaction wave are different under different dynamic loadings. 展开更多
关键词 Cellular material Constant-velocity compression Direct impact Cross-sectional stress Initial crush stress Strain rate effect
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Early Detection of Regional and Global Left Ventricular Myocardial Function Using Strain and Strain-rate Imaging in Patients with Metabolic Syndrome 被引量:6
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作者 QinWang Qi-Wei Sun +7 位作者 Dan Wu Ming-Wu Yang Rong-Juan Li Bo Jiang Jiao Yang Zhi-An Li YingWang Ya Yang 《Chinese Medical Journal》 SCIE CAS CSCD 2015年第2期226-232,共7页
Background:Strain and strain-rate imaging (SRI) have been found clinically useful in the assessment of cardiac systolic and diastolic function as well as providing new insights in deciphering cardiac physiology and... Background:Strain and strain-rate imaging (SRI) have been found clinically useful in the assessment of cardiac systolic and diastolic function as well as providing new insights in deciphering cardiac physiology and mechanics in cardiomyopathies,and identifying early subclinical changes in various pathologies.The aim of this study was to evaluate the regional and global left ventricular (LV) myocardial function in metabolic syndrome (MS) with SRI so that we can provide more myocardial small lesions in patients with MS,which is robust and reliable basis for early detection of LV function.Methods:Thirty-nine adults with MS were enrolled in the study.There was a control group of 39 healthy adults.In addition to classic echocardiographic assessment of LV global functional changes,SRI was used to evaluate regional and global LV function.Including:Peak systolic strain (S),peak systolic strain-rate (SR-s),peak diastolic strain-rate (SR-e).Results:There were no statistically significant differences between MS and controls in all traditional parameters of LV systolic function.On the other hand,significant differences were observed between MS and the control group in most of the parameters of S,SR-s,SR-e in regional LV function.Multiple stepwise regression analyses revealed that S and SR significantly were negatively correlated with blood pressure,waist circumference,fasting plasma glucose,uric acid,suggesting that risk factories were relevant to regional systolic dysfunction.Conclusion:In MS with normal LV ejection fraction,there was regional myocardial dysfunction,risk factors contributed to the impairment of systolic and diastolic function of the regional myocardium.Assessment of myocardial function using SRI could be more accurate in MS patient evaluation than conventional echocardiography alone. 展开更多
关键词 Metabolic Syndrome Regional Left Ventricular Function Strain and strain-rate Imaging
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高温Taylor撞击实验技术及其在金属材料本构模型验证中的应用
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作者 陈军红 尹标 +4 位作者 张胜德 胡文军 张方举 谢若泽 徐伟芳 《力学学报》 北大核心 2026年第2期486-496,共11页
高温Taylor撞击实验为应变率和温度相关的材料本构模型验证和参数优化提供了新方法.基于空气炮装置,突破了实验件速度实现与控制、实验件高温实现与装置设计、高温实验件冲击动力学响应量测试三项关键技术,建立了高温Taylor撞击实验技术... 高温Taylor撞击实验为应变率和温度相关的材料本构模型验证和参数优化提供了新方法.基于空气炮装置,突破了实验件速度实现与控制、实验件高温实现与装置设计、高温实验件冲击动力学响应量测试三项关键技术,建立了高温Taylor撞击实验技术,并将其应用于05Cr17Ni4Cu4Nb钢本构模型参数验证与优化中.首先,对05Cr17Ni4Cu4Nb钢进行了室温~900℃以及1.0×10^(-3)~1.0×10^(3) s^(-1)应变率下的拉伸实验,获得了不同温度和应变率下的应力应变曲线.基于参考应变率下材料流动应力随塑性应变变化、屈服强度随应变率变化以及屈服强度随温度变化规律,拟合得到了05Cr17Ni4Cu4Nb钢应变率和温度相关的Johnson-Cook本构模型参数.其次,利用高温Taylor撞击实验技术对05Cr17Ni4Cu4Nb钢进行了室温,300,500,570和710°C下的Taylor撞击实验,获取了不同温度下撞击后实验件外形尺寸.开展了05Cr17Ni4Cu4Nb钢室温及高温Taylor撞击有限元数值模拟分析,建立了本构模型参数优化流程和优化算法,以实验件尺寸平均偏差作为优化目标函数,开展了05Cr17Ni4Cu4Nb钢本构模型参数优化,获取了优化后的Johnson-Cook本构模型参数.优化结果表明:由单轴应力状态获取的Johnson-Cook本构模型参数过高地描述了05Cr17Ni4Cu4Nb钢在复杂应力状态下的应变硬化行为、应变率硬化行为和温度软化行为. 展开更多
关键词 高温 高应变率 TAYLOR 撞击 本构模型 参数优化
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混凝土界面过渡区细观尺度力学性能的应变率相关性研究
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作者 李金祥 雷冬 +2 位作者 何锦涛 高子淇 宋辉 《河南科学》 2026年第1期118-125,共8页
为系统探究混凝土界面过渡区(ITZ)在细观尺度下力学性能的率相关性行为,本文结合光学显微镜与数字图像相关(DIC)技术,对细观混凝土试件开展不同应变率条件下的单轴压缩试验,重点分析ITZ厚度、弹性模量及泊松比等关键力学参数在应变率范... 为系统探究混凝土界面过渡区(ITZ)在细观尺度下力学性能的率相关性行为,本文结合光学显微镜与数字图像相关(DIC)技术,对细观混凝土试件开展不同应变率条件下的单轴压缩试验,重点分析ITZ厚度、弹性模量及泊松比等关键力学参数在应变率范围为10-4~10-2 s-1条件下的变化规律。试验结果表明,在所研究的应变率范围内,ITZ厚度随应变率变化不显著,表现出较好的几何稳定性;相比之下,ITZ弹性模量随应变率的提高呈现明显上升趋势,体现出显著的率强化特征,而其泊松比则随应变率增加而逐渐降低,显示出与弹性模量相反的率相关响应。进一步对比发现,ITZ力学参数对应变率的敏感性明显高于砂浆和骨料相区,表明界面区域在加载速率变化下对混凝土整体力学响应具有更为突出的调控作用。随着应变率的提高,ITZ与相邻砂浆、骨料之间的力学性能差异逐渐减小,较高应变率可在一定程度上抑制界面过渡区的局部弱化效应,促使混凝土在细观尺度上的力学响应趋于均质化。研究结果可为混凝土在不同加载速率条件下的细观力学建模与本构关系构建提供试验依据。 展开更多
关键词 界面过渡区 率相关性 数字图像相关 弹性模量 泊松比
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考虑应变率效应的复合材料设备舱底板抗异物冲击响应
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作者 王雨珂 肖守讷 +3 位作者 陈东东 刘春艳 朱涛 王明猛 《城市轨道交通研究》 北大核心 2026年第1期107-111,120,共6页
[目的]CFRP(碳纤维增强树脂基复合材料)和GFRP(玻璃纤维增强树脂基复合材料)目前已应用于轨道交通车辆设备舱结构。在冲击载荷作用下,复合材料会表现出与准静态载荷下不同的力学行为。针对设备舱底板在服役过程中受到道砟冲击而导致结... [目的]CFRP(碳纤维增强树脂基复合材料)和GFRP(玻璃纤维增强树脂基复合材料)目前已应用于轨道交通车辆设备舱结构。在冲击载荷作用下,复合材料会表现出与准静态载荷下不同的力学行为。针对设备舱底板在服役过程中受到道砟冲击而导致结构防护能力下降的问题,有必要更深入地研究CFRP和GFRP应变率效应对冲击响应的影响。[方法]建立考虑应变率效应的连续纤维增强复合材料本构模型,基于ABAQUS软件二次开发功能编写VUMAT(用户自定义材料子程序)。分别对CFRP和GFRP进行动态拉伸试验,基于试验结果拟合得到动态增强系数,随后进行两种复合材料动态拉伸仿真,验证模型和材料参数的准确性。在此基础上,考虑将CFRP和GFRP分别作为设备舱底板结构面板材料,根据GB/T 32060—2015标准,建立初速度为200.00 km/h的铝弹冲击设备舱底板仿真模型进行计算。[结果及结论]以CFRP为面板材料,考虑材料应变率后,铝弹剩余速度由−52.16 km/h上升为−66.33 km/h,面板最大位移下降9.69%;以GFRP为面板材料,考虑材料应变率后铝弹剩余速度由−40.25 km/h上升为−48.87 km/h,面板最大位移下降14.53%。 展开更多
关键词 高速列车 设备舱 复合材料 冲击 有限元分析 应变率
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