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1.
The plastic deformation and the onset of fracture of single-crystal metals under shock-wave loading have been studied using aluminum as an example by the molecular dynamics method. The mechanisms of plastic deformation under compression in a shock wave and under tension in rarefaction waves have been investigated. The influence of the defect structure formed in the compression wave on the spall strength and the fracture mechanism has been analyzed. The dependence of the spall strength on the strain rate has been obtained.  相似文献   

2.
The results of measurements of the dynamic elastic limit and spall strength under shock-wave loading of aluminum samples AD1 of thicknesses between 0.5 and 10.0 mm at room temperature and at temperature increased up to 600°C are presented. The anomalous thermal hardening of aluminum under high strain rate has been confirmed. An analysis of the decay of precursors at temperatures of 20 and 600°C has shown that the change in the main mechanism of drag of dislocations occurs at a strain rate equal approximately to 5 × 103 s−1, which agrees with the results of measurements by the Hopkinson split bar method. The results of measurements of the spall strength in a wide range of strain rates add the previously obtained data and agree with them.  相似文献   

3.
AF1410钢的层裂断裂特性研究   总被引:1,自引:0,他引:1       下载免费PDF全文
 利用一级轻气炮作为加载手段,对AF1410钢的层裂特性进行了研究,获得了AF1410钢的Hugoniot关系、塑性应变率、层裂强度以及层裂片厚度等动态力学参数。对回收的AF1410钢样品进行了断口分析和金相分析,从宏、微观角度分析了AF1410钢在不同应变率下的断裂特性。  相似文献   

4.
彭辉  李平  裴晓阳  贺红亮  程和平  祁美兰 《物理学报》2014,63(19):196202-196202
本文对冲击加载下高纯无氧铜的拉伸应变率相关特性进行了实验研究.实验中利用磁测速系统测试撞击前飞片速度,利用光纤位移仪——多普勒探针系统测试样品自由面粒子速度剖面.对自由面速度剖面的特征参量进行计算分析,结果表明:铜样品的层裂强度随着拉伸应变率的增加而增加,对比发现层裂强度不仅受加载条件的影响,同时受到材料本身微细观结构影响;同时随着拉伸应变率的增加,自由面速度的回跳斜率呈现出先缓慢增加后迅速增加的临界特性;最后,通过层裂样品中波系相互作用,给出了自由面速度回跳过程中的振荡特征随着拉伸应变率增加而逐渐消失的物理过程.  相似文献   

5.
一种新的概念性层裂模型   总被引:1,自引:0,他引:1       下载免费PDF全文
 在重建Cochran-Banner模型的基础上提出了一种新的概念性层裂模型。这种新模型仅保留Cochran-Banner模型中的强度函数,重新定义损伤,并抛弃了基本假设:一旦微损伤形成,使微损伤演化远远易于使固体进一步体积应变,进而修正了差分微元中固体比容的计算。在新的模型中,一旦拉伸应力达到层裂强度,重新定义的损伤将由强度函数确定的应力松弛方程、计及损伤的能量守恒方程、状态方程以及本构方程等一系列封闭方程组确定。新模型中也仅包含两个参数:层裂强度及临界损伤度,它们的确定能使在一定初、边值条件下的层裂试验的数值计算结果与实验测得的靶自由面速度历史或靶-低阻抗界面应力历史以及回收观测的层裂面上的损伤一致。强调指出,选定强度函数或应力松弛方程提供了确定损伤的可能,同时排除了任何外加的损伤演化方程。  相似文献   

6.
脉冲激光作用下铝靶的层裂   总被引:1,自引:0,他引:1       下载免费PDF全文
 本文报导波长为1.06 μm脉宽(FWHM)约4 ns的强脉冲激光辐照下,铝靶发生层裂的实验结果。当入射功率密度在2.0×1011~5×1011 W/cm2范围的激光束作用下,厚度为0.1 mm、0.2 mm的靶在超临界条件下发生层裂,层裂厚度分别在(17±6) μm及(35±5) μm范围。文中使用一种简化模型对阈值条件下不同厚度的靶发生层裂时的层裂片厚度作了近似估算,并与已有的实验结果较好地符合。  相似文献   

7.
The dynamic tensile strength (spall strength) of tin and lead melts has been measured by a found method. Comparison with similar measurements of the spall strength of these metals at room temperature shows that melting reduces the spall strength by at least an order of magnitude. The spall strength of liquid metals is a smaller fraction of the extremely possible (“ideal”) strength than that for water and organic liquids.  相似文献   

8.
This paper presents the results of measurements of the strength properties of technically pure tantalum under shock wave loading. It has been found that a decrease in the grain size under severe plastic deformation leads to an increase in the hardness of the material by approximately 25%, but the experimentally measured values of the dynamic yield stress for the fine-grained material prove to be less than those of the initial coarse-grained specimens. This effect has been explained by a higher rate of stress relaxation in the fine-grained material. The hardening of tantalum under shock wave loading at a pressure in the range 40–100 GPa leads to a further increase in the rate of stress relaxation, a decrease in the dynamic yield stress, and the disappearance of the difference between its values for the coarse-grained and fine-grained materials. The spall strength of tantalum increases by approximately 5% with a decrease in the grain size and remains unchanged after the shock wave loading. The maximum fracture stresses are observed in tantalum single crystals.  相似文献   

9.
This paper presents the results of measurements of the dynamic elastic limit and spall strength under shock wave loading of specimens of the magnesium alloy Ma2-1 with a thickness ranging from 0.25 to 10 mm at normal and elevated (to 550°C) temperatures. From the results of measurements of the decay of the elastic precursor of a shock compression wave, it has been found that the plastic strain rate behind the front of the elastic precursor decreases from 2 × 105 s?1 at a distance of 0.25 mm to 103 s?1 at a distance of 10 mm. The plastic strain rate in a shock wave is one order of magnitude higher than that in the elastic precursor at the same value of the shear stress. The spall strength of the alloy decreases as the solidus temperature is approached.  相似文献   

10.
在神光-Ⅱ装置上利用强激光加载铝材料进行高应变率(高于106s-1)层裂实验,研究不同初始温度下高纯铝材料的动态损伤特性。采用任意反射面速度干涉仪测量样品自由面速度剖面,由自由面速度剖面计算纯铝样品层裂强度与屈服应力。结果表明:随着温度升高,材料层裂强度减小,屈服应力增大。对激光加载前后样品进行金相分析,观察不同初始温度下纯铝材料的微介观结构变化及其损伤特性。结果表明:随着温度升高,样品晶粒尺度缓慢增大,但在873K(近熔点)时晶粒尺度急剧增加;层裂面附近小孔洞数目较多,孔洞尺寸也较大,而远离层裂面处,孔洞数目相对较少,且尺寸也较小;材料的断裂方式随温度升高由沿晶断裂为主逐渐变为穿晶断裂为主。  相似文献   

11.
The spall tests under the plane tensile pulses for resistance spot weld(RSW) of QP980 steel are performed by using a gun system.The velocity histories of free surfaces of the RSW are measured with the laser velocity interferometer system for any reflector.The recovered specimens are investigated with an Olympus GX71 metallographic microscope and a scanning electron microscope(SEM).The measured velocity histories are explained and used to evaluate the tension stresses in the RSW applying the characteristic theory and the assumption of Gathers.The spall strength(1977-2784 MPa) of the RSW for QP980 steel is determined based on the measured and simulated velocity histories.The spall mechanism of the RSW is brittle fracture in view of the SEM investigation of the recovered specimen.The micrographs of the as-received QP980 steel,the initial and recovered RSW of this steel for the spall test are compared to reveal the microstructure evolution during the welding and spall process.It is indicated that during the welding thermal cycle,the local martensitic phase transformation is dependent on the location within the fusion zone and the heat affected zone.It is presented that the transformation at high strain rate may be cancelled by other phenomenon while the evolution of weld defects is obvious during the spall process.It may be the stress triaxiality and strain rate effect of the RSW strength or the dynamic load-carrying capacity of the RSW structure that the spall strength of the RSW for QP980 steel is much higher than the uniaxial compression yield strength(1200 MPa) of the martensite phase in QP980 steel.Due to the weld defects in the center of the RSW,the spall strength of the RSW should be less than the conventional spall strength or the dynamic load-carrying capacity of condensed structure.  相似文献   

12.
无氧铜平面冲击波实验的锰铜应力计测试   总被引:1,自引:0,他引:1  
 利用纵向锰铜应力计,对无氧铜(OFHC)材料进行了层裂实验,得到了典型的层裂信号;同时测量试件中的纵向应力和横向应力,直接确定了其流动应力。对实验结果与理论计算结果进行了比较,讨论了高压、高应变率下的强度模型以及横向应力计测试问题。  相似文献   

13.
Glycerol is one of the best studied and most widely used glass-forming liquids; however, its dynamic properties are still under discussion. The dielectric spectra of glycerol are studied in detail over wide ranges of temperatures and pressures up to 4.5 GPa. Starting from the pressures of 2–3 GPa, qualitative change in the dynamics of structural relaxation processes in glycerol has been revealed. It is accompanied by the appearance of secondary relaxation and a change in the asymptotic behavior of the pressure dependence of the fragility. The relation between the parameters for different relaxation mechanisms is analyzed.  相似文献   

14.
The Hugoniot elastic limit and the spall strength of aluminum and copper samples pressed from a mixture of a metallic powder and 2–5 wt % C60 fullerene powder are measured under a shock loading pressure up to 6 GPa and a strain rate of 105 s?1 by recording and analyzing full wave profiles using a VISAR laser interferometer. It is shown that a 5% C60 fullerene addition to an initial aluminum sample leads to an increase in its Hugoniot elastic limit by an order of magnitude. Mixture copper samples with 2% fullerene also exhibit a multiple increase in the elastic limit as compared to commercial-grade copper. The elastic limits calculated from the wave profiles are 0.82–1.56 GPa for aluminum samples and 1.35–3.46 GPa for copper samples depending on the sample porosity. The spall strength of both aluminum and copper samples with fullerene additions decreases approximately threefold because of the effect of high-hardness fullerene particles, which serve as tensile stress concentrators in a material under dynamic fracture.  相似文献   

15.
Investigations of the strength properties of materials under different loading conditions are of practical importance in many engineering applications. The knowledge of elastic moduli as a function of strain is required for determination of strength properties. In the present work, we have determined the elastic moduli of molybdenum through first principles study of the energy changes under three different loading conditions namely ‘uni-axial tensile deformation’ along [0 0 1] direction, ‘uni-axial tensile loading’ along [0 0 1] direction and ‘hydrostatic tensile loading’. The stability conditions for the system are expressed in terms of the elastic moduli and analyzed along the deformation paths corresponding to these three loading modes. The theoretical spall strength (σS), tensile strength (σT) along [0 0 1] direction and hydrostatic tensile strength (σH), are evaluated as a stress at the first onset of the instability for three loading conditions, respectively. The calculated equilibrium volume and elastic moduli are compared with that reported from experimental and other theoretical works.  相似文献   

16.
The spallation behaviors of AI+0.2 wt% ~(10)B targets and neutron irradiated AI+0.2 wt% ~(10)B targets with 5 nm radius helium bubble subjected to direct laser ablation are presented. It is found that the spall strength increases significantly with the tensile strain rate, and the helium bubble or boron inclusions in aluminum reduces the spall strength of materials by 34%. However, slight difference is observed in the spall strength of unirradiated samples compared with the irradiated sample with helium bubbles.  相似文献   

17.
对平面冲击加载下延性金属钽的层裂行为开展了数值模拟研究。利用AUTODYN软件中的Lagrange与SPH求解模块,考察了3种本构模型Johnson-Cook、Steinberg-Cochran-Guinan与Zerilli-Armstrong的模拟结果,结合实验数据对模拟结果进行了验证;在此基础上,通过改变撞击速度与飞片厚度,获得了不同应变率下的自由面速度曲线,分析了不同应变率下的层裂特性。结果表明:在2.31×104~5.40×104s?1应变率范围内,SPH求解器结合Steinberg-Cochran-Guinan本构模型的结果与实验数据具有较好的一致性;金属钽的层裂强度随拉伸应变率的增加而增大,在对数坐标系下近似呈线性关系;不同层裂强度计算方法得到的结果差异可达8%;随着拉伸应变率的增加,自由面速度回跳速率随之增长。最后,对自由面速度曲线中的特征参量的物理意义进行了解读。  相似文献   

18.
层错四面体是一种典型的三维空位型缺陷,广泛存在于受辐照后的面心立方金属材料中,对材料的力学性能有显著的影响.目前,关于层错四面体对辐照材料层裂行为的影响还缺乏深入系统的研究.本文使用分子动力学方法模拟了含有层错四面体的单晶铜在不同冲击速度下的层裂行为,对整个冲击过程中的自由表面速度及微结构演化等进行了深入的分析.研究发现,层错四面体在冲击波作用下会发生坍塌,并进一步诱导材料产生位错、层错等缺陷.在中低速度加载下,层错四面体坍塌引起的缺陷快速向周围扩展,为孔洞提供了更宽的形核区域,促进了孔洞的异质成核,造成材料层裂强度大幅度减小.当冲击速度较高时,层错四面体坍塌导致的局部缺陷对材料的层裂强度不再有明显影响.  相似文献   

19.
A. N. Dremin 《高压研究》2013,33(5-6):361-364
Abstract

Shock wave chemistry, a new scientific trend, deals with investigations of chemical aspects of the substance state under this new type of effect. Indeed, shock wave effect is not a greater imposition than pressure and temperature actions. Characteristic features of the effect are the tremendous rates of substance loading and subsequent unloading. The effects result in a substance in a strongly non- equilibrium state. The lifetime of the state is governed by the relaxation process of those phenomena which are provoked by shock waves in the substance. For instance, in the case of substance consisting of complex molecules with a large number of internal degrees of freedom, differing strongly in excitation times, all kinetic parts of the shock energy are at first absorbed by the translational degrees of freedom inside the shock wave front. Then, the energy is redistributed to the vibrational degrees of freedom. The non-equilibrium state time is not longer than the excitation time of the most slowly excited vibrational degrees of freedom (1010-10?9 s). The same order of magnitude is the relaxation time of liquid substance polarization caused by dipolar molecules mechanically turning under the shock discontinuity zone effect. In polymers the zone turns some separate groups of polymer molecule atoms. In such a case the relaxation period, on the contrary, may last as long as it can. As far as “hot are concerned, their lifetime is determined by thermal relaxation regularities and it depends on their size. The hot spots in solids appear during the shock compression process at the sites of an imperfect substance structure. In liquids the hot spots can orighate when a shock wave front passes through negative density fluctuations. It transforms the fluctuations of very small size and of high probability into some positive temperature regions of large size and extremely low probability at equilibrium state behind the wave front. The hot spots in perfect solids (possibly in liquids too) appear due to the effect of shear stresses in shock front. Pointed and lengthy defects of solid structure occur under the effect. The lengthy defects appear in the shock wave front due to the transition from one-dimensional to volume compression. The transition takes place if the wave intensity is larger than the dynamic elastic limit of the solid under investigation. In brittle materials the transition results in their grinding into fragments and in the relative displacement of the fragments. Some liquid melted layers of substance appear between the fragments in the process of displacement. Their lifetime is also determined by the thermal relaxation regularities and probably is small. Nevertheless, the layers obviously govern the spall strength of brittle solids and promote solid-phase shock reactions. The defects created in solids by the shock effect can exist for a very long time if the solid substance residual temperature is lower than its recrystallization temperature. Therefore, solid substance treatment by shocks of proper intensity can increase their chemical reactivity.  相似文献   

20.
Full wave profiles are used to determine the Hugoniot elastic limit and the spall strength of armco iron samples with an as-received structure and the samples recovered after preliminary loading by plane shock waves with an amplitude of 8, 17, and 35 GPa. The measurements are performed at a shock compression pressure below and above the polymorphic a–e transition pressure. Metallographic analysis of the structure of armco iron shows that a developed twinned structure forms inside grains in the samples subjected to preliminary compression and recovered and that the twin concentration and size increase with the shock compression pressure. The spall strength of armco iron under shock loading below the phase transition pressure increases by approximately 10% due to its preliminary deformation twinning at the maximum shock compression pressure. The spallation of samples with various structures at a shock compression pressure above the phase transition proceeds at almost the same tensile stresses. The polymorphic transition in armco iron weakly affects its strength characteristics.  相似文献   

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