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1.
实现材料高应变率拉伸加载的爆炸膨胀环技术   总被引:2,自引:0,他引:2  
设计了新型的爆炸膨胀环实验加载装置,加载装置中采用爆炸丝线起爆方式,避免了传统装置中对碰爆轰波加载时的应力不均匀性。利用新型的爆炸膨胀环实验技术研究了无氧铜材料的动态性能,利用激光位移干涉仪测量了试样环的径向速度历史,处理数据获得了无氧铜材料的流动应力-塑性应变-应变率的关系,为进一步利用爆炸膨胀环实验技术研究材料在高应变率拉伸加载时的本构关系奠定了基础。  相似文献   

2.
为避免对碰爆轰波加载时的应力不均匀性,初步建立了爆炸丝线起爆方式的爆炸膨胀环实验技术。长度为200mm、直径为0.175mm的铜丝爆炸同步性小于0.2μs,基本实现了同步起爆粉末泰安炸药,通过膨胀环实验初步获得无氧铜试样环的膨胀速度历史,为进一步利用爆炸膨胀环实验研究材料的高应变率拉伸加载时的本构关系奠定了基础。  相似文献   

3.
论述了单轴应变加载下固体中偏应力的基本含义和偏应力在本构关系研究中的意义。指出了加载-卸载波剖面测量在本构关系研究中的重要作用。建立了测量金属材料在平面冲击压缩下的剪切模量的基本方法,对表征固体材料弹性特性的剪切模量在冲击压缩状态下的物理含义做出了解释。根据剪切模量的一般性定义,建立了描写受冲击材料的准弹性-塑性卸载特性的有效剪切模量与纵波声速和横渡声速的关系。通过同时测量受冲击材料中的追赶稀疏波速度和波后粒子速度,获得了LY12铝在20~110GPa冲击压力和无氧铜在41~104GPa冲击压力下的声速和剪切模量,以及从冲击压缩状态卸载时沿着准弹性卸载路径的声速和有效剪切模量。 对目前广泛使用的描写单轴应变下固体材料的加载-卸载响应特性的SCG本构模型进行了分析,指出该本构关系的局限性,认为这种本构关系原则上不能用来描写受冲击材料的卸载过程。根据LY12铝和无氧铜的实验研究结果,对SCG本构关系中的剪切模量方程进行修正,讨论了修正的物理含义。修正后的方程与实验测量结果符合很好,在此基础上提出新的加载本构方程。 根据铝和铜沿着准弹性卸载路径的声速测量结果,提出了描写受冲击压缩固体的准弹性卸载的有效剪切模量方程和相应的屈服强度方程。建立了单轴应变下包含加载-卸载过程的新的本构方程。根据本文的实验测量结果,给出了铝合金和无氧铜卸载本构方程的解析形式,确定了相关参数。 依据文中提出的加载本构和卸载本构方程,对实验测量的6发LY12铝的波剖面、美国5发6061-T6铝合金的加载-卸载波剖面及冲击波衰减数据,进行了数值模拟计算和预测。计算中采用与本文测量相同的卸载本构参数,计算结果与实验结果符合很好,再现了这些波剖面的准弹性-塑性卸载行为和冲击波衰减行为。对3发无氧铜波剖面的计算模拟,也获得了令人满意的结果。 最后,从现象学出发,对发生在冲击波阵面内的弹-塑性屈服过程进行了分析,对固相区冲击波后材料的状态不在屈服面上的原因进行解释。  相似文献   

4.
本文在对结构陶瓷的四方至单斜(t→m)马氏体相变进行细观力学、热力学和微观机制分析的基础上,导出了在非比例加载条件下考虑材料的体膨胀和剪切效应的相变塑性细观本构模型。作者首次采用 Mori-Tanaka 方法以自洽的方式导出了材料构元的 Helmho-ltz 自由能及余能函数的解析表达式,它是外加宏观应力(或应变)、温度、相变夹杂体积分数以及夹杂内平均相变应变的函数,其中夹杂体积分数和平均相变应变为描述材料构元微结构变化的内变量。最后按 Hill-Rice 本构理论框架导出相变塑性屈服面方程及增量本构关系。  相似文献   

5.
本文在对结构陶瓷的四方至单斜(t→m)马氏体相变进行细观力学、热力学和微观机制分析的基础上,导出了在非比例加载条件下考虑材料的体膨胀和剪切效应的相变塑性细观本构模型。作者首次采用 Mori-Tanaka 方法以自洽的方式导出了材料构元的 Helmho-ltz 自由能及余能函数的解析表达式,它是外加宏观应力(或应变)、温度、相变夹杂体积分数以及夹杂内平均相变应变的函数,其中夹杂体积分数和平均相变应变为描述材料构元微结构变化的内变量。最后按 Hill-Rice 本构理论框架导出相变塑性屈服面方程及增量本构关系。  相似文献   

6.
研究了混凝土的弹.粘塑性动态本构关系,提出一个应变率相关的非线性混凝土模型.模型改进Bicanic的混凝土塑性间断面变化规律和Ottosen的四参数屈服准则,建立冲击荷载下的混凝土本构方程,可以应用于地震和爆炸作用下混凝土材料响应的研究.根据混凝土动态实验结果对应变率和材料强度的关系提出合理假设,考虑以往被忽略的材料峰值应变和泊松比随应变率的变化.模型包含静水压力参数和动态塑性损伤因子,可以有效地反映混凝土的动态力学行为,为其动态问题的研究提供有益的思路和有效的工具.  相似文献   

7.
混凝土单轴受拉的非局部本构模型   总被引:1,自引:0,他引:1  
混凝土受拉本构行为存在很强的局部软化现象,使得单轴受拉试验无法给出应力-应变关系,而只能给出应力-位移关系。本文根据内变量理论和等效应变假设建立了基于真实应变的混凝土单轴受力本构方程,并根据Weibull分布可以描述混凝土等脆性材料断裂过程的试验现象,建立了关于弹性应变的损伤演化规律。然后,通过假设平均应变与真实弹性应变的函数关系,在应力-平均应变的本构关系中采用平均弹性应变以描述其非局部行为,而在材料的损伤演化规律中采用真实弹性应变以描述其局部行为,由此建立了单轴受拉荷载条件下的非局部本构模型。最后,对一个单调受拉试验和一个反复受拉试验的仿真结果表明所提出的非局部本构模型可以准确地模拟试验结果。  相似文献   

8.
试验表明,大多数工程材料在冲击载荷作用之下的变形一般都同时包含有可恢复的瞬态性弹性变形和不可恢复的粘滞性塑性变形,即其本构关系可以用弹粘塑性模型来描述。本文从内变量理论出发,探讨了时率相关材料的弹粘塑性本构关系的一般特性,建立了增量型的弹粘塑性本构关系的一般理论框架和普适的表达式,并且对两种最常用的本构模型——Bodner-Partom模型和Johnson-Cook模型给出了在一维应变条件下的具体形式。通过计算和讨论一维应变粘塑性靶板中冲击波的衰减机制和应力波的演化规律,特别是考察各种粘塑性本构模型中的材料参数对冲击波的衰减和应力波的演化的影响,得出了一些可以直接应用或具有一定借鉴价值的结果,为研究应力波的其他衰减机制以及在人防工程中智能防护层设计时新材料的选取奠定了基础。  相似文献   

9.
利用爆炸膨胀环实验技术,对玻璃纤维增强复合材料(GFRC)进行了高应变率(104s-1)下力学性能研究。实验中使用铜丝汽化引爆装药的方法对驱动环进行能量加载,并采用激光速度干涉仪(VISAR)测量试样环自由膨胀的质点速度,实现了玻璃纤维增强复合材料在104应变率下的一维拉伸破坏,并获取了该材料的速度时间曲线。经过计算得到了材料的应力应变关系,最后与该材料在准静态下、中高应变率下实验得到的数据进行了比较。  相似文献   

10.
针对准脆性材料的非线性特征:强度软化和刚度退化、单边效应、侧限强化和拉压软化、不可恢复变形、剪胀及非弹性体胀,在热动力学框架内,建立了准脆性材料的弹塑性与各向异性损伤耦合的本构关系。对准脆性材料的变形机理和损伤诱发的各向异性进行了诠释,并给出了损伤构形和有效构形中各物理量之间的关系。在有效应力空间内,建立了塑性屈服准则、拉压不同的塑性随动强化法则和各向同性强化法则。在损伤构形中,采用应变能释放率,建立了拉压损伤准则、拉压不同的损伤随动强化法则和各向同性强化法则。基于塑性屈服准则和损伤准则,构建了塑性势泛函和损伤势泛函,并由正交性法则,给出了塑性和损伤强化效应内变量的演化规律,同时,联立塑性屈服面和损伤加载面,给出了塑性流动和损伤演化内变量的演化法则。将损伤力学和塑性力学结合起来,建立了应变驱动的应力-应变增量本构关系,给出了本构数值积分的要点。以单轴加载-卸载往复试验识别和校准了本构材料常数,并对单轴单调试验、单轴加载-卸载往复试验、二轴受压、二轴拉压试验和三轴受压试验进行了预测,并与试验结果作了比较,结果表明,所建本构模型对准脆性材料的非线性材料性能有良好的预测能力。  相似文献   

11.
The construction and operation of high-speed rail(HSR)grid within the past two decades in China,in terms of the scale,may be possibly comparable to any national-wide construction in the history of China,even the Great Wall.By counting railways with commercial train service at the speed of200 km/h,China has the world’s longest HSR network with over 19 369.8 km of track in service today and this number  相似文献   

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13.
三角函数级数法是合成人工地震动常用算法之一,但是通过对加速度积分求取位移时,却存在与零线漂移相类似的位移漂移现象。  相似文献   

14.
Rainwater rivulets appear on inclined cables of cable-stayed bridges when wind and rain occur simultaneously. In a restricted range of parameters this is known to cause vibrations of high amplitudes on the cable. The mechanism underlying this effect is still under debate but the role of rainwater rivulets is certain. We use a standard lubrication model to analyse the dynamics of a water film on a cylinder under the effect of gravity and wind load. A simple criterion is then proposed for the appearance and position of rivulets, where the Froude number is the control parameter. Experiments with several geometries of cylinder covered with water in a wind tunnel show the evolution of the rivulets with the Froude number. Comparison of the prediction by the model with these experimental data shows that the main mechanism of rivulet formation and positioning is captured. To cite this article: C. Lemaitre et al., C. R. Mecanique 334 (2006).  相似文献   

15.
Space-time finite element solutions of the convection–dispersion equation using higher-order nodal continuity and Hermitian polynomial shape functions are described. Five separate elements ranging from a complete linear element with C0,0 nodal continuity to a complete first-order Hermitian element with C1,1 nodal continuity are subjected to detailed analysis. Wave deformation analyses identify the source of leading or trailing edge oscillations, trailing edge oscillations being the major source of difficulty. These observations are confirmed by numerical experiments which further demonstrate the potential of higher-order nodal continuity. The performance of the complete first-order Hermitian element is quite satisfactory and measurably superior to the linear element.  相似文献   

16.
We establish a theoretical model to explain the nucleation of a crystal of helium by an acoustic over-pressure. We explain the interfacial laws for this ultra-fast cristallization, close to the sound speed. Assuming spherical symmetry and taking into account the experimental data, we recover the dynamics of the growth and melting during an over-pressure impulse. To cite this article: M. Ben Amar et al., C. R. Mecanique 331 (2003).  相似文献   

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18.
Based on the use of two different preparation procedures for reconstituting triaxial samples of sand, i.e. wet tamping and dry pluviation, significant differences in associated mechanical behaviour are observed on a reference sand with respect to the phenomenon of ‘static’ liquefaction. Wet tamping favours the initiation of liquefaction instability, whereas dry pluviation favours a more stable behaviour, less susceptible to liquefaction. Microscopic observation of corresponding sand specimens allows us to identify two well differentiated structures, i.e., for wet tamping, an irregular structure with predominance of aggregates (aggregated grains) and macropores, very contractant and unstable and, for dry pluviation, a more regular structure, without macropores, more dilatant and more stable. These observations show the importance of further characterization, based on the introduction of appropriate parameters, of the initial structure of sandy materials, strongly dependant upon their mode of formation (natural or artificial). To cite this article: N. Benahmed et al., C. R. Mecanique 332 (2004).  相似文献   

19.
Sources of Complexity in Human Systems   总被引:3,自引:0,他引:3  
Complex is a special attribute we can give to many kinds of systems. Although it is used often as a synonym of difficult, it has a specific epistemological meaning, which is going to be shared by the incoming science of complexity. Difficult is an object which, by means of an adequate computational power, can be deterministically or stochastically predictable. On the contrary complex is an object which can not be predictable because of logical impossibility or because its predictability would require a computational power far beyond any physical feasibility, now and forever. For complexity refers to some observing system, it is always subjective, and thus it is defined as observed irreducible complexity. Human systems are affected by several sources of complexity, belonging to three classes, in order of descending restrictivity. Systems belonging to the first class are not predictable at all, those belonging to the second class are predictable only through an infinite computational capacity, and those belonging to the third class are predictable only through a trans-computational capacity. The first class has two sources of complexity: logical complexity, directly deriving from self-reference and Gödel's incompleteness theorems, and relational complexity, resulting in a sort of indeterminacy principle occurring in social systems. The second class has three sources of complexity: gnosiological complexity, which consists of the variety of possible perceptions; semiotic complexity, which represents the infinite possible interpretations of signs and facts; and chaotic complexity, which characterizes phenomena of nonlinear dynamic systems. The third class coincides with computational complexity, which basically coincides with the mathematical concept of intractability. Artificial, natural, biological and human systems are characterized by the influence of different sources of complexity, and the latter appear to be the most complex.  相似文献   

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