首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 31 毫秒
1.
本文在梁的纯弯曲损伤基本假设条件下,导出了弯曲损伤的基本方程,与Kachanov的材料刚度劣化(受载横截面积减小)定义拉伸损伤变量类似,以梁的弯曲刚度劣化(惯性矩减小)定义弯曲损伤变量,从而建立了与Kachanov拉伸损伤模型相类似的梁的各向同性弯曲损伤模型。最后,以受蠕变纯弯曲梁为实例进行了损伤分析,在一次近似条件下,该弯曲损伤模型的材料常数可由Kachanov拉伸损伤模型的材料常数确定,且所得计算结果与Kachanov拉伸损伤模型所得结果比较吻和,表明该弯曲损伤模型是合理适用的。  相似文献   

2.
内聚力单元是进行推进剂“脱湿”损伤研究的重要手段。通过分子动力学方法构建推进剂高填充比几何模型,结合周期几何和周期边界处理方法,构建推进剂细观有限元分析模型。采用内聚力单元结合PPR内聚力模型开展颗粒和基体黏接界面“脱湿”行为模拟。在单轴拉伸和纯剪试验下分析推进剂细观结构的力学响应,开展推进剂“脱湿”损伤机理研究。针对不同的体分比、应变速率以及内聚强度,开展了“脱湿”损伤影响规律分析。研究方法和研究结论可以为新一代高性能推进剂配方的研制提供有利的参考。  相似文献   

3.
本文从微结构理论出发,用相对变形描述微结构之间的微空隙和微裂纹引起的材料损伤的影响,得到用损伤张量描述的各向异性损伤的微结构连续损伤力学理论。该微结构损伤模型可化简为目前公认的几种主要损伤模型:如J.P. Cordebojs和F. Sidoroff的弹性各向异性损伤模型,D. Krajcino-vic和G.U.Fonseka的脆性材料平面裂纹损伤模型,J. Lemaitre的各向同性损伤理论及Kachanov的以面积减少为变量的损伤模型等。作者运用这一理论对混凝土材料的单向拉、压基本受载情形进行了数值分析,并与D. Krajcinovic的损伤模型计算结果及实验结果作了比较,所得结果与实验值比较吻合,特别是在失稳后阶段给出了较好描述,初步表明了本理论的有效性和实用性。  相似文献   

4.
本文借助奇异函数,用阶梯函数表示阶梯形梁的抗弯刚度的倒数,在考虑支座沉陷影响的情况下,推导出了阶梯形连续梁在弹性支座支承下的弯曲计算普遍方程,给出了支座反力计算的矩阵方程。  相似文献   

5.
以先期毁伤为原则,首次对武器单元的射击时机分配问题进行数学建模。提出一种使毁伤概率密度在时间上靠前分布的武器单元射击时机分配模型,在保证指定瞬时之前以期望概率毁伤目标的前提下,合理分配各武器单元的射击时机,实现对目标的尽早毁伤。根据射击时机分配模型中约束函数的单调性特点,提出一种改进的连续域蚁群算法,使算法自变量满足约束条件的"优良区域"开始搜索,采用搜索窗口平移的方法逐步寻找最好解,提高了算法的搜索速度。实例分析验证了模型和算法的有效性。  相似文献   

6.
基于能量耗散的药柱粘弹性累积损伤   总被引:2,自引:0,他引:2       下载免费PDF全文
基于不可逆能量耗散的损伤变量定义方法和动态线粘弹性理论,建立了固体推进剂累积损伤模型,利用不同拉伸速率下的试验数据,拟合得到了推进剂破坏耗散能表达式,进而给出了推进剂在周期应力响应下的累积损伤计算式,并讨论了周期应力幅值和频率对累积损伤的影响,最后对某舰载发动机药柱进行了累积损伤及使用寿命分析。提出的累积损伤分析方法,为固体发动机贮存寿命预估提供了一条有益的技术途径。  相似文献   

7.
岩土材料损伤演化规律研究   总被引:4,自引:0,他引:4  
损伤演化规律是损伤本构理论研究的核心问题,已有的岩土损伤演化方程还存在很多问题,因而给出一个具有理论依据的损伤演化方程具有十分重要的意义。对当前岩土材料损伤演化规律的研究进行了总结分析,认为利用能量耗散原理建立损伤演化方程是一个可行的办法。从损伤是耗散能量的过程这一基本性质出发,建立了一个适用于结构性土体的损伤演化方程。  相似文献   

8.
在分析了物元理论和贝叶斯网理论的基础上,提出了结合主观概率信息和客观状态信息的物元贝叶斯网模型,并给出了物元贝叶斯网在损伤定位中的推理算法.舰船损伤定位的案例分析表明,该方法可以更加全面地融合战损装备的状态信息,使损伤定位结果更为准确.  相似文献   

9.
对弯管结构进行损伤识别,采用模态柔度比结构的频率或位移模态更灵敏,且模态柔度仅需结构的低阶频率和振型就可准确地计算。采用有限元方法,以一弯管为仿真算例,以结构模型的单元刚度的下降来模拟损伤。结果表明:弯管结构的模态柔度具有方向性,弯管所在平面x、y方向柔度求解的模态柔度曲率差不能对弯管进行频率损伤识别,垂直弯管所在平面z方向柔度不仅可以对弯管进行单处、多处的损伤定位,而且可以对同一位置的损伤程度进行定量分析。  相似文献   

10.
为了探究战场威胁下多轴特种车辆轮胎系统的生存概率,对轮胎系统的抗毁伤能力进行量化表征,提出了一种基于等毁线的轮胎系统抗毁伤能力表征方法。针对轮胎毁伤状态下对整车的影响,基于车辆动力学对轮胎系统的力学特性进行量化表征,建立了轮胎系统功能毁伤的计算模型;采用毁伤理论对冲击波超压场进行弹目交会和量化分析,建立了轮胎系统物理毁伤的计算模型;根据爆心与车辆的位置关系,采用面向车辆全面域的计算特征线,建立了轮胎系统等毁线计算模型。以某型五轴特种车辆为例,进行了表征方法验证。研究结果表明:该表征方法可应用于战场威胁下多轴特种车辆轮胎系统的抗毁伤能力表征,为后续机动规避和防护能力提升奠定模型基础。  相似文献   

11.
建立了基于损伤树的知识表示、知识推理模型及损伤树评估框架,利用损伤树各节点的损伤征兆集,进行装备战场损伤定位,较好地利用了装备专家的领域知识,提高了战场损伤评估的准确性和效率。  相似文献   

12.
In order to study the influences of confining pressure and strain rate on the mechanical properties of the Nitrate Ester Plasticized Polyether (NEPE) propellant, uniaxial tensile tests were conducted using the self-made confining pressure system and material testing machine. The stress-strain responses of the NEPE propellant under different confining pressure conditions and strain rates were obtained and analyzed. The results show that confining pressure and strain rate have a remarkably influence on the mechanical responses of the NEPE propellant. As confining pressure increases (from 0 to 5.4 MPa), the maximum tensile stress and ultimate strain increase gradually. With the coupled effects of confining pressure and strain rate, the value of the maximum tensile stress and ultimate strain at 5.4 MPa and 0.0667 s−1 is 2.03 times and 2.19 times of their values under 0 MPa and 0.00333 s−1, respectively. Afterwards, the influence mechanism of confining pressure on the NEPE propellant was analyzed. Finally, based on the viscoelastic theory and continuous damage theory, a nonlinear constitutive model considering confining pressure and strain rate was developed. The damage was considered to be rate-dependent and pressure-dependent. The constitutive model was validated by comparing experimental data with predictions of the constitutive model. The whole maximum stress errors of the model predictions are lower than 4% and the corresponding strain errors are lower than 7%. The results show that confining pressure can suppress the damage initiation and evolution of the NEPE propellant and the nonlinear constitutive model can describe the mechanical responses of the NEPE propellant under various confining pressure conditions and strain rates. This research can lay a theoretical foundation for analyzing the structural integrity of propellant grain accurately under working pressure loading.  相似文献   

13.
Ceramic reinforced metal matrix nanocomposites are widely used in aerospace and auto industries due to their enhanced mechanical and physical properties. In this research, we investigate the mechanical properties of aluminum/Nano-silica composites through experiments and simulations. Aluminum/Nano-silica composite samples with different weight percentages of silica nanoparticles are prepared via powder metallurgy. In this method, Nano-silica and aluminum powders are mixed and compressed in a mold, followed by sintering at high temperatures. Uniaxial tensile testing of the nanocomposite samples shows that adding one percent of Nano-silica causes a considerable increase in mechanical properties of nanocomposite compared to pure aluminum. A computational micromechanical model, based on a representative volume element of aluminum/silica nanocomposite, is developed in a commercial finite element software. The model employs an elastoplastic material model along with a ductile damage model for aluminum matrix and linear elastic model for nano-silica particles. Via careful determination of model parameters from the experimental results of pure aluminum samples prepared by powder metallurgy, the proposed computational model has shown satisfactory agreement with experiments. The validated computational model can be used to perform a parametric study to optimize the micro-structure of nanocomposite for enhanced mechanical properties.  相似文献   

14.
为探索有效实用的结构损伤检测方法,运用分形理论直接对结构振动信号进行关联维数分析,通过度量系统输出的奇异性来识别结构的局部损伤,提出了基于振动响应关联维数的结构损伤检测方法.简支梁损伤算例结果表明,该方法能够准确地检测出梁式结构单个和多个不同程度的损伤位置,同时关联维数指标变化值会随着损伤程度的增加而增大.与曲率模态指...  相似文献   

15.
疲劳累积损伤是一个非稳态能耗过程,可以用遗传算法优化后的3层2 7 1BP神经网络来描述疲劳损伤的非线关系,经仿真验证表明,该神经网络具有较高的精度和泛化能力.通过对材料疲劳损伤临界值和载荷的分散性的分析研究,建立了疲劳失效动态准则,并运用蒙特卡罗随机抽样法对材料疲劳寿命的可靠性进行了仿真验证;对调质45号钢在随机载荷和2级载荷作用下,进行了疲劳寿命可靠性仿真计算,仿真结果与实验结果和理论分析比较吻合.  相似文献   

16.
Public opinion survey responses regarding the desirability of changes in defense spending can be compressed into a single variable, the public opinion balance, which, when accompanied by a control variable measuring the proportion of responses in the “residuum” (no opinion or keep the status quo), permits an accurate prediction of subsequent changes in the rate of change of U.S. defense outlays from the mid‐1960s through the 1980s. This finding cannot be interpreted as a simple case of “the public got what it wanted,” however, because public opinion was not autonomous or spontaneous, and defense decision makers themselves played a central role in shaping public opinion.  相似文献   

17.
In this paper,a new method for determining the shell layout scheme is proposed,which can make the equipment damage data by the battlefield damage test resemble as close as possible the actual combat data.This method is based on the analysis of the impact point distribution and effective damage area of equipment.In order to obtain the position of the impact points,an impact point distribution model under artillery fire was established.Similarly,in order to obtain the effective damage area of equipment,the concepts of generalized damage area and task-based equipment functional damage probability were demonstrated,and the corresponding calculation model was established.Through case analysis,the shell layout scheme was effectively obtained,verifying the correctness of the proposed method.  相似文献   

18.
为研究不同密度弹丸对武器装备的损伤,建立弹丸侵彻多层靶板的有限元模型,对不同密度弹丸侵彻多层靶板进行仿真试验。不同于传统的宏观破口尺寸损伤表征参数,引入等效应变及等效应力幅值来精确描述靶板损伤,并提出了一种基于多元统计分析对靶板损伤进行评估的方法。计算结果表明:利用该方法所得到的评估结果与理论分析结果完全一致。这说明基于多元统计分析的靶板损伤评估方法是切实可行的,可以进一步应用于装备损伤评估与易损性研究中。  相似文献   

19.
波速测量层合复合材料冲击损伤实验   总被引:1,自引:0,他引:1       下载免费PDF全文
在层合复合材料横向冲击试验中,用应变片记录层合板表层在冲击过程中的应变响应,根据波的传播理论和连续损伤力学,从波速变化间接测得冲击下材料的损伤及损伤率。通过实验测得玻璃纤维/环氧(GE)正交层合板的动态损伤阈值,并证实了GE复合材料在拉伸阶段比在压缩阶段有更快的损伤扩展速率  相似文献   

20.
研究了一种由超高分子量聚乙烯(UHMWPE)纤维增强的新型纤维混凝土基本力学性能。针对C70等级高强混凝土,设计了四种体积掺量纤维混凝土,通过立方体抗压、劈裂抗拉和四点弯曲抗折试验,分析了纤维掺量对混凝土力学性能的影响。结果表明:UHMWPE纤维对混凝土的抗压强度增强作用不明显,但较大提高了混凝土的抗拉强度和抗折强度,且对混凝土有很好的阻裂、增韧效果。在纤维体积掺量为0.3%~0.5%时,劈裂抗拉强度提高25%以上;掺量0.5%时,弯曲抗折强度提高率超过23%。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号