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1.
多轴非线性连续疲劳损伤累积模型的研究   总被引:1,自引:0,他引:1  
根据所建立的单轴非线性疲劳损伤累积模型,在多轴疲劳损伤临界面原理研究的基础上,针对多轴比轴比例加载,建立了多轴非线性连续疲劳损伤累积模型,该模型可以考虑多轴疲劳极限、平均静水应力以及损伤参量与加载参数的不可分离的特点,并且能够反映出多轴加载顺序的影响,最后讨论了该多轴疲劳损伤累积模型在多级加载下的递推形式,经多轴二级及块载疲劳试验数据验证表明,用该模型预测多轴疲劳寿命,其结果令人满意。  相似文献   

2.
基于正交设计, 分别在680℃和850℃下进行DD3镍基单晶合金薄壁圆管试样([001]取向)拉/扭非比例加载低周疲劳试验, 研究等效应变范围、应变路径角、拉/扭载荷相位角、循环特性和温度诸因素对镍基单晶合金多轴低周疲劳寿命的影响作用. 疲劳试验数据的极差分析表明, 应变路径角、拉/扭载荷相位角和等效应变范围是影响疲劳寿命的主要因素. 将菱形应变加载路径区分为比例加载段和非比例加载段, 提出了表征非比例加载效应的等效应变参量, 并通过引入单晶应变三轴性因子反映拉/扭应变路径角对多轴疲劳寿命的影响. 用考虑非比例加载效应的等效应变范围和单晶应变三轴性因子构造循环塑性应变能损伤参量, 进行多元线性回归分析, 疲劳寿命回归模型与试验寿命具有很好的相关性, 所有试验数据都落在2.0倍的偏差分布带之内.   相似文献   

3.
将损伤力学-有限元方法应用于飞机结构疲劳寿命预估中,对机翼蒙皮压窝形式的铆接结构进行了寿命计算和分析,得到了结构的疲劳寿命和疲劳损伤演化过程,并对铆接试验件进行了疲劳试验,将损伤力学方法的预测结果与试验结果进行了比较。分析结果反映出结构疲劳损伤累积初期较为缓慢、后期速率急剧上升的过程,符合损伤演化规律。在180MPa载荷水平下,计算寿命与试验平均寿命的相对误差为11.3%,满足工程精度要求。从而验证了损伤力学方法应用于实际工程结构寿命预测的可行性和可靠性。  相似文献   

4.
刘文光  贺红林 《实验力学》2012,27(3):361-367
航空航天领域广泛存在着振动疲劳问题,严重危及飞行器结构的安全可靠性。本文首先设计了激振器直接作用于试件的力激励振动疲劳试验系统,并提出了跟踪结构共振频率的频带激励共振疲劳寿命测试方法;而后利用试件进行了频带激励下的定应变共振或定载荷共振结构振动疲劳试验;最后针对试验结果分析与讨论了可能影响结构振动疲劳寿命的各种因素。结论表明,试验结构件的边界条件、初始条件以及结构动力学特性等都可能是影响振动疲劳寿命的关键因素。频带激励共振疲劳试验方法为振动疲劳寿命曲线的测试积累了经验。  相似文献   

5.
关于疲劳等损伤线的研究目前存在几种观点。本文根据高低二级应力作用下的疲劳寿命试验,验证了等损伤线互不平行且向下汇聚。还讨论了等损伤线的表达式,斜率变化和二级载荷下的疲劳寿命估算等问题。  相似文献   

6.
估算变幅疲劳寿命的等效折算法   总被引:4,自引:0,他引:4  
介绍了估算变幅疲劳寿命的等效折算法。该法的主要思想是通过特定的等效寿命函数,依次将变幅疲劳中的各级循环次数均等效折算为某一循环下的已耗寿命,即将变幅疲劳转化为等幅疲劳,来估算其寿命。给出了两种形式的等效寿命函数,一种考虑了变幅疲劳的加载次序效应,另一种则适用于加载次序效应不强的随机性谱载。四种材料的实际评估结果显示,无论对于分级加载还是随机性谱载,该法的寿命预测精度均明显高于同类型的其它五种方法。该法仅依赖于等幅试验数据,不含任何待定参数,计算简单,适合于工程运用。  相似文献   

7.
混凝土疲劳刚度衰减规律试验研究   总被引:9,自引:0,他引:9  
对C15混凝土进行了大量的静载及恒幅疲劳试验研究,分析了疲劳加载过程中混凝土的刚度衰减规律,并以循环卸载割线弹性模量的衰减率为损伤因子建立了疲劳寿命与循环卸载割线弹性模量的数学模型,提出了通过较少循环的微损试验结果来预测混凝土疲劳寿命的方法.  相似文献   

8.
通过对Weibull分布、正态分布、指数分布等常用概率模型函数的中值疲劳寿命和高可靠度疲劳寿命关系的分析,建立了应力疲劳寿命可靠性通用表达式.指出疲劳寿命服从各常用分布的可靠性公式都可看作应力疲劳寿命通用公式的特例.基于概率模型分布函数的矩法理论,提出了适用于5种常用概率模型分布的应力疲劳寿命可靠性曲线分析方法.应用基于矩法的应力疲劳寿命可靠性曲线分析方法,获得了42CrMo硬齿面齿轮轮齿弯曲疲劳试验寿命数据的中值疲劳寿命和高可靠度疲劳寿命曲线方程.  相似文献   

9.
赵而年  瞿伟廉 《力学学报》2016,48(4):944-952
工程结构在服役过程中往往承受着复杂的多轴非比例循环荷载,在长期动力载荷作用下结构构件的失效主要为多轴非比例疲劳破坏. 文中基于圆管薄壁试件在拉-扭复合加载情况下的多轴疲劳试验结果,对比了广泛讨论的Kandil-Brown-Miller (KBM) 模型和Fatemi-Socie (FS) 模型对多轴非比例疲劳寿命的预测能力,分析了非比例加载条件引起多轴疲劳附加损伤的原因;针对FS 模型对不存在非比例附加强化的材料多轴疲劳寿命预测的不足,提出了一个能考虑非比例加载路径变化和材料附加强化效应双重作用的非比例影响因子,参照FS 准则提出了一种新的多轴非比例低周疲劳寿命预测临界面模型. 利用5 种材料的多轴非比例疲劳试验数据对该模型进行了试验验证,结果表明:采用文中提出的临界面模型预测的多轴非比例疲劳寿命与试验结果符合较好,预测精度优于FS 模型;同时,该模型对不存在非比例附加强化的材料的多轴疲劳寿命预测表现出更好的适用性,且能有效的提高不同类型材料的多轴非比例疲劳寿命预测精度.   相似文献   

10.
试验研究了铝合金切口件在4组变幅块谱下、3.5%NaCl溶液中腐蚀疲劳裂纹起始寿命.结果表明,变幅载荷谱中的大超载会显著延长腐蚀疲劳裂纹起始寿命,并且加载顺序具有明显的影响.根据反映大小载荷交互作用的超载腐蚀疲劳裂纹起始寿命曲线和Miner累积损伤定则,建立了变幅载荷下切口件腐蚀疲劳裂纹起始寿命估算模型,应用该模型估算的结果与试验结果相吻合.  相似文献   

11.
Despite extensive research on the mechanical properties of one-dimensional (1-D) nanomaterials such as nanowires and nanotubes in the past two decades, experimental data on the fatigue behavior of 1-D building blocks are still very limited. Here, we demonstrate the first quantitative in situ tensile fatigue testing of individual nanowires inside a high-resolution scanning electron microscope (SEM), based on the nanoindenter-assisted “push-to-pull” dynamic tensile straining mechanism. With the robust micro-mechanical devices and independent quantitative nanoindenter for actuation and force sensing, we achieved both stress- and strain-controlled cyclic tensile loading on nanowire samples with variable loading frequencies up to 10 Hz, and demonstrated the low-cycle fatigue behavior of pristine single crystalline nickel (Ni) nanowires.  相似文献   

12.
CTS试件中复合型疲劳裂纹扩展   总被引:3,自引:0,他引:3  
马世骧  胡泓 《力学学报》2006,38(5):698-704
针对复合型循环载荷作用下的金属构件中的裂纹扩展问题进行了实验分析和理论建模. 首先 采用紧凑拉剪试件(CTS)和 Richard研制的复合型载荷加载装置,对承受复合型循环载荷的裂纹进行了实验研究. 实验选择了两种金属材料试件,分别承受3种形式的复合型循环载荷的作用,在裂纹尖端具 有相同的初始应力场强度的条件下考察复合型循环载荷对裂纹扩展规律的影响. 实验结果表明,疲劳裂纹的扩展速率与加载角度有关. 对于同样金属材料的试件,当裂尖处 初始应力场强度相等时,载荷越接近于II型,裂纹增长速率越快. 采用等效应力强度 因子(I型和II型应力强度因子的组合)、裂纹扩展速率及复合强度等参数,以实验数据为 基础,建立了一个疲劳裂纹扩展模型,用来预测裂纹在不同模式疲劳载荷作用下的扩展速率. 为验证其有效性,该模型被应用于钢制试件的数值模拟计算中. 实验结果与模拟计算曲线保 持一致,表明该模型可以用来估算带裂纹金属构件的寿命.  相似文献   

13.
Although several theories were more or less recently proposed to describe the Mullins effect, i.e. the stress-softening after the first load, the nonlinear equilibrium and non-equilibrium material response as well as the continuous stress-softening during fatigue loading need to be included in the analysis to propose a reliable design of rubber structures. This contribution presents for the first time a network alteration theory, based on physical interpretations of the stress-softening phenomenon, to capture the time-dependent mechanical response of elastomeric materials under fatigue loading, and this until failure. A successful physically based visco-hyperelastic model is revisited by introducing an evolution law for the physical material parameters affected by the network alteration. The general form of the model can be basically represented by two parallel networks: a nonlinear equilibrium response and a time-dependent deviation from equilibrium, in which the network parameters become functions of the damage rate (defined as the ratio of the applied cycle over the applied cycle to failure). The mechanical behavior of styrene-butadiene rubber was experimentally investigated, and the main features of the constitutive response under fatigue loading are highlighted. The experimental results demonstrate that the evolution of the normalized maximum stress only depends on the damage rate endured by the material during the fatigue loading history. The average chain length and the average chain density are then taken as functions of the damage rate in the proposed network alteration theory. The new model is found to adequately capture the important features of the observed stress-strain curves under loading-unloading for a large spectrum of strain and damage levels. The model capabilities to predict variable amplitude tests are critically discussed by comparisons with experiments.  相似文献   

14.
In order to quantitatively evaluate the damage level in high-performance concrete (HPC) with pozzolanic minerals under constant amplitude cyclic loads, three methods for real-time damage detection are employed in the present work, i.e., dynamic modulus instrument, real-time strain collector, and digital speckle correlative method (DSCM). Six mechanical parameters at different numbers of loading cycles are real-time captured by these three methods. For a maximum applied fatigue stress equal to 70% of the static flexural strength, a cohesive crack is detected on the specimen surface by the DSCM system from 10% of concrete fatigue life. The nucleation and propagation of the cohesive crack is reflected by the change of the strain concentration zone in 2-dimensional strain fields. The experimental results show that the admixtures of Class F Fly Ash (FA) and S95 Ground Granulated Blast-furnace Slag (GGBS) in high proportions increase the strain and cohesive-crack opening displacement as well as remarkably improve the fatigue performance of HPC.  相似文献   

15.
李益萱  张治君  邵闯 《实验力学》2014,29(4):499-505
飞机结构在飞行过程中同时承受气动载荷和振动载荷的联合作用,这两种载荷的耦合加载试验对于飞机结构成为一项重要的研究内容,所以有必要对此类试验的可行性及其耦合加载方式进行研究。此次试验以气囊加载静载/常规疲劳载荷状态下试件的振动响应测试为目的,设计符合试验要求的试件和整套试验装置。得到了气囊5种不同加载情况下试件振动响应变化情况,并对此试验结果进行了理论分析,得出以下结论:a)气囊模拟静载/常规疲劳载荷加载不会大幅改变结构本身振动特性,此耦合试验方法所模拟环境比较接近飞机结构真实载荷环境;b)加载气囊的个数、部位及加载力的不同对试件结构的振动响应有一定影响,应增加气囊蓄能器或在试验前进行分析以选择合理的加载点。  相似文献   

16.
引用损伤力学方法研究金属构件疲劳问题。在微结构力学模型基础上建立轴对称的各向异性疲劳损伤本构关系,通过有限元-附加力解法编制考虑各向异性损伤的有限元程序。应用引入门槛条件的损伤演化方程,并以损伤划分步长预估了构件疲劳裂纹形成与扩展寿命。用这一方法预估30CrMnSiNi2Aφ5和φ8螺栓全寿命。结果表明,理论S-N曲线与试验S-N曲线吻合良好并且门槛条件对修正低应力下疲劳寿命有很好的效果。本方法所需机时较少,可用于工程实际构件的高周疲劳寿命预估及抗疲劳优化设计。  相似文献   

17.
通过定义考虑拉伸保载效应的CFI因子(creep-fatigue interaction factor),将拉伸蠕变损伤和疲劳损伤进行非线性耦合. 根据断裂实验的观察,针对拉伸主 导的裂纹萌生、扩展及破坏的多轴疲劳问题,给出了一个基于临界面方法的能量型高温多轴 疲劳寿命预测模型. 所给出的模型可对不同温度、不同载荷特点、不同保载时间的多轴疲劳 寿命进行预测,模型的材料参数不依赖于温度和载荷. 并且此方法可以很方便地推广到其它 因素主导破坏的高温多轴疲劳寿命预测. 通过拟合高温合金Udimet720Li单轴带保持时间的 低循环疲劳(low cycle fatigue, LCF)寿命试验数据,得到了材料常数. 结合黏 塑性有限元分析方法,对高温双轴带保载循环载荷下Cruciform试件的寿命进行了 预测,预测结果基本落在2倍分散带内,达到工程的要求,证明了该模型的有效性.  相似文献   

18.
彭晖  王博  张建仁  李树霖 《实验力学》2014,29(2):189-199
外贴FRP是重要的混凝土结构加固技术,但目前对外贴FRP加固混凝土结构的疲劳性能研究尚不充分,尤其对FRP-混凝土粘结界面的疲劳退化规律和破坏模式的研究更为缺乏。本文采用双面剪切试件,通过2个静载试件和4个疲劳试件的试验研究,考察了粘结长度和胶层厚度等因素对FRP-混凝土界面粘结疲劳性能的影响。通过分析沿粘结长度的FRP应变分布在疲劳循环过程中和疲劳后静载过程中的变化情况,讨论了不同粘结长度和粘结胶层厚度条件下的粘结界面疲劳退化规律和疲劳后静载性能。试验结果表明:胶层树脂-混凝土粘结界面是发生疲劳剥离破坏的薄弱环节;胶层厚度增大时,由于疲劳引起的界面损伤累积发展显著减小,疲劳后静载中胶层厚度较大试件的粘结承载力也更大;粘结长度增大时,界面粘结呈现更为明显的损伤退化,但由于试验粘结长度小于有效粘结长度,疲劳后的静粘结承载力仍更大。  相似文献   

19.
An energy-based fatigue-life prediction framework for the determination of full-life, remaining-life, and critical-life of in-service structures subjected to torsional-shear loading has been developed. This framework is developed upon the existing foundation of energy-based fatigue models crafted for the axial, uniaxial bending, and transverse-shear loading cases, which state: the total strain energy density accumulated during both a monotonic event and a cumulative cyclic process is the same material property. The modified energy-based torsional-shear fatigue-life prediction framework is composed of the following entities: (1) the development of a torsional-shear fatigue testing procedure capable of assessing strain energy density per cycle in a pure shear stress state and (2) the determination of the remaining-life and critical-life of in-service aluminum (Al) 6061-T6 structures subjected to shear fatigue through the application of the energy-based prediction method. Experimental data was shown to be affected by load-frame misalignment which was estimated and successfully incorporated into the validation results. Close correlation between adjusted experimental results and the full-life and critical-life predictions stemmed from a 3-to-2 shear-to-axial biaxial loading assumption, which was supported by crack path comparisons. Results of the study effectively demonstrated the versatility of the energy-based lifing method.  相似文献   

20.
Electric-field-induced fatigue crack growth in pre-cracked PZT ferroelectric ceramics is experimentally investigated in this work. It is found that the crack open and close under an alternating electric field is a major mechanism of crack propagation. The experimental results also show that the frequency, waveform, as well as the amplitude ratio, of the electric loading, play important roles in electric-field-induced fatigue cracking. Empirical formulations of fatigue crack propagation rates are obtained based on the experimental results. It is revealed that the crack grows at a nearly constant rate when the loading frequency is below 100 Hz. However, with the increase of the loading frequency over 125 Hz, the crack propagation rate diminishes rapidly.  相似文献   

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