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1.
考虑路径相关性的非比例循环塑性本构模型   总被引:2,自引:0,他引:2  
匡震邦  赵社戌 《力学学报》1999,31(4):484-492
根据非比例加载下金属材料响应的延迟特性及加载路径相关性,选取沿应力迹法向的塑性应变的累积量作为非比例加载影响的度量,相应给出反映非比例附加强化的变量,并假设其模量和强化率与加载路径的几何参数相关.为反映由于非比例加载而引起的材料强化的异向效应,在Valanis的塑性内时响应方程中引入与加载路径几何性质有关的应力项,构成非比例循环塑性本构关系.对316和304不锈钢材料在一些典型非比例循环加载路径下的应力响应进行了理论预测,与Benallal等及McDowell的实验结果取得了良好的一致.  相似文献   

2.
率相关非比例循环塑性内时本构模型   总被引:3,自引:0,他引:3  
将材料响应的总应力表示为平衡态应力和非平衡成过应力的和,分别定义描述率无关和率相关变形过程的内时,在平衡态响应的描写中,假定反映非比例加载效应的附加等等向强化和异向强化函数与沿应力迹法向的塑性应变分量的累积量相关,并在其中考虑加载路径几何性质变化的影响,建立一组率相关非比例循环塑性内时本构方程,对XCrNi18.9不锈钢在不同加载率下的单轴比例和多轴非比例响应进行预测,与Haupt和Lion的实验  相似文献   

3.
徐辰旻  吴昊 《力学季刊》2021,42(3):517-527
一些金属材料在承担多轴非比例加载过程时,会产生额外非比例附加强化或软化现象,这一现象往往会导致在评估疲劳寿命时因为材料本构关系的不确定而引起预测结果出现较大误差.因此基于单轴疲劳理论得出的寿命预测模型并不能准确地预测多轴非比例疲劳加载下的材料寿命.针对此问题,本文阐述了非比例附加强化效应产生的原因及结果,结合转动惯量法的理论和塑性增量法,建立了预测多轴低周疲劳加载下循环应力-应变曲线的数值计算模型.利用316L 不锈钢试样在5 种加载路径下的实验数据对预测结果进行了验证,结果表明该模型具有良好的预测有效性及精度.  相似文献   

4.
在实际工作环境中,机械结构往往承受着多轴非比例循环载荷.相比多轴比例循环加载,多轴非比例循环加载由于产生了附加强化现象,造成机械结构疲劳寿命下降.通过分析薄壁圆筒管件在非比例加载工况下应力应变变化规律和发生破坏位置,本文基于临界面法提出一种考虑多轴非比例附加损伤的疲劳模型.该模型将最大剪切应变幅平面作为临界面,提出一个新的附加强化因子,结合临界面上切应变幅和正应变幅组成新的多轴疲劳损伤参量.此参量不仅考虑了非比例加载下临界面上正应变幅和切应变幅对材料造成的疲劳损伤,还考虑到应变路径的变化和材料非比例加载敏感特性对材料疲劳寿命的影响.考虑到实际情况下模型所需材料附加强化系数有时难以获得的情况,给出了材料附加强化系数的有关近似计算公式.只需要材料基本力学参数便可得到材料附加强化系数,方便工程实际应用.采用8种材料的多轴疲劳寿命数据对提出的新模型进行检验,结果表明所提出的新模型与传统多轴疲劳模型相比预测寿命精度更高.  相似文献   

5.
崔向阳  洪克城 《力学学报》2019,51(3):863-872
在实际工作环境中,机械结构往往承受着多轴非比例循环载荷.相比多轴比例循环加载,多轴非比例循环加载由于产生了附加强化现象,造成机械结构疲劳寿命下降.通过分析薄壁圆筒管件在非比例加载工况下应力应变变化规律和发生破坏位置,本文基于临界面法提出一种考虑多轴非比例附加损伤的疲劳模型.该模型将最大剪切应变幅平面作为临界面,提出一个新的附加强化因子,结合临界面上切应变幅和正应变幅组成新的多轴疲劳损伤参量.此参量不仅考虑了非比例加载下临界面上正应变幅和切应变幅对材料造成的疲劳损伤,还考虑到应变路径的变化和材料非比例加载敏感特性对材料疲劳寿命的影响.考虑到实际情况下模型所需材料附加强化系数有时难以获得的情况,给出了材料附加强化系数的有关近似计算公式.只需要材料基本力学参数便可得到材料附加强化系数,方便工程实际应用.采用8种材料的多轴疲劳寿命数据对提出的新模型进行检验,结果表明所提出的新模型与传统多轴疲劳模型相比预测寿命精度更高.   相似文献   

6.
考虑非比例附加损伤的多轴低周疲劳寿命模型   总被引:2,自引:0,他引:2  
姜潮  邓群  李博川 《力学学报》2015,47(4):634-641
基于临界面法, 提出了一种能够反映非比例疲劳寿命锐减现象的多轴低周疲劳寿命模型. 与传统临界面模型只考虑附加强化效果不同, 新的模型在疲劳损伤参量中引入新定义的非比例附加损伤系数, 能综合考虑非比例加载条件下附加强化和载荷路径两种因素对疲劳寿命减少的影响, 并且分别以最大切应变和最大损伤平面作为临界面来构建疲劳损伤参量, 反映了临界面的选取对模型预测结果的重要影响. 从已发表文献中选用8 种材料的多轴疲劳试验结果进行验证, 新模型能同时适用于比例和非比例加载, 并且具有很好的寿命预测精度和材料适用性.   相似文献   

7.
非等温条件下非比例循环粘塑性本构描述   总被引:1,自引:0,他引:1  
杨显杰  高庆  孙训方 《力学学报》1996,28(2):251-256
为了描述在非等温非比例循环加载下的循环变形行为,本文提出了一个考虑材料非比例循环附加硬化效应、非比例循环加载历史效应和温度历史效应的粘塑性本构模型.在该模型中,引入了具有三种不同演化速率的背应力演化方程;定义了新的非比例度;为了反映非比例循环历史和温度历史的影响,引入了表现各向同性变形阻力Qasm,并对各向同性的表现变形阻力引入了具有先前加载历史记忆的演化方程.将本文模型用于1Cr18Ni9Ti不锈钢高温循环变形行为描述,其预言结果与实验结果吻合得很好.  相似文献   

8.
本文提出了一种以应变能预测多轴应变加载低周疲劳寿命的新方法,该方法最大特点假设疲劳裂纹是由最大剪应力和其相对应的正应力引起,解决了其他方法不能反映非比例强化的问题;该方法建立等效内应力、外加有效应力与塑性应变能的关系,从而分析得到基于塑性应变能的多轴非比例疲劳寿命的计算模型,及多轴疲劳寿命公式中材料参数确定、剪应力及其所在平面所对应的正应力、塑性应变能等的获取方法.凭借Al5083、S460N材料光滑试件、GH4169材料缺口件、Al5083焊接件的多轴非比例加载进行寿命预测的验证,证明该模型可以预测不同材料、不同加载路径下的多轴非比例应变加载低周疲劳寿命.  相似文献   

9.
基于临界平面法的拉扭双轴疲劳寿命估算模型   总被引:2,自引:0,他引:2  
基于临界平面法,分析了WB模型的缺陷.研究发现:WB模型中的法向应变变程不能很好地反映材料非比例循环加载下的附加强化现象,且模型中的经验常数是一个与寿命相关的参数,该参数不能简单的利用拉伸和扭转疲劳极限来确定.为克服WB模型的缺陷,提出了一个新的有效循环变量,引入了一个新的应力相关因子,建立了新的寿命估算模型.新的有效循环变量不含经验常数,应力相关因子能够反映材料非比例循环加载下的附加强化现象,所建模型能够精确估算材料的多轴疲劳寿命,便于工程应用.  相似文献   

10.
基于临界平面法,分析了WB模型的缺陷,发现:WB模型中的法向应变变程不能很好的反映材料非比例循环加载下的附加强化现象,且模型中的经验常数是一个与寿命相关的参数,该参数不能简单的利用拉伸和扭转疲劳极限来确定。为克服WB模型的缺陷,提出了一个新的多轴疲劳损伤参量,引入了一个新的应力相关因子,建立了新的寿命估算模型。新的损伤参量不含经验常数,应力相关因子能够反映材料非比例循环加载下的附加强化现象,所建模型能够精确估算材料的多轴疲劳寿命,便于工程应用。  相似文献   

11.
在统一粘塑性循环本构理论框架下,以Ohno-Abdel-Karim非线性随动硬化模型为基础,建立了一个循环本构模型。模型通过引入塑性应变幅值记忆效应,并在塑性应变记忆项中加入恢复系数,提高了对循环硬化材料单轴棘轮行为的预言能力。将模型应用于316L不锈钢单轴棘轮行为的描述中,模拟不同平均应力、应力幅值下的棘轮应变,均与实验数据吻合较好,证明本文改进的本构模型能合理地描述循环硬化材料的单轴棘轮行为。  相似文献   

12.
The total stress response of material is decomposed into a sum of an equilibrium stress response and a non-equilibrium overstress response. Correspondingly, the rate-independent intrinsic time and the rate-dependent intrinsic time are defined respectively. Additional hardening functions for describing the isotropic and anisotropic nonproportional effects are assumed to be related to the accumulation of plastic strain component along the normal of equilibrium stress trajectory, in which the effects of geometry of the loading path are included. An endochronic constitutive model for rate-dependent, nonproportional cyclic plasticity is formulated and applied to simulate the stress responses of stainless steel XCrNi18.9 for some typical loading programs at different loading rates. A comparison between predicted results and experimental ones by Haupt and Lion shows that the former are in agrreement with the latter.  相似文献   

13.
A multiplicative hardening function and a unified evolution rule of the hardening factors are proposed. The hardening factorf 1 is introduced to describe cyclic hardening with respect to the plastic strain range, whilef 2 andf 3 describe, respectively, instantaneous and hereditary additional hardening with respect to the nonproportionality of the plastic strain path. Two material dependent memory parametersa 1 anda 3 are introduced to keep the memory of the largest cyclic and additional hardening in the previous plastic deformation history. Different hardening mechanisms are then embedded into a thermomechanically consistent constitutive equation through the hardening function. The constitutive response of 304 and 316 stainless steels subjected to biaxial nonproportional cyclic loading is analyzed and the proposed model is critically verified by comparing the results with experimental results obtained by Tanaka et al., and Ohashi et al. The project supported by National Natural Science Foundation of China  相似文献   

14.
The uniaxial and non-proportionally multiaxial ratcheting behaviors of SS304 stainless steel at room temperature were initially researched by experiment and then were theoretically described by a cyclic constitutive model in the framework of unified visco-plasticity. The effects of cyclic stress amplitude, mean stress, and their histories on the ratcheting were experimentally investigated under uniaxial and different multiaxial loading paths. The shapes of non-proportional loading paths were linear, circular, elliptical and rhombic, respectively. In the constitutive model, the rate-dependent behavior of the material was reflected by a viscous term; the cyclic flow and cyclic hardening behaviors of the material under asymmetrical stress-controlled cycling were reflected by the evolution rules of kinematic hardening back stress and isotropic deforming resistance, respectively. The effect of loading history on the ratcheting was also considered by introducing two fading memorization functions for maximum inelastic strain amplitude and isotropic deformation resistance, respectively, into the constitutive model. The effect of multiaxial loading path on the ratcheting was reflected by a non-proportional factor defined in this work. The predicting ability of the developed model was proved to be good by comparing the simulations with corresponding experiments.  相似文献   

15.
Motivated by the distribution of non-linear relaxation (DNLR) approach, a phenomenological model is proposed in order to describe the cyclic plasticity behavior of metals under proportional and non-proportional loading paths with strain-controlled conditions. Such a model is based on the generalization of the Gibbs's relationship outside the equilibrium of uniform system and the use of the fluctuation theory to analyze the material dissipation due to its internal reorganization. The non-linear cyclic stress–strain behavior of metals notably under complex loading is of particular interest in this study. Since the hardening effects are described appropriately and implicitly by the model, thus, a host of inelastic behavior of metals under uniaxial and multiaxial cyclic loading paths are successfully predicted such as, Bauschinger, strain memory effects as well as additional hardening. After calibrating the model parameters for two metallic materials, the model has demonstrated obviously its ability to describe the cyclic elastic-inelastic behavior of the nickel base alloy Waspaloy and the stainless steel 316L. The model is then implemented in a commercial finite element code simulating the cyclic stress–strain response of a thin-walled tube specimen. The numerical responses are in good agreement with experimental results.  相似文献   

16.
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   

17.
Cyclic plasticity experiments were conducted on a pure polycrystalline copper and the material was found to display significant cyclic hardening and nonproportional hardening. An effort was made to describe the cyclic plasticity behavior of the material. The model is based on the framework using a yield surface together with the Armstrong–Frederick type kinematic hardening rule. No isotropic hardening is considered and the yield stress is assumed to be a constant. The backstress is decomposed into additive parts with each part following the Armstrong–Frederick type hardening rule. A memory surface in the plastic strain space is used to account for the strain range effect. The Tanaka fourth order tensor is used to characterize nonproportional loading. A set of material parameters in the hardening rules are related to the strain memory surface size and they are used to capture the strain range effect and the dependence of cyclic hardening and nonproportional hardening on the loading magnitude. The constitutive model can describe well the transient behavior during cyclic hardening and nonproportional hardening of the polycrystalline copper. Modeling of long-term ratcheting deformation is a difficult task and further investigations are required.  相似文献   

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