共查询到20条相似文献,搜索用时 31 毫秒
1.
《International Journal of Plasticity》1988,4(3):231-250
A uniaxial stress-strain curve is calculated for a polycrystal consisting of numerous nonhardening FCC crystals based on the Lin model. The coefficient matrix relating the deviation of plastic strain to the one of stress in the Lin model turned out to be singular. The simplex method is used to determine slips of all slip systems in constituent crystals. The calculated curves lie between the KBW model and the Hill model. 相似文献
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M.J. Hillier 《International Journal of Solids and Structures》1974,10(2):211-215
The two conditions for stable necking, treated as a bifurcation of stress path, are derived. The anisotropic material considered is one for which the plastic work increment = , where both the generalized yield stress and generalized plastic strain increment are invariant functions. The method is applied to the necking of a thin cylinder under internal pressure. 相似文献
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This work explores the application of digitalimage-processing techniques to the measurement of large plastic strains. Two
sample problems have been selected, namely the uniform tensile deformation of aluminum-sheet metal strips and the post-necking
deformation of copper circular rods. Images of these gridded metallic test pleces were captured, digitized and analyzed in
a fully computerized way to evaluate strain distributions, anisotropic parameters and plastic stress-strain flow curves. For
post-necked test pieces, Bridgman stress correction has been easily applied by defining the neck profile contour from the
automated processing of digitized images. Results compare satisfactorily with those based on displacements measured by conventional
microscopy. The presented technique, with added improvements, can consititute a viable one for accurate and fully computerized
measurement of large deformations. 相似文献
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We solve the problem of determining the stress-strain state of an anisotropic plate with an elliptic hole and a system of thin rectilinear elastic inclusions. We assume that there is a perfect mechanical contact between the inclusions and the plate. We deal with a more precise junction model with the flexural rigidity of inclusions taken into account. (The tangential and normal stresses, as well as the derivatives of the displacements, experience a jump across the line of contact.) The solution of the problem is constructed in the form of complex potentials automatically satisfying the boundary conditions on the contour of the elliptic hole and at infinity. The problem is reduced to a system of singular integral equations, which is solved numerically. We study the influence of the rigidity and geometry parameters of the elastic inclusions on the stress distribution and value on the contour of the hole in the plate. We also compare the numerical results obtained here with the known data. 相似文献
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《International Journal of Solids and Structures》2006,43(18-19):5613-5627
The rate-type constitutive relations of rate-independent metals with isotropic or kinematic hardening at finite elastic–plastic deformations were presented through a phenomenological approach. This approach includes the decomposition of finite deformation into elastic and plastic parts, which is different from both the elastic–plastic additive decomposition of deformation rate and Lee’s elastic–plastic multiplicative decomposition of deformation gradient. The objectivity of the constitutive relations was dealt with in integrating the constitutive equations. A new objective derivative of back stress was proposed for kinematic hardening. In addition, the loading criteria were discussed. Finally, the stress for simple shear elastic–plastic deformation was worked out. 相似文献
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Theodore H. H. Pian 《应用数学和力学(英文版)》1984,5(4):1425-1435
The paper describes a procedure for modelling the anisotropic elastic-plastic behavior of metals in plane stress state by the mechanical sub-layer model. In this model the stress-strain curves along the longitudinal and transverse directions are represented by short smooth segments which are considered as piecewise linear for simplicity. The model is incorporated in a finite element analysis program which is based on the assumed stress hybrid element and the viscoplasticity theory. 相似文献
11.
The aim of the paper is to fill the gap between the general theoretical formulation of the constitutive relations for plastic spin and practical applications for proper prediction of material behavior at finite plastic deformations and anisotropic hardening. An approximation to the representation of the general constitutive equation for plastic spin is considered and the pertinent substructure corotational rate is applied to formulate the relation for rigid-plastic material with kinematic hardening. The simple shear traction problem is analysed and the proposed model is verified with the experimental results of Swift. The merits of the present proposal vis-à-vis the existing theories are discussed. 相似文献
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In order to predict the life of engineering structures, it is necessary to investigate the strain distribution in notched members. In general, the Bauschinger Effect of materials under cyclic loading is not negligible, and so the anisotropic hardening model has been suggested. From the comparison between the calculated and experimental results in this paper, we can see that even the linear kinematic hardening model is quite suitable for strain analysis under cyclic loading. 相似文献
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This work addresses the formulation of the thermodynamics of nonlocal plasticity using the gradient theory. The formulation is based on the nonlocality energy residual introduced by Eringen and Edelen (1972). Gradients are introduced for those variables associated with isotropic and kinematic hardening. The formulation applies to small strain gradient plasticity and makes use of the evanescent memory model for kinematic hardening. This is accomplished using the kinematic flux evolution as developed by Zbib and Aifantis (1988). Therefore, the present theory is a four nonlocal parameter-based theory that accounts for the influence of large variations in the plastic strain, accumulated plastic strain, accumulated plastic strain gradients, and the micromechanical evolution of the kinematic flux. Using the principle of virtual power and the laws of thermodynamics, thermodynamically-consistent equations are derived for the nonlocal plasticity yield criterion and associated flow rule. The presence of higher-order gradients in the plastic strain is shown to enhance a corresponding history variable which arises from the accumulation of the plastic strain gradients. Furthermore, anisotropy is introduced by plastic strain gradients in the form of kinematic hardening. Plastic strain gradients can be attributed to the net Burgers vector, while gradients in the accumulation of plastic strain are responsible for the introduction of isotropic hardening. The equilibrium between internal Cauchy stress and the microstresses conjugate to the higher-order gradients frames the yield criterion, which is obtained from the principle of virtual power. Microscopic boundary conditions, associated with plastic flow, are introduced to supplement the macroscopic boundary conditions of classical plasticity. The nonlocal formulation developed here preserves the classical assumption of local plasticity, wherein plastic flow direction is governed by the deviatoric Cauchy stress. The theory is applied to the problems of thin films on both soft and hard substrates. Numerical solutions are presented for bi-axial tension and simple shear loading of thin films on substrates. 相似文献
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金永杰 《应用数学和力学(英文版)》1986,7(3):243-253
In this paper we discuss the adoption of the anisotropic hardening model due to the existence of Bauschinger effect when thin plate is applied by repeated loading. The loading condition of thin plates for linear kinematic hardening has been deduced in terms of generalized forces and generalized plastic deformation. And it can be extended to nonlinear kinematic hardening and mixed hardening. Finally as an example the numerical results are obtained for a circular plate. 相似文献
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The plastic zone at a crack tip in a finite anisotropic body is studied. A boundary-value problem is formulated in terms of
the components of the covariant displacement vector for small strains. Particular attention is given to the case of plain
strain. In this case, a numerical solution is found for a long rectangular body with a central crack under tension. As a result,
conditions for the occurrence and development of a plastic zone at the crack tip are established. A plastic zone on the lateral
surface of the body is discovered. How both zones extend and coalesce is elucidated. The effect of anisotropy on the occurrence
of a plastic zone is evaluated
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Translated from Prikladnaya Mekhanika, Vol. 42, No. 7, pp. 29–44, July 2006. 相似文献
20.
The influence of the length of a mode I crack on the plastic zone in an anisotropic body under hard loading is studied. The
case of a generalized plane stress state is examined. A boundary-value problem is solved numerically to study the behavior
of the main plastic zone at the crack tip, the additional plastic zone on the lateral face of the body, and the merged plastic
zone
Translated from Prikladnaya Mekhanika, Vol. 44, No. 9, pp. 36–52, September 2008. 相似文献