Mechanics and physics of quasibrittle fracture of polycrystalline metals under the conditions of stress concentration. Part I. Experimental results

被引:4
作者
Kotrechko S.A. [1 ]
Meshkov Yu.Ya. [1 ]
Nikonenko D.I. [1 ]
Mettus G.S. [1 ]
机构
[1] Institute of Physics of Metals, National Academy of Sciences of Ukraine, Kiev
关键词
Plastic Strain; Fatigue Crack; Fracture Process; Uniaxial Tension; Stress Concentrator;
D O I
10.1007/BF02767814
中图分类号
学科分类号
摘要
In the present work, which consists of three parts, we make an attempt to formulate the fundamental ideas of the theory of quasibrittle fracture of polycrystalline metals and structural alloys on the macroscopic and microscopic levels. Within the framework of the usual approach, we consider physical aspects of the problem of analysis of the elementary acts of fracture of the crystal lattice and regularities of macroscopic fracture under conditions of stress concentration in connection with the problem of structural integrity. We propose simple and convenient practical criteria of quasibrittle fracture under conditions of stress concentration and formulate physically substantiated concepts of the ductility of metals. In the first part of the work, we present the results of the experimental investigation of the fracture of specimens with stress concentrators of various geometries and fatigue cracks, establish the regularities of changes in the local characteristics of fracture, and analyze the principal factors affecting the value of the critical cleavage stress σf. © 1998 Plenum Publishing Corporation.
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页码:319 / 327
页数:8
相关论文
共 18 条
[1]  
Yokobori, T., (1978) Fundamentals of Strength and Fracture of Materials, , Naukova Dumka Kiev
[2]  
Meshkov, Yu.Ya., Serditova, T.N., (1989) Fracture of Deformed Steel, , Naukova Dumka Kiev
[3]  
Knott, J.F., (1973) Fundamentals of Fracture Mechanics, , Butterworths London
[4]  
Kotrechko, S.A., Meshkov, Yu.Ya., Mettus, G.S., Brittle fracture of polycrystalline metals in complicated stressed states (1988) Metallofizika, 10 (6), pp. 46-55. , 1:CAS:528:DyaL1MXhtFyqur4%3D
[5]  
Kotrechko, S.A., The critical cleavage stress and 'brittle strength' of polycrystalline metals (1993) Phys. Met., 12 (5), pp. 542-548
[6]  
Karzov, G.P., Margolin, B.Z., Shvetsova, V.A., (1993) Physicomechanical Simulation of Fracture Processes, , Politekhnika Sanit Petersburg
[7]  
Knott, J., Influence of the depth of the notch on resistance of soft steel to brittle fracture (1972) New Methods for the Estimation of the Resistance of Metals to Brittle Fracture, pp. 181-197. , Yu. N. Rabotnov (eds) Mir Moscow
[8]  
Uzhik, G.V., (1950) Tear Resistance and Strength of Metals, , Academy of Sciences of the USSR Moscow
[9]  
Kopel'Man, L.A., (1978) Resistance of Welds to Brittle Fracture, , Mashinostroenie Leningrad
[10]  
Potak, Ya.M., (1955) Brittle Fracture of Steel and Steel Products, , Oborongiz Moscow