On the calculation of deformation curves for two-phase cermets

被引:2
作者
Golovchan V.T. [1 ]
机构
[1] Bakul' Institute of Superhard Materials, National Academy of Sciences of Ukraine, Kiev
关键词
Cermet; Strength and plasticity; Tensile and compression stress-strain diagrams; WC-Cohard metal;
D O I
10.1007/s11223-006-0042-5
中图分类号
学科分类号
摘要
Analytical algorithms for the construction of tensile and compression stress-strain diagrams of two-phase cermets are proposed, which are based on the concept of mean stresses in the phase volume and physical equations of the theory of small elastoplastic strains. The deformation properties and strength of cermet are supposed to depend on such parameters of its microstructure as mean size and coefficient of variation of solid phase grain-size distribution, contiguity coefficient of solid phase grains, and mean thickness of the metal phase inter-layers. A numerical analysis of the characteristic parameters of deformation curves for WC-Co hard metals has been carried out over a wide range of cobalt concentration and carbide grain size. A good agreement between the theoretical values of ultimate tensile and compression strength and known experimental values has been established. The constructed model deformation curves for hard metals may be regarded as alternatives to the corresponding experimental curves of stress against relative change in specimen length. © Springer Science+Business Media, Inc. 2006.
引用
收藏
页码:289 / 298
页数:9
相关论文
共 16 条
[1]  
Kislyi P.S., Cermets, (1985)
[2]  
Loshak M.G., Strength and Endurance of Hard Metals, (1984)
[3]  
Chernyavskii K.S., Travushkin G.G., Sapronova Z.N., Aleksandrovich A.A., Micromechanisms of deformation and failure at successive stages of compressive loading of hard alloys WC-Co, Strength Mater, 25, 10, pp. 746-754, (1993)
[4]  
Poech M.H., Fischmeister H., Spiegler R., Assessment of the in situ flow properties of the cobalt phase in WC-Co hard metals, J. Hard Mater., 2, 3-4, pp. 197-205, (1991)
[5]  
Litoshenko N.V., Assessment of conventional elastic limit for a hard WC-Co alloy in tension, Strength Mater., 31, 6, pp. 611-615, (1999)
[6]  
Litoshenko N.V., Assessment of conventional elastic limit for a hard WC-Co alloy in compression, Strength Mater., 32, 1, pp. 75-80, (2000)
[7]  
Litoshenko N.V., Regularities of the Effect of Residual Thermal Microstrecces and Carbide Grain Size Variance on the Strain Characteristics of WC-Co Hard Metals, (2002)
[8]  
Shermergor T.D., Theory of Elasticity of Microinhomogenous Media, (1977)
[9]  
Pisarenko G.S., Mozharovskii N.S., Equations and Boundary Problems of Plasticity and Creep Theory. Reference Book, (1981)
[10]  
Balandin P.P., On strength hypotheses, Vestn. Inzh. Tekhnik., 1, pp. 19-24, (1937)