Rheological principles of development hetero-modulus and hetero-viscous complex materials with extreme dynamic strength

被引:23
作者
Gomze, L. A. [1 ,2 ,3 ]
Gomze, L. N. [2 ]
机构
[1] Univ Miskolc, Inst Ceram & Polymer Engn, Miskolc, Hungary
[2] IGREX Engn Serv Ltd, Igrici, Hungary
[3] Tomsk State Univ, Tomsk, Russia
来源
4TH INTERNATIONAL CONFERENCE ON COMPETITIVE MATERIALS AND TECHNOLOGY PROCESSES (IC-CMTP4) | 2017年 / 175卷
关键词
ceramics; composites; diamond-like; elasticity; hetero-modulus; nanostructure; rheology; strength; viscosity; GRAIN-SIZE; MECHANICAL-PROPERTIES; FRACTURE-TOUGHNESS; WEAR BEHAVIOR; HIGH-PRESSURE; SLIDING WEAR; TEMPERATURE; CERAMICS; ALUMINA; AL2O3;
D O I
10.1088/1757-899X/175/1/012001
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Materials with different crystalline and morphological compositions have different chemical, physical, mechanical and rheological properties, including wear protection, melting temperature, module of elasticity and viscosity. Examining the material structures and behaviors of differentceramic bodies and CMCs under high speed collisions in several years the authors have understood the advantages of hetero-modulus and hetero-viscous complex material systems to absorb and dissipate the kinetic energy of objects during high speed collisions. Applying the rheo-mechanical principles the authors successfully developed a new family of hetero-modulus and hetero-viscous alumina matrix composite materials with extreme mechanical properties including dynamic strength. These new corundum-matrix composite materials reinforced with Si2ON2, Si3N4, SiAION and AIN submicron and nanoparticles have excellent dynamic strength during collisions with high density metallic bodies with speeds about 1000 m/sec or more. At the same time in the alumina matrix composites can be observed a phase transformation of submicron and nanoparticles of alpha and beta silicone-nitride crystals into cubicc-Si(3)N(4)diamond-like particles can be observed, when the high speed collision processes are taken place in vacuum or oxygen-free atmosphere. Using the rheological principles and the energy engorgement by fractures, heating and melting of components the authors successfully developed several new hetero-modulus, hetero-viscous and hetero-plastic complex materials. These materials generally are based on ceramic matrixes and components having different melting temperatures and modules of elasticity from low values like carbon and light metals (Mg, Al, Ti, Si) up to very high values like boride, nitride and carbide ceramics. Analytical methods applied in this research were scanning electron microscopy, X-ray diffractions and energy dispersive spectrometry. Digital image analysis was applied to microscopy results to enhance the results of transformations.
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页数:12
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