Directional regulating method for systematic tissue structure of high-strength high-toughness ultra-fine hard alloy material
A cemented carbide, high-strength and high-toughness technology, applied in the field of material preparation, can solve problems such as consuming a lot of manpower and material resources
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[0016] like figure 1 As shown in the present invention, a high-strength and high-toughness ultrafine cemented carbide material system microstructure directional control method includes the following steps:
[0017] (1) Integrate multi-scale material simulation methods of first-principles calculation, phase diagram thermodynamics, diffusion dynamics and phase field simulation, and establish a research and development platform for microstructure design of cemented carbide tool substrates and wear-resistant coatings;
[0018] (2) According to the synergistic effect of the grain growth inhibitor in the cemented carbide at the atomic scale and the principle of strengthening and toughening of the alloy, the response characteristics of the microstructure to the composition of the grain inhibitor and the sintering temperature and its regulation mechanism were found. The performance requirements directional control of the distribution, dispersion and segregation thickness of the grain ...
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