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The Preparation of Multiphase Materials through Selfsustaining
Process Design for Solid State Amorphization in High
Synthesis of Multiphase Powder Systems with a Composition
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addition amorphous analysis atomization ball mill behaviour binder carbon cemented carbide ceramics chemical compaction pressure components composites consolidation containing copper decrease densification diffusion dopants doped effect electron elements formation fracture fuel furnace grain boundary grain growth graphite green density hardness heat high temperature higher HIPed hot isostatic pressing hot pressed improved increase interface iron powder layer lubricant materials matrix mechanical alloying mechanical properties melting metal micrograph microstructure molybdenum nitride observed obtained oxide oxygen parameters particles pellets pores porosity powder compacts Powder Metallurgy prealloyed precipitation present production reaction reduced refractory resistance samples shown in figure shows shrinkage sialon silicon Silicon Carbide silicon nitride sintered density sintering aids sintering temperature specimens steel strength stress structure superalloys superconductors surface Table technique Technology tensile thermal tion titanium tungsten Upadhyaya vacuum valve varistor wear