화학공학소재연구정보센터
검색결과 : 37건
No. Article
1 Microstructure and properties of Cu-Cr-Nb alloy powder prepared by argon gas atomization
Lv XQ, Liu ZM, Lei T, Li Q, Zhao F, Peng K, Ren YK, Lu SZ, Nong BZ
Advanced Powder Technology, 30(11), 2464, 2019
2 Numerical simulation of high-pressure gas atomization of two-phase flow: Effect of gas pressure on droplet size distribution
Arachchilage KH, Haghshenas M, Park S, Zhou L, Sohn Y, McWilliams B, Cho K, Kumar R
Advanced Powder Technology, 30(11), 2726, 2019
3 Properties of atomized AlCoCrFeNi high-entropy alloy powders and their phase-adjustable coatings prepared via plasma spray process
Cheng KC, Chen JH, Stadler S, Chen SH
Applied Surface Science, 478, 478, 2019
4 THE PHYSICAL MECHANISM FOR MELT PULSATION DURING CLOSE-COUPLED ATOMIZATION
Mullis AM
Atomization and Sprays, 29(2), 143, 2019
5 NUMERICAL ANALYSIS ON SECONDARY BREAKUP PROCESS OF METAL DROPLET IN GAS ATOMIZATION
Du KP, Gao XZ, Li ZQ, Shen J, Ma Y, Hu Y, Sun HB
Atomization and Sprays, 29(5), 455, 2019
6 EXPERIMENTAL INVESTIGATION EFFECTS OF PARAMETERS OF SPRAY FORMATION ON POROSITY AND HARDNESS
Hasak SMA, Usta Y
Atomization and Sprays, 29(9), 783, 2019
7 Fine spherical powder production during gas atomization of pressurized melts through melt nozzles with a small inner diameter
Li XG, Zhu Q, Shu S, Fan JZ, Zhang SM
Powder Technology, 356, 759, 2019
8 Increasing the amorphous yield of {(Fe0.6Co0.4)(0.75)B0.2Si0.05}(96)Nb-4 powders by hot gas atomization
Ciftci N, Ellendt N, Barreto ES, Madler L, Uhlenwinkel V
Advanced Powder Technology, 29(2), 380, 2018
9 A numerical simulation study of the path-resolved breakup behaviors of molten metal in high-pressure gas atomization: With emphasis on the role of shock waves in the gas/molten metal interaction
Kaiser R, Li C, Yang S, Lee D
Advanced Powder Technology, 29(3), 623, 2018
10 A pore morphological study of gas-atomized Ti-6Al-4V powders by scanning electron microscopy and synchrotron X-ray computed tomography
Chen G, Zhou Q, Zhao SY, Yin JO, Tan P, Li ZF, Ge Y, Wang J, Tang HP
Powder Technology, 330, 425, 2018