共 18 条
- [1] Zhou S., Yin H., Qu X., Research Progress of High Speed Pressing Technology for Powder Metallurgy, Materials China, 29, 2, pp. 45-49, (2010)
- [2] Wang J., Qu X., Yin H., Et al., High Velocity Compaction of Ferrous Powder, Chinese Journal of Materials Research, 192, 1, pp. 131-136, (2008)
- [3] Khan D.F., Yin H.Q., Matiullah M., Et al., Analysis of Density and Mechanical Properties of Iron Powder with Upper Relaxation Assist through High Velocity Compaction, Materials Science Forum, 749, pp. 41-46, (2013)
- [4] Haggblad H.A., Hockauf M., Eriksson M., Et al., Simulation of High Velocity Compaction of Powder in a Rubber Mould with Characterization of Silicone Rubber and Titanium Powder Using a Modified Split Hopkinson Set-up, Powder Technology, 154, 1, pp. 33-42, (2005)
- [5] Yang S.D., Zhang R.J., Qu X.H., X-ray Tomography Analysis of Aluminum Alloy Powder Compaction, Rare Metals, 7, pp. 1-7, (2015)
- [6] Taniguchi Y., Dohda K., Wang Z., Effect of Lubrication on the Improvement of Uniformity in Uniaxial Powder Compaction, JSME International Journal, 48, 4, pp. 393-398, (2005)
- [7] Doremus P., Guennec Y.L., Imbault D., Et al., High-velocity Compaction and Conventional Compaction of Metallic Powders: Comparison of Process Parameters and Green Compact Properties, Archive Proceedings of the Institution of Mecha, 1, E3, pp. 1-9, (2010)
- [8] Michrafy A., Dodds J.A., Kadiri M.S., Wall Friction in the Compaction of Pharmaceutical Powders: Measurement and Effect on the Density Distribution, Powder Technology, 148, 1, pp. 53-55, (2004)
- [9] Wang D., Wu Y., Jiao M., Et al., Finite Element Simulation about the Effect of Different Pressing Processes on the Performance of Powder Metallurgy Products, Chinese Journal of Mechanical Engineering, 44, 1, pp. 205-211, (2008)
- [10] An X., Zhang Y., Zhang Y., Et al., Finite Element Modeling on the Compaction of Copper Powder under Different Conditions, Metallurgical and Materials Transactions A, 46, 8, pp. 3744-3752, (2015)