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Analysis of density and mechanical properties of high velocity compacted iron powder 被引量:2
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作者 Jianzhong WANG Haiqing YIN Xuanhui QU 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2009年第6期447-453,共7页
A new method for producing higher density PM parts, high velocity compaction (HVC), was presented in the paper. Using water atomized pure iron powder without lubricant admixed as the staring material, ring samples w... A new method for producing higher density PM parts, high velocity compaction (HVC), was presented in the paper. Using water atomized pure iron powder without lubricant admixed as the staring material, ring samples were compacted by the technique. Scanning electron microscopy (SEM) and a computer controlled universal testing machine were used to investigate the morphologies and the mechanical properties of samples, respectively. The relationships among the impact velocity, the green density, the sintered density, the bending strength and the tensile strength were discussed, The results show that with increasing impact velocity, the green density and the bending strength increase gradually, so the sintered density does. In addition, the tensile strength of sintered material is improved continuously with the sintered density enhancing. In the study, the sintered density of 7.545 g/cm^3 and the tensile strength of 190 MPa are achieved at the optimal impact velocity of 9.8 m/s. 展开更多
关键词 Powder metallurgy High velocity compaction DENSITY Mechanical properties Iron powder
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Improvement of a High Velocity Compaction Technique for Iron Powder 被引量:4
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作者 Dil Faraz KHAN Haiqing YIN +4 位作者 Zahid USMAN Matiullah KHAN Xianjie YUAN Wenhao WANG Xuanhui QU 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2013年第4期399-403,共5页
Water atomized pure iron powder was compacted by high velocity compaction (HVC) with and without upper relaxation assist (URA) device. The influence of URA device on green density, spring back, green strength and ... Water atomized pure iron powder was compacted by high velocity compaction (HVC) with and without upper relaxation assist (URA) device. The influence of URA device on green density, spring back, green strength and hardness was studied. Morphological characteristics of the samples were observed by scanning electron microscope (SEM). Green strength of the samples was measured by computer controlled universal testing machine. The results show that as stroke length increases, the green density, green strength and hardness of the compacts increase gradually. At the identical stroke length, the green density of the compacts pressed with URA devise was 2% higher than the compacts pressed without URA device. The green strength and hardness of the compacts pressed with URA device were higher than the compacts pressed without URA device. Furthermore, the radial spring back of the compacts decreased gradually with the increment in stroke length, whilst that of compacts prepared with URA device was lower. 展开更多
关键词 High velocity compaction URA device Green density Spring back Green strength HARDNESS
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Simulation of high velocity compaction of powder in a two dimension mould using lattice Boltzmann method 被引量:2
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作者 Qiaojie LI Zhoushun ZHENG Xuanhui QU 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2012年第1期47-54,共8页
This work presents a numerical study on the dynamic high velocity compaction of the metal powder. The analysis of the process is based on a mesoscopic approach using multi-speed lattice Boltzmann method. The boundary ... This work presents a numerical study on the dynamic high velocity compaction of the metal powder. The analysis of the process is based on a mesoscopic approach using multi-speed lattice Boltzmann method. The boundary condition and the relaxation time are tailored to the situation. The dynamic compaction process is vividly presented and the shock wave can be easily found in the simulation. The density is analyzed in order to explore the mechanism of the high velocity compaction. 展开更多
关键词 High velocity compaction Lattice Boltzmann method SHOCKWAVE Relaxation time function
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