scholarly journals Producing metal parts with selective laser sintering/hot isostatic pressing

JOM ◽  
1999 ◽  
Vol 51 (4) ◽  
pp. 2-2
Author(s):  
S. Das
JOM ◽  
1998 ◽  
Vol 50 (12) ◽  
pp. 17-20 ◽  
Author(s):  
Suman Das ◽  
Martin Wohlert ◽  
Joseph J. Beaman ◽  
David L. Bourell

1998 ◽  
Vol 542 ◽  
Author(s):  
S. Das ◽  
J. J. Beaman ◽  
M. Wohlert ◽  
D. L. Bourell

AbstractThis paper presents the development of Selective Laser Sintering/Hot Isostatic Pressing (SLS/HIP) technology for production of functional high performance components in the titanium alloy Ti-6AI-4V. SLS/HIP is a net shape manufacturing technique that combines and exploits the freeform shaping capability of selective laser sintering and the full densification capability of hot isostatic pressing. The advantages of SLS combined with in situ HIP encapsulation include single step net shape canning, full densification by containerless HIP, no container-powder adverse interactions, reduced pre-processing time, and minimal post-process machining compared to conventional HIP of canned powders. Microstructure and mechanical properties of SLS processed and HIP post-processed Ti-6A1-4V are consistent with conventionally processed material. The potential of SLS/HIP technology was demonstrated by net shape fabricating a component to specification, namely the titanium guidance section housing base for the AIM-9 Sidewinder missile.


Author(s):  
Z. L. Lu ◽  
J. H. Liu ◽  
Y. S. Shi

For fabricating complex AISI304 parts with high performance by advanced powder/metallurgy technologies, cold isostatic pressing (CIP) is introduced into selective laser sintering (SLS) combined with hot isostatic pressing (HIP), which is abbreviated to selective laser sintering/isostatic pressed (SLS/IP). The effect of processing parameters on the densification of Cu–AISI304 parts is analyzed and then the influence of Cu on their relative densities, metallurgical structures, and mechanical performances are investigated. The results show that relative densities of Cu–AISI304 parts fabricated by SLS/IP are mainly influenced by CIP pressure and sintering temperature, and it is interesting to find that the formula 1−D=(1−D0)e−kP is testified by the CIP of SLS/IP. There is an antidensification phenomenon resulting from Cu and AISI304 in liquid sintering, but the relative densities of Cu–AISI304 parts can be gradually improved in HIP with Cu content increasing from 1 wt % to 3 wt %. After the above-mentioned Cu–AIS304 parts are finally hot isostatic pressed, their metallurgical structures consist of sosoloid (Cu,Ni) and (Fe,Ni) besides austenite (Fe,Cr,Ni,C), their best mechanical performances are close to those of solution treated compact AISI304 when Cu content is 3 wt %.


2010 ◽  
Vol 26-28 ◽  
pp. 60-66
Author(s):  
Yan Ying Du ◽  
Yu Sheng Shi ◽  
Qing Song Wei

Selective Laser Sintering could manufacture high complex metal parts in short time but with high porosity and low strength. The components from Cold Isostatic Pressing have excellent performance with uniform organizational structure, high size precision, and high density. It, however, could not form high complex parts because of the difficulties of bag manufacture. So it will be a good method to combine Selective Laser Sintering and Cold Isostatic Pressing to make complicated metal parts. In this paper, the specimens of stainless steel were made by the combined Selective Laser Sintering and Cold Isostatic Pressing forming route. And the simulation of Cold Isostatic Pressing was carried out by finite element method and Drucker-Prager-Cap constitutive model in ABAQUS/Explicit computer program. The property of metal powder was measured by experiments. The effects of bag on Cold Isostatic Pressing have been discussed. It is different from the Cold Isostatic Pressing of metal powder that the bag has little influence on both shape and size of the specimen. The results of simulation show a good agreement between the experimental results and the calculated results. The simulation can give a useful direction to dimension and shape designs of the combined forming of Selective Laser Sintering and Cold Isostatic Pressing.


1997 ◽  
pp. 149-156 ◽  
Author(s):  
J.-P. Kruth ◽  
L. Froyen ◽  
B. Morren ◽  
J. Bonse

Applied laser ◽  
2013 ◽  
Vol 33 (1) ◽  
pp. 1-6
Author(s):  
史玉升 Shi Yusheng ◽  
刘凯 Liu Kai ◽  
贺文婷 He Wenting ◽  
李晨辉 Li Chenhui ◽  
魏青松 Wei Qingsong

Applied laser ◽  
2013 ◽  
Vol 33 (1) ◽  
pp. 1-6
Author(s):  
史玉升 Shi Yusheng ◽  
刘凯 Liu Kai ◽  
贺文婷 He Wenting ◽  
李晨辉 Li Chenhui ◽  
魏青松 Wei Qingsong

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