Rheo-diecasting process for semi-solid aluminum alloys

Hongmin Guo , Xiangjie Yang , Bin Hu , Guanglei Zhu

Journal of Wuhan University of Technology Materials Science Edition ›› 2007, Vol. 22 ›› Issue (4) : 590 -595.

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Journal of Wuhan University of Technology Materials Science Edition ›› 2007, Vol. 22 ›› Issue (4) : 590 -595. DOI: 10.1007/s11595-006-4590-0
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Rheo-diecasting process for semi-solid aluminum alloys

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Abstract

A novel one-step semisolid processing technique, the rheo-diecasting (RDC) process, was developed, which adapts in situ creation of semisolid metal slurry with fine and spherical solid particles followed by direct shaping of the slurry into a near-net shape component using the existing cold chamber diecasting process. The RDC process was applied to process A356 and A380 aluminum alloys. The resulting microstructures and mechanical properties of RDC products under as-cast and various heat treatment conditions were analyzed. The experimental results show that the RDC samples have an extremely low porosity, a fine and uniform microstructure throughout entire casting, and consequently much improved strength and ductility in the as-cast condition. The strength of RDC A356 alloy can be substantially improved under T5 and T6 heat treatments without loss of ductility.

Keywords

semi-solid processing / rheocasting / aluminum alloys / microstructure / mechanical properties

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Hongmin Guo, Xiangjie Yang, Bin Hu, Guanglei Zhu. Rheo-diecasting process for semi-solid aluminum alloys. Journal of Wuhan University of Technology Materials Science Edition, 2007, 22(4): 590-595 DOI:10.1007/s11595-006-4590-0

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References

[1]

Jorstad J. Semi-solid Metal Processing: The High Integrity Die Casting Process [J]. Die Casting Engineer, 2004, 48(1): 42-48.

[2]

Giordano P., Chiarmetta G. Apelian D., Alexandrou A., Georgiou G., Jorstad J., Makhlouf M. New Rheocasting: a Valid Alternative to the Traditional Technologies for the Production of Automotive Suspension Parts [C]. Proceedings of the 8th International Conference on Semi-Solid processing of Alloys and Composites, 2004. Limassol: The Worcester Polytechnic Institute and the Metals Processing Institute. 101-109.

[3]

Flemings M. C. Behavior of Metal Alloys in the Semi-solid State [J]. Metal. Trans., 1991, 22A(4): 957-981.

[4]

Kirkwood D. H. Semi-solid Metal Processing[J]. Int. Mater. Rev., 1994, 39(5): 173

[5]

Fan Z. Semisolid Metal Processing[J]. Int. Mater. Rev., 2002, 47(2): 1-37.

[6]

Jorstad J. L. Apelian D., Alexandrou A., Georgiou G., Jorstad J., Makhlouf M. SSM Processes-An Overview[C]. Proceedings of the 8th International Conference on Semi-Solid processing of Alloys and Composites, 2004. Limassol: The Worcester Polytechnic Institute and the Metals Processing Institute. 15-26.

[7]

DasGupta L. Apelian D., Alexandrou A., Georgiou G., Jorstad J., Makhlouf M. Industrial Application-The Present Status and Challenges We Face[C]. Proceedings of the 8th International Conference on Semi-Solid processing of Alloys and Composites, 2004. Limassol: The Worcester Polytechnic Institute and the Metals Processing Institute. 1-14.

[8]

Kaufmann H., Wabusseg H., Uggowitzer P. J. Metallurgical and Processing Aspects of the NRC Semi-solid Casting Technology [J]. Aluminum, 2000, 76(1–2): 70-75.

[9]

Kaufmann H., Potzinger R., Uggowitzer P. J., . An Update on the New Rheocasting Development Work for Al-and Mg-Alloys [J]. Die Casting Engineer, 2002, 46(46): 16-19.

[10]

Scamans G., Fan Z. Rheoforming of Novel Aluminium and Magnesium alloys[J]. Aluminium International Today, 2005, 17(6): 22-26.

[11]

Xiao Z., Luo J., Wu S., . Performing for Semi-solid Slurry Produced by Twin-screw Stirring Mixer and Rheo-diecasting Process of AZ91D Alloy[J]. Journal of Wuhan University of Technology-Materials Science Edition, 2004, 19(4): 81-85.

[12]

Yurko J. A., Martinez R. A., Flemings M. C. Tsutsui Y., Kiuchi M., Ichikawa K. Development of Semisolid Rheocasting (SSR)[C]. Proceedings of the 7th International Conference on Semi-Solid processing of Alloys and Composites, 2002. Japan: National Institute of Advanced Industrial Science and Technology, Japan Society for Technology of Plasticity. 659-664.

[13]

Jorstad J., Thieman M., Kamm R. Tsutsui Y., Kiuchi M., Ichikawa K. SLC, the Newest and Most Economical Approach to Semi-solid metal (SSM) Casting[C]. Proceedings of the 7th International Conference on Semi-Solid processing of Alloys and Composites, 2002. Japan: National Institute of Advanced Industrial Science and Technology, Japan Society for Technology of Plasticity. 701-706.

[14]

Apelian D., Pan Q. Y., Findon M. Low Cost and Energy Efficient Methods for the Manufacture of Semi-solid (SSM) Feedstock [J]. Die Casting Engineer, 2004, 48(1): 22-28.

[15]

Douter D., Hay G., Wales P. SEED: A New Process for Semisolid Forming[J]. Canadian Metallurgical Quarterly, 2004, 43(2): 265-272.

[16]

GUO H M, YANG X J, HU B. Rheocasting of Aluminum Alloy A356 by Low Superheat Pouring with a Shearing field[J]. Acta Metallurgic (Letters), 2006, (5):328–334

[17]

GUO Hongmin, YANG Xiangjie. Continuous Fabrication of Sound Semi-Solid Slurry for Rheoforming[J]. Solid State Phenomena, 2006, (116–117): 425–428

[18]

Dewhirst B., Apelian D., Jorstad J. Effect of Artificial Aging on Microstructure and Tensile Properties of Semi-solid Processed A356 Castings [J]. Die Casting Engineer, 2005, 49(3): 38-44.

[19]

Jorstad J., Thieman M., Kamm R., . Sub Liquidus Casting (SLC): Process Concept and Product Properties[J]. Transactions of the American Foundry Society, 2003, 111: 399-405.

[20]

Crespo C., DasGupta R., Hollacher R., . Tsutsui Y., Kiuchi M., Ichikawa K., . Slurry Approach to Manufacturing Automotive Components[C]. Proceedings of the 7th International Conference on Semi-Solid processing of Alloys and Composites, 2002. Japan: National Institute of Advanced Industrial Science and Technology, Japan Society for Technology of Plasticity. 131-136.

[21]

Rosso M., Romano E., Giordano P., . Tsutsui Y., Kiuchi M., Ichikawa K., . Mechanical and Microstructural Characterization of Semisolid Rheocast A356 and A357 Aluminum Alloys for Automotive Applications[C]. Proceedings of the 7th International Conference on Semi-Solid processing of Alloys and Composites, 2002. Japan: National Institute of Advanced Industrial Science and Technology, Japan Society for Technology of Plasticity. 151-156.

[22]

Guo H., Yang X. Apelian D., Alexandrou A., Georgiou G., Jorstad J., Makhlouf M. Morphology Evolution of Primary Aalpha Phase in Rotated Duct Process[C]. Proceedings of the 8th International Conference on Semi-Solid processing of Alloys and Composites, 2004. Limassol: The Worcester Polytechnic Institute and the Metals Processing Institute. 695-703.

[23]

Park C., Kim S., Kwon Y., . Effect of Microstructure on Tensile Behavior of Thixofomed 357-T5 Semisolid Al Alloy[J]. Metall. Mater. Trans., 2004, 35A(4): 1407-1411.

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