3D-TECLMOLOGIES IN FORMING AND FOUNDRY
Abstract
This review describes metal castings produced using 3D technology. Methods for 3D processing of materials related to the additive method of production, characterized by resource conservation. Frame-cellular casting can inherit the structure of nature with the best combination of materials, durability and attractive appearance. 3D technologies expand the existing range of metal products. Among the new foundry processes at the Institute PTIMA of NAS of Ukraine patented 3D technology of molding sand products through the deformation of granular materials, as well as getting sand shell molds for one-time pattern.
About the Author
V. S. DoroshenkoUkraine
Doroshenko Vladimir, senior staff Scientist.
Kiev, Ukraine, Vernadskogo, 34/1. E-mail: doro55v@gmail.com. Tel.: +38066-145-78-32.
References
1. Rifkin Dzh. Tret’ja promyshlennaja revoljucija: Kak gorizontal’nye vzaimodejstvija menjajut jenergetiku, jekonomiku i mir v celom [The Third Industrial Revolution: How to change the horizontal interaction of energy, the economy and the world at large] Moscow, Al’pina non-fikshin Publ., 2014, 410 p.
2. Danilishin B. M. Tret’ja promyshlennaja revoljucija i Ukraina [Third Industrial Revolution and Ukraine]. Novoe vremja – New time, 2014.
3. W a l l M. Space Station’s 3D Printer Makes Wrench From ‘Beamed Up’ Design.
4. Airbus had 1,000 parts 3D printed to meet deadline.
5. Vystavka EuroMold 2014 vo Frankfurte – prodemonstrirovany dostizhenija v oblasti tehnologij additivnogo proizvodstva
6. Shinskij I. O., Doroshenko V. S. 3D-tehnologii pri lit’e po gazificiruemym modeljam [3D-technology in the lost foam casting]. Metall i lit’e Ukrainy – Metal and casting of Ukraine. 2009, no. 405, pp. 30–33.
7. Doroshenko V. S. Sposoby poluchenija karkasnyh i jacheistyh lityh materialov i detalej po gazificiruemym modeljam [Methods for producing molded frame and cellular materials and components for the gas models]. Litejnoe proizvodstvo – Foundry production, 2008, no.9, pp. 28–32.
8. Shambley W. Prepare Your Technology Strategy for 3D Printing, Robotics, and the Cloud. Foundry Management & Technology.
9. Fan, Zhiqiang and Liou, Frank, “Numerical Modeling of the Additive Manufacturing (AM) Processes of Titanium Alloy, in Titanium Alloys” Towards Achieving Enhanced Properties for Diversified Applications, ed. A. K. M. Nurul Amin, Rijeka, Croatia, InTech, 2012, pp. 3–28.
10. Doroshenko V. S. Matematicheskoe proektirovanie karkasno-jacheistyh otlivok [Mathematical design of cellular skeleton castings]. Litejnoe proizvodstvo – Foundry production, 2013, no. 2, pp. 9–12.
11. Oganov A. R., Lyakhov A. O., Valle M. How evolutionary crystal structure prediction works and why. Acc. Chem. Res. 2011, vol. 44, pp. 227–237.
12. Doroshenko A.V., Doroshenko V. S. Patent Ukrainy 83902, MPK G06F 3/00. Sposob rasprostranenija informacii s primeneniem tehnologij dopolnennoj real’nosti [A method of disseminating information using augmented reality technology]. Opubl. 2013, Bjul. 19.
13. Doroshenko V. S. Trehmernaja formovka iz sypuchih materialov [The three-dimensional shaping of bulk materials]. Litejnoe proizvodstvo – Foundry production, 2013, no. 4, pp. 8–11.
14. Shinskij O. I., Doroshenko V. S. Patent Ukrainy 77595, MPK V22S 9/02. Sposob izgotovlenija izdelij iz sypuchego napolnitelja [A method of manufacturing products from particulate filler] Opubl. 2013, Bjul. 4.
15. Doroshenko V. S., Shinskij V. O. Zajavka Ukrainy u201410278, MPK V22S 9/02. Sposob formovanija [The molding process] 19.09.2014.
16. Doroshenko V. S. O poslojnom pechatanii peschanoj formy s differencirovannoj prochnost’ju [About printing layered sand mold with differentiated strength]. Litejnoe proizvodstvo – Foundry production, 2015, no. 4, pp. 19–25.
17.
Review
For citations:
Doroshenko V.S. 3D-TECLMOLOGIES IN FORMING AND FOUNDRY. Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY). 2015;(3):30-39. (In Russ.)