Design of prototype devices for producing metal microspheres and shells

M. A Petrov , N. V Kosachev , P. A Petrov , A. A Shejpak , Ju. L Bast

Izvestiya MGTU MAMI ›› 2013, Vol. 7 ›› Issue (2-2) : 233 -237.

PDF
Izvestiya MGTU MAMI ›› 2013, Vol. 7 ›› Issue (2-2) :233 -237. DOI: 10.17816/2074-0530-68257
Articles
research-article

Design of prototype devices for producing metal microspheres and shells

Author information +
History +
PDF

Abstract

Rapid prototyping technology implemented quite actively for all types and types of production. Its application reduces the influence of human factor on quality of a product but it also require the operator that knows this field and have some skills of handling machine. These technologies are also used to create models and visual functional prototypes, which can recreate the developed process and test the individual steps to prove its efficiency. The laboratory equipment that was made in Freiberg University of Mining and Technology allows to produce metal microspheres and shell (0,5 – 3 mm). Modernization of this equipment was proposed by creating a prototype of a mechatronic system that would show the requirements to the device and its capabilities. Creation of a device prototype is a transitional point from a laboratory layout to production equipment that works with high performance and repeatability. The device can operate under vacuum and inert gas that allows to work not only with model materials such as tin, zinc, alloy rose eutectic alloys based on bismuth and tin but also with structural materials, such as aluminum, magnesium and their alloys. Individual parts of the functional prototype was created by rapid prototyping technology (MJM, FDM and milling) of the polymers.

Keywords

additive manufacturing methods / rapid prototyping / metallurgical production methods / functional prototype / microspheres

Cite this article

Download citation ▾
M. A Petrov, N. V Kosachev, P. A Petrov, A. A Shejpak, Ju. L Bast. Design of prototype devices for producing metal microspheres and shells. Izvestiya MGTU MAMI, 2013, 7(2-2): 233-237 DOI:10.17816/2074-0530-68257

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Ю. Л. Баст, П. А. Петров, А. А. Шейпак, Современные методы получения полых металлических микросфер, Известия МГТУ «МАМИ», №2, том 2, 2012, стр. 144 – 150

[2]

М.А.Петров, Ю.Л. Баст, П.А. Петров, А.А. Шейпак, Разработка технологии получения полых металлических сфер и оболочек, Заготовительное производство в машиностроении, №8, 2013 (передана на рецензию)

[3]

Л. И. Седов, Методы подобия и размерности в механике, 8ое издание, Наука, Москва, 1977, с.

[4]

J. Pawlowski, Die Ähnlichkeitstheorie in der physikalisch-technischen Forschung, 1. Auflage, Springer-Verlag, 1971, S. 184

[5]

http://www.stratasys.com

[6]

http://www.3dsystems.com

[7]

http://www.polymerbranch.com

RIGHTS & PERMISSIONS

Petrov M.A., Kosachev N.V., Petrov P.A., Shejpak A.A., Bast J.L.

PDF

142

Accesses

0

Citation

Detail

Sections
Recommended

/