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  4. Manufacturing of multi-functional micro parts by two-component metal injection moulding
 
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2007
Journal Article
Title

Manufacturing of multi-functional micro parts by two-component metal injection moulding

Abstract
Several metals and alloys can be used to enhance the mechanical and physical properties of micro parts and components for micromechanical, micro-chemical or sensor applications. Such parts can be produced in series by the powder metallurgical process of micro metal injection moulding (my-MIM). This paper describes a novel manufacturing route for metallic multi-material micro components, two-component micro metal injection moulding (2C- my-MIM). Similar to 'two-colour' injection moulding of plastics, the process allows the integration of multiple functions in a micro part by simultaneously injecting and joining two materials in one mould. Net-shape parts with solid material interfaces are obtained. In this paper, the 2C-my-MIM process is exemplified for the combination of a non-magnetic and a ferromagnetic stainless steel (316 L and 17-4PH). It is shown that intact material interfaces of less than 500 x 500 micrometres(exp 2) can be achieved by careful selection and tailoring of metal powders, injection moulding and co-sintering parameters. Entnommen aus <a_href="http://www.fiz-technik.de/db/b_tema.htm" target="_blank">TEMA</a>
Author(s)
Imgrund, P.
Rota, A.
Petzoldt, F.
Simchi, A.
Journal
The International Journal of Advanced Manufacturing Technology  
DOI
10.1007/s00170-006-0666-4
Language
English
Fraunhofer-Institut für Fertigungstechnik und Angewandte Materialforschung IFAM  
Keyword(s)
  • Mikrobearbeitung

  • Pulvermetallurgie

  • Sintermetall

  • nichtrostender Stahl

  • Metallspritzgießen

  • Mikrofertigung

  • Verfahrensparameter

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