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Additive manufacturing (AM) is based on the “layer-by-layer” production principle, where the material is added in thin layers, unlike in the traditional production technologies, when the material is removed (subtractive manufacturing) or deformed (forming manufacturing). In order to use the capacity that AM technologies provide in the process of product development, it is necessary to know the design rules for AM, which include primarily new possibilities, but also specific limitat…</description>
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        <description>A_MADAM project

This page pays tribute to the A_MADAM project and Horizon 2020 program for funding the development of this open public digital repository that presents information to wide circle of mechanical designers and students, thus representing an example of the Open Science and Open Access concepts.</description>
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        <description>Contributors

We are looking for collaborators with expertise in AM design!

The Editor

	*  Prof. Snežana Ćirić-Kostić &lt;cirickostic.s@mfkv.kg.ac.rs&gt;

Authors (in alphabetical order)

	*  Bogojević, Nebojša &lt;bogojevic.n@mfkv.kg.ac.rs&gt;, associate professor of University of Kragujevac /Serbia/, General design requirements and guidelines for SLS and DMLS/SLM technologies</description>
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        <description>Recommended

The most important and innovative part of this website are the design rules for optimal dynamic properties of AM products that are results of the A_MADAM project:

	*  Fatigue design rules for DMLS/SLM steel materials
		*  MS1 steel
		*  PH1 steel
		*  CX steel

	*  Fracture resistance of SLS materials
	*  Fracture resistance of MJF

----------

Next: A_MADAM project</description>
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