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        <title>&lt;b&gt;D4AM Wiki&lt;/b&gt;&lt;br&gt;Open repository of &lt;br&gt;design rules for AM 2.dr</title>
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        <title><b>D4AM Wiki</b><br>Open repository of <br>design rules for AM</title>
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        <description>Design for additive manufacturing (DfAM)

DfAM is a strategy that challenges industrial and mechanical designers to transcend the existing design paradigms, which guide and constrain designers when they design for traditional manufacturing technologies. Sometimes DfAM only involves redesign of existing parts for additive manufacturing (AM), for example, to reduce the mass or to consolidate several parts into one. However, one should not stop there, and should think in the direction of changing t…</description>
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        <description>General rules of DfAM

The design for AM brings radical changes compared to the design for traditional technologies. Although it removes many of the limitations that apply to traditional manufacturing technologies, AM also introduces some new limitations. Design rules for AM can be divided into:</description>
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        <description>Process-specific design rules

The classification of the technologies used in D4AM Wiki follows the recommendations of the American Society for Testing and Materials (ASTM)  group Committee F42 on Additive Manufacturing Technologies and the Subcommittee F42.05 Materials and Processes and the terminology expressed in the ISO/ASTM 52900:2015 standard, which divide all AM processes in seven families:

	*  Powder Bed Fusion (PBF) technologies 
	*  Direct Energy Deposition (DED) technologies
	*  Mate…</description>
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        <description>Powder Bed Fusion (PBF) technologies

The following table lists the PBF technologies, classified according to the type of materials they process and the fusion heat source.
  Material type    Technology    Fusion heat source    Polymers    Multi Jet Fusion (MJF)</description>
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        <description>PBF of polymer parts

The PBF technologies of plastic products are based on polyamide PA12 powder and mixtures that have PA12 as its main component. PA12 is biocompatible material with high mechanical and thermal resistance. There are two PBF technologies for polymer parts, which differ by the method that is used for selection of the powder bed areas where the powder will be melted, and the source of heating energy, and these are:</description>
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        <description>SLS technology

Selective Laser Sintering (SLS) technology uses laser beam as the heat source for melting of polymer powder, mainly different mixtures with the polyamide PA 12 as the primary component. The laser usually operates in near infrared range (with wavelength up to 10 μm), and the laser beam motion, which exposes selected areas of the powder bed to heating, as controlled by an optical system containing of mirrors and lenses.</description>
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        <description>MJF technology

Multi Jet Fusion (MJF) technology infrared lamp as the heat source for melting of polymer powder, which is, as it is the case with the SLS technology, based on the polyamide PA 12 as the primary component. The lamp exposes to radiation the whole surface of the powder bed, and the selective heating and melting is provided by selective absorption of the radiation due to previous selective deposition of both heat-absorbing and heat-deflecting (called “fusion and “detailing”) agents …</description>
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        <description>PBF of metal parts

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        <description>DMLS/SLM technology

Direct Metal Laser Sintering (DMLS), also called Selective Laser Melting (SLM) technology, uses a laser beam as the heat source for melting of metal powders. The laser usually operates in near infrared or visible range, and the laser beam motion, which exposes selected areas of the powder bed to heating, is controlled by an optical system containing of mirrors and lenses.</description>
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        <description>EBM technology

This page contains only the description of its future contents!

This page will present the design rules specific for the Electron Beam Melting (EBM) technology. Although it belongs to the PBF technologies, the A_MADAM project team members do not have expertise in the technology, and we are inviting the potential authors to develop a complete section (that would start with this page) about the design rules specific for the Electron Beam Melting (EBM) technology.</description>
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        <title>2.dr:2.3.2.ded</title>
        <link>http://mfkv.kg.ac.rs/d4am/doku.php?id=2.dr:2.3.2.ded&amp;rev=1641753939&amp;do=diff</link>
        <description>Direct Energy Deposition (DED) technologies

We are looking for collaborators

with expertise in DED technologies!

This page will present the design rules specific for the Directed Energy Deposition (DED) technologies; since the A_MADAM project team members do not have expertise in the technology, and we are inviting the potential authors to develop a complete section (that would start with this page) about the design rules specific for the DED technologies.</description>
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        <description>Material Extrusion (ME) technologies

We are looking for collaborators

with expertise in

Material extrusion technologies!

This page will present the design rules specific for the material extrusion technologies, such as Fused Deposition Modelling (FDM) technologies; one of the partners from the A_MADAM project team (</description>
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        <dc:format>text/html</dc:format>
        <dc:date>2022-01-09T18:48:28+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>2.dr:2.3.4.binder_jetting</title>
        <link>http://mfkv.kg.ac.rs/d4am/doku.php?id=2.dr:2.3.4.binder_jetting&amp;rev=1641754108&amp;do=diff</link>
        <description>Binder Jetting (BJ) technologies

We are looking for collaborators

with expertise in

Binder jetting technologies!

This page will present the design rules specific for the binder jetting technologies, such as 3D printing (3DP) technology; although one of the partners from the A_MADAM project team (</description>
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        <link>http://mfkv.kg.ac.rs/d4am/doku.php?id=2.dr:2.3.5.material_jetting&amp;rev=1641754146&amp;do=diff</link>
        <description>Material Jetting (MJ) technologies

We are looking for collaborators

with expertise in 

Material jetting technologies!

This page will present the design rules specific for the Material jetting technologies, such as 3D printing (3DP) technology; although one of the partners from the A_MADAM project team (</description>
    </item>
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        <dc:date>2022-01-09T18:50:12+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>2.dr:2.3.6.7.sheet_lamination</title>
        <link>http://mfkv.kg.ac.rs/d4am/doku.php?id=2.dr:2.3.6.7.sheet_lamination&amp;rev=1641754212&amp;do=diff</link>
        <description>Sheet Lamination (SL) technologies

We are looking for collaborators

with expertise in

Sheet lamination technologies!

This page will present the design rules specific for the Sheet lamination technologies, such as Laminated object manufacturing (LOM); since the A_MADAM project team members do not have expertise in the technology, we are inviting  specialists in design for LOM to develop a complete section (that would start with this page) about the design rules specific for the Sheet laminati…</description>
    </item>
    <item rdf:about="http://mfkv.kg.ac.rs/d4am/doku.php?id=2.dr:2.3.6.photopolymerization&amp;rev=1641754183&amp;do=diff">
        <dc:format>text/html</dc:format>
        <dc:date>2022-01-09T18:49:43+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>2.dr:2.3.6.photopolymerization</title>
        <link>http://mfkv.kg.ac.rs/d4am/doku.php?id=2.dr:2.3.6.photopolymerization&amp;rev=1641754183&amp;do=diff</link>
        <description>VAT Photopolymerization (VAT P) technologies

We are looking for collaborators

with expertise in 

Photopolymerization technologies!

This page will present the design rules specific for the photopolymerization technologies, such as Stereolithography (SLA); while some of the SMEs from the A_MADAM project team (</description>
    </item>
</rdf:RDF>
