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For more information, please go to the DMRC Download section:
https://dmrc.uni-paderborn.de/content/downloads/
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Lattice structure tensile specimen manufactured with laser melting (LM) process out of the material H13. Show image information
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Partner of the DMRC Show image information
Quality control during a Laser Sinter (LS) build job by a researcher of the DMRC Show image information
Fused Deposition Modeling (FDM) process during the manufacture of an Ultem 9085 part Show image information
Additive manufactured reaction wheel bracket for telecomunication satellites Show image information
Employees of the DMRC working with the "freeformer" from Arburg Show image information
Powder particles are used as raw material for laser-based additive manufacturing Show image information

For more information, please go to the DMRC Download section: https://dmrc.uni-paderborn.de/content/downloads/

Lattice structure tensile specimen manufactured with laser melting (LM) process out of the material H13.

Partner of the DMRC

Quality control during a Laser Sinter (LS) build job by a researcher of the DMRC

Fused Deposition Modeling (FDM) process during the manufacture of an Ultem 9085 part

Additive manufactured reaction wheel bracket for telecomunication satellites

Employees of the DMRC working with the "freeformer" from Arburg

Powder particles are used as raw material for laser-based additive manufacturing

Downloads

Find out more about Additive Manufacturing (AM) by reading the future studies, watching process-specific movies or by rebuilding some 3D models which are designed for Laser Sintering (LS).

DMRC - Corvid-19 - Faceshield

The DMRC became active in times of Covid-19 and helps in our region with additive manufactured personal protective equipment. Therefore, we have joined forces with the medical device manufacturer Condor MedTec and several hospitals in and near Paderborn to define the requirements for face protection.

Based on the gathered requirements, our employee Christian Schumacher with the support of Helge Klippstein, created a faceshield design for the laser sintering process. In addition to the demands on functionality, our design takes into account the advantages and conditions of additive manufacturing in laser sintering. Thus, our design takes advantage of the design possibilities and integrates various functions. At the same time, process-related influences are considered in order to be able to produce a high number of parts in a reliable and cost-effective way. As multiple requirements have to be considered when preparing the build job, we provide you with a build job for an EOS_P3XX system in addition to the STL file. The prepared build job contains 136 masks and 138 headbands on a height of 353 mm and runs stable on both DMRC P395 and P396 machines.

Here you will find a short technical description.

Here you will find the STL-Files and the correct packed build job.

Studies

Thinking ahead the Future of Additive Manufacturing

There are currently five future studies available from the Heinz Nixdorf Institute (HNI) and Direct Manufacturing Research Center (DMRC):

Movies

Watch some of the these movies to get some impressions about the work of the DMRC:

STL files

These DMRC catapults were designed during a project seminar for students at the University of Paderborn. The aim was to learn how to use additive manufacturing technologies and understand how they work. The results are two catapults with integrated elements and functions:

Machine flyer

Get a closer look into the additive manufacturing processes which are available at the DMRC:

Service Offers

The DMRC gladly announces three new service offers for interested companies: Potential Identification, Product Finding and Business Planning.

Potential Identification

Product Finding

Business Planning

Annual Report 2018/2019

Download the DMRC Annual Report 2018/2019

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