Tools and Materials Research Development Innovation Projects Contract

Tools and Materials Research Development Innovation Projects Contract
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Hybrid spindle: Process-dependent setting of the spindle dynamics to increase productivity in machining

Various storage concepts for the hybrid spindle were initially developed and implemented in
Examined within the framework of numerical simulations with regard to the thermo-elastic behavior. The storage temperatures and thermal
Induced bearing deformations are used to design the preload element. The prestressing force is applied by the prestressing element via spring forces. A deformation of the spindle bearings leads to a change in the deflection and thus to a change in the preload force. The
adaptive prestressing element is therefore designed so that the change in prestressing force as a result
thermally induced deformations can be compensated. In cooperation with representatives from the industry, a practical maximum nominal speed of
n = 20,000 rpm and a rated motor power Pn = 60 kW. Based on the performance and
Speed ​​requirements, the dimensioning and the technical implementation of the electromagnetic active part of the motor. The biasing element and the switchable Winding systems were integrated into a V100 – S20 milling spindle from NN GmbH.
The resulting hybrid spindle was then put into a machine tool of the type NN PFV-1 integrated and experimentally investigated at the IFW. The experimental investigations include the implementation of modal analyzes and machining tests.
The steps involved in designing and testing the hybrid spindle are described in more detail below
… more in German

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Gypsum Industry Research Development innovation update

Gypsum Industry Research Development innovation update

 

please feel free to update in comments below – and get promoted!

 

To find out more about current projects, please register here. Thank you.

 

older Projects:

Bauhaus 2019 Competition:
“We congratulate the winners and awardees on their great work and their success in the competition.

The recognition in the 2019 university competition was announced on November 14th. awarded at the Bauhaus University in Weimar. All award-winning works are documented in the competition catalog

https://www.gips.de/fileadmin/user_upload/Web_Wettbewerbskatalog_2019.pdf

Within the scope of the EPD, the totality of released volatile organic compounds and especially the formaldehyde emissions were examined and evaluated in the test chamber experiment. These substances are suspected of causing allergic and carcinogenic (carcinogenic) effects after prolonged exposure, as is typical for interior rooms in apartments. However, gypsum boards and their varieties (damp room, fire protection, perforated and dry screed boards) and gypsum fiber boards (also known as dry screed boards) do not have any of these negative effects on indoor air quality. The indoor emissions values measured and shown in the EPD meet all safety requirements according to the recognized test scheme of the Committee for the Health Assessment of Building Products (AgBB test scheme for interior emissions.
….

It is also important that steel companies in Germany can apply for and receive funding from the ETS Innovation Fund, which is intended to support the implementation and demonstration of low-carbon steel production. This includes that companies using this program can receive additional funding from other funding programs (“sequencing”). In the 9th EU framework program for research and innovation and the achievement of the “Clean Steel” partnership, Germany should at least participate in proportion to its share in EU steel production.”

 

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