Q3304797 (Q3304797): Difference between revisions

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(‎Changed label, description and/or aliases in en: Setting new description)
(‎Created claim: summary (P836): Material and process development for efficient, weight- and size-reduced electric motors based on polymer-bound magnets. A magnetic-field-oriented molding process for magnets that can be injected directly into the rotor is developed., translated_summary)
Property / summary
 
Material and process development for efficient, weight- and size-reduced electric motors based on polymer-bound magnets. A magnetic-field-oriented molding process for magnets that can be injected directly into the rotor is developed. (English)
Property / summary: Material and process development for efficient, weight- and size-reduced electric motors based on polymer-bound magnets. A magnetic-field-oriented molding process for magnets that can be injected directly into the rotor is developed. (English) / rank
 
Normal rank
Property / summary: Material and process development for efficient, weight- and size-reduced electric motors based on polymer-bound magnets. A magnetic-field-oriented molding process for magnets that can be injected directly into the rotor is developed. (English) / qualifier
 
point in time: 24 October 2021
Timestamp+2021-10-24T00:00:00Z
Timezone+00:00
CalendarGregorian
Precision1 day
Before0
After0

Revision as of 17:47, 24 October 2021

Project Q3304797 in Germany
Language Label Description Also known as
English
No label defined
Project Q3304797 in Germany

    Statements

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    319,735.2 Euro
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    399,669.0 Euro
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    80.0 percent
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    30 January 2017
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    31 January 2019
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    Veekim AG
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    23966 - Wismar
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    Material- und Verfahrensentwicklung für effiziente, gewichts- und größenreduzierte Elektromotoren auf Basis polymergebundener Magnete. Ein im Magnetfeld orientiertes Formgebungsverfahren für direkt in den Rotor eingespritzbare Magnete wird entwickelt. (German)
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    Material and process development for efficient, weight- and size-reduced electric motors based on polymer-bound magnets. A magnetic-field-oriented molding process for magnets that can be injected directly into the rotor is developed. (English)
    24 October 2021
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    Identifiers

    DE_TEMPORARY_7582
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