Q3304590 (Q3304590): Difference between revisions
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(Changed label, description and/or aliases in en: Setting new description) |
(Created claim: summary (P836): The aim of the study is theoretical and practical investigations into the technical and economic feasibility of an automated bonding and quality assurance process for a highly efficient synchronous drive concept with a long service life., translated_summary) |
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The aim of the study is theoretical and practical investigations into the technical and economic feasibility of an automated bonding and quality assurance process for a highly efficient synchronous drive concept with a long service life. (English) | |||||||||||||||
Property / summary: The aim of the study is theoretical and practical investigations into the technical and economic feasibility of an automated bonding and quality assurance process for a highly efficient synchronous drive concept with a long service life. (English) / rank | |||||||||||||||
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Property / summary: The aim of the study is theoretical and practical investigations into the technical and economic feasibility of an automated bonding and quality assurance process for a highly efficient synchronous drive concept with a long service life. (English) / qualifier | |||||||||||||||
point in time: 24 October 2021
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Revision as of 17:42, 24 October 2021
Project Q3304590 in Germany
Language | Label | Description | Also known as |
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English | No label defined |
Project Q3304590 in Germany |
Statements
145,285.6 Euro
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181,607.0 Euro
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80.0 percent
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29 September 2016
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30 September 2017
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Hanning Elektro-Werke GmbH & Co.KG
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17367 - Eggesin
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Ziel der Studie sind theoretische und praktische Untersuchungen zur technischen und wirtschaftlichen Machbarkeit eines automatisierten Kleb- und Qualitätsicherungsprozesses für ein hocheffizientes Synchronantriebskonzept mit hoher Lebensdauer. (German)
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The aim of the study is theoretical and practical investigations into the technical and economic feasibility of an automated bonding and quality assurance process for a highly efficient synchronous drive concept with a long service life. (English)
24 October 2021
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Identifiers
DE_TEMPORARY_7375
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