CFK-Strukturen in der automobilen Serienfertigung

Publikation: Bidrag til tidsskriftTidsskriftartikelForskning

Resumé

Lightweight constructions are a continuously increasing trend in the automotive industry. Main drivers for that trend are the challenging emission reduction targets regarding combustion engines and increasing ranges in electric mobility. This article presents different composite production methods and discusses their ability within mass production giving also an example within the automotive production.
OriginalsprogTysk
TidsskriftLightweightdesign
Vol/bind10
Udgave nummer4
Sider (fra-til)52-57
ISSN1865-4819
StatusUdgivet - 22 aug. 2017

Fingeraftryk

Carbon
Composite materials
Automotive industry
Engines

Citer dette

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title = "CFK-Strukturen in der automobilen Serienfertigung",
abstract = "Lightweight constructions are a continuously increasing trend in the automotive industry. Main drivers for that trend are the challenging emission reduction targets regarding combustion engines and increasing ranges in electric mobility. This article presents different composite production methods and discusses their ability within mass production giving also an example within the automotive production.",
keywords = "Carbon Composites, Manufacturing",
author = "Julia Pahl and Raphael Geiger",
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CFK-Strukturen in der automobilen Serienfertigung. / Pahl, Julia; Geiger, Raphael.

I: Lightweightdesign, Bind 10, Nr. 4, 22.08.2017, s. 52-57.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskning

TY - JOUR

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AU - Pahl, Julia

AU - Geiger, Raphael

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Y1 - 2017/8/22

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AB - Lightweight constructions are a continuously increasing trend in the automotive industry. Main drivers for that trend are the challenging emission reduction targets regarding combustion engines and increasing ranges in electric mobility. This article presents different composite production methods and discusses their ability within mass production giving also an example within the automotive production.

KW - Carbon Composites

KW - Manufacturing

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JO - Lightweightdesign

JF - Lightweightdesign

SN - 1865-4819

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