Title: Design of heating equipment for moulding organic polymer-based composites
Authors: Jeníček, Štěpán
Kotěšovec, Vratislav
Kalina, Tomáš
Opatová, Kateřina
Citation: JENÍČEK, Š., KOTĚŠOVEC, V., KALINA, T., OPATOVÁ, K. Design of heating equipment for moulding organic polymer-based composites. In: Annals of DAAAM and Proceedings of the International DAAAM Symposium. Vídeň, Rakousko: DAAAM International Vienna, 2018. s. 273-278. ISBN 978-3-902734-20-4 , ISSN 1726-9679.
Issue Date: 2018
Publisher: DAAAM International Vienna
Document type: konferenční příspěvek
conferenceObject
URI: 2-s2.0-85060094994
http://hdl.handle.net/11025/31130
ISBN: 978-3-902734-20-4
ISSN: 1726-9679
Keywords in different language: heating;composite material;matrix;LabVIEW
Abstract in different language: Polymer composites are materials whose importance and scope of applications are growing continuously. Where permitted by the service conditions, conventional materials tend to be substituted with composites. Another common trend seen today is to minimize or eliminate adverse impacts of manufacturing on the environment. It has led to a wider adoption of recyclable filler materials for composites. Unfortunately, their composition is not always consistent, which often has an adverse impact on the moulding process and the resultant mechanical properties. In order to understand this impact, heating equipment for moulding organic polymer-based composite materials was proposed and designed. In this design, the construction, electronic equipment and process control aspects had to be considered. Since its control unit should operate in real time, the NI myRIO-1900 device was chosen. The software control was programmed in the LabVIEW environment. The reason for choosing this configuration was that its control loop was able to be adjusted and fine-tuned. NI myRIO-1900 supports access to a data network and communication with additional laboratory devices.
Rights: © DAAAM International Vienna
Appears in Collections:Konferenční příspěvky / Conference Papers (RTI)
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Please use this identifier to cite or link to this item: http://hdl.handle.net/11025/31130

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