Integration Tools for Design and Process Control of Filament Winding

Filament winding is a fabrication method for composite material structures, in which fibres are wound around a rotating mandrel. It is a versatile and dexterous process especially well-suited for creating and optimizing parts with a linear rotational axis. Products like pressure tanks, golf clubs or...

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Main Author: Skjærholt, Inger
Format: Others
Language:English
Published: Norges teknisk-naturvitenskapelige universitet, Institutt for produktutvikling og materialer 2012
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:no:ntnu:diva-18698
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spelling ndltd-UPSALLA1-oai-DiVA.org-ntnu-186982013-06-15T04:04:39ZIntegration Tools for Design and Process Control of Filament WindingengSkjærholt, IngerNorges teknisk-naturvitenskapelige universitet, Institutt for produktutvikling og materialerInstitutt for produktutvikling og materialer2012ntnudaim:7487MTPROD produktutvikling og produksjonProduktutvikling og materialerFilament winding is a fabrication method for composite material structures, in which fibres are wound around a rotating mandrel. It is a versatile and dexterous process especially well-suited for creating and optimizing parts with a linear rotational axis. Products like pressure tanks, golf clubs or violin bows are commonly created using this technique. The winding itself is done through software solutions that generate a CNC program for the part in question. There are several such software solutions commercially available, all with different modes of operation and functionalities. However, they are also proprietary and offer little to no access into their inner logic. To optimise a part before production Finite Element Analysis software is often used. The part in question is modelled; material, forces and constraints are applied; and an analysis is run. Currently (June 2012), there are few options available for analysing filament wound products. Modelling a part with accurate filament winding layup generally has to be done manually, in a very time-consuming process. In this thesis, the author has performed a pilot study into the development of filament winding software. Software has been developed, capable of integrating both with a filament winding machine and with Finite Element Analysis software, and operating as a link between the two. The software has functionalities to extract geometrical variables from an Abaqus mandrel model; to write G codes and create a CNC program file; simulate a filament winding process in the Abaqus viewport; and, using a CNC program file, add accurate and corresponding layup to an Abaqus part. The main goal of this thesis, however, has been to create something that will serve as a basis from which others can continue development. The intention being that the software will be open source, so that anyone and everyone using it may change, improve and add on to it. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:no:ntnu:diva-18698Local ntnudaim:7487application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic ntnudaim:7487
MTPROD produktutvikling og produksjon
Produktutvikling og materialer
spellingShingle ntnudaim:7487
MTPROD produktutvikling og produksjon
Produktutvikling og materialer
Skjærholt, Inger
Integration Tools for Design and Process Control of Filament Winding
description Filament winding is a fabrication method for composite material structures, in which fibres are wound around a rotating mandrel. It is a versatile and dexterous process especially well-suited for creating and optimizing parts with a linear rotational axis. Products like pressure tanks, golf clubs or violin bows are commonly created using this technique. The winding itself is done through software solutions that generate a CNC program for the part in question. There are several such software solutions commercially available, all with different modes of operation and functionalities. However, they are also proprietary and offer little to no access into their inner logic. To optimise a part before production Finite Element Analysis software is often used. The part in question is modelled; material, forces and constraints are applied; and an analysis is run. Currently (June 2012), there are few options available for analysing filament wound products. Modelling a part with accurate filament winding layup generally has to be done manually, in a very time-consuming process. In this thesis, the author has performed a pilot study into the development of filament winding software. Software has been developed, capable of integrating both with a filament winding machine and with Finite Element Analysis software, and operating as a link between the two. The software has functionalities to extract geometrical variables from an Abaqus mandrel model; to write G codes and create a CNC program file; simulate a filament winding process in the Abaqus viewport; and, using a CNC program file, add accurate and corresponding layup to an Abaqus part. The main goal of this thesis, however, has been to create something that will serve as a basis from which others can continue development. The intention being that the software will be open source, so that anyone and everyone using it may change, improve and add on to it.
author Skjærholt, Inger
author_facet Skjærholt, Inger
author_sort Skjærholt, Inger
title Integration Tools for Design and Process Control of Filament Winding
title_short Integration Tools for Design and Process Control of Filament Winding
title_full Integration Tools for Design and Process Control of Filament Winding
title_fullStr Integration Tools for Design and Process Control of Filament Winding
title_full_unstemmed Integration Tools for Design and Process Control of Filament Winding
title_sort integration tools for design and process control of filament winding
publisher Norges teknisk-naturvitenskapelige universitet, Institutt for produktutvikling og materialer
publishDate 2012
url http://urn.kb.se/resolve?urn=urn:nbn:no:ntnu:diva-18698
work_keys_str_mv AT skjærholtinger integrationtoolsfordesignandprocesscontroloffilamentwinding
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