Numerical and Experimental Study of Preforming Stage in Tube Hydroforming
Autor: | Henri Champliaud, Priti Wanjara, Javad Gholipour Baradari, Jean Savoie, Saeed Mojarad Farimani |
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Rok vydání: | 2014 |
Předmět: |
Process development
Rapid prototyping Finite element method Engineering business.product_category Tubes (components) Deformation (meteorology) Unattended sensors law.invention law Generic shapes General Materials Science Preforming Composite material Tube (container) Aerospace alloys Hydroforming Laser heating Numerical and experimental study Tube hydroforming business.industry Mechanical Engineering System of measurement Metallurgy Computer simulation Selective laser sintering Deformation measurements Mechanics of Materials Die (manufacturing) Stage (hydrology) Experiments business Preforming process |
Zdroj: | Key Engineering Materials. :1132-1138 |
ISSN: | 1662-9795 |
DOI: | 10.4028/www.scientific.net/kem.611-612.1132 |
Popis: | The preforming stage in hydroforming of an aerospace generic shape was investigated using a combination of experimentation and numerical modeling. The preform die was manufactured using a rapid prototyping method, namely the selective laser sintering (SLS) process. The preforming experiments were conducted on 0.9 mm and 1.2 mm thick stainless steel 321 (SS321) tubes. To evaluate the preforming process, an automated deformation measurement system, ARGUS®, was used to measure the 3-dimensional (3D) strains on the deformed tubes. Data collected from the experiments were used to validate the simulation of the preforming stage. The simulation and experimental results were found to be in good agreement, indicating that the preform model can be used as a starting point for simulating the tube hydroforming (THF) process. In addition, the SLS approach was found to be very promising, as it reduced greatly the lead time and cost of process development for THF. © 2014 Trans Tech Publications, Switzerland. 17th Conference of the European Scientific Association on Material Forming, ESAFORM 2014, 7 May 2014 through 9 May 2014, Espoo |
Databáze: | OpenAIRE |
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