Modificação do LLDPE através de silanos viabilizando a aplicação em camadas plásticas de linhas flexíveis / Study of silane grafting reactions of low density polyethylene for pipe applications

AUTOR(ES)
DATA DE PUBLICAÇÃO

2009

RESUMO

The flexible lines are flexible structures manufactured through plastic and steel layers that allows its use in order to permit fluid flow in exploration and production of hydrocarbon between offshore oil units and sea bed and/or coast. Nowadays these pipes are one of the main ways to permit the exploration of hydrocarbon in deepwater. The present study aims to analyze the LLDPE (Low Density Polyethylene) chemical changing through a reactive extrusion process involving VTMS grafting in presence of organic peroxides. After a crosslinking due to water, an analysis will be carried out in order to assess the PEX (crosslinked polyethylene) application in flexible pipe structures. The crosslinking effect at thermal and mechanical properties will also be studied. An experimental planning was carried out in order to evaluate the effect of variable variations such as the rotational velocity of the single-screw extruder, type and concentration of peroxides at melt flow index of the products originated from the LLDPE-peroxides (DCP and Trigonox 101) reaction, and in order to analyze the silane concentration effect, rotational velocity and immersion procedure at melt flow index in products with LLDPE and contents with DCP variable concentrations of silane. The samples were characterized through tests such as MFI (Melt Flow Index), gel content determination, tensile testing and thermal analyses, DSC (Differential Scanning Calorimetry) and TGA (Thermal Gravimetric Analysis). The Fourier Transformed Infrared Spectroscopy (FTIR) was also used to characterize the samples. The samples content 0,07% of DCP and 1,0 and 1,5% of silane, respectively, showed considerable value for gel contents in both rotational velocities (10 and 50rpm). The sample with 0,07% of DCP and 1,5% of silane, at 10rpm, a value of 74,77% of gel content could be noticed. The thermal analyses carried out showed that an increase of thermal stability for the polymer due to crosslinking generation happened. After tensile testing, a considerable changing in mechanical proprieties of the changed LLDPE was not seen due to the specimens heterogeneity. However through FTIR, silane linking was noticed demonstrating the LLDPE reticulation.

ASSUNTO(S)

linhas flexíveis lldpe engenharia de materiais e metalurgica polietileno graftização polyethylene crosslinking hydrocarbons - transport petroleum - piping silane lldpe silano petroleum engineering processo de extrusão peróxido flexible lines peroxide grafting petróleo tubulações extrusion process ligações cruzadas engenharia do petróleo hidrocarbonetos transporte

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