Download High Performance Thermoplastics and Composites for Oil and by Smithers Rapra Technology PDF

By Smithers Rapra Technology

ISmithers' brings the 1st excessive functionality Thermoplastics and Composites for Oil & gasoline functions convention to Houston to focus on the continued examine, improvement and qualification of fabrics to permit the to maneuver ahead into the hugely tough environments being encountered this present day and reply to new demanding situations that may exist sooner or later. adapted to the categorical wishes of the oil and gasoline undefined, the convention will offer a discussion board for audio system to show off, and delegates to profit approximately new fabrics and processing applied sciences that may enhance present program functionality and open the door to enhance or exchange present fabric decisions.

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The control (before aging). Figure 3: Long-term (24 months) chemical resistance testing results for Fortron PPS FX4382T1 In addition, yield stress tests with other polymers at different temperatures show that both polyvinylidene fluoride (PVDF) and Fortron FX4382T1 exhibit good performance from minus 30 degrees Celsius to 120 degrees Celsius, while nylon 11 and high-density polyethylene (HDPE) properties deteriorate at higher temperature (Figure 4). 16,000 PA11 14,000 PVDF HDPE Yield Stress, psi 12,000 Fortron® FX 10,000 8,000 6,000 4,000 2,000 0 -30°C (-22°F) 23°C (73°F) 120°C (250°F) Figure 4: Mechanical properties (Yield Stress) of Fortron PPS FX4382T1 and other polymers Paper 5 - Gadkari Page 4 of 14 pages High Performance Thermoplastics & Composites for Oil & Gas Applications 2011 11-12 October 2011 - Houston, USA In a heat aging study, where an important mechanical property — tensile elongation at break — is measured after aging at various temperatures for extended hours, the recommended use temperature for Fortron PPS FX4382T1 can be as high as 150 degrees Celsius to 160 degrees Celsius (Figure 5).

Recently, he has also helped initiate the Advancing Performance Polymers in Energy AppLications (APPEAL) Consortium at Texas A&M and is currently co-director. He has been a visiting associate professor at INSA (Lyon, France), and the Hong Kong University of Science and Technology and served as visiting professor at the City University of Hong Kong in the summer of 2001 and Kyoto Institute of Technology (Kyoto, Japan) in 2008. Prof. Sue has been the director of the PTC for over 7 years, and since 1995 has been a Full Professor at the Department of Mechanical Engineering and the Materials Science and Engineering Program at Texas A&M University.

Macromolecular Chemistry and Physics. 1998;199(8):1623-9. [13] Zolotukhin MG, Rueda DR, Balta Calleja FJ, Cagiao ME, Bruix M, Sedova EA, et al. Aromatic polymers obtained by precipitation polycondensation: 4. Synthesis of poly (ether ketone ketone)s. Polymer. 1997;38(6):1471-6. [14] Rueda DR, Gutierrez MCG, Ania F, Zolotukhin MG, Calleja FJB. Crystallization kinetics and polymorphism in aromatic polyketones (PEKEKK) with different molecular weight. Macromolecules. 1998;31(23):8201-8. [15] Van Gurp M, Palmen J.

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