Polymeric foams: innovations in processes, technologies, and - download pdf or read online

By Shau-Tarng Lee

ISBN-10: 1498738877

ISBN-13: 9781498738873

ISBN-10: 4732204406

ISBN-13: 9784732204400

Polymeric foams are reliable but light-weight fabrics with functions throughout a number of industries, from packaging to aerospace. As call for for those fabrics elevate, so does innovation within the improvement of recent procedures and items. This e-book captures the main dynamic advances in tactics, applied sciences, and items on the topic of the polymeric foam industry. It describes the most recent company developments together with new microcellular commercialization, sustainable foam items, and nanofoams. It additionally discusses novel techniques, new and environmentally pleasant blowing brokers, and the improvement and utilization of assorted different types of foams, together with bead and polycarbonate, polypropylene, polyetherimide microcellular, and nanocellular. The ebook additionally covers flame-retardant foams, inflexible foam composites, and foam sandwich composites and info functions in structural engineering, electronics, and insulation. Authored by way of best specialists within the box, this booklet minimizes the distance among study and alertness during this very important and growing to be area.

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Extra info for Polymeric foams: innovations in processes, technologies, and products

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Alternative Fluorocarbons Environmental Acceptability Study (AFEAS). 1998. Production, Sales and Atmospheric Release of Fluorocarbons through 1996. C. 4. J. A. Creazzo, M. J. Nappa, A. C. Sievert, and E. N. Swearingen. 2014. Blowing agents for forming foam comprising unsaturated fluorocarbons. US Patent: 8,633,339, Jan. 5. B. B. Chen, M. Y. Elsheikh, P. Bonnet, B. L. Van Horn, and J. S. Costa. 2012. Blowing agent composition of hydrochlorofluoroolefin. US Patent: 8,314,159, Nov. 6. J. E. Martini-Vvedensky, N.

3 shows the foam expansion during the mold opening process. One of the main challenges to press mold foaming is the relatively long saturation time, usually tens of minutes to even several hours, depending on the thickness of the PP board, which significantly restricts the production efficiency. Aside from increasing the diffusion rate by optimizing the processing parameters, shortening the diffusion route is a direct way to decrease saturation time. Generating a line of holes at the core of the PP motherboard is proposed during the continuous extrusion process [40].

T. Lee, and R. Pantani. 2015. Foaming technologies for thermoplastics. Ch. 11 of Biofoams, ed. by S. Iannace and C. B. Park, pub. by CRC Press, New York, pp. 287–314. 28. J. A. Rinde. 1978. Method of making a cellulose acetate low density microcellular foam. US Patent: 4,118,449, Oct. 29. H. Mori, M. Yoshida, M. Matsui, and M. Nakanishi. 2001. Biodegradable cellulose acetate foam and process for its production. US Patent: 6,221,924, Apr. 30. H. G. Franke and D. R. Bittner. 2001. Sorghum meal-based biodegradable formulations, shaped products made therefrom, and methods of making said shaped products.

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Polymeric foams: innovations in processes, technologies, and products by Shau-Tarng Lee


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