Academic literature on the topic 'Polymerblends'

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Journal articles on the topic "Polymerblends"

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Klotz, S., H. Gräter, and H. J. Cantow. "Mischbarkeit und Phasenverhalten von Polymerblends." Berichte der Bunsengesellschaft für physikalische Chemie 89, no. 11 (November 1985): 1239–44. http://dx.doi.org/10.1002/bbpc.19850891124.

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Rätzsch, M., G. Haudel, and J. Pionteck. "Neue Polymerblends durch reaktive Compoundierung." Chemie Ingenieur Technik 63, no. 3 (March 1991): 272–73. http://dx.doi.org/10.1002/cite.330630326.

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Mours, M., M. Laun, F. Oosterlinck, I. Vinckier, and P. Moldenaers. "Morphologieentwicklung von Polymerblends in prozessrelevanten Strömungsfeldern." Chemie Ingenieur Technik 74, no. 7 (July 2002): 966–72. http://dx.doi.org/10.1002/1522-2640(200207)74:7<966::aid-cite966>3.0.co;2-0.

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Becker, H. G., and G. Schmidt-Naake. "Verträglichkeitsvermittlung in Polymerblends aus ABS und Polycarbonat." Chemie Ingenieur Technik 75, no. 7 (July 4, 2003): 900–905. http://dx.doi.org/10.1002/cite.200303216.

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H., Nahida J. "Study of starch, sugar blending effect on the biodegradability of (PVA) for packaging applications." Iraqi Journal of Physics (IJP) 15, no. 32 (January 11, 2019): 43–56. http://dx.doi.org/10.30723/ijp.v15i32.155.

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PVA, Starch/PVA, and Starch/PVA/sugar samples of differentconcentrations (10, 20, 30 and 40 % wt/wt) were prepared by castingmethod. DSC analysis was carried; the results showed only one glasstransition temperature (Tg) for the samples involved, which suggestthat starch/PVA and starch/PVA/sugar blends are miscible. Themiscibility is attributed to the hydrogen bonds between PVA andstarch. This is in a good agreement with (FTIR) results. Tg and Tmdecrease with starch and sugar content compared with that for(PVA). Systematic decrease in ultimate strength, due to starch andsugar ratio increase, is attributed to (PVA), which has more hydroxylgroups that made its ultimate strength higher than that forstarch/PVA, and starch/PVA/sugar blends. It is observed from wateruptake tests that the solubility time decreases with starch ratio; it isattributed to decrease in hydroxyl groups caused by PVA ratiodecrease. The inter- and inter-molecular bonds of the hydroxylgroups enhanced the solubility process of the starch/PVA blends inwater. The water immersion causes hydrogen bonds (inter andintermolecular bonds) to decompose, that increases the filmsolubility. Water absorption and capacity of degradability are mostimportant in biodegradable materials. The results suggest the samplesthat have undergone investigation, can be used for shopping, andfood packaging.The study of soil burial for the sample at (3cm) depth, and at (13cm)depth has exhibited weight loss increase with soil burial time. Thebiodegradability rapidly increases at the first (6-7) weeks; it is foundthat the weight loss at (3cm) depth is greater than that at (13cm) thatwas attributed to the differences in the availability of oxygen ratio. Itis found that PVA undergoes lowest weight loss, the weight losschanges with starch, and sugar content. In dry soil, the weight loss islower. The results proved that the biodegradation decreases with soilburial time after seven weeks of burial. It is concluded that thesamples involved are biodegradable material that can be used forpackaging applications and biologically friendly synthetic polymerblends to solve the solid waste accumulation problem.
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Pfennig, Anja, Roland Heiler, and Sebastian Noller. "Kunststoffe stanzen ohne Grat- und Flusenbildung." VDI-Z 163, no. 03 (2021): 51–54. http://dx.doi.org/10.37544/0042-1766-2021-03-51.

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Beim Stanzen von Verdrahtungskanälen aus Polymerblend PC/ABS treten Grate und Flusen auf. Diese machen einen zusätzlichen, teuren Arbeitsschritt zur Entgratung nötig. Die Methode DoE (Design of Experiments) zur Prozessoptimierung stellt Zusammenhänge zwischen den Eingangsgrößen (Faktoren) und den Ausgangsgrößen (Qualitätsmerkmale) dar. Durch Optimierung der mathematischen Modelle zeigt sich der Schneidspalt als entscheidende Größe.
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Radusch, H. J., and R. Androsch. "Die kristallisation von polybutylenterephthalat (PBT) und polycarbonat (PC) im polymerblend PBT/PC." Angewandte Makromolekulare Chemie 214, no. 1 (January 1994): 179–96. http://dx.doi.org/10.1002/apmc.1994.052140116.

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Abd El-Hady, Abeer, and Hassan A. Abd El-Rehim. "Production of Prednisolone byPseudomonas oleovoransCells Incorporated Into PVP/PEO Radiation Crosslinked Hydrogels." Journal of Biomedicine and Biotechnology 2004, no. 4 (2004): 219–26. http://dx.doi.org/10.1155/s1110724304308053.

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In order to rise the yield of prednisolone from hydrocortisone, thePseudomonas oleovoranscells were entrapped into radiation crosslinked poly(vinyl pyrrolidone)/poly(ethylene oxide)(PVP/PEO) hydrogel of different gel contents. The factors affecting the gel content and swelling behavior of the polymeric gel, such aspolymercomposition,polymerblend concentration, and irradiation doses, were investigated. The formation of gels having a good strength with the ability to retain a desirable amount of water in their three-dimensional network can be achieved by using PVP/PEO copolymer of composition(90:10)and concentration of 15% prepared at 20 kGy irradiation dose. At these conditions the prepared hydrogel is considered the most favorable one that gave the highest hydrocortisone bioconversion and prednisolone yield, 81% and 62.8%, respectively. The improvement of prednisolone yield was also achieved by increasing substrate concentration. Maximum hydrocortisone bioconversion (86.44) was obtained at 18 hours by using substrate concentration of 30 mg. Reusability of immobilizedPseudomonas oleovoransentrapped into PVP/PEO copolymer hydrogel was studied. The results indicated that the transformation capacity of hydrocortisone to prednisolone highly increased by the repeated use of copolymer for 4 times. This was accompanied by an increase in prednisolone yield to 89% and the bioconversion of hydrocortisone was 98.8%.
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Salih, Sihama I. "DEVELOPMENT DESIRED PROPERTIES OF POLYSTYRENE NANO COMPOSITES BY ADDING POLYMERIC MODIFIERS." IRAQI JOURNAL FOR MECHANICAL AND MATERIALS ENGINEERING 19, no. 2 (May 26, 2019): 207–23. http://dx.doi.org/10.32852/iqjfmme.v19i2.319.

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The introduction of polymeric blend-based nanomaterials has encouraged the developmentof flexible nanocomposites for structural applications in need of superior mechanical,performance. In current research, three groups of polystyrene blend-based nanocompositessamples were fabricated by melting technique using a twin-screw extruder. These samplesconsist of polymer blend (polystyrene (PS): 1% copolymer (polystyrene (PS)-co- maleicanhydride (MA)): 3%ABS) as a matrix material, was strengthen by three different type ofpowders in nanometer size (silica (SiO2), cement kiln dust (CKD) and Fly ash (FA))individually, with selected weight ratio (0, 0.2, 0.4, 0.6 & 0.8 wt. %) for each of them.Experimental investigation was carried out for tensile properties and fatigue strength besidesFTIR test and morphology analyzing of fracture surfaces by SEM. The results showed thattensile strength values and modulus of elasticity increased as the nanoparticle content incomposite increased, but according to specific percentages of nanoparticle content in thecomposites samples, for three groups of the prepared nanocomposites samples. Moreover,the fatigue test revealed the super-improvement in the fatigue properties of the selectedhybrid nanocomposites samples, as compared with neat polystyrene and polymer blend (PS:1% (PS-co-MA): 3% ABS) and fatigue limit was apparent for all types of hybridnanocomposites materials produced in this work. Morphology of the fracture surface wasshowed a homogeneous structure formation for optimal samples of each group ofcomposites, indicating a good compatibility between the component materials of polymerblend and the reinforcement nanoparticles.
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Stockman, Michel. "Design und Sicherheit ideal kombiniert: Neues Polymerblend mit einmaligen Eigenschaften." V+T Verkehr und Technik, no. 8 (August 1, 2008). http://dx.doi.org/10.37307/j.1868-7911.2008.08.05.

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Dissertations / Theses on the topic "Polymerblends"

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Fuchs, Konrad. "Entwicklung und Charakterisierung thermotroper Polymerblends." [S.l. : s.n.], 2001. http://deposit.ddb.de/cgi-bin/dokserv?idn=961043660.

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Göldel, Andreas [Verfasser]. "Lokalisierungsverhalten von Carbon-Nanotubes in schmelzegemischten thermoplastischen Polymerblends / Andreas Göldel." Hamburg : disserta Verlag, 2015. http://d-nb.info/1134911114/34.

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Heindl, Marcus [Verfasser]. "Einfluss von Dehnströmungen auf die Morphologieausbildung in Polymerblends / Marcus Heindl." Aachen : Shaker, 2005. http://d-nb.info/118161029X/34.

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Englert, Cornelia [Verfasser]. "Untersuchungen zur Korrosionsschutzwirkung von Acrylat-Styrol-Copolymer-Epoxy-Polymerblends / Cornelia Englert." Paderborn : Universitätsbibliothek, 2019. http://d-nb.info/118242242X/34.

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Pfefferkorn, Dirk [Verfasser], J. [Akademischer Betreuer] Kreßler, and Jacek [Akademischer Betreuer] Pigłowski. "Thermodynamische Eigenschaften von Polymerblends und Blockcopolymeren / Dirk Pfefferkorn. Betreuer: J. Kreßler ; Jacek Pigłowski." Halle, Saale : Universitäts- und Landesbibliothek Sachsen-Anhalt, 2011. http://d-nb.info/1025301145/34.

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Bannemann, Beate. "Herstellung von Poly(methylmethacrylat) und Poly(n-butylacrylat) Polymerblends durch in-situ Mikroemulsionspolymerisation." [S.l. : s.n.], 2002. http://deposit.ddb.de/cgi-bin/dokserv?idn=967697263.

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Steinmann, Sandra. "Neue morphologische und rheologische Kriterien für die Phaseninversion von ungefüllten und selektiv gefüllten Polymerblends." [S.l. : s.n.], 2002. http://www.freidok.uni-freiburg.de/volltexte/334.

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Kühn, Jan-Ole [Verfasser], and Christian [Akademischer Betreuer] Mayer. "Untersuchung der Kompatibilisierung von Polymerblends aus Polyamid-6 und Polyethylen / Jan-Ole Kühn ; Betreuer: Christian Mayer." Duisburg, 2020. http://d-nb.info/1221960229/34.

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Stenert, Michael. "Entwicklung binärer und ternärer Polymerblends auf der Basis von Polymethylmethacrylat, Poly(n-butylacrylat), Polystyrol und deren Diblockcopolymeren." [S.l.] : [s.n.], 2000. http://deposit.ddb.de/cgi-bin/dokserv?idn=96283436X.

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Kirchberger, Andreas [Verfasser]. "Morphologische und rheologische Eigenschaften von unverträglichen und teilverträglichen Polymerblends auf der Basis von Styrol-Acrylnitril-Copolymer / Andreas Kirchberger." München : Verlag Dr. Hut, 2011. http://d-nb.info/1012432025/34.

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Books on the topic "Polymerblends"

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Germany) Problemseminar Polymermischungen (10th 2001 Merseburg. Trends und Entwicklungen auf dem Gebiet der Polymerblends: 10. Problemseminar Polymermischungen, 28. und 29. März 2001, Merseburg : Tagungsbeiträge. Halle (Saale): Martin-Luther-Universität Halle-Wittenberg, 2001.

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Ingenieure, Verein Deutscher, and VDI-Gesellschaft Kunststofftechnik, eds. Aufbereiten von Polymerblends. Düsseldorf: VDI Verlag, 1989.

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Book chapters on the topic "Polymerblends"

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"Miscibility and Estimation of PolymerBlends Miscibility." In Relating Materials Properties to Structure with MATPROP Software, 603–57. CRC Press, 2001. http://dx.doi.org/10.1201/9781420031669.ch21.

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"β3) Polymerblends auf der Basis technisch bedeutender Thermoplaste." In Makromolekulare Stoffe, edited by Herbert Bartl and Jürgen Falbe. Stuttgart: Georg Thieme Verlag, 1987. http://dx.doi.org/10.1055/b-0035-114991.

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