Academic literature on the topic 'Differential Scanning Calorimetry DSC'

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Journal articles on the topic "Differential Scanning Calorimetry DSC"

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Dranca, Ion, and Tudor Lupascu. "Implications of Global and Local Mobility in Amorphous Excipients as Determined by DSC and TM DSC." Chemistry Journal of Moldova 4, no. 2 (2009): 105–15. http://dx.doi.org/10.19261/cjm.2009.04(2).02.

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The paper explores the use of differential scanning calorimetry (DSC) and temperature modulated differential scanning calorimetry (TM DSC) to study α- and β- processes in amorphous sucrose and trehalose. The real part of the complex heat capacity is evaluated at the frequencies, f, from 5 to 20mHz. β-relaxations were studied by annealing glassy samples at different temperatures and subsequently heating at different rates in a differential scanning calorimeter.
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Chagovetz, Alexis A., Colette Quinn, Neil Damarse, Lee D. Hansen, Alexander M. Chagovetz, and Randy L. Jensen. "Differential Scanning Calorimetry of Gliomas." Neurosurgery 73, no. 2 (2013): 289–95. http://dx.doi.org/10.1227/01.neu.0000430296.23799.cd.

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Abstract BACKGROUND: Thermal stability signatures of complex molecular interactions in biological fluids can be measured using differential scanning calorimetry (DSC). Evaluating the thermal stability of plasma proteomes offers a method of producing a disease-specific “signature” (thermogram) in neoplastic and autoimmune diseases. OBJECTIVE: The authors describe the use of DSC with human brain tumor tissue to create unique thermograms for correlation with histological tumor classification. METHODS: Primary brain tumors were classified according to the World Health Organization classification.
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Yang, Lu, and Shun Hong Lin. "City Sludge’s Differential Scanning Calorimetry Analysis." Advanced Materials Research 989-994 (July 2014): 2791–95. http://dx.doi.org/10.4028/www.scientific.net/amr.989-994.2791.

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The differential scanning calorimetry is a thermal analysis. Under program controlled temperature, measure and input to the relationship between the the sample and the reference’s power difference and temperature. The curve which the differential scanning calorimetry recorded called DSC curve. DSC curve in the sample’s rate of endothermic or exothermic as ordinate and in temperature or time as abscissa, which can determine a variety of thermodynamic and dynamics parameters, such as specific heat capacity, the reaction heat, thermal changes, phase diagram, reaction rate, rate of crystallization
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Saranov, Igor' Aleksandrovich, Oleg Borisovich Rudakov, Konstantin Konstantinovich Polyansky, Natal'ya Leonidovna Kleymenova, and Aleksey Valer'yevich Vetrov. "DIFFERENTIAL SCANNING CALORIMETRY OF LIQUID VEGETABLE." chemistry of plant raw material, no. 4 (December 21, 2020): 157–64. http://dx.doi.org/10.14258/jcprm.2020047603.

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The thermophysical properties of vegetable oils were studied by differential scanning calorimetry method was used to study the fatty acid composition of vegetable oils liquid at room temperature, such as amaranth (Amaránthus), corn (Zea mays), flax (Línum usitatíssimum), sunflower (Helianthus), rape (Brusss napor), milk thistle (Sílybum mariánum), saffron milk cap (Camelina sativa) and pumpkin (Cucurbita pepo). The temperatures of the endothermic peak maxima and their area on the DSC thermograms of these oils were established as characteristic thermal effects. The interconnection between therm
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Liu, Peng, Cai Qin Gu, Qing Zhu Zeng, and Hao Huai Liu. "The Extrapolation Method for Hyper Differential Scanning Calorimetry." Advanced Materials Research 554-556 (July 2012): 1994–98. http://dx.doi.org/10.4028/www.scientific.net/amr.554-556.1994.

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In order to eliminate the temperature lag effect and obtain the accurate temperature results from hyper differential scanning calorimetry (Hyper-DSC) operated at high heating rate, an adjustable method, namely “Extrapolation Method”, had been introduced by us in former papers. And in this paper, we wanted to support the accuracy of this method by other instruments. Specifically, the extrapolated glass transition temperatures (Tg, 61.5 °C) of PLA film, which was obtained by Hyper-DSC, was close to the value detected directly by normal DSC (62.0 °C). And the extrapolated Tg of waxy starch film (
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Schick, C. "Differential scanning calorimetry (DSC) of semicrystalline polymers." Analytical and Bioanalytical Chemistry 395, no. 6 (2009): 1589–611. http://dx.doi.org/10.1007/s00216-009-3169-y.

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Leyva-Porras, César, Pedro Cruz-Alcantar, Vicente Espinosa-Solís, et al. "Application of Differential Scanning Calorimetry (DSC) and Modulated Differential Scanning Calorimetry (MDSC) in Food and Drug Industries." Polymers 12, no. 1 (2019): 5. http://dx.doi.org/10.3390/polym12010005.

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Phase transition issues in the field of foods and drugs have significantly influenced these industries and consequently attracted the attention of scientists and engineers. The study of thermodynamic parameters such as the glass transition temperature (Tg), melting temperature (Tm), crystallization temperature (Tc), enthalpy (H), and heat capacity (Cp) may provide important information that can be used in the development of new products and improvement of those already in the market. The techniques most commonly employed for characterizing phase transitions are thermogravimetric analysis (TGA)
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Fellah, Lahcene, and Zakaria Boumerzoug. "DSC Study of Recrystallization in Wiredrawn Industrial Copper." Advanced Materials Research 997 (August 2014): 646–50. http://dx.doi.org/10.4028/www.scientific.net/amr.997.646.

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The goal of this work is to investigate the recrystallization reaction in cold wiredrawn industrial copper. We have used a differential scanning calorimetry and X-ray Diffraction techniques. The stored and apparent activation energies have been determined by differential scanning calorimetry under isochronal conditions. The differential scanning calorimetry results have been analyzed using models developed by Kissinger, Ozawa, Boswell, and Starink. In addition, the transformed fraction, as a function of temperature, and some kinetic parameters have been determined. We have found that cold wire
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Stępień, Piotr, Zbigniew Rusin, and Karol Skowera. "Cement Mortar Porosity by Modified Analysis of Differential Scanning Calorimetry Records." Materials 13, no. 5 (2020): 1080. http://dx.doi.org/10.3390/ma13051080.

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A modified method of interpreting a heat flux differential scanning calorimetry records in pore structure determination is presented. The method consists of determining the true phase transition energy distribution due to the melting of water during a differential scanning calorimetry (DSC) heating run. A set of original apparatus functions was developed to approximate the recorded calorimetric signals to the actual processes of the water phase transition at a given temperature. The validity of the proposed calorimetric curves-based algorithm was demonstrated through tests on a cement mortar s
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Gao, Jiawu, Lin Li, Yanping Deng, Zongming Gao, Changhua Xu, and Mingxi Zhang. "Study of gelation using differential scanning calorimetry (DSC)." Journal of thermal analysis 49, no. 1 (1997): 303–10. http://dx.doi.org/10.1007/bf01987451.

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Dissertations / Theses on the topic "Differential Scanning Calorimetry DSC"

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Snell, Andrew John Roger. "Application of Differential Scanning Calorimetry to Characterize Thin Film Deposition Processes." Cleveland State University / OhioLINK, 2010. http://rave.ohiolink.edu/etdc/view?acc_num=csu1280943337.

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Kuntz, Michael. "Quantifying Isothermal Solidification Kinetics during Transient Liquid Phase Bonding using Differential Scanning Calorimetry." Thesis, University of Waterloo, 2006. http://hdl.handle.net/10012/890.

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The problem of inaccurate measurement techniques for quantifying isothermal solidification kinetics during transient liquid phase (TLP) bonding in binary and ternary systems; and resulting uncertainty in the accuracy of analytical and numerical models has been addressed by the development of a new technique using differential scanning calorimetry (DSC). This has enabled characterization of the process kinetics in binary and ternary solid/liquid diffusion couples resulting in advancement of the fundamental theoretical understanding of the mechanics of isothermal solidification. The progre
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Holeman, Teryn A., та Teryn A. Holeman. "Effects of Three Cardiomyopathic-Causing Mutations (D230N, D84N, and E62Q) on the Structure and Flexibility of α-Tropomyosin". Thesis, The University of Arizona, 2017. http://hdl.handle.net/10150/624101.

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Cardiac contraction at the level of the sarcomere is regulated by the thin filament (TF) composed of actin, alpha tropomyosin (TPM), and the troponin (Tn) complex (cTnT: cTnC: cTnI). The "gate-keeper" protein, α-TPM, is a highly conserved α-helical, coiled-coil dimer that spans actin and regulates myosin-actin interactions. The N-terminus of one α-TPM dimer inter-digitates with the C-terminus of the adjacent dimer in a head-to-tail fashion forming the flexible and cooperative TPM-overlap that is necessary for myofilament activation. Two dilated cardiomyopathy (DCM) causing mutations in TPM (D8
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Zander, Patrik, and Johan Hammarström. "Värmebehandling av segjärn med hög kiselhalt." Thesis, Tekniska Högskolan, Högskolan i Jönköping, JTH, Maskinteknik, 2011. http://urn.kb.se/resolve?urn=urn:nbn:se:hj:diva-16377.

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Bakgrunden till detta examensarbete var att Qumex Materialteknik vid ett flertal tillfällen konstaterat att material av typen SS 0725 har uppvisat bristfälliga härdresultat. Materialet, som är relativt nytt på marknaden, är ett gjutjärn av typen segjärn och utmärker sig gentemot andra segjärn på grund av sitt höga innehåll av kisel. Då segjärn enligt den nu gällande EN-standarden klassificeras efter sina mekaniska egenskaper uppstår ett problem gällande SS 0725. Materialet uppfyller de krav som är ställda för EN-GJS-500-7 och hamnar därmed under samma materialbeteckning som ett segjärn med bet
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Gundogar, Sati Asli. "Thermal Characterization And Kinetics Of Crude Oils By Tga And Dsc Methods." Master's thesis, METU, 2010. http://etd.lib.metu.edu.tr/upload/12611502/index.pdf.

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In recent years, the application of thermal analysis to study the combustion and pyrolysis behavior of fossil fuels has gained a wide acceptance because of its significance for industry and economy. In this thesis, the thermal and kinetic analysis of different origin crude oil samples are performed by two well-known thermal analysis techniques: Differential Scanning Calorimetry (DSC) and Thermogravimetry (TG/DTG). The investigation of combustion and pyrolysis behaviors, kinetic analysis of oil samples and the determination of heating rate effect are the main objectives of this study. Six diffe
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Pöhlmann, Milena. "Thermisch härtende Polymerverbundmaterialien als Basis für neue Befestigungssysteme." Doctoral thesis, Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2006. http://nbn-resolving.de/urn:nbn:de:swb:14-1165492370619-99312.

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Mit der Entwicklung und Einführung ökologischer Bauweise im Neubau sowie neuen Baustoffsystemen in Sandwichbauweise wird es zunehmend erforderlich, neue effektive Befestigungsvarianten zu entwickeln, die eine dauerhafte Fixierung auch unter sicherheitstechnischen Bestimmungen sowie aus Garantie- bzw. haftungsrechtlichen Gründen ermöglichen. Die aus der Praxis bisher bekannten chemischen Befestigungssysteme (Zweikomponentenverbundmörtel, Verbundankerpatronen) weisen hinsichtlich der Applikation unter bautechnischen Bedingungen noch einige Nachteile auf. Dazu gehören vor allem längere Aushärtung
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Gul, Kiymet Gizem. "Thermal Characterization And Kinetic Analyis Of Sara Fractions Of Crude Oils By Tga And Dsc Methods." Master's thesis, METU, 2011. http://etd.lib.metu.edu.tr/upload/12613614/index.pdf.

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In this thesis, four different crude oil samples and their saturate, aromatic and resin fractions were analyzed by two different thermoanalytical methods, thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). The experiments were performed at three different heating rates (5, 10 and 15 &deg<br>C/min) under air atmosphere. Same gas flow rate and same pressure were applied to all samples. The aim is to determine the kinetic analysis and combustion behavior of crude oils and their fractions and also determining the effect of heating rate on all samples. For all samples
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Trindade, Nuno Miguel Passarinho. "Stochastic modeling of the thermal and catalytic degradation of polyethylene using simultaneous DSC/TG analysis." Master's thesis, Faculdade de Ciências e Tecnologia, 2012. http://hdl.handle.net/10362/8468.

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Dissertação para obtenção do Grau de Mestre em Engenharia Química e Bioquímica<br>In the present work a stochastic model to be used for analyzing and predicting experimental data from simultaneous thermogravimetric (TG) and differential scanning calorimetry (DSC) experiments on the thermal and catalytic degradation of high-density polyethylene (HDPE) was developed. Unlike the deterministic models, already developed, with this one it’s possible to compute the mass and energy curves measured by simultaneous TG/DSC assays, as well as to predict the product distribution resulting from primary cra
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Maggiolino, Stefano. "Un nuovo dispositivo per analisi microcalorimetriche nel settore biologico: DSC-MEMS." Doctoral thesis, Università degli studi di Trieste, 2008. http://hdl.handle.net/10077/2765.

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2006/2007<br>Il seguente lavoro di tesi di dottorato è inerente alla progettazione, modellizazione, caratterizzazione di uno sensore MEMS (Micro Electro Mechanical System) per misure calorimetriche su cellule. Sono stati progettati diversi dispositivi simulandone, in diversi casi, le scelte progettuali atte a migliorare le caratteristiche del sensore. Sono state simulate anche scelte che a causa della tecnologia usata non sono state applicate, ma con tecnologie differenti potrebbero andare a migliorare il sensore. In conclusione tutte le scelte progettuali indagate, ed in alcuni casi anche ap
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Almutairi, Badriah Saad. "Correlating Melt Dynamics with Glass Topological Phases in Especially Homogenized Equimolar GexAsxS100-2x Glasses using Raman Scattering, Modulated- Differential Scanning Calorimetry and Volumetric Experiments." University of Cincinnati / OhioLINK, 2020. http://rave.ohiolink.edu/etdc/view?acc_num=ucin1593272974284834.

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Books on the topic "Differential Scanning Calorimetry DSC"

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Saffarini, Ghassan. X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD), differential scanning calorimetry (DSC) and density study of ternary chalcogenide glasses based on Ge-Se and Ge-S. Brunel University, 1991.

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Höhne, G. W. H., W. F. Hemminger, and H. J. Flammersheim. Differential Scanning Calorimetry. Springer Berlin Heidelberg, 2003. http://dx.doi.org/10.1007/978-3-662-06710-9.

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Höhne, G. W. H., W. Hemminger, and H. J. Flammersheim. Differential Scanning Calorimetry. Springer Berlin Heidelberg, 1996. http://dx.doi.org/10.1007/978-3-662-03302-9.

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1941-, Hemminger W., and Flammersheim H. -J, eds. Differential scanning calorimetry. 2nd ed. Springer, 2003.

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Reading, Mike, and Douglas J. Hourston, eds. Modulated Temperature Differential Scanning Calorimetry. Springer Netherlands, 2006. http://dx.doi.org/10.1007/1-4020-3750-3.

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Höhne, G. Differential scanning calorimetry: An introduction for practitioners. Springer-Verlag, 1996.

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Höhne, G. Differential scanning calorimetry: An introduction for practitioners. 2nd ed. Springer, 2003.

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Elkordy, Amal Ali. Applications of calorimetry in a wide context: Differential scanning calorimetry, isothermal titration calorimetry and microcalorimetry. Intech, 2013.

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Bershteĭn, V. A. Differential scanning calorimetry of polymers: Physics, chemistry, analysis, technology. Edited by Egorov V. M. Ellis Horwood, 1994.

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Bershtĕin, V. A. Differential scanning calorimetry of polymers: Physics, chemistry, analysis, technology. Edited by Egorov V. M. Ellis Horwood, 1994.

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Book chapters on the topic "Differential Scanning Calorimetry DSC"

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Höhne, G. W. H., W. Hemminger, and H. J. Flammersheim. "The DSC Curve." In Differential Scanning Calorimetry. Springer Berlin Heidelberg, 1996. http://dx.doi.org/10.1007/978-3-662-03302-9_5.

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Höhne, G. W. H., W. F. Hemminger, and H. J. Flammersheim. "DSC Curves and Further Evaluations." In Differential Scanning Calorimetry. Springer Berlin Heidelberg, 2003. http://dx.doi.org/10.1007/978-3-662-06710-9_5.

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Mishra, Munmaya, and Biao Duan. "DSC: Differential Scanning Calorimetry." In The Essential Handbook of Polymer Terms and Attributes. CRC Press, 2024. http://dx.doi.org/10.1201/9781003161318-48.

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Ehrenstein, Gottfried W., Gabriela Riedel, and Pia Trawiel. "Differential Scanning Calorimetry (DSC)." In Thermal Analysis of Plastics. Carl Hanser Verlag GmbH & Co. KG, 2004. http://dx.doi.org/10.3139/9783446434141.001.

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Brown, Michael E. "Differential thermal analysis (DTA) and differential scanning calorimetry (DSC)." In Introduction to Thermal Analysis. Springer Netherlands, 1988. http://dx.doi.org/10.1007/978-94-009-1219-9_4.

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Tsvetkov, Philipp O., and François Devred. "Plasmatic Signature of Disease by Differential Scanning Calorimetry (DSC)." In Methods in Molecular Biology. Springer New York, 2019. http://dx.doi.org/10.1007/978-1-4939-9179-2_4.

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Naziris, Nikolaos, Maria Chountoulesi, Dimitrios Ntountaniotis, Thomas Mavromoustakos, and Costas Demetzos. "Differential Scanning Calorimetry (DSC) on Sartan/Cyclodextrin Delivery Formulations." In Supramolecules in Drug Discovery and Drug Delivery. Springer US, 2020. http://dx.doi.org/10.1007/978-1-0716-0920-0_13.

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Lewis, Ruthven N. A. H., and Ronald N. McElhaney. "Differential Scanning Calorimetry (DSC), Pressure Perturbation Calorimetry (PPC), and Isothermal Titration Calorimetry (ITC) of Lipid Bilayers." In Encyclopedia of Biophysics. Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-16712-6_557.

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Baudu, M., P. Le Cloirec, and G. Martin. "Differential Scanning Calorimetry (DSC) of Exhausted and Non-Exhausted Activated Carbon." In Chemistry for the Protection of the Environment. Springer US, 1991. http://dx.doi.org/10.1007/978-1-4615-3282-8_37.

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Enns, John B., and Raymond F. Boyer. "Differential Scanning Calorimetry (DSC) Observation of the T ll Transition in Polystyrene." In Order in the Amorphous “State” of Polymers. Springer US, 1987. http://dx.doi.org/10.1007/978-1-4613-1867-5_9.

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Conference papers on the topic "Differential Scanning Calorimetry DSC"

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Tankins, E. S., and W. E. Frazier. "Differential Scanning Calorimetric Studies of the Precipitation Behavior in the 7000 Series Aluminum Alloys." In CORROSION 1986. NACE International, 1986. https://doi.org/10.5006/c1986-86192.

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Abstract There are numerous ingot and powder metallurgy 7000 series high strength precipitation hardening aluminum alloys. Each thermal treatment such as T6 or T73 results in a unique distribution of precipitates. Differential Scanning Calorimetry (DSC) is a rapid way of analyzing these precipitation reactions in aluminum alloys. In this work the various endothermic and exothermic DSC reactions associated with precipitations hardening were determined for 7075, 7050, and 7091 aluminum alloys. It is demonstrated how DSC thermogram can be used as a predictive tool on the determination of the best
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Partridge, Paul E. "Maximizing the Accuracy and Precision of Cure Determination on Fusion Bonded Epoxy by Differential Scanning Calorimetry." In CORROSION 2000. NACE International, 2000. https://doi.org/10.5006/c2000-00770.

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Abstract Optimum cure on FBE is one part of achieving maximum coating performance. Transition temperature measurements by DSC are influenced by sample acquisition, sample preparation, machine parameters and analysis techniques. The effect of each step is described, along with a logical approach to parameters that maximize accuracy and precision of DSC cure measurements.
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Li, Zechun, Shaokui Tan, Ming Li, et al. "Determining Activation Energy Of Ammonium Salts Decomposition Using Mems Thermopile-Based Differential Scanning Calorimetry (Dsc)." In 2025 IEEE 38th International Conference on Micro Electro Mechanical Systems (MEMS). IEEE, 2025. https://doi.org/10.1109/mems61431.2025.10917477.

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Mohajeri, Mahdi, Behrouz Haghgouyan, Homero Castaneda-Lopez, and Dimitris C. Lagoudas. "Nickel Titanium Alloy Failure Analysis under Thermal Cycling and Mechanical Loading: a Preliminary Study." In CORROSION 2018. NACE International, 2018. https://doi.org/10.5006/c2018-11632.

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Abstract The electrochemical frequency modulation (EFM) technique can consider as a new tool for electrochemical corrosion monitoring. The calculation of corrosion rate with a non-destructive and rapid technique is a necessity to study corrosion behavior of metals under loading and thermal cycling. NiTi shape memory alloy (SMA) is characterized by differential scanning calorimetry (DSC) and uniaxial tensile testing. The corrosion behavior and reliability of technique have been examined for NiTi sample in artificial physiological solution. The results show the sensitivity of EFM technique to te
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Zhou, Wenjing, Thomas E. Jeffers, and Owen H. Decker. "Properties of a Novel High Tg FBE Coating for High Temperature Service." In CORROSION 2007. NACE International, 2007. https://doi.org/10.5006/c2007-07688.

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Abstract A novel fusion bonded epoxy (FBE) coating based on brominated epoxy resin with a high glass transition temperature (Tg) was developed for pipeline protection. Properties of this FBE coating related to high temperature service are described in this paper. The new FBE coating has a glass transition temperature greater than 150°C as determined by differential scanning calorimetry (DSC). It performs significantly better in cathodic disbondment (CD) and water soak tests than conventional FBE coatings when tested at 95°C for 28 days. With brominated epoxy resin as the main binder, the new F
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Mills, George. "Intrinsic Limitations in the Use of Differential Scanning Calorimeter Techniques for Characterizing Organic Coatings." In CORROSION 1988. NACE International, 1988. https://doi.org/10.5006/c1988-88440.

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Abstract The differential scanning calorimeter is used for analyzing fusion bonded epoxy pipe coatings both before application and after to determine the virgin powder's and applied coating's "quality". There are many limitations and interfering phenomena which often distort the results to a degree that the data is misinterpreted. The source of some of these misrepresented data are discussed. The DSC operator is warned not to necessarily believe "everything that he sees". Specification writers are advised that large differences in indicated Tg of powders may have no impact on the cured coating
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Almudarra, Khalid M., Nayef M. Al-Anazi, Ibrahim M. Alzahrani, et al. "Investigation Study on a Failed Reinforced Thermosetting Resin Pipe." In MECC 2023. AMPP, 2023. https://doi.org/10.5006/mecc2023-20059.

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An underground Reinforced Thermosetting Resin (RTR) piping system used in firewater facilities experienced frequent ruptures from inside-out after 7 years of service at several locations. This work encompasses a material assessment study to potentially identify the root cause of the incidents. The assessment was conducted through a series of analytical and mechanical methodologies starting with visual inspection, Loss on Ignition (LOI), Differential Scanning Calorimetry (DSC), Thermogravimetric Analysis (TGA), axial tensile testing and Environmental Scanning Electron Microscope (ESEM). Results
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O’Donoghue, Mike, Vijay Datta, and Travis Gafka. "Formulators in the Field: The Effect of Over-Cure or Under-Cure of Polyclamine Cured Epoxy Linings." In SSPC 2016 Greencoat. SSPC, 2016. https://doi.org/10.5006/s2016-00052.

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Abstract Advanced technology high performance tank linings are often applied by plural spray equipment and occasionally one of the components could be off-ratio. Worse still, some well-intentioned field personnel might add more curing agent to speed up the cure, or alter other properties, or may not utilize the entire curing agent portion in a single leg application. This paper investigates the effects of under-cure or over-cure on the performance of two high temperature tank linings by deliberately mis-mixing the two components. Accelerated laboratory tests were undertaken on a 2ct thin film
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Smith, Doug, and John M. Bronk. "Wet TG: Understanding the Effect of Hot, Distilled Water on the Glass Transition Temperature, Barrier Properties, and Performance of Fusion Bonded Epoxy Coatings." In CONFERENCE 2023. AMPP, 2023. https://doi.org/10.5006/c2023-19470.

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Abstract Fusion-Bonded Epoxy (FBEs) coatings are a durable, dependable approach to corrosion-prevention for both inner-diameter and outer-diameter pipeline coatings. One attribute of an FBE that plays a significant role in the coating performance and operating temperature is the glass transition temperature (Tg). However, when a coating is subject to environmental conditions (water, chemicals, UV ((Ultraviolet) light, elevated temperatures, etc.) the glass transition temperature can be depressed from its applied state. This paper explores how to monitor the glass transition temperature depress
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Sebastian, Szczech. "Differential Scanning Calorimetry(DSC) Calibration and Measurement." In Differential Scanning Calorimetry(DSC) Calibration and Measurement. US DOE, 2023. http://dx.doi.org/10.2172/1989874.

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Reports on the topic "Differential Scanning Calorimetry DSC"

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ตระการพฤกษ์, วิมลรัตน์. ผลของสารเร่งปฏิกิริยาร่วมต่อพอลิเมอไรเซชันของสไตรีน : รายงานผลการวิจัย. จุฬาลงกรณ์์มหาวิทยาลัย, 2002. https://doi.org/10.58837/chula.res.2002.40.

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ในงานวิจัยนี้ได้ศึกษาผลของสารเร่งปฏิกิริยาร่วมต้องพอลิเมอไรเซชันของสไตรีนสารเร่งปฏิกิริยาร่วมที่ใช้ในการทดลองได้แก่ ไทรเฟนิลคาร์บีเนียม เททราเพนทาฟลูออโรเฟนิลบอเรต [Ph[subscript 3]C][B(C[subscript 6 F[subscript 5])[subscript 4]], ไดเมทิลอะนิลิเนียม เททระคิสเพนทาฟลูออโรเฟนิลบอเรต [PhNMe[subscript 2]H] [B(C[subscript 6] F[subscript 5])[subscript 4]] และทริสเพนทาฟลูออโรเฟนิลบอเรต B(C[subscript 6]F[subscript 5])[subscript 3] ร่วมกับไทรไอโซบิวทิลอะลูมิเนียม (TIBA) สารเร่งปฏิกิริยาที่ใช้ คือ เพนทาเมทิลไซโคลเพนทาไดอีนิลไทเทเนียมไตรคลอไรด์ C[subscript 5](CH[subscript 3])[subscript 5]TiCl[subscript 3]
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ตระการพฤกษ์, วิมลรัตน์. สารเร่งปฏิกิริยาเหล็กสำหรับพอลิเมอไรเซชันของเฮกซีน : รายงานผลการวิจัย. จุฬาลงกรณ์์มหาวิทยาลัย, 2002. https://doi.org/10.58837/chula.res.2002.42.

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ในงานวิจัยนี้ ได้ศึกษาผลของสารเร่งปฏิกิริยาร่วมต่อพอลิเมอไรเซชันของสไตรีน สารเร่งปฏิกิริยาร่วมที่ใช้ในการทดลองได้แก่ ไทรเฟนิลคาร์บีเนียม เททราเพนทาฟลูออโรเฟนิลบอเรต [Ph[subscript 3]C][B(C[subscript 6]F[subscript 5])[subscript 4], ไดเมทิลอะนิลิเนียม เททระคิสเพนทาฟลูออโรเฟนิลพอเรต [PhBNe[subscript 2]H][B(C[subscript 6]F[subscript 5])[subscript 4] และทริสเพนทาฟลูออโรเฟนิลบอเรต B(C[subscript 6]F[subscript 5])[subscript 3] ร่วมกับไทรไอโซบิวทิลอะลูมิเนียม (TIBA) สารเร่งปฏิกิริยาที่ใช้ คือ เพนทาเมทิลไซโคลเพนทาไดอีนิลไทเทเนียมไตรคลอไรด์ C[subscript 5](CH[subscript 3])[subscript 5]TiCl[subscript 3] จาก
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ตระการพฤกษ์, วิมลรัตน์. สารเร่งปฏิกิริยาไทเทโนซีนสำหรับการผลิตซินดิโอแทคทิคพอลิสไตรีน : รายงานผลการวิจัย. จุฬาลงกรณ์์มหาวิทยาลัย, 2001. https://doi.org/10.58837/chula.res.2001.53.

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ในงานวิจัยนี้ ได้ศึกษาผลของสารเร่งปฏิกิริยาร่วมต่อพอลิเมอไรเซชันของสไตรีน สารเร่งปฏิกิริยาร่วมที่ใช้ในการทดลองได้แก่ ไทรเฟนิลคาร์บีเนียม เททราเพนทาฟลูออโรเฟนิลบอเรต [Ph[subscript 3]C][B(C[subscript 6]F[subscript 5])[subscript 4], ไดเมทิลอะนิลิเนียม เททระคิสเพนทาฟลูออโรเฟนิลพอเรต [PhBNe[subscript 2]H][B(C[subscript 6]F[subscript 5])[subscript 4] และทริสเพนทาฟลูออโรเฟนิลบอเรต B(C[subscript 6]F[subscript 5])[subscript 3] ร่วมกับไทรไอโซบิวทิลอะลูมิเนียม (TIBA) สารเร่งปฏิกิริยาที่ใช้ คือ เพนทาเมทิลไซโคลเพนทาไดอีนิลไทเทเนียมไตรคลอไรด์ C[subscript 5](CH[subscript 3])[subscript 5]TiCl[subscript 3] จาก
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ตระการพฤกษ์, วิมลรัตน์. ตัวเร่งปฏิกิริยาเมทัลโลซีนสำหรับการผลิตพอลิเอทิลิน : รายงานผลการวิจัย. จุฬาลงกรณ์์มหาวิทยาลัย, 2001. https://doi.org/10.58837/chula.res.2001.50.

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ตัวเร่งปฏิกิริยาเมทัลโลซีน: Cp[subscript 2]ZrCl[subscript 2], rac-Et(Ind)[subscript 2]ZrCl[subscript 2], (CH[subscript 3]C[subscript 5]H[subscript 6]) [subscript 2]Zr, CpTiCl[subscript 3], (C[subscript 5]H[subscript 4]CH[subscript 2]CH[subscript 2]OCH[subscript 3])TiCl[subscript 3], IndTiCl[subscript 3] ได้รับการทดสอบประสิทธิภาพในการเร่งปฏิกิริยาพอลิเมอไรเซชันของเอทิลีน ตัวเร่งปฏิกิริยาร่วมที่ใช้ในงานวิจัยนี้ คือ เมทิลอะลูมินอกแซน (MAO) หรือสารประกอบโบรอน B(C[subscript 5]F[subscript 6]) [subscript 3] ร่วมกับสารประกอบอะลูมิเนียม Al(CH[subscript 3]) [subscript 3] หรือ Al(I-C[subscript 4]H[subscr
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Suarez Loor, J., M. Lazo, A. Rigail, E. Adrian, and J. Vera. Processing of thermoplastic elastomers (TPE) by in-situ ground tire rubber (GTR) vulcanization using waste ethylene-vinyl-acetate (wEVA) and dicumyl peroxide (DCP). Universidad de los Andes, 2024. https://doi.org/10.51573/andes.pps39.gs.re.2.

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Tire rubber waste (TRW) is a complex mixture of materials, such as rubbers, steel, textile fibers, carbon black, and other additives. Its polluting capacity is a severe environmental problem, especially in landfills and waste management processes. As a practical solution to mitigate TRW’s environmental impact, thermoplastic elastomers (TPE) commonly reuse the ground tire rubber (GTR). This work presents an in-situ devulcanization of ground tire rubber (DGTR) and re-vulcanization of devulcanized ground tire rubber using dicumyl peroxide (DCP) and waste ethylene-vinyl-acetate (wEVA). The GTR was
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Chutimaworapan, Suchada, Chaiyo Chaichantippayuth, and Areerat Laopaksa. Formulation of pharmaceutical products of Garcinia mangostana Linn. extracts. Chulalongkorn University, 2006. https://doi.org/10.58837/chula.res.2006.32.

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Part I: The purpose of the investigation was to develop the extraction process that was simple, practical and giving high yield. The maceration of dried powder of Garcinia mangostana fruit husk with ethyl acetate gave yellow crystalline powder of mangostin. The yield was calculated as 7.47%. The identification of the Garcinia mangostanahusk extract was carried out by thin-layer chromatography (TLC) and differential scanning calorimetry. The TLC of mangostin was done by using the alumina sheet and ethyl acetate: hexane (3:1) as mobile phase. The Rf value as compared with standard mangostin was
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Marangoni, Alejandro G., and M. Fernanda Peyronel. Differential Scanning Calorimetry. AOCS, 2014. http://dx.doi.org/10.21748/lipidlibrary.40884.

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Szczech, Sebastian. Differential Scanning Calorimetry Calibration and Heat Capacity. Office of Scientific and Technical Information (OSTI), 2023. http://dx.doi.org/10.2172/2203731.

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Fleszar, Mark F. Lead-Tin Solder Characterization by Differential Scanning Calorimetry. Defense Technical Information Center, 2000. http://dx.doi.org/10.21236/ada373333.

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Black, Patrick B., and Dean Pidgeon. Purity Determination of Standard Analytical Reference Materials by Differential Scanning Calorimetry. Defense Technical Information Center, 1990. http://dx.doi.org/10.21236/ada224669.

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