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Results 1 to 25 of 846

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Increase in the Alpha to Gamma Transformation Temperature of Pure Iron upon Very Rapid HeatingLANGNER, Jeremy; CAHOON, J. R.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2010, Vol 41, Num 5, pp 1276-1283, issn 1073-5623, 8 p.Article

Integral dependent on parameter E in classical non-isothermal kinetics with linear heating rate. IIURBANOVICI, E; SEGAL, E.Journal of thermal analysis. 1990, Vol 36, Num 4, pp 1599-1601, issn 0368-4466Article

Effects of heating rate on yield of levoglucosan in wood pyrolysisMIURA, M; TANAKA, S; ANDO, K et al.Kagaku kōgaku ronbunshū. 1995, Vol 21, Num 4, pp 843-846, issn 0386-216XArticle

Solar heating rates : the importance of spherical geometryLARY, D. J; BALLUCH, M.Journal of the atmospheric sciences. 1993, Vol 50, Num 24, pp 3983-3993, issn 0022-4928Article

Effects of heating rate and ion-exchangeable cations on the pyrolysis yields from a Victorian brown coalSATHE, C; YANYUAN PANG; LI, C.-Z et al.Energy & fuels. 1999, Vol 13, Num 3, pp 748-755, issn 0887-0624Article

Effect of heating rate on normal and catalytic fixed-bed hydropyrolysis of coalsLI, B; MITCHELL, S. C; SNAPE, C. E et al.Fuel (Guildford). 1996, Vol 75, Num 12, pp 1393-1396, issn 0016-2361Article

Influence of heating rate on the TL response of LiF TLD-700, LiF:Mg, Cu, P and Al2O3:CPRADHAN, A. S.Radiation protection dosimetry. 1995, Vol 58, Num 3, pp 205-209, issn 0144-8420Article

Role of reflective (metallic) support on microwave heatingBASAK, Tanmay.AIChE journal. 2005, Vol 51, Num 5, pp 1319-1329, issn 0001-1541, 11 p.Article

Viscosity measurement of slag formed in the carbon-bearing iron oxide during the rapid heatingINABA, Shinichi; KIMURA, Yoshio.ISIJ international. 2004, Vol 44, Num 12, pp 2067-2072, issn 0915-1559, 6 p.Article

On the multiple melting behavior of bisphenol-A polycarbonateSOHN, S; ALIZADEH, A; MARAND, H et al.Polymer (Guildford). 2000, Vol 41, Num 25, pp 8879-8886, issn 0032-3861Article

Investigation on coal plasticity : Correlation of the plasticity and a TGA-derived parameterKIDENA, K; MURATA, S; NOMURA, M et al.Energy & fuels. 1998, Vol 12, Num 4, pp 782-787, issn 0887-0624Article

Non-isothermal thermogravimetry and decomposition kinetics of two jordanian oil shales under different processing conditionsJABER, J. O; PROBERT, S. D.Fuel processing technology. 2000, Vol 63, Num 1, pp 57-70, issn 0378-3820Article

Computational techniques to incorporate aerosol variability in climate modelsBOX, M. A; BECK, S; TRAUTMANN, T et al.Journal of geophysical research. 1996, Vol 101, Num D14, pp 19293-19297, issn 0148-0227Conference Paper

Development of a gas-sweep facility for the direct capture of pyrolysis tars in a variable heating rate high-pressure wire-mesh reactorGÜELL, A. J; KANDIYOTI, R.Energy & fuels. 1993, Vol 7, Num 6, pp 943-952, issn 0887-0624Article

Burn time of aluminum nanoparticles : Strong effect of the heating rate and melt-dispersion mechanismLEVITAS, Valery I.Combustion and flame. 2009, Vol 156, Num 2, pp 543-546, issn 0010-2180, 4 p.Article

Effect of Heating Rate on Recrystallization of Twin Roll Cast AluminumNAIYU SUN; PATTERSON, Burton R; SUNI, Jaakko P et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2008, Vol 39, Num 1, pp 165-170, issn 1073-5623, 6 p.Article

A method for constant-rate heating of milligram-sized samplesSTOLIAROV, S. I; WALTERS, R. N; LYON, R. E et al.Journal of thermal analysis and calorimetry. 2007, Vol 89, Num 2, pp 367-371, issn 1388-6150, 5 p.Conference Paper

Effect of heating rate on microstructural homogeneity of sintered W-15wt%Cu nanocomposite fabricated from W-CuO powder mixtureKIM, Dae-Gun; KIM, Gil-Su; SUK, Myung-Jin et al.Scripta materialia. 2004, Vol 51, Num 7, pp 677-681, issn 1359-6462, 5 p.Article

Effect of heating rate on pyrolysis kinetics of Göynük oil shaleDEGIRMENCI, Levent; DURUSOY, Tülay.Energy sources. 2002, Vol 24, Num 10, pp 931-936, issn 0090-8312Article

Effects of particle size, heating rate and pressure on measurement of pyrolysis kinetics by thermogravimetric analysisSEEBAUER, V; PETEK, J; STAUDINGER, G et al.Fuel (Guildford). 1997, Vol 76, Num 13, pp 1277-1282, issn 0016-2361Conference Paper

Effects of heating rate on slow pyrolysis behavior, kinetic parameters and products properties of moso bambooDENGYU CHEN; JIANBIN ZHOU; QISHENG ZHANG et al.Bioresource technology. 2014, Vol 169, pp 313-319, issn 0960-8524, 7 p.Article

Application of high-frequency induction heating apparatus to heat treatment of 6061 aluminum alloySHANG, Fang-Ni; SEKIYA, Eiji; NAKAYAMA, Yoshihiro et al.Keikinzoku. 2012, Vol 62, Num 2, pp 67-74, issn 0451-5994, 8 p.Article

Effect of temperature management on the hydrolytic degradation of PET in a calcium oxide filled tube reactorGRAUSE, Guido; HANDA, Tomohiko; KAMEDA, Tomohito et al.Chemical engineering journal (1996). 2011, Vol 166, Num 2, pp 523-528, issn 1385-8947, 6 p.Article

THE USE OF THERMOGRAVIMETRIC ANALYSIS TECHNIQUE FOR THE CHARACTERIZATION OF CONSTRUCTION MATERIALS The : gypsum caseBORRACHERO, M. V; PAYA, J; BONILLA, M et al.Journal of thermal analysis and calorimetry. 2008, Vol 91, Num 2, pp 503-509, issn 1388-6150, 7 p.Article

Effects of rapid heating on solutionizing characteristics of Al-Si-Mg alloys using a fluidized bedCHAUDHURY, S. K; APELIAN, D.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2006, Vol 37, Num 3, pp 763-778, issn 1073-5623, 16 p.Article

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