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Items where Subject is "Advanced Materials > Thermal Analysis of Materials"

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Number of items at this level: 37.

A

Allen, C R G; Hobbs, C B (1999) Thermal properties of polymers part 1: industrial guide to measurement by Differential Scanning Calorimetry (DSC). NPL Report. CMMT(MN)058

Andon, R J L; Chapman, L; Day, A; Mills, K C (2000) Viscosities of liquid metals and commercial alloys. NPL Report. CMMT(A)167

Arranz, E; Brown, C S; Gnaniah, S J P; Percio, S (2001) Latent heat of polymers crystallised under pressure. NPL Report. MATC(A)44

B

Blessley, K*; Young, C*; Nunn, J; Coddington, J*; Shepard, S* (2010) The feasibility of flash thermography for the examination and conservation of works of art. Studies in Conservation, 55 (2). pp. 107-120.

Brown, C (1994) Measuring viscosity to optimise thermoset processing. Mater. World (Januar). p. 16.

Busso, E P*; Evans, H E*; Wright, L; McCartney, L N; Nunn, J; Osgerby, S* (2008) A software tool for lifetime prediction of thermal barrier coating systems. Mater. Corros., 59 (7). pp. 556-565.

C

Cagran, C*; Wilthan, B*; Pottlacher, G*; Roebuck, B; Wickins, M*; Harding, R A* (2003) Thermophysical properties of a Ti-44%Al-8%Nb-1%B alloy in the solid and molten states. Intermetallics, 11 (11-12). pp. 1327-1334.

Chakravorty, S (2000) Evaluation of casting waxes. Foundry Trade Journal (May). pp. 22-25.

Chakravorty, S (1999) A review of requirements for improved methods of measuring thermal properties of polymer. NPL Report. CMMT(A)246

Chapman, L; Day, A; Quested, P N (1999) Reference materials for calibration of temperatures in DTA/DSC instruments. NPL Report. CMMT(A)157

D

Dawson, A; Maxwell, A S (2015) Towards a quantitative methodology for measuring micro and nanoscale transition properties for heat transfer modelling in thermal devices and materials. In: 21st International Workshop on Thermal Investigations of ICs and Systems (THERMINIC), 30 September - 2 October 2015, Paris, France.

Dawson, A; Rides, M; Allen, C R G (2007) The measurement of the thermal conductivity of amorphous polymers above glass transition temperatures. NPL Report. MAT 7

F

Ferriss, D H; Quested, P N (2000) Some comparisons of the Rosco and Beckwith-Newell analyses for the determination of viscosity of liquid metals using the oscillating cup viscometer. NMW 5.08 The choice of equations for the measurement of viscosity by the oscillating cylinder method. NPL Report. CMMT(A)306

H

Harding, R A*; Brooks, R F; Pottlacher, G*; Brillo, J* (2003) Thermo-physical properties of Ti-44Al-8Nb-1B alloy in the solid and molten conditions. In: Gamma Titanium Aluminides 2003, 2003.

Harrer, W.; Morrell, R.; Danzer, R. (2019) Failure Analysis on a Compaction Roll made of Silicon Nitride. Practical Metallography, 56 (4). pp. 262-275. ISSN 0032-678X

Hay, B*; Zarr, R*; Stacey, C; Lira-Cortes, L*; Hammerschmidt, U*; Sokolov, N*; Zhang, J*; Filtz, J R*; Fleurence, N* (2013) Analysis of thermal conductivity measurement data from international comparison of national laboratories. Int. J. Thermophysics, 34 (5). pp. 737-762.

Hobbs, C B (2001) Thermal Properties of light metal alloys by differential scanning calorimetry. NPL Report. MATC(MN)08

Hobbs, C B; Ferriss, D H; Roberts, S; Gnaniah, S J P; Brown, C S (2001) Thermal properties of polymer melts at elevated pressure from compression heating and differential scanning calorimetry. NPL Report. MATC(A)25

L

Loveday, M S*; Roebuck, B (2006) Metallic materials: measurement of high temperature flow stress at medium to high strain rates. A general introduction. Mater. High Temp., 23 (2). pp. 55-58.

M

Mendels, D A; Graham, E M*; Magennis, S W*; Jones, A C*; Mendels, F* (2008) Quantitative comparison of thermal and solutal transport in a T-mixer by FLIM and CFD. Microfluid. Nanofluid., 5 (5). pp. 603-617.

Mills, K C (1992) Viscosities of molten slags. NPL Report. DMM(A)55

Mills, K C; Chapman, L; Fox, A B*; Sridhar, S* (2000) 'Round Robin' project on the estimation of slag viscosities. NPL Report. CMMT(A)272

Mills, K C; Quested, P N (1994) Measurements of the physical properties of liquid metals. In: Proc. 1994 Int. Symp. Liquid Metal Processing and Casting, September 1994, Santa Fe, New Mexico.

Mills, K C; Sridhar, S* (1999) Viscosities of iron and steelmaking slags. Ironmaking and Steelmaking, 26 (4). pp. 262-268.

Mulligan, D R; Gnaniah, S J P; Sims, G D (2000) Characterisation of the fibre-matrix interface by thermal analysis. NPL Report. CMMT(MN)060

Mulligan, D R; Gnaniah, S J P; Sims, G D (2003) Thermal analysis techniques for composites and adhesives (second edition). Measurement Good Practice Guide. 62

Mulligan, D R; Gnaniah, S J P; Sims, G D (2000) Thermal analysis techniques for composites and adhesives. Measurement Good Practice Guide. 32

N

Naftaly, M*; Jha, A*; Taylor, E R*; Mills, K C (1997) Viscosity measurement in halide melts. J. Non-Cryst. Solids, 213-21. pp. 106-112.

Nagl, M M*; Saunders, S R J; Guttmann, V* (1994) Experimental data on oxide fracture. Mater. High Temp., 12 (2-3). 163 - 168

O

Osgerby, S; Banks, J P (2006) Experimental aspects of small punch testing at elevated temperatures. NPL Report. DEPC-MPE 029

P

Pahlavanyali, S*; Rayment, A*; Roebuck, B; Drew, G*; Rae, C M F* (2008) Thermo-mechanical fatigue testing of superalloys using miniature specimens. Int. J. Fatigue, 30 (2). pp. 397-403.

Q

Quested, P N; Mills, K C; Brooks, R F; Day, A; Taylor, R*; Szelagowski, H* (1997) Physical property measurements for simulation modelling of heat and fluid flow during solidification. In: Proc. International Symposium on Liquid Metal Processing and Casting, February 1997, Santa Fe, USA.

Quested, P N; Mills, K C; Brooks, R F; Monaghan, B; Dinsdale, A T; Day, A; Richardson, M J; Andon, R J L; Taylor, R*; Szelagowski, H* (1997) Physical property measurements for the mathematical modelling of heat and fluid flow in solidification processes. Int. J. Thermophysics, 18 (2). pp. 471-480.

R

Rides, M; Allen, C R G; Dawson, A (2005) Measurement of heat transfer properties for polymer processing. NPL Report. DEPC-MN 035

S

Salmon, D R; Brandt, R*; Tye, R P* (2010) Pyroceram 9606, a certified ceramic reference material for high-temperature thermal transport properties: part 2 - certification measurements. Int. J. Thermophysics, 31 (2). pp. 355-373.

Salmon, D R; Tye, R P (2011) An inter-comparison of a steady state and transient methods for measuring the thermal conductivity of thin specimens of masonry materials. J. Build. Phys., 34 (3). pp. 247-261.

Salmon, D R; Tye, R P* (2010) Pyroceram 9606, a certified ceramic reference material for high-temperature thermal transport properties: part 1 - material selection and characterization. Int. J. Thermophysics, 31 (2). pp. 338-354.

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