The Experts below are selected from a list of 29787 Experts worldwide ranked by ideXlab platform
Hassan El-shall - One of the best experts on this subject based on the ideXlab platform.
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Novel supercritical fluid processing techniques for the production of an aerosol
Powder Technology, 2009Co-Authors: S. Tedeschi, Nathanael Ian Stevens, David Cepeda, Yang-yao Lee, Kevin W. Powers, Madhav Ranade, Hassan El-shallAbstract:Powder Technology 191 (2009) 188-193. doi:10.1016/j.powtec.2008.10.007Received by publisher: 2008-05-06Harvest Date: 2016-01-04 12:20:38DOI: 10.1016/j.powtec.2008.10.007Page Range: 188-19
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Controlling unconfined yield strength in a humid environment through surface modification of Powders
Powder Technology, 2009Co-Authors: N. Stevens, Brij Moudgil, Kevin Powers, S. Tedeschi, Hassan El-shallAbstract:Powder Technology 191 (2009) 170-175. doi:10.1016/j.powtec.2008.10.001Received by publisher: 2008-04-07Harvest Date: 2016-01-04 12:20:38DOI: 10.1016/j.powtec.2008.10.001Page Range: 170-17
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Effect of synthesis conditions on preparation of nickel metal nanoPowders via hydrothermal reduction technique
Powder Technology, 2007Co-Authors: E.a. Abdel-aal, S.m. Malekzadeh, Mohamed M. Rashad, Ayman A. El-midany, Hassan El-shallAbstract:Powder Technology 171 (2007) 63-68. doi:10.1016/j.powtec.2006.09.013Received by publisher: 2006-06-05Harvest Date: 2016-01-04 12:20:38DOI: 10.1016/j.powtec.2006.09.013Page Range: 63-6
Kerry Johanson - One of the best experts on this subject based on the ideXlab platform.
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The flow behavior of the liquid/Powder mixture, theory and experiment II: Effect of the friction force
Powder Technology, 2010Co-Authors: Yakov Rabinovich, Kerry Johanson, Brij MoudgilAbstract:Powder Technology 204 (2010) 180-187. doi:10.1016/j.powtec.2010.05.035Received by publisher: 2009-05-13Harvest Date: 2016-01-04 12:20:38DOI: 10.1016/j.powtec.2010.05.035Page Range: 180-18
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Measurement of K-values in Diamondback Hoppers using pressure sensitive pads
Powder Technology, 2004Co-Authors: Kerry Johanson, Ray BucklinAbstract:Powder Technology 140 (2004) 122-130. doi:10.1016/j.powtec.2004.01.002Received by publisher: 2003-10-04Harvest Date: 2016-01-04 12:20:37DOI: 10.1016/j.powtec.2004.01.002Page Range: 122-13
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Relationship between particle scale capillary forces and bulk unconfined yield strength
Powder Technology, 2003Co-Authors: Kerry Johanson, Yakov I. Rabinovich, Brij M. Moudgil, Kristen Breece, Havala TaylorAbstract:Powder Technology 138 (2003) 13-17. doi:10.1016/j.powtec.2003.08.0372016-03-04T18:46:15
Jan Van Humbeeck - One of the best experts on this subject based on the ideXlab platform.
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NiTiCu shape memory alloy produced by Powder Technology
Journal of Alloys and Compounds, 2007Co-Authors: Tomasz Goryczka, Jan Van HumbeeckAbstract:Abstract The main aim of presented work was to find the sintering conditions (temperature and time) for manufacturing of a Ni(50−X)Ti50CuX alloy (where X = 2, 3, 5, 10, 15, 20 and 25 at%) by Powder Technology. Various conditions of sintering considering temperature and time were applied to compacted Powders. Sintering temperature varied from 850 to 1100 °C and sintering time was chosen from a range of 5–50 h, respectively. Microstructure, structure, chemical composition and thermal behavior of sintered blends were studied by scanning electron microscopy (SEM), differential scanning calorimetry (DSC) and X-ray diffraction. Homogenous alloys, containing lower addition of copper (less than 10 at%), were sintered at 940 °C for 7 h. For higher copper content (10–25 at%) lower sintering temperature 850 °C but longer sintering time was preferred (20 h). The quality of the alloy was characterized by porosity and density. In sintered blends non-transformable phases Ti2(Ni,Cu) and (Ni,Cu)3Ti, which posses the crystal structure of Ti2Ni and Cu3Ti, respectively, were found. Despite the fact that same sintering conditions lead to an increase of inhomogeneity all sintered alloys reveal the presence of the reversible martensitic transformation. Obtained results allowed to optimize sintering condition for NiTiCu shape memory alloy manufacturing.
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Characterization of a NiTiCu shape memory alloy produced by Powder Technology
2006Co-Authors: Tomasz Goryczka, Jan Van HumbeeckAbstract:AbstrAct Purpose: The main aim of presented work was to find a sintering conditions (temperature and time) for manufacturing of a Ni(1-X)Ti50CuX alloy (where X = 2; 3; 5; 10; 15; 20 and 25at%.) by Powder Technology. Design/methodology/approach: Various conditions of sintering considering temperature and time were applied to compacted Powders. Sintering temperature varied from 850°C to 1100°C and sintering time was chosen from a range of 5 to 50 hours, respectively. Microstructure, structure, chemical composition and thermal behavior of sintered blends were studied by scanning electron microscopy (SEM), differential scanning calorimetry (DSC) and X-ray diffraction. Findings: Homogenous alloys, containing lower addition of copper (less than 10 at%), were sintered at 940°C for 7 hours. For higher copper content (10-25at%) lower sintering temperature 850 0 C but longer sintering time was preferred (20 hours). The quality of the alloy was characterized by porosity and density. In sintered blends non-transformable phases Ti
Brian Scarlett - One of the best experts on this subject based on the ideXlab platform.
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Visualization of the shear region in a cohesive Powder by scanning with a polarized neutron beam
Powder Technology, 2005Co-Authors: R.j.m. Janssen, Brian Scarlett, Wicher H. Kraan, N.h. Van Dijk, M.th. RekveldtAbstract:Powder Technology 159 (2005) 87-94. doi:10.1016/j.powtec.2005.01.021Received by publisher: 2004-02-04Harvest Date: 2016-01-04 12:20:38DOI: 10.1016/j.powtec.2005.01.021Page Range: 87-9
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Measurement and characterization of particle strength using a new robotic compression tester
Powder Technology, 2004Co-Authors: Ramanan Pitchumani, O. Zhupanska, Gabriel M.h Meesters, Brian ScarlettAbstract:Powder Technology 143 (2004) 56-64. doi:10.1016/j.powtec.2004.04.007Received by publisher: 0000-01-01Harvest Date: 2016-01-04 12:20:38DOI: 10.1016/j.powtec.2004.04.007Page Range: 56-6
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Failure mechanism determination for industrial granules using a repeated compression test
Powder Technology, 2003Co-Authors: Willem J Beekman, Gabrie M.h Meesters, Todd Becker, Alfred Gaertner, Mark Gebert, Brian ScarlettAbstract:Powder Technology 130 (2003) 367-376. doi:10.1016/S0032-5910(02)00238-32016-03-04T18:46:15
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Determining granule strength as a function of moisture content
Powder Technology, 2002Co-Authors: Daan Verkoeijen, Gabriel Marinus Henricus Meesters, Paul H.w Vercoulen, Brian ScarlettAbstract:Powder Technology 124 (2002) 195-200. doi:10.1016/S0032-5910(02)00019-02016-03-04T18:46:15
Brij M. Moudgil - One of the best experts on this subject based on the ideXlab platform.
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Gd nanoparticulates: from magnetic resonance imaging to neutron capture therapy
Advanced Powder Technology, 2007Co-Authors: Parvesh Sharma, Scott C. Brown, Glenn A. Walter, Swadeshmukul Santra, Edward W. Scott, Hideki Ichikawa, Yoshinobu Fukumori, Brij M. MoudgilAbstract:Advanced Powder Technology 18 (2007) 663-698. doi:10.1163/156855207782515030Received by publisher: 2007-05-15Harvest Date: 2016-01-04 12:23:00DOI: 10.1163/156855207782515030Page Range: 663-69
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Colloidal dispersions : Structure, stability and geometric confinement
Powder Technology, 2005Co-Authors: Darsh T. Wasan, Alex Nikolov, Brij M. MoudgilAbstract:Powder Technology 153 (2005) 135-141. doi:10.1016/j.powtec.2004.12.005Received by publisher: 2004-06-09Harvest Date: 2016-01-04 12:20:38DOI: 10.1016/j.powtec.2004.12.005Page Range: 135-14
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Relationship between particle scale capillary forces and bulk unconfined yield strength
Powder Technology, 2003Co-Authors: Kerry Johanson, Yakov I. Rabinovich, Brij M. Moudgil, Kristen Breece, Havala TaylorAbstract:Powder Technology 138 (2003) 13-17. doi:10.1016/j.powtec.2003.08.0372016-03-04T18:46:15