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Research Papers

SOME FUNDAMENTAL STUDIES IN THE COLD COMPACTION OF PLASTICALLY DEFORMING SOLIDS

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Pages 20-35 | Published online: 10 Nov 2014

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BRUNEL EILIAZADEH, BRIAN J. BRISCOE, YONG SHENG & KENDAL PITT. (2003) Investigating Density Distributions for Tablets of Different Geometry During the Compaction of Pharmaceuticals. Particulate Science and Technology 21:4, pages 303-316.
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Frank Waimer, Markus Krumme, Peter Danz, Ulrich Tenter & Peter C. Schmidt. (1999) The Influence of Engravings on the Sticking of Tablets. Investigations with an Instrumented Upper Punch. Pharmaceutical Development and Technology 4:3, pages 369-375.
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P. R. Marshall. (1968) The production of powder-metallurgy parts. Metallurgical Reviews 13:1, pages 53-72.
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Articles from other publishers (17)

DAVID SIXSMITH & DAVID MCCLUSKEY. (1981) The effect of punch tip geometry on powder movement during the tableting process. Journal of Pharmacy and Pharmacology 33:1, pages 79-81.
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K Ridgway, M E Aulton & P H Rosser. (1970) The surface hardness of tablets. Journal of Pharmacy and Pharmacology 22:Supplement_1, pages 70S-78S.
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C J Lewis & David Train. (1965) An investigation of die wall friction during the compaction of powders. Journal of Pharmacy and Pharmacology 17:1, pages 1-9.
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E Shotton & D Ganderton. (1961) The Strength of Compressed Tablets. Journal of Pharmacy and Pharmacology 13:Supplement_1, pages 144T-152T.
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Vivek Dave & Vikas Moolchandani. 2008. Pharmaceutical Dosage Forms - Tablets. Pharmaceutical Dosage Forms - Tablets 555 630 .
Vivek Dave & Vikas Moolchandani. 2008. Pharmaceutical Dosage Forms - Tablets, Third Edition. Pharmaceutical Dosage Forms - Tablets, Third Edition 555 630 .
Eric Doelker & Danielle Massuelle. (2004) Benefits of die-wall instrumentation for research and development in tabletting. European Journal of Pharmaceutics and Biopharmaceutics 58:2, pages 427-444.
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Helena Olsson, Åsa Adolfsson & Christer Nyström. (1996) Compaction and measurement of tablets in liquids with different dielectric constants for determination of bonding mechanisms—Evaluation of the concept. International Journal of Pharmaceutics 143:2, pages 233-245.
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Ragnar Ek, Philip Wormald, Jan östelius, Tommy Iversen & Christer Nyström. (1995) Crystallinity index of microcrystalline cellulose particles compressed into tablets. International Journal of Pharmaceutics 125:2, pages 257-264.
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M. Eriksson & G. Alderborn. (1994) Mechanisms for post-compaction changes in tensile strength of sodium chloride compacts prepared from particles of different dimensions. International Journal of Pharmaceutics 109:1, pages 59-72.
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P.F. Thomson. (1986) Densification of sintered metal compacts by cold deformation. Journal of Mechanical Working Technology 13:2, pages 219-227.
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M.B. James & J.M. Newton. (1983) The determination of the coefficient of dynamic friction of organic powder compacts on steel. Powder Technology 34:1, pages 29-37.
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Paul J. Jarosz & Eugene L. Parrott. (1982) Factors Influencing Axial and Radial Tensile Strengths of Tablets. Journal of Pharmaceutical Sciences 71:6, pages 607-614.
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E. Shotton & B.A. Obiorah. (1975) Effect of Physical Properties on Compression Characteristics. Journal of Pharmaceutical Sciences 64:7, pages 1213-1216.
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S.S. Jayasinghe, N. Pilpel & C.F. Harwood. (1970) The effect of temperature and compression on the cohesive properties of particulate solids. Materials Science and Engineering 5:5, pages 287-294.
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Kempton H. Roll & Peter K. JohnsonPhillip M. Leopold & Russell C. Nelson. 1968. Iron Powder Metallurgy. Iron Powder Metallurgy 184 199 .
J. A. Hersey. (1965) Problems of powder flow in tabletting processes. Rheologica Acta 4:3, pages 235-239.
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