
By C. R. Woodcock DipTech, MSc, PhD, CEng, MIMechE, J. S. Mason BSc, PhD, CEng, FIMechE, FIMarE, MIMinE (auth.)
An realizing ofthe homes and the dealing with features of drinks and gases has lengthy been considered as a vital requirement for many practicing engineers. it's accordingly no longer incredible that, through the years, there was a customary visual appeal of books facing the basics of fluid mechanics, fluid movement, hydraulics and similar subject matters. what's superb is that there was no parallel improvement of the similar self-discipline of Bulk Solids dealing with, regardless of its expanding value in sleek the world over. it is just very lately based method of the instructing, and studying, of the topic has started to adapt. A cause of the sluggish emergence of Bulk Solids dealing with as an permitted subject of analysis in educational classes on mechanical, agricultural, chemical, mining and civil engineering might be that the perform is so frequently taken without any consideration. definitely the diversity of fabrics being dealt with in bulk is nearly never-ending, ranging in measurement from fantastic dirt to rocks, in worth from refuse to gold, and in temperature from deep-frozen peas to near-molten metal.
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Extra resources for Bulk Solids Handling: An Introduction to the Practice and Technology
Sample text
27. 20) Both of these parameters are of importance when designing for solids flow, as will be explained in Chapters 2 and 4. The slope of the yield locus at any point defines the dynamic 'angle of internal friction', ¢, at that condition. 27 the 'effective yield locus' is also shown. This is a straight line tangential to the Mohr circle for the initial consolidating load and passing through the origin. The slope of this line defines the 'effective angle of internal friction'. 27 should be prepared for a range of initial consolidating loads, resulting in a series of yield loci.
Powder Technol. 1, 369-373. 15. F. (1981) Tests on a very large shear cell. Bulk Solids Handling 1 (4), 743-746, 742. 16. Wilms, H. and Schwedes, 1. (1985) Interpretation ofring shear tests. Bulk Solids Handling 5 (5), 1017-1020. 17. R. e. (1985) A comparison between techniques for measuring the flow properties of ordinary portland cement. Zement-Kalk-Gips 38 (11), 671-674. 18. N. (1973) Dust Explosions and Fires, Chapman and Hall, London. Recommended further reading Allen, T. , Chapman and Hall, London.
Gravitational liquid sedimentation methods for powders and suspensions. Part 3: 1963. Air elutriation methods. Part 4: 1963. Optical microscope method. Part 5: 1983. Electrical sensing zone method (the Coulter principle). Part 6: 1985. Centrifugal liquid sedimentation methods for powders and suspensions. British Standards Institution, London. 6. BS 1796: 1976, Methods for the use of BS fine-mesh test sieves. British Standards Institution, London. 7. BS 812, Section 105. 1: 1985, Flakiness index.