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Some physical properties of lentil seeds
Scopus
Toplam 209 atıf DOI
Several physical properties of lentil seed were evaluated as a function of moisture content. The average diameter, thickness, unit mass and volume of seed were 6·64 mm, 2·65 mm, 0·070 g and 49·08 mm3 respectively at 6·5% m.c.d.b. Studies on rewetted seed showed that as moisture content increased from 6·5 to 32·6% d.b., bulk density decreased from 1190 to 935 kg/m3, porosity increased from 27·4 to 32·0%, projected area increased from 56 to 82 mm2 and terminal velocity increased from 10·95 to 12·06 m/s. The static and dynamic coefficients of friction of lentil seed against galvanized sheet metal, plywood and rubber surfaces increased with moisture content in the range from 6·5 to 32·6% d.b. The largest coefficient of friction was against a rubber surface, ranging from 0·374 to 0·532. The effect of moisture content was as great as or greater than the difference between the surfaces. © 1996 Silsoe Research Institute.
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Physical properties of chick pea seeds
Scopus
Havuzumuzda 244 atıf almış
Several physical properties of chick pea seeds were evaluated as functions of moisture content. The average length, width, thickness, the geometric mean diameter, unit mass and volume of seed were 9.342 mm, 7.722 mm, 7.752 mm, 8.358 mm, 0.324 g and 0.238 cm3, respectively, at a moisture content of 5.2% d.b. Studies on rewetted seed showed that as moisture content increased from 5.2 to 16.5% d.b., bulk and kernel density decreased from 800 to 741.4 kg m-3 and from 1428 to 1368 kg m-3, respectively. With increasing moisture content, porosity increased from 43.97 to 45.8%, projected area from 1.16 to 1.42 cm2, angle of repose from 24.5 to 27.9° and terminal velocity from 8.3 to 9.8 m s-1. The rupture strength decreased as the moisture content increased and the highest rupture strength occurred while loading along the Z-axis. The static and dynamic coefficients of friction of chick pea seed against galvanized sheet metal, plywood and rubber surfaces increased with moisture content in the range from 5.2 to 16.5% d.b. The highest coefficient of friction was against a rubber surface, ranging from 0.44 to 0.76. © 2002 Silsoe Research Institute. Published by Elsevier Science Ltd. All rights reserved.
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Kurumlar (1)
Selçuk Üniversitesi
Selçuklu, Turkey