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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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Nutritional and physical properties of hackberry (Celtis australis L.)
Scopus
Havuzumuzda 87 atıf almış
Nutritional and physical properties of ripe hackberry fruits (Celtis australis L.) from Kastamonu were determined. Ash, crude oil, crude energy, crude fiber, crude protein and minerals (Na, P, K, Ca, Mn, B, Ba, Se, etc.) contents of completely ripe fruits were determined. Also, physical properties such as length and diameter of fruit, unit mass, volume of fruit, geometric mean diameter, sphericity, surface area, bulk density, fruit density, porosity, projected area, terminal velocity, 1000 fruits mass, static and dynamic coefficient of friciton were measured at three moisture content levels. The average length, diameter, unit mass, volume of fruit, the geometric mean diameter, sphericity and surface area were established as 9.34 mm, 8.07 mm, 0.233 g, 277.85 mm3, 8.37 mm, 0.89 and 206.4mm2 at 15.25%, respectively, moisture content (w.b.). Studies on rewetted fruit showed that as moisture content increased from 15.25% to 50.42% wet basis (w.b.), bulk density decreased from 595.1 to 535.9 kg/m3, fruit density increased from 826.1 to 1105.9 kg/m3. The porosity, projected area, terminal velocity, 1000 fruit mass increased from 30.97% to 53.84%, from 54.91 to 74.63mm2, from 4.73 to 10.47 m/s, from 247.5 to 594 g, respectively, for the same moisture increase. The coefficient of static friction on rubber, plywood and galvanized steel increased from 0.5 to 0.55, 0.41 to 0.54 and 0.30 to 0.48, respectively, when the fruit moisture content increased from 15.25 to 50.42%. The coefficient of dynamic friction increased from 0.36 to 0.5, 0.31 to 0.43 and 0.22 to 0.35 on rubber, plywood and galvanized steel, respectively, for the same moisture range. © 2002 Elsevier Science Ltd. All rights reserved.
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Kurumlar (1)
Selçuk Üniversitesi
Selçuklu, Turkey