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פותח על ידי קלירמאש פתרונות בע"מ -
Screening duration and size distribution effects on sizing efficiency
Year:
1976
Authors :
פלר, רון
;
.
Volume :
21
Co-Authors:
Feller, R., Agricultural Research Organization, Bet-Dagan, Israel
Foux, A., Department of Mechanics, Technion-Israel Institute of Technology, Haifa, Israel
Facilitators :
From page:
347
To page:
353
(
Total pages:
7
)
Abstract:
A method is presented to express sizing efficiency as a function of screening duration and size distribution of the material. Particle size is determined by the use of sieves with apertures of the same shape as in the real process. Passage rate factors are defined for each size fraction. Sizing efficiency can be determined for any size distribution of the material. Experiments proved the applicability of the method for particles of uniform shape. Particle size relative to perforation size was found to be a significant factor affecting the passage rate, independent of the particle size. Application of the results to selection and adjustment of screens is discussed. © 1976.
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More details
DOI :
10.1016/0021-8634(76)90054-8
Article number:
Affiliations:
Database:
סקופוס
Publication Type:
מאמר
;
.
Language:
אנגלית
Editors' remarks:
ID:
23276
Last updated date:
02/03/2022 17:27
Creation date:
16/04/2018 23:58
Scientific Publication
Screening duration and size distribution effects on sizing efficiency
21
Feller, R., Agricultural Research Organization, Bet-Dagan, Israel
Foux, A., Department of Mechanics, Technion-Israel Institute of Technology, Haifa, Israel
Screening duration and size distribution effects on sizing efficiency
A method is presented to express sizing efficiency as a function of screening duration and size distribution of the material. Particle size is determined by the use of sieves with apertures of the same shape as in the real process. Passage rate factors are defined for each size fraction. Sizing efficiency can be determined for any size distribution of the material. Experiments proved the applicability of the method for particles of uniform shape. Particle size relative to perforation size was found to be a significant factor affecting the passage rate, independent of the particle size. Application of the results to selection and adjustment of screens is discussed. © 1976.
Scientific Publication
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