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Investigation on some mechanical aspects of safflower seed to the design of processing equipment

نویسنده:
رسول خدابخشیان کارگر
,
محسن شاکری
,
Rasool Khodabakhshian
,
Mohsen Shakeri
سال
: 2012
چکیده: In this research, mechanical aspects of whole safflower seed was measured in terms of seed

rupture force, deformation, modulus of elasticity and rupture energy. Safflower seeds were

quasi-statically loaded in vertical orientation with moisture contents in four levels: 4%, 8%,

14% and 20%; seed size in three levels: small, medium, and large; and two varieties: Golshid

and Afshan. The results showed that the force required for initiating seed rupture decreased

from 38.5 to 42.9 N and 36.87 to 40.8 N, while the rupture energy at seed rupture increased

from 197.13 to 259.14 Jm-3 and 264.87 to 322.06 Jm-3 and seed deformation increased from

1.03 to 1.48 mm and 1.15 to 1.52 mm with increase in moisture content from 4% to 20% d.b.,

for Golshid and Afshan, respectively. The average modulus of elasticity of safflower seed from

106.13 to 90.35 Mpa and 77.85 to 65.90 Mpa were obtained for moisture levels ranging from 4

to 20%, for Golshid and Afshan varieties, respectively. Investigating effect of size revealed that

all studied mechanical aspects of safflower seed increased as size of the seed increased from
یو آر آی: https://libsearch.um.ac.ir:443/fum/handle/fum/3341933
کلیدواژه(گان): Key words: Modulus of elasticity,Quasi-static loading,Rupture force,safflower seed
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    Investigation on some mechanical aspects of safflower seed to the design of processing equipment

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contributor authorرسول خدابخشیان کارگرen
contributor authorمحسن شاکریen
contributor authorRasool Khodabakhshianfa
contributor authorMohsen Shakerifa
date accessioned2020-06-06T13:06:30Z
date available2020-06-06T13:06:30Z
date issued2012
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3341933
description abstractIn this research, mechanical aspects of whole safflower seed was measured in terms of seed

rupture force, deformation, modulus of elasticity and rupture energy. Safflower seeds were

quasi-statically loaded in vertical orientation with moisture contents in four levels: 4%, 8%,

14% and 20%; seed size in three levels: small, medium, and large; and two varieties: Golshid

and Afshan. The results showed that the force required for initiating seed rupture decreased

from 38.5 to 42.9 N and 36.87 to 40.8 N, while the rupture energy at seed rupture increased

from 197.13 to 259.14 Jm-3 and 264.87 to 322.06 Jm-3 and seed deformation increased from

1.03 to 1.48 mm and 1.15 to 1.52 mm with increase in moisture content from 4% to 20% d.b.,

for Golshid and Afshan, respectively. The average modulus of elasticity of safflower seed from

106.13 to 90.35 Mpa and 77.85 to 65.90 Mpa were obtained for moisture levels ranging from 4

to 20%, for Golshid and Afshan varieties, respectively. Investigating effect of size revealed that

all studied mechanical aspects of safflower seed increased as size of the seed increased from
en
languageEnglish
titleInvestigation on some mechanical aspects of safflower seed to the design of processing equipmenten
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsKey words: Modulus of elasticityen
subject keywordsQuasi-static loadingen
subject keywordsRupture forceen
subject keywordssafflower seeden
journal titleJournal of Agricultural Technologyfa
pages39-48
journal volume8
journal issue1
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1025747.html
identifier articleid1025747
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