Mechanical impact in disk mill for producing controlled rice husk particle size by changing impactor shapes and disk rotation speeds Kesan mekanikal di kilang cakera untuk menghasilkan saiz zarah sekam padi terkawal dengan mengubah bentuk impak dan kelajuan putaran cakera

The purpose of this study was to evaluate regulation of mechanical impact (i.e. impactor sizes and shapes) on triangle, cylinder, and cube as well as disk rotation speed (from 600 to 1500 rpm) in disk mill for controlling size-reduction process. As a model of size-reduced material, rice husk was sel...

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Main Authors: Nandiyanto, A.B.D., Ragadhita, R., Sukmafitri, A., Bilad, M.R., Aziz, M., Yunas, J.
Format: Article
Published: Penerbit Universiti Kebangsaan Malaysia 2020
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098552248&doi=10.17576%2fjsm-2020-4912-05&partnerID=40&md5=f123cc70d5fdad76daacef2ef67ec8ea
http://eprints.utp.edu.my/29747/
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spelling my.utp.eprints.297472022-03-25T02:49:06Z Mechanical impact in disk mill for producing controlled rice husk particle size by changing impactor shapes and disk rotation speeds Kesan mekanikal di kilang cakera untuk menghasilkan saiz zarah sekam padi terkawal dengan mengubah bentuk impak dan kelajuan putaran cakera Nandiyanto, A.B.D. Ragadhita, R. Sukmafitri, A. Bilad, M.R. Aziz, M. Yunas, J. The purpose of this study was to evaluate regulation of mechanical impact (i.e. impactor sizes and shapes) on triangle, cylinder, and cube as well as disk rotation speed (from 600 to 1500 rpm) in disk mill for controlling size-reduction process. As a model of size-reduced material, rice husk was selected. The study was done by evaluating the final milling product size, which was completed by the measurement of energy impact during the milling process. Experimental results showed that the product size was controllable in the range of between 50 and 1000 μm. The impactor sizes and shapes influenced the contact diameter and area of impactor for making more materials being collided, whereas disk rotation speed led to giving more collision number (between rice husk and impactor) and increasing impact from the collision (due to less time contact during collision). This study provides an important information, which can be further generalized in the use of milling process as a tool for materials size-reduction and mechanochemical process. © 2020 Penerbit Universiti Kebangsaan Malaysia. All rights reserved. Penerbit Universiti Kebangsaan Malaysia 2020 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098552248&doi=10.17576%2fjsm-2020-4912-05&partnerID=40&md5=f123cc70d5fdad76daacef2ef67ec8ea Nandiyanto, A.B.D. and Ragadhita, R. and Sukmafitri, A. and Bilad, M.R. and Aziz, M. and Yunas, J. (2020) Mechanical impact in disk mill for producing controlled rice husk particle size by changing impactor shapes and disk rotation speeds Kesan mekanikal di kilang cakera untuk menghasilkan saiz zarah sekam padi terkawal dengan mengubah bentuk impak dan kelajuan putaran cakera. Sains Malaysiana, 49 (12). pp. 2927-2940. http://eprints.utp.edu.my/29747/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description The purpose of this study was to evaluate regulation of mechanical impact (i.e. impactor sizes and shapes) on triangle, cylinder, and cube as well as disk rotation speed (from 600 to 1500 rpm) in disk mill for controlling size-reduction process. As a model of size-reduced material, rice husk was selected. The study was done by evaluating the final milling product size, which was completed by the measurement of energy impact during the milling process. Experimental results showed that the product size was controllable in the range of between 50 and 1000 μm. The impactor sizes and shapes influenced the contact diameter and area of impactor for making more materials being collided, whereas disk rotation speed led to giving more collision number (between rice husk and impactor) and increasing impact from the collision (due to less time contact during collision). This study provides an important information, which can be further generalized in the use of milling process as a tool for materials size-reduction and mechanochemical process. © 2020 Penerbit Universiti Kebangsaan Malaysia. All rights reserved.
format Article
author Nandiyanto, A.B.D.
Ragadhita, R.
Sukmafitri, A.
Bilad, M.R.
Aziz, M.
Yunas, J.
spellingShingle Nandiyanto, A.B.D.
Ragadhita, R.
Sukmafitri, A.
Bilad, M.R.
Aziz, M.
Yunas, J.
Mechanical impact in disk mill for producing controlled rice husk particle size by changing impactor shapes and disk rotation speeds Kesan mekanikal di kilang cakera untuk menghasilkan saiz zarah sekam padi terkawal dengan mengubah bentuk impak dan kelajuan putaran cakera
author_facet Nandiyanto, A.B.D.
Ragadhita, R.
Sukmafitri, A.
Bilad, M.R.
Aziz, M.
Yunas, J.
author_sort Nandiyanto, A.B.D.
title Mechanical impact in disk mill for producing controlled rice husk particle size by changing impactor shapes and disk rotation speeds Kesan mekanikal di kilang cakera untuk menghasilkan saiz zarah sekam padi terkawal dengan mengubah bentuk impak dan kelajuan putaran cakera
title_short Mechanical impact in disk mill for producing controlled rice husk particle size by changing impactor shapes and disk rotation speeds Kesan mekanikal di kilang cakera untuk menghasilkan saiz zarah sekam padi terkawal dengan mengubah bentuk impak dan kelajuan putaran cakera
title_full Mechanical impact in disk mill for producing controlled rice husk particle size by changing impactor shapes and disk rotation speeds Kesan mekanikal di kilang cakera untuk menghasilkan saiz zarah sekam padi terkawal dengan mengubah bentuk impak dan kelajuan putaran cakera
title_fullStr Mechanical impact in disk mill for producing controlled rice husk particle size by changing impactor shapes and disk rotation speeds Kesan mekanikal di kilang cakera untuk menghasilkan saiz zarah sekam padi terkawal dengan mengubah bentuk impak dan kelajuan putaran cakera
title_full_unstemmed Mechanical impact in disk mill for producing controlled rice husk particle size by changing impactor shapes and disk rotation speeds Kesan mekanikal di kilang cakera untuk menghasilkan saiz zarah sekam padi terkawal dengan mengubah bentuk impak dan kelajuan putaran cakera
title_sort mechanical impact in disk mill for producing controlled rice husk particle size by changing impactor shapes and disk rotation speeds kesan mekanikal di kilang cakera untuk menghasilkan saiz zarah sekam padi terkawal dengan mengubah bentuk impak dan kelajuan putaran cakera
publisher Penerbit Universiti Kebangsaan Malaysia
publishDate 2020
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098552248&doi=10.17576%2fjsm-2020-4912-05&partnerID=40&md5=f123cc70d5fdad76daacef2ef67ec8ea
http://eprints.utp.edu.my/29747/
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score 13.18916