SIMULATION OF SEMI-AUTOGENOUS GRINDING (SAG) MILL USING CIRCULAR-DISKS-BASED MODEL

System of semi-autogenous grinding (SAG) mill is modeled in this work based on circular-disk objects, which represents not only the ground materials but also the mill liners. Interaction between these objects is through linear spring dash-pot force, which is solved numerically in soft-sphere scheme...

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Main Author: SARI - NIM : 20914022 , RAFIKA
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/23773
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:23773
spelling id-itb.:237732017-10-09T10:17:05ZSIMULATION OF SEMI-AUTOGENOUS GRINDING (SAG) MILL USING CIRCULAR-DISKS-BASED MODEL SARI - NIM : 20914022 , RAFIKA Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/23773 System of semi-autogenous grinding (SAG) mill is modeled in this work based on circular-disk objects, which represents not only the ground materials but also the mill liners. Interaction between these objects is through linear spring dash-pot force, which is solved numerically in soft-sphere scheme using molecular dynamics (MD) method. There is also force due to earth gravity. For ground materials a grain consists of several smaller grains, which are attached through some adhesive force. As the ground materials are smashed to the mill liners, when they reach maximum compression, they will be shattered into the smaller grains. Shattering process happens in a special materials motion known as cataracting mode. Friction is not considered in this work due to its complexity. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description System of semi-autogenous grinding (SAG) mill is modeled in this work based on circular-disk objects, which represents not only the ground materials but also the mill liners. Interaction between these objects is through linear spring dash-pot force, which is solved numerically in soft-sphere scheme using molecular dynamics (MD) method. There is also force due to earth gravity. For ground materials a grain consists of several smaller grains, which are attached through some adhesive force. As the ground materials are smashed to the mill liners, when they reach maximum compression, they will be shattered into the smaller grains. Shattering process happens in a special materials motion known as cataracting mode. Friction is not considered in this work due to its complexity.
format Theses
author SARI - NIM : 20914022 , RAFIKA
spellingShingle SARI - NIM : 20914022 , RAFIKA
SIMULATION OF SEMI-AUTOGENOUS GRINDING (SAG) MILL USING CIRCULAR-DISKS-BASED MODEL
author_facet SARI - NIM : 20914022 , RAFIKA
author_sort SARI - NIM : 20914022 , RAFIKA
title SIMULATION OF SEMI-AUTOGENOUS GRINDING (SAG) MILL USING CIRCULAR-DISKS-BASED MODEL
title_short SIMULATION OF SEMI-AUTOGENOUS GRINDING (SAG) MILL USING CIRCULAR-DISKS-BASED MODEL
title_full SIMULATION OF SEMI-AUTOGENOUS GRINDING (SAG) MILL USING CIRCULAR-DISKS-BASED MODEL
title_fullStr SIMULATION OF SEMI-AUTOGENOUS GRINDING (SAG) MILL USING CIRCULAR-DISKS-BASED MODEL
title_full_unstemmed SIMULATION OF SEMI-AUTOGENOUS GRINDING (SAG) MILL USING CIRCULAR-DISKS-BASED MODEL
title_sort simulation of semi-autogenous grinding (sag) mill using circular-disks-based model
url https://digilib.itb.ac.id/gdl/view/23773
_version_ 1822921010609913856