Effect Of Polyethylene Glycol And Silica-Based Flame Retardant Materials On Properties Of Ultraviolet Curable Palm Oil Resin

An ultraviolet curable palm oil resin (POR) was formulated by modifying palm oil with glycerol and reacted with glycidyl methacrylate (GMA). Polyethylene glycol (PEG) and silica based monomers (silanes) were employed in the formulation as softening and flame retardant agents. The silanes were vinyl...

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Main Author: Sua, Pei Ru
Format: Thesis
Language:English
Published: 2017
Subjects:
Online Access:http://eprints.usm.my/45493/1/SUA%20PEI%20RU.pdf
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author Sua, Pei Ru
author_facet Sua, Pei Ru
author_sort Sua, Pei Ru
collection USM
description An ultraviolet curable palm oil resin (POR) was formulated by modifying palm oil with glycerol and reacted with glycidyl methacrylate (GMA). Polyethylene glycol (PEG) and silica based monomers (silanes) were employed in the formulation as softening and flame retardant agents. The silanes were vinyl trimethoxysilane (VTMS), trimethoxy phenylsilane (TMPS) and tetramethoxy silane (TMOS). The physical, mechanical, thermal stability and flame retarding properties of Si-POR were studied. The results showed POR with PEG has smaller molecular weight and polydispersity index (PDI) ranged from 1.69 to 2.30. It was noticed that iodine number of POR was greater than 130g I2/100g oil and can be characterized as drying oil, though the iodine number was declined slightly in the addition of PEG.
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spelling usm.eprints-454932019-09-19T06:54:39Z http://eprints.usm.my/45493/ Effect Of Polyethylene Glycol And Silica-Based Flame Retardant Materials On Properties Of Ultraviolet Curable Palm Oil Resin Sua, Pei Ru T1-995 Technology(General) An ultraviolet curable palm oil resin (POR) was formulated by modifying palm oil with glycerol and reacted with glycidyl methacrylate (GMA). Polyethylene glycol (PEG) and silica based monomers (silanes) were employed in the formulation as softening and flame retardant agents. The silanes were vinyl trimethoxysilane (VTMS), trimethoxy phenylsilane (TMPS) and tetramethoxy silane (TMOS). The physical, mechanical, thermal stability and flame retarding properties of Si-POR were studied. The results showed POR with PEG has smaller molecular weight and polydispersity index (PDI) ranged from 1.69 to 2.30. It was noticed that iodine number of POR was greater than 130g I2/100g oil and can be characterized as drying oil, though the iodine number was declined slightly in the addition of PEG. 2017-06 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/45493/1/SUA%20PEI%20RU.pdf Sua, Pei Ru (2017) Effect Of Polyethylene Glycol And Silica-Based Flame Retardant Materials On Properties Of Ultraviolet Curable Palm Oil Resin. Masters thesis, Universiti Sains Malaysia.
spellingShingle T1-995 Technology(General)
Sua, Pei Ru
Effect Of Polyethylene Glycol And Silica-Based Flame Retardant Materials On Properties Of Ultraviolet Curable Palm Oil Resin
title Effect Of Polyethylene Glycol And Silica-Based Flame Retardant Materials On Properties Of Ultraviolet Curable Palm Oil Resin
title_full Effect Of Polyethylene Glycol And Silica-Based Flame Retardant Materials On Properties Of Ultraviolet Curable Palm Oil Resin
title_fullStr Effect Of Polyethylene Glycol And Silica-Based Flame Retardant Materials On Properties Of Ultraviolet Curable Palm Oil Resin
title_full_unstemmed Effect Of Polyethylene Glycol And Silica-Based Flame Retardant Materials On Properties Of Ultraviolet Curable Palm Oil Resin
title_short Effect Of Polyethylene Glycol And Silica-Based Flame Retardant Materials On Properties Of Ultraviolet Curable Palm Oil Resin
title_sort effect of polyethylene glycol and silica based flame retardant materials on properties of ultraviolet curable palm oil resin
topic T1-995 Technology(General)
url http://eprints.usm.my/45493/1/SUA%20PEI%20RU.pdf
work_keys_str_mv AT suapeiru effectofpolyethyleneglycolandsilicabasedflameretardantmaterialsonpropertiesofultravioletcurablepalmoilresin