AbstractAbstract
[en] The mechanical properties of linear low density polyethylene/ ethylene vinyl acetate (LLDPE/ EVA) blend cross-linked using electron beam (EB) irradiation was studied. The indication of ultimate strength increment showed as the irradiation dose increased from 13 to 15 MPa and 9.8 to 11.5 MPa for LLDPE and LLDPE/ EVA respectively with the exposure from 60 kGy to 120 kGy. However, the presence of EVA in LLDPE/ EVA reduced the values of ultimate strength.In contrast, the gel content with the presence of EVA in LLDPE/ EVA is much higher than the LLDPE. Besides that, the morphological analysis, gel content and the electrical properties was studied to compare the effect of presence of EVA and the increment of irradiation exposed to the samples. Consequently, the addition of EVA in the blend not only aggravates the ultimate strength but increased the gel content of the blend due to amorphous region presence in the molecular structures. Meanwhile, the increment of irradiation dose indicated the same increment trend of mechanical and electrical properties for both formulated blends. (author)
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2016; 8 p; R&D Seminar 2016: Research and Development Seminar 2016; Bangi (Malaysia); 8-10 Nov 2016; Also available in Malaysian Nuclear Agency Document Delivery Center by email: mohdhafizal@nuclearmalaysia.gov.my; Oral presentation
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AbstractAbstract
[en] Curetron is a self-shielded, curtain type cockroft-walton electron beam accelerator with a low operation voltage of 0.2 MeV. It was obtained in August 1991 through cooperation with Japanese Government under JICA programme. Curetron was mainly used to support research works in the field of radiation curing of surface coatings and some activities on radiation modification of polymers. Curetron encountered malfunctions somewhere in 2012 due to vacuum system breakdown. Maintenance work slowly started in 2016 focusing on the diagnosis of Curetron machine breakdown. It was found during diagnosis that Curetron breakdown was not only due to vacuum system failure, but it was more extensive than originally thought. Electron gun system which is the integral part of Curetron was unable to start due to several interlocks failure namely vacuum system, cooling water system and conveyer system. Vacuum system failed to create a minimum required high vacuum environment of 1 x 10-5 Pascal in the vacuum chamber due to a number of factors which are oil backflow of rotary pump, turbo molecular pump (TMP) overheat, faulty vacuum valves and also the occurrence of vacuum leakages at window titanium foil and vacuum seals. Cooling water system encounter failures due to faulty contactor and disconnection of cooling water piping for TMP vacuum pump. Lastly, conveyer system failure was due to the breakage of pneumatic hoses, faulty switch buttons, and mainly due to programmable logic controller (PLC) failure. All of these failures contribute to Curetron machine malfunction and require extensive repair works. (author)
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2019; 13 p; NTC 2019: Nuclear Technical Convention 2019; Bangi (Malaysia); 22-24 Oct 2019; Available in Malaysian Nuclear Agency Document Delivery Center; Oral presentation
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Miscellaneous
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