Post-treatment by sodium silicate after zinc phosphating on cold-rolled steel
Post-treatment by sodium silicate after zinc phosphating on cold-rolled steel was studied. The steel substrates were firstly phosphated in a zinc-phosphating bath containing ZnO, NaF, H 3PO 4 and Ni(NO 3)...
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th-cmuir.6653943832-514282018-09-04T06:14:46Z Post-treatment by sodium silicate after zinc phosphating on cold-rolled steel Supunsa Dech-Oup DegreesSir Thaiwatthana Torranin Chairaungsri Biochemistry, Genetics and Molecular Biology Chemistry Materials Science Mathematics Physics and Astronomy Post-treatment by sodium silicate after zinc phosphating on cold-rolled steel was studied. The steel substrates were firstly phosphated in a zinc-phosphating bath containing ZnO, NaF, H 3PO 4 and Ni(NO 3) 2 6H 2O under controlled conditions. Post-treatment by sodium silicate was consequently performed by varying the sodium silicate concentration and immersing time in the range of 33.3-100 wt% and 1-10 minutes, respectively. The coating layers before and after post-treatment were characterised by X-ray diffractometry and scanning electron microscopy-energy dispersive X-ray microanalysis. The phosphated layer was formed to be mainly hopeite and a minority of phosphophyllite, whereas the coating after post-treatment is mainly amorphous sodium silicate. The optimum post-treatment condition was using the 33.3 wt% sodium silicate solution at 5 minutes immersing time, by which an increase in corrosion resistance can be adequately obtained after post-treatment. 2018-09-04T06:01:46Z 2018-09-04T06:01:46Z 2012-01-01 Journal 01252526 2-s2.0-84856583132 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84856583132&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/51428 |
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Biochemistry, Genetics and Molecular Biology Chemistry Materials Science Mathematics Physics and Astronomy Supunsa Dech-Oup DegreesSir Thaiwatthana Torranin Chairaungsri Post-treatment by sodium silicate after zinc phosphating on cold-rolled steel |
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Post-treatment by sodium silicate after zinc phosphating on cold-rolled steel was studied. The steel substrates were firstly phosphated in a zinc-phosphating bath containing ZnO, NaF, H 3PO 4 and Ni(NO 3) 2 6H 2O under controlled conditions. Post-treatment by sodium silicate was consequently performed by varying the sodium silicate concentration and immersing time in the range of 33.3-100 wt% and 1-10 minutes, respectively. The coating layers before and after post-treatment were characterised by X-ray diffractometry and scanning electron microscopy-energy dispersive X-ray microanalysis. The phosphated layer was formed to be mainly hopeite and a minority of phosphophyllite, whereas the coating after post-treatment is mainly amorphous sodium silicate. The optimum post-treatment condition was using the 33.3 wt% sodium silicate solution at 5 minutes immersing time, by which an increase in corrosion resistance can be adequately obtained after post-treatment. |
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Supunsa Dech-Oup DegreesSir Thaiwatthana Torranin Chairaungsri |
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Supunsa Dech-Oup DegreesSir Thaiwatthana Torranin Chairaungsri |
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Supunsa Dech-Oup |
title |
Post-treatment by sodium silicate after zinc phosphating on cold-rolled steel |
title_short |
Post-treatment by sodium silicate after zinc phosphating on cold-rolled steel |
title_full |
Post-treatment by sodium silicate after zinc phosphating on cold-rolled steel |
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Post-treatment by sodium silicate after zinc phosphating on cold-rolled steel |
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Post-treatment by sodium silicate after zinc phosphating on cold-rolled steel |
title_sort |
post-treatment by sodium silicate after zinc phosphating on cold-rolled steel |
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2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84856583132&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/51428 |
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