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The Effect of Silica Nanoparticles on Hot Corrosion of Steel - Ashwin Padmanaban Iyer
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2011, ISBN: 9783847304579

ID: 703084806

The effect of silica nanoparticles on corrosion of steel by molten carbonate eutectic (42.7% Li2CO3, K2CO3) was investigated. The experimental design was based on static coupon immersion methodology where a coupon (material under study, in this case a rectangular stainless steel specimen of SS304 with dimensions approximately 5X20X.6mm and weight .5gm) is exposed to a static corroding environment for predetermined periods of time. The testing times were 2, 4 and 6 weeks. The temperature during testing was maintained at a constant 520C. The instantaneous corrosion rates were determined by normalizing the mass loss with respect to time and area. The mass loss was determined by descaling the corroded steel coupons using concentrated hydrochloric acid. The instantaneous corrosion rates obtained from all three times showed a reduction in corrosion of steel by molten carbonate eutectics when doped with silica 1% by weight in comparison to the molten base carbonate eutectics. The results showed that doping the carbonate eutectic with silica nanoparticles (1% by weight) reduced the corrosion of steel by half in comparison to the corrosion without doping. The Effect of Silica Nanoparticles on Hot Corrosion of Steel Bücher > Fremdsprachige Bücher > Englische Bücher Taschenbuch 01.12.2011 Buch (fremdspr.), LAP Lambert Academic Publishing, .201

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The Effect of Silica Nanoparticles on Hot Corrosion of Steel - Ashwin Padmanaban Iyer
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2011, ISBN: 9783847304579

ID: 862614441

The effect of silica nanoparticles on corrosion of steel by molten carbonate eutectic (42.7% Li2CO3, K2CO3) was investigated. The experimental design was based on static coupon immersion methodology where a coupon (material under study, in this case a rectangular stainless steel specimen of SS304 with dimensions approximately 5X20X.6mm and weight .5gm) is exposed to a static corroding environment for predetermined periods of time. The testing times were 2, 4 and 6 weeks. The temperature during testing was maintained at a constant 520C. The instantaneous corrosion rates were determined by normalizing the mass loss with respect to time and area. The mass loss was determined by descaling the corroded steel coupons using concentrated hydrochloric acid. The instantaneous corrosion rates obtained from all three times showed a reduction in corrosion of steel by molten carbonate eutectics when doped with silica 1% by weight in comparison to the molten base carbonate eutectics. The results showed that doping the carbonate eutectic with silica nanoparticles (1% by weight) reduced the corrosion of steel by half in comparison to the corrosion without doping. The Effect of Silica Nanoparticles on Hot Corrosion of Steel Buch (fremdspr.) Taschenbuch 01.12.2011 Bücher>Fremdsprachige Bücher>Englische Bücher, LAP Lambert Academic Publishing, .201

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The Effect of Silica Nanoparticles on Hot Corrosion of Steel - Ashwin Padmanaban Iyer
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Ashwin Padmanaban Iyer:
The Effect of Silica Nanoparticles on Hot Corrosion of Steel - neues Buch

ISBN: 9783847304579

ID: 836832314

The effect of silica nanoparticles on corrosion of steel by molten carbonate eutectic (42.7% Li2CO3, K2CO3) was investigated. The experimental design was based on static coupon immersion methodology where a coupon (material under study, in this case a rectangular stainless steel specimen of SS304 with dimensions approximately 5X20X.6mm and weight .5gm) is exposed to a static corroding environment for predetermined periods of time. The testing times were 2, 4 and 6 weeks. The temperature during testing was maintained at a constant 520C. The instantaneous corrosion rates were determined by normalizing the mass loss with respect to time and area. The mass loss was determined by descaling the corroded steel coupons using concentrated hydrochloric acid. The instantaneous corrosion rates obtained from all three times showed a reduction in corrosion of steel by molten carbonate eutectics when doped with silica 1% by weight in comparison to the molten base carbonate eutectics. The results showed that doping the carbonate eutectic with silica nanoparticles (1% by weight) reduced the corrosion of steel by half in comparison to the corrosion without doping. The Effect of Silica Nanoparticles on Hot Corrosion of Steel Buch (fremdspr.) Bücher>Fremdsprachige Bücher>Englische Bücher, LAP Lambert Academic Publishing

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The Effect of Silica Nanoparticles on Hot Corrosion of Steel: Ashwin Padmanaban Iyer The Effect of Silica Nanoparticles on Hot Corrosion of Steel: Ashwin Padmanaban Iyer Bücher > Wissenschaft > Technik, LAP Lambert Academic Publishing

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