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The Effect of Oxygen Content in Binderless Cokes for High-Density Carbon Blocks from Coal Tar Pitch

High-density carbon blocks are much lighter than metals and have excellent mechanical properties and are one of the materials garnering attention to replace existing metal parts. In this study, a binderless coke was produced by changing the flow rates of nitrogen and air as a carrier gas during heat...

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Autores principales: Park, Seungjoo, Lee, Seon Ho, Lee, Song Mi, Park, Jin-Woo, Kim, Sung-Soo, Jung, Doo-Hwan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8067829/
https://www.ncbi.nlm.nih.gov/pubmed/33917173
http://dx.doi.org/10.3390/ma14081832
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author Park, Seungjoo
Lee, Seon Ho
Lee, Song Mi
Park, Jin-Woo
Kim, Sung-Soo
Jung, Doo-Hwan
author_facet Park, Seungjoo
Lee, Seon Ho
Lee, Song Mi
Park, Jin-Woo
Kim, Sung-Soo
Jung, Doo-Hwan
author_sort Park, Seungjoo
collection PubMed
description High-density carbon blocks are much lighter than metals and have excellent mechanical properties and are one of the materials garnering attention to replace existing metal parts. In this study, a binderless coke was produced by changing the flow rates of nitrogen and air as a carrier gas during heat treatment of coal tar pitch and using this, a green body was formed at 150 MPa and carbonized to produce a high-density carbon block. We express the binderless coke produced in this way by N10A0, N7A3, N5A5, N3A7, N0A10 according to the ratio of nitrogen and air, and in the case of carbon block, we have added CB in front of it. We then considered the effect of oxygen content in the binderless cokes on the optical, chemical, and mechanical properties. It was observed that the produced binderless cokes develop into a dense mosaic structure with a small particle size as the air flow rate increased. To survey the change in oxygen content of the produced binderless coke, O1s and C1s regions were measured using X-ray photoelectric spectroscopy (XPS), and O1s/C1s was calculated. The O1s/C1s ratio steadily increased as the air flow rate increased, and in the case of N0A10, it increased about twice as much as that of N10A0 to 11.20%. β-resin has a very large effect on the mechanical strength of the carbon block in addition to air in the pitch. And in the case of CB-N0A10, it shows the best mechanical strength with a density of 1.72 g/cm(3), bending strength of 87 MPa, and shore hardness of 93 HSD.
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spelling pubmed-80678292021-04-25 The Effect of Oxygen Content in Binderless Cokes for High-Density Carbon Blocks from Coal Tar Pitch Park, Seungjoo Lee, Seon Ho Lee, Song Mi Park, Jin-Woo Kim, Sung-Soo Jung, Doo-Hwan Materials (Basel) Article High-density carbon blocks are much lighter than metals and have excellent mechanical properties and are one of the materials garnering attention to replace existing metal parts. In this study, a binderless coke was produced by changing the flow rates of nitrogen and air as a carrier gas during heat treatment of coal tar pitch and using this, a green body was formed at 150 MPa and carbonized to produce a high-density carbon block. We express the binderless coke produced in this way by N10A0, N7A3, N5A5, N3A7, N0A10 according to the ratio of nitrogen and air, and in the case of carbon block, we have added CB in front of it. We then considered the effect of oxygen content in the binderless cokes on the optical, chemical, and mechanical properties. It was observed that the produced binderless cokes develop into a dense mosaic structure with a small particle size as the air flow rate increased. To survey the change in oxygen content of the produced binderless coke, O1s and C1s regions were measured using X-ray photoelectric spectroscopy (XPS), and O1s/C1s was calculated. The O1s/C1s ratio steadily increased as the air flow rate increased, and in the case of N0A10, it increased about twice as much as that of N10A0 to 11.20%. β-resin has a very large effect on the mechanical strength of the carbon block in addition to air in the pitch. And in the case of CB-N0A10, it shows the best mechanical strength with a density of 1.72 g/cm(3), bending strength of 87 MPa, and shore hardness of 93 HSD. MDPI 2021-04-07 /pmc/articles/PMC8067829/ /pubmed/33917173 http://dx.doi.org/10.3390/ma14081832 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Park, Seungjoo
Lee, Seon Ho
Lee, Song Mi
Park, Jin-Woo
Kim, Sung-Soo
Jung, Doo-Hwan
The Effect of Oxygen Content in Binderless Cokes for High-Density Carbon Blocks from Coal Tar Pitch
title The Effect of Oxygen Content in Binderless Cokes for High-Density Carbon Blocks from Coal Tar Pitch
title_full The Effect of Oxygen Content in Binderless Cokes for High-Density Carbon Blocks from Coal Tar Pitch
title_fullStr The Effect of Oxygen Content in Binderless Cokes for High-Density Carbon Blocks from Coal Tar Pitch
title_full_unstemmed The Effect of Oxygen Content in Binderless Cokes for High-Density Carbon Blocks from Coal Tar Pitch
title_short The Effect of Oxygen Content in Binderless Cokes for High-Density Carbon Blocks from Coal Tar Pitch
title_sort effect of oxygen content in binderless cokes for high-density carbon blocks from coal tar pitch
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8067829/
https://www.ncbi.nlm.nih.gov/pubmed/33917173
http://dx.doi.org/10.3390/ma14081832
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