2018
DOI: 10.15587/1729-4061.2018.125988
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Determining the physical-chemical characteristics of the carbon-thermal reduction of scale of tungsten high-speed steels

Abstract: Визначено фізикохімічні пе ретворення при вуглецевотер мічному відновленні техноген них оксидних відходів виробни цтва швидкоріжучої сталі Р18. Виявлено протікання хімічних реакцій відновлення та карбі доутворення за участю залі за та легуючих елементів. Від сутність фаз схильних до сублі мації, підвищена відновна здат ність, губчаста мікрострук тура забезпечують відносно ви сокий ступінь вилучення туго плавких елементів при викорис танні отриманного матеріалу як легуючої добавки Ключові слова: леговані тех но… Show more

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Cited by 10 publications
(20 citation statements)
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“…In this case, the presence of Cr 3 C 2 and Cr 23 C 6 carbides agrees well with the results reported in [7,17]. And the detection of double carbide with iron and chromium content (Fe, Cr) 7 C 3 is consistent with the results reported in [12]. The increase in processing temperature to 1,350 K and 1,450 K resulted in a decrease in the intensity of Cr 2 O 3 manifestation and an increase in the diffraction maxima of Cr 23 C 6 and (Fe, Cr) 7 C 3 with the manifestation of metallic Cr.…”
Section: Results Of Studying the Microstructure And Chemical Composupporting
confidence: 92%
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“…In this case, the presence of Cr 3 C 2 and Cr 23 C 6 carbides agrees well with the results reported in [7,17]. And the detection of double carbide with iron and chromium content (Fe, Cr) 7 C 3 is consistent with the results reported in [12]. The increase in processing temperature to 1,350 K and 1,450 K resulted in a decrease in the intensity of Cr 2 O 3 manifestation and an increase in the diffraction maxima of Cr 23 C 6 and (Fe, Cr) 7 C 3 with the manifestation of metallic Cr.…”
Section: Results Of Studying the Microstructure And Chemical Composupporting
confidence: 92%
“…Based on the results of phase analysis, doping elements are present not as separate compounds but as a solid solution in the Fe phase. The carbon reduction of highly doped refractory elements, including Cr, of technogenic oxide raw materials was studied by authors of [12]. It was established for the products with varying degrees of reduction that most of the doping elements were in the carbide iron compounds and the solid solution of α-Fe as replacement atoms.…”
Section: Literature Review and Problem Statementmentioning
confidence: 99%
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“…The possibility of the presence of a Fe phase, along with the oxide phases, in the scale is indicated by authors of work [5]. When investigating scale of steel P18 in paper [6], in contrast to the non-alloyed raw materials, the authors did not rule out the possibility of the presence of oxide compounds with the content of refractory alloying elements. This is important, since the higher Mo and W oxides have, at a temperature increase, a relatively high susceptibility to sublimation.…”
Section: Literature Review and Problem Statementmentioning
confidence: 99%
“…It should be noted that there are significant results in studying the composition of scale from the non-alloyed grades of steels, reported in papers [3-5]. In addition, there are certain results in studying the scale of a tungsten rapid cutting steel, which are reported by authors of work [6]. However, the demonstration of the refractory elements of W and Mo in the composition of phases and compounds in the scale of tungsten-molybdenum grades of rapid cutting steels is studied insufficiently.…”
Section: Literature Review and Problem Statementmentioning
confidence: 99%