2020
DOI: 10.1007/s11015-020-01052-2
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Study of the Effect of Microalloying on Microstructure and Mechanical Property Formation for Rolled Product of Strength Class K52 Produced Under CRU Conditions

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Cited by 3 publications
(3 citation statements)
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“…Recently, microalloying technology has been extensively studied to improve the cleanliness and ameliorate the microstructure characteristics of steels. [36][37][38][39][40] Mineura et al [41] reported that calcium treatment could effectively reduce the O and S contents in HNSS, while calcium treatment is not suitable for the production of bearing steel to prevent the fatigue fracture of bearing caused by calcium aluminate inclusions. Moreover, Li et al [42,43] reported that magnesium treatment could reduce the quantity of large-size inclusions, and dissolved Mg could promote the heterogeneous nucleation of carbides in H13 steel, thereby inhibiting the chain growth of carbides.…”
Section: Introductionmentioning
confidence: 99%
“…Recently, microalloying technology has been extensively studied to improve the cleanliness and ameliorate the microstructure characteristics of steels. [36][37][38][39][40] Mineura et al [41] reported that calcium treatment could effectively reduce the O and S contents in HNSS, while calcium treatment is not suitable for the production of bearing steel to prevent the fatigue fracture of bearing caused by calcium aluminate inclusions. Moreover, Li et al [42,43] reported that magnesium treatment could reduce the quantity of large-size inclusions, and dissolved Mg could promote the heterogeneous nucleation of carbides in H13 steel, thereby inhibiting the chain growth of carbides.…”
Section: Introductionmentioning
confidence: 99%
“…Steels with rather high carbon content are used for casing pipes and tubings (in comparison with gas and oil line pipes), what is explained by high requirements to their strength parameters as well as necessity to obtain rather low V т /V в relationship. It is very important to provide small axial segregation and high steel cleanness for non-metallic inclusions in manufacture of rolled products for casing pipes and tubings [1][2][3][4][5][6][7].…”
Section: Introductionmentioning
confidence: 99%
“…Это можно объяснить тем, что процесс ПХП достаточно сложный, многоступенчатый, зависящий от большого числа производственных (рис. 1), и выявить действительно значимые факторы, оказывающие влияние на возникновение коррозии, снижая тем самым количество бракованных единиц продукции, опытным путем не представляется возможным [3][4][5][6]. В самой общей формулировке задача исследования заключалась в том, чтобы выявить именно те производственные факторы, которые оказывают значимое влияние на количество брака, и провести анализ зависимостей количества брака от этих факторов, т. е., выражаясь математическим языком, построить уравнение регрессии количества брака по причине коррозии на значимые производственные факторы.…”
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