[1] |
Dong J F, Wei G S, Zhu R, et al. Effect of the CO2 top-blowing ratio on the end of the converter. Chin J Eng, 2022, 44(9): 1476董建鋒, 魏光升, 朱榮, 等. CO2頂吹比例對轉爐終點控制的影響. 工程科學學報, 2022, 44(9):1476
|
[2] |
Zhang F J, Yang S F, Li J S, et al. Selection and key technologies of low-carbon steelmaking processes under the background of “Double Carbon”. Chin J Eng, 2022, 44(9): 1483張福君, 楊樹峰, 李京社, 等. “雙碳”背景下低碳排煉鋼流程選擇及關鍵技術. 工程科學學報, 2022, 44(9):1483
|
[3] |
Cui Z F, Xu A J, ShangGuan F Q. Low-carbon development strategy analysis of the domestic and foreign steel industry. Chin J Eng, 2022, 44(9): 1496崔志峰, 徐安軍, 上官方欽. 國內外鋼鐵行業低碳發展策略分析. 工程科學學報, 2022, 44(9):1496
|
[4] |
Wang L C, Tian J L, Ren J, et al. Effect of Ce/Mg addition on the cleanliness of M50-bearing steel. Chin J Eng, 2022, 44(9): 1507王禮超, 田家龍, 任吉, 等. Ce/Mg處理對M50軸承鋼潔凈度的影響. 工程科學學報, 2022, 44(9):1507
|
[5] |
Liu H Z, Zhang J, Zhang J, et al. First-principle study of the effect of cerium on the modification and corrosion of nonmetal inclusions in steel. Chin J Eng, 2022, 44(9): 1516劉瀚澤, 張靜, 張繼, 等. 稀土元素鈰對鋼中非金屬夾雜物改性和腐蝕影響的第一性原理研究. 工程科學學報, 2022, 44(9):1516
|
[6] |
Zhu L G, Zhang Q J. Fundamental research of the microalloying theory based on oxide metallurgy technology. Chin J Eng, 2022, 44(9): 1529朱立光, 張慶軍. 基于氧化物冶金的微合金化研究. 工程科學學報, 2022, 44(9):1529
|
[7] |
Wang X F, Li H, Cao D, et al. Progress in cleaning and purification of liquid steel technology based on fine heterogeneous phases. Chin J Eng, 2022, 44(9): 1538王曉峰, 栗紅, 曹東, 等. 基于微細異相鋼液潔凈化技術研究進展. 工程科學學報, 2022, 44(9):1538
|
[8] |
Cai Z Z, Zhu M Y. Corner crack control for thin slab continuous casting of microalloyed steel. Chin J Eng, 2022, 44(9): 1548蔡兆鎮, 朱苗勇. 微合金鋼薄板坯連鑄邊角裂紋控制. 工程科學學報, 2022, 44(9):1548
|
[9] |
Wen G H, Chen F H, Jiang W B, et al. Theory and application of “smart mold powders” for continuous casting of steel. Chin J Eng, 2022, 44(9): 1558文光華, 陳富杭, 蔣文波, 等. 連鑄結晶器“自適應保護渣”理論及應用. 工程科學學報, 2022, 44(9):1558
|
[10] |
Yang W K, Yang J, Song J L, et al. Formation mechanism of defects in the wall of a petroleum casing steel pipe. Chin J Eng, 2022, 44(9): 1566楊文魁, 楊健, 宋景凌, 等. 石油套管鋼管壁內缺陷的形成機理. 工程科學學報, 2022, 44(9):1566
|
[11] |
Lin L, Zeng J Q, Li S J, et al. Industrial test of smelting reduction for manganese ore in converter. Chin J Eng, 2022, 44(9): 1575林路, 曾加慶, 李雙江, 等. 轉爐錳礦熔融還原工業試驗研究. 工程科學學報, 2022, 44(9):1575
|
[12] |
Zhu G S, Han Y, Jiang G R, et al. Research and development progress of new cold rolled sheet steels of car body. Chin J Eng, 2022, 44(9): 1585朱國森, 韓赟, 蔣光銳, 等. 汽車車身用新型冷軋薄板研發進展. 工程科學學報, 2022, 44(9):1585
|
[13] |
Gu M Q, Xu A J, Liu X, et al. Dynamic, data-driven prediction model of molten steel temperature in the second blowing stage of a converter. Chin J Eng, 2022, 44(9): 1595谷茂強, 徐安軍, 劉旋, 等. 基于數據驅動的轉爐二吹階段鋼水溫度動態預測模型. 工程科學學報, 2022, 44(9):1595
|
[14] |
Wang Z L, Bao Y P, Gu C, et al. Key metallurgical technology for high-quality bearing steel production based on the nonaluminum deoxidation process. Chin J Eng, 2022, 44(9): 1607王仲亮, 包燕平, 顧超, 等. 基于非鋁脫氧工藝的高品質軸承鋼關鍵冶金技術研究. 工程科學學報, 2022, 44(9):1607
|