[1]李恩龙. 低合金结构钢在煤矿机械中的应用[J]. 煤矿机械, 2012, 33(9): 230-232. Li Enlong. Application of low alloy structure steel in coal mine machinery[J]. Coal Mine Machinery, 2012, 33(9): 230-232. [2]张 清. 磨机衬板的磨损和衬板用钢的发展[J]. 钢铁, 1988, 23(5): 60-66. Zhang Qing. Wear of mill liner and development of liner steels[J]. Aron and Steel, 1988, 23(5): 60-66. [3]李固成, 屈青山, 王安民. 矿用无钼镍耐磨蚀中铬合金钢衬板的研制与应用[J]. 中国铸造装备与技术, 2012(6): 28-31. Li Gucheng, Qu Qingshan, Wang Anmin. Developing and application of mine abrasion resistant chrome alloy steel lining board without molybdenum and nickel[J]. China Foundry Machinery and Technology, 2012(6): 28-31. [4]黄曼曼, 琚子来, 姜利坤. 碳含量对低铬合金钢耐磨性影响的研究[J]. 山东科学, 2013, 26(6): 31-34. Huang Manman, Ju Zilai, Jiang Likun. Carbon content denpendent wear resistance of low-chromium alloy steel[J]. Shangdong Science, 2013, 26(6): 31-34. [5]汪瑞俊, 杜晓东, 孙国栋, 等. 铬含量对Cr-Ni-Mo系低碳合金钢组织性能的影响[J]. 热加工工艺, 2007, 36(8): 15-17. Wang Ruijun, Du Xiaodong, Sun Guodong, et al. Effect of chromium content on structure and property of Cr-Ni-Mo low carbon alloy steel[J]. Hot Working Technology, 2007, 36(8): 15-17. [6]张新恩, 姜利坤, 郭建斌. 一种耐磨中铬合金钢热处理工艺研究[J]. 铸造, 2017, 66(6): 632-635. Zhang Xinen, Jiang Likun, Guo Jianbin. Research on heat treatment technology of wear-resistant medium chromium alloy steel[J]. Foundry, 2017, 66(6): 632-635. [7]刘庆冬, 褚于良, 彭剑超, 等. 回火马氏体中合金碳化物的3D原子探针表征III—粗化[J]. 金属学报, 2009, 45(11): 1297-1302. Liu Qingdong, Chu Yuliang, Peng Jianchao, et al. 3D atom probe characterization of alloy carbides in tempering marteninte III-coarsening[J]. Acta Metallurgica Sinica, 2009, 45(11): 1297-1302. |