[1]张剑平, 郑海忠, 陈卫华, 等. 基于创新创业能力培养的专业课程教学改革与实践——以《热处理原理与工艺》课程为例[J]. 金属热处理, 2019, 44(10): 227-229. Zhang Jianping, Zheng Haizhong, Chen Weihua, et al. Teaching reform and practice of specialized courses based on cultivation of innovation entrepreneurship——Taking “Heat Treatment Principle and Process”course as an example[J]. Heat Treatment of Metals, 2019, 44(10): 227-229. [2]王 鑫, 刘梦竹, 王永鹏, 等. 《金属学与热处理原理》课程教学改革实践[J]. 吉林化工学院学报, 2019, 36(2): 36-39. Wang Xin, Liu Mengzhu, Wang Yongpeng, et al. Educational reform exploration of the course metallurgy and heat treatment theory[J]. Journal of Jilin Institute of Chemical Technology, 2019, 36(2): 36-39. [3]吴海江, 王小明, 邹利华, 等. “热处理原理及工艺”课程教学改革研究[J]. 时代农机, 2016, 43(9): 125-126. Wu Haijiang, Wang Xiaoming, Zou Lihua, et al. Teaching reform for principle and technology of heat treatment course[J]. Times Agricultural Machinery, 2016, 43(9): 125-126. [4]马春阳, 丁俊杰, 邢子健, 等. “热处理原理及工艺”课程教学改革与实践[J]. 中国电力教育, 2011(33): 202-203. [5]李 伟, 张晓燕, 万明攀, 等. “热处理原理与工艺”课程实践教学改革探索[J]. 教育教学论坛, 2016(28): 131-132. [6]皮锦红, 周衡志, 赵秀明, 等. “新工科”背景下应用型本科金属热处理原理及工艺教学改革[J]. 中国冶金教育, 2020(1): 26-28. Pi Jinhong, Zhou Hengzhi, Zhao Xiuming, et al. Teaching reform of principles and technics of heat treatment on metals for application oriented undergraduate under background of “Emerging Engineering Education”[J]. China Metallurgical Education, 2020(1): 26-28. [7]张 毅, 柴 哲. 《金属热处理》课程教学改革探索[J]. 吉林教育, 2016(21): 6-7. [8]尹文红, 方晓英, 郭娜娜. 《金属热处理原理与工艺》教学改革探索[J]. 南方农机, 2019, 50(8): 102-104. [9]李 翔, 郑皓天. 新“三个面向”下的教学改革探讨——以“金属热处理原理”课程为例[J]. 教育教学论坛, 2021(17): 62-65. Li Xiang, Zheng Haotian. Discussion on the teaching reform under the new concept of“Three Facings”: Taking the course of metal heat treatment principle as an example[J]. Education and Teaching Forum, 2021(17): 62-65. [10]段园培, 张海涛, 李传瑞, 等. 浅谈热处理原理及工艺课程的教学策略[J]. 中国教育技术装备, 2013(3): 112-113. Duan Yuanpei, Zhang Haitao, Li Chuanrui, et al. Discussion on teaching strategy of course of principle and process of heat-treatment[J]. China Educational Technology and Equipment, 2013(3): 112-113. [11]张修庆. 金属学及热处理原理课程实验改进措施[J]. 中国现代教育装备, 2020(7): 57-59. Zhang Xiuqing. Improvement measures of experiment in metallurgy and heat treatment principle course[J]. China Modern Educational Equipment, 2020(7): 57-59. [12]Speer J, Matlock D K, De Cooman B C, et al. Carbon partitioning into austenite after martensite transformation[J]. Acta Materialia, 2003, 51(9): 2611-2622. [13]He B B, Hu B, Yen H W, et al. High dislocation density-induced large ductility in deformed and partitioned steels[J]. Science, 2017, 357(6355): 1029. [14]Zhang C, Xiong Z P, Yang D Z, et al. Heterogeneous quenching and partitioning from manganese-partitioned pearlite: Retained austenite modification and formability improvement[J]. Acta Materialia, 2022, 235: 118060. [15]龚 练. 金属学与热处理课程教学改革探索[J]. 科技资讯, 2018, 16(5): 135-137. [16]杨在志. 《金属学与热处理原理》课程教学改革与实践[J]. 教育教学论坛, 2013(41): 50-51. [17]李传瑞, 丁 丽, 王银凤. 热处理原理及工艺课程教学的改革与实践[J]. 时代教育(教育教学版), 2009(10): 27. [18]亓海全. “任务型”教学在《热处理原理与工艺》课堂授课中的改革与实践[J]. 科技视界, 2017(2): 165. [19]唐昌平, 吴 凯, 刘文辉, 等. 《金属热处理原理与工艺》课程综合实验的教学改革方法探索[J]. 教育现代化, 2018, 5(24): 70-71. [20]谭元标, 雷源源, 赵 飞, 等. 《热处理原理及工艺》课程教学改革研究[J]. 教育教学论坛, 2018(34): 142-143. Tan Yuanbiao, Lei Yuanyuan, Zhao Fei, et al. A study on course teaching reform of Principle and Technology of Heat Treatment[J]. Education and Teaching Forum, 2018(34): 142-143. |