- [1] 王协彬. Improved functional stability of a coarse-grained Ti-50.8 at.% Ni shape memory alloy achieved by precipitation on dislocation networks. Scripta Materialia, 163, 57, 2019.
- [2] 王协彬. Effect of process parameters on the phase transformation behavior and tensile properties of NiTi shape memory alloys fabricated by selective laser melting. Additive Manufacturing, 101545, 2020.
- [3] 王协彬. Improved functional stability of a coarse-grained Ti-50.8at.% Ni shape memory alloy achieved by precipitation on dislocation networks. Scripta Materialia, 163, 57, 2019.
- [4] 王协彬. Effect of process parameters on the phase transformation behavior and tensile properties of NiTi shape memory alloys fabricated by selective laser melting. Additive Manufacturing, 36, 101545, 2020.
- [5] 高通. A high strength AlSi10Mg alloy fabricated by laser powder bed fusion with addition of Alsingle bondTisingle bondCsingle bondB master alloy powders. Materialia, 16, 101103, 2021.
- [6] 李小强. Improved superelastic stability of NiTi shape memory alloys through surface nano-crystallization followed by low temperature aging treatment. Intermetallics, 131, 107114, 2021.
- [7] 王协彬. Improved functional stability of a coarse-grained Ti-50.8 at.% Ni shape memory alloy achieved by precipitation on dislocation networks. SCRIPTA MATERIALIA, 163, 57, 2019.
- [8] 王协彬. Effect of process parameters on the phase transformation behavior and tensile properties of NiTi shape memory alloys fabricated by selective laser melting. Additive Manufacturing, 36, 2020.
- [9] 李小强. Improved superelastic stability of NiTi shape memory alloys through surface nano-crystallization followed by low temperature aging treatment. Intermetallics, 131, 2021.
- [10] 宋文龙. Experimental study on the cutting temperature of textured carbide tool embedded with graphite. INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 93, 3419, 2017.
- [11] 宋文龙. Cutting temperature analysis and experiment of Ti-MoS2/Zr-coated cemented carbide tool. INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 93, 799, 2017.
- [12] 丁军红. 低合金高强度钢板超声波探伤不合缺陷分析. 山东冶金, 第38卷, 23, 2016.
- [13] 崔国涛. 一种新型高强韧性H型钢的试验研究. 建筑材料学报, 第15卷第1期,2012年2月,pp103~106, 103, 2012.
- [14] 王作成. Effect of processing parameters on properties and microstructures of warm-rolled interstitial-free (IF) steel sheets. ADVANCES IN FRACTURE AND STRENGTH, PTS 1- 4, Vols. 297-300, 477, 2005.
- [15] 王协彬 , 孙杰 , 刘江伟 and 赵国群. Effect of process parameters on the phase transformation behavior and tensile properties of NiTi shape memory alloys fabricated by selective laser melting. Additive Manufacturing, 2020.
- [16] 王作成 and 王作成. 不同压下率低碳铝镇静钢板再结晶实验研究. 《材料工程》, 2013,9:45-49, 45, 2013.
- [17] 王作成 and 王作成. 可逆轧制生产DC04 钢板中的析出物与第二相粒子. 金属热处理, 40, 29, 2015.
- [18] 王作成 and 王作成. 合金元素对低合金高强度H 型钢Z 向性能的影响. 《材料热处理学报》, 2013,34(2):52-56, 52, 2013.
- [19] 王作成 and 王作成. 冷轧压下率对低碳铝镇静钢板组织及力学性能的影响. 《材料热处理学报》, 2012,33, 110, 2012.
- [20] 王作成 and 王作成. 二相粒子对低碳铝镇静钢织构演变规律的影响. 《材料工程》, 2012年第12期,pp45~49, 45, 2012.
