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个人简介

2017.11-至今,暨南大学,先进耐磨蚀及功能材料研究院,副研究员; 2015.7-2017.10,航天材料及工艺研究所,工程师; 2010.9-2015.6,北京科技大学,新材料技术研究院,工学博士(硕博连读) 2006.9-2010.7,哈尔滨工程大学,材料科学与化学工程学院,工学学士 主持项目: 1.国家自然科学基金青年基金:严酷海洋环境稀土系高强镁合金防护涂层下界面腐蚀电化学行为与失效机制 (项目号:51701055) 2.航天系统内工艺开发项目:苛刻环境下轻质合金新型防护涂层体系研究(军工涉密) 参与项目: 1.金属防护涂层下锈蚀萌生、长大规律及对涂层失效的作用机制,国家自然科学基金(项目号:51071027); 2.先进超高强度不锈钢钝化膜稳定性及其主控机制研究,国家自然科学基金(项目号:51171023); 3. 316L不锈钢在高温高压水中沿晶应力腐蚀开裂裂尖钝化膜的微纳米尺度行为研究,国家自然科学基金(项目号:51201009); 4.重工业污染区输电线路杆塔和接地网腐蚀防治技术研究与示范,国家电网项目(负责重工业污染区用防护涂层开发); 5.海军舰船设备防腐蚀应用技术咨询项目,海军项目(军工涉密)。 专利: 1.输电铁塔表面防护用水性低表面处理涂料及制备方法发明专利 ZL201410728249.4

研究领域

材料自然及工业环境腐蚀;新型耐蚀材料;材料表面防护工艺

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1.Dongdong Song, Zhongwei Yin, Fengjuan Liu, et al. Effect of carbon nanotubes on the corrosion resistance of water-borne acrylic coatings [J]. Progress in Organic Coatings, 2017, 110:182-186. 2.Dongdong Song, Jin Gao, Xiaogang Li, et al. Evaluation of aging behavior of polypropylene in natural environment by principal component analysis [J]. Polymer Testing 2014, 33:131-137. 3.Hongxia Wan, Dongdong Song*, Dawei Zhang, et al. Corrosion effect of Bacillus cereus on X80 pipeline steel in a Beijing soil environment [J]. Bioelectrochemistry, 2017,121:18-26. 4.Hongxia Wan, Dongdong Song*, Xiaogang Li, et al. A new understanding of the failure of waterborne acrylic coatings [J]. RSC Adv., 2017, 7:38135-38148. 5.Hongxia Wan, Dongdong Song*, Xiaogang Li, et al. Effect of Zinc Phosphate on the Corrosion Behavior of Waterborne Acrylic Coating/Metal Interface [J]. Materials, 2017, 10(6):654. 6.Hongxia Wan, Dongdong Song*, Xiaogang Li, et al. Failure Mechanisms of the Coating/Metal Interface in Waterborne Coatings: The Effect of Bonding [J]. Materials, 2017, 10(4):397. 7.Dongdong Song, Jin Gao, Lin Shen, et al. The influence of aluminum tripolyphosphate on the protective behavior of an acrylic water-based paint applied to rusting steels [J]. Journal of Chemistry, 2015, 618971. 8.Dongdong Song, Jin Gao, Xiaogang Li, et al. Evaluation of Service Life of Polystyrene in Tropical Marine Environment by Principal Component Analysis [J]. Advance in Materials Science and Engineering, 2015, 604935.

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