发表论文
1.Dongsheng Zhang, Tao Zhu, Tianhao Zhang, Mingjie Mao, Jiabin Li. High-temperature performance and multi-scale toughening mechanism of coir fibre–reinforced MSWI bottom ash–GGBS based geopolymer composites[J]. Construction and Building Materials, 2025, 493, 143277. (中科院一区Top)
2.Dongsheng Zhang, Haifeng Zhu, Qiuning Yang, Mingjie Mao, Jiabin Li. Hydration kinetics, mechanical, and photocatalytic self-cleaning performance of permeable concrete reinforced with nano-TiO2 hydrosol[J]. Construction and Building Materials, 2025, 472, 140830. (中科院一区Top)
3.Dongsheng Zhang, Tao Zhu, Qiuning Yang, Mingjie Mao, Jiabin Li. Role of fly ash as fine aggregate replacement in the properties of concrete: A comprehensive study of rheological, mechanical, and microstructural properties[J]. Construction and Building Materials, 2025, 458, 139599. (中科院一区Top)
4.Dongsheng Zhang, Shuxiang Zhang, Yafan Wang, Mingjie Mao, Jiabin Li, Qiuning Yang. High-temperature behaviour of geopolymer composites containing carbon fibre and nano-silica: Mechanical, microstructure, and air-void characteristics[J]. Construction and Building Materials, 2024, 451, 138690. (中科院一区Top)
5.Dongsheng Zhang, Tao Zhu, Qiuning Yang, Veerle Vandeginste, Jiabin Li. Influence of ground granulated blast furnace slag on recycled concrete powder-based geopolymer cured at ambient temperature: Rheology, mechanical properties, reaction kinetics and air-void characteristics[J]. Construction and Building Materials, 2024, 438, 137190. (中科院一区Top)
6.Dongsheng Zhang, Tao Zhu, Qingyi Ai, Jiabin Li, Qiuning Yang. Performance of coal gangue concrete with fly ash and ground-granulated blast slag: Rheology, mechanical properties and microstructure[J]. Construction and Building Materials, 2024, 427, 136250. (中科院一区Top)
7.Dongsheng Zhang, Yangfan Wang, Tianhao Zhang, Qiuning Yang. Engineering and microstructural properties of carbon-fiber-reinforced fly-ash-based geopolymer composites[J]. Journal of Building Engineering, 2023, 79, 107883. (中科院二区Top)
8.Dongsheng Zhang, Qiuning Yang*, Yafan Wang, Jiabin Li. Effects of nano-SiO2 additives on carbon fiber-reinforced fly ash–slag geopolymer composites performance: Workability, mechanical properties, and microstructure[J]. Nanotechnology Reviews, 12 (1), 2023, 20230157. (中科院二区)
9.Dongsheng Zhang, Shuxiang Zhang, Bowen Huang, Qiuning Yang, Jiabin Li. Comparison of mechanical, chemical, and thermal activation methods on the utilisation of recycled concrete powder from construction and demolition waste[J]. Journal of Building Engineering, 2022, 61, 105295. (中科院二区Top)
10.Dongsheng Zhang, Qiuning Yang, Mingjie Mao, Jiabin Li. Carbonation performance of concrete with fly ash as fine aggregate after stress damage and high temperature exposure[J]. Construction and Building Materials, 2020, 242, 118125. (中科院一区Top)
11.Dongsheng Zhang, Mingjie Mao, Shangrong Zhang, Qiuning Yang. Influence of stress damage and high temperature on the freeze–thaw resistance of concrete with fly ash as fine aggregate[J]. Construction and Building Materials, 2019, 229, 116845. (中科院一区Top)
12.Dongsheng Zhang, Jasper Vitse, Veerle Vandeginste, Qiuning Yang, Jiabin Li. (2024, April). Study on the Fracture Performance of Carbon Fiber Reinforced Recycled Powder-Based Geopolymer Composites[C]. In RILEM Spring Convention and Conference (pp. 71-79). Cham: Springer Nature Switzerland. 2024. (会议论文)
13.翟文辉, 马亚鹏, 张东生, 朱涛, 毛明杰, 杨秋宁. 养护制度对3D打印砂浆性能影响及冻融损伤寿命预测[J].硅酸盐学报,2026,54(05):1611-1624.
14.牟高峰, 陈青亮, 朱海峰, 张东生, 杨秋宁, 毛明杰. 碳纤维增强煤矸石-矿渣基地聚合物力学性能演变与孔结构分析[J].复合材料学报.
15.刘向, 朱海峰, 张东生, 毛明杰, 杨秋宁. 3D打印参数对地聚物混凝土力学性能的影响及深度学习预测模型[J].材料导报,2026,40(08):136-144.
16.马亚鹏, 翟文辉, 张东生, 朱涛, 杨秋宁, 毛明杰. 复合外加剂对3D打印砂浆流变与建造性的协同机制及孔结构研究[J].材料导报,2025,39(17):35-42.
17.俞莉, 张树祥, 朱涛, 杨秋宁, 张东生.钢渣-矿粉基地聚合物的流变性能及其参数预测[J].建筑材料学报,2025,28(05):465-476.
18.杨正辉, 朱涛, 张东生, 杨秋宁, 毛明杰. 纳米Al2O3和钢纤维复合增强煤矸石-矿渣基地聚合物灌浆材料的性能研究[J].材料导报,2025,39(15):136-146.
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专利情况
1.张东生,朱涛,杨正辉,张树祥,杨秋宁. 一种室内调温外墙[P]. 中国, ZL 2023 1 0297847.X, 2025.(发明专利)
2.张东生, 杨秋宁,张树祥, 陈家林. 用于3D打印装配式建筑的逐层铺料设备[P]. 中国, ZL 2022 1 1116340.1, 2022.(发明专利)
3.张东生, 杨秋宁, 李佳彬, 毛明杰. Regeneriertes Mikropulver basierend auf synergistischer Modifikation durch physikalisches Kugelmahlen und thermische Anregung und Herstellungsverfahren davon[P]. 比利时, BE2022/5304, 2023.(发明专利)
4.张东生, 杨秋宁, 张树祥. A Coal Gangue Concrete with Fly Ash Instead of Fine Aggregate [P]. 南非, 2022/07839, 2022.(发明专利)
5.张东生, 杨秋宁. A Recycled Concrete with Fly Ash Instead of Fine Aggregate[P]. 南非, 2022/07840, 2022.(发明专利)
6.张东生, 吴志敏, 杨秋宁. An environment-friendly coal gangue mixture base course and its preparation method[P]. 南非, 2022/07842, 2022.(发明专利)
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