来源:Journal of Composites Science 发布时间:2026/9/1 16:25:58
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文献清单:水泥混凝土复合材料 | MDPI Journal of Composites Science

期刊名:Journal of Composites Science

期刊主页:https://www.mdpi.com/journal/jcs

本文精选了近期发表在 J. Compos. Sci.期刊水泥混凝土复合材料领域的研究成果,内容涵盖绿色低碳制备、微观结构与纳米改性、多功能与智能化集成以及先进成型工艺等多个维度。通过对纤维增强增韧、骨料级配优化、3D 打印技术及数据驱动的强度预测模型等关键领域的深入探索,为突破传统材料瓶颈、推动建筑行业的绿色可持续发展提供了重要的理论支撑与技术路径。

1. A Comprehensive Review of Rheological Dynamics and Process Parameters in 3D Concrete Printing

3D混凝土打印流变动力学和工艺参数综述

http://www.mdpi.com/2504-477X/9/6/299

Si, W.; Khan, M.; McNally, C. A Comprehensive Review of Rheological Dynamics and Process Parameters in 3D Concrete Printing. J. Compos. Sci. 2025, 9, 299.

2. Establishing Benchmark Properties for 3D-Printed Concrete: A Study of Printability, Strength, and Durability

建立3D打印混凝土的基准性能:可打印性、强度和耐久性研究

http://www.mdpi.com/2504-477X/9/2/74

Sapata, A.; Šinka, M.; Šahmenko, G.; Korat Bensa, L.; Han?i?, L.; Šter, K.; Ru?evskis, S.; Bajāre, D.; Bos, F.P. Establishing Benchmark Properties for 3D-Printed Concrete: A Study of Printability, Strength, and Durability. J. Compos. Sci. 2025, 9, 74.

3. Recent Advancements in Polypropylene Fibre-Reinforced 3D-Printed Concrete: Insights into Mix Ratios, Testing Procedures, and Material Behaviour

聚丙烯纤维增强3D打印混凝土的最新进展:混合比例、测试程序和材料性能研究

http://www.mdpi.com/2504-477X/9/6/292

Hopkins, B.; Si, W.; Khan, M.; McNally, C. Recent Advancements in Polypropylene Fibre-Reinforced 3D-Printed Concrete: Insights into Mix Ratios, Testing Procedures, and Material Behaviour. J. Compos. Sci. 2025, 9, 292.

4. The Influence of Multi-Walled Carbon Nanotubes on the Pull-Off Strength of Polymer Concrete Overlays on Concrete Substrates with Sulfate Exposure

多壁碳纳米管对硫酸盐暴露混凝土基材上聚合物混凝土覆盖层拉拔强度的影响

http://www.mdpi.com/2504-477X/9/6/272

Akbarpour, A.; Volz, J.; Vemuganti, S. The Influence of Multi-Walled Carbon Nanotubes on the Pull-Off Strength of Polymer Concrete Overlays on Concrete Substrates with Sulfate Exposure. J. Compos. Sci. 2025, 9, 272.

5. Thermal, Mechanical, and Microstructural Properties of Novel Light Expanded Clay Aggregate (LECA)-Based Geopolymer Concretes

新型轻质膨胀粘土骨料(LECA)基地聚合物混凝土的热学、力学和微观结构性能

http://www.mdpi.com/2504-477X/9/2/69

Podnar, T.M.; Kravanja, G. Thermal, Mechanical, and Microstructural Properties of Novel Light Expanded Clay Aggregate (LECA)-Based Geopolymer Concretes. J. Compos. Sci. 2025, 9, 69.

6. Performance of Calcined Impure Kaolinitic Clay as a Partial Substitute for Portland Cement Concrete: A Review

煅烧杂质高岭土作为部分替代材料的性能波特兰水泥混凝土:综述

http://www.mdpi.com/2504-477X/9/4/145

Boakye, K.; Khorami, M. Performance of Calcined Impure Kaolinitic Clay as a Partial Substitute for Portland Cement Concrete: A Review. J. Compos. Sci. 2025, 9, 145.

7. Machine Learning Approach for Prediction and Reliability Analysis of Failure Strength of U-Shaped Concrete Samples Joined with UHPC and PUC Composites

基于机器学习的U型混凝土试件(UHPC和PUC连接)失效强度预测和可靠性分析方法复合材料

http://www.mdpi.com/2504-477X/9/1/23

Haruna, S.I.; Ibrahim, Y.E.; Umar, I.K. Machine Learning Approach for Prediction and Reliability Analysis of Failure Strength of U-Shaped Concrete Samples Joined with UHPC and PUC Composites. J. Compos. Sci. 2025, 9, 23.

8. Tensile Strength Predictive Modeling of Natural-Fiber-Reinforced Recycled Aggregate Concrete Using Explainable Gradient Boosting Models

基于可解释梯度提升模型的天然纤维增强再生骨料混凝土抗拉强度预测建模

http://www.mdpi.com/2504-477X/9/3/119

Cakiroglu, C.; Ahadian, F.; Bekda?, G.; Geem, Z.W. Tensile Strength Predictive Modeling of Natural-Fiber-Reinforced Recycled Aggregate Concrete Using Explainable Gradient Boosting Models. J. Compos. Sci. 2025, 9, 119.

9. A Bayesian Network Framework to Predict Compressive Strength of Recycled Aggregate Concrete

基于贝叶斯网络框架预测再生骨料混凝土的抗压强度

http://www.mdpi.com/2504-477X/9/2/72

Nguyen, T.-D.; Cherif, R.; Mahieux, P.-Y.; Bastidas-Arteaga, E. A Bayesian Network Framework to Predict Compressive Strength of Recycled Aggregate Concrete. J. Compos. Sci. 2025, 9, 72.

10. Effect of Polyethylene and Steel Fibers on the Fracture Behavior of Coral Sand Ultra-High Performance Concrete

聚乙烯和钢纤维对珊瑚砂超高性能混凝土断裂行为的影响

http://www.mdpi.com/2504-477X/9/9/493

Han, H.; Xue, X.; Hou, D.; Li, W.; Han, H.; Han, Y. Effect of Polyethylene and Steel Fibers on the Fracture Behavior of Coral Sand Ultra-High Performance Concrete. J. Compos. Sci. 2025, 9, 493.

11. Early Hydration Behaviours and Kinetics of Portland Cement Composites Incorporating Low-Calcium Circulating Fluidized Bed Fly Ash

掺入低钙循环流化床粉煤灰的波特兰水泥复合材料的早期水化行为和动力学

http://www.mdpi.com/2504-477X/9/12/671

Wu, C.-R.; Xiao, Z.-P.; Wei, J.-J.; Kou, S.-C.; Tang, M.-X. Early Hydration Behaviours and Kinetics of Portland Cement Composites Incorporating Low-Calcium Circulating Fluidized Bed Fly Ash. J. Compos. Sci. 2025, 9, 671.

12. Corrosion Characteristics and Strength Degradation Mechanism of Metro Steel Fiber-Reinforced Cementitious Materials Under the Low-Carbon Target

低碳目标下地铁钢纤维增强胶凝材料的腐蚀特性及强度退化机理研究

http://www.mdpi.com/2504-477X/9/9/463

Yuan, Z.; Chen, Z.; Yang, L.; Liu, B.; Liu, M.; Zhang, Y. Corrosion Characteristics and Strength Degradation Mechanism of Metro Steel Fiber-Reinforced Cementitious Materials Under the Low-Carbon Target. J. Compos. Sci. 2025, 9, 463.

13. Impermeability, Strength and Microstructure of Concrete Modified by Nano-Silica and Expansive Agent

纳米二氧化硅和膨胀剂改性混凝土的抗渗性、强度和微观结构

http://www.mdpi.com/2504-477X/9/3/108

Zeng, P.; Abbas, M.A.A.M.; Ran, X.; Li, P. Impermeability, Strength and Microstructure of Concrete Modified by Nano-Silica and Expansive Agent. J. Compos. Sci. 2025, 9, 108.

14. Performance Optimization of SBR-Modified Pervious Composite Incorporating Recycled Concrete Aggregates

掺入再生混凝土骨料的SBR改性透水复合材料的性能优化

http://www.mdpi.com/2504-477X/9/7/372

El-Mir, A.; Tannouri, P.; Assaad, J.J.; Nasr, D.; Ghannoum, M.; Barraj, F.; El-Hassan, H. Performance Optimization of SBR-Modified Pervious Composite Incorporating Recycled Concrete Aggregates. J. Compos. Sci. 2025, 9, 372.

15. Multi-Scale Experimental Investigation of UHPC Rheology: From Cement Paste to Fiber-Reinforced Mortar Scale

超高性能混凝土流变学的多尺度实验研究:从水泥浆到纤维增强砂浆尺度

http://www.mdpi.com/2504-477X/9/11/638

Addai-Nimoh, A.; Wei, J.; Khayat, K.H. Multi-Scale Experimental Investigation of UHPC Rheology: From Cement Paste to Fiber-Reinforced Mortar Scale. J. Compos. Sci. 2025, 9, 638.

期刊介绍

主编:Dr. Francesco Tornabene

Journal of Composites Science (ISSN 2504-477X) 是一个国际开源期刊,致力于发表复合材料领域的前沿研究,涵盖纤维增强复合材料、纳米复合材料、生物医学复合材料及能源复合材料等多个方向,并重点关注材料的建模、制造工艺与性能表征。目前,期刊已被 ESCI (Web of Science) 与 Scopus 等权威数据库收录,位于 JCR 材料科学-复合材料领域的 Q2 分区,CiteScore 工程综合领域的 Q1 分区。期刊旨在为复合材料研究者构建一个展示创新成果、促进国际学术交流的高效平台。

2025 Impact Factor:4.6

2025 CiteScore:6.7

Time to First Decision:13.9 Days

Acceptance to Publication:4.5 Days

 
 
 
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