Chun LV, Jie LIU. Research Progress of Polymer Fiber Reinforced 3D Printing Concrete Materials. [J]. Polymer Bulletin 35(7):39-47(2022)
DOI:
Chun LV, Jie LIU. Research Progress of Polymer Fiber Reinforced 3D Printing Concrete Materials. [J]. Polymer Bulletin 35(7):39-47(2022) DOI: 10.14028/j.cnki.1003-3726.2022.07.005.
Research Progress of Polymer Fiber Reinforced 3D Printing Concrete Materials
Polymer fiber materials have been widely used in the field of concrete technology due to their excellent properties. Using polymer fibers to replace traditional fibers such as steel fibers and carbon fibers in 3D printing concrete materials is an important way to reduce costs and improve material properties. The addition of polymer fiber reduces the fluidity of the concrete mixture
also endows it with good buildability
and also significantly enhances the flexural performance and toughness of the concrete. Adding different types of polymer fibers has little effect on the compressive strength of concrete. From the perspective of affecting the performance of 3D printing concrete materials
the performance and research status of 3D printing concrete materials mixed with polymer fibers were reviewed. Mainly from polyethylene (PE) fiber
polypropylene (PP) fiber
polyvinyl alcohol (PVA) fiber and other polymer fibers
the research status of the working performance
mechanical properties and durability of 3D printing concrete materials was summarized. At the same time
the bonding strength and anisotropy between concrete layers were summarized and analyzed. The problems of polymer fiber reinforced 3D printing concrete materials are put forward
and the development of polymer fibers in 3D printing concrete materials is prospected.
关键词
3D打印混凝土聚合物纤维工作性能力学性能耐久性能层间结合强度
Keywords
3D printing concretePolymer fiberWorkabilityMechanical propertyDurabilityInterlayer bonding strength
Preparation and Characterization of Poly(butylene adipate-co-terephthalate)/Poly(3-hydroxybutyrate-co-4-hydroxybutyrate) Blends
Research Progress of β Crystal Structures of Poly(3-hydroxybutyrate) and Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) and Their Relationship with Mechanical and Degradation Properties
Molecular Structure Design and Development Status of High Performance Polyimide Fiber
Design and Exploration of Comprehensive Experiment on Weather —Resistant Materials Aging in Teaching Polymer Physics Experiment
The Performance of Natural Rubber Composites Filled with Sulfonated Graphene
Related Author
No data
Related Institution
Xiaogan Esun New Material Co., Ltd
Shenzhen Esun Industrial Co., Ltd.
School of Materials Science and Engineering, Hunan Institute of Technology
Guangdong Huatong New Material Technology Co., Ltd.
Institute of Chemistry, Chinese Academy of Sciences