Low-viscosity and easy-pumping ultrahigh performance concrete and preparation method thereof
An ultra-high-performance concrete technology, applied in the field of building materials, can solve problems such as high viscosity, poor pumping performance, and difficult large-scale construction, and achieve the effects of high fluidity, reduced cement consumption, and reduced pumping resistance
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2019-08-16
Smart Images

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Abstract
Description
technical field
[0001] The invention belongs to the technical field of building materials and relates to an ultra-high performance concrete, in particular to a low-viscosity and easy-to-pump ultra-high performance concrete and a preparation method thereof. Background technique
[0002] Ultra-high performance concrete (UHPC) has excellent properties such as ultra-high strength, high toughness, high impermeability, high corrosion resistance and high explosion resistance, which can well meet the needs of lightweight, high-rise, large-scale civil engineering structures. The requirements of spanning and high durability have important strategic significance and broad application prospects in major or special projects such as long-span bridges, thin-walled structures, national defense projects, and deep-water offshore platforms. Reactive Powder Concrete (RPC) is the main representative of ultra-high-performance concrete, which mainly improves the compactness through a large amount ...
Examples
Embodiment 1
[0103] In Example 1, the admixture component is silica fume, microbeads and filler mixed in a mass ratio of 80:70:300; the filler component and the mass ratio of each component are fly ash: finely ground mineral powder: quartz powder= 80:120:100; the thixotropic enhancer is an inorganic thixotropic enhancer and an organic thixotropic enhancer mixed in a mass ratio of 10:5, and the organic thixotropic enhancer is propylene glycol alginate; the water reducer is PCE1; the fiber is Straight steel fibers and hook-end fibers are mixed in a mass ratio of 2:1.
Embodiment 2
[0104] In Example 2, the admixture component is microsilica, microbeads and filler mixed in a mass ratio of 80:70:300; the filler component and the mass ratio of each component are fly ash: finely ground mineral powder: quartz powder= 80:120:100; thixotropic enhancer is inorganic thixotropic enhancer, organic thixotropic enhancer is mixed in a mass ratio of 10:5, organic thixotropic enhancer is starch ether; water reducer is PCE2; fiber is straight Steel fibers and hook-end fibers are mixed in a mass ratio of 2:1.
Embodiment 3
[0105] In embodiment 3, the admixture component is microsilica fume, microbeads and filler mixed in a mass ratio of 100:100:250; the filler component and the mass ratio of each component are fly ash: finely ground mineral powder: quartz powder= 70:80:100; the thixotropic reinforcing agent is an inorganic thixotropic reinforcing agent; the water reducing agent is PCE3; the fiber is end-hook steel fiber.