A kind of pump concrete and preparation method thereof

A technology for pumping concrete and composite fibers, applied in the field of concrete, can solve the problems of blocked pipelines, blockage, poor flowability of crushed stones, and poor workability, and achieves the effect of high strength, improved strength, and not easy to block pipelines.

Active Publication Date: 2021-12-31
广州市粤砼混凝土有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0003] The long-distance transportation of pumped concrete requires the use of conveying pipes. Generally, in order to avoid coarse aggregates from clogging the conveying pipes, pebbles are often used as coarse aggregates, because pebbles have good pumpability, but in road construction, concrete needs to be pumped. It has high flexural strength, but the binding force between pebbles and cement is low, adding pebbles as coarse aggregate will make the strength of pumped concrete low, which is not suitable for road construction
[0004] If crushed stone is used as the coarse aggregate of pumped concrete, the binding force between crushed stone and cement is high, which can significantly improve the strength of pumped concrete, but the fluidity and workability of crushed stone are poor, and it is easy to medium clogged pipe

Method used

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  • A kind of pump concrete and preparation method thereof

Examples

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Effect test

preparation example Construction

[0041] Preparation example of coated crushed stone

[0042] The rosin in the following raw materials was purchased from the first-grade rosin produced by Jinan Yingshun Chemical Co., Ltd.; the absolute ethanol was purchased from Shandong Yiwei’an Chemical Technology Co., Ltd., with a content of 99.5%; the epoxy resin was purchased from Huizhou Sandao New Material Co., Ltd. The produced epoxy resin ab glue, model SD811; the sodium hydroxide was purchased from the granular alkali produced by Cangzhou Bangzhide Chemical Products Co., Ltd.; For ordinary commercially available.

preparation example 1

[0043] Preparation Example 1: Coated gravel is prepared by the following method:

[0044] Ⅰ Weigh 4.5kg of rosin, crush it to a particle size of 15-20mm, mix the rosin with 82kg of absolute ethanol, heat up to 80°C, stir at a speed of 850r / min, and continuously add absolute ethanol to 82kg during the stirring process, Stir for 22 minutes and dissolve the rosin completely to obtain a rosin mixture; weigh 0.85 kg of epoxy resin, place the epoxy resin in the rosin mixture and stir for 15 minutes at a speed of 550 r / min to obtain a mixture;

[0045] II weighed 130kg of gravel and put it in the stirring solution prepared by I, stirred it at a speed of 820r / min for 10 minutes, and dried it at 60°C for 2 hours, and the dried stirring solution solidified into a rosin film. The thickness is 2mm, put the crushed stone coated with rosin film into 160kg of spherical sodium hydroxide particles with a particle size of 3-5mm and stir at a speed of 150r / min for 20s, and take out the crushed s...

preparation example 2

[0046] Preparation example 2: The coated crushed stone is prepared by the following method:

[0047] ⅠWeigh 3kg of rosin, crush it to a particle size of 15-20mm, mix the rosin with 75kg of absolute ethanol, heat up to 75°C, stir at a speed of 850r / min, continuously add absolute ethanol to 75kg during the stirring process, and stir The rosin was completely dissolved in 25 minutes to obtain a rosin mixture; 0.5 kg of epoxy resin was weighed, and the epoxy resin was placed in the rosin mixture and stirred at a speed of 550 r / min for 15 minutes to obtain a mixture;

[0048] Ⅱ Weigh 120kg of gravel and place it in the stirring solution prepared by Ⅰ, stir it at a speed of 820r / min for 10 minutes, and dry it at 60°C for 2 hours. After drying, the stirring solution solidifies into a rosin film. The thickness is 1.5mm, put the crushed stone coated with rosin film into 150kg of spherical sodium hydroxide particles with a particle size of 3-5mm and stir at a speed of 150r / min for 10s, a...

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Abstract

The application relates to the field of concrete, and specifically discloses a pumping concrete and a preparation method thereof; the pumping concrete is made of raw materials containing the following parts by weight: 280-400 parts of cement, 50-70 parts of fly ash, mineral powder 80‑100 parts, 585‑680 parts of river sand, 1050‑1110 parts of coated gravel, 140‑155 parts of water, 7‑10.5 parts of admixture, 8‑12 parts of modified composite fiber; the modified composite fiber is composed of bamboo fiber and It is made by mixing polyurethane fibers; its preparation method is: take coated crushed stone, modified composite fiber, and water and mix and stir to make a mixture; weigh cement, fly ash, mineral powder, river sand, The admixture is added to the mixture prepared by S1, and the concrete mixture is prepared after stirring and mixing, pumped and poured into the mold, and the pumped concrete is made after curing; it has the function of making the pumped concrete not easy to block the pipeline during pumping , and has the advantage of higher strength after curing.

Description

technical field [0001] The present application relates to the field of concrete, and more specifically, it relates to a pumping concrete and a preparation method thereof. Background technique [0002] Pumping concrete is to use the pressure of the concrete pump to transport the concrete mixture to the pouring construction site through the pipeline. The pumping concrete has the advantages of good quality, high efficiency and fast speed, and can realize long-distance transportation; it is widely used in roads, Construction of railways, water conservancy, high-rise and super high-rise buildings and buildings. [0003] The long-distance transportation of pumped concrete requires the use of conveying pipes. Generally, in order to avoid coarse aggregates from clogging the conveying pipes, pebbles are often used as coarse aggregates, because pebbles have good pumpability, but in road construction, concrete needs to be pumped. It has high flexural strength, but the binding force be...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B28/04C04B20/10C04B14/02B28C5/40
CPCC04B28/04C04B20/104C04B14/02B28C5/402C04B2201/50C04B18/08C04B18/141C04B14/06C04B22/147C04B2103/302C04B18/265C04B16/0675C04B20/1037
Inventor 蒋晓军
Owner 广州市粤砼混凝土有限公司
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