Lightweight high-strength ceramsite concrete and concrete pole

A high-strength ceramsite and concrete technology, applied in the field of concrete, can solve the problems of poor resistance to acid, alkali and salt corrosion, excessive weight of ordinary poles, and inconvenient emergency repair of electricity, etc., to achieve good freeze-thaw resistance, wide application range, and weight reduction Effect

Active Publication Date: 2013-11-20
佛冈龙清电力器材有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, concrete poles for power transmission mainly use prestressed poles made of ordinary concrete, partially prestressed poles and ordinary concrete poles, which have the advantages of heavy poles, high transportation costs, large-scale equipment hoisting for installation, and resis

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0053] Prepare raw materials according to the following proportions:

[0054] 400 parts of 42.5 ordinary Portland cement with an average particle size of 40 μm;

[0055] Average particle size 0.18μm, SiO 2 49 parts of silica fume with content ≥85%;

[0056] 80 parts of slag powder above grade S95 with an average particle size of 20 μm;

[0057] 590 parts of continuous graded stone silt with a particle size of 0.16~4.75mm (the powder content below 0.16mm is less than 5%, and the crushing value is less than 10%);

[0058] 683 parts of continuously graded shale ceramsite with a particle size of 5-20mm (the cylinder compressive strength is greater than 6.5MPa, and the water absorption rate is less than 4%);

[0059] 3.1 parts of high-efficiency water reducing agent with water reducing rate greater than 30%;

[0060] 120 parts of water;

[0061] 0.5 part of polypropylene fiber.

[0062] The steel mesh is made of 8 Ф4.8mm prestressed steel wires as the main reinforcement, and ...

Embodiment 2

[0081] Prepare raw materials according to the following proportions:

[0082] 380 parts of 42.5 ordinary Portland cement with an average particle size of 40 μm;

[0083] Average particle size 0.18μm, SiO 2 45 parts of silica fume with content ≥85%;

[0084] 75 parts of S95 or above slag powder with an average particle size of 20 μm;

[0085] 560 parts of continuous graded stone silt with a particle size of 0.16~4.75mm (the powder content below 0.16mm is less than 5%, and the crushing value is less than 10%);

[0086] 650 parts of continuously graded shale ceramsite with a particle size of 5-20mm (the cylinder compressive strength is greater than 6.5, and the water absorption rate is less than 4%);

[0087] 2.8 parts of high-efficiency water reducing agent with water reducing rate greater than 30%;

[0088] 115 parts of water;

[0089] 0.4 part of polypropylene fiber.

[0090] The reinforcement mesh is made of 8 Ф4.8mm prestressed steel wires as the main reinforcement, an...

Embodiment 3

[0105] Raw materials are prepared according to the following proportions:

[0106] 420 parts of 52.5 ordinary Portland cement with an average particle size of 60 μm;

[0107] Average particle size 0.30μm, SiO 2 53 parts of silica fume with content ≥85%;

[0108] 83 parts of slag powder above grade S95 with an average particle size of 30 μm;

[0109] 620 parts of continuous graded stone silt with a particle size of 0.16~4.75mm (the powder content below 0.16mm is less than 5%, and the crushing value is less than 10%);

[0110] 715 parts of continuously graded shale ceramsite with a particle size of 5-20mm (the cylinder compressive strength is greater than 6.5, and the water absorption rate is less than 4%);

[0111] 3.4 parts of high-efficiency water reducing agent with water reducing rate greater than 30%;

[0112] 126 parts of water;

[0113] 0.6 part of polypropylene fiber.

[0114] The steel mesh is made of 8 Ф4.8mm prestressed steel wires as the main reinforcement, an...

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Abstract

The invention relates to the technical field of concrete and more concretely relates to lightweight high-strength ceramsite concrete and a concrete pole. The lightweight high-strength ceramsite concrete is prepared from raw materials including the following ingredients in parts by mass: 380-420 parts of silicate cement, 45-53 parts of silica fume, 75-85 parts of slag powder, 560-620 parts of stone powder sand with the grain diameter of 0.16-4.75mm, 650-715 parts of shale ceramsite with the grain diameter of 5-20mm, 2.8-3.4 parts of efficient water reducing agent with the water reducing ratio higher than 30%, 115-126 parts of water and 0.4-0.6 part of polypropylene fiber. The concrete pole is formed through uniformly distributing the lightweight high-strength ceramsite concrete on a reinforcing steel bar net. According to the lightweight high-strength annular ceramsite concrete pole, the material source is wide, and a large amount of mineral waste is doped; and the weight is light, the carbonization resistance is good, the freeze-thaw resistance is good, the compressive strength is high, and the crack resistant strength is good.

Description

technical field [0001] The invention relates to the technical field of concrete, more specifically, to a lightweight high-strength ceramsite concrete and a concrete pole. Background technique [0002] High-strength ceramsite concrete is a kind of light-weight aggregate concrete. The current use strength range is LC5.0~LC60. Due to its high strength, light bulk density, not easy to crack due to temperature difference, small self-shrinkage, good freeze-thaw resistance, after forming concrete Being able to form self-maintenance and other characteristics, it is one of the main energy-saving and environmental protection materials that are currently being promoted in the new century. Ceramsite concrete began to develop in my country in the 1960s, mainly used for thermal insulation materials and non-load-bearing structures. In the late 1990s, with the rapid development of foreign technology, it also gradually developed rapidly and has C50 grade high-strength ceramsite concrete. . ...

Claims

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Application Information

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IPC IPC(8): C04B28/04E04H12/12
Inventor 黄贺明刘福财王鸣珂李志宏周思晴李斌
Owner 佛冈龙清电力器材有限公司
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