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Super-heavy-load and anti-static epoxy self-leveling floor and construction method thereof

An anti-static ring and construction method technology, applied in the field of ground construction, can solve problems such as inability to meet industrial needs, inability to meet anti-static, uneven ground, etc., and achieve improved service life, good mechanical strength, and long-lasting static conduction performance. Effect

Inactive Publication Date: 2018-01-30
TIANJIN LIGHT IND VOCATION TECHN COLLEGE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This kind of ground structure will appear cracks, holes, etc. after long-term sunshine, which not only affects normal use, but also easily causes safety hazards
[0003] Especially in large-scale industrial plants and laboratories, there will be a large number of wires arranged, and there will be heavy-duty trucks passing through, which will seriously damage the ground after a long time, resulting in uneven ground and reduced toughness, which cannot meet industrial needs.
Moreover, the existing ground structure cannot meet the anti-static requirements, which has an impact on safe production

Method used

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  • Super-heavy-load and anti-static epoxy self-leveling floor and construction method thereof
  • Super-heavy-load and anti-static epoxy self-leveling floor and construction method thereof

Examples

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Effect test

Embodiment 1

[0042] An ultra-heavy-load anti-static epoxy self-leveling floor, the innovation of which is that it includes concrete base layer 1, epoxy primer layer 2, glass fiber cloth layer 3, epoxy mortar layer 4, Copper foil layer 5, conductive layer 6 and antistatic epoxy self-leveling paint layer 7.

[0043] A construction method for super-heavy-load antistatic epoxy self-leveling ground, the innovation of which is that the steps are as follows:

[0044] 1) Reinforced concrete base laying: Lay steel mesh on the ground, use fine stone concrete to pour, form a reinforced concrete base with a thickness of 30mm, maintain for three weeks and polish the surface to ensure smoothness;

[0045] 2) Epoxy primer layer laying: roll coating with epoxy primer to form an epoxy primer layer with a thickness of 0.1mm;

[0046] 3) Laying of glass fiber cloth layer: lay a layer of glass fiber cloth on the epoxy primer layer coated with epoxy primer, after drying, roll coat epoxy primer on the glass fi...

Embodiment 2

[0061] A super-heavy-load anti-static epoxy self-leveling floor, characterized in that: it includes a concrete base layer, an epoxy primer layer, a glass fiber cloth layer, an epoxy mortar layer, a copper foil layer, and a conductive layer laid sequentially from bottom to top. And anti-static epoxy self-leveling paint layer.

[0062] A construction method for super-heavy-load antistatic epoxy self-leveling ground, the innovation of which is that the steps are as follows:

[0063] 1) Reinforced concrete base laying: Lay steel mesh on the ground, use fine stone concrete to pour, form a reinforced concrete base with a thickness of 40mm, maintain for three weeks and polish the surface to ensure smoothness;

[0064] 2) Epoxy primer layer laying: roll coating with epoxy primer to form an epoxy primer layer with a thickness of 0.2mm;

[0065] 3) Laying of glass fiber cloth layer: lay a layer of glass fiber cloth on the epoxy primer layer coated with epoxy primer, after drying, roll ...

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Abstract

The invention relates to a super-heavy-load and anti-static epoxy self-leveling floor. The super-heavy-load and anti-static epoxy self-leveling floor is characterized by comprising a concrete base layer, an epoxy primer layer, a glass fabric layer, an epoxy mortar layer, a copper foil layer, an electric conduction layer and an anti-static epoxy self-leveling finishing paint layer, wherein the concrete base layer, the epoxy primer layer, the glass fabric layer, the epoxy mortar layer, the copper foil layer, the electric conduction layer and the anti-static epoxy self-leveling finishing paint layer are laid in sequence from bottom to top. A construction method of the super-heavy-load and anti-static epoxy self-leveling floor is characterized by comprising the construction steps that firstly,the reinforced concrete base layer is laid; secondly, the epoxy primer layer is laid; thirdly, the glass fabric layer is laid; fourthly, the epoxy mortar layer is laid; fifthly, the copper foil layeris laid; sixthly, the electric conducting layer is laid; seventhly, the anti-static epoxy self-leveling finishing paint layer is laid; eighthly, maintenance is conducted. According to the super-heavy-load and anti-static epoxy self-leveling floor and the construction method thereof, the design is scientific and reasonable, the floor formed by using the method is flat, smooth, clean and watertight, the heavy load resistance is high, the mechanical strength is good, the wear resistant property is high, durable anti-static performance is achieved, and safe use can be ensured.

Description

technical field [0001] The invention belongs to the technical field of ground construction, and relates to ground structures, in particular to a super-heavy-load antistatic epoxy self-leveling ground and a construction method thereof. Background technique [0002] Most of the existing ground is concrete ground, mainly cement, sand and a small amount of additives are mixed and laid on the ground. This kind of ground structure will appear cracks, holes, etc. after long-term sunshine, which not only affects normal use, but also easily causes safety hazards. [0003] Especially in large industrial plants and laboratories, there will be a large number of wires arranged, and there will be heavy-duty trucks passing by. After a long time, the ground will be severely damaged, resulting in uneven ground and reduced toughness. These cannot meet industrial needs. Moreover, the existing ground structure cannot meet the anti-static requirements, which has an impact on safe production. ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E04F15/12
Inventor 张伟敬李靖安薪睿万继平张恩路
Owner TIANJIN LIGHT IND VOCATION TECHN COLLEGE
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