500KV switching station waterproof process

A switch station and process technology, applied in infrastructure engineering, roof insulation materials, roofing, etc., can solve problems such as unreliable construction quality, short waterproofing period, and poor waterproofing effect

Active Publication Date: 2020-11-27
安徽金寨抽水蓄能有限公司 +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Therefore, the existing waterproof treatment process has the defects of un

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0072] Embodiment 1 (best embodiment). A 500KV switch station waterproofing process, comprising the following steps in sequence,

[0073] aa. Concrete cushion is poured on the bottom plate of the basement of the switch station. The thickness of the concrete cushion is 100mm, and AA product is obtained.

[0074] ab, AA product surface treatment, the surface treatment is to level the AA product, and use the air pump to clean the AA product surface to obtain the AB product,

[0075] Apply waterproof mortar on ac and AB products, the coating thickness of the waterproof mortar is 20mm, the strength of the waterproof mortar is M7.5, and the production of the waterproof mortar is to mix the waterproof powder and the sand and then add water to mix it. Complete, the waterproof mortar is applied within 60 minutes after the completion of the production, and the AC product is obtained.

[0076] Lay rolls on ad and AC products, the rolls are 2mm thick APF polymer composite film self-adhe...

Embodiment 2

[0092] Example 2. Different from Example 1, in Example 2,

[0093] In the step aa, the thickness of the concrete cushion is 80mm.

[0094] In the steps ac, the coating thickness of the waterproof mortar is 25mm.

[0095] In the steps ad, the coil is a self-adhesive coil of APF polymer composite film with a thickness of 1.5mm.

[0096] In the step ba, the thickness of the brick layer is 70 mm, and the brick layer is built by a three-cis-one-block method.

[0097] In the step bb, the coating thickness of the waterproof mortar is 45mm.

[0098] In the step bc, the coil is a self-adhesive coil of APF polymer composite film with a thickness of 2.5mm, and the slurry is made of quick-setting polymer 1:1.5 mixed with cement, and the water-based asphalt base Sealant paste 1:0.6 mixed with silicate.

[0099] In the steps ae, the coating thickness of the waterproof mortar is 15mm.

[0100] In the steps af, the pouring thickness is 45mm.

[0101] In the step bd, the coating thickne...

Embodiment 3

[0108] Example 3. Different from Example 1, in Example 2,

[0109] In the step aa, the thickness of the concrete cushion is 120mm.

[0110] In the steps ac, the coating thickness of the waterproof mortar is 15mm.

[0111] In the steps ad, the coil is a self-adhesive coil of APF polymer composite film with a thickness of 2.5mm.

[0112] In the step ba, the thickness of the brick layer is 50mm, and the brick layer is built by plum blossom method.

[0113] In the step bb, the coating thickness of the waterproof mortar is 55mm.

[0114] In the step bc, the coil is a self-adhesive coil of APF polymer composite film with a thickness of 1.5mm, and the slurry is made of quick-setting polymer 1:1.9 mixed with cement, and the water-based asphalt base Sealant paste 1:0.4 mixed with silicate.

[0115] In the steps ae, the coating thickness of the waterproof mortar is 25mm.

[0116] In the steps af, the pouring thickness is 35mm.

[0117] In the step bd, the coating thickness of the...

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Abstract

The invention discloses a 500KV switching station waterproof process. The 500KV switching station waterproof process comprises a bottom plate waterproof process, a side wall waterproof process, a roofwaterproof process and a gutter waterproof process; the bottom plate waterproof technology comprises the following steps that a concrete cushion layer is poured on a bottom plate of a switching station basement, surface treatment is conducted, waterproof mortar is smeared, coiled materials are laid, waterproof mortar is smeared, and fine aggregate concrete is poured; the side wall waterproof technology comprises the following steps that a brick layer is built on the side wall of the switching station basement, waterproof mortar is smeared, coiled materials are laid, and waterproof mortar is smeared; the roof waterproof technology comprises the following steps that surface treatment is conducted on a roof of a switching station, cement mortar is leveled, coiled materials are laid, an insulation board is laid, and fine aggregate concrete is poured; and the gutter waterproof process comprises the following steps that surface treatment is performed on a gutter of the switching station, cement mortar is leveled, and coiled materials are laid. The waterproof process has the advantages of being reliable in construction quality, good in waterproof effect and long in waterproof period.

Description

technical field [0001] The invention belongs to the waterproof field of a 500KV switch station, and in particular relates to a waterproof process for a 500KV switch station. Background technique [0002] The 500KV switch station refers to the switch station with 500KV high-voltage power, which can selectively connect or cut off the power system (grid) and its users' electrical equipment through the switchgear. Since the switch station has high-voltage power, so The switch station requires no water leakage to avoid leakage accidents as much as possible. Waterproof treatment is required during the construction of the switch station. Once leakage occurs, it needs to be repaired in time. The waterproof treatment generally deals with the floor of the basement of the switchyard, the side walls of the basement of the switchyard, the roof of the switchyard and the gutter outside the roof, mainly to prevent underground water seepage and roof rainwater leakage. The existing waterproo...

Claims

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Application Information

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IPC IPC(8): E04B1/66E02D31/02E04D13/16
CPCE04B1/66E02D31/02E04D13/1687
Inventor 钱继源钟金盛纵向群王新宇林文张范立刘玉成王杨虹
Owner 安徽金寨抽水蓄能有限公司
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