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Anticorrosion waterproof floor heating pipe

A technology of anti-corrosion and floor heating pipes, applied in the field of plastic products, can solve the problems of weak adhesion, inability to use covering materials, easy aging, etc., and achieve excellent waterproof and wear resistance, good thermal insulation function, Good effect of alkali corrosion resistance

Inactive Publication Date: 2017-07-04
周雷雷
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This new type of plastisol made from wood chip or other particles helps create stronger pipes that are resistant against damage caused during use without leaks over time due to their high chemical properties. Additionally, this plasteroids have better strength for long periods of storage than traditional methods like steel tubular structures used at construction sites. Overall, these technical features make it ideal for making quick prototype products with improved durability while maintaining its effectiveness under harsh conditions such as those associated with industrial environments where they may be subjected to various environmental factors including temperature changes and moisture fluctuations.

Problems solved by technology

The technical problem addressed in this patented text relates to improving the quality of indoor flooring thermal distribution systems due to their use of syntheic resins like PE/PEX which may lead to issues related to moistening out during cold weather conditions. These compositions also lack flexibility when being applied over uneven surfaces without getting stuck together easily. Additionally, these types of polymers tend to break down gradually after exposure time, causing them to lose effectiveness at certain points within hours despite having excellent durability against environmental factors including sunlight ray damage.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0016] A corrosion-resistant waterproof floor heating pipe is composed of the following components by weight:

[0017] 100 parts of polyethylene resin, 16 parts of nylon, 12 parts of wood powder, 10 parts of peat, 6 parts of dioctyl phthalate, 10 parts of oil shale, 15 parts of methacrylate, 7 parts of activated calcium carbonate, waterproofing agent 3 parts, 2 parts of corrosion inhibitor, 3 parts of stearic acid, 8 parts of aluminum hydroxide, 0.6 part of silane coupling agent;

[0018] The waterproofing agent is a mixture of silicone oil, paraffin and molybdenum disulfide powder according to the weight ratio of 2:2:5;

[0019] The anticorrosion agent is a mixture of calcium stearate, barium stearate and hydrated tribasic lead sulfate in a weight ratio of 1:2:1.

[0020] Further, the peat is a mixture of red clay and iron oxide slag in a weight ratio of 1:3.

[0021] Further, the reinforcing agent is a mixture of fly ash and cellulose acetate in a weight ratio of 1:3.

Embodiment 2

[0023] A corrosion-resistant waterproof floor heating pipe is composed of the following components by weight:

[0024] 100 parts of polyethylene resin, 18 parts of nylon, 14 parts of wood powder, 12 parts of peat, 8 parts of dioctyl phthalate, 20 parts of oil shale, 25 parts of methacrylate, 9 parts of activated calcium carbonate, waterproofing agent 5 parts, 4 parts of corrosion inhibitor, 4 parts of stearic acid, 10 parts of aluminum hydroxide, 0.8 parts of silane coupling agent;

[0025] The waterproofing agent is a mixture of silicone oil, paraffin and molybdenum disulfide powder according to the weight ratio of 2:2:5;

[0026] The anticorrosion agent is a mixture of calcium stearate, barium stearate and hydrated tribasic lead sulfate in a weight ratio of 1:2:1.

[0027] Further, the peat is a mixture of red clay and iron oxide slag in a weight ratio of 1:3.

[0028] Further, the reinforcing agent is a mixture of fly ash and cellulose acetate in a weight ratio of 1:3.

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PUM

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Abstract

The present invention discloses an anticorrosion waterproof floor heating pipe, which comprises, by weight, 100 parts of a polyethylene resin, 16-18 parts of nylon, 12-14 parts of sawdust powder, 10-12 parts of peat, 6-8 parts of dioctyl phthalate, 10-20 parts of oil shale, 15-25 parts of methyl propiolate, 7-9 parts of active calcium carbonate, 3-5 parts of a waterproofing agent, 2-4 parts of an anticorrosion agent, 3-4 parts of stearic acid, 8-10 parts of aluminium hydroxide, and 0.6-0.8 part of a silane coupling agent. According to the present invention, the obtained plastic pipe plastic uses the sawdust powder and the peat as the main raw materials so as to provide advantages of cracking resistance, water leakage resistance, strong acid resistance, strong alkali resistance, strong impact resistance, good adhesion, and good thermal insulation; and by adding the waterproofing agent and the anticorrosion agent, the obtained material has advantages of excellent water resistance, excellent wear resistance, good fluidity, good alkali corrosion resistance, low cost and good stability, and is the rapid molding plastic raw material.

Description

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Claims

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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Application Information

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Owner 周雷雷
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