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Antibacterial and erosion-resisting transformer

A transformer and anti-corrosion technology, applied in the field of transformers, can solve the problems of shortening the service life of transformers, high temperature fire hazards, user losses, etc., and achieve the effects of saving resources, inhibiting mildew, aging, bacteria, and prolonging service life.

Inactive Publication Date: 2016-08-10
佛山市顺德区正朗五金电器制品有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

If the above requirements cannot be met, the service life of the transformer may be shortened, and if water enters the transformer, impurities may enter the transformer, resulting in overheating and fire hazards, which will bring losses to users.
However, if the inlet pipe and outlet pipe are directly connected to the transformer, there is still a risk of water leakage. Therefore, adding a rubber ring for sealing is a very effective way to prevent external impurities from entering the transformer, but the rubber ring still has aging. , the danger of mold and mildew in the wind and sun

Method used

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  • Antibacterial and erosion-resisting transformer

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Experimental program
Comparison scheme
Effect test

Embodiment 1

[0015] The preparation of embodiment 1 polypeptide and thin film

[0016] Firstly, the peptide database was constructed, and then the computer simulation screening technology was used for high-throughput screening of antimicrobial peptides. From the results of computer screening, 116 polypeptides capable of specifically inhibiting mold functions were selected, and through conventional verification tests, it was confirmed that these polypeptides had the function of inhibiting mold growth and killing corresponding molds. The polypeptides are respectively named as KJTD-1-116, and their sequences correspond to those shown in SEQ ID NO: 1-116. The polypeptide is artificially synthesized for subsequent batch industrial production.

[0017] Prepare the polypeptide into a thin film layer, the method is as follows: (1) mixing raw materials: at 25°C, heat 3g of 4,4'-diaminodiphenyl ether and 54mL of N,N-dimethylacetamide in a three-necked flask , after ultrasonic stirring until comple...

Embodiment 2

[0019] The preparation of embodiment 2 transformer

[0020] According to the conventional method for preparing transformers in this area, according to figure 1 According to the preparation method, the transformer is prepared, wherein the film is pasted around the prepared sealing ring. The sealing rings are based on different polypeptide film layers, and a total of 116 types are prepared.

Embodiment 3

[0021] Example 3 comparison

[0022] The sealing ring is prepared according to the routine in the art, which does not contain polypeptide.

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Abstract

The invention discloses an antibacterial and erosion-resisting transformer. The transformer comprises a high-voltage wire-inlet pipe (1), a low-voltage wire-outlet pipe (2), a transformer body (3), and a transformer bracket (4), wherein the high-voltage wire-inlet pipe (1) and the low-voltage wire-outlet pipe (2) are connected with the transformer through sealing rings (5) coated with anti-mildew polypeptide thin film layers. The transformer developed by the invention, and particularly the sealing rings used for the transformer have the extremely strong antibacterial property and corrosion resistance; in addition, the transformer is simple and convenient to manufacture, and capable of realizing the antibacterial and erosion-resisting effects without requiring a special process; and furthermore, the transformer has the effects of simple manufacturing, and convenience in use and installation.

Description

technical field [0001] The invention mainly relates to a transformer, in particular to a mildew, bacteria, and corrosion resistant transformer. Background technique [0002] In recent years, with the rapid development of the domestic and international power industry, large-capacity, high-voltage thermal power plants have been built and put into operation. As the voltage level of the high-voltage side of the transformer increases, the occupied area of ​​the high-voltage power distribution device and the transformer incoming line area gradually increases; the incoming line from the high-voltage side of the transformer to the power distribution device varies greatly with the layout of the factory. Generally, there are the following entry methods: overhead wire entry, SF6 trachea bus entry, and high-voltage sealing ring entry. In life, overhead wire entry is the best way to see. [0003] As we all know, transformers work all the year round, no matter it is windy or rainy, they...

Claims

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Application Information

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IPC IPC(8): H01F27/04C07K7/08A01P3/00
CPCC07K7/08C08J5/18C08J2379/08C08J2489/00C08K5/175C08K2003/2227F16J15/064H01F27/00H01F27/04H01F27/23H01F27/324
Inventor 李忠波
Owner 佛山市顺德区正朗五金电器制品有限公司