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Inkjet printing identification process for fluorine plastic sheath phase-stabilized cable

A phase-stable cable and fluoroplastic technology, which is applied in the field of coding marking technology, can solve problems such as difficult adhesion, difficulty of ink printing marking, and small surface tension, so as to increase production speed, improve marking fastness, and improve marking marking. The effect of fastness

Inactive Publication Date: 2014-09-03
安徽宏源特种电缆集团有限公司
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  • Summary
  • Abstract
  • Description
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AI Technical Summary

Problems solved by technology

However, the surface tension of fluoroplastic materials is small, commonly known as low surface energy materials, and has coating characteristics that are not easy to adhere. Therefore, it is difficult to ink-spray marking of fluoroplastic sheathed phase-stable cables.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0016] A coding marking process for a fluoroplastic sheathed phase-stable cable. In this process, the fluoroplastics sheathed phase-stable cable needs to pass through a plasma processor, a coding marking machine and an electric heater in sequence; the steps are as follows:

[0017] a. Plasma treatment: Pass the fluoroplastic sheathed phase-stable cable through the plasma treatment machine for plasma bombardment treatment; use the high-frequency and high-voltage power generated by the plasma treatment machine to ionize and discharge between the square ceramic electrode and the cable core to form Plasma area; the plasma bombards the surface of the fluoroplastic material, so that some molecules on the surface of the fluoroplastic are vaporized under the bombardment of the plasma, resulting in depressions and easier adhesion of ink; the output voltage of the plasma treatment is 13-18kv, and the output current is 0.8- 1A;

[0018] b. Coding: pass the plasma-treated fluoroplastic sh...

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PUM

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Abstract

The invention discloses an inkjet printing identification process for a fluorine plastic sheath phase-stabilized cable. The process includes the first step of carrying out plasma treatment on a fluorine plastic sheath so that ink can be easily immersed in scattered molecular structures of treated materials, the second step of adopting an inkjet printer with high ink adhesive force to carry out inkjet printing on the surface of the fluorine plastic sheath of the fluorine plastic sheath phase-stabilized cable, and the third step of adopting an electric heater to heat and solidify ink inkjet printing identifications on the surface of the fluorine plastic sheath after inkjet printing is conducted on the surface of the fluorine plastic sheath of the fluorine plastic sheath phase-stabilized cable. A plasma treatment machine is utilized, so that ink is prone to adhering to the surface of the sheath of the fluorine plastic sheath phase-stabilized cable; the electric heater is used for heating and solidifying, so that firmness and productivity of the identifications are improved.

Description

technical field [0001] The invention relates to a code-spraying marking process of a phase-stable cable with a fluoroplastic sheath, and belongs to the field of electric wires and cables. Background technique [0002] With the rapid development of information technology, in order to meet the temperature phase stability of phase-stable cables and the harsh operating environment temperature, most of the phase-stable cables use current fluoroplastics as sheaths. However, fluoroplastic materials have low surface tension, commonly known as low surface energy materials, and have coating characteristics that are not easy to adhere to. Therefore, it is difficult to ink-spray marking of fluoroplastic sheathed phase-stable cables. More and more users have higher requirements for the marking of fluoroplastic sheathed phase-stable cables, and it is necessary to spray code on fluoroplastics sheathed phase-stable cables to improve the convenience of use. Contents of the invention [00...

Claims

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Application Information

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IPC IPC(8): H01B13/34
Inventor 姜绪宏刘辉张小平姜茂盛余小葵丁云春
Owner 安徽宏源特种电缆集团有限公司
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