Method of modifying solid surface and product obtained

A solid substance and surface modification technology, which is applied to the device for coating liquid on the surface, special surface, pretreatment surface, etc., can solve the problem of insufficient modification, difficulty in uniform treatment of solid substance by flame, and long-term effect and other issues to achieve the effect of reducing residual components

Inactive Publication Date: 2005-06-22
森泰浩
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0011] However, the method disclosed in Patent Document 1 not only does not sufficiently modify the surface properties represented by the wettability index and contact angle, but also cannot maintain the effect for a long time, and also has the problem that the solid substance is easily thermally deformed.
In addition, it was found that it was difficult to uniformly treat solid matter by irradiating flames downward.

Method used

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  • Method of modifying solid surface and product obtained
  • Method of modifying solid surface and product obtained
  • Method of modifying solid surface and product obtained

Examples

Experimental program
Comparison scheme
Effect test

no. 1 Embodiment approach

[0054] In the first embodiment, a gaseous substance containing a modifier compound having at least a silane atom, a titanium atom, or an aluminum atom is sprayed on a solid substance by a heat source at a temperature of 400° C. or higher (the first surface modification method), Or the method of surface modification of a solid substance heated to a temperature of 400° C. or higher by a heat source after spraying a gaseous substance containing a modifier compound having at least silane atoms, titanium atoms or aluminum atoms on the solid substance ( 2nd surface modification method).

[0055] 1. Solid matter

[0056] The solid material used in the first embodiment is typically silicone rubber or fluororubber, and will be described in detail in the second embodiment.

[0057] 2. Gas-like substance

[0058] (1) modifier compound

[0059] ①Boiling point

[0060] The boiling point (atmospheric pressure) of the modifier compound is preferably a value in the range of 10 to 200°C. ...

no. 2 Embodiment approach

[0154] The second embodiment is: a gaseous substance containing a modifier compound having at least a silane atom, a titanium atom or an aluminum atom is sprayed on a solid substance by a heat source at a temperature of 400° C. or higher, thereby making the wettability index Surface-modified solid matter (first solid matter) with a value in the range of 40 to 80 dyn / cm (measurement temperature 25°C), or a compound containing a modifier compound having at least a silane atom, a titanium atom, or an aluminum atom A surface-modified solid whose wettability index (measurement temperature 25°C) is in the range of 40 to 80 dyn / cm after the gaseous substance is sprayed on the solid substance and heated to a temperature of 400°C or higher by a heat source Substance (second solid substance).

[0155] 1. Solid matter

[0156] (1) Rubber

[0157] In addition, when constituting the surface-modified solid substance, the solid substance is selected from silicone rubber, fluororubber, natu...

Embodiment 1

[0204] 1. Surface modification of solid substances

[0205] Prepare a sheet (area 100cm) made of silicone rubber (hardness: 80) with a thickness of 2mm 2 ). Next, use figure 1 In the surface modifying device shown, the surface treatment of the silicone rubber sheet was performed for 0.5 seconds by heating with a ceramic heater so that the temperature of the gaseous substance containing the modifying agent compound reached 700°C.

[0206] As the gaseous substance containing the modifying agent compound, 0.0001 mol % of tetramethylsilane with a boiling point of 27° C., 0.00001 mol % of tetramethoxysilane with a boiling point of 122° C., and a cylinder filled with compressed air ( cartridge) mixture.

[0207] 2. Evaluation of solid matter

[0208] (1) Wetting index

[0209] The wettability index of the surface-modified silicone rubber sheet was measured with a standard solution. In addition, the wetting index of the silicone rubber sheet before surface modification was also...

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Abstract

Provided are a method of modifying the surface of a solid substance that is difficult to bond to an adhesive solid substance without directly using a flame, and a solid substance that has undergone such surface modification. In this method, a gaseous substance containing a modifier compound having at least a silane atom, a titanium atom, or an aluminum atom is sprayed on a solid substance by a heat source at a temperature of 400° C. or higher, or, the modifier compound containing the After the gaseous substance is sprayed on the solid substance, it is heated to 400°C or higher by a heat source, or they are further combined for surface modification.

Description

technical field [0001] The present invention relates to a method for modifying the surface of a solid substance and a surface-modified solid substance, in particular to a method for modifying the surface of a solid substance that can be easily bonded, printed, painted, etc. solid matter. Background technique [0002] The surface of solid substances, such as silicone rubber, fluororubber, polyethylene resin, etc., is mostly hydrophobic or hydrophobic, and it is generally difficult to perform surface treatments such as bonding with other components, printing, and UV coating. In addition, metal surfaces such as stainless steel and magnesium have insufficient adhesion and surface smoothness among metals. When UV-curable coatings are directly applied, there is a problem that the coating film is easily peeled off. In addition, it has also been tried to add inorganic particles such as titanium oxide and zirconium oxide as a photocatalyst to the polymer material, but it has also be...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08J7/00B05D5/00C08J7/04B05D3/02B29B15/10B32B9/04C08F8/06C08J7/06C23C16/40C23C16/448C23C16/46
CPCC23C16/40C23C16/401C23C16/45576C23C16/46Y10T428/31663C23C16/18C23C16/42C23C16/455C23C16/56
Inventor 森泰浩山下干夫
Owner 森泰浩
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