Method for testing wettability of glass fiber cloth

A technology of glass fiber cloth and test method, which is applied to measuring devices, instruments, scientific instruments, etc., can solve the problems of poor repeatability of test results, inaccurate measurement results, good light transmittance, etc. For promotion and application, good repeatability

Active Publication Date: 2012-10-24
SHENGYI TECH SUZHOU
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AI Technical Summary

Problems solved by technology

[0003] At present, there are mainly the following methods for testing and evaluating the wettability of glass fiber cloth in the electronic grade glass fiber cloth and copper clad laminate industry: (1) Sinking method: put a certain viscosity of resin or glue in the container, and put a glass fiber cloth of standard size Place the sample horizontally above the liquid surface, and record the time until the glass fiber cloth sample completely sinks; the disadvantage is that the solvent volatilizes continuously during the test, and the viscosity of the resin or glue increases gradually, resulting in a large change in the environmental conditions of the test. The end point of the test is judged by humans, and the error is large, which eventually leads to poor repeatability of the test results
(2) Bullseye method: Draw a line similar to a target with a pencil on a white paper, place a standard size glass fiber cloth sample flat on the paper, drop a certain amount of resin or glue on the bullseye, and record the appearance of the bullseye and the lines The time; its disadvantages: the transparency of the glass fiber cloth itself is different and the diffusion speed of the glue or resin is slow, and it is difficult to determine the uniform standard for the clarity of the displayed lines, resulting in inaccurate measurement results
Within the rated time, the more white stripes, the poorer the wettability; or the shorter the time required for complete wetting, that is, the white stripes disappear completely, the better the wettability; the disadvantage: the volatilization of the solvent during the experiment will affect The viscosity of the resin or glue affects the test results. The resin or glue is greatly affected by the environment, so it is difficult to configure standard test conditions and maintain fixed test conditions for a long time
The light transmittance of the incompletely soaked glass fiber cloth is poor, and the light transmittance of the fully soaked sample is good. The curve of the light transmittance changing with time during the soaking process of the test sample is obtained, and the data is converted into light transmittance data. Through testing and drawing This curve is used to analyze and compare the wettability characteristics of glass fiber cloth; its disadvantage: the wettability between resin and glass fiber cloth cannot fully represent the wettability after the glue is configured with this resin; at the same time, because of the volatility of the solvent, the configuration The glue with basically the same viscosity is relatively difficult and time-consuming, and it is not suitable for rapid and large-scale use in the occasion of testing the wettability of glass fiber cloth
(5) Luminance factor method of bonded sheet: In the Yxy system of the colorimeter, Y is the transparency factor, take the prepreg prepared after the glass fiber cloth is soaked in glue and baked, cut it into a standard test size, and measure it with the colorimeter Y value, for the same type of glass fiber cloth and the same resin content, the smaller the Y value, the smaller the bubbles in it, and the better the wettability; its disadvantages: the difference in the measurement results of this method is not obvious, and it is affected by other factors. large; at the same time, this method is only applicable to copper-clad laminate manufacturers, and does not take advantage of the sampling and testing of fiberglass cloth manufacturers
(6) Solvent penetration method: Cut the glass fiber cloth into standard long strip test size along the latitude and longitude direction, draw a line mark with a pencil along the width direction at the specified position at the lower end, and then clamp the two ends of the test strip with clips , hang vertically, immerse the lower end in a container filled with solvent until the liquid level is level with the mark, start timing, lift the sample from the liquid level after 1 minute and let it dry for 1 minute, immediately test and record the height of the solvent penetration; its Disadvantages: The solvent cannot replace or represent the wettability between the actual glue and the glass fiber cloth, the correspondence is not good, and the test requires high squareness of the glass fiber cloth sample, and the warp and weft cuts have a great influence on the test results
[0004] To sum up, the existing test methods for glass fiber cloth can characterize the wettability of glass fiber cloth to a certain extent, but none of them can accurately measure the penetration degree of glass fiber cloth in the Z direction, that is, the completeness of glass fiber cloth cannot be measured. degree of penetration, therefore, the above-mentioned existing test methods cannot completely characterize the wettability of glass fiber cloth

Method used

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  • Method for testing wettability of glass fiber cloth

Examples

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Embodiment 1

[0025] see figure 1 Shown, a kind of test method of wettability of glass fiber cloth, comprises the following steps:

[0026] (1) Fix the glass fiber cloth 2 to be tested on a ferrule 4, and the ferrule 4 is fixed on a fixed frame 3 (such as an iron stand), and make its surface in a horizontal and flat state; (the glass The fiber cloth can be clamped between the upper and lower ferrules, or the glass fiber cloth can be directly mounted on the ferrule)

[0027] (2) Fix the burette 1 directly above the above-mentioned glass fiber cloth, and drip the solvent drop by drop until the solvent drips out on the back side of the glass fiber cloth; Then add the next drop of solvent;

[0028] The solvent is N,N-dimethylformamide (DMF) with a purity of 100%, and 0.01% of pigment is added;

[0029] Time from the time when the first drop of solvent is dropped until the first drop of solvent drops out from the reverse side of the glass fiber cloth, the total time is h;

[0030] (3) measur...

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Abstract

The invention discloses a method for testing wettability of glass fiber cloth. The method includes (1), fixing the glass fiber cloth to be tested on a loop and enabling surfaces of the glass fiber cloth to be horizontally flat; (2), dripping solvent on the glass fiber cloth from right above the glass fiber cloth drop by drop until the solvent drips out from the back surface of the glass fiber cloth, dripping a next drop of solvent after a previous drop of solvent completely wets the glass fiber cloth in a dripping process, and starting counting when the first drop of solvent drips until the solvent drips out from the back of the glass fiber cloth; (3), measuring the drip-in quantity I and the drip-out quantity i of the solvent in the process in the step (2); and computing the absorbing capacity L within unit time of the glass fiber cloth to be tested according to a formula of L=(I-i) / h. the total time of the dripping process is h. By the aid of the method, the wetting speed of the glass fiber cloth can be accurately measured, and accordingly the degree of the wettability of the glass fiber cloth is judged.

Description

technical field [0001] The invention relates to a method for testing the wettability of glass fiber cloth, which can be used in the printed circuit board industry. Background technique [0002] Wettability is one of the key indicators of glass fiber cloth, and its quality and stability are directly related to the quality level and quality consistency of CCL products. The molding process of glass fiber cloth reinforced copper clad laminate requires full infiltration between the glass fiber cloth and the resin matrix to ensure a good interface between the two, reducing or even eliminating base material voids and resin voids caused by poor impregnation. The occurrence of internal defects in the material. Prevent microcracks or cationic migration of the board due to poor bonding in high temperature and high humidity environments, resulting in delamination and blistering of the board or failure of insulation reliability. The glass fiber fabric with good wettability not only has...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N13/00
Inventor 王惠崔春梅肖升高李雪张国锋
Owner SHENGYI TECH SUZHOU
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