Electromagnetic wave shielding film material and preparation method thereof
A technology of shielding film and electromagnetic waves, applied in the fields of magnetic field/electric field shielding, electrical components, conductive adhesives, etc., can solve the problems of difficulty in maintaining the shielding function and the film is easy to break, and achieve excellent electromagnetic wave shielding performance and excellent bonding performance. Effect
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2018-10-30
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Figure 1
Abstract
Description
technical field
[0001] The invention relates to an electromagnetic wave shielding film material and a preparation method thereof. Background technique
[0002] In recent years, electromagnetic wave interference (EMI) has been increasing along with the increase in the use of various electrical equipment or electronic equipment. In addition to being the cause of malfunction or interference of electronic and electrical equipment, EMI has also been blamed for causing damage to the health of operators of these equipment. Therefore, the intensity of electromagnetic waves emitted by electronic and electrical equipment is required to be controlled within the range specified by standards or regulations.
[0003] In the work against EMI, it is necessary to shield electromagnetic waves. For this purpose, it is self-evident that the property that electromagnetic waves do not pass through metal can be utilized. For example, a method in which a frame is made of metal or a high-conducti...
Examples
Embodiment 1
[0038] An electromagnetic wave shielding film material is characterized in that a layer of 5.5 micron matte black resin is coated on one side of the copper foil, and a layer of 15 micron anisotropic conductive adhesive layer is coated on the other side, and the outer layer of the matte black resin is coated with One layer of PET protective layer, plus a layer of PET release film on the outer layer of the anisotropic conductive adhesive layer; the frosted black resin is fully processed by adding 2.5 micron dummy paddles to the oily black resin with a solid content of 25%. Prepared by stirring until the viscosity is 25-26 seconds; the shown anisotropic conductive adhesive layer includes acrylic pressure-sensitive adhesive, isocyanate hardener, melamine hardener, and conductive copper powder, wherein the molecular weight of the acrylic pressure-sensitive adhesive is 750,000, solid The content is 40%, and the conductive copper powder is CoO with a particle size of 6.5 microns and m...
Embodiment 2
[0044] An electromagnetic wave shielding film material, characterized in that a layer of 5-micron matte black resin is coated on one side of the copper foil, and a layer of 12-micron anisotropic conductive adhesive layer is coated on the other side, and the outer layer of the matte black resin is coated with One layer of PET protective layer, plus a layer of PET release film on the outer layer of the anisotropic conductive adhesive layer; the frosted black resin is fully processed by adding 2.5 micron dummy paddles to the oily black resin with a solid content of 25%. Prepared by stirring until the viscosity is 25-26 seconds; the shown anisotropic conductive adhesive layer includes acrylic pressure-sensitive adhesive, isocyanate hardener, melamine hardener, conductive copper powder, wherein the molecular weight of the acrylic pressure-sensitive adhesive is 800,000, solid The content is 40%, and the conductive copper powder is CoO with a particle size of 5.5 microns and more than...
Embodiment 3
[0050] An electromagnetic wave shielding film material, which is characterized in that a layer of 6-micron matte black resin is coated on one side of the copper foil, and a layer of 10-micron anisotropic conductive adhesive layer is coated on the other side, and the outer layer of the matte black resin is coated with One layer of PET protective layer, plus a layer of PET release film on the outer layer of the anisotropic conductive adhesive layer; the frosted black resin is fully prepared by adding 3 micron dummy paddles to the oily black resin with a solid content of 25%. Prepared by stirring until the viscosity is 25-26 seconds; the shown anisotropic conductive adhesive layer includes acrylic pressure-sensitive adhesive, isocyanate hardener, melamine hardener, and conductive copper powder, wherein the molecular weight of the acrylic pressure-sensitive adhesive is 700,000, solid The content is 40%, and the conductive copper powder is CoO with a particle size of 7 microns or mo...