Process for preparing fluorine-containing high polymer high frequency circuit board material by hydrothermal method
A technology of high-frequency circuit board and process method, which is applied in the direction of circuit substrate materials, chemical instruments and methods, printed circuit components, etc., can solve the problems of high price and inability to meet the needs of high-frequency circuits, and achieve the goal of improving bonding performance Effect
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Embodiment 1
[0026] A. Mix 2.048L of polytetrafluoroethylene emulsion (PTFE), 1.024L of polyperfluoroethylene propylene emulsion (FEP), and 3.926L of tetrafluoroethylene-perfluoron-propyl vinyl ether copolymer emulsion (PFA) After mixing thoroughly, add 897.4g zirconium nitrate Zr(NO 3 ) 4 And 434.4g calcium nitrate Ca(NO 3 ) 2 , Then add 80 g of diisopropylamine and 70 g of isopropanol, mix well to obtain a mixed emulsion.
[0027] The concentration of the polytetrafluoroethylene emulsion (PTFE) is 50% (w), the concentration of the polyperfluoroethylene propylene emulsion (FEP) is 50% (w), and the copolymerization of tetrafluoroethylene-perfluoro-n-propyl vinyl ether The concentration of the organic emulsion (PFA) is 30% (w).
[0028] B. Put the mixed emulsion prepared in step A into a 10L autoclave with a filling ratio of 70.5%. After heating to 200°C at a heating rate of 1°C / min, react for 48 hours at a pressure of 4Mpa to obtain a polymer package Substances coated with nanoparticles of die...
Embodiment 2
[0036] A. Mix 1.982L polytetrafluoroethylene emulsion (PTFE), 1.038L polyperfluoroethylene propylene emulsion (FEP), 3.980L tetrafluoroethylene-perfluoro-n-propyl vinyl ether copolymer emulsion (PFA) After mixing thoroughly, add 1.1164kg barium nitrate Ba(NO 3 ) 2 And 1.4538kg butyl titanate C 16 H 36 O 4 Ti, 90 g of diisopropylamine and 80 g of isooctyl 3-mercaptopropionate (IOMP) are added, and mixed to obtain a mixed emulsion.
[0037] The concentration of the polytetrafluoroethylene emulsion (PTFE) is 50% (w), the concentration of the polyperfluoroethylene propylene emulsion (FEP) is 50% (w), and the copolymerization of tetrafluoroethylene-perfluoro-n-propyl vinyl ether The concentration of the organic emulsion (PFA) is 30% (w).
[0038] B. Put the mixed emulsion prepared in step A into a 10L autoclave with a filling ratio of 72.6%. After heating to 180°C at a heating rate of 0.5°C / min, react for 36 hours at a pressure of 5Mpa to obtain a polymer package Substances coated with...
Embodiment 3
[0046] A. Mix 1.920L polytetrafluoroethylene emulsion (PTFE), 1.047L polyperfluoroethylene propylene emulsion (FEP), 4.030L tetrafluoroethylene-perfluoro-n-propyl vinyl ether copolymer emulsion (PFA) After mixing thoroughly, add 1.3802kg calcium nitrate Ca(NO 3 ) 2 , 1.4305kg butyl titanate C 16 H 36 O 4 Ti and 1.418kg zirconium nitrate Zr(NO 3 ) 4 , Then add 100g of diisopropylamine and 90g of alkyl mercaptan and mix to obtain a mixed emulsion.
[0047] The concentration of the polytetrafluoroethylene emulsion (PTFE) is 50% (w), the concentration of the polyperfluoroethylene propylene emulsion (FEP) is 50% (w), and the copolymerization of tetrafluoroethylene-perfluoron-propyl vinyl ether The concentration of the organic emulsion (PFA) is 30% (w).
[0048] B. Put the mixed emulsion prepared in step A into a 10L autoclave. The filling ratio is 73.4%. After heating to 220°C at a heating rate of 1.5°C / min, react for 24 hours at a pressure of 6.5Mpa to obtain a polymer A substance tha...
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