Method for enhancing damping capacity of rubber by adding permanent ferrite magnetic powder
A permanent magnet ferrite and rubber technology, applied in the field of improving rubber damping performance, can solve problems such as reducing mechanical damping and reducing the relative density of rubber, and achieves the effects of increasing energy conversion, increasing effective damping temperature range, and improving damping performance
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Embodiment 1
[0030] 1) Plasticize 100 parts by mass of butyl rubber on an open mill, then add 50 parts by mass of carbon black reinforcing agent, 20 parts by mass of isotropic quick-quenching permanent magnet ferrite magnetic powder with a particle size of 100 microns, 2 Parts by mass of sulfur, 5 parts by mass of zinc oxide, and 1.5 parts by mass of stearic acid were kneaded for 5 minutes to obtain a mixture;
[0031] 2) Put the mixture in the mold, apply a pressure of 5 Pa to the mold, and keep it at 120°C for 30 minutes for vulcanization to obtain vulcanized rubber;
[0032] 3) Place the vulcanized rubber under a 5T magnetic field and magnetize it for 1 second to obtain a high-damping permanent ferrite magnetic rubber.
[0033] Compared with ordinary butyl rubber, the maximum damping coefficient of permanent ferrite magnetic rubber with 20 mass parts of magnetic powder is increased from 0.85 to 0.98 at 50, which is an increase of 15%, and the damping performance is significantly improve...
Embodiment 2
[0035] 1) Plasticize 100 parts by mass of nitrile rubber on a calender, then add 35 parts by mass of carbon black reinforcing agent, 120 parts by mass of anisotropic quick-quenching permanent ferrite magnetic powder with a particle size of 1 micron, 1.5 parts by mass Part sulfur, 5 parts by mass of zinc oxide, 1 part by mass of stearic acid, mixed for 5 minutes to obtain a mixture;
[0036]2) Put the mixture in the mold, apply a pressure of 15Pa to the mold, and keep it at 150°C for 10 minutes for vulcanization to obtain vulcanized rubber;
[0037] 3) Place the vulcanized rubber under a 4T magnetic field for 5 seconds to obtain a high-damping permanent ferrite magnetic rubber.
[0038] Compared with ordinary butyl rubber, the maximum damping coefficient of permanent ferrite magnetic rubber added with 60 parts by mass of magnetic powder is increased from 0.84 to 1.05 at 50, an increase of 25%, and the damping performance is significantly improved.
Embodiment 3
[0040] 1) Plasticize 100 parts by mass of silicone rubber on a mixer, then add 50 parts by mass of white carbon black reinforcing agent, 60 parts by mass of isotropic injection molded permanent ferrite magnetic powder with a particle size of 70 microns, and 0.8 parts by mass sulfur, mixed for 15 minutes to obtain a mixture;
[0041] 2) Put the mixture in the mold, apply a pressure of 20Pa to the mold, and keep it at 170°C for 20 minutes for vulcanization to obtain vulcanized rubber;
[0042] 3) Place the vulcanized rubber under a 1.5T magnetic field and magnetize it for 10 seconds to obtain a high-damping permanent ferrite magnetic rubber.
[0043] Compared with ordinary silicone rubber, the maximum damping coefficient of permanent ferrite magnetic rubber with 120 mass parts of magnetic powder is increased from 0.34 to 0.40 at 50, an increase of 18%, and the damping performance is significantly improved.
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