Fiber reinforced resin-based wet friction material and preparation method
A fiber-reinforced resin, wet friction material technology, applied in the field of friction materials, can solve the problems of low strength, large amount of water, high energy consumption, etc. The effect of a high coefficient of stability
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Embodiment 1
[0056] Example 1: The material composition is 18% of aramid fiber and basalt fiber, 10% of alumina, 15% of graphite, 7% of barite, 2% of potassium feldspar powder, 8% of kaolin, 2% of molybdenum disulfide, and diatomaceous earth , phenolic resin 37%.
[0057] Step 1: Put the chopped aramid fibers and basalt fibers into the cotton feeder, open them to the state of monofilament fibers through the opener, loosen them through the vibrating cotton feeder, and comb them through the carding machine. One-dimensional or three-dimensional overlapping to form a non-directional overlapping fiber layer, and then layer by layer layer by layer layer by layering machine, sent to the needle punching machine to achieve a density of 26 punches / cm 2 A loose fibrous skeleton material with rich pore structure and porosity.
[0058] Step 2: Dissolve the friction modifier and filler with an appropriate amount of water, and stir in an appropriate amount to make the filler approximate to a paste.
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Embodiment 2
[0064] Example 2: Material composition: aramid fiber and nylon 18%, alumina 10%, graphite 5%, potassium feldspar powder 5%, fluorite powder 4%, cashew nut shell oil powder 1%, barite 7%, kaolin 8%, molybdenum disulfide 2%, phenolic resin 40%.
[0065] Step 1: Put the chopped aramid fibers and nylon fibers into the cotton feeder, open them to the state of monofilament fibers through the opener, loosen them through the vibrating cotton feeder, and comb them through the carding machine. Or three-dimensional overlapping to form a non-directional overlapping fiber layer, and then laminated layer by layer by a web-laying machine, and then sent to a needle-punching machine with a density of 26 punches / cm 2 A loose fibrous skeleton material with rich pore structure and porosity.
[0066] Step 2: Dissolve the friction modifier and filler with an appropriate amount of water, and stir in an appropriate amount to make the filler approximate to a paste.
[0067] Step 3: Spread the dope o...
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