Anticorrosion plastic alloy
A plastic alloy, corrosion-resistant technology, applied in the field of alloys, can solve the problems of large demand, plasticity, poor wear and corrosion resistance, late start of plastic alloys, etc., to achieve simple production process, good corrosion resistance, good high the effect of strength
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Embodiment 1
[0018] As a preferred technical solution, the main components include the following mass percentages: 40% magnesium, 15% lithium, 1% silicon, 2% manganese, 2% chromium, 5% cobalt, 14% nickel and 1% vanadium; auxiliary components The substance includes the following mass percentage components: 18% polypropylene, 1% lubricant and 1% high temperature resistant binder.
[0019] Wherein, the lubricant is calcium stearate; the high temperature resistant binder is any one of aromatic ring alicyclic acid anhydride, phenolic resin, dicyandiamide or a combination of two or more.
[0020] The corresponding preparation method is as follows: first weigh the material raw materials of the main components according to the mass percentage, and carry out vacuum intermediate frequency induction melting; after vacuum casting ingots, perform stress relief treatment for 1H; grind the ingots into nano-alloy powder; The powder is mixed with the auxiliary components, added to a mixer and stirred at a ...
Embodiment 2
[0022] The main components include the following mass percentages: 35% magnesium, 25% lithium, 1% silicon, 2% manganese, 5% chromium, 5% cobalt, 10% nickel and 1% vanadium; the auxiliary components include the following mass percentages Substances: polypropylene 15%, lubricant 0.5% and high temperature resistant binder 0.5%.
[0023] Wherein, the preparation method is the same as the preparation method disclosed in Example 1.
Embodiment 3
[0025] The main components include the following mass percentages: magnesium 40%, lithium 15%, silicon 0.5%, manganese 1.5%, chromium 2%, cobalt 2%, nickel 20% and vanadium 4%; auxiliary components include the following mass percentages Substances: polypropylene 18%, lubricant 0.5% and high temperature resistant binder 1.5%.
[0026] Wherein, the preparation method is the same as the preparation method disclosed in Example 1.
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