Corrosion-resisting high-molecular material
A polymer material and corrosion-resistant technology, applied in the field of corrosion-resistant polymer materials, can solve the problem of a single type of corrosion-resistant materials, and achieve the effect of low cost
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Embodiment 1
[0042] A corrosion-resistant polymer material, made of the following components by weight:
[0043] Polyarylether resin: 50 parts;
[0044] Polybutene: 20 parts;
[0045] PET: 20 servings:
[0046] Ferric oxide: 10 parts;
[0047] Ferric oxide: 5 parts;
[0048] Copper oxide: 5 parts;
[0049] Magnesium oxide: 5 parts;
[0050] The mesh numbers of the ferric oxide, ferric oxide, copper oxide and magnesium oxide are 800 mesh.
Embodiment 2
[0052] A corrosion-resistant polymer material, made of the following components by weight:
[0053] Polyarylether resin: 80 parts;
[0054] Polybutene: 10 parts;
[0055] PET: 5 servings:
[0056] Ferric oxide: 5 parts;
[0057] Ferric oxide: 1 part;
[0058] Copper oxide: 1 part;
[0059] Magnesium oxide: 1 part;
[0060] The mesh numbers of the ferric oxide, ferric oxide, copper oxide and magnesium oxide are 2000 mesh.
Embodiment 3
[0062] A corrosion-resistant polymer material, made of the following components by weight:
[0063] Polyarylether resin: 60 parts;
[0064] Polybutene: 15 parts;
[0065] PET: 15 servings:
[0066] Ferric oxide: 8 parts;
[0067] Ferric oxide: 3 parts;
[0068] Copper oxide: 3 parts;
[0069] Magnesium oxide: 3 parts;
[0070] The mesh numbers of the ferric oxide, ferric oxide, copper oxide and magnesium oxide are 1000 mesh.
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