Nano antimicrobial aeration oxygenation tube and manufacturing method thereof
An oxygen-increasing tube and aeration technology, applied in the field of aquaculture equipment, can solve the problems of easy hardening, high use cost, aging and cracking, etc., and achieve the effects of strong acid and alkali corrosion resistance, long service life and good water resistance
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Embodiment 1
[0022] The present embodiment provides a kind of nanometer antibacterial aeration and aeration tube, and the specific component content of its raw material is calculated by weight percent:
[0023] 40 mesh rubber powder: 100 parts, 60 mesh rubber powder: 40 parts, HDPE resin: 50 parts, ethylene-vinyl acetate copolymer: 10 parts, PE wax: 3 parts, ultraviolet absorber UV-531: 1 part, nano silver : 3 parts, antioxidant: 1 part, NBR P83: 6 parts, accelerator TMTD: 1 part.
[0024] Wherein, the particle diameter of nano-silver is 35nm; the antioxidant is diphenylamine.
[0025] This embodiment also provides a method for manufacturing a nano-antibacterial aeration and oxygenation tube, including the following specific steps:
[0026] Step 1: Add 40-mesh rubber powder, 60-mesh rubber powder, HDPE resin, and NBR into the internal mixer according to the ratio, set the roller distance to 3.2mm, mix for 1min, and then add PE wax and ethylene-acetic acid in sequence Ethylene copolymer, ...
Embodiment 2
[0032] The present embodiment provides a kind of nanometer antibacterial aeration and aeration tube, and the specific component content of its raw material is calculated by weight percent:
[0033] 40 mesh rubber powder: 90 parts, 60 mesh rubber powder: 30 parts, HDPE resin: 42 parts, ethylene-vinyl acetate copolymer: 8 parts, PE wax: 2 parts, ultraviolet absorber UV-531: 0.5 parts, nano silver : 1 part, antioxidant: 0.8 part, nitrile rubber P83: 3 parts, accelerator TMTD: 0.3 part.
[0034] Among them, the particle diameter of nano-silver is 45nm; the antioxidant is p-phenylenediamine.
[0035] This embodiment also provides a method for manufacturing a nano-antibacterial aeration and oxygenation tube, including the following specific steps:
[0036] Step 1: Add 40-mesh rubber powder, 60-mesh rubber powder, HDPE resin, and NBR into the internal mixer according to the ratio, set the roller distance to 3.4mm, mix for 1min, and then add PE wax and ethylene-acetic acid in sequenc...
Embodiment 3
[0042] The present embodiment provides a kind of nanometer antibacterial aeration and aeration tube, and the specific component content of its raw material is calculated by weight percent:
[0043] 40 mesh rubber powder: 120 parts, 60 mesh rubber powder: 60 parts, HDPE resin: 66 parts, ethylene-vinyl acetate copolymer: 15 parts, PE wax: 4 parts, ultraviolet absorber UV-531: 3 parts, nano silver : 3 parts, antioxidant: 2.2 parts, NBR P83: 9 parts, accelerator TMTD: 2.5 parts.
[0044] Wherein, the particle diameter of nano-silver is 40nm; the antioxidant is dihydroquinoline.
[0045] This embodiment also provides a method for manufacturing a nano-antibacterial aeration and oxygenation tube, including the following specific steps:
[0046] Step 1: Add 40-mesh rubber powder, 60-mesh rubber powder, HDPE resin, and NBR into the internal mixer according to the ratio, set the roller distance to 3.2mm, mix for 1min, and then add PE wax and ethylene-acetic acid in sequence Ethylene c...
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