Salt-corrosion resistant plastic rope and processing technology thereof
A processing technology, plastic rope technology, applied in the field of plastic rope, can solve problems such as salt water corrosion, and achieve the effect of improving salt corrosion resistance, good wear resistance, and strong corrosion resistance
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Embodiment 1
[0023] Such as figure 1 As shown, a salt-resistant plastic rope includes a main rope core 1 and several secondary strands 2 twisted with the main rope core 1 to form a rope body, the main rope core 1 is Manila hemp fiber, and the secondary rope strands 2 are polypropylene fiber.
[0024] Preferably, the ratio of the pipe diameter of the main rope core 1 to the diameter length of the secondary rope strand 2 is 1:0.8.
[0025] Preferably, the number of strands of the secondary rope strand 2 is 4 strands.
[0026] A processing technology for a salt-corrosion-resistant plastic rope, comprising the following steps:
[0027] (1) Extraction of Manila hemp fiber: place the abaca leaf sheath in a mixed solution of sodium hydroxide, sodium silicate, and oxalic acid, cook under high pressure and high temperature for 9 minutes, and after cooling, take out the leaf sheath and wash it with clean water several times , beating to remove pectin and wood; pickling with glacial acetic acid, s...
Embodiment 2
[0032] Such as figure 1 As shown, a salt-resistant plastic rope includes a main rope core 1 and several secondary strands 2 twisted with the main rope core 1 to form a rope body, the main rope core 1 is Manila hemp fiber, and the secondary rope strands 2 are polypropylene fiber.
[0033] Preferably, the ratio of the pipe diameter of the main rope core 1 to the diameter length of the secondary rope strand 2 is 1:1.
[0034] Preferably, the number of strands of the secondary rope strand 2 is 5 strands.
[0035] A processing technology for a salt-corrosion-resistant plastic rope, comprising the following steps:
[0036] (1) Extraction of Manila hemp fiber: place the abaca leaf sheath in a mixed solution of sodium hydroxide, sodium silicate, and oxalic acid, cook under high pressure and high temperature for 10 minutes, and after cooling, take out the leaf sheath and wash it with clean water several times , beating to remove pectin and wood; pickling with glacial acetic acid, so...
Embodiment 3
[0041] Such as figure 1 As shown, a salt-resistant plastic rope includes a main rope core 1 and several secondary strands 2 twisted with the main rope core 1 to form a rope body, the main rope core 1 is Manila hemp fiber, and the secondary rope strands 2 are polypropylene fiber.
[0042] Preferably, the ratio of the pipe diameter of the main rope core 1 to the diameter length of the secondary rope strand 2 is 1:0.8-1.2.
[0043] Preferably, the number of strands of the secondary rope strand 2 is 4-6 strands.
[0044] A processing technology for a salt-corrosion-resistant plastic rope, comprising the following steps:
[0045] (1) Extraction of Manila hemp fiber: place the abaca leaf sheath in a mixed solution of sodium hydroxide, sodium silicate, and oxalic acid, cook under high pressure and high temperature for 11 minutes, after cooling, take out the leaf sheath, and wash it with clean water several times , beating to remove pectin and wood; pickling with glacial acetic aci...
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