Processable full sea-depth buoyancy material and manufacture method
A technology of buoyancy material and heating system, which can be applied in the field of processing full-sea deep buoyancy material and manufacturing, can solve problems such as difficult to manufacture 11,000-meter buoyancy material, and achieve the effect of convenient operation
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Embodiment 1
[0036] Embodiment 1: The embodiment 1 of the present invention that can process the full-sea deep buoyancy material and its manufacturing method is carried out according to the following steps.
[0037] Step 1: Prepare a sodium hydroxide alkaline solution with a concentration of 0.05%, pour the hollow glass microspheres into the alkaline solution and rinse for 2 hours, wash the hollow glass microspheres with deionized water for 4 times, and dissolve the hollow glass microspheres with ethanol Wash again and tumble dry. Blow the sticky beads with hot air. Remove a small amount of microbeads and observe the surface state of microbeads with a microscope. Put the processed hollow glass microspheres in a plastic bag and keep them airtight for later use.
[0038] Step 2: In a closed container with a heating system and a vacuum device that can be stirred, heat 1000 grams of pyroglucinol triglycidyl ether epoxy resin to 85°C-90°C, and pour 500 grams of low molecular weight Epoxy rea...
Embodiment 2
[0043] Embodiment 2 of the present invention that can process full sea deep buoyancy material and manufacturing method is carried out according to the following steps.
[0044] Step 1: Prepare a sodium hydroxide alkaline solution with a concentration of 0.08%, pour the hollow glass microspheres into the alkaline solution and rinse for 1 hour, wash the hollow glass microspheres with deionized water for more than 4 times, and distill the hollow glass microspheres with ethanol. The beads are washed again and dried. Blow the sticky beads with hot air. Observe the surface state of microbeads with a microscope. Put the processed hollow glass microspheres in a plastic bag and keep them airtight for later use.
[0045] Step 2: In a closed container with a heating system and a vacuum device and capable of stirring, 1000 grams of 1,1,2,2-tetra(p-hydroxyphenyl)ethane tetraglycidyl ether epoxy resin is heated to 85 ℃-90℃, after the solid resin is completely melted, pour 400 grams of lo...
Embodiment 3
[0051] Embodiment 3 of the present invention that can process full-sea deep buoyancy material and manufacturing method is carried out according to the following steps.
[0052] Step 1: prepare a sodium hydroxide alkaline solution with a concentration of 1%, pour the hollow glass microspheres into the alkaline solution and rinse for 1 hour, wash the hollow glass microspheres with deionized water for 4 times, and dissolve the hollow glass microspheres with ethanol Wash again and tumble dry. Blow the sticky beads with hot air. Take a small amount of beads and observe the surface state of the beads with a microscope. Put the processed hollow glass microspheres in a plastic bag and keep them airtight for later use.
[0053] Step 2: In a closed container with a heating system and a vacuum device and capable of stirring, 1000 grams of 1,1,2,2-tetra(p-hydroxyphenyl)ethane tetraglycidyl ether epoxy resin is heated to 85 ℃-90℃, after the solid resin is completely melted, pour 500 gra...
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Abstract
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Application Information
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