Electromagnetic shielding nylon composite material
A nylon composite material and electromagnetic shielding technology, which is applied in the field of electromagnetic shielding nylon composite materials, can solve problems such as insulator failure, shielding net deformation, and the influence of electric field distribution at solid insulation points, and achieves improved electric field, uniform electric field distribution, and excellent performance. The effect of electromagnetic shielding effect
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Embodiment 1
[0035] Each raw material was weighed according to the corresponding Example 1 data in Table 1.
[0036] Nylon 610 was dried under vacuum at 80°C for 5 hours, and then the dried nylon 610 and other additives: flame retardant, antioxidant and antistatic agent were placed in a high-speed mixer, and carbon fiber and coupling were added while mixing. 3-thiocyanopropyltriethoxysilane, mixed for 3 minutes, then extruded and granulated in a screw extruder at about 210°C, water-cooled strands were cut into granules, screened and dehydrated to obtain the electromagnetic shielding nylon of the present invention composite material.
[0037] Table 1 Formula of electromagnetic shielding nylon composite material Unit: kg
[0038]
Embodiment 2
[0040] Each raw material was weighed according to the data of Example 2 corresponding in Table 1.
[0041] Nylon 610 was dried under vacuum conditions at 75°C for 4 hours, and then the dried nylon 610 was placed in a high mixer, and carbon fiber and coupling agent 3-thiocyanopropyltriethoxysilane were added while mixing, and mixed for 2 Minutes, and then extruded and granulated in a screw extruder at about 200°C, water-cooled strands were cut into pellets, screened and dehydrated to obtain the electromagnetic shielding nylon composite material of the present invention.
Embodiment 3
[0043] Each raw material was weighed according to the data of Example 3 corresponding in Table 1.
[0044] Nylon 610 was dried under vacuum conditions at 85°C for 6 hours, and then the dried nylon 610 and other additives and antistatic agents were placed in a high-speed mixer, and carbon fiber and coupling agent 3-thiocyanopropyltri was added while mixing. Ethoxysilane, mixed for 3 minutes, then extruded and granulated in a screw extruder at about 220°C, water-cooled strands, granulated, screened and dehydrated to obtain the electromagnetic shielding nylon composite material of the present invention.
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