Film coating with ultrahigh wireless communication receiving capability, and technology of film coating
A technology of wireless communication and reception capability, applied in the field of wireless communication, can solve problems such as the effect of affecting the use, and achieve the effect of improving reception capability, reducing the loss of wireless signals, and maintaining thermal stability
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Embodiment 1
[0024] Embodiment 1: A coating with super strong wireless communication receiving ability and its process, including the following steps:
[0025] S1, prepare the finished secondary reflector, and polish and polish the surface after quenching.
[0026] S2, prepare a composite chromium plating solution, an appropriate amount of chromium plating solution with sulfuric acid and fluorosilicic acid as catalysts.
[0027] S3: Pre-heat the finished secondary mirror parts that have been polished and polished to a moderate temperature.
[0028] S4: Put the preheated product into a chromium plating solution with sulfuric acid and fluorosilicic acid as a catalyst, and let it stand for 24 hours.
[0029] S5, calculate according to the time in S4, and salvage the reaction plated parts on time.
[0030] S6, the electroplated parts are soft polished and polished, and an appropriate amount of natural paraffin is added in the process for cooling treatment.
[0031] By quenching the surface of the finished...
Embodiment 2
[0032] Embodiment 2: A coating with super strong wireless communication receiving ability and its process, including the following steps:
[0033] S1, prepare the finished secondary reflector, and polish and polish the surface after quenching.
[0034] S2, prepare a composite chromium plating solution, an appropriate amount of chromium plating solution with sulfuric acid and fluorosilicic acid as catalysts.
[0035] S3: Pre-heat the finished secondary mirror parts that have been polished and polished to a moderate temperature.
[0036] S4: Put the preheated product into a chromium plating solution with sulfuric acid and fluorosilicic acid as a catalyst, and let it stand for 24 hours.
[0037] S5, calculate according to the time in S4, and salvage the reaction plated parts on time.
[0038] S6, the electroplated parts are soft polished and polished, and an appropriate amount of natural paraffin is added in the process for cooling treatment.
[0039] By preparing the finished secondary refl...
Embodiment 3
[0040] Embodiment 3: A coating with super-strong wireless communication receiving ability and its process, including the following steps:
[0041] S1, prepare the finished secondary reflector, and polish and polish the surface after quenching.
[0042] S2, prepare a composite chromium plating solution, an appropriate amount of chromium plating solution with sulfuric acid and fluorosilicic acid as catalysts.
[0043] S3: Pre-heat the finished secondary mirror parts that have been polished and polished to a moderate temperature.
[0044] S4: Put the preheated product into a chromium plating solution with sulfuric acid and fluorosilicic acid as a catalyst, and let it stand for 24 hours.
[0045] S5, calculate according to the time in S4, and salvage the reaction plated parts on time.
[0046] S6, the electroplated parts are soft polished and polished, and an appropriate amount of natural paraffin is added in the process for cooling treatment.
[0047] By preparing the finished sub-reflecting...
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