Underwater vehicle tail shaft electric insulation connecting device
A technology for underwater vehicles and connection devices, which is applied in the direction of conductive connection, connection, connection insulation, etc., can solve the problem that the electric field transmission of flange connection bolts cannot be completely cut off, and achieve the purpose of improving the stealth performance of the underwater electric field, improving combat performance and Battlefield survivability and the effect of reducing the probability of being detected underwater
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Embodiment 1
[0027] like Figure 1 ~ Figure 2 As shown, a kind of underwater vehicle tail shaft 1b electrical insulation connection device of the present invention includes a tail connection section 1, a head connection section 2, a protective sleeve 3, a connecting flat key 4, a head insulation layer 5, and a circumferential insulation layer 6. The tail insulation layer 7 and the key insulation layer 8; the head and tail connection sections 1 are used to directly connect with the front and rear sections of the shafting, so as to ensure that the torque and axial force of the front section can be transmitted to the rear section, according to actual design requirements , the strength of the connecting section and various parameters have corresponding requirements, and the production materials are selected according to the requirements of various parameters. Generally, it is made of high-hardness metal steel and other materials.
[0028] like image 3 As shown, the tail connecting section 1 ...
Embodiment 2
[0044] The difference from Embodiment 1 is that in this embodiment, except for the key insulation layer, other insulation layers are not made of molded glass fiber composite materials, but are formed by potting;
[0045] In this case, the entire device assembly process is completed by clamping the tooling. After the tail connection end 1, the head connection section 2 and the key insulation layer 8 are assembled according to the predetermined assembly relationship and clearance, they are integrally filled with insulating epoxy resin. The sealing process controls the thickness of the insulating layer in the range of 0.1-0.5 mm to form other insulating layers and internal insulating fillers.
[0046] The above two embodiments can be applied to different environments according to the type of insulating layer used and the actual needs. The construction and assembly process of the first embodiment is relatively simple, and the attached auxiliary equipment is relatively less; the sec...
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