Lightweight shielding square cabinet wall plate with radar stealth function, and a preparation method thereof
A radar stealth and bulkhead panel technology, which is applied to chemical instruments and methods, protective equipment, offensive equipment, etc., can solve the problems of large radar reflection cross-section area and obvious target characteristics in the shelter, and achieve light weight and high shielding performance Effect
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[0042] The present invention provides a method for preparing a lightweight shielding shelter panel with radar stealth function described in the above technical solution, comprising the following steps:
[0043] The wave-absorbing honeycomb sandwich layer, the first panel layer and the second panel layer are bonded to obtain a lightweight shielding shelter panel with radar stealth function;
[0044] The wave-absorbing honeycomb sandwich layer includes a honeycomb support skeleton and a wave-absorbing layer covering the surface of the skeleton;
[0045] Both the first panel layer and the second panel layer include a multi-layer metallized fiber fabric whose surface is coated with a wave-absorbing material.
[0046] In the present invention, the wave-absorbing honeycomb sandwich layer is preferably prepared according to the following method:
[0047] The fiber raw paper coated with a wave-absorbing layer on the surface is glued, laminated, hot-pressed, stretched, dipped and cure...
Embodiment 1
[0068] (1) Copper and nickel are plated on the surface of carbon fiber filaments by electroless plating process, the thickness of the copper plating layer is 2 μm, and the thickness of the nickel layer is 0.5 μm;
[0069] (2) Each bundle containing 1000 carbon fiber filaments is bidirectionally alternately woven into a plain weave bidirectional 1K carbon fiber fabric;
[0070] (3) Coating wave-absorbing paint on the surface of the above-mentioned carbon fiber fabric, the thickness of the coating is 5 μm; wherein the wave-absorbing paint is composed of iron, nickel, carbon black powder as wave absorbing agent and water-based polyurethane resin, the wave absorbing agent and resin The mass ratio is 45:55;
[0071] (4) Prepare the carbon fiber prepreg by impregnating the carbon fiber fabric in step (3) with epoxy resin, then spread the carbon fiber prepreg on the flat mold by hand lay-up process, and cure at a temperature of 130°C and a time of 90 minutes Demoulding after forming...
Embodiment 2
[0077] (1) The surface of the aramid twill fabric is coated with conductive silver paste and absorbing material by coating process to prepare conductive coating and absorbing coating; wherein the conductive silver paste is a commercially available product with a silver content of 60%, and the thickness of the coating is 5 microns, the absorbing material is made of iron-silicon aluminum alloy powder as the absorbing agent and water-based acrylic acid; the thickness of the absorbing layer is 8 microns;
[0078] (2) Impregnate the aramid fabric in step (1) with polytetrafluoroethylene resin to form a prepreg and use a lamination molding process to obtain the required first panel and second panel. The curing temperature is 120 °C and the time is uniform. 30min, the thickness of the first panel and the second panel are both 1.2mm;
[0079] (3) Immerse the polyurethane rigid foam board in the wave-absorbing glue (the wave-absorbing glue includes components: ferrite, ferrosilicon alu...
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