Heat preventing and insulating integrated thermal protection structure suitable for negative curvature shape
A thermal protection structure, negative curvature technology, applied in chemical instruments and methods, supersonic aircraft, layered products, etc., can solve problems such as large thermal expansion of the bearing shell, excessive shrinkage of the bearing shell, and structural damage of the aircraft , to achieve good high temperature bonding performance, improve deformation coordination ability, good thermal matching performance effect
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Embodiment 1
[0029] see figure 1 with figure 2 As shown, the embodiment of the present invention provides an anti-heat insulation integrated heat protection structure suitable for negative curvature shapes, and the integrated heat protection structure is composed of a load-bearing shell 3 , a heat protection layer 1 and an adhesive layer 2 .
[0030] Wherein, the load-bearing shell 3 is a light-weight and high-strength metal material, and the load-bearing shell 3 mainly plays a load-bearing role.
[0031] The heat protection layer 1 comprises a heat insulation layer 12 and a heat protection layer 11, the heat protection layer 11 inner wall is provided with a grid-like heat protection layer reinforcement 14, and the heat insulation layer 12 is arranged in the grid of the heat protection layer reinforcement 14, On the surface of the heat insulation layer 12, a heat insulation layer covering skin 13 is arranged.
[0032] The ribs 14 of the heat-proof layer are arranged in a grid shape, and...
Embodiment 2
[0043] see figure 1 with figure 2 As shown, the embodiment of the present invention provides a heat-insulating integrated heat protection structure suitable for the shape of negative curvature. Both the cladding skin 13 and the ribs 14 of the heat-proof layer are formed by laminating and curing at high temperature multiple layers of prepreg, and the prepreg is made of three-dimensional quartz fabric with a certain thickness impregnated with phenolic resin. The specific thickness of the three-dimensional quartz fabric and the specific type of phenolic resin are specifically set by those skilled in the art according to actual needs.
[0044] The heat-proof layer 11 of the heat-protection layer 1 , the covering skin 13 of the heat-insulation layer and the ribs 14 of the heat-proof layer can be prepared separately using three-dimensional fabrics of different thicknesses and different types of resins as required.
[0045] The three-dimensional fabric used in the heat-proof layer...
Embodiment 3
[0047] see figure 1 with figure 2 As shown, the embodiment of the present invention provides a heat-insulating integrated heat protection structure suitable for negative curvature shapes. The difference between this embodiment and Embodiment 1 is that the heat protection layer 11 of the heat protection layer 1 has multiple layers , The specific number of layers of the heat-proof layer 11 is increased or decreased according to specific design requirements. The multi-layer heat-proof layer 11 is laminated to form a set thickness, and the multi-layer heat-proof layer 11 is sewn together with the heat-insulation layer 12 through the sewing thread 15 . The multi-layer heat protection layer 11 is stitched together with the heat protection layer 1 that has been stitched together in Example 1 again to prevent interface separation between layers.
[0048] Preferably, the suture 15 is made of quartz fiber material with high temperature resistance. Quartz fiber material is heat-resis...
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