Wear-resistant aluminum alloy door and window
A kind of aluminum alloy doors and windows, wear-resistant technology, applied in the field of aluminum alloys, can solve problems such as collapse, broken doors and windows, surface dents, etc., to achieve the effects of excellent weather resistance, extended service life, and strong sense of hierarchy
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Embodiment 1
[0037] Such as figure 1 As shown, the present invention provides an abrasion-resistant aluminum alloy door window, a resistant base 1, a protective support rod 2, and a fixed top plate 3, and one end of the protective support rod 2 is fixedly connected to the top, protective support of the friction base 1. The other end of the rod 2 is fixed to the bottom of which is characterized by a bottom portion of the fixed top plate 3, and the fixed top table 3 is fixed to a fixed connection between the protective support rod 2 and the anti-friction base 1.
[0038] The anti-friction base 1 serves as a support base of the door and window to protect the entire aluminum alloy doors and windows, and the user can mount the protective support rod 2 and the fixed top plate 3 by anti-friction base 1, and anti-friction base 1, protective support rod 2 And the materials used in the fixed top platform 3 are the same, and the internal structure is also the same.
[0039] Specifically, such as figure 2...
Embodiment 2
[0042] Such as image 3 As shown in the basis of the first embodiment, the present invention provides a technical solution: the inner layer 5 includes a stress protective layer 8, a pressing layer 9, a divided film 10, a broken bond 11, and a filling material 12, a stress protection layer 8 The bottom is welded to the top of the extrudation layer 9, and the bottom of the pressing layer 9 is welded to the top of the filler material 12, and the extrudation layer 9 is welded to the filling material 12 with the divided film 10, and the interior of the divided film 10 is disposed. The outer wall of the key 11, the outer wall of the damaged key 11 is connected to the inside of the extrudation layer 9 and the filler material 12.
[0043] When the entire structure is squeezed, the stress protective layer 8 reduces the pressure and passes to the inside of the extrudation layer 9, and the extrudation layer 9 is then extruded to the divided film 10, and the divided film 10 herein is not In th...
Embodiment 3
[0049] Such as Figure 4 As shown, in the basis of Example 1, Example 2, the present invention provides a technical solution: preferably, the oxidative outer layer 4 includes a wood-proof cellular layer 15, a wire wire 14 and an oxidation epidermal 13, an oxidized epidermis 13 The top of the oxidized outer layer 4 is provided inside the oxidation epidermis 13, which is welded between the wood linen texture layer 15, and the connecting wire 14 is welded to the inside of the oxidative epidermal 13.
[0050] The above-described embodiment provided, the oxidation epidermal 13 is formed by the oxygen in the surface of the oxygen in the air, and after the formation of this oxidative epidermal 13, the wood-proof layer is engraved in the surface of the trees. 15. Improve the beauty of its appearance, and set the toughness of the epidermal 14 when connecting the wire 14, so that it can withstand the body of the air, effectively guarantee that the internal structure will not be surrounded ar...
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