Alloy composite material and preparation method thereof
A technology of composite materials and alloys, which is applied in metal material coating technology, chemical instruments and methods, metal layered products, etc., can solve the problems of poor weather resistance, poor mechanical strength and unstable preparation process of alloy composite materials, etc. problem, to achieve the effect of improving the utilization rate of the target material, not being easily oxidized, and having good mechanical strength
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Embodiment 1
[0028] This embodiment provides an alloy composite material, including a soft substrate 1, on the surface of the soft substrate 1, a first metal layer 2, a second metal layer 3, a third metal layer 4 and The fourth metal layer 5 .
[0029] Wherein, the first metal layer 2 is a copper layer, the second metal layer 3 is a nickel layer, the third metal layer 4 is a stainless steel layer, and the fourth metal layer 5 is a zinc layer. The soft substrate 1 is polyimide (PI).
[0030] Wherein, the thickness of the first metal layer 2 is 110 nm, the thickness of the second metal layer 3 is 90 nm, the thickness of the third metal layer 4 is 66 nm, and the thickness of the fourth metal layer 5 is 90 nm. The thickness of the layer is 355 nm.
[0031] The invention has good adhesion between layers, good mechanical strength, stable preparation process, strong metal texture, good weather resistance, and the film layer is not easily oxidized when exposed to the air for a long time. The an...
Embodiment 2
[0033] The difference from Example 1 is that the first metal layer 2 is a copper layer, the second metal layer 3 is a copper-nickel alloy layer, the third metal layer 4 is a copper-nickel steel alloy layer, and the fourth metal layer 5 is a copper-nickel steel-zinc layer. alloy layer. The soft substrate 1 is polyethylene terephthalate (PET).
[0034] Among them, the thickness of the first metal layer is 113nm, the thickness of the second metal layer is 93nm, the thickness of the third metal layer is 67nm, the thickness of the fourth metal layer is 92.5nm, and the thickness of the central alloy layer of the soft substrate is 365nm .
[0035] The rest are the same as in Embodiment 1, and will not be repeated here.
Embodiment 3
[0037] This embodiment provides an alloy composite material, including a soft substrate 1, on the surface of the soft substrate 1, a first metal layer 2, a second metal layer 3, a third metal layer 4 and The fourth metal layer 5 .
[0038] Wherein, the first metal layer 2 is a copper layer, the second metal layer 3 is a nickel layer, the third metal layer 4 is a stainless steel layer, and the fourth metal layer 5 is a zinc layer. The soft base material 1 is polypropylene (PE).
[0039] Wherein, the thickness of the first metal layer 2 is 115 nm, the thickness of the second metal layer 3 is 91.3 nm, the thickness of the third metal layer 4 is 67 nm, the thickness of the fourth metal layer 5 is 89.5 nm, the thickness of the soft base material 1 The thickness of the central alloy layer is 370 nm.
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Abstract
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