Wear-resistant metal coating
A metal coating and wear-resistant metal technology, applied in the field of wear-resistant metal coating, can solve the problems of producing harmful substances, unsafe and environmentally friendly, and high process cost, and achieve the effects of cost safety and environmental protection, enhanced wear resistance, and simple process
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Embodiment 1
[0012] A wear-resistant metal coating, comprising: a metal substrate and a nanocomposite metal coating, the metal substrate is an iron metal substrate, and the nanocomposite metal coating is composed of 30% copper, 15% nickel and 55% zinc The average particle size of each nanocomposite metal material is 30-50nm. First, the nanocomposite metal materials are mixed and ground to form a nanometer metal coating, and then poured on the nanocomposite metal coating by flow coating. The nanocomposite metal coating is formed by drying and firing on the surface of the metal substrate.
[0013] Wherein, the thickness of the nanocomposite metal coating is 1-3mm, which is light, thin and uniform, and can effectively improve the wear resistance of the base metal.
Embodiment 2
[0015] A wear-resistant metal coating, comprising: a metal substrate and a nanocomposite metal coating, the metal substrate is an iron metal substrate, and the nanocomposite metal coating is composed of 40% copper, 10% nickel and 50% zinc The average particle size of each nanocomposite metal material is 30-50nm. First, the nanocomposite metal materials are mixed and ground to form a nanometer metal coating, and then poured on the nanocomposite metal coating by flow coating. The nanocomposite metal coating is formed by drying and firing on the surface of the metal substrate.
[0016] Wherein, the thickness of the nanocomposite metal coating is 1-3mm, which is light, thin and uniform, and can effectively improve the wear resistance of the base metal.
[0017] The invention discloses a wear-resistant metal coating, which uses a flow coating method to coat a layer of nano-composite metal coating on the surface of an iron metal substrate, replacing the traditional electroplating me...
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Abstract
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