A kind of magnesium-based composite material and composite pan
A composite material and composite pot technology, which can be applied to special materials for cooking utensils and other directions, can solve problems such as poor heat transfer and corrosion resistance, and are unfavorable to human health, and achieve the effects of stable pot body structure, good cooking effect, and good casting performance.
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Embodiment 1
[0034] The magnesium-based composite material of this embodiment includes the following components in mass percentage: Zn 1.0%, Zr 0.7%, Nd 8.0%, Gd 0.5%, Cu 0.1%, Ni 0.01%, particle reinforcement 10%, and the rest Quantities are magnesium and unavoidable impurities.
[0035] Wherein, the particle reinforcement material is SiC with a particle size of 30-100 μm; the mass percentage of impurities is 0.3%.
[0036] The composite pot of this embodiment includes a pot body, the pot body includes an inner layer pot body and an outer layer pot body, the material of the inner layer pot body is a magnesium-based composite material, and the magnesium-based composite material includes the following mass percent Component content: Zn 1.0%, Zr 0.7%, Nd 8.0%, Gd 0.5%, Cu 0.1%, Ni 0.01%, granular reinforcement 10%, the balance is magnesium and unavoidable impurities; the outer pot Body material is aluminum alloy ZL305.
[0037] The composite pan of the present embodiment has a specific str...
Embodiment 2
[0055] The magnesium-based composite material of this embodiment includes the following components in mass percentage: Zn 2.0%, Zr 1.0%, Nd 5.0%, Gd 1.0%, Cu 0.1%, Ni 0.01%, particle reinforcement 5%, and the rest Quantities are magnesium and unavoidable impurities.
[0056] Wherein, the particle reinforcement material is SiO 2 , the particle size is 30-100 μm; the mass percentage of impurities is 0.3%.
[0057] The composite pot of this embodiment includes a pot body, the pot body includes an inner layer pot body and an outer layer pot body, the material of the inner layer pot body is a magnesium-based composite material, and the magnesium-based composite material includes the following mass percent Component content: Zn 2.0%, Zr 1.0%, Nd 5.0%, Gd 1.0%, Cu 0.1%, Ni 0.01%, particle reinforcement 5%, the balance is magnesium and unavoidable impurities; the outer pot Body material is aluminum alloy ZL305.
[0058] The composite pan of this embodiment, such as Figure 10 , 1...
Embodiment 3
[0062] The magnesium-based composite material of this embodiment includes the following components in mass percentage: Zn 3.0%, Zr 0.5%, Nd 1.0%, Gd 1.8%, Cu 0.1%, Ni 0.01%, particle reinforcement 15%, and the rest Quantities are magnesium and unavoidable impurities.
[0063] Wherein, the particle reinforcement material is SiC with a particle size of 30-100 μm; the mass percentage of impurities is 0.3%.
[0064] The composite pot of this embodiment includes a pot body, the pot body includes an inner layer pot body and an outer layer pot body, the material of the inner layer pot body is a magnesium-based composite material, and the magnesium-based composite material includes the following mass percent Content components: Zn 3.0%, Zr 0.5%, Nd 1.0%, Gd 1.8%, Cu 0.1%, Ni 0.01%, granular reinforcement 15%, the balance is magnesium and unavoidable impurities; the outer pot Body material is aluminum alloy ZL305.
[0065] The composite cookware of this embodiment differs from that o...
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