Transgranular-intergranular composite reinforced biological zinc alloy and preparation method thereof
A compound reinforcement and bio-zinc technology, which is applied in the direction of additive manufacturing, tissue regeneration, and process efficiency improvement, can solve the problems of poor mechanical properties of bio-zinc alloys and achieve the effect of improving mechanical properties
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Embodiment 1
[0031]Weigh respectively 0.1 gram of graphene powder, 0.3 gram of nano-silicon carbide powder (with a particle diameter of 40-50 nanometers) and 9.6 grams of zinc powder (with a particle diameter of 40-60 microns) at a mass ratio of 1:3:96, and The material mass ratio is 15:1, the ball milling speed is 300r / min, and the ball milling time is 1h. Under the protection of liquid nitrogen, graphene and nano-silicon carbide powder are ball-milled at low temperature to obtain graphene-encapsulated nano-silicon carbide powder; zinc powder is added to the above graphite The mixed powder of the three was obtained by ball milling for 3 hours in the silicon carbide nano-encapsulated powder; using the above-mentioned mixed powder as raw material, the intragranular-intergranular composite enhanced bio Zinc alloy; the control laser power is 70W, the scan rate is 15mm / s, the spot diameter is 50μm, and the powder coating thickness is 0.1mm.
[0032] The microstructure test found that a large a...
Embodiment 2
[0034] Take by weighing 0.15 gram graphene powder, 0.25 gram nano-silicon carbide powder (particle diameter is 40-50 nanometers) and 9.6 gram zinc powder (particle diameter is 40-60 micron) respectively by the mass ratio of 1.5:2.5:96, with ball The material mass ratio is 15:1, the ball milling speed is 300r / min, and the ball milling time is 1h. Under the protection of liquid nitrogen, graphene and nano-silicon carbide powder are ball-milled at low temperature to obtain graphene-encapsulated nano-silicon carbide powder; zinc powder is added to the above graphite The mixed powder of the three was obtained by ball milling for 3 hours in the silicon carbide nano-encapsulated powder; using the above-mentioned mixed powder as raw material, the intragranular-intergranular composite enhanced bio Zinc alloy; the control laser power is 70W, the scan rate is 15mm / s, the spot diameter is 50μm, and the powder coating thickness is 0.1mm.
[0035] The microstructure test found that there ar...
Embodiment 3
[0037] Weigh respectively 0.1 gram of graphene powder, 0.3 gram of nano-silicon carbide powder (with a particle diameter of 40-50 nanometers) and 9.6 grams of zinc powder (with a particle diameter of 40-60 microns) at a mass ratio of 1:3:96, and The material mass ratio is 15:1, the ball milling speed is 250r / min, and the ball milling time is 0.5h. Under the protection of liquid nitrogen, graphene and nano-silicon carbide powder are ball-milled at low temperature to obtain graphene-encapsulated nano-silicon carbide powder; zinc powder is added to the above-mentioned In the graphene-encapsulated nano-silicon carbide powder, continue ball milling for 2 hours to obtain a mixed powder of the three; using the above-mentioned mixed powder as a raw material, under a protective atmosphere, the selective laser melting process is used to prepare the intragranular-intergranular compound. Biological zinc alloy; the control laser power is 70W, the scan rate is 15mm / s, the spot diameter is 50...
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