Scandium, zirconium and strontium (Sc-Zr-Sr) compounded micro-alloyed high manganic aluminum bronze and preparation method thereof
A high-manganese-aluminum bronze and micro-alloying technology, which is applied in the field of new-type high-manganese-aluminum bronze and its preparation, scandium, zirconium and strontium composite micro-alloyed high-manganese-aluminum bronze and its preparation, can solve the problem of restricting the rapid development of industrial equipment and other problems, to achieve the effect of fine grain, high hardness and good corrosion resistance
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Embodiment 1
[0029] Such as figure 1 shown.
[0030] A scandium, zirconium and strontium composite microalloyed high manganese aluminum bronze, prepared by the following method:
[0031] Take 8.09kg as an example.
[0032] First, 7.95 kg of commercially available or self-made high manganese aluminum bronze (copper (Cu) 70~80%, manganese (Mn) 8.0~20.0%, aluminum (Al) 6.5~9.0%, iron (Fe) 2.0~5.0% , Nickel (Ni) 1.5~3.0%, Zinc (Zn) £6.0%, the rest is impurity elements) After melting, add 40.19g Al-Sr master alloy (89.85%Al, 9.89%Sr (can be 8.901%~10.879% floating between, the same below), 0.16%Fe, 0.10%Si) (the loss rate of Sr is about 40%), after the Al-Sr master alloy is melted, add 96.81g Al-Zr master alloy (95.69%Al, 4.11 %Zr (can float between 3.699% ~ 4.521, the same below), 0.20%Fe, 0.10%Si ) (the loss rate of Zr is about 8%) for melting, after the Al-Zr master alloy is melted, add 3g of pure Sc (the loss rate of Sc is about 8%), the master alloy and pure Sc can be purchased directl...
Embodiment 2
[0036] A scandium, zirconium and strontium composite microalloyed high manganese aluminum bronze, prepared by the following method:
[0037]Take 8.09kg as an example.
[0038] First, after melting 7.955kg high manganese aluminum bronze, add 35.19g Al-Sr master alloy (89.85%Al, 9.89%Sr, 0.16%Fe, 0.10%Si) (the loss rate of Sr is about 40%), 96.81g Al - Zr master alloy (95.69%Al, 4.11%Zr, 0.20%Fe, 0.10%Si ) (the loss rate of Zr is about 8%), 3g pure Sc (the loss rate of Sc is about 8%), the said intermediate The alloy can be purchased directly from the market, or can be prepared by yourself by conventional methods. During the melting process, the former master alloy is melted and then the latter master alloy or metal is added; Then pass through high-purity nitrogen for refining for 3 minutes; finally, pour it into a ladle, let it stand for 1-5 minutes, remove the slag and cast it into an ingot; that is, high manganese-aluminum bronze with scandium, zirconium and strontium compos...
Embodiment 3
[0042] A scandium, zirconium and strontium composite microalloyed high manganese aluminum bronze, prepared by the following method:
[0043] Take 8.09kg as an example.
[0044] First, 7.95 kg of commercially available or self-made high manganese aluminum bronze (copper (Cu) 70~80%, manganese (Mn) 8.0~20.0%, aluminum (Al) 6.5~9.0%, iron (Fe) 2.0~5.0% , nickel (Ni) 1.5~3.0%, zinc (Zn) £6.0%, the rest is impurity elements) after melting, add 40.19g Al-Sr master alloy (89.85%Al, 9.89%Sr, 0.16%Fe, 0.10% Si) (the loss rate of Sr is about 40%), after the Al-Sr master alloy is melted, add 96.81g Al-Zr master alloy (95.69%Al, 4.11%Zr, 0.20%Fe, 0.10%Si ) (of Zr Loss rate is about 8%) to melt, after the Al-Zr master alloy is melted, add 1.32 pure Sc (the loss rate of Sc is about 8%), described master alloy and pure Sc can be purchased directly from the market, also can It can be self-prepared by conventional methods. During the melting process, the former master alloy is melted and the...
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