Nano TiC particle toughened Fe-Ni base cast high-temperature alloy for manufacturing vehicular turbosupercharger and preparation method thereof
A high-temperature alloy and vehicle turbine technology, applied in mechanical equipment, machines/engines, engine components, etc., can solve problems such as high cost, limited application, insufficient tensile strength, etc., and achieve the effect of improving plasticity and toughness
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[0039] The present invention also provides a kind of preparation method that is used for manufacturing the nano-TiC particle toughened Fe-Ni base cast superalloy of automobile turbocharger, specifically comprises the following steps:
[0040] Step 1: Use graphite microflakes with a particle size of 20-30 microns and a thickness of about 10-20 layers as a carbon source, and pre-mix on a ball mill at a speed of 200 rpm for 30 minutes.
[0041] Step 2: Weigh the graphite flakes, Ti powder and Fe powder in proportion, wherein the molar ratio of the graphite flakes to the Ti powder is 1:1, and the total mass percentage of the graphite flakes and the Ti powder is 20-40%.
[0042] Step 3: put the mixed alloy powder of the graphite flakes, Ti powder and Fe powder into a ball mill, and mix for 48 hours at a speed of 50 rpm.
[0043] Step 4: Place a certain mass of ball-milled mixed alloy powder in aluminum foil, and press it into a cylindrical compact with a diameter of 25mm and a heig...
Embodiment 1
[0057] A nano-TiC particle toughened Fe-Ni-based superalloy used in the manufacture of automotive turbochargers, its main chemical composition is by mass percentage: C: 0.037%; Cr: 11.69%; Ni: 42.98%; W: 7.03 %; Al: 1.92%; Ti: 4.36%; Fe: I; B: 0.12%; Si: 0.29%; Mn: 0.18%; S: 0.009%; P: 0.011%;
[0058] Its preparation method comprises the following steps:
[0059] Step 1: Use graphite microflakes with a particle size of 20-30 microns and a thickness of about 10-20 sheets as a carbon source, and pre-mix on a ball mill at a speed of 200 rpm for 30 minutes.
[0060] Step 2: Weigh the graphite flakes, Ti powder and Fe powder in proportion, wherein the molar ratio of the graphite flakes to the Ti powder is 1:1, and the total mass percentage of the graphite flakes and the Ti powder is 30%.
[0061] Step 3: Put the weighed alloy powder into a ball mill and mix for 48 hours at a speed of 50 rpm.
[0062] Step 4: Place a certain mass of mixed alloy powder in aluminum foil, and press ...
Embodiment 2
[0070] A nano-TiC particle toughened Fe-Ni-based superalloy for manufacturing a turbocharger for vehicles, the main chemical composition of which is by mass percentage: C: 0.043%; Cr: 12.07%; Ni: 44.59%; W: 6.76 %; Al: 2.32%; Ti: 4.63%; Fe: I; B: 0.10%; Si: 0.25%; Mn: 0.19%; S: 0.008%; P: 0.014%;
[0071] Its preparation method comprises the following steps:
[0072] Step 1: Use graphite microflakes with a particle size of 20-30 microns and a thickness of about 10-20 sheets as a carbon source, and pre-mix on a ball mill at a speed of 200 rpm for 30 minutes.
[0073] Step 2: Weigh the graphite flakes, Ti powder and Fe powder in proportion, wherein the molar ratio of the graphite flakes to the Ti powder is 1:1, and the total mass percentage of the graphite flakes and the Ti powder is 30%.
[0074] Step 3: Put the weighed alloy powder into a ball mill and mix for 48 hours at a speed of 50 rpm.
[0075] Step 4: Place a certain mass of mixed alloy powder in aluminum foil, and pre...
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