Strain strengthening method for high-temperature surface of magnesium alloy
A surface deformation strengthening and magnesium alloy technology, applied in the field of high temperature surface deformation strengthening of magnesium alloys, can solve the problems that it is difficult to withstand severe plastic deformation, the effect of shot peening at room temperature is limited, and the criteria cannot be met, so as to improve fatigue performance and facilitate Operation, the effect of ensuring stability
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Embodiment 1
[0026] This embodiment relates to a high-temperature surface deformation strengthening method for a magnesium alloy, which includes the following steps:
[0027] In this embodiment, an extruded ZK60 (Mg-6Zn-0.5Zr) magnesium alloy is used.
[0028] Step 1, using a conventional heating device to heat the storage tank so that the shot blasting medium reaches 250°C;
[0029] Step 2: Use an air compressor to pressurize the air to 1 MPa, and then enter the high-pressure air heating device through the delivery pipeline. The temperature of the compressed air in the high-pressure air heating device is 250 ° C, and the pressure is 0.6 MPa;
[0030] Step 3, using a conventional heating device to heat the ZK60 (Mg-6Zn-0.5Zr) magnesium alloy sample to 250°C;
[0031] Step 4, use high-temperature and high-pressure air to flow at high speed in the spray gun to form the ejection effect generated by negative pressure, spray high-temperature glass shot with a diameter of 400 μm and hit it on t...
Embodiment 2
[0036] This embodiment relates to a high-temperature surface deformation strengthening method for a magnesium alloy, which includes the following steps:
[0037] In this embodiment, cast AZ91 (Mg-9Al-0.5Zn) magnesium alloy is used.
[0038] Step 1, using a conventional heating device to heat the storage tank so that the shot blasting medium reaches 200°C;
[0039] Step 2: Use an air compressor to pressurize the air to 1MPa, and then enter the high-pressure air heating device through the delivery pipeline. The temperature of the compressed air in the high-pressure air heating device is 200°C, and the pressure is 0.2MPa;
[0040] Step 3, using a conventional heating device to heat the AZ91 (Mg-9Al-0.5Zn) magnesium alloy sample to 200°C;
[0041] Step 4, use high-temperature and high-pressure air to flow at high speed in the spray gun to form the ejection effect generated by negative pressure, spray high-temperature glass pellets with a diameter of 300 μm and hit them on the sur...
Embodiment 3
[0046] This embodiment relates to a high-temperature surface deformation strengthening method for a magnesium alloy, which includes the following steps:
[0047] In this embodiment, an extruded GW103K (Mg-10Gd-3Y-0.5Zr) magnesium alloy is used.
[0048] Step 1, using a conventional heating device to heat the storage tank to make the shot blasting medium reach 300°C;
[0049] Step 2: Use an air compressor to pressurize the air to 1MPa, and then enter the high-pressure air heating device through the delivery pipeline. The temperature of the compressed air in the high-pressure air heating device is 300°C and the pressure is 1MPa;
[0050] Step 3, using a conventional heating device to heat the GW103K (Mg-10Gd-3Y-0.5Zr) magnesium alloy sample to 300°C;
[0051] Step 4: Utilize high-temperature and high-pressure air flowing at high speed in the spray gun to form the ejection effect caused by negative pressure, and spray high-temperature cast steel shot with a diameter of 500 μm to...
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Abstract
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