Low-temperature high-efficiency machining method of amorphous alloy
An amorphous alloy and processing method technology, applied in metal processing and other directions, can solve the problems of increasing the processing procedures and production costs of amorphous alloy products, losing the excellent amorphous properties of materials, and unfavorable machining production practices, and achieve high efficiency. Effects of processing, avoiding material crystallization behavior, preventing deformation heating and friction heating
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Embodiment 1
[0038] A low-temperature and high-efficiency processing method for amorphous alloys, comprising the following steps:
[0039] (1) Divide the composition into Zr 41.2 Ti 13.8 Cu 10 Ni 12.5 be 22.5 The amorphous alloy was prepared into an amorphous plate of 100mm×20mm×2mm. The crystallization temperature of the amorphous alloy is 489°C, the hardness is 560HV, and the compressive strength is 1900 MPa; the amorphous alloy plate is fixed on the working platform of the processing machine tool;
[0040] (2) Select a 4-blade carbide-coated end mill with a diameter of 6mm, clamp the tool, determine the machining origin, and prepare for side milling of the amorphous alloy to be processed into a surface;
[0041] (3) Fix the low-temperature nozzle on the machine tool, align the nozzle with the cutting edge of the tool, and the distance between the nozzle and the cutting edge of the tool is 10mm;
[0042] (4) Set the cooling and lubrication parameters of the low-temperature cool...
Embodiment 2
[0046] A low-temperature and high-efficiency processing method for amorphous alloys, comprising the following steps
[0047] (1) The component Zr 62.20 Cu 31.73 Al 3.23 Ni 2.84 The amorphous alloy is prepared as an amorphous rod with a diameter of 6mm and a length of 180mm, the crystallization temperature is 493°C, the hardness is 493HV, and the compressive strength is 1400 MPa; the amorphous rod is fixed by a three-jaw chuck on the processing The working platform of the machine tool is processed by G-100 full-function CNC lathe;
[0048] (2) Select the upright cubic boron nitride turning insert, clamp the tool, determine the machining origin, and prepare for external turning;
[0049] (3) Fix the low-temperature nozzle on the turret, align the nozzle with the cutting edge of the tool, and the distance between the nozzle and the cutting edge of the tool is 5mm;
[0050] (4) Set the cooling and lubrication parameters of the low-temperature cooling and lubrication equipment...
Embodiment 3
[0054] A low-temperature and high-efficiency processing method for amorphous alloys, comprising the following steps:
[0055] (1) The component Zr 52.5 Cu 17.9 Ni 14.6 Al 10 Ti 5 The amorphous alloy was prepared into an amorphous plate of 80mm×20mm×1mm. The crystallization temperature of the amorphous alloy is 510°C, the melting temperature is 698°C, the hardness is 500HV, and the compressive strength is 1800 MPa. The amorphous alloy plate is fixed on the working platform of the processing machine tool;
[0056] (2) Select a 4 mm diameter 4-flute carbide-coated end mill, clamp the tool, determine the machining origin, and prepare for side milling of the amorphous alloy to be processed into a surface;
[0057] (3) Fix the low-temperature nozzle on the spindle of the machine tool, align the nozzle with the cutting edge of the tool, and the distance between the nozzle and the cutting edge of the tool is 20 mm;
[0058] (4) Set the cooling and lubrication parameters of the l...
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