Upsetting and extruding precision die-forging forming method for large titanium alloy deep tube parts
A technology of precision die forging and forming method, which is applied in the field of precision die forging by upsetting and extrusion of large-scale titanium alloy deep cylinder parts, which can solve the problems of poor process stability, low material utilization rate, scrap punch and other problems, and achieves improvement of undesired structure. , Reduce the consumption of raw materials, and facilitate the effect of metal flow
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Embodiment 1
[0031] 1) Mold design: the mold is designed as a cylinder with a draft angle of 1°;
[0032] 2) Selection of blank size: the blank size is φ230×320, the outer diameter of the blank is 80% of the outer diameter of the cylinder, and the height of the blank is 120% of the height of the outer cylinder;
[0033] 3) Spraying a protective lubricating layer with a thickness of 3mm on the blank; the protective lubricating layer is sprayed from a mixture of 15% glass frit, 40% M60 resin and 45% water.
[0034] 4) The blank is heated in an electric furnace, the temperature is 50°C below the liquidus point (phase transition point α+β / β), and the heating coefficient is 1.0min / mm; at the same time, the mold is preheated, the preheating temperature is 200°C, and the preheating time is 24h ;
[0035] 5) Install the mold on the 400KJ counter-hammer, put the heated billet into the cavity of the mold and forge for 1 fire;
[0036] 6) Grinding the cracks and folding defects of the blank until t...
Embodiment 2
[0046] 1) Mold design: the mold is designed as a cylinder with a draft angle of 2°;
[0047] 2) Selection of blank size: the blank size is φ280×260, the outer diameter of the blank is 98% of the outer diameter of the cylinder, and the height of the blank is 120% of the height of the outer cylinder;
[0048] 3) Spraying a protective lubricating layer with a thickness of 0.2mm on the blank; the protective lubricating layer is sprayed from a mixture of 25% by mass of glass powder, 40% of M60 resin and 35% of water.
[0049] 4) The blank is heated in an electric furnace at a temperature of 40°C at the liquidus point (phase transition point α+β / β), and the heating coefficient is 0.8min / mm; at the same time, the mold is preheated at a temperature of 300°C and a preheating time of 12 hours;
[0050] 5) Install the mold on the 25t die hammer, put the heated billet into the mold cavity and forge for 1 fire;
[0051] 6) Grinding the cracks and folding defects of the blank until there a...
Embodiment 3
[0061] 1) Mold design: the mold is designed as a cylinder with a draft angle of 1°;
[0062] 2) Selection of blank size: the blank size is φ230×320, the outer diameter of the blank is 80% of the outer diameter of the cylinder, and the height of the blank is 120% of the height of the outer cylinder;
[0063] 3) A protective lubricating layer with a thickness of 1.5 mm is sprayed on the blank; the protective lubricating layer is sprayed from a mixture of 35% glass frit, 40% M60 resin and 25% water.
[0064] 4) The blank is heated in an electric furnace at a temperature of 30°C below the liquidus point (phase transition point α+β / β), and the heating coefficient is 0.9min / mm; at the same time, the mold is preheated at a temperature of 400°C and a preheating time of 6h;
[0065] 5) Install the mold on the 400KJ counter-hammer, put the heated billet into the cavity of the mold and forge for 1 fire;
[0066] 6) Grinding the cracks and folding defects of the blank until there are no ...
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