A kind of heat treatment method of nickel base single crystal superalloy
A heat treatment method and superalloy technology, applied in the field of superalloys, can solve the problems of increasing the manufacturing cost of fourth-generation single crystal blades, reducing the degree of uniformity of alloy structure, affecting the diffusion of alloy elements, etc., achieving good application prospects, improving comprehensive performance, The effect of low segregation
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Embodiment 1
[0048] Embodiment 1. preparation single crystal test bar
[0049] Master alloys were prepared using the single crystal synthesis compositions shown in Table 1 below, and then single crystal test rods were drawn.
[0050] Table 1. DD476 alloy composition (wt.%)
[0051]
[0052] After the DD476 master alloy was smelted in a high vacuum induction furnace, the single crystal test rod for the test was drawn at 1550 °C at a rate of 3 mm / min by the spiral crystal selection method.
Embodiment 2
[0053] Embodiment 2. Research and testing of properties and microstructure of the alloy
[0054] 2.1 Alloy differential scanning calorimetry analysis
[0055] Carry out DSC curve analysis to the alloy of the present invention, heating rate is 10 ℃ / min, is heated from room temperature to 1450 ℃ and is lowered to room temperature by the same rate, and alloy endothermic curve is as follows figure 1 shown.
[0056] According to the figure, it can be seen that the temperature at which the interdendritic γ’ starts to dissolve is T 0 (1220°C), γ / γ' eutectic transition temperature T 1 (1312.7°C), liquidus T L (1414.7°C), the extrapolated solidus temperature is T S (1384.3°C).
[0057] 2.2 γ' solid solution temperature
[0058] According to JmatPro simulation calculation, the γ' solid solution temperature of DD476 single crystal is about 1284.39°C (see figure 2 ), so three heat treatment regimes were set up to explore the actual solution temperature of the alloy γ’. The three ...
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