Method for constructing high-temperature plastic flow densification constitutive models of powder sintering materials
A technology of sintered materials and constitutive models, applied in design optimization/simulation, special data processing applications, instruments, etc., to achieve good stability
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Embodiment 1
[0067] Prediction of flow stress and instantaneous density and stability analysis of FC0205 powder sintered alloy steel during thermal processing. For powder sintered alloy steel samples with typical components for powder metallurgy parts, combined with thermodynamic calculations and thermal processing conditions, the range of thermal processing parameters is obtained: processing temperature 850-1000 ° C; processing strain rate 0.01-10s -1 , design the thermal simulation experiment as follows:
[0068] Initial sintering density 0.80; deformation temperature (°C): 850, 900, 950, 1000; strain rate (s -1 ): 0.01, 0.1, 1.0, 10.
[0069] The experimental results were processed according to the above constitutive model, and the material characteristic parameters of the constitutive model for high temperature plastic rheological densification of FC0205 powder sintered alloy steel were obtained (see Table 1). By substituting the material characteristic parameters in Table 1 into the...
Embodiment 2
[0073] Prediction of flow stress and instantaneous density and stability analysis of F0005 powder sintered steel during thermal processing. For the powder sintered steel sample with typical components for powder metallurgy parts, combined with thermodynamic calculations and thermal processing conditions, the range of thermal processing parameters is obtained: processing temperature 850-950°C; processing strain rate 0.01-10s -1 , design the thermal simulation experiment as follows:
[0074] Initial sintering density 0.80; deformation temperature (℃): 850,880,910,940; strain rate (s -1 ): 0.01, 0.1, 1.0, 10.
[0075] The experimental results were processed according to the above constitutive model, and the material characteristic parameters of the constitutive model for high temperature plastic rheological densification of F0005 powder sintered steel were obtained (see Table 2). By substituting the material characteristic parameters in Table 2 into the nonlinear constitutive r...
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