Method for performing simulated calculation on temperature field in laser processing and welding process based on COMSOL temperature model
A model simulation and laser processing technology, applied in the direction of calculation, design optimization/simulation, special data processing applications, etc., can solve the problems of difficult operation, high cost, large temperature gradient, etc., to achieve simple and convenient operation, reduce experimental time and cost effect
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Embodiment 1
[0030] A method for simulating and calculating the temperature field in the laser welding process based on COMSOL, comprising the following steps:
[0031] (1) Establishment of heat source model:
[0032] Enter the main interface of the software, select "Model Wizard", create a new three-dimensional laser heating physical field model, and select "Research" as transient. Add function in "Definition", define Gaussian pulse function and waveform, so as to establish a moving Gaussian circular heat source model. Set the laser power to 3 kW, the spot radius to 2.5 mm, and the laser action period to 0.1 s.
[0033] (2) Model establishment:
[0034] Set the size of the model to 20 mm×20 mm×1 mm (geometry 1) and 20 mm×20 mm×3 mm (geometry 2), and adjust the angular position of the geometry so that the two form a close connection up and down.
[0035] (3) Initial and boundary conditions:
[0036] When the laser is directly irradiated, the entire geometric model is thermally insulate...
Embodiment 2
[0045] A method for simulating and calculating the temperature field in the laser welding process based on COMSOL, comprising the following steps:
[0046] (1) Establishment of heat source model:
[0047] Enter the main interface of the software, select "Model Wizard", create a new three-dimensional laser heating physical field model, and select "Research" as transient. Add function in "Definition", define Gaussian pulse function and waveform, so as to establish a moving Gaussian circular heat source model. Set the laser power to 3 kW, the spot radius to 2.5 mm, and the laser action period to 0.1 s.
[0048] (2) Model establishment:
[0049] Set the size of the model to 20 mm×20 mm×1 mm (geometry 1) and 20 mm×20 mm×3 mm (geometry 2), and adjust the angular position of the geometry so that the two form a close connection up and down.
[0050] (3) Initial and boundary conditions:
[0051] When the laser is directly irradiated, the entire geometric model is thermally insulate...
Embodiment 3
[0060] A method for simulating and calculating the temperature field in the laser welding process based on COMSOL, comprising the following steps:
[0061] (1) Establishment of heat source model:
[0062] Enter the main interface of the software, select "Model Wizard", create a new three-dimensional laser heating physical field model, and select "Research" as transient. Add function in "Definition", define Gaussian pulse function and waveform, so as to establish a moving Gaussian circular heat source model. Set the laser power to 1 kW, the spot radius to 2.5 mm, and the laser action period to 0.1 s.
[0063] (2) Model establishment:
[0064] Set the size of the model to 20 mm×20 mm×1 mm (geometry 1) and 20 mm×20 mm×3 mm (geometry 2), and adjust the angular position of the geometry so that the two form a close connection up and down.
[0065] (3) Initial and boundary conditions:
[0066] When the laser is directly irradiated, the entire geometric model is thermally insulate...
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