Error compensation method for integral turbine blade machining based on mathematical model reconstruction
A technology for turbine blades and machining errors, which is applied in the direction of electrical digital data processing, special data processing applications, instruments, etc., can solve problems such as machining accuracy out of tolerance, and achieve the effects of controlling machining errors, high efficiency, and good consistency
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Embodiment 2
[0072] Such as Figure 5 Shown.
[0073] The difference between this embodiment and the first embodiment is that the experimental method is used to reconstruct the processed digital model of the blade. The reconstruction process is as follows:
[0074] Step 201: Trial cutting one blade on the turbine according to the predetermined process parameters, and verify the rationality of the numerical control program and clamping method. After curing the processing parameters, try cutting 3 blades again.
[0075] Step 202: Use a coordinate measuring machine to measure the error at each cross-section control point, and save it as a text file, and record one control point coordinate per line.
[0076] Step 203: Determine whether the blade error is out of tolerance. If it is not out of tolerance, go directly to step 206. If it is out of tolerance, go to step 204.
[0077] Step 204: According to the coordinate position of the original control point and the corresponding error point, the mirrorin...
Embodiment 3
[0086] Such as Image 6 Shown.
[0087] This embodiment is a combination of the first and second embodiments. It reconstructs the processing digital model through theoretical calculations and actual measurements, verifies whether the theoretical calculations are correct through experimental data, and then uses theoretical calculations to determine whether the deviation of the experimental data is Satisfy the calculation requirements, that is, the overall turbine blade machining error compensation is performed through the hybrid method. It is a combination of calculation method and test method. For specific steps, please refer to steps 101-105 and 201-206.
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