Vertaling van "the loading waveform component" in Chinees
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的负载波形分量
Conduct the fractal dimension calculation on the loading waveform component of the said transmission mechanism to acquire current waveform characteristics parameters that are related with the wearing of the transmission mechanism
The waveform component extraction sub-module is used to separate the component that is related with the transmission mechanism from the loading waveform of the transmission mechanism's driver generated by the said waveform recording module to generate the loading waveform component of the transmission mechanism
The fractal dimension calculation sub-module is used to execute the fractal dimension calculation on the loading waveform component of the transmission mechanism generated by the said waveform component extraction sub-module to obtain the current waveform characteristics parameters that are related with the wearing conditions of the transmission mechanism
Or, the said transmission mechanism is wheel gear, the said components that are related with transmission mechanism comprise: both the components related to the engaging frequency of the wheel gear and the loading waveform component that is related to the rotation frequency of the shafts in the gearing transmission mechanism or the any one of them.
Preferentially, the method further comprises: generate the loading waveform of the transmission mechanism's driver on the basis of loading information and movement position information of the transmission mechanism during the initial operation of the transmission mechanism under the preset working conditions; separate the component that is related with the transmission mechanism from the loading waveform of the said transmission mechanism's driver to generate the loading waveform component of the transmission mechanism; conduct the fractal dimension calculation on the loading waveform component of the said transmission mechanism to acquire initial waveform characteristics parameters that are related with the wearing of the transmission mechanism
Wherein acquiring the weight coefficient of the current past service lifetime of the transmission mechanism according to the said driver's loading waveform is: separate the component that is related with the transmission mechanism from the loading waveform of the said transmission mechanism's driver to generate the loading waveform component of the transmission mechanism; conduct the fractal dimension calculation on the loading waveform component of the said transmission mechanism to acquire current waveform characteristics parameters that are related with the wearing of the transmission mechanism; generate the current past service lifetime weighted coefficient of the transmission mechanism according to the current waveform characteristic parameters.
Wherein the said transmission mechanism is ball screw, the said components that are related with transmission mechanism comprise: any one of the trend component of the said loading waveform, loading waveform component that is related with the rotating frequency of the ball screw, the loading waveform component that is related with the pass frequency at a point on which the balls in the screw nut pass through the leading screw, and the loading waveform component that is related with the frequency of the axial bearing of the leading screw, or the combination of the above any item.
From the above solution we can see that the example of the present invention is to describe the wearing conditions of the transmission mechanism by generating the loading waveform of the transmission mechanism's driver and separate out the loading waveform component of the transmission mechanism from the loading waveform of transmission mechanism's driver; obtain the current waveform characteristics parameters that are related to the wearing condition of transmission mechanism according to the loading waveform component of the transmission mechanism, and use the current waveform characteristics parameters to generate current past service lifetime weighted coefficient of the transmission mechanism; perform the weighted calculation on the current initial past service lifetime of the transmission mechanism to obtain the current past service lifetime of the transmission mechanism; so as to increase the accuracy of the evaluation of the current past service lifetime, further increase the accuracy of the evaluation of the total past service lifetime, and finally uplift the accuracy of the forecast on the service lifetime endpoint of the transmission mechanism.
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