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METHOD OF CONTROLLING LASER BEAM PREHEATING TEMPERATURE OF SURFACE OF WORKPIECE

  • US 20140371900A1
  • Filed: 06/12/2013
  • Published: 12/18/2014
  • Est. Priority Date: 06/12/2013
  • Status: Active Grant
First Claim
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1. A method of controlling a laser beam preheating temperature of a surface of a workpiece, the method comprising:

  • a processing condition inputting step of inputting a milling condition;

    a matching step of determining whether a surface preheating temperature matching with the processing condition input in the processing condition inputting step exists in a preset database;

    a loading step of, when it is determined in the matching step that the matching surface preheating temperature exists, loading the corresponding surface preheating temperature;

    a preheating step of preheating a portion to be processed, by using a laser beam according to the surface preheating temperature loaded in the loading step;

    a measuring step of measuring an actual temperature of the portion preheated in the preheating step with an infrared ray sensor;

    a comparing step of determining whether the actual temperature measured in the measuring step is similar to the preheating temperature loaded in the loading step;

    an ending step of, when it is determined in the comparing step that the actual temperature is similar to the preheating temperature, ending preheating;

    a lower limit determining step of, when it is determined in the comparing step that the actual temperature is not similar to the preheating temperature, determining whether the actual temperature is a lower limit value of the preheating temperature or lower;

    an output increasing step of, when it is determined in the lower limit determining step that the actual temperature is lower than the lower limit value of the preheating temperature, increasing an output of the laser beam; and

    an output decreasing step of, when it is determined in the lower limit determining step that the actual temperature is equal to or lower than the lower limit value of the preheating temperature, decreasing an output of the laser beam,wherein the measuring step is performed again after the output increasing step and the output decreasing step,wherein the surface preheating temperature is preset through a parameter inputting step of inputting a parameter value related to a processing condition, a calculating step of calculating a predicted surface temperature according to a parameter value input in the parameter inputting step, a test temperature measuring step of heating the workpiece with a laser beam and measuring a test temperature of the workpiece, a predicting/determining step of comparing the predicted surface temperature with the test temperature to determine whether the predicted surface temperature is similar to the test temperature, and a setting step of, if it is determined in the predicting/determining step that a difference between the predicted surface temperature and the test temperature is within an allowable value, setting the predicted surface temperature to the preheating temperature, and is stored in a database,wherein a changing step of, if it is determined in the predicting/determining step that a difference between the predicted surface temperature and the test temperature deviates from an allowable value, changing the parameter value is further performed, andwherein when the parameter value is changed in the changing step, a calculating step of calculating the predicted surface temperature again is performed.

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