METHOD FOR MONITORING A MACHINE TOOL, IN PARTICULAR FOR TOOL FRACTURE
The invention relates to a monitoring method for monitoring a machine tool (10), comprising (i) a spindle (14), (ii) at least one first machine axis (16), and (iii) a machine control (22), the method comprising the following automatically executed steps: (a) time-dependent detection of a spindle par...
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Main Authors | , , , |
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Format | Patent |
Language | English Polish |
Published |
25.07.2022
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Online Access | Get full text |
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Abstract | The invention relates to a monitoring method for monitoring a machine tool (10), comprising (i) a spindle (14), (ii) at least one first machine axis (16), and (iii) a machine control (22), the method comprising the following automatically executed steps: (a) time-dependent detection of a spindle parameter (P), which describes a performance of the spindle (14); (b) detecting a signal noise parameter and/or a signal spanner parameter (Q); (c) after a predetermined program line of the processing program has been reached; continuously calculating a spindle parameter minimum value (PS,min) such that a current spindle parameter minimum value (PS,min(T)) is obtained; (d) continuously calculating a monitoring limit value (G(T)) from the spindle parameter minimum value (PS,min(Ƭ)); (e) storing the current monitoring threshold value (GT)), whenever the current monitoring limit value (G(T)) is smaller than a stored monitoring limit value (Gsp); and (f) outputting a warning message if the spindle parameter P is consistently below the stored monitoring limit value (Gsp) over a predetermined interval time (∆t). |
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AbstractList | The invention relates to a monitoring method for monitoring a machine tool (10), comprising (i) a spindle (14), (ii) at least one first machine axis (16), and (iii) a machine control (22), the method comprising the following automatically executed steps: (a) time-dependent detection of a spindle parameter (P), which describes a performance of the spindle (14); (b) detecting a signal noise parameter and/or a signal spanner parameter (Q); (c) after a predetermined program line of the processing program has been reached; continuously calculating a spindle parameter minimum value (PS,min) such that a current spindle parameter minimum value (PS,min(T)) is obtained; (d) continuously calculating a monitoring limit value (G(T)) from the spindle parameter minimum value (PS,min(Ƭ)); (e) storing the current monitoring threshold value (GT)), whenever the current monitoring limit value (G(T)) is smaller than a stored monitoring limit value (Gsp); and (f) outputting a warning message if the spindle parameter P is consistently below the stored monitoring limit value (Gsp) over a predetermined interval time (∆t). |
Author | IMIELA, JOACHIM BRINKHAUS, JAN-WILM LÜGERING, UWE WITTKOWSKI, THOMAS |
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DocumentTitleAlternate | SPOSÓB MONITOROWANIA OBRABIARKI, W SZCZEGÓLNOŚCI NA WYPADEK PĘKNIĘCIA NARZĘDZIA |
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Snippet | The invention relates to a monitoring method for monitoring a machine tool (10), comprising (i) a spindle (14), (ii) at least one first machine axis (16), and... |
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Title | METHOD FOR MONITORING A MACHINE TOOL, IN PARTICULAR FOR TOOL FRACTURE |
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