1. Analysis of physical reasons for changes of flexible tool trajectory direction during penetration through material.
2. Physical description of jet trajectory using material and tool properties.
3. Determination of the key parameters influencing trajectory of the given tool type (laser, plasma, liquid jet).
4. Determination of the two basic deviations of the trajectory by penetration of the tool through material – divergence and delay.
5. Determination of the necessary compensations from theoretical models of tool operation.
6. Determination of compensations according to experimental results, determination of typical shapes for calculations of compensations.
7. Analysis of the relation of compensations on machining factors - dynamic modes of changes.
2. Physical description of jet trajectory using material and tool properties.
3. Determination of the key parameters influencing trajectory of the given tool type (laser, plasma, liquid jet).
4. Determination of the two basic deviations of the trajectory by penetration of the tool through material – divergence and delay.
5. Determination of the necessary compensations from theoretical models of tool operation.
6. Determination of compensations according to experimental results, determination of typical shapes for calculations of compensations.
7. Analysis of the relation of compensations on machining factors - dynamic modes of changes.