Dynamic adjustment of weld parameter of an ultrasonic welder
An ultrasonic welder includes dynamic adjustment of a weld parameter used to control welds of weld cycles during serial operation of the ultrasonic welder. The ultrasonic welder includes a power supply controlled by a controller and the controller sets a value of the weld parameter for a next weld cycle based on a value of a stack heat energy parameter indicative of heat energy in the ultrasonic stack prior to beginning the next weld cycle. The controller controls the power supply based on the value set for the weld parameter to control a weld in the next weld cycle.
1. A method of controlling an ultrasonic welder, the ultrasonic welder having a power supply controlled by a controller, an ultrasonic stack including at least an ultrasonic horn, an ultrasonic transducer coupled to the power supply, and a booster coupling the ultrasonic horn to the transducer, the method comprising:
dynamically adjusting a value of a weld parameter used to control welds of weld cycles during serial operation of the ultrasonic welder by (i) changing, with the controller, a value of the weld parameter for a next weld cycle based on a value of a stack heat energy parameter indicative of heat energy in the ultrasonic stack prior to beginning the next weld cycle in response to the value of the stack heat energy parameter having changed by more than a first predetermined heat energy threshold and by less than a second predetermined heat energy threshold from when the value of the weld parameter was last changed, and (ii) keeping the value of the weld parameter unchanged in response to the value of the stack heat energy parameter not having changed by more than the first predetermined heat energy threshold from when the value of the weld parameter was last changed; and
controlling the power supply with the controller based on the value of the weld parameter to control welding during the next weld cycle.
2. The method of claim 1 further including averaging values of the stack heat energy parameter for a plurality of weld cycles immediately preceding the next weld cycle to obtain an average and using the average as the value of the stack heat energy parameter in determining whether to change the value of the weld parameter and setting the value of the weld parameter for the next weld cycle based on the average when it is determined to change the value of the weld parameter.
3. The method of claim 2 wherein the plurality of weld cycles is in a range of two to five hundred weld cycles.
4. The method of claim 3 wherein the plurality of weld cycles is in a range of fifteen to twenty-five weld cycles.
5. The method of claim 1 wherein the stack heat energy parameter is any of a temperature of the ultrasonic horn, resonant frequency of the ultrasonic stack, and a phase difference between a drive frequency of the power supply and a frequency at which the ultrasonic horn is vibrating.
6. The method of claim 5 wherein the stack heat energy parameter is the resonant frequency of the horn.
7. An ultrasonic welder, comprising:
a power supply controlled by a controller;
an ultrasonic stack including at least an ultrasonic horn, an ultrasonic transducer, and a booster coupling the ultrasonic horn to the ultrasonic transducer, the ultrasonic transducer being coupled to the power supply; and
the controller configured to dynamically adjust a value of a weld parameter used to control welds of weld cycles during serial operation of the ultrasonic welder by (i) changing a value of the weld parameter for a next weld cycle based on a value of a stack heat energy parameter indicative of heat energy in the ultrasonic stack in response to the value of the stack heat energy parameter having changed by more than a first predetermined heat energy threshold and by less than a second predetermined heat energy threshold from when the value of the weld parameter was last changed, and (ii) keeping the value of the weld parameter unchanged in response to the value of the stack heat energy parameter not having changed by more than the first predetermined heat energy threshold or having changed by more than the second predetermined heat energy threshold from when the value of the weld parameter was last change, and then control the power supply based on the value of the weld parameter to control welding during the next weld cycle.
8. The ultrasonic welder of claim 7 wherein the controller is configured to average values of the stack heat energy parameter for a plurality of weld cycles immediately preceding the next weld cycle to obtain an average and use the average as the value of the stack heat energy parameter in determining whether to change the value of the weld parameter and set the value of the weld parameter for the next weld cycle based on the average when the controller determines to change the value of the weld parameter.
9. The ultrasonic welder of claim 8 wherein the plurality of weld cycles is in a range of two to five hundred weld cycles.
10. The method of claim 9 wherein the plurality of weld cycles is in a range of fifteen to twenty-five weld cycles.
11. The ultrasonic welder of claim 8 wherein the stack heat energy parameter is any of a temperature of the ultrasonic horn, resonant frequency of the ultrasonic stack, and a phase difference between a drive frequency of the power supply and a frequency at which the ultrasonic horn is vibrating.
12. The ultrasonic welder of claim 11 wherein the stack heat energy parameter is the resonant frequency of the horn.