Abstract:
A series of time-sequenced heat energy data arrays or data stream sets of a weld process region are processed by a weld data array or data stream processing system to produce a heat energy data set output that is related to weld process region features or weld process region heat energy data. The heat energy data set output can be displayed to a system user and modified by system user input to the weld data array or data stream processing system; alternatively, or in combination, the system user output and input, the heat energy data set output, or data produced from the heat energy data set output by the weld data array or data stream processing system, can be transmitted to a weld process controller to adjust parameters in the weld process responsive to the output of the weld data array or data stream processing system.
Abstract:
A series of time sequenced heat energy data arrays or data stream sets of a weld process region are processed by a weld data array or data stream processing system to produce a heat energy data set output that is related to weld process region features or weld process region heat energy data. The heat energy data set output can be displayed to a system user and modified by system user input to the weld data array or data stream processing system; alternatively, or in combination, the system user output and input, the heat energy data set output, or data produced from the heat energy data set output by the weld data array or data stream processing system, can be transmitted to a weld process controller to adjust parameters in the weld process responsive to the output of the weld data array or data stream processing system.
Abstract:
A high frequency power supply system provides highly regulated power and frequency to a workpiece load where the highly regulated power and frequency can be independent of the workpiece load characteristics by inverter switching control and an inverter output impedance adjusting and frequency control network that can include precision variable reactors with a geometrically-shaped moveable insert core section and a stationary split-bus section where the insert core section can be moved relative to the stationary split-bus section to vary the inductance of the variable reactors.
Abstract:
Se proporciona un sistema de calentamiento eléctrico de alta frecuencia para calentar partes eléctricamente conductivas a medida que se hacen avanzar, ya sea para procesos de recocido o soldadura, y en donde la corriente de calentamiento eléctrico se suministra por un inversor de estado sólido a través de un aparato de coincidencia carga y control de frecuencia que mantiene la corriente y frecuencia de carga deseadas con cambios en la impedancia de carga provocados por las partes eléctricamente conductiva a medida que se hacen avanzar; se logra coincidencia de carga altamente regulada con reactores variables de alta frecuencia que pueden tener una sección de núcleo de inserción móvil geométricamente formada y una sección de bus de división estacionaria con una sección de bus de división geométricamente formada complementaria y una sección de bus de terminal eléctrica de división en donde la sección de núcleo de inserción puede moverse con relación a la sección de bus de división estacionaria para variar la inductancia del par de reactor.
Abstract:
A high frequency electrical heating system is provided for heating electrically conductive parts as they are advanced, either for annealing or welding processes, and in which the electrical heating current is supplied by a solid state inverter through a load matching and frequency control apparatus that maintains the desired load current and frequency with changes in the load impedance caused by the electrically conductive parts as they are advanced. Highly regulated load matching is achieved with high frequency variable reactors that can have a geometrically-shaped moveable insert core section and a stationary split-bus section with a complementary geometrically-shaped split-bus section and a split electric terminal bus section where the insert core section can be moved relative to the stationary split-bus section to vary the inductance of the reactor pair.
Abstract:
A high frequency electrical heating system is provided for heating electrically conductive parts as they are advanced, either for annealing or welding processes, and in which the electrical heating current is supplied by a solid state inverter through a load matching and frequency control apparatus that maintains the desired load current and frequency with changes in the load impedance caused by the electrically conductive parts as they are advanced. Highly regulated load matching is achieved with high frequency variable reactors that can have a geometrically-shaped moveable insert core section and a stationary split-bus section with a complementary geometrically-shaped split-bus section and a split electric terminal bus section where the insert core section can be moved relative to the stationary split-bus section to vary the inductance of the reactor pair.
Abstract:
Un sistema de suministro de energía de alta frecuencia proporciona energía y frecuencia altamente reguladas a una carga de pieza de trabajo en donde la energía y frecuencia altamente reguladas pueden ser independientes de las características de carga de pieza de trabajo mediante control de conmutación de inversor y una red de ajuste de impedancia y de control de frecuencia de salida de inversor que puede incluir reactores variables de precisión con una sección de núcleo de inserción móvil geométricamente formada y una sección de bus de división estacionaria en donde la sección de núcleo de inserción puede moverse con relación a la sección de bus de división estacionaria para variar la inductancia de los reactores variables.
Abstract:
Abstract of the Disclosure High frequency electrical heating system is provided for heating electrically conductive parts as they are advanced, either for annealing or welding processes, and in which the electrical heating current is supplied by a solid state DC to AC inverter through a load matching and frequency control circuit that maintains the desired load current and frequency with changes in the load impedance caused by the electrically conductive parts as they are advanced. Load matching is achieved with high frequency variable reactors having a geometrically-shaped moveable insert core section and a stationary split-bus section with a complementary geometrically-shaped split bus section and a split electric terminal bus section where the insert core section can be moved relative to the stationary split-bus section to vary the inductance of the reactor pair.
Abstract:
A high frequency power supply system provides highly regulated power and frequency to a workpiece load where the highly regulated power and frequency can be independent of the workpiece load characteristics by inverter switching control and an inverter output impedance adjusting and frequency control network that can include precision variable reactors with a geometrically-shaped moveable insert core section and a stationary split-bus section where the insert core section can be moved relative to the stationary split-bus section to vary the inductance of the variable reactors.
Abstract:
A high frequency electrical heating system is provided for heating electrically conductive parts as they are advanced, either for annealing or welding processes, and in which the electrical heating current is supplied by a solid state inverter through a load matching and frequency control apparatus that maintains the desired load current and frequency with changes in the load impedance caused by the electrically conductive parts as they are advanced. Highly regulated load matching is achieved with high frequency variable reactors that can have a geometrically-shaped moveable insert core section and a stationary split-bus section with a complementary geometrically-shaped split-bus section and a split electric terminal bus section where the insert core section can be moved relative to the stationary split-bus section to vary the inductance of the reactor pair.