Inkjet nozzle assembly with pre-shaped actuator
View Patent ↗An inkjet nozzle assembly includes a multilayered substrate having control and drive circuitry and defining an ink passage and a tapered ink chamber in fluid communication with the ink passage and an ink ejection port through which ink supplied into the chamber through the ink passage can be ejected. An elongate, bent actuator is connected to the control and drive circuitry and is operatively fixed to the substrate at one end and terminates in a free end such that the ink passage is interposed between said free end and the ink chamber. The actuator is configured to straighten responsive to receiving an electrical signal from the control and drive circuitry so that ink within the ink chamber is ejected through the ink ejection port.
1. An inkjet nozzle assembly that comprises:
a multilayered substrate comprising control and drive circuitry, and defining an ink passage and a tapered ink chamber in fluid communication with the ink passage and an ink ejection port through which ink supplied into the chamber through the ink passage can be ejected; and
an elongate and bent actuator connected to the control and drive circuitry and operatively fixed to the substrate at one end and terminating in a free end such that the ink passage is interposed between said free end and the ink chamber, the actuator being configured to straighten responsive to receiving an electrical signal from the control and drive circuitry so that ink within the ink chamber is ejected through the ink ejection port.
2. An inkjet nozzle assembly as claimed in claim 1 , wherein the actuator is at least partially comprised of shape memory alloy (SMA) material so that the actuator straightens when heated by the control and drive circuitry and returns to a bent state upon deactivation of the control and drive circuitry and subsequent cooling.
3. An inkjet nozzle assembly as claimed in claim 1 , wherein the actuator includes a serpentine heating element which is electrically coupled to the control and drive circuitry.
4. An inkjet nozzle assembly as claimed in claim 3 , wherein the actuator further comprises a pair of silicon-based layers with the heating element interposed between the silicon-based layers.
5. An inkjet nozzle assembly as claimed in claim 4 , wherein one of the silicon-based layers comprises silicon dioxide material whereas the other silicon-based layer comprises silicon nitride.
6. An inkjet nozzle assembly as claimed in claim 4 , wherein each silicon-based layer extends from a layer of corresponding material in the multi-layered substrate.
7. An inkjet nozzle assembly as claimed in claim 3 , further comprising a pair of metal interconnects which each couple a respective end of the heating element to the control and drive circuitry.