Droplet jetting head
View Patent ↗A droplet jetting head includes a nozzle plate having multiple nozzles arranged in a single line and multiple liquid passages respectively communicating with the multiple nozzles and extending in the same direction, a liquid chamber plate having multiple liquid chambers provided in the multiple liquid passages and configured to respectively communicate with the multiple liquid passages, and multiple piezoelectric elements provided so that an end of each of the piezoelectric elements can face a corresponding one of the multiple liquid chambers. Here, the distance between each of the nozzles and the corresponding liquid chamber communicating with the nozzle is changed in a cycle.
1. A droplet jetting head comprising:
a nozzle plate including a plurality of nozzles arranged in a single line and a plurality of liquid passages which communicate with the plurality of nozzles, respectively, and which extend in the same direction, wherein the plurality of liquid passages are respectively formed by a plurality of first arc wall surfaces arranged in one line, a plurality of second arc wall surfaces cyclically arranged in a triangular waveform, and a plurality of wall surfaces connecting the first arc wall surfaces and the second wall surfaces continuously;
a liquid chamber plate including a plurality of liquid chambers provided in the plurality of liquid passages and configured to respectively communicate with the plurality of liquid passages; and
a plurality of piezoelectric elements provided so that an end of each of the piezoelectric elements faces a corresponding one of the plurality of liquid chambers,
wherein a distance between each of the nozzles and the corresponding liquid chamber communicating with the nozzle is changed in a cycle.
2. The droplet jetting head according to claim 1 , wherein the distance is changed in a cycle of two adjacent nozzles.
3. The droplet jetting head according to claim 1 , wherein the plurality of liquid passages are each formed to become narrower gradually in a direction of a flow of the fluid.