Liquid droplet forming device
A liquid droplet forming device for stably forming and ejecting a liquid droplet of a dispersion liquid containing settling particles includes an ejection head that ejects a liquid droplet of a liquid containing settling particles, and a control unit. The control unit controls a behavior of the ejection head by supplying an electrical signal. The ejection head includes a liquid holding portion that holds the liquid, a film-like member that has an ejection hole for ejecting the liquid droplet and that forms a liquid chamber, which holds the liquid, together with the liquid holding portion, and vibration applying means for vibrating the film-like member based on the electrical signal. The electrical signal includes an ejection signal for forming the liquid droplet by vibrating the film-like member, a stirring signal for vibrating the film-like member and a micro-vibration signal.
1 . A liquid droplet forming device comprising:
an ejection head that ejects a liquid droplet of a liquid containing settling particles; and
a control unit that controls a behavior of the ejection head by supplying an electrical signal,
wherein the ejection head includes
a liquid holding portion that holds the liquid,
a film-like member that has an ejection hole for ejecting the liquid droplet and that forms a liquid chamber, which holds the liquid, together with the liquid holding portion, and
vibration applying means for vibrating the film-like member based on the electrical signal,
the electrical signal includes
an ejection signal for forming the liquid droplet by vibrating the film-like member,
a stirring signal for vibrating the film-like member in a range in which the liquid droplet is not formed, the stirring signal having a drive voltage of a signal waveform lower than a drive voltage of the ejection signal, and
a micro-vibration signal having a drive voltage lower than the drive voltage of the stirring signal,
the control unit is configured to selectively supply any one of the ejection signal, the stirring signal, and the micro-vibration signal to the vibration applying means, and
the control unit is configured to continuously supply the micro-vibration signal during a standby time from the ejection of the liquid droplet to the next ejection of the liquid droplet.
2 . The liquid droplet forming device according to claim 1 , wherein
the control unit includes detection means for detecting an ejection state of the liquid droplet to be ejected, and
the liquid held in the liquid holding portion is stirred based on the ejection state.
3 . The liquid droplet forming device according to claim 2 , wherein
the control unit is configured to detect, as the ejection state, absence of ejection of the liquid droplet corresponding to the ejection signal, and
the liquid held in the liquid holding portion is stirred based on a detection result.
4 . The liquid droplet forming device according to claim 3 , wherein the control unit is configured to supply the stirring signal to the vibration applying means in response to the detection means detecting the absence of ejection of the liquid droplet corresponding to the ejection signal.
5 . The liquid droplet forming device according to claim 2 , wherein
the detection means includes
a target portion that faces the ejection hole and whose relative position with respect to the ejection hole is changeable, and
imaging means for imaging the liquid droplet that has landed onto the target portion,
the control unit is configured to detect the ejection state based on a position of the liquid droplet that has landed onto the target portion and an assumed landing position of the liquid droplet assumed based on the relative position between the ejection hole and the target portion, and
the liquid held in the liquid holding portion is stirred based on a detection result.
6 . The liquid droplet forming device according to claim 1 , wherein the control unit is configured to supply the stirring signal to the vibration applying means based on a lapse of a time set in advance.
7 . The liquid droplet forming device according to claim 1 , wherein the control unit includes input means for inputting a drive condition of the ejection head.
8 . The liquid droplet forming device according to claim 7 , wherein, as the drive condition, at least one selected from the group consisting of a drive voltage of the electrical signal, a frequency of the signal waveform, and an application interval of the electrical signal is configured to be input.
9 . The liquid droplet forming device according to claim 7 , wherein
the control unit includes a storage section that stores a plurality of correspondence relationships between a type of the liquid and the drive condition, and
the input means is used to input the type of the liquid.
10 . The liquid droplet forming device according to claim 9 , wherein the control unit is configured to
calculate a settling time for the settling particles based on the type of the liquid, and
supply the stirring signal based on a lapse of the calculated settling time.
11 . The liquid droplet forming device according to claim 9 , wherein the control unit is configured to configure the electrical signal based on the type of the liquid input via the input means.
12 . A liquid droplet forming device comprising:
an ejection head that ejects a liquid droplet of a liquid containing settling particles; and
a control unit that controls a behavior of the ejection head by supplying an electrical signal, wherein
the ejection head includes
a liquid holding portion that holds the liquid,
a film-like member that has an ejection hole for ejecting the liquid droplet and that forms a liquid chamber, which holds the liquid, together with the liquid holding portion,
vibration applying means for vibrating the film-like member based on the electrical signal, and
stirring means for stirring the liquid held in the liquid holding portion,
the electrical signal includes
an ejection signal for forming the liquid droplet by vibrating the film-like member,
a micro-vibration signal for vibrating the film-like member in a range in which the liquid droplet is not formed, the micro-vibration signal having a drive voltage of a signal waveform lower than a drive voltage of the ejection signal, and
a control signal for controlling a behavior of the stirring means,
the control unit is configured to selectively supply any one of the ejection signal and the micro-vibration signal to the vibration applying means and applies the control signal to the stirring means, and
the control unit is configured to continuously supply the micro-vibration signal during a standby time from the ejection of the liquid droplet to the next ejection of the liquid droplet.
13 . The liquid droplet forming device according to claim 12 , wherein
the control unit includes detection means for detecting an ejection state of the liquid droplet to be ejected, and
the liquid held in the liquid holding portion is stirred based on the ejection state.
14 . The liquid droplet forming device according to claim 13 , wherein
the control unit is configured to detect, as the ejection state, absence of ejection of the liquid droplet corresponding to the ejection signal, and
the liquid held in the liquid holding portion is stirred based on a detection result.
15 . The liquid droplet forming device according to claim 13 , wherein
the detection means includes
a target portion that faces the ejection hole and whose relative position with respect to the ejection hole is changeable, and
imaging means for imaging the liquid droplet that has landed onto the target portion,
the control unit is configured to detect the ejection state based on a position of the liquid droplet that has landed onto the target portion and an assumed landing position of the liquid droplet assumed based on the relative position between the ejection hole and the target portion, and
the liquid held in the liquid holding portion is stirred based on a detection result.
16 . The liquid droplet forming device according to claim 12 , wherein the control unit is configured to supply the control signal to the stirring means based on a lapse of a time set in advance.
17 . The liquid droplet forming device according to claim 12 , wherein the control unit includes input means for inputting a drive condition of the ejection head.
18 . The liquid droplet forming device according to claim 17 , wherein, as the drive condition, at least one selected from the group consisting of a drive voltage of the electrical signal, a frequency of the signal waveform, and an application interval of the electrical signal is configured to be input.
19 . The liquid droplet forming device according to claim 17 , wherein
the control unit includes a storage section that stores a plurality of correspondence relationships between a type of the liquid and the drive condition, and
the input means is used to input the type of the liquid.