LIQUID DELIVERY DEVICE AND LIQUID SPRAY DEVICE
20220323980 · 2022-10-13
Inventors
Cpc classification
B05B9/0409
PERFORMING OPERATIONS; TRANSPORTING
B05B9/0833
PERFORMING OPERATIONS; TRANSPORTING
B05B9/0838
PERFORMING OPERATIONS; TRANSPORTING
B05B1/083
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A liquid delivery device includes a cylinder having a liquid retention section configured to retain a liquid, a piston configured to change a volume of the liquid retention section, a gas container configured to encapsulate a gas at pressure exceeding atmospheric pressure, a regulator which is coupled to the gas container, and is configured to adjust pressure of the gas delivered from the gas container, a gas flow channel having a supply flow channel configured to supply the gas delivered from the regulator to the piston, and a release-to-atmosphere flow channel configured to release the gas delivered from the regulator to an atmosphere, and a three-way valve provided to the gas flow channel to switch between delivering the gas delivered from the regulator to the supply flow channel and delivering the gas to the release-to-atmosphere flow channel.
Claims
1. A liquid delivery device comprising: a cylinder having a liquid retention section configured to retain a liquid; a piston configured to change a volume of the liquid retention section; a gas container configured to encapsulate a gas at pressure exceeding atmospheric pressure; a regulator which is coupled to the gas container, and is configured to adjust pressure of the gas delivered from the gas container; a gas flow channel having a supply flow channel configured to supply the gas delivered from the regulator to the piston, and a release-to-atmosphere flow channel configured to release the gas delivered from the regulator to an atmosphere; and a valve which is provided to the gas flow channel, and which is configured to switch between a first state in which the gas delivered from the regulator is delivered to the supply flow channel, and a second state in which the gas delivered from the regulator is delivered to the release-to-atmosphere flow channel.
2. The liquid delivery device according to claim 1, further comprising: an inflow port through which the liquid inflows into the liquid retention section; and an outflow port through which the liquid outflows from the liquid retention section.
3. The liquid delivery device according to claim 1, wherein the piston is configured to stop when the liquid retention section becomes to have a predetermined volume.
4. The liquid delivery device according to claim 1, wherein the regulator is adjusted so that a volume change rate of the liquid retention section is equal to or less than 100 mL/min.
5. The liquid delivery device according to claim 1, wherein the liquid retention section includes a first liquid retention section and a second retention section arranged in series, and the piston changes a volume of the first liquid retention section with a first zoning part, and changes a volume of the second retention section with a second zoning part.
6. The liquid delivery device according to claim 1, wherein the cylinder has the liquid retention section and a gas retention section configured to retain the gas delivered from the gas container, the piston changes a volume of the gas retention section together with the volume of the liquid retention section, and the liquid retention section in the cylinder and the gas retention section in the cylinder are different in diameter from each other.
7. A liquid delivery device comprising: a cylinder having a liquid retention section configured to retain a liquid; a piston configured to change a volume of the liquid retention section; and a displacing section configured to displace the piston with pressure within a predetermined range as much as one stroke corresponding to one predetermined volume change of the liquid retention section, wherein the piston is configured to automatically stop due to a displacement corresponding to the one stroke by the displacing section.
8. The liquid delivery device according to claim 7, wherein a moving speed of the piston is adjusted so that a volume change rate of the liquid retention section is no higher than 100 mL/min.
9. A liquid spray device comprising: the liquid delivery device according to claim 1; and a spray nozzle configured to spray the liquid delivered from the liquid delivery device.
10. The liquid spray device according to claim 9, wherein the liquid is delivered to the spray nozzle as a continuous flow, and the continuous flow is changed into a droplet and then ejected by the spray nozzle.
11. The liquid spray device according to claim 10, wherein a droplet diameter of the droplet is no smaller than 20 μm, and an ejection speed of the droplet is no higher than 300 m/s.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF AN EXEMPLARY EMBODIMENT
[0026] First, the present disclosure will schematically be described.
[0027] In view of the problem described above, a liquid delivery device according a first aspect of the present disclosure includes a cylinder having a liquid retention section configured to retain a liquid, a piston configured to change a volume of the liquid retention section, a gas container configured to encapsulate a gas at pressure exceeding atmospheric pressure, a regulator which is coupled to the gas container, and is configured to adjust pressure of the gas delivered from the gas container, a gas flow channel having a supply flow channel configured to supply the gas delivered from the regulator to the piston, and a release-to-atmosphere flow channel configured to release the gas delivered from the regulator to an atmosphere, and a three-way valve provided to the gas flow channel to switch between delivering the gas delivered from the regulator to the supply flow channel and delivering the gas to the release-to-atmosphere flow channel.
[0028] According to the present aspect, it is possible for the regulator to keep the pressure of the gas supplied to the piston from the gas container constant, and it is possible to displace the piston with the constant pressure, and therefore, it is possible to stably deliver the liquid. Further, it is possible to achieve a small-sized simple configuration with the cylinder, the piston, the gas container, the regulator, the gas flow channel, and the three-way valve.
[0029] In a liquid delivery device of a second aspect of the present disclosure according to the first aspect, there are further included an inflow port through which the liquid inflows into the liquid retention section, and an outflow port through which the liquid outflows from the liquid retention section.
[0030] According to this aspect, there are provided the inflow port through which the liquid inflows into the liquid retention section, and the outflow port through which the liquid outflows from the liquid retention section. Therefore, it is possible to easily make the liquid inflow into the liquid retention section, and at the same time, it is possible to easily make the liquid outflow from the liquid retention section, and thus, it is possible to deliver the liquid with the simple configuration.
[0031] In a liquid delivery device of a third aspect of the present disclosure according to the first or second aspect, the piston is configured to stop when the liquid retention section becomes to have a predetermined volume.
[0032] According to the present aspect, the piston is configured so as to stop when the liquid retention section becomes to have a predetermined volume. Therefore, the displacement corresponding to one stroke of the piston can accurately be managed, and it is possible to displace the piston with the constant pressure in the displacement corresponding to one stroke of the piston.
[0033] In a liquid delivery device of a fourth aspect of the present disclosure according to any one of the first through third aspects, the regulator is adjusted so that a volume change rate of the liquid retention section is no higher than 100 mL/min.
[0034] When the volume change rate of the liquid retention section is too high, it becomes difficult to displace the piston with the constant pressure in some cases. However, according to the present aspect, the regulator is adjusted so that the value change rate of the liquid retention section becomes no higher than 100 mL/min. Therefore, it is possible to prevent the volume change rate of the liquid retention section from becoming too high, and thus, it is possible to displace the piston with constant pressure in preferred condition.
[0035] In a liquid delivery device of a fifth aspect of the present disclosure according to any one of the first through fourth aspects, the liquid retention section includes a first liquid retention section and a second retention section arranged in series, and the piston changes a volume of the first liquid retention section with a first zoning part, and changes a volume of the second retention section with a second zoning part.
[0036] According to this aspect, the first liquid retention section and the second liquid retention section arranged in series are included as the liquid retention section, and the piston changes the volume of the first liquid retention section with the first zoning part, and at the same time, changes the volume of the second liquid retention section with the second zoning part. Therefore, the supply of the liquid to the first liquid retention section and the discharge of the liquid from the second liquid retention section can be performed at the same time, and the supply of the liquid to the second liquid retention section and the discharge of the liquid from the first liquid retention section can be performed at the same time, and thus, it is possible to increase the efficiency in delivering the liquid. Further, it is possible to make the preparation of a plurality of the pistons unnecessary, and it is possible to make the synchronization of the plurality of pistons unnecessary to thereby make the drive control of the piston easy.
[0037] In a liquid delivery device of a sixth aspect of the present disclosure according to any one of the first through fifth aspects, the cylinder has the liquid retention section and a gas retention section configured to retain the gas delivered from the gas container, the piston changes a volume of the gas retention section together with the volume of the liquid retention section, and the liquid retention section in the cylinder and the gas retention section in the cylinder are different in diameter from each other.
[0038] According to the present aspect, the cylinder diameter is different between the side of supplying the gas and the side of supplying the liquid L. Therefore, it is possible to deliver the liquid with the pressure higher or lower than the gas pressure.
[0039] A liquid delivery device according to a seventh aspect of the present disclosure includes a cylinder having a liquid retention section configured to retain a liquid, a piston configured to change a volume of the liquid retention section, and a displacing section configured to displace the piston with pressure within a predetermined range as much as one stroke corresponding to one predetermined volume change of the liquid retention section, wherein the piston is configured to automatically stop due to a displacement corresponding to the one stroke by the displacing section.
[0040] According to the present aspect, it is possible to displace the piston as much as one stroke with the pressure within the predetermined range. When adopting the configuration of displacing the piston as much as a plurality of strokes without stopping the piston, there is a possibility that the displacement of the piston becomes unstable, but according to the present aspect, it is possible for the regulator to keep the pressure of the gas supplied to the piston from the gas container constant, and it is possible to displace the piston with the constant pressure, and therefore, it is possible to stably deliver the liquid. Further, it is possible to achieve the small-sized simple configuration with the cylinder, the piston, and the displacing section.
[0041] In a liquid delivery device of an eighth aspect of the present disclosure according to the seventh aspect, a moving speed of the piston is adjusted so that a volume change rate of the liquid retention section is no higher than 100 mL/min.
[0042] When the volume change rate of the liquid retention section is too high, it becomes difficult to displace the piston with the constant pressure in some cases. However, according to the present aspect, the moving speed of the piston is adjusted so that the value change rate of the liquid retention section becomes no higher than 100 mL/min. Therefore, it is possible to prevent the volume change rate of the liquid retention section from becoming too high, and thus, it is possible to displace the piston with constant pressure in preferred condition.
[0043] A liquid spray device according to a ninth aspect of the present disclosure includes the liquid delivery device according to any one of the first through seventh aspects, and a spray nozzle configured to spray the liquid delivered from the liquid delivery device.
[0044] According to the present aspect, it is possible to stably supply the liquid to the spray nozzle, and it is possible to stably spray the liquid from the spray nozzle. Further, it is possible to reduce the size of the liquid spray device.
[0045] In a liquid spray device of a tenth aspect of the present disclosure according to the ninth aspect, the liquid is delivered to the spray nozzle as a continuous flow, and the continuous flow is changed into a droplet and then ejected by the spray nozzle.
[0046] According to the present aspect, the liquid is delivered to the spray nozzle as the continuous flow, and the continuous flow is changed into a droplet and then ejected by the spray nozzle. By adopting such a configuration, it is possible to spray the liquid from the spray nozzle in preferred condition.
[0047] In a liquid spray device of an eleventh aspect of the present disclosure according to any one of the first through tenth aspects, a droplet diameter of the droplet is no smaller than 20 μm, and an ejection speed of the droplet is no higher than 300 m/s.
[0048] According to the present aspect, the droplet diameter of the droplet is no smaller than 20 μm, and the ejection speed of the droplet is no higher than 300 m/s. By setting the droplet diameter of the droplet and the ejection speed of the droplet in such ranges, it is possible to spray the liquid from the spray nozzle in particularly preferred condition.
Embodiment 1
[0049] An embodiment according to the present disclosure will hereinafter be described with reference to the accompanying drawings. Here, a liquid spray device 1 is described as a liquid spray device to a facial skin and so on. It should be noted that it is obvious that the liquid spray device 1 is not limited to one for the facial skin, the liquid spray device 1 can be applied to washing of a skin of, for example, arms, hands, legs, and a back, and can further be applied to washing of an object other than a living body.
[0050] First, an outline of the liquid spray device according to the present embodiment will be described with reference to
[0051] As shown in
[0052] The liquid flow channel 3 is provided with check valves 11 for preventing the liquid from flowing backward, wherein a liquid flow channel 3A as a part of the liquid flow channel 3 for coupling the liquid tank 2 and the cylinder 4 to each other is provided with a check valve 11A as one of the check valves 11, and a liquid flow channel 3B as a part of the liquid flow channel 3 for coupling the cylinder 4 and the spray nozzle 9 to each other is provided with a check valve 11B as one of the check valves 11. It should be noted that it is possible to adopt a configuration in which a switching operation of an opening and closing valve 10 is used as a substitution for the function of the check valve 11 to omit the check valve 11B. Further, as shown in
[0053] Further, as shown in
[0054] Further, as shown in
[0055] As described above, the liquid spray device 1A in the present embodiment as the liquid delivery device is provided with the cylinder 4 having the liquid retention section 41 for retaining the liquid L, the piston 5 for changing the volume of the liquid retention section 41, the gas container 7 encapsulating the gas under the pressure exceeding the atmospheric pressure, and the regulator 6 which is coupled to the gas container 7 to adjust the pressure of the gas delivered from the gas container 7. Further, the liquid spray device 1A according to the present embodiment is provided with the gas flow channel 8 having the supply flow channel for supplying the gas delivered from the regulator 6 to the gas retention section 42 provided with the piston 5, and the release-to-atmosphere flow channel for releasing the gas, which has been delivered from the regulator 6, and which remains in the gas retention section 42, to the atmosphere, and is further provided with the three-way valve 12 which is provided to the gas flow channel 8, and which switches between a first state in which the gas delivered from the regulator 6 is delivered to the supply flow channel, and a second state in which the gas delivered from the regulator 6 is delivered to the release-to-atmosphere flow channel.
[0056] The liquid spray device 1A according to the present embodiment has such a configuration as described above, and can therefore keep the pressure of the gas supplied from the gas container 7 to the gas retention section 42 constant by the regulator 6, and thus it is possible to displace the piston 5 with constant pressure, and therefore, it is possible to stably deliver the liquid L to the spray nozzle 9. In other words, it is possible to deliver the liquid L with a constant load and with the constant pressure. Further, the cylinder 4, the piston 5, the gas container 7, the regulator 6, the gas flow channel 8, and the three-way valve 12 form the small-sized and simple configuration, and further, form the configuration which does not require a power supply, and therefore, form a particularly small-sized and simple configuration. It should be noted that since there is adopted the configuration not requiring the power supply, the concern for safety of the user due to the ground leakage disappears.
[0057] Further, as shown in
[0058] Further, as shown in
[0059] In other words, the liquid spray device 1A according to the present embodiment is provided with the cylinder 4A having the liquid retention section 41 for retaining the liquid L, the piston 5 for changing the volume of the liquid retention section 41, and the regulator 6 as a displacement section for displacing the piston 5 as much as one stroke corresponding to a single predetermined volume change of the liquid retention section 41 with the pressure within a predetermined range. Further, the piston 5 is provided with a configuration of automatically stopping due to the displacement corresponding to one stroke with the pressure of the gas from the regulator 6.
[0060] As described above, it is possible for the liquid spray device 1A according to the present embodiment to displace the piston 5 as much as one stroke with the pressure in the predetermined range. When adopting the configuration of displacing the piston 5 as much as a plurality of strokes without stoppage, there is a possibility that the displacement of the piston 5 becomes unstable, but the liquid spray device 1A according to the present embodiment can keep the pressure of the gas supplied from the gas container 7 to the gas retention section 42 constant by the regulator 6, and thus it is possible to displace the piston 5 with the constant pressure, and therefore, it is possible to stably deliver the liquid L to the spray nozzle 9 from the liquid tank 2. Further, the liquid spray device 1A according to the present embodiment can be made to have a small-sized simple configuration with the cylinder 4A, the piston 5, and the regulator 6 as shown in
[0061] It should be noted that in the liquid spray device 1A according to the present embodiment, the regulator 6 is adjusted so that the volume change rate of the liquid retention section 41 becomes no higher than 100 mL/min. In other words, in the liquid spray device 1A according to the present embodiment, the moving speed of the piston 5 is adjusted so that the volume change rate of the liquid retention section 41 becomes no higher than 100 mL/min. When the volume change rate of the liquid retention section 41 is too high, it becomes difficult to displace the piston 5 with the constant pressure in some cases. However, by adjusting the regulator 6 so that the volume change rate of the liquid retention section 41 becomes no higher than 100 mL/min, it is possible to prevent the volume change rate of the liquid retention section 41 from becoming too high, and thus, it is possible to displace the piston 5 with the constant pressure in preferred condition.
[0062] Then, attachment and detachment of the constituents of the liquid spray device 1A according to the present embodiment will be described with reference to
[0063] It should be noted that when spraying the liquid L from the spray unit 20, it is possible to adopt a configuration in which the liquid L from the spray nozzle 9 is sprayed by the user setting the switch 21 to the ON state, and the spray of the liquid L from the spray nozzle 9 is stopped by the user setting the switch 21 to the OFF state. However, such a configuration is not a limitation, and it is possible to adopt a configuration in which the spray of the liquid L from the spray nozzle 9 is automatically stopped, for example, after elapse of a predetermined time without the user manually setting the switch 21 to the OFF state. Further, when adopting such a configuration, it is possible to adopt a configuration in which the switch 21 is automatically set to the OFF state due to an operation of setting the spray unit 20 on the pedestal 23 once again. Further, it is possible to adopt the configuration in which the liquid L is automatically supplied to the liquid retention section 41 from the liquid tank 2 due to the operation of setting the spray unit 20 on the pedestal 23 once again, but it is possible to adopt a configuration in which the liquid L is supplied to the liquid retention section 41 from the liquid tank 2 due to the user setting a switch nor shown or the like to the ON state.
[0064] Then, an operating principle due to the liquid delivery of the liquid L in the liquid spray device 1A according to the present embodiment will be described with reference to
[0065] The diagram at the upper center in
[0066] It should be noted that in the liquid spray device 1A according to the present embodiment, the liquid L is delivered to the spray nozzle 9 as a continuous flow, and the liquid L fed to the spray nozzle 9 as the continuous flow is changed into a droplet and then ejected by the spray nozzle 9. By adopting such a configuration, it is possible to spray the liquid L from the spray nozzle 9 in preferred condition.
[0067] Here, it is preferable for the droplet to be ejected from the spray nozzle 9 to have the droplet diameter no smaller than 20 μm, and have an ejection speed no lower than 300 m/s. The reason is that by setting the droplet diameter of the droplet and the ejection speed of the droplet in such ranges, it is possible to spray the liquid L from the spray nozzle 9 in particularly preferred condition.
[0068] The diagram at an upper right side in
[0069] The diagram at a lower left side in
[0070] It should be noted that the liquid spray device 1A according to the present embodiment is provided with a pressurizing section 231 for retaining a compressed gas such as carbon dioxide on the pedestal 23 as shown in the diagram at a lower left side in
Embodiment 2
[0071] Then, a liquid spray device 1B according to Embodiment 2 as the liquid spray device 1 will be described with reference to
[0072] As shown in
[0073] Since the liquid spray device 1B according to the present embodiment has such a configuration as described above, the user grips the lever 51 to displace the piston 5 toward the P2 direction to thereby displace the piston 5 from the state shown in
[0074] Further, by the user disengaging a hand from the lever 51, the piston 5 is displaced toward the P1 direction. In other words, the piston 5 makes the transition from the state shown in
[0075] As described above, the liquid spray device 1B according to the present embodiment has the configuration in which the user grips the lever 51 to displace the piston 5. It should be noted that it is possible to adopt, for example, a configuration of displacing the lever 51 using a ball screw, or a configuration of winding a wire to thereby displace the lever 51 instead of the configuration in which the user grips the lever 51 to displace the piston 5. Further, it is possible to adopt a configuration provided with a pump for enhancing the degree of vacuum in the large cylinder section 44 and so on in the state shown in
[0076] As described above, the liquid spray device 1B according to the present Embodiment is also provided with the cylinder 4B having the small cylinder section 46 as the liquid retention section for retaining the liquid L, and the piston 5 for changing the volume of the small cylinder section 46. Further, there is provided the configuration in which it is possible to displace the piston 5 as much as one stroke corresponding to the single predetermined volume change of the small cylinder section 46 with the pressure within the predetermined range, and at the same time, it is possible to automatically stop the piston 5 due to the displacement corresponding to one stroke. It should be noted that the lever 51 and the check valve 52 can be assumed to play the role of the displacement section for displacing the piston 5 with the pressure within the predetermined range.
Embodiment 3
[0077] Then, a liquid spray device 1C according to embodiment 3 as the liquid spray device 1 will be described with reference to
[0078] As shown in
[0079] The liquid spray device 1C according to the present embodiment is provided with the gas supply section 14 having such a configuration, and is therefore capable of retaining the compressed air in the gas container 7B with the compressor 60. Further, it is possible to deliver the liquid L corresponding to one stroke from the liquid tank 2 to the spray nozzle 9 with substantially constant pressure similarly to the liquid spray device 1A according to Embodiment 1 using the compressed air retained in the gas container 7B. It should be noted that the compressed air retained in the gas container 7B can be provided with the pressure of, for example, 0.8 MPa.
Embodiment 4
[0080] Then, a liquid spray device 1D according to Embodiment 4 as the liquid spray device 1 will be described with reference to
[0081] As shown in
Embodiment 5
[0082] Then, a liquid spray device 1E according to Embodiment 5 as the liquid spray device 1 will be described with reference to
[0083] As shown in
[0084] It should be noted that it is possible for the user to manually drive the ball screw 16 instead of driving the ball screw 16 with the motor M via the torque limiter 18. Further, it is possible to make the reduction ratio by the reduction gear 17 different between when displacing the piston 5 toward the P2 direction, and when displacing the piston 5 toward the P1 direction. By making the reduction ratio by the reduction gear 17 different, it becomes possible to shorten the supply time of the liquid L to the liquid retention section 41.
Embodiment 6
[0085] Then, a liquid spray device 1F according to Embodiment 6 as the liquid spray device 1 will be described with reference to
[0086] As shown in
Embodiment 7
[0087] Then, a liquid spray device 1G according to Embodiment 7 as the liquid spray device 1 will be described with reference to
[0088] As shown in
[0089] It should be noted that the liquid spray device 1G according to the present embodiment has the configuration in which the coil spring S3 is provided, and it is possible to displace the piston 5 toward the P2 direction with the force caused by the coil spring S3, but can be provided with a configuration in which the piston 5 is displaced toward the P2 direction manually or with electric power. Further, the liquid spray device 1G according to the present embodiment has the configuration in which the heater H is provided, and the coil spring S2 made of the shape-memory alloy is displaced with the heat generated by the heater H, but can be provided with a configuration in which the coil spring S2 made of the shape-memory alloy is displaced with the body heat transferred from a hand of the user.
Embodiment 8
[0090] Then, a liquid spray device 1H according to Embodiment 8 as the liquid spray device 1 will be described with reference to
[0091] As shown in
Embodiment 9
[0092] Then, a liquid spray device 1I according to Embodiment 9 as the liquid spray device 1 will be described with reference to
[0093] As shown in
[0094] As described above, the liquid spray device 1I according to the present embodiment has a first liquid retention section and a second liquid retention section arranged in series as the liquid retention section 41, wherein the first liquid retention section is the liquid retention section 41 in the cylinder 4E, and the second liquid retention section is the liquid retention section 41 in the cylinder 4F. Further, the piston 5 has a configuration capable of changing the volume of the liquid retention section 41 in the cylinder 4E with a first zoning part 55, and at the same time changing the volume of the liquid retention section 41 in the cylinder 4F with a second zoning part 56.
[0095] The liquid spray device 1I according to the present embodiment has such a configuration, and is therefore capable of performing supply of the liquid L to the liquid retention section 41 in the cylinder 4E and discharge of the liquid L from the liquid retention section 41 in the cylinder 4F at the same time, and performing supply of the liquid L to the liquid retention section 41 in the cylinder 4F and discharge of the liquid L from the liquid retention section 41 in the cylinder 4E at the same time, and thus, the efficiency in delivering the liquid L is increased. Further, by adopting such a configuration, it is achieved to make the preparation of a plurality of the pistons 5 unnecessary, and it is achieved to make the synchronization of the plurality of pistons 5 unnecessary to thereby make the drive control of the piston 5 easy.
Embodiment 10
[0096] Then, a liquid spray device 1J according to Embodiment 10 as the liquid spray device 1 will be described with reference to
[0097] As shown in
[0098] Therefore, it is possible to assume that the liquid spray device 1J according to the present embodiment has the configuration obtained by just exchanging the inside and the outside of the arrangement of the cylinder 4 in the liquid spray device 1I according to Embodiment 9 for each other. Therefore, there are provided substantially the same technical features and advantages as in the liquid spray device 1I according to Embodiment 9.
Embodiment 11
[0099] Then, a liquid spray device 1K according to Embodiment 11 as the liquid spray device 1 will be described with reference to
[0100] As shown in
Embodiment 12
[0101] Then, a liquid spray device 1L according to Embodiment 12 as the liquid spray device 1 will be described with reference to
[0102] As shown in
[0103] The present disclosure is not limited to the embodiments described above, but can be implemented with a variety of configurations within the scope or the spirit of the present disclosure. The technical features in the embodiments corresponding to the technical features in the aspects described in SUMMARY section can appropriately be replaced or combined in order to solve all or a part of the problems described above, or in order to achieve all or a part of the advantages. For example, it is possible to adopt a configuration provided with two two-way valves instead of the three-way valve 12. Further, the technical feature can arbitrarily be eliminated unless described in the present specification as an essential element.