WATER DISCHARGE APPARATUS
20170314242 ยท 2017-11-02
Assignee
Inventors
- Yusuke NOGOSHI (Kitakyushu-shi, Fukuoka, JP)
- Masahiro KUROISHI (Kitakyushu-shi, Fukuoka, JP)
- Takamasa SUZUKI (Kitakyushu-shi, Fukuoka, JP)
- Kenta SUZUKI (Kitakyushu-shi, Fukuoka, JP)
- Yusuke NAKAMURA (Kitakyushu-shi, Fukuoka, JP)
- Koki NAGANO (Kitakyushu-shi, Fukuoka, JP)
Cpc classification
A61L2202/14
HUMAN NECESSITIES
C25B9/17
CHEMISTRY; METALLURGY
E03C1/04
FIXED CONSTRUCTIONS
E03C2201/40
FIXED CONSTRUCTIONS
C25B15/08
CHEMISTRY; METALLURGY
International classification
E03C1/04
FIXED CONSTRUCTIONS
C25B15/08
CHEMISTRY; METALLURGY
Abstract
A water discharge apparatus WD executes a water film formation step of ejecting running water and forming a water-splash suppression water film of the running water on a surface of a sterilization object, before executing a sterilization step of discharging sterilization water from a sterilization water ejection unit 20 toward the sterilization object.
Claims
1. A water discharge apparatus that is provided in a kitchen, wherein the water discharge apparatus comprises: a sterilization water generation unit to generate sterilization water; a sterilization water ejection unit to eject the sterilization water generated by the sterilization water generation unit, in a shower form or in a mist form; a switching valve to switch between water discharge and water stop from the sterilization water ejection unit; and a control unit to control the sterilization water generation unit and the switching valve, and when a water discharge start signal for the sterilization water is input, the control unit executes a water film formation step before executing a sterilization step, the sterilization step being a step of discharging the sterilization water from the sterilization water ejection unit toward a sterilization object, the water film formation step being a step of ejecting running water and forming a water-splash suppression water film of the running water on a surface of the sterilization object.
2. A water discharge apparatus that is provided in a kitchen, wherein the water discharge apparatus comprises: a sterilization water generation unit to generate sterilization water; a sterilization water ejection unit to eject the sterilization water generated by the sterilization water generation unit, in a shower form or in a mist form; a switching valve to switch between water discharge and water stop from the sterilization water ejection unit; and a control unit to control the sterilization water generation unit and the switching valve, and when a water discharge start signal for the sterilization water is input, the control unit executes a water film formation step before executing a sterilization step, the sterilization step being a step of discharging the sterilization water from the sterilization water ejection unit toward a sterilization object, the water film formation step being a step of ejecting sterilization water having a lower concentration than the sterilization water and forming a water-splash suppression water film of the sterilization water having the lower concentration on a surface of the sterilization object.
3. The water discharge apparatus according to claim 1, wherein the control unit automatically performs switching from the water film formation step to the sterilization step, without waiting for an instruction that is input by a user.
4. The water discharge apparatus according to claim 3, wherein the control unit performs the switching from the water film formation step to the sterilization step, without performing the water stop.
5. The water discharge apparatus according to claim 4, wherein the water film formation step is executed by the water discharge from the sterilization water ejection unit.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0019]
[0020]
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DESCRIPTION OF EMBODIMENT
[0031] Hereinafter, an embodiment of the present invention will be described with reference to the accompanying drawings. For facilitating the understanding of the description, in the drawings, identical reference characters are assigned to identical constituent elements as much as possible, and repetitive descriptions are omitted.
[0032] A water discharge apparatus according to the embodiment of the present invention will be described with reference to
[0033] As shown in
[0034] As shown in
[0035] As shown in
[0036] Next, a flow path configuration of the water discharge apparatus WD will be described with reference to
[0037] The sterilization water generation unit 30 includes a stop cock 31, an electromagnetic valve 32, a pressure regulating valve 33, a check valve 34, an electrolysis tank 35, a salt water pack 36, a micro-pump 37 and a control device 38. A pipe pathway is connected with, from the upstream side, the stop cock 31, the electromagnetic valve 32, the pressure regulating valve 33, the check valve 34 and the electrolysis tank 35, and is connected with the sterilization water ejection unit 20, at the end. The salt water pack 36 and the micro-pump 37 are provided as a branch pathway, which is connected from the salt water 36 to the micro-pump and is connected to the above pipe pathway upstream of the electrolysis tank 35. The control device 38 outputs control signals to the electromagnetic valve 32, the electrolysis tank 35 and the micro-pump 37, respectively. The electromagnetic valve 32 opens/closes a valve so as to perform water discharge/water stop, in response to the control signal output from the control device 38. In the electrolysis tank 35, a pair of electrodes is provided, and the state of the energization of the pair of electrodes can be changed in response to the control signal output from the control device 38. When the pair of electrodes is energized, the sterilization water is generated in the electrolysis tank 35 and is supplied to the sterilization water ejection unit 20. The micro-pump 37 feeds the salt water stored in the salt water pack 36, to the electrolysis tank 35, in response to the control signal output from the control device 38. In this way, sterilization water having a high concentration is generated in the electrolysis tank 35.
[0038] Next, water discharge forms of the water discharge apparatus WD in the embodiment will be described with reference to
[0039] In the comparison between a water discharge part formed on the spout unit 101 of the running water ejection unit 10 and the a water discharge part formed on the spout unit 201 of the sterilization water ejection unit 20, the outer circumference shape of the water discharge part formed on the spout unit 201 of the sterilization water ejection unit 20 is smaller. The water discharge part formed on the spout unit 201 of the sterilization water ejection unit 20 is formed so as to be smaller than the water discharge part formed on the spout unit 101 of the running water ejection unit 10 both in the width direction and in the depth direction. The outer circumference area of a region where a plurality of sterilization water sprinkling holes is formed is configured to be smaller than the outer circumference area of a region where a plurality of running water sprinkling holes is formed, such that the area of a water film to be formed at the time of the landing of the sterilization water ejected from the sterilization water ejection unit 20 is smaller than the area of a water film to be formed at the time of the landing of the running water ejected from the running water ejection unit 10. Furthermore, the interval between adjacent sterilization water sprinkling holes is configured to be smaller than the interval between adjacent running water sprinkling holes.
[0040] The condition of the water discharge from the water discharge part formed on the spout unit 101 of the running water ejection unit 10 is configured to start gradually spreading immediately after the water discharge. On the other hand, the condition of the water discharge from the water discharge part formed on the spout unit 201 of the sterilization water ejection unit 20 is configured not to spread as much as possible immediately after the water discharge. Therefore, as for the condition of the landing on a chopping board BD, the running water lands in a wide range and the sterilization water lands in a narrow range.
[0041] When such water discharge conditions and landing conditions are realized, landing conditions shown in
[0042] After the landing conditions shown in
[0043] Next, a flow of a control at the start of the water discharge on the sterilization water side of the water discharge apparatus WD will be described with reference to
[0044] The control device 38 judges whether the operation unit 203 has been operated and the ejection of the sterilization water has been requested (step S102). If the operation unit 203 has not been operated, the judgment in step S102 is repeated, and if the operation unit 203 has been operated, the flow proceeds to a process in step S103.
[0045] In step S103, the control device 38 outputs a control signal for opening the electromagnetic valve 32. In step S104 following step S103, whether a predetermined time has elapsed is judged. If the predetermined time has not elapsed, the judgment in step S104 is repeated, and if the predetermined time has elapsed, the flow proceeds to a process in step S105.
[0046] In step S105, the control device 38 maintains the open-state of the electromagnetic valve 32, drives the micro-pump 37, energizes the electrodes in the electrolysis tank 35, and generates the sterilization water having a high concentration. The sterilization water is ejected from the sterilization water ejection unit 20 toward the sink SK.
[0047] When the sterilization water is ejected in such steps, the running water is initially ejected to the chopping board BD, and thereafter the sterilization water is ejected. As shown in
[0048] Next, a flow of another control at the start of the water discharge on the sterilization water side of the water discharge apparatus WD will be described with reference to
[0049] The control device 38 judges whether the operation unit 203 has been operated and the ejection of the sterilization water has been requested (step S202). If the operation unit 203 has not been operated, the judgment in step S202 is repeated, and if the operation unit 203 has been operated, the flow proceeds to a process in step S203.
[0050] In step S203, the control device 38 outputs the control signal for opening the electromagnetic valve 32, and energizes the electrodes in the electrolysis tank 35. In step S204 following step S203, whether a predetermined time has elapsed is judged. If the predetermined time has not elapsed, the judgment in step S204 is repeated, and if the predetermined time has elapsed, the flow proceeds to a process in step S205.
[0051] In step S205, the control device 38 maintains the open-state of the electromagnetic valve 32, drives the micro-pump 37, maintains the energization of the electrodes in the electrolysis tank 35, and generates the sterilization water having a high concentration. The sterilization water is ejected from the sterilization water ejection unit 20 toward the sink SK.
[0052] Even when the sterilization water is ejected in such steps, sterilization water having a low concentration reaches the chopping board BD until the micro-pump 37 is driven, and therefore, a water film of the sterilization water having a low concentration is formed, allowing for the suppression of the water splash of the sterilization water having a high concentration.
[0053] In the embodiment, as shown in
[0054] Further, as shown in
REFERENCE SIGNS LIST
[0055] 10: running water ejection unit [0056] 20: sterilization water ejection unit [0057] 30: sterilization water generation unit [0058] 31: stop cock [0059] 32: electromagnetic valve [0060] 33: pressure regulating valve [0061] 34: check valve [0062] 35: electrolysis tank [0063] 36: salt water pack [0064] 37: micro-pump [0065] 38: control device [0066] 101: spout unit [0067] 102: attachment unit [0068] 103: operation unit [0069] 201: spout unit [0070] 202: attachment unit [0071] 203: operation unit [0072] BD: chopping board [0073] SK: sink [0074] SK1: bottom surface [0075] SK2: drainage port [0076] WD: water discharge apparatus