JP4367216B2 - Water supply equipment - Google Patents

Water supply equipment Download PDF

Info

Publication number
JP4367216B2
JP4367216B2 JP2004126630A JP2004126630A JP4367216B2 JP 4367216 B2 JP4367216 B2 JP 4367216B2 JP 2004126630 A JP2004126630 A JP 2004126630A JP 2004126630 A JP2004126630 A JP 2004126630A JP 4367216 B2 JP4367216 B2 JP 4367216B2
Authority
JP
Japan
Prior art keywords
water supply
water
light source
filter
control device
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP2004126630A
Other languages
Japanese (ja)
Other versions
JP2005308322A (en
Inventor
かほる 辻本
和幸 濱田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Panasonic Corp
Panasonic Holdings Corp
Original Assignee
Panasonic Corp
Matsushita Electric Industrial Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Panasonic Corp, Matsushita Electric Industrial Co Ltd filed Critical Panasonic Corp
Priority to JP2004126630A priority Critical patent/JP4367216B2/en
Publication of JP2005308322A publication Critical patent/JP2005308322A/en
Application granted granted Critical
Publication of JP4367216B2 publication Critical patent/JP4367216B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Devices That Are Associated With Refrigeration Equipment (AREA)
  • Production, Working, Storing, Or Distribution Of Ice (AREA)
  • Cold Air Circulating Systems And Constructional Details In Refrigerators (AREA)

Description

本発明は給水容器に貯留した水を給水経路を介して給水する給水装置に関するものである。   The present invention relates to a water supply apparatus that supplies water stored in a water supply container via a water supply path.

従来、この種の給水装置としては、給水容器に貯留した水を給水ポンプにより給水経路を介して製氷皿に給水する構成の製氷装置の給水装置やあるいは、給水容器に貯留した水を自由落下により製氷皿に給水する構成の製氷装置の給水装置がある(例えば、特許文献1参照)。   Conventionally, as this type of water supply device, a water supply device of an ice making device configured to supply water stored in a water supply container to an ice tray via a water supply path by a water supply pump, or water stored in a water supply container by free fall There is a water supply device of an ice making device configured to supply water to an ice tray (see, for example, Patent Document 1).

図6は特許文献1に記載された従来の製氷装置の給水装置を示すものである。図6に示すように、冷蔵庫1は、上から冷蔵室2、野菜室3および冷凍室4の各室が仕切板5および断熱仕切板6により仕切られた状態で設けられている。給水装置13は冷蔵室2の一方の側壁部分に配設される給水タンク14、及び給水タンク14から汲み上げた製氷用の水を製氷皿11に導くための給水経路15から構成されている。給水タンク14の上部は着脱可能な蓋部16が装着されている。給水タンク14の蓋部16には一体に給水ポンプユニット17が固定されている。ポンプユニット17は給水タンク14の底面部の凹部14aに設けられるように位置するポンプ部18と、このポンプ部18から排出する製氷用の水を吐出させるための吐出パイプ19および外部に供給する出口パイプ20から構成される。ポンプ37には、円盤状の磁石板に取着されたインペラ(図示せず)が収容されており、外部に設けたモータ部21により回転駆動されるようになっている。ポンプ部18に設けられた吸込み口18aから給水タンク14内の水を吸込んで吐出パイプ19側に吐出する。出口パイプ20は下方に向けて開口されたおり、給水タンク14の装着状態ではその開口部は水受け部22の上面開口部22aの内部に臨むように配設されている。水受け部22は上面が開口した漏斗状のもので、下部に径小な吐出パイプ19が一体に形成されている。吐出パイプ19bの先端部には給水経路を形成する給水パイプ23が取着されている。   FIG. 6 shows a water supply device of a conventional ice making device described in Patent Document 1. As shown in FIG. 6, the refrigerator 1 is provided in a state in which the refrigerator compartment 2, the vegetable compartment 3, and the freezer compartment 4 are partitioned from each other by a partition plate 5 and a heat insulating partition plate 6. The water supply device 13 includes a water supply tank 14 disposed on one side wall portion of the refrigerator compartment 2 and a water supply path 15 for guiding ice-making water pumped from the water supply tank 14 to the ice-making tray 11. A detachable lid 16 is attached to the upper part of the water supply tank 14. A water supply pump unit 17 is integrally fixed to the lid portion 16 of the water supply tank 14. The pump unit 17 includes a pump unit 18 positioned so as to be provided in the recess 14 a in the bottom surface of the water supply tank 14, a discharge pipe 19 for discharging ice-making water discharged from the pump unit 18, and an outlet for supplying to the outside It consists of a pipe 20. The pump 37 accommodates an impeller (not shown) attached to a disk-shaped magnet plate and is driven to rotate by a motor unit 21 provided outside. Water in the water supply tank 14 is sucked from a suction port 18a provided in the pump unit 18 and discharged to the discharge pipe 19 side. The outlet pipe 20 is opened downward, and when the water supply tank 14 is attached, the opening is disposed so as to face the inside of the upper surface opening 22 a of the water receiving portion 22. The water receiving part 22 has a funnel shape with an open upper surface, and a discharge pipe 19 having a small diameter is integrally formed at the lower part. A water supply pipe 23 that forms a water supply path is attached to the tip of the discharge pipe 19b.

また、最近の給水装置は、この発明のポンプ部18の吸込み口18aに光触媒部材と活性炭からなる浄水用フィルタを設け、給水タンク14の外側に、紫外光を発光するLEDやUVランプなどの光源を備えた構成のものある。   Further, a recent water supply apparatus is provided with a water purifying filter made of a photocatalyst member and activated carbon at the suction port 18a of the pump unit 18 of the present invention, and a light source such as an LED or UV lamp that emits ultraviolet light outside the water supply tank 14. There is a thing of the composition provided with.

以上のように構成された製氷装置の給水装置について、以下、その給水動作を説明する。   About the water supply apparatus of the ice making device comprised as mentioned above, the water supply operation | movement is demonstrated below.

自動製氷動作において、製氷皿11に製氷用の水を給水すべくモータ部21が駆動されると、ポンプ部18のインペラが回転駆動され、給水タンク14内の製氷用の水が開口部18aから吸い込まれて吐出パイプ19を経て出口パイプ20から水受け部22に汲み上げられる。水受け部22では、流入する製氷用の水が溜められている状態で、下方の吐出パイプ22bから給水パイプ23内を流通し、製氷皿11に製氷用の水が滴下されるようになる。所定時間のポンプ部18の駆動により、製氷皿11内に適量の給水がなされる。   In the automatic ice making operation, when the motor unit 21 is driven to supply ice making water to the ice tray 11, the impeller of the pump unit 18 is driven to rotate, and the ice making water in the water supply tank 14 is supplied from the opening 18a. The water is sucked and discharged from the outlet pipe 20 to the water receiver 22 through the discharge pipe 19. In the water receiving portion 22, the ice-making water flows from the lower discharge pipe 22 b through the water supply pipe 23 while the inflowing ice-making water is stored, and the ice-making water is dripped onto the ice tray 11. By driving the pump unit 18 for a predetermined time, an appropriate amount of water is supplied into the ice tray 11.

また、開口部20に設けられた浄水用フィルタで貯留水中の浮遊菌を除菌する。次に給水タンク14の外側に配設された、光源であるLEDあるいはUVランプにて浄水フィルタに向け紫外線が照射され、浄水用フィルタに含まれる光触媒を活性化させ、除菌した細菌を不活化する。
特開2001―41625号公報
In addition, airborne bacteria in the stored water are sterilized with a filter for water purification provided in the opening 20. Next, ultraviolet light is irradiated toward the water purification filter by an LED or UV lamp as a light source disposed outside the water supply tank 14 to activate the photocatalyst contained in the water purification filter and inactivate the sterilized bacteria. To do.
Japanese Patent Laid-Open No. 2001-41625

しかしながら、上記従来の構成では、浄水用フィルタを分解洗浄するには、給水タンクを取り出し、蓋を開けてから、ポンプ部に装着されているフィルタを外すため、分解工数が多いという課題を有していた。   However, in the above-described conventional configuration, in order to disassemble and clean the water purification filter, the water tank is taken out, the lid is opened, and the filter attached to the pump unit is removed. It was.

本発明は、上記従来の課題を解決するもので、浄水用フィルタ洗浄のための分解工数を低減し、使い勝手を向上した給水装置を提供することを目的とする。   This invention solves the said conventional subject, and it aims at providing the water supply apparatus which reduced the decomposition man-hour for the filter washing | cleaning for water purification, and improved the usability.

上記課題を解決するために、本発明の製氷装置の給水装置は水受け部に着脱可能な浄水用のフィルタを配設したものである。   In order to solve the above-mentioned problems, the water supply device of the ice making device of the present invention is provided with a water purifying filter that can be attached to and detached from the water receiving portion.

これによって、給水タンクを取り外すだけで、浄水用フィルタは取り出せ、洗浄できることとなる。   Thereby, the filter for water purification can be taken out and washed simply by removing the water supply tank.

本発明の製氷装置の給水装置は、水受け部を簡単に取り外せ洗浄できるので清潔で使い勝手を向上した給水装置を提供することができる。   The water supply device of the ice making device of the present invention can provide a water supply device that is clean and easy to use because the water receiving portion can be easily removed and cleaned.

請求項1に記載の発明は、給水容器と、前記給水容器内に備えられ前記給水容器外部に連通する吐出口と、前記吐出口は前記給水容器の下部に配設され、前記吐出口と連通し前記給水容器内の水の流出および封止を切り替える開閉弁とを有し、前記開閉弁の下方に配設された水受け部を有し、前記水受け部には浄水用のフィルタが備えられており、前記フィルタは前記水受け部に対して着脱可能であることにより、給水タンクおよび水受け皿を取り外すだけで、浄水用フィルタは取り出せ、洗浄できることとなり、使い勝手を向上した給水装置を提供することができる。 According to the first aspect of the present invention, a water supply container, a discharge port provided in the water supply container and communicating with the outside of the water supply container, and the discharge port are disposed at a lower portion of the water supply container and communicated with the discharge port. An on-off valve that switches between outflow and sealing of water in the water supply container, and has a water receiving portion disposed below the on-off valve, and the water receiving portion includes a filter for water purification. Since the filter is detachable from the water receiving portion , the water purifying filter can be taken out and washed simply by removing the water supply tank and the water receiving tray, thereby providing a water supply device with improved usability. be able to.

請求項2に記載の発明は、前記フィルタの近傍に配設されると共に紫外線の照射が可能な光源を有し、前記フィルタは前記光源によって紫外線を直接照射されることにより、フィルタ上に吸着した細菌やカビを紫外線によって死滅させることとなり、清潔な給水装置を提供することができる。   The invention according to claim 2 has a light source which is disposed in the vicinity of the filter and capable of irradiating ultraviolet rays, and the filter is adsorbed onto the filter by being directly irradiated with ultraviolet rays by the light source. Bacteria and mold are killed by ultraviolet rays, and a clean water supply device can be provided.

請求項3に記載の発明は、前記フィルタは少なくとも光触媒部材を含んでいることにより、前記フィルタに直接照射される紫外線によって前記光触媒部材が活性化され、前記フィルタ上に吸着した細菌やカビを不活化することとなり、除菌効果を高めた給水装置を提供することができる。   According to a third aspect of the present invention, since the filter includes at least a photocatalyst member, the photocatalyst member is activated by ultraviolet rays directly applied to the filter, and bacteria and molds adsorbed on the filter are prevented. It will be activated, and the water supply apparatus which improved the bacteria elimination effect can be provided.

請求項4に記載の発明は、前記給水容器内に備えられた給水ポンプと、前記給水ポンプを備え前記吐出口と連通する第一給水経路と、前記水受け部に備えられた第二給水経路とを有し、前記フィルタは前記吐出口と前記第二給水経路の間に配設されることにより、前記フィルタを洗浄のために取り出す場合、分解工数が少ないことととなり、清掃時の使い勝手を向上した給水装置を提供することができる。   The invention according to claim 4 is a water supply pump provided in the water supply container, a first water supply path provided with the water supply pump and communicating with the discharge port, and a second water supply path provided in the water receiving portion. The filter is disposed between the discharge port and the second water supply path, so that when the filter is taken out for cleaning, the number of disassembling steps is reduced, and the usability at the time of cleaning is reduced. An improved water supply apparatus can be provided.

請求項に記載の発明は、前記光源の運転制御を行う制御装置を備え、前記光源は前記給水ポンプの運転と連動して前記制御装置によって制御されることにより、前記光源は前記給水ポンプの運転と連動して間欠運転することとなり、消費電力量の低い給水装置を提供することができる。 The invention according to claim 5 includes a control device that controls the operation of the light source, and the light source is controlled by the control device in conjunction with the operation of the water supply pump, whereby the light source is controlled by the water supply pump. Intermittent operation is performed in conjunction with operation, and a water supply device with low power consumption can be provided.

請求項に記載の発明は、前記光源の運転制御を行う制御装置を備え、前記光源は前記駆動装置の運転と連動して前記制御装置によって制御されることにより、前記光源は前記駆動装置の運転と連動して間欠運転することとなり、消費電力量の低い給水装置を提供することができる。 The invention according to claim 6 includes a control device that controls the operation of the light source, and the light source is controlled by the control device in conjunction with the operation of the drive device, whereby the light source is controlled by the drive device. Intermittent operation is performed in conjunction with operation, and a water supply device with low power consumption can be provided.

請求項に記載の発明は、前記光源の運転制御を行う制御装置を備え、前記光源は給水中に運転されるよう前記制御装置によって制御されることにより、前記フィルタを水が通過する間、紫外線を前記フィルタに照射することとなり、前記フィルタ上に吸着する細菌やカビを効果的に不活化、分解するとともに不純物の分解も効果的におこなうこととができる。 The invention according to claim 7 includes a control device that performs operation control of the light source, and the light source is controlled by the control device to be operated during water supply, so that water passes through the filter. By irradiating the filter with ultraviolet rays, bacteria and mold adsorbed on the filter can be effectively inactivated and decomposed, and impurities can be decomposed effectively.

請求項に記載の発明は、前記光源の運転制御を行う運転制御装置を備え、前記光源は給水完了後、一定時間を経過した後に停止されるよう前記制御装置によって制御されることにより、前記フィルタを水が通過した後一定時間、紫外線を前記フィルタに照射することとなり、給水後の前記フィルタ上に吸着された細菌やカビを除菌することができる。 The invention according to claim 8 includes an operation control device that performs operation control of the light source, and the light source is controlled by the control device to stop after a predetermined time has elapsed after completion of water supply, The filter is irradiated with ultraviolet rays for a certain period of time after water has passed through the filter, and bacteria and molds adsorbed on the filter after water supply can be sterilized.

請求項に記載の発明は、前記光源の運転制御を行う運転制御装置を備え、前記光源は給水開始以前に、一定時間運転されるよう前記制御装置によって制御されることにより、前記フィルタを水が通過する前の一定時間、紫外線を前記フィルタに照射することとなり、給水停止間に前記フィルタ上に増加した細菌やカビを除菌し、前記フィルタの浄化能力を初期状態近くまで復活することができる。 The invention according to claim 9 is provided with an operation control device that performs operation control of the light source, and the light source is controlled by the control device so that the light source is operated for a certain period of time before the start of water supply. The filter will be irradiated with ultraviolet rays for a certain period of time before passing through, and bacteria and mold that have increased on the filter will be sterilized during the stoppage of water supply, and the purification ability of the filter may be restored to near the initial state. it can.

(実施の形態1)
図1は本発明の実施の形態1における製氷装置の給水装置の断面図である。
(Embodiment 1)
1 is a cross-sectional view of a water supply device of an ice making device according to Embodiment 1 of the present invention.

図1において、前記給水パイプ31は給水タンク33内に設置して水を上方に誘導する。モータ34は、給水タンク33内の給水ポンプ32に動力伝達するためのマグネット(図示せず)と共同して構成される給水ポンプ駆動部である。前記給水タンク33内の水は満水位39が設定されており、汲み上げられて吐出口36から流出する。また、給水ポンプ32の上方に位置する給水パイプ31の上方で内部と外部に渡るように設置され、平面形状が方形で上方が開放されたスロープ35に差し込まれて上面に突き出している。給水ポンプ32で汲み上げられて吐出口36から流水した水は、前記スロープ35上を流下し、排水口37から流出するようになっている。また、スロープ35は、給水タンク33の上部に取り外し自在に載置され、蓋38が覆うようになっている。そして給水ポンプ32で汲み上げられる水を送る給水パイプ31との繋がり部36よりもスロープ35の下方に位置する排水口37は給水タンク33の満水位39よりも上方に設けられている。また前記排水口37の下部には水受け部40が設置されている。前記水受け部40の内部には光触媒部材41を表面に塗布した活性炭42からなる着脱可能な浄水用フィルタ43が配設されている。また、前記水受け部40上方の近傍に紫外線領域の波長を発光する光源45として紫外線LEDが配設されており、前記給水タンク33と前記水受け部40の隙間から前記浄水フィルタ43に紫外線が照射されるようになっている。製氷皿46は水受け部40の下部に設けられたパイプ47から注ぎ込まれて製氷される。   In FIG. 1, the water supply pipe 31 is installed in a water supply tank 33 to guide water upward. The motor 34 is a feed pump driving unit configured in cooperation with a magnet (not shown) for transmitting power to the feed pump 32 in the feed tank 33. The water in the water supply tank 33 is set at a full water level 39, and is pumped up and flows out from the discharge port 36. Moreover, it installs so that it may extend inside and outside above the water supply pipe 31 located above the water supply pump 32, and is inserted into a slope 35 having a square planar shape and opened upward, and protrudes from the upper surface. The water pumped up by the water supply pump 32 and flowing from the discharge port 36 flows down on the slope 35 and flows out from the drain port 37. The slope 35 is detachably mounted on the upper portion of the water supply tank 33 and is covered with a lid 38. A drainage port 37 located below the slope 35 is provided above the full water level 39 of the water supply tank 33 with respect to the water supply pipe 31 that sends water pumped up by the water supply pump 32. A water receiving portion 40 is installed at the lower portion of the drainage port 37. A detachable water purifying filter 43 made of activated carbon 42 coated with a photocatalyst member 41 on the surface is disposed inside the water receiving portion 40. In addition, an ultraviolet LED is disposed as a light source 45 that emits a wavelength in the ultraviolet region in the vicinity of the upper portion of the water receiver 40, and ultraviolet rays are transmitted to the water purification filter 43 from the gap between the water supply tank 33 and the water receiver 40. Irradiated. The ice making tray 46 is poured into a pipe 47 provided at the lower part of the water receiving portion 40 to make ice.

以上のように構成された製氷装置の給水装置について、以下その動作、作用を説明する。   About the water supply apparatus of the ice making apparatus comprised as mentioned above, the operation | movement and an effect | action are demonstrated below.

まず、モータ34が回転すると、給水タンク33内の水が給水ポンプ32によって汲み上げられて、給水パイプ31上端の吐出口6からスロープ35上に流出し、傾斜部を流れて排水口37より流下し、水受け部40の下部に設けたパイプ47を通って、製氷皿46に給水され製氷される。   First, when the motor 34 rotates, water in the water supply tank 33 is pumped up by the water supply pump 32, flows out from the discharge port 6 at the upper end of the water supply pipe 31 onto the slope 35, flows through the inclined portion, and flows down from the drain port 37. Then, the water is supplied to the ice tray 46 through the pipe 47 provided at the lower part of the water receiving portion 40 and is made.

次に光源45の動作制御について説明する。   Next, operation control of the light source 45 will be described.

図2は光源45の運転制御のタイムチャートと浄水用フィルタ43の菌数を示した図である。図2に示すように、光源45の運転制御は4段階の制御構成となる。第一段階では、給水ポンプ32の運転開始以前の一定時間光源45を点灯する。この第一段階の紫外線照射によって、光源45停止時に増加した浄水用フィルタ43の菌を光触媒によって除菌する。次に第二段階として、給水ポンプ32の運転中に光源45を点灯する。この第二段階では浄水用フィルタ43を通過する水中の菌が浄水用フィルタ43に吸着されると同時に光触媒によって除菌される。しかし、この段階では光触媒による除菌速度よりも浄水用フィルタ43による菌の吸着速度の方が勝る為、浄水用フィルタ43の菌数は増加する。次に第3段階として給水ポンプ32の運転停止後一定時間、光源45を点灯する。この第三段階では、第二段階で浄水用フィルタ43に吸着した菌を給水停止状態時に紫外線を照射して、光触媒によって菌数が浄水用フィルタ43の初期状態近くまで除菌する。その後、第四段階では、給水ポンプ32および光源45を停止状態とする。第四段階での浄水用フィルタ43の菌数増加は前段階での除菌によって微量に抑えられる。その後、第一段階から第四段階までの制御が繰り返され、浄水用フィルタ43の菌数は少ない菌数に抑えられる。   FIG. 2 is a diagram showing a time chart of operation control of the light source 45 and the number of bacteria in the water purification filter 43. As shown in FIG. 2, the operation control of the light source 45 has a four-stage control configuration. In the first stage, the light source 45 is turned on for a predetermined time before the operation of the water supply pump 32 is started. By this first-stage ultraviolet irradiation, the bacteria in the water purification filter 43 that have increased when the light source 45 is stopped are sterilized by the photocatalyst. Next, as a second stage, the light source 45 is turned on during operation of the water supply pump 32. In this second stage, bacteria in the water passing through the water purification filter 43 are adsorbed by the water purification filter 43 and simultaneously sterilized by the photocatalyst. However, at this stage, since the bacteria adsorption rate by the water purification filter 43 is higher than the bacteria elimination rate by the photocatalyst, the number of bacteria in the water purification filter 43 increases. Next, as a third stage, the light source 45 is turned on for a certain time after the operation of the water supply pump 32 is stopped. In this third stage, the bacteria adsorbed on the water purification filter 43 in the second stage are irradiated with ultraviolet rays when the water supply is stopped, and the number of bacteria is sterilized to near the initial state of the water purification filter 43 by the photocatalyst. Thereafter, in the fourth stage, the water supply pump 32 and the light source 45 are stopped. The increase in the number of bacteria in the water purification filter 43 in the fourth stage is suppressed to a very small amount by the sterilization in the previous stage. Thereafter, the control from the first stage to the fourth stage is repeated, and the number of bacteria in the filter for water purification 43 is suppressed to a small number of bacteria.

以上のように本実施の形態では、給水タンクに貯留した水を給水ポンプにより給水経路を介して製氷皿に給水する構成の製氷装置の給水装置において、前記給水装置の水受け部に光触媒部材を含む着脱可能な浄水用フィルタを配設することにより、給水タンクを取り外す工程だけで、浄水用フィルタを取り出し、洗浄でき、浄水用フィルタ洗浄のための分解工数が低減されることとなり、清掃時の手間が省け、使い勝手を向上することができる。   As described above, in the present embodiment, in the water supply device of the ice making device configured to supply the water stored in the water supply tank to the ice tray through the water supply path by the water supply pump, the photocatalyst member is provided in the water receiving portion of the water supply device. By disposing the removable water purification filter, the water purification filter can be taken out and washed only by removing the water supply tank, and the number of disassembly steps for cleaning the water purification filter will be reduced. This saves time and improves usability.

また、本実施の形態では、給水装置の水受け部に光触媒部材を含む浄水用フィルタと前記浄水用フィルタの近傍に紫外線を発光する光源とが配設され、前記浄水用フィルタに直接紫外線を照射することにより、浄水用フィルタに含まれる光触媒が活性化され、浄水用フィルタに付着した細菌やカビを不活化、分解することとなり、給水の除菌性能を向上することができる。   Further, in the present embodiment, a water purification filter including a photocatalyst member in the water receiving portion of the water supply device and a light source that emits ultraviolet light in the vicinity of the water purification filter are disposed, and the water purification filter is directly irradiated with ultraviolet light. By doing so, the photocatalyst contained in the filter for water purification is activated, bacteria and molds attached to the filter for water purification are inactivated and decomposed, and the sterilization performance of the water supply can be improved.

また、本実施の形態では、浄水用フィルタに直接紫外線を照射することにより、浄水用フィルタに間接的に紫外線を照射するものと比べて紫外線照射強度を低く抑えられることとなり、周辺材料の紫外線劣化を防止することができる。   Further, in this embodiment, by directly irradiating the water purification filter with ultraviolet rays, the ultraviolet irradiation intensity can be suppressed lower than that of indirectly irradiating the water purification filters with ultraviolet rays, and the ultraviolet ray deterioration of the surrounding materials Can be prevented.

また、本実施の形態では、浄水用フィルタに直接紫外線を照射することにより、浄水用フィルタに間接的に紫外線を照射するものと比べて紫外線の照射時間を短縮化することとなり、消費電力量を低く抑えることができる。   Also, in this embodiment, by directly irradiating the water purification filter with ultraviolet rays, the ultraviolet irradiation time is shortened compared to the case where the water purification filters are indirectly irradiated with ultraviolet rays, and the power consumption is reduced. It can be kept low.

また、本実施の形態では、光源の運転を給水ポンプの運転に連動することにより、浄水用フィルタを水が流通する間、紫外線を浄水用フィルタに照射する間欠照射することとなり、浄水用フィルタ上に吸着する細菌やカビを効果的に不活化、分解するとともに不純物の分解も効果的におこなうこととができるとともに消費電力量を低く抑えることができる。   In the present embodiment, the operation of the light source is linked to the operation of the water supply pump, so that the water is circulated through the water purification filter while the water is circulated, and the ultraviolet light is irradiated to the water purification filter. It is possible to effectively inactivate and decompose bacteria and molds adsorbed on the substrate, and to effectively decompose impurities, and to reduce power consumption.

また、本実施の形態では、光源の運転を給水ポンプの運転時と運転終了後の一定時間運転することにより、浄水用フィルタを水の流通停止後所定時間の間、紫外線を浄水用フィルタに照射することとなり、光源停止時の浄水フィルタ表面の菌数増殖を低く抑え、浄水用フィルタの除菌性能を高く維持することができる。   Further, in this embodiment, the light source is operated for a certain period of time after the operation of the water supply pump and after the operation is completed, so that the water purification filter is irradiated with ultraviolet rays for a predetermined time after the water flow is stopped. Thus, the bacterial count growth on the surface of the water purification filter when the light source is stopped can be kept low, and the sterilization performance of the water purification filter can be maintained high.

また、本実施の形態では、光源の運転を給水ポンプの運転開始前の一定時間と給水ポンプ運転時に運転することにより、浄水用フィルタを水が流通する直前の一定時間、紫外線を浄水用フィルタに照射することとなり、浄水用フィルタの流通開始時の菌数は常に初期時の菌数まで除菌でき、浄水用フィルタの長寿命化を図ることができる。   Further, in the present embodiment, by operating the light source for a certain period of time before starting the operation of the water supply pump and during the operation of the water supply pump, ultraviolet light is supplied to the water purification filter for a certain period of time immediately before the water flows through the water purification filter. The number of bacteria at the start of distribution of the water purification filter can always be sterilized up to the initial number of bacteria, and the life of the water purification filter can be extended.

(実施の形態2)
図3は実施の形態2の冷蔵庫の正面図である。図4は実施の形態2の給水装置のa矢視図及び断面図である。図5は実施の形態2の給水装置の要部拡大図である。
(Embodiment 2)
FIG. 3 is a front view of the refrigerator according to the second embodiment. FIG. 4 is an a arrow view and a cross-sectional view of the water supply device of the second embodiment. FIG. 5 is an enlarged view of a main part of the water supply apparatus according to the second embodiment.

図3、図4および図5において、冷蔵庫本体51内が仕切壁52により、上部の冷蔵室53、中部の野菜室54と下部の冷凍室55とに区画され、前記冷蔵室53に配置された自動製氷機の給水装置56から給水管57を経て前記冷凍室55に配置された製氷容器58に給水をおこなうようにしてなり、前記給水装置56が上部に設けられた注水口59に通気口60を有する蓋体61を着脱可能に被着した給水タンク62と前記給水タンク62の底部に設けられ、中央に保持孔63を備えて、逆略凹状に形成された保持部64により上下動可能に保持されたロッド65と、前記ロッド65に装着してこれを下方に付勢する付勢ばね66と、前記保持部64の周囲に設けられた吐出口67と前記吐出口67の外側に立設された円筒状の弁座68とからなる弁座部69と、底面中央部に前記ロット65に上下動可能に連結される連結孔70を備え、下部を開放して有底略円筒状に形成され、且つその下端周縁部に前記ロッド65と連動することにより、前記弁座68と接離して前記吐出口67を開閉する開閉弁71を備えた弁体72と前記弁体72を前記ロッド65を介して駆動する駆動装置73とで構成されている。また、給水タンク62の下方に、水受け部74が配設され、前記水受け部74の内部には光触媒部材75と活性炭76からなる着脱可能な浄水用フィルタ77が配設されている。そして、光源78は紫外線を発光するLEDで、浄水用フィルタ77に照射可能な前記浄水用フィルタ77の近傍で前記冷蔵室53の壁面に備えられている。   3, 4, and 5, the inside of the refrigerator main body 51 is partitioned into an upper refrigerator compartment 53, a middle vegetable compartment 54, and a lower freezer compartment 55 by a partition wall 52, and is arranged in the refrigerator compartment 53. Water is supplied from the water supply device 56 of the automatic ice making machine to the ice making container 58 disposed in the freezing chamber 55 through the water supply pipe 57, and the water supply device 56 is provided with a vent 60 in a water inlet 59 provided at the upper part. A water supply tank 62 detachably attached to the lid body 61 having a cover and a bottom portion of the water supply tank 62 is provided, and a holding hole 63 is provided at the center, and can be moved up and down by a holding part 64 formed in a reverse substantially concave shape. A rod 65 that is held, a biasing spring 66 that is attached to the rod 65 and biases the rod 65 downward, a discharge port 67 provided around the holding portion 64, and an outside of the discharge port 67. Cylindrical valve seat 68 And a connecting hole 70 that is connected to the lot 65 in a vertically movable manner at the center of the bottom surface. By interlocking with the rod 65, a valve body 72 having an opening / closing valve 71 that opens and closes the discharge port 67 by contacting and separating from the valve seat 68, and a driving device 73 that drives the valve body 72 via the rod 65, It consists of A water receiving part 74 is disposed below the water supply tank 62, and a removable water purifying filter 77 made of a photocatalytic member 75 and activated carbon 76 is disposed inside the water receiving part 74. The light source 78 is an LED that emits ultraviolet light, and is provided on the wall surface of the refrigerating chamber 53 in the vicinity of the water purification filter 77 that can irradiate the water purification filter 77.

以上のように構成された給水装置について、以下その動作、作用を説明する。   About the water supply apparatus comprised as mentioned above, the operation | movement and an effect | action are demonstrated below.

まず、駆動装置73が駆動すると、付勢ばね66がロッド65に付勢して前記ロッド65を上方に可動し、開閉弁71を開き、吐出口67から給水タンク62中の水が給水され、前記給水タンク62の下方に配設する水受け部74と前記給水管57を経て、前記冷凍室55に配置された製氷容器58に給水され製氷される。   First, when the driving device 73 is driven, the urging spring 66 urges the rod 65 to move the rod 65 upward, opens the on-off valve 71, and water in the water supply tank 62 is supplied from the discharge port 67. Water is supplied to an ice making container 58 disposed in the freezing chamber 55 through the water receiving portion 74 disposed below the water supply tank 62 and the water supply pipe 57 to make ice.

一方、光源78は前記駆動装置73の運転は本発明の実施の形態1で示した制御と同じく前記駆動装置73の運転に連動して前記光源78を運転制御することで、同様の効果が得られる。   On the other hand, the light source 78 operates in the same manner as the operation of the driving device 73 in conjunction with the operation of the driving device 73 in the same manner as in the first embodiment of the present invention. It is done.

尚、清掃時には前記給水タンク62を取り出すだけで、前記浄水用フィルタ77を取りはずし、洗浄することができるようになっている。   The cleaning water filter 77 can be removed and cleaned simply by removing the water supply tank 62 during cleaning.

以上のように本実施の形態の給水装置は給水タンクに貯留した水を自由落下により製氷皿に給水する構成の製氷装置の給水装置において、給水装置の水受け部に光触媒部材を含む浄水用フィルタを配し、前記浄水用フィルタの近傍で前記浄水用フィルタに直に紫外線を照射する光源を配設することにより、浄水用フィルタに含まれる光触媒が活性化され、浄水用フィルタに給水中に吸着した細菌やカビを不活化、分解することとなり、給水の除菌性能を向上することができる。   As described above, in the water supply device of the ice making device configured to supply the water stored in the water supply tank to the ice tray by free-falling, the water purifier includes a photocatalyst member in the water receiving portion of the water supply device. The photocatalyst contained in the water purification filter is activated and is adsorbed by the water purification filter in the feed water by arranging a light source that directly irradiates the water purification filter with ultraviolet light in the vicinity of the water purification filter. The inactivated bacteria and molds are inactivated and decomposed, and the sterilization performance of the feed water can be improved.

また、本実施の形態の給水装置は浄水用フィルタを着脱可能にすることにより、浄水用フィルタを容易に取り外し、清掃することとなり、清掃時の使い勝手を向上した製氷装置の給水装置を提供することができる。   In addition, the water supply device of the present embodiment provides a water supply device for an ice making device with improved ease of use at the time of cleaning by easily removing and cleaning the water purification filter by making the water purification filter removable. Can do.

また、本実施の形態の給水装置は光源の運転制御を駆動装置の運転と連動して制御することにより、浄水用フィルタに間欠的に紫外線を照射し、光触媒で除菌することとなり、消費電力量を低く抑えることができる。   In addition, the water supply device of the present embodiment controls the operation of the light source in conjunction with the operation of the drive device, so that the water purification filter is irradiated with ultraviolet rays intermittently and sterilized by the photocatalyst, and the power consumption The amount can be kept low.

以上のように、本発明にかかる製氷装置の給水装置は、除菌性能と清掃時の使い勝手とを共に向上させることができるため、家庭用冷蔵庫、業務用冷蔵庫等の製氷装置等の用途にも適用できる。   As described above, since the water supply device of the ice making device according to the present invention can improve both the sterilization performance and the usability at the time of cleaning, it can also be used for ice making devices such as household refrigerators and commercial refrigerators. Applicable.

本発明の実施の形態1における製氷装置の給水装置の断面図Sectional drawing of the water supply apparatus of the ice making apparatus in Embodiment 1 of this invention 本発明の実施の形態1における光源の運転制御のタイムチャート図と浄水用フィルタの菌数変化を表す図The time chart figure of the operation control of the light source in Embodiment 1 of the present invention, and the figure showing the bacteria count change of the filter for water purification 本発明の実施の形態2における製氷装置の給水装置を備えた冷蔵庫の正面図The front view of the refrigerator provided with the water supply apparatus of the ice making apparatus in Embodiment 2 of this invention 本発明の実施の形態2における製氷装置の給水装置のa矢視図及び断面図The arrow a view and sectional drawing of the water supply apparatus of the ice making apparatus in Embodiment 2 of this invention 本発明の実施の形態2における製氷装置の給水装置の要部拡大図The principal part enlarged view of the water supply apparatus of the ice making apparatus in Embodiment 2 of this invention 従来の製氷装置の給水装置の全体構成の縦断面図Longitudinal sectional view of the overall structure of a water supply device of a conventional ice making device

符号の説明Explanation of symbols

31 給水パイプ
32 給水ポンプ
33 給水タンク(給水容器)
34 モータ
36 吐出口
37 排出口
40 水受け部
41 光触媒部材
43 浄水用フィルタ
45 光源
62 給水タンク(給水容器)
67 吐出口
71 開閉弁
74 水受け部
75 光触媒部材
77 浄水用フィルタ
31 Water supply pipe 32 Water supply pump 33 Water supply tank (water supply container)
34 Motor 36 Discharge port 37 Discharge port 40 Water receiving part 41 Photocatalyst member 43 Filter for water purification 45 Light source 62 Water supply tank (water supply container)
67 Discharge port 71 On-off valve 74 Water receiving part 75 Photocatalyst member 77 Filter for water purification

Claims (9)

給水容器と、前記給水容器内に備えられ前記給水容器外部に連通する吐出口と、前記吐出口は前記給水容器の下部に配設され、前記吐出口と連通し前記給水容器内の水の流出および封止を切り替える開閉弁とを有し、前記開閉弁は前記給水タンクの底部に設けられ、中央に保持孔を備え、前記保持孔に保持されたロッドと、前記ロッドに装着して下方に付勢する付勢ばねと、前記付勢ばねの下方に設けられた吐出口と、前記ロッドに上下動可能に連結される連結孔とを有し、前記付勢ばねが前記ロッドに付勢して前記ロッドを上方に可動して前記開閉弁を開き、前記吐出口から前記給水タンク中の水が給水され、前記開閉弁の下方に配設された水受け部へと供給されるものであり、前記水受け部には浄水用のフィルタが備えられており、前記フィルタは前記水受け部に対して着脱可能である給水装置。 A water supply container, a discharge port provided in the water supply container and communicating with the outside of the water supply container, and the discharge port disposed at a lower portion of the water supply container, and communicating with the discharge port and outflow of water in the water supply container And an opening / closing valve for switching the sealing, and the opening / closing valve is provided at the bottom of the water supply tank, has a holding hole in the center, is held in the holding hole, and is attached to the rod to the lower side. An urging spring for urging; a discharge port provided below the urging spring; and a connecting hole coupled to the rod so as to be movable up and down, wherein the urging spring urges the rod. The rod is moved upward to open the on-off valve, and water in the water supply tank is supplied from the discharge port and supplied to a water receiving portion disposed below the on-off valve. and the water receiving portion is provided with a filter for water purification, the Filter is detachable from the water receiving portion water supply apparatus. 前記フィルタの近傍に配設されると共に紫外線の照射が可能な光源を有し、前記フィルタは前記光源によって紫外線を直接照射される請求項1に記載の給水装置。   The water supply apparatus according to claim 1, further comprising a light source that is disposed in the vicinity of the filter and capable of irradiating with ultraviolet rays, and the filter is directly irradiated with ultraviolet rays by the light source. 前記フィルタは少なくとも光触媒部材を含んでいる請求項1または2に記載の給水装置。   The water supply apparatus according to claim 1 or 2, wherein the filter includes at least a photocatalytic member. 前記給水容器内に備えられた給水ポンプと、前記給水ポンプを備え前記吐出口と連通する第一給水経路と、前記水受け部に備えられた第二給水経路とを有し、前記フィルタは前記吐出口と前記第二給水経路の間に配設される請求項1から3のいずれか一項に記載の給水装置。   A water supply pump provided in the water supply container; a first water supply path provided with the water supply pump and communicating with the discharge port; and a second water supply path provided in the water receiving portion; The water supply apparatus as described in any one of Claim 1 to 3 arrange | positioned between a discharge outlet and said 2nd water supply path | route. 前記光源の運転制御を行う制御装置を備え、前記光源は前記給水ポンプの運転と連動して前記制御装置によって制御されるものである請求項2に記載の給水装置。   The water supply device according to claim 2, further comprising a control device that performs operation control of the light source, wherein the light source is controlled by the control device in conjunction with operation of the water supply pump. 前記光源の運転制御を行う制御装置を備え、前記光源は前記駆動装置の運転と連動して前記制御装置によって制御されるものである請求項2に記載の給水装置。   The water supply apparatus according to claim 2, further comprising a control device that performs operation control of the light source, wherein the light source is controlled by the control device in conjunction with operation of the drive device. 前記光源の運転制御を行う制御装置を備え、前記光源は給水中に運転されるよう前記制
御装置によって制御されるものである請求項2に記載の給水装置。
The water supply device according to claim 2, further comprising a control device that performs operation control of the light source, wherein the light source is controlled by the control device to be operated during water supply.
前記光源の運転制御を行う制御装置を備え、前記光源は給水完了後、一定時間を経過した後に停止されるよう前記制御装置によって制御されるものである請求項2に記載の給水装置。   The water supply device according to claim 2, further comprising a control device that performs operation control of the light source, wherein the light source is controlled by the control device to stop after a predetermined time has elapsed after completion of water supply. 前記光源の運転制御を行う運転制御装置を備え、前記光源は、給水開始以前、一定時間運転を行うよう、前記制御装置によって制御されるものである請求項2に記載の給水装置。   The water supply device according to claim 2, further comprising an operation control device that performs operation control of the light source, wherein the light source is controlled by the control device so as to be operated for a predetermined time before the start of water supply.
JP2004126630A 2004-04-22 2004-04-22 Water supply equipment Expired - Fee Related JP4367216B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2004126630A JP4367216B2 (en) 2004-04-22 2004-04-22 Water supply equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2004126630A JP4367216B2 (en) 2004-04-22 2004-04-22 Water supply equipment

Publications (2)

Publication Number Publication Date
JP2005308322A JP2005308322A (en) 2005-11-04
JP4367216B2 true JP4367216B2 (en) 2009-11-18

Family

ID=35437288

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2004126630A Expired - Fee Related JP4367216B2 (en) 2004-04-22 2004-04-22 Water supply equipment

Country Status (1)

Country Link
JP (1) JP4367216B2 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109945567B (en) * 2019-04-23 2024-06-07 丹顶鹤智能科技(江苏)有限公司 Novel ice maker

Also Published As

Publication number Publication date
JP2005308322A (en) 2005-11-04

Similar Documents

Publication Publication Date Title
KR101437373B1 (en) Water treatment apparatus using plasma for aquarium
JP2005506891A (en) Refrigerated purifier
US20070196244A1 (en) Air/water sterilization system for ice machine
US11382994B2 (en) Clean in place ice making system
KR101817595B1 (en) Ice making apparatus
JP4367216B2 (en) Water supply equipment
JP2023519785A (en) ice machine cleaning equipment
JP2002048445A (en) Refrigerator
JP2005274020A (en) Ice making machine
KR101765669B1 (en) Sterilizing Apparatus and Method of Inner Flow Path in Water Purifier
JPH06292483A (en) Apparatus for breeding aquarium fish
JP2708086B2 (en) Water purification equipment
JPH08281258A (en) Water purifying method and water purifier
JP2004073916A (en) Water sterilizing apparatus
RU212485U1 (en) DEVICE FOR AUTOMATIC SANITATION OF TANKS OF INSTALLATIONS FOR FILLING DRINKING WATER
KR100780816B1 (en) Sterilization case and water tank assembly
CN213273347U (en) Refrigerator with a door
JP5537057B2 (en) refrigerator
JP3937150B2 (en) Seawater filtration tank integrated sterilizer for shipping seafood
JP3105457U (en) Garbage decomposition equipment
JPH07195068A (en) Water purifying device
JP2004057844A (en) Beverage sterilizer
WO2019127435A1 (en) Filtering device
JP2024521154A (en) Drinking water dispenser with UV disinfection device
JP2005201534A (en) Refrigerator

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20070420

RD01 Notification of change of attorney

Free format text: JAPANESE INTERMEDIATE CODE: A7421

Effective date: 20070514

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20090317

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20090324

A521 Written amendment

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20090521

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20090804

A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20090817

R151 Written notification of patent or utility model registration

Ref document number: 4367216

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R151

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20120904

Year of fee payment: 3

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20130904

Year of fee payment: 4

LAPS Cancellation because of no payment of annual fees