CN210797009U - Water storage box assembly for clothes treatment equipment - Google Patents

Water storage box assembly for clothes treatment equipment Download PDF

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Publication number
CN210797009U
CN210797009U CN201921158730.9U CN201921158730U CN210797009U CN 210797009 U CN210797009 U CN 210797009U CN 201921158730 U CN201921158730 U CN 201921158730U CN 210797009 U CN210797009 U CN 210797009U
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China
Prior art keywords
water
box body
water storage
accommodating chamber
storage box
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CN201921158730.9U
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Chinese (zh)
Inventor
鞠斌
成荣锋
杨景利
刘庆伟
窦娜
孟庆川
李艳华
陈圣波
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Qingdao Haier Washing Machine Co Ltd
Haier Smart Home Co Ltd
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Qingdao Haier Washing Machine Co Ltd
Haier Smart Home Co Ltd
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Priority to CN201921158730.9U priority Critical patent/CN210797009U/en
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Publication of CN210797009U publication Critical patent/CN210797009U/en
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Abstract

The utility model relates to the technical field of household appliances, specifically provide a water storage box subassembly for clothing treatment facility, aim at solving current water storage box subassembly and carry the comdenstion water that contains impurity such as line bits to spraying the mechanism, lead to the atomizing to spray the problem that the mechanism blockked up. Mesh for this reason, the utility model discloses a clothing treatment facility includes the clothing processing barrel and is used for the mechanism that sprays to the interior shower water of clothing processing barrel, the utility model discloses a water storage box subassembly includes the box body and sets up the filter component in the box body, and the filter component is used for filtering the water that pours into the box body into, and the export of box body is through first pipeline and spray the mechanism and connect. The utility model discloses a set up the filter component in the box body and filter the water of pouring into the box body into, impurity such as line bits that the aquatic that will pour into the box body contains gets rid of, has avoided line bits to cause along with rivers go into to spray in the mechanism and has sprayed the mechanism and block up, has improved user's use and has experienced.

Description

Water storage box assembly for clothes treatment equipment
Technical Field
The utility model relates to the technical field of household appliances, specifically provide a water storage box subassembly for clothing treatment facility.
Background
With the progress of science and technology, the automation level of human life is higher and higher, and daily housework is gradually replaced by machines from manpower. The laundry treating apparatus mainly includes a washing apparatus, a drying apparatus and a washing and drying integrated apparatus, and is classified according to a drying manner, and the drying apparatus may be roughly classified into a condensing type dryer and a direct type dryer. The clothes dryer generally heats air and then conveys the air to the drying barrel, and the air is taken away after the air is subjected to heat exchange with the clothes shaken by rolling, so that the clothes are dried, in the process, the clothes can generate large wrinkles and can be worn after ironing or long-time airing, and the use experience of a user is greatly influenced.
In order to solve the problems, a spraying mechanism and a water storage box assembly for supplying water to the spraying mechanism are arranged on the clothes dryer so as to spray water mist into a drying barrel of the clothes dryer, and therefore the dried clothes are subjected to wrinkle removing treatment. Because the water of carrying in the water storage box subassembly is the comdenstion water of collecting from drying bucket or condenser condensation, the comdenstion water contains impurity such as line bits, if directly carry this comdenstion water to spraying the mechanism, will probably lead to spraying the mechanism and block up, brings the inconvenience for the user, has reduced user's use and has experienced.
Therefore, there is a need in the art for a new water storage box assembly for a laundry treating apparatus to solve the above-mentioned problems.
SUMMERY OF THE UTILITY MODEL
In order to solve the above-mentioned problem among the prior art, carry to spraying the mechanism for the comdenstion water that solves current water storage box subassembly for containing impurity such as line bits, lead to the atomizing to spray the problem that the mechanism blockked up, the utility model provides a water storage box subassembly for clothing treatment facility, this clothing treatment facility include the clothing processing barrel and be used for to the clothing processing barrel in spray the mechanism that sprays of shower water, this water storage box subassembly includes the box body and sets up the filter component in the box body, and the filter component is used for filtering the water that pours into the box body into, and the export of box body is through first pipeline and spray the mechanism and connect.
In the preferred technical scheme of the water storage box assembly, a partition rib is arranged in the box body, the partition rib divides the inner space of the box body into a first accommodating chamber and a second accommodating chamber, a filtering component is arranged in the first accommodating chamber and used for filtering water injected into the first accommodating chamber, and an outlet of the first accommodating chamber is connected with a spraying mechanism through a first conveying pipeline; when the water level in the first chamber that holds reaches and predetermines the water level threshold value, the water that flows into in the first chamber that holds overflows the partition muscle and flows into in the second chamber that holds.
In the preferable technical scheme of the water storage box assembly, the partition ribs are provided with overflow grooves, and when the water level in the first accommodating chamber reaches a preset water level threshold, water flowing into the first accommodating chamber overflows into the second accommodating chamber through the overflow grooves.
In the preferred technical scheme of above-mentioned water storage box subassembly, the filter component includes the mounting panel and sets up the filter screen on the mounting panel, is equipped with the brace rod that is used for supporting the mounting panel on the inner wall of first accommodation chamber.
In the preferred technical scheme of above-mentioned water storage box subassembly, be equipped with the handle on the mounting panel, the handle supplies the user to operate in order to install the filter member to the first chamber of holding and take out from the first chamber of holding.
In the preferable technical scheme of the water storage box assembly, the height of the supporting rib is higher than that of the bottom of the overflow groove, and the height of the supporting rib is lower than that of the top of the partition rib.
In the preferred technical scheme of above-mentioned water storage box subassembly, water storage box subassembly is still including setting up the drainage component in the box body, and the drainage component is used for water drainage to the filter component that pours into the box body into for the water that pours into after the filter component filters in the box body first holds the cavity.
In the preferred technical scheme of the water storage box assembly, a buffer groove is arranged on the side wall of the box body; the drainage component is including setting up the drainage tube at box body top and setting up in the box body and with the drainage groove of dashpot intercommunication each other, the drainage tube is used for the water drainage to the dashpot that flow in the drainage tube in, the drainage groove is used for the water drainage to the filter component that flows in the dashpot.
In the preferred technical scheme of above-mentioned water storage box subassembly, water storage box subassembly is still including setting up the water box in the second holds the cavity, and the drainage tube will flow into in the drainage tube partly water drainage to the dashpot, and the drainage tube will flow into in the drainage tube another partly water drainage to the water box.
In a preferred technical scheme of the water storage box assembly, the clothes treatment equipment further comprises a water storage mechanism; the outlet of the water storage mechanism is connected with the inlet of the drainage tube through a second conveying pipeline, and the inlet of the water storage mechanism is connected with the outlet of the second containing chamber through a third conveying pipeline.
It can be understood by those skilled in the art that in the preferred technical solution of the water storage box assembly of the present invention, the water storage box assembly includes a box body and a filtering component disposed in the box body, the outlet of the box body is connected with the spraying mechanism through a first conveying pipeline, and the filtering component is used for filtering water injected into the box body. Carry the comdenstion water that contains impurity such as line bits with current water storage box subassembly to the technical scheme who sprays the mechanism and compare, the utility model discloses a water storage box subassembly filters the water of pouring into the box body through the filter component that sets up in the box body to impurity such as line bits that the aquatic that will pour into the box body contains gets rid of, has avoided the line bits to cause along with rivers to spray in the mechanism and has sprayed the mechanism jam, has improved user's use and has experienced.
Further, water storage box subassembly is still including setting up the drainage component in the box body, drainage component will be from water drainage to the filter component of water storage mechanism transport to box body, make the water that pours into in the box body into just flow into in the first cavity that holds after filter component filters, when first water level that holds in the cavity reaches predetermined water level threshold value, flow into first water that holds in the cavity and overflow the partition muscle flow into the second and hold in the cavity and flow back to water storage mechanism through third pipeline in, thereby realized the loop filter of the water that flows into in the water storage box subassembly, can be with the filterable cleaner of impurity such as thread scraps that contain in the water, thoroughly, avoided the thread scraps to spray along with rivers and cause in spraying the mechanism to spray the mechanism and block up, further improved user's use experience.
Drawings
The water storage box assembly of the present invention will be described with reference to the accompanying drawings in conjunction with a clothes dryer. In the drawings:
fig. 1 is an exploded view of a water storage box assembly of the present invention;
fig. 2 is a schematic structural view of the drainage tube of the present invention.
Wherein, 1, a box body; 11. separating ribs; 111. an overflow trough; 112. a limiting block; 12. a first accommodation chamber; 121. supporting ribs; 13. a second accommodation chamber; 131. a first baffle; 132. a second baffle; 14. a buffer tank; 2. a filter member; 21. mounting a plate; 211. an installation port; 212. an opening; 213. a handle; 22. a filter screen; 3. a drainage member; 31. a drainage tube; 311. a first transverse tube section; 312. a second transverse tube section; 313. a first vertical connecting pipe section; 314. a second vertical connecting pipe section; 32. and (4) a drainage groove.
Detailed Description
Preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood by those skilled in the art that these embodiments are only for explaining the technical principle of the present invention, and are not intended to limit the scope of the present invention. For example, although the present application has been described in conjunction with a clothes dryer, the technical solution of the present invention is not limited thereto, and the water storage box assembly can be obviously applied to other clothes treating apparatuses such as a washing machine, a washing and drying machine, etc., without departing from the principle and scope of the present invention.
It should be noted that in the description of the present invention, the terms "inner", "top", "bottom", "right", etc. indicate directions or positional relationships based on those shown in the drawings, which are merely for convenience of description, and do not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
Furthermore, it should be noted that, in the description of the present invention, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
Based on the problem among the prior art mentioned in the background art, the utility model discloses a set up the filter component in the box body in order to filter the water of pouring into the box body into, impurity such as thread scraps that the aquatic that will pour into in the box body contains gets rid of, has avoided the thread scraps to cause along with rivers to spray in the mechanism and has sprayed the mechanism and block up, has improved user's use and has experienced.
Referring to fig. 1 and 2, fig. 1 is an exploded view of a water storage box assembly of the present invention; fig. 2 is a schematic structural view of the drainage tube of the present invention. The clothes dryer comprises a drying barrel, a spraying mechanism for spraying water into the drying barrel and a water storage box assembly for supplying water to the spraying mechanism. As shown in fig. 1, the utility model discloses a water storage box subassembly includes box body 1 and sets up filtering component 2 in box body 1, and filtering component 2 is used for filtering the water that pours into in the box body 1 into, and the export of box body 1 is through first pipeline with spray the mechanism and connect, that is to say, just can flow into after filtering through filtering component 2 and spray the mechanism in pouring into the water in the box body 1, has avoided spraying the mechanism jam.
Preferably, the spraying mechanism can be an atomizing spraying mechanism which sprays water into the drying barrel in a water mist mode, of course, the spraying mechanism can also be a water spraying mechanism and other spraying mechanisms, and no matter what spraying mechanism is adopted, the spraying mechanism only needs to spray water into the drying barrel.
In a preferred embodiment, as shown in fig. 1, a separating rib 11 is arranged in the box body 1, the separating rib 11 divides the inner space of the box body 1 into a first accommodating chamber 12 and a second accommodating chamber 13, the filtering member 2 is arranged in the first accommodating chamber 12 and is used for filtering water injected into the first accommodating chamber 12, an outlet of the first accommodating chamber 12 is connected with the spraying mechanism through a first conveying pipeline, water flowing into the first accommodating chamber 12 after being filtered by the filtering member 2 is conveyed to the spraying mechanism, the impurity content of the water conveyed to the spraying mechanism is reduced, and the blockage of the spraying mechanism is avoided. In order to prevent the water in the first receiving chamber 12 from overflowing to the outside of the dryer, when the water level in the first receiving chamber 12 reaches the preset water level threshold value, the water flowing into the first receiving chamber 12 can flow into the second receiving chamber 13 over the partition rib 11, thereby preventing the water in the first receiving chamber 12 from overflowing to the outside of the dryer.
Preferably, the partition rib 11 is provided with an overflow groove 111, the overflow groove 111 is respectively communicated with the first accommodating chamber 12 and the second accommodating chamber 13, and when the water level in the first accommodating chamber 12 reaches a preset water level threshold, the water flowing into the first accommodating chamber 12 overflows into the second accommodating chamber 13 through the overflow groove 111.
Further, the partition rib 11 is provided in a direction perpendicular to the length of the case 1 or in a direction parallel to the width of the case 1, dividing the inner space of the case 1 into the first accommodation chamber 12 and the second accommodation chamber 13 in the length direction of the case 1.
Further, the extending direction of the overflow groove 111 is parallel to the length of the box body 1 or perpendicular to the width of the box body 1, so that the extending direction of the overflow groove 111 is parallel to the direction from the first accommodating chamber 12 to the second accommodating chamber 13, which facilitates the water in the first accommodating chamber 12 to overflow into the second accommodating chamber 13 through the overflow groove 111.
Preferably, the volume of the first containing chamber 12 is smaller than the volume of the second containing chamber 13, on the one hand defining the volume of the first containing chamber 12, so that the volume of the first containing chamber 12 can meet the water volume requirement of the spraying mechanism; on the other hand, the second receiving chamber 13 can receive a large amount of water therein, and the water in the first receiving chamber 12 is prevented from overflowing to the outside of the dryer.
Preferably, the first accommodating chamber 12 has an inverted L-shaped structure, but the first accommodating chamber 12 may have other structures such as a rectangular structure, a circular structure, and a polygonal structure.
Preferably, the bottom of the second accommodating chamber 13 is provided with a first guide plate 131 and a second guide plate 132, a first end of the first guide plate 131 is connected with the side wall of the second accommodating chamber 13, a second end of the first guide plate 131 is inclined downwards in the direction away from the partition rib 11, a first end of the second guide plate 132 is connected with a second end of the first guide plate 131, a second end of the second guide plate 132 is inclined downwards in the direction away from the partition rib 11 and is connected with the right side wall (the side wall on the right side of the paper in fig. 1) of the second accommodating chamber 13, the inclination angle of the first guide plate 131 is larger than that of the second guide plate 132, water overflowing from the first accommodating chamber 12 can be quickly guided to the second guide plate 132 by the first guide plate 131, water can be guided to the outlet of the second accommodating chamber 13 at a relatively slow speed by the second guide plate 132, water is prevented from remaining in the second receiving chamber 13 and growing bacteria.
It should be further noted that, in the above structure, the preset water level threshold may be a lowest water level (for example, a water level corresponding to a water amount of 50 ml) capable of meeting a water amount requirement of the spraying mechanism, or an experimental water level obtained by a person skilled in the art according to experiments under a specific working condition, or an empirical water level obtained by an experience, and a person skilled in the art may flexibly adjust and set the preset water level threshold according to an actual water amount requirement of the spraying mechanism.
In a preferred embodiment, as shown in fig. 1, the filter member 2 includes a mounting plate 21 and a filter screen 22 disposed on the mounting plate 21, a support rib 121 for supporting the mounting plate 21 is disposed on an inner wall of the first accommodating chamber 12, and the mounting plate 21 is mounted in the first accommodating chamber 12 through the support rib 121.
Preferably, the mounting plate 21 is provided with a mounting opening 211, and the filter screen 22 is detachably mounted in the mounting opening 211, so that the filter screen 22 can be conveniently mounted and dismounted, and the filter screen 22 can be conveniently replaced.
Preferably, an opening 212 facing the overflow groove 111 is formed at one end of the mounting plate 21 close to the partition rib 11, so that the mounting plate 21 prevents water overflowing from the first accommodating chamber 12 from being blocked, and the water in the first accommodating chamber 12 can smoothly overflow into the second accommodating chamber 13.
In order to facilitate the mounting and dismounting of the mounting plate 21, a handle 213 is provided on the mounting plate 21, the handle 213 being operated by a user to mount the filter member 2 into and remove it from the first accommodation chamber 12. The handle 213 may be a semi-circular arc, a protrusion, a groove, or a through hole disposed on the mounting plate 21.
Preferably, the support rib 121 includes a plurality of support portions, for example, two, three, four, five or six support portions, disposed around the circumference of the first receiving chamber 12, and the number and installation position of the support portions may be flexibly adjusted and set by those skilled in the art. The heights of the support parts are consistent, and the mounting plate 21 is stably mounted in the first accommodating chamber 12 under the combined action of the support parts without shaking. Of course, the heights of the supporting portions may not be uniform, for example, the heights of the supporting portions gradually decrease from one end close to the partition rib 11 to one end away from the partition rib 11, so that one end of the mounting plate 21 mounted on the supporting portions close to the partition rib 11 is located above the bottom of the overflow groove 111, and the mounting plate 21 is further prevented from blocking the water overflowing from the first accommodating chamber 12, so that the water in the first accommodating chamber 12 can smoothly overflow into the second accommodating chamber 13.
Further, the side wall of the partition rib 11 facing the first accommodation chamber 12 may not be provided with a support portion, which avoids blocking the flow of the water in the first accommodation chamber 12 to the overflow groove 111, so that the water in the first accommodation chamber 12 can smoothly overflow into the second accommodation chamber 13. Of course, a support portion may be disposed on the side wall of the partition rib 11 facing the first accommodating chamber 12, and the support portion is located on both sides of the overflow groove 111, so as to avoid shielding the overflow groove 111, and enable water in the first accommodating chamber 12 to overflow into the second accommodating chamber 13 smoothly.
Preferably, the height of the support portion is lower than the height of the top of the partition rib 11, so that the partition rib 11 and the inner wall of the first accommodating chamber 12 form a surrounding fixation to the mounting plate 21, and the mounting plate 21 is prevented from horizontal displacement.
Further, the height of the support portion is higher than the height of the bottom of the overflow groove 111, so that when the water level in the first accommodation chamber 12 reaches a level flush with the bottom of the overflow groove 111, the water in the first accommodation chamber 12 can smoothly overflow into the second accommodation chamber 13.
Preferably, a limit block 112 is disposed on a side wall of the partition rib 11 facing the first accommodating chamber 12, and the limit block 112 is used for limiting the longitudinal displacement of the mounting plate 21.
In a preferred embodiment, as shown in fig. 1, the water storage box assembly further includes a drainage member 3 disposed in the box body 1, the drainage member 3 is used for draining the water injected into the box body 1 to the filtering member 2, so that the water injected into the box body 1 flows into the first accommodating chamber 12 after being filtered by the filtering member 2, the water injected into the box body 1 is prevented from flowing into the first accommodating chamber 12 without being filtered, the water is prevented from being conveyed to the spraying mechanism without being filtered, and the spraying mechanism is prevented from being blocked.
Preferably, a buffer groove 14 is arranged on the side wall of the box body 1; the drainage member 3 comprises a drainage tube 31 arranged at the top of the box body 1 and a drainage groove 32 arranged in the box body 1 and communicated with the buffer groove 14, a first outlet of the drainage tube 31 is communicated with the buffer groove 14, the drainage tube 31 drains water flowing into the drainage tube 31 into the buffer groove 14 through the first outlet of the drainage tube 31, the water flowing into the buffer groove 14 is drained to the filtering member 2 through the drainage groove 32 communicated with the buffer groove 14, so that the water injected into the cartridge body 1 flows into the first receiving chamber 12 after being filtered by the filtering member 2, when the water level in the first receiving chamber 12 reaches the preset water level threshold, the water flowing into the first receiving chamber 12 flows into the second receiving chamber 13 through the overflow groove 111, not only is the water injected into the cartridge 1 prevented from flowing into the first receiving chamber 12 without being filtered, but also the water in the first receiving chamber 12 is prevented from overflowing to the outside of the dryer.
Preferably, the water storage box assembly further includes a water box (not shown in the drawings) disposed in the second receiving chamber 13, the first outlet of the draft tube 31 is communicated with the buffer tank 14, and the second outlet of the draft tube 31 is communicated with the water box, so that a part of water flowing into the draft tube 31 flows into the buffer tank 14 through the first outlet, and another part of water flowing into the draft tube 31 flows into the water box through the second outlet, thereby preventing a large amount of water from flowing into the first receiving chamber 12, and thus preventing the water in the first receiving chamber 12 from overflowing to the outside of the dryer.
Further, the water box and the second accommodating chamber 13 are detachably connected, for example, connected in a hanging manner, a clamping manner, a sliding manner and the like, when the water in the water box reaches the warning water level, the water box is taken out and the water in the water box is poured, so that the water in the water box is prevented from overflowing to the outside of the clothes dryer.
Preferably, as shown in fig. 2, the draft tube 31 includes a first horizontal tube section 311, a second horizontal tube section 312, a first vertical connection tube section 313 and a second vertical connection tube section 314, the first horizontal tube section 311 is connected by the first ends of the first and second horizontal tube sections 313 and 312, the second end of the second horizontal tube section 312 is connected by the second vertical connection tube section 314 and the water source, the height of the first horizontal tube section 311 is higher than that of the second horizontal tube section 312, the bottom of the first horizontal tube section 311 is provided with a second outlet communicated with the water tank, the bottom of the second horizontal tube section 312 is provided with a first outlet communicated with the buffer tank 14, a portion of water flowing into the draft tube 31 flows into the buffer tank 14 through the first outlet of the second horizontal tube section 312, another portion of water flowing into the draft tube 31 flows to the first vertical connection tube section 313, when the water level in the first vertical connection tube section 313 rises to a level flush with the bottom of the first horizontal tube section 311, another portion of the water flows into the first transverse pipe section 311 and into the water box through the second outlet provided at the bottom of the first transverse pipe section 311, preventing a large amount of water from flowing into the first receiving chamber 12, thereby preventing the water in the first receiving chamber 12 from overflowing to the outside of the dryer.
Further, second vertical coupling pipe section 314 can slope setting also can vertical setting, and pump field technical personnel can adjust and set up in a flexible way, as long as be convenient for second vertical coupling pipe section 314 and water source connect can.
Alternatively, the drain tube 31 includes a first tube section and a second tube section (not shown in the drawings), which meet each other before being connected to the outlet of the water source and thus form a three-way pipe, the bottom of the first tube section is provided with a first outlet communicating with the buffer tank 14, and the bottom of the second tube section is provided with a second outlet communicating with the water box, so that a part of the water flowing into the drain tube 31 flows into the buffer tank 14 through the first outlet of the first tube section, and another part of the water flowing into the drain tube 31 flows into the water box through the second outlet of the second tube section, thereby preventing a large amount of water from flowing into the first accommodating chamber 12 and thus preventing the water in the first accommodating chamber 12 from overflowing to the outside of the dryer.
It should be further noted that the structure of the drainage tube 31 is not limited to the above-mentioned structure, and other structures may be adopted, for example, the drainage tube 31 includes a first tube section and a second tube section, the first tube section is connected with the first outlet of the water source, and the second tube is connected with the second outlet of the water source, and whatever structure is adopted, as long as one part of the water flowing into the drainage tube 31 is guided into the buffer tank 14, and the other part of the water flowing into the drainage tube 31 is guided into the water box.
In the above structure, the water source may be a water storage mechanism (not shown) of the dryer. The water storage mechanism is arranged in a base of the clothes dryer and used for collecting condensed water of the clothes dryer, an outlet of the water storage mechanism is connected with an inlet of the drainage tube 31 through a second conveying pipeline, an inlet of the water storage mechanism is connected with an outlet of the second containing chamber 13 through a third conveying pipeline, the water storage mechanism conveys water to the drainage tube 31 through the second conveying pipeline, one part of water flowing into the drainage tube 31 flows into the buffer tank 14 through the first outlet, the other part of water flowing into the drainage tube 31 flows into the water box through the second outlet, the water flowing into the buffer tank 14 is drained to the filtering member 2 through the drainage groove 32 communicated with the buffer tank 14 for filtering and flows into the first containing chamber 12 after filtering, when the water level in the first containing chamber 12 reaches a preset water level threshold value, the water flowing into the first containing chamber 12 flows into the second containing chamber 13 through the overflow groove 111 and flows back into the water storage mechanism through the third conveying pipeline, not only avoided the first water overflow that holds in the cavity 12 to the outside of dryer, still realized the loop filter that flows into the water in the water storage box subassembly, can be with impurity filterable cleaner, thorough such as the line bits that contain in the water, avoided the line bits to cause along with rivers to spray in the mechanism and spray the mechanism and block up, further improved user's use and experienced.
Of course, the installation position of the water storage mechanism is not limited to the above-mentioned position, and the water storage mechanism may be installed at other positions, for example, above the base, and the installation position of the water storage mechanism may be flexibly adjusted and installed by those skilled in the art. In addition, the water source can be an external water source, and any water source is adopted, so long as the water can be supplied to the water storage box component.
Preferably, the clothes dryer further comprises a water pump, an outlet end of the water storage mechanism is connected with an inlet end of the second conveying pipeline through the water pump, and water in the water storage mechanism can be conveyed to the drainage tube 31 through the second conveying pipeline under the action of the water pump. Of course, the conveying mechanism is not limited to the water pump described above, and may be a circulating pump, a centrifugal pump, or the like, and any conveying mechanism may be adopted as long as the water in the water storage mechanism can be conveyed to the drain tube 31 through the second conveying pipeline.
In a preferred embodiment, the clothes dryer further includes a control valve (not shown) disposed on the first conveying line, and when spraying water into the drying tub is required, the control valve is opened to communicate the first accommodating chamber 12 with the spraying mechanism so as to supply water to the spraying mechanism, so that the spraying mechanism can spray water into the drying tub; when the water does not need to be sprayed into the drying barrel, the control valve is closed, so that the first accommodating chamber 12 is not communicated with the spraying mechanism, and the water cannot be supplied to the spraying mechanism.
Preferably, the control valve may be an electric valve, a manual valve, or other control valves.
So far, the technical solution of the present invention has been described with reference to the preferred embodiments shown in the drawings, but it is easily understood by those skilled in the art that the scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, a person skilled in the art can make equivalent changes or substitutions to the related technical features, and the technical solutions after these changes or substitutions will fall within the protection scope of the present invention.

Claims (10)

1. A water storage box assembly for a clothes treating apparatus, the clothes treating apparatus including a clothes treating tub and a spray mechanism for spraying water into the clothes treating tub,
the water storage box assembly is characterized by comprising a box body and a filtering component arranged in the box body, wherein the filtering component is used for filtering water injected into the box body, and an outlet of the box body is connected with the spraying mechanism through a first conveying pipeline.
2. A water storage box assembly according to claim 1, wherein a partition rib is arranged in the box body, the partition rib divides the inner space of the box body into a first accommodating chamber and a second accommodating chamber, the filtering member is arranged in the first accommodating chamber and is used for filtering water injected into the first accommodating chamber, and an outlet of the first accommodating chamber is connected with the spraying mechanism through the first conveying pipeline;
when the water level in the first accommodating chamber reaches a preset water level threshold value, water flowing into the first accommodating chamber overflows the partition ribs and flows into the second accommodating chamber.
3. The water storage box assembly according to claim 2, wherein the partition rib is provided with an overflow groove, and when the water level in the first accommodating chamber reaches a preset water level threshold value, the water flowing into the first accommodating chamber overflows into the second accommodating chamber through the overflow groove.
4. The water storage box assembly of claim 3, wherein the filter member comprises a mounting plate and a filter screen arranged on the mounting plate, and support ribs for supporting the mounting plate are arranged on an inner wall of the first accommodating chamber.
5. The water storage box assembly of claim 4, wherein a handle is provided on the mounting plate for user manipulation to install and remove the filter member into and from the first receiving chamber.
6. The water storage box assembly of claim 4, wherein the height of the support ribs is higher than the height of the bottom of the overflow trough, and the height of the support ribs is lower than the height of the top of the partition ribs.
7. The water storage box assembly according to any one of claims 2 to 6, further comprising a drainage member disposed within the box body, the drainage member being configured to drain water injected into the box body to the filtering member, such that the water injected into the box body flows into the first accommodating chamber after being filtered by the filtering member.
8. The water storage box assembly of claim 7, wherein a buffer groove is formed in a side wall of the box body;
the drainage component is including setting up the drainage tube at box body top and setting are in the box body and with the drainage groove of dashpot intercommunication each other, the drainage tube is used for with the inflow water drainage in the drainage tube extremely in the dashpot, the drainage groove is used for with the inflow water drainage in the dashpot extremely the filtering component.
9. The water storage box assembly of claim 8, further comprising a water box disposed within the second receiving chamber, wherein the drainage tube drains a portion of water flowing into the drainage tube into the buffer tank, and wherein the drainage tube drains another portion of water flowing into the drainage tube into the water box.
10. The water storage box assembly of claim 8, wherein the laundry treating apparatus further comprises a water storage mechanism, an outlet of the water storage mechanism is connected with an inlet of the drainage tube through a second conveying pipeline, and an inlet of the water storage mechanism is connected with an outlet of the second accommodating chamber through a third conveying pipeline.
CN201921158730.9U 2019-07-23 2019-07-23 Water storage box assembly for clothes treatment equipment Active CN210797009U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921158730.9U CN210797009U (en) 2019-07-23 2019-07-23 Water storage box assembly for clothes treatment equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921158730.9U CN210797009U (en) 2019-07-23 2019-07-23 Water storage box assembly for clothes treatment equipment

Publications (1)

Publication Number Publication Date
CN210797009U true CN210797009U (en) 2020-06-19

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CN201921158730.9U Active CN210797009U (en) 2019-07-23 2019-07-23 Water storage box assembly for clothes treatment equipment

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