WO2019101109A1 - 水槽式洗碗机 - Google Patents
水槽式洗碗机 Download PDFInfo
- Publication number
- WO2019101109A1 WO2019101109A1 PCT/CN2018/116754 CN2018116754W WO2019101109A1 WO 2019101109 A1 WO2019101109 A1 WO 2019101109A1 CN 2018116754 W CN2018116754 W CN 2018116754W WO 2019101109 A1 WO2019101109 A1 WO 2019101109A1
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- WO
- WIPO (PCT)
- Prior art keywords
- water
- chamber
- water inlet
- reclaimed
- soft
- 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.)
- Ceased
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L15/00—Washing or rinsing machines for crockery or tableware
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L15/00—Washing or rinsing machines for crockery or tableware
- A47L15/42—Details
Definitions
- the present invention relates to the field of dishwasher technology, and more particularly to a sink dishwasher.
- the water softener regeneration passage is connected with a water pipe, and the pipeline connection is complicated and the cost is high.
- the present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention proposes a sink type dishwasher in which the connection cost of the reclaimed water passage is low.
- a sink type dishwasher includes: a respirator having a water storage chamber in a housing of the respirator, the water storage chamber having a reclaimed water passage; and a water softener including a body and regeneration a control member, the body is provided with a soft water chamber and a softening regeneration chamber which are connected to each other, and the regeneration control member is configured to control communication and disconnection between the soft water chamber and the softening regeneration chamber, wherein the body is on the body A soft water inlet and a soft water outlet respectively connected to both sides of the soft water chamber are formed, and the body is further formed with a reclaimed water inlet connected to the softening regeneration chamber, and the reclaimed water inlet is connected to the reclaimed water passage.
- the regenerative water passage of the water softener is filled by the respirator, and the pipeline connection cost is low.
- the soft water chamber and the softening regeneration chamber are horizontally arranged side by side, the soft water inlet and the reclaimed water inlet being juxtaposed above the soft water chamber, the soft water outlet being located at an upper portion of the body.
- the body is provided with a reclaimed water inlet, the reclaimed water inlet including a vertical section, a surrounding section and an access section, the vertical section being located outside the soft water chamber and extending vertically
- the top of the vertical section is the reclaimed water inlet
- the surrounding section extends from a bottom end of the vertical section along a peripheral wall of the soft water chamber toward a direction away from the soft water inlet, the access section and the surrounding
- the segments are connected and communicate with the softening regeneration chamber.
- the bottom wall of the access section is flush with the bottom wall of the softening regeneration chamber, the top of the access section is partitioned from the softening regeneration chamber, the orientation of the access section is A plurality of water passage holes are provided in the side wall of the softening regeneration chamber, and the inlet portion passes water in a horizontal direction toward the bottom of the softening regeneration chamber.
- the body is provided with a reclaimed water exit
- the reclaimed water exit is vertically disposed between the soft water chamber and the softening regeneration chamber, and a top end of the reclaimed water outlet is connected to the softening regeneration chamber
- the bottom end of the reclaimed water outlet is in communication with the soft water chamber
- the regeneration control member is a control valve, and at least a portion of the spool of the control valve blocks the regeneration water exit.
- the body is located on an outer side of the soft water chamber with a water inlet passage, and the soft water inlet communicates with the bottom of the soft water chamber through the water inlet passage.
- the water inlet passage includes: an arc segment extending along a circumferential wall of the soft water chamber toward a direction away from the reclaimed water inlet, and a vertical segment from the vertical section An end of the curved section extends vertically downward, the vertical section being located between the soft water chamber and the softening regeneration chamber, a bottom end of the vertical section communicating with the soft water chamber, the reclaimed water exiting A bottom end is coupled to the vertical section, and the regeneration control member is for controlling communication or disconnection between the reclaimed water outflow and the vertical section.
- the bottom end of the reclaimed water outlet is provided with an opening and closing port that communicates with the vertical section, and a bottom wall of the reclaimed water outlet is provided with a groove corresponding to the opening and closing opening.
- the side wall between the reclaimed water outlet and the water inlet passage is provided with an on-off pipe, the nozzle of the on-off pipe constitutes the through-break, and the valve core of the control valve
- the through-tube is matched; a fixed tube is disposed on the side wall between the reclaimed water outlet and the water inlet passage, and the fixed tube is disposed around the channel tube, and the tube wall of the channel tube is provided with a gap to communicate Describe the water channel.
- a housing of the respirator is provided with a water inlet chamber, the inlet chamber including an inlet passage and a return passage, the return passage including a main circuit and a storage chamber
- the inlet chamber including an inlet passage and a return passage
- the return passage including a main circuit and a storage chamber
- One end of the water inlet channel is provided with a water inlet, and the other end of the water inlet channel communicates with the water storage chamber, the main circuit has a main waterway, and the water overflows when the water in the water storage chamber is full Flows toward the main waterway.
- FIG. 1 is a perspective view showing the overall structure of a washing tank body, a respirator and a water softener of a sink type dishwasher according to an embodiment of the present invention.
- Fig. 2 is a perspective view showing the overall structure of a washing tank body and a water softener of a sink type dishwasher according to an embodiment of the present invention.
- Fig. 3 is a cross-sectional view showing a part of a washing tank body and a water softener of a sink type dishwasher according to an embodiment of the present invention.
- Fig. 4 is a perspective view showing the overall structure of a water softener according to an embodiment of the present invention.
- Figure 5 is an exploded perspective view of a water softener according to an embodiment of the present invention.
- Figure 6 is a cross-sectional view showing a direction of a water softener according to an embodiment of the present invention.
- Figure 7 is a cross-sectional view showing the other direction of the water softener of the embodiment of the present invention.
- Figure 8 is a partial cross-sectional view showing a water softener according to an embodiment of the present invention.
- Figure 9 is a cross-sectional view showing still another direction of the water softener of the embodiment of the present invention.
- Figure 10 is a cross-sectional view showing still another direction of the water softener of the embodiment of the present invention.
- Figure 11 is an exploded perspective view of the washing tub body and the respirator of the sink type dishwasher of the embodiment of the present invention.
- Figure 12 is a cross-sectional view of a respirator in accordance with an embodiment of the present invention.
- Fig. 13 is a schematic view showing the flow of water in a soft water process of a respirator and a water softener according to an embodiment of the present invention.
- Fig. 14 is a schematic view showing the flow of water in the process of regenerating water of a respirator and a water softener according to an embodiment of the present invention.
- Respirator 100 case 101; cover body 102;
- Drainage channel 1 sewage inlet 11; sewage outlet 12; drainage vent 13; check valve 14;
- Inlet water chamber 2 water inlet 21; water outlet 22; main waterway 221; reclaimed water junction 222; inlet vent 24;
- Inlet channel 25 rising channel segment 251; bending channel segment 252; rotating channel segment 253; flow meter 254;
- Air chamber 3 breathing port 31; condensation plate 311; communication port 32;
- a first guiding section 301 a first guiding section 301; a second guiding section 302; an arc-shaped rib 303; a connecting rib 304; a condensation groove 305; a third guiding section 306; a fourth guiding section 307; a condensation baffle 309;
- a soft water chamber 420 a water passage 421, a water discharge buffer chamber 422, a water discharge buffer plate 423, an upper convex portion 424, a water inlet buffer chamber 425, a water inlet buffer plate 426, a lower convex portion 427,
- Reclaimed water inlet 440 Reclaimed water inlet 440, vertical section 441, surrounding section 442, access section 443, main branch 4431, branch 4432, water passage 444, second straight section 4441, second cone section 4442
- Reclaimed water outlet 450 water filter hole 451, first straight hole section 4511, first cone section 4512, through hole 452, groove 453, channel tube 454, fixed tube 455, notch 4551
- Regeneration control member 470 valve body 471, valve body 472, valve seal 473,
- Salt-deficient detecting device 480 float 481, magnetic member 482, detecting circuit board 483, reed switch 484, first patch 4841, second patch 4842
- washing tank body 600 a washing tank body 600, a water tank vent 602, a mounting port 603,
- connection In the description of the present invention, it should be noted that the terms “installation”, “connected”, and “connected” are to be understood broadly, and may be fixed or detachable, for example, unless otherwise explicitly defined and defined. Connected, or integrally connected; can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
- Connected, or integrally connected can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
- the specific meaning of the above terms in the present invention can be understood in a specific case by those skilled in the art.
- the sink type dishwasher 1000 includes a washing tank body 600, a respirator 100 and a water softener 400.
- the washing tank body 600 is provided with a washing space with an open top, and the utensil to be cleaned. Place it in the washing space for cleaning.
- the water softener 400 includes a body 410 and a regeneration control member 470.
- the body 410 is provided with a soft water chamber 420 and a softening regeneration chamber 430.
- the regeneration control member 470 is used to control the soft water chamber 420 and soften.
- the main body 410 is formed with a soft water inlet 411 and a soft water outlet 412 respectively communicating with the two sides of the soft water chamber 420.
- the body 410 is further formed with a reclaimed water inlet 413 and a salting port connected to the softening regeneration chamber 430.
- the soft water inlet 411 and the reclaimed water inlet 413 are used to pass water
- the soft water outlet 412 is in communication with the washing tank 600
- the salting port 414 is used to add the regenerated salt to the softening regeneration chamber 430.
- the flow direction of the water in the water softener 400 has two routes: one route, water can flow from the soft water inlet 411 into the soft water chamber 420, soften in the soft water chamber 420, and the softened water is discharged from the soft water outlet 412; the other route is water.
- the softening regeneration chamber 430 can be flowed from the reclaimed water inlet 413, and the salt is formed in the softening regeneration chamber 430 to form brine, and the brine flows into the soft water chamber 420, and finally the brine is discharged from the soft water outlet 412.
- the salt in the softening regeneration chamber 430 is consumed to a certain extent, the regenerated salt is replenished from the salt addition port 414.
- the soft water chamber 420 may be filled with a resin or other soft water capable of absorbing Cl, Ca, Mg plasma, and the softening regeneration chamber 430 may be filled with a regenerated salt.
- a regenerated salt preferably an edible salt (mainly containing NaCl).
- the regenerated salt may also be other substances capable of washing off Cl, Ca, Mg plasma on the soft water, and is not limited herein.
- the tap water enters the soft water chamber 420 through the soft water inlet 411, and the soft water in the soft water chamber 420 absorbs Cl, Ca, Mg plasma in the water, and the absorbed soft water flows into the washing tank from the soft water outlet 412.
- the body 600 that is, the soft water in the soft water chamber 420 functions to remove Cl, Ca, Mg ions in the tap water.
- the tap water enters the softening regeneration chamber 430 through the reclaimed water inlet 413 of the water softener 400 to form brine.
- the regeneration control member 470 can be controlled to open, the soft water chamber 420 is communicated with the softening regeneration chamber 430, and the regeneration chamber 430 is softened.
- the internal brine enters the soft water chamber 420, and the brine flows into the soft water chamber 420 for reduction treatment to restore the softening ability of the resin, and the reduced treated brine is discharged from the soft water outlet 412.
- the regeneration control member 470 is closed to cut off between the soft water chamber 420 and the softening regeneration chamber 430, and the soft water chamber 420 is capable of soft water operation.
- the soft water inlet 411 and the reclaimed water inlet 413 are the same inlet, and the water softener 400 is provided with a three-way valve at the soft water inlet 411 to control the flow of the incoming water toward one of the soft water chamber 420 and the softening regeneration chamber 430.
- the soft water inlet 411 and the reclaimed water inlet 413 are two separate inlets on the water softener 400, which saves the three-way valve, which is advantageous for reducing cost and simplifying the structure.
- the water softener 400 has only one control member of the regeneration control member 470, and the overall control is very simple. In the following description, the soft water inlet 411 and the reclaimed water inlet 413 are respectively described as two separate inlets on the water softener 400.
- the soft water chamber 420 and the softening regeneration chamber 430 are horizontally arranged side by side, the soft water inlet 411 and the reclaimed water inlet 413 are arranged side by side above the soft water chamber 420, and the soft water outlet 412 is located at the upper portion of the body 410.
- the structure is more reasonable than that of the soft water chamber 420 and the softening regeneration chamber 430.
- the soft water chamber 420 and the softening regeneration chamber 430 are distributed up and down, when the soft water chamber 420 is located above the softening regeneration chamber 430, when the regeneration control member 470 is opened, the brine in the softening regeneration chamber 430 automatically flows into the soft water chamber 420 to consume resistance. Large; when the softening regeneration chamber 430 is located above the soft water chamber 420, when the water is softened, the water flow needs to flow through the route for too long and takes too long.
- the soft water chamber 420 is formed as a cylindrical cavity extending in the up and down direction, and the softening regeneration chamber 430 is generally formed into an elongated cavity having an upper width and a lower width.
- the softening treatment chamber and the reduction treatment process can be disposed in the soft water chamber 420 and the softening regeneration chamber 430, respectively, by providing the soft water chamber 420 and the softening regeneration chamber 430 which are in communication with each other in the inner cavity of the water softener 400. It is carried out to ensure the normal operation of the water softener 400.
- the water softener 400 has a simple and compact structure and a reasonable layout, which is advantageous for realizing division of different functional areas and has high reliability.
- the body 410 includes an upper cover 401, a lower cover 402, and a structure 403.
- the upper cover 401 and the lower cover 402 are respectively disposed at upper and lower ends of the structural body 403, so as to facilitate processing.
- the outer edge of the upper cover 401 is formed with an upper flange extending downward and abutting the upper end of the structural body 403, and the outer edge of the lower cover 402 is formed with a lower flange extending upward and abutting the lower end of the structural body 403.
- a water buffer chamber 422 is disposed above the soft water chamber 420 in the body 410, and a water buffer chamber 425 is disposed below the soft water chamber 420.
- the soft water outlet 412 is connected to the water buffer chamber 422, and the soft water inlet is connected.
- the 411 and the softening regeneration chamber 430 are both connected to the water inlet buffer chamber 425.
- the water buffering plate 426 is interposed between the soft water chamber 420 and the water inlet buffer chamber 425, and the water buffering plate 423 is spaced between the soft water chamber 420 and the water discharging buffer chamber 422.
- a water passage 421 is provided on both the water buffer plate 426 and the water discharge buffer plate 423.
- At least one of the water inflow buffer plate 426 and the water discharge buffer plate 423 is provided with a plurality of slits to form a grid, and each slit is a part of the water passage 421, and the width of the slit is It is smaller than the diameter of the resin particles.
- the slit width is 0.1 to 1.5 mm, and the grid structure thus provided is easy to pass water and prevent resin particles from leaking out.
- the water discharge buffer plate 423 and the water inlet buffer plate 426 are both circular plates, and a plurality of slits are arranged circumferentially around the axis of the soft water chamber 420, so that the liquid can uniformly enter the soft water chamber 420, thereby ensuring that the tap water can be evenly distributed.
- the ground is softened and the brine can uniformly wash the resin particles.
- the arrangement of the slits is not limited to the circumferential arrangement of the circumferential surrounding soft water chamber 420, and may be other irregular arrangements.
- the width of the slit toward the water-intake buffer chamber 425 is larger than the width of the slit toward the soft water chamber 420 side.
- the width of the slit is gradually decreased in the direction from the water buffer chamber 425 to the soft water chamber 420, and remains unchanged thereafter.
- the width of the slit toward the side of the water discharge buffer chamber 422 is larger than the width of the slit toward the side of the soft water chamber 420.
- the width of the slit is gradually reduced first and then remains unchanged.
- the intermediate portion of the water-inflow buffer plate 426 is formed with a downward convex portion 427, and the water-passing passage 421 on the water-inflow buffer plate 426 is provided on the lower convex portion 427.
- the soft water inlet 411 and the softening regeneration chamber 430 are both connected to the outer circumferential position of the water inlet buffer chamber 425. When water is introduced from the soft water inlet 411 or the softening regeneration chamber 430, the water flow surrounds a circle under the guiding drainage of the lower convex portion 427, and the water flow is from the outer circumference.
- the intermediate portion of the water discharge buffer plate 423 is upwardly formed with an upper convex portion 424, and the water passage 421 on the water discharge buffer plate 423 is provided on the upper convex portion 424.
- the soft water outlet 412 communicates with the outer peripheral position of the water discharge buffer chamber 422. When the water flow flows out of the soft water chamber 420, the water flow flows to the outer peripheral direction in the radial direction after reaching the top, and then is collected and discharged at the soft water outlet 412.
- the arrangement of the upper convex portion 424 is favorable for uniformly flowing to the outer circumference of the water circulation buffer chamber 422 when the water is discharged, which is favorable for smooth water flow.
- each slit is extended in the radial direction of the soft water chamber 420.
- the extending direction of the slit is consistent with the flow direction of the water flow, thereby facilitating the reduction of the flow resistance, and the amount of liquid entering and leaving the soft water chamber 420 by the slit can be increased, thereby increasing the softening speed of the tap water or the washing speed of the resin particles by the brine.
- the body 410 is further provided with a reclaimed water inlet 440, the reclaimed water inlet 440 is located outside the soft water chamber 420, and the reclaimed water inlet 440 extends from the reclaimed water inlet 413 to the softening regeneration chamber 430, and It is connected to the bottom of the softening regeneration chamber 430, so that when the reclaimed water enters the water, the water flows from the top to the bottom, which ensures smooth flow and avoids backflow.
- the softened regeneration chamber 430 contains regenerated salt or brine, the undissolved salt is likely to sink to the bottom due to the high density, so that the water flowing into the softening regeneration chamber 430 flows downward from the bottom to facilitate the dissolution of the regenerated salt.
- the reclaimed water inlet 440 first extends vertically to the bottom wall of the body 410, then bypasses the soft water chamber 420 along the bottom wall of the body 410, and then extends to the softening regeneration chamber 430.
- the reclaimed water inlet 440 is provided in this manner, and the reclaimed water inlet 440 is easily formed when the main body 410 is processed.
- the reclaimed water inlet 440 includes a vertical section 441, a surrounding section 442, and a passage section 443, and the vertical section 441 is located outside the soft water chamber 420 and extends vertically, vertical
- the top of the section 441 is a reclaimed water inlet 413 extending from the bottom end of the vertical section 441 along the peripheral wall of the soft water chamber 420 toward the direction away from the soft water inlet 411, and the passage section 443 is connected to the surrounding section 442 and communicates with the softening regeneration chamber 430.
- the vertical section 441 extends on the same vertical plane, and the surrounding section 442 and the access section 443 extend on the same horizontal plane.
- a plurality of water passing holes 444 are provided in the side wall of the reclaimed water inlet 440 facing the softening regeneration chamber 430, and the water passing holes 444 are provided on the peripheral wall of the opening section 443.
- the reclaimed water inlet passage 440 is in communication with the softening regeneration chamber 430 only through the plurality of water passage holes 444, so that the regeneration salt in the regeneration regeneration chamber 430 is prevented from flowing into the regeneration water inlet passage 440. That is to say, the water passage hole 444 can be set to pass water but can prevent salt leakage.
- the water passing hole 444 is formed as a slit extending in the up and down direction.
- the flow passage area of the water passage hole 444 toward the end of the regeneration water inlet passage 440 is larger than the flow passage area toward the one end of the softening regeneration chamber 430. In this way, there is a certain guiding effect on the inflowing water, but the regenerated salt can be well intercepted.
- the water passing hole 444 includes: a second straight hole segment 4441 and a second tapered portion 4442 , the second straight hole segment 4441 is disposed adjacent to the softening regeneration chamber 430 , and the second tapered portion 4442 is facing the reclaimed water inlet channel 440 . It is provided that the flow area of the second tapered section 4442 is gradually decreased in the flow direction of the water flow. Wherein, the flow area of the second straight hole section 4441 is constant in the direction of water flow, and the second cone section 4442 forms the shape of the funnel.
- the arrangement of the second straight hole section 4441 ensures that the narrower portion of the water passing hole 444 has a certain thickness, and is not easily deformed and widened under the impact of the water flow.
- the second tapered section 4442 is arranged in the shape of a funnel to facilitate the forming, and the water flow is accelerated during the inflow, so that the water flowing into the softening regeneration chamber 430 has a certain impact force, which is favorable for dissipating the regenerated salt of the bottom.
- the access section 443 includes a main branch 4431 extending along the bottom edge of the softening regeneration chamber 430.
- the access section 443 further includes a main branch 4431 and extends to the softening regeneration chamber 430.
- the bottom center area of the branch is 4432.
- the main branch 4431 is extended along the bottom edge of the softening regeneration chamber 430, so that the main branch 4431 and the softening regeneration chamber 430 share a side wall, which is advantageous for simplifying the structure and processing difficulty.
- the setting of the branch 4432 allows the water flow to flow into the intermediate region of the softening regeneration chamber 430. With the arrangement of the main branch 4431 and the branch 4432, the inflowing water is evenly distributed at the bottom of the softening regeneration chamber 430, which is advantageous for equalizing the brine concentration in the softening regeneration chamber 430.
- a plurality of water passing holes 444 are formed in the side wall of the opening section 443 facing the softening regeneration chamber 430, and the water passing holes 444 are provided on the side walls of the main branch 4431 and the branch 4432. .
- the bottoms of the main branch 4431 and the branch 4432 are flush with the bottom of the softening regeneration chamber 430, and the tops of the main branch 4431 and the branch 4432 are both blocked from the softening regeneration chamber 430, that is,
- the water passing holes 444 are disposed on the side walls of the main branch 4431 and the branch 4432, and the water flow is flushed into the softening regeneration chamber 430 in the horizontal direction, which facilitates the flow of the water to flow upward after the bottom of the softening regeneration chamber 430 is evenly distributed.
- the reclaimed water flushed in the horizontal direction can impact the regenerated salt at the bottom, which is beneficial to the fully dissolved salt.
- the body 410 is provided with a reclaimed water outlet 450.
- One end of the reclaimed water outlet 450 is in communication with the soft water chamber 420, and the other end of the reclaimed water outlet 450 is in communication with the softening regeneration chamber 430.
- the reclaimed water exit 450 is vertically disposed between the soft water chamber 420 and the softening regeneration chamber 430, and the top end of the reclaimed water outlet 450 communicates with the softening regeneration chamber 430, and the bottom end of the reclaimed water outlet 450 and the soft water chamber 420 Connected.
- the regeneration control member 470 is opened, the brine in the softening regeneration chamber 430 can be automatically flowed to the soft water chamber 420 by gravity.
- the side wall of the regeneration water outlet 450 facing the softening regeneration chamber 430 is provided with a communicating water hole 451.
- the side wall is provided with a water filtering hole 451, and the brine can only flow from the water filtering hole 451 toward the soft water chamber 420. This avoids softening of the regenerating salt in the regeneration chamber 430 into the soft water chamber 420, and the water drain hole 451 can be disposed to pass through the brine but can prevent salt leakage.
- the overflow area of the water filter hole 451 toward one end of the regeneration water outlet 450 is larger than the flow area toward the one end of the softening regeneration chamber 430.
- the flow passage 451 has a large flow area at one end toward the reclaimed water outlet 450, the flow rate of the water flow becomes gentle, and the water flow can be prevented from rushing away from the regenerated salt.
- the water filtering hole 451 includes a first straight hole segment 4511 and a first tapered portion 4512.
- the first straight hole portion 4511 is disposed adjacent to the softening regeneration chamber 430, and the first tapered portion 4512 is detoured toward the reclaimed water.
- 450 is disposed such that the flow area of the first tapered section 4512 gradually increases in the direction of water flow, and the first tapered section 4512 is formed in the shape of a funnel.
- the arrangement of the first straight hole section 4511 ensures that the narrower portion of the water filtering hole 451 has a certain thickness, and is not easily deformed and widened under the impact of the water flow.
- the first tapered section 4512 is arranged in the shape of a funnel to facilitate the forming, and the water flow becomes slow and the water potential becomes slow during the inflow.
- a water drain hole 451 is provided at the top end of the reclaimed water outlet 450, and the water filter hole 451 is a plurality of vertically extending long holes to ensure an overcurrent flow rate.
- the water filtering hole 451 is disposed at the top end of the reclaimed water outlet 450 to prevent the undissolved regenerated salt from flowing out of the water filtering hole 451.
- the body 410 is provided with a water inlet passage 460 on the outer side of the soft water chamber 420, and the soft water inlet 411 communicates with the bottom of the soft water chamber 420 through the water inlet passage 460.
- the water inlet passage 460 includes an arc segment 461 and a vertical segment 462, one end of which forms a soft water inlet 411, and the arc segment 461 faces away from the reclaimed water inlet 413 along the peripheral wall of the soft water chamber 420.
- the direction extends, the vertical section 462 extends vertically downward from the end of the curved section 461, the vertical section 462 is located between the soft water chamber 420 and the softening regeneration chamber 430, and the bottom end of the vertical section 462 communicates with the soft water chamber 420.
- the curved segments 461 are located on the same horizontal plane, and the vertical segments 462 are extended on the same vertical plane. This arrangement facilitates the simplification of the housing structure and facilitates processing.
- the vertical section 462 of the water inlet passage 460 is adjacent to and adjacent to the reclaimed water outlet 450, and the reclaimed water outlet 450 communicates with the soft water chamber 420 through the inlet passage 460. This reduces the length of the reclaimed water exit 450 and simplifies the structure.
- the regeneration control member 470 is a control valve, and the regeneration control member 470 is used to control communication or disconnection between the water inlet passage 460 and the softening regeneration chamber 430. Specifically, the control valve is used for control.
- the recirculation water outlet 450 is connected and disconnected from the water inlet passage 460.
- at least a portion of the spool 471 of the control valve can intercept the reclaimed water exit 450.
- control valve is located between the soft water chamber 420 and the softening regeneration chamber 430, and the control valve is mounted on the outer side wall of the water inlet passage 460.
- the bottom end of the reclaimed water outlet 450 is provided with a through port 452 that communicates with the water passage 460, and the spool 471 of the control valve is movably disposed at the opening and closing port 452.
- a portion of the through-opening 452 is located below the bottom wall of the reclaimed water outlet 450, and the bottom wall of the reclaimed water outlet 450 is recessed downward to form a recess 453 corresponding to the bottom of the recirculating outlet 452 located below the bottom wall of the reclaimed water exit 450.
- the cross section of the groove 453 is formed in a semicircular shape, and an end surface of the groove 453 away from the opening and closing opening 452 forms a hemispherical surface.
- the through-opening 452 and the recess 453 are integrally formed by cutting by a drill, whereby processing is very easy.
- the side wall between the reclaimed water outlet 450 and the water inlet passage 460 is provided with an on-off pipe 454, and the nozzle of the on-off pipe 454 constitutes the above-mentioned opening and closing port 452.
- the cut-off tube 454 extends away from the softening regeneration chamber 430, and the spool 471 of the regeneration control member 470 mates with the passage tube 454.
- the opening and closing tube 454 is disposed such that the valve body 471 of the regeneration control member 470 need not be set too long, and the overall size of the regeneration control member 470 is reduced.
- the axial length of the pipe body can be long, and when the reclaimed water is cut off, the pipe body and the valve body 471 can be sufficiently contacted and sealed.
- a fixed tube 455 is disposed on the tube wall between the reclaimed water outlet 450 and the water inlet passage 460.
- the fixed tube 455 is disposed around the channel tube 454, and the tube wall of the channel tube 454 is provided with a notch 4551. Connected to the water channel 460.
- the spool 471 opens the passage tube 454.
- the brine in the reclaimed water outflow 450 flows downward toward the groove 453 and flows to the opening and closing port 452.
- the brine flowing into the opening and closing port 452 enters the fixed pipe 455 from the passage pipe 454, then flows into the water inlet passage 460 from the notch 4551, and finally flows from the bottom of the water inlet passage 460 to the water inflow buffer chamber 425 and then flows to the soft water chamber 420.
- the regeneration control member 470 further includes a valve body 472 that is movably disposed on the valve body 472, and an end of the valve body 471 protrudes from the valve body 472.
- the fixed tube 455 passes through the water inlet passage 460 and projects from the outer side wall of the water inlet passage 460 to the outside of the water softener 400, and the regeneration control member 470 is snap-fastened to the fixed tube 455.
- a valve seal 473 is provided between the valve body 472 and the fixed tube 455 to improve the sealing property.
- the water softener 400 further includes a salt deficiency detecting device 480 for detecting whether the softened regeneration chamber 430 is deficient in salt.
- the salt-deficient detecting device 480 is connected to the softening regeneration chamber 430 and is capable of detecting the remaining amount of the regenerated salt in the softening regeneration chamber 430, determining whether the salt-adding port 414 needs to add a regenerating salt, and the salt-deficient detecting device 480 is electrically connected to the controller.
- the controller controls the reminding device according to the feedback information of the salt-deficient detecting device 480, and sends a reminding message to the user to remind the user to add salt to the softening regeneration chamber 430 through the salt-adding port 414.
- the controller is also electrically coupled to a regeneration control 470 that controls the flow of the regenerated water stream.
- the degree of automation of the regeneration of the softener 400 and the regeneration of the regenerated water stream is improved, and the water softener 400 is not only ensured.
- the normal operation prevents the softener 400 from being properly operated due to the lack of regenerated salt in the softening regeneration chamber 430, and also simplifies the control operation of the water softener 400, reducing user operations.
- the salt-deficient detecting device 480 includes a float 481, a magnetic member 482, a detecting circuit board 483, and a reed switch 484.
- the float 481 floats in the salt solution, and the magnetic member 482 is disposed on the float 481. on.
- the detecting circuit board 483 is disposed on the body 410, and the reed pipe 484 is located outside the floating cavity 491.
- the reed pipe 484 is provided with a first patch 4841 and a second patch 4842.
- the first patch 4841 is a polar patch. When the suction force of the magnetic member 482 is insufficient, the first patch 4841 is disconnected from the second patch 4842. When the suction force of the magnetic member 482 is sufficient, the first patch 4841 and the second patch 4842 are attached to each other.
- the patch 4841 and the second patch 4842 are electrically connected to the detection circuit board 483, respectively.
- the float 481 When the salt is sufficient, the float 481 has a lower density than the salt solution, and the float 481 floats on the surface of the solution.
- the magnetic member 482 on the float 481 floats closer to the reed switch 484, the magnetic member 482 attracts the first patch 4841, the first patch 4841 approaches the second patch 4842, and the reed switch 484 is in the vicinity. Closed state. After the first patch 4841 and the second patch 4842 are attached, the circuit on the detecting circuit board 483 is turned on to emit sufficient information of the salt amount.
- the density of the float 481 is greater than that of the salt solution, and the float 481 sinks to the bottom.
- the magnetic member 482 on the sinker 481 is far away from the reed switch 484, the magnetic member 482 is insufficient to attract the first patch 4841, and the first patch 4841 is separated from the second patch 4842, that is, the reed switch 484 is at In the separated state, the circuit on the detecting circuit board 483 is disconnected, and information indicating insufficient salt is issued.
- the sink dishwasher 1000 has a control panel for displaying information from the controller.
- the controller transmits the information to the control panel, and the salt-deficient lamp flashes on the control panel, indicating that the salt is missing.
- the controller transmits the information to the control panel, and the salt-deficient lamp flashes on the control panel, indicating that the salt is missing.
- the body 410 is further provided with a float cavity 491 communicating with the softening regeneration chamber 430.
- the float 481 is disposed in the float cavity 491, and the float cavity 491 is located at the outer edge of the softening regeneration cavity 430.
- the bottom wall of the float chamber 491 is higher than the bottom wall of the softening regeneration chamber 430, so that the detected salt concentration is closer to the upper layer concentration, and the detection of the salt at the bottom of the regeneration chamber 430 is prevented from affecting the detection accuracy.
- the reed switch 484 is disposed on the detecting circuit board 483. This arrangement is advantageous for shortening the length of the route between the detecting circuit board 483 and the reed switch 484, and the reed switch 484 is synchronized with the detecting circuit board 483 to avoid Disconnection between the reed switch 484 and the detection circuit board 483 results in detection failure.
- a part of the peripheral wall of the float cavity 491 is recessed toward the inside of the float cavity 491 to form a mounting cavity 492, and the circuit board is disposed in the mounting cavity 492, so that the detecting circuit board is protected by the mounting cavity 492.
- the 483 and the reed switch 484 prevent the water softener 400 from colliding with the detecting circuit board 483 during assembly and disassembly to cause damage.
- the opposite side walls of the mounting cavity 492 are provided with mounting grooves 493, and opposite ends of the detecting circuit board 483 are respectively caught in the mounting grooves 493.
- This arrangement makes the mounting of the detecting circuit board 483 very easy, and the detecting circuit board 483 is not easily shaken.
- the fitting cavity 492 is open, that is, the fitting cavity 492 communicates with the outside from the open side, and the fitting groove 493 penetrates from the open side toward the fitting cavity 492.
- the detection circuit board 483 can be directly inserted into the mounting groove 493 from the outside, which is very convenient, and is also advantageous for heat dissipation.
- test circuit board 483 and the reed switch 484 are sealed by a plastic package.
- the float 481 is a vertically arranged cylindrical member, which occupies a small volume.
- the inner wall of the float cavity 491 is provided with a guiding rib 494, so that the float 481 does not stick to the inner wall of the float cavity 491 when the float 481 is raised and lowered, thereby improving the sensitivity of the detecting of the float 481.
- the float cavity 491 is formed as a rectangular cavity, and guide ribs 494 are respectively disposed on the four side walls of the float cavity 491, and each of the guide ribs 494 extends in the up and down direction.
- the magnetic member is a magnet that is wrapped within the float 481 such that the magnetic member 482 is less expensive.
- the magnetic member 482 can also be other components, which are not limited herein.
- the float chamber 491 is disposed adjacent to the communication between the soft water chamber 420 and the softening regeneration chamber 430, such that the salt-deficient detecting device 480 is substantially installed between the soft water chamber 420 and the softening regeneration chamber 430, so that the soft water chamber 420 can be fully utilized.
- the set channel space between the regeneration chambers 430 is softened to improve overall compactness.
- the housing of the respirator 100 is provided with an air chamber 3 and a water inlet chamber 2, and the air chamber 3 is provided with a breathing port 31 communicating with the atmosphere, and the air chamber 3 is provided and washed.
- the communication port 32 communicating with the tank body 600 includes a water inlet passage 25 and a water return passage 26 that communicate with each other.
- the water inlet passage 25 includes an ascending passage section 251, a bent passage section 252, and a revolving passage section 253.
- the lower end of the ascending passage section 251 is provided with a water inlet 21 for connecting an external water source of the dishwasher, for example, the water inlet 21 is directly connected to the tap water.
- the bending channel section 252 is formed in an upwardly convex curved shape, one end of the bending channel section 252 is in communication with the upper end of the rising channel section 251, and the turning channel section 253 is arranged side by side below the bending channel section 252, and the turning channel section 253 is One end is in communication with the other end of the curved passage section 252, and the other end of the rotary passage section 253 is in communication with the return water passage 26, and the rotary passage section 253 is provided with a water inlet vent 24 communicating with the air chamber 3.
- the washing tank body 600 is provided with a water tank vent 602.
- the air chamber 3 of the respirator 100 has a communication port 32, and the communication port 32 is fixed to the water tank vent 602, so that the washing tank body 600 and the atmosphere can be balanced.
- the pressure difference between the two can prevent the pressure in the washing tank 600 from being excessively changed when the temperature in the washing tank 600 changes or the drying process is performed, thereby ensuring safe and reliable operation of the washing tank 600 dishwasher.
- the water inlet process of the washing tank 600 dishwasher is: after entering the water inlet chamber 2 through the water inlet 21, the water enters the soft water chamber 420 through the soft water inlet 411, and is softened and discharged in the soft water chamber 420.
- the washing tank body 600 is used for washing the dishware in the washing tank body 600.
- the softening property of the softening resin in the soft water chamber 420 is lowered, the water in the water inlet chamber 2 enters the softening regeneration chamber 430 through the water outlet 22.
- the softening regeneration chamber 430 is supplied with reclaimed water, and the regenerated water in the softening regeneration chamber 430 is passed to form a regenerated salt solution, and then enters the soft water chamber 420 to regenerate and regenerate the soft water resin.
- a partition rib 263 is disposed in the return water passage 26 to partition the return water passage 26 into a main circuit 261 and a water storage chamber 262, and a main water passage 221 is disposed on the main circuit 261.
- a regeneration water passage 222 is provided on the water storage chamber 262.
- the soft water inlet 411 is connected to the main waterway 221, and as shown in FIGS. 1 and 14, the reclaimed water inlet 413 is connected to the reclaimed waterway 222. That is, after the water enters the water inlet passage 25 through the water inlet 21, the water is diverted into the main circuit 261 and the water storage chamber 262, and the water entering the main circuit 261 enters the soft water chamber 420 of the water softener 400 through the main water passage 221 to be softened. Water entering the water storage chamber 262 enters the softening regeneration chamber 430 of the water softener 400 through the regeneration water passage 222.
- the main circuit 261 and the water storage chamber 262 are in communication with each other, whereby the water in the water inlet passage 25 can be better distributed.
- the partition rib 263 extends upward from the bottom wall of the return water passage 26, and a gap 264 is formed between the upper end of the partition rib 263 and the top wall of the return water passage 26, through which the main circuit 261 and the water storage chamber 262 pass.
- the gaps 264 are in communication with each other, that is, water in the main circuit 261 can enter the water storage chamber 262 through the gap 264.
- water of the water storage chamber 262 can also enter the main circuit 261 through the gap 264, and the respirator 100 has a simple structure. Easy to process.
- a flow meter 254 may be disposed in the water inlet passage 25 for detecting the flow rate of the water in the water inlet passage 25, so that the amount of water entering the inlet chamber 2 through the water inlet 21 can be measured in real time. .
- the swivel passage section 253 upstream of the inlet vent 24 is gradually narrowed, and the swivel passage section 253 downstream of the inlet vent 24 is gradually widened so that the water flows through the inlet vent At 24 places, the water flow has a large flow rate and can easily cross the water inlet vent 24.
- the side wall of the air chamber 3 includes a first guiding section 301 extending obliquely from bottom to top and a second guiding section 302 extending in a vertical direction, the first guiding section
- the upper end of the 301 is connected to the lower end of the second guiding section 302, and the upper end of the second guiding section 302 extends to the water inlet vent 24, and the air in the air chamber 3 can be in the first guiding section 301 and the second guiding section.
- the guide 302 smoothly flows to the inlet vent 24 and enters the inlet chamber 2 through the inlet vent 24, thereby better balancing the pressure difference in the inlet chamber 2.
- a condensation rib is provided in the air chamber 3, whereby water vapor in the washing tank body 600 enters the air chamber 3 through the communication port 32, and the air chamber 3
- the inner condensation condensed contact is condensed into water droplets by the condensation ribs, and the water droplets are collected by gravity to the bottom of the air chamber 3.
- the water level in the air chamber 3 reaches the height of the communication port 32, the water in the air chamber 3 passes.
- the communication port 32 flows back into the washing tank body 600.
- the condensation ribs include arcuate ribs 303 disposed around a portion of the circumferential direction of the communication port 32, thereby causing water vapor in the washing tank body 600 to flow to the communication port 32, Direct contact with the arcuate ribs 303 is condensed into water droplets, whereby the water vapor entering the air chamber 3 can be better condensed.
- the arcuate ribs 303 include a plurality of, and at least a portion of the adjacent two arcuate ribs 303 are arranged side by side in the radial direction of the communication port 32, and the adjacent two arcuate ribs 303 pass through the connecting ribs.
- 304 is connected to form a condensation groove 305 between the two arcuate ribs 303 and the connecting ribs 304, whereby the condensation area of the condensation ribs can be increased, and the condensation efficiency of the water vapor in the air chamber 3 can be improved.
- the communication port 32 is disposed adjacent to the bottom wall of the air chamber 3, thereby facilitating the flow of water collected at the bottom of the air chamber 3 back to the washing tank body 600 through the communication port 32. Inside.
- the communication port 32 is disposed adjacent to the bottom wall of the air chamber 3, thereby facilitating the flow of water collected at the bottom of the air chamber 3 back to the washing tank body 600 through the communication port 32.
- the bottom wall of the air chamber 3 includes a third guiding section 306 and a fourth guiding section 307, wherein the third guiding section 306 extends obliquely from the rear to the front, the fourth guide The guiding section 307 extends obliquely from the front to the rear, and the lower end of the third guiding section 306 is connected to the lower end of the fourth guiding section 307, and the connection point of the third guiding section 306 and the fourth guiding section 307 is in communication.
- the vertical centerline of the port 32 whereby the water in the air chamber 3 is collected under the guidance of the third guiding section 306 and the fourth guiding section 307 to the bottom of the air chamber 3, the water in the air chamber 3. It is better gathered to facilitate the timely discharge of water in the air chamber 3.
- the side wall of the air chamber 3 is provided with a condensation baffle 309 extending toward the communication port 32, whereby the water vapor entering the air chamber 3 can be better condensed.
- a plurality of condensing baffles 309 spaced apart from each other may be provided on the side wall of the air chamber 3, thereby further increasing the condensation efficiency of the water vapor.
- the breathing port 31 is disposed adjacent to the top wall of the air chamber 3, and the communication port 32 is disposed adjacent to the bottom wall of the air chamber 3, thereby extending the flow path of water vapor in the air chamber 3, water
- the steam can be better condensed in the air chamber 3.
- a condensing plate 311 is provided below the breathing port 31, thereby causing water vapor not condensed in the air chamber 3 to collide with the condensing plate 311 when discharged to the position of the breathing port 31, water
- the steam is further condensed, whereby it is possible to further prevent the water vapor in the air chamber 3 from being discharged from the breathing port 31.
- the drainage channel 1 is provided with a sewage inlet 11, a sewage outlet 12 and a drainage vent 13, wherein the sewage inlet 11 is in communication with the washing tank 600, and the sewage outlet 12 is adapted to communicate with the sewer.
- the drain vent 13 is in communication with the atmosphere.
- the washing process of the washing tank 600 dishwasher is: the washing sewage generated in the washing tank body 600 enters the drainage channel 1 through the sewage inlet 11 and is discharged into the sewer through the sewage outlet 12, thereby realizing the washing tank body 600 dishwasher Drainage process.
- a one-way valve 14 is provided between the drain vent 13 and the air chamber 3 for one-way ventilation from the air chamber 3 toward the drain vent 13.
- the sewage in the washing tank 600 will enter the drainage channel 1 through the sewage inlet 11, at which time the pressure in the drainage channel 1 is large, and the check valve 14 is at the water pressure.
- the sewage in the drainage channel 1 does not enter the air cavity 3 through the drainage vent 13; when the drainage process stops, a negative pressure occurs in the drainage channel 1, that is, the pressure in the air cavity 3 is greater than the drainage
- the pressure in the passage 1 and the check valve 14 are automatically opened under the pressure difference.
- the air in the air chamber 3 can enter the drainage channel 1 through the drainage vent 13 to balance the pressure difference in the drainage channel 1, thereby preventing A siphon phenomenon occurs in the drainage channel 1.
- the drain passage 1 is formed as an inverted U-shaped bent pipe, whereby the siphoning phenomenon in the drain passage 1 can be better avoided.
- the housing of the respirator 100 includes a box body 101 and a cover body 102 that is disposed on the box body 101.
- a drain channel 1 is disposed between the box body 101 and the cover body 102. , the inlet chamber 2 and the air chamber 3.
- the case 101 and the cover 102 may be welded together, thereby making the connection between the case 101 and the cover 102 good in sealing.
- the housing can be integrally formed by a blow molding process, and the production process is simple and the production efficiency is high.
- the respirator 100 and the water softener 400 are both located outside of the washing tank 600, the respirator 100 is located above the water softener 400, and the main waterway 221 and the reclaimed waterway 222 are located at the respirator 100.
- the soft water inlet 411 and the reclaimed water inlet 413 are located at the top of the water softener 400.
- the respirator 100 can be used to enter water and store water, and the connection line is short. Since the installation line is short, the line does not become an additional burden on the respirator 100 and the water softener 400, and it is prevented from falling from the washing tub 600 due to excessive weight, and the reliability is enhanced. Additionally, the connections between the respirator 100 and the water softener 400 can be mutually supported.
- the main circuit 261 and the water storage chamber 262 are arranged side by side, the soft water inlet 411 and the reclaimed water inlet 413 are arranged side by side, and the soft water inlet 411 is connected to the main water inlet 221 .
- the reclaimed water inlet 413 is connected to the reclaimed waterway 222. This setting minimizes pipe length.
- the respirator 100 is disposed on the peripheral wall of the washing tub body 600, and the water softener 400 is disposed on the bottom wall of the washing tub body 600.
- This installation has a very small footprint for the sink dishwasher 1000 as a whole.
- the washing tank body 600 is a square tank body, and the respirator 100 is provided on the right side wall of the washing tank body 600.
- the water softener 400 is disposed on the bottom wall of the washing tank body 600 and disposed adjacent to the right side, and the soft water inlet 411 and the reclaimed water inlet 413 of the water softener 400 are disposed upwardly and just protrude from the right side of the bottom wall of the washing tank body 600, and
- the main waterway 221 at the bottom of the respirator 100 is docked with the reclaimed waterway 222. In this way of installation, the overall size of the dishwasher is small, the pipeline is short, and the connection is convenient.
- the bottom wall of the washing tank body 600 is provided with a mounting opening 603, and the salting port 414 is located at the top of the body 410 and disposed opposite to the mounting opening 603.
- the bottom wall of the washing tank body 600 is provided with a tank water inlet (not shown) that communicates with the soft water outlet 412.
- the water softener 400 includes a connecting tube 404 disposed on the body 410.
- the nozzle of the connecting tube 404 constitutes a salting port 414, and the connecting tube 404 extends from the mounting opening 603 into the washing tank body.
- the sink dishwasher 1000 further includes a seal mounting structure 700 that includes a mounting nut 710 and a salt cap 720, the mounting nut 710 being located within the sink body 600 and The jacket is over the adapter 404 with a threaded fit between the mounting nut 710 and the adapter 404 to secure the water softener 400 to the bottom of the sink body 600.
- a salt cap 720 is capped over the spout of the spout 404 for sealing the salt port 414.
- the seal mounting structure 700 further includes a gasket 730 interposed between the body 410 and the bottom wall of the wash tank 600.
- a gasket 730 is disposed between the washing tank body 600 and the water softener 400 to further ensure the sealing property of the joint between the washing tank body 600 and the water softener 400, and prevent the washing water from leaking from the gap between the mounting port 603 and the nozzle 404.
- the gasket 730 is annular and is jacketed over the nozzle 404. This is convenient to install, and the gasket 730 is not easily detached from the water softener 400.
- the surface of the gasket 730 is provided with a rib 731.
- the rib 731 is disposed on the surface of the gasket 730 facing the body 410, or the rib 731 is disposed on the sealing 730 facing the washing tank 600.
- the gasket 730 is provided with a rib 731 on the surface facing the body 410 and the bottom wall of the washing tub 600.
- the gasket 730 is installed between the water softener 400 and the bottom wall of the washing tank body 600.
- the mounting nut 710 is tightened, the gasket 730 can be pressed against the bottom of the water softener 400 and the washing tank 600.
- the sealing of the gasket 730 is enhanced between the walls.
- the water softener 400 softens the waterway structure: when the water storage chamber 262 of the respirator 100 overflows during normal washing, the regeneration control member 470 controls the regeneration waterway to be closed, and the main waterway is flooded. .
- the water of the main circuit 261 of the return water passage 26 enters the soft water inlet 411 of the water softener 400 from the main waterway 221, the water enters from the bottom of the soft water chamber 420, softens through the soft water chamber 420, and softens the water from the soft water chamber.
- the top of 420 flows out into the washing tank body 600.
- a portion of the water remains in the reservoir 262 of the respirator 100 for use as a reclaimed water reserve.
- the water softener 400 regenerates the waterway structure: when the soft water chamber 420 of the water softener 400 needs to be regenerated, the water from the water storage chamber 262 of the respirator 100 enters the reclaimed water inlet 413 of the water softener 400 through the reclaimed waterway 222, and the regeneration control member 470 is opened.
- the reclaimed waterway is connected, and the reclaimed water enters the water softener 400 to dissolve the salt, and then enters the soft water chamber 420, so that the resin recovers the ability to soften the water.
- This process usually opens the inlet valve and enters 1L of water. This part of the water is used to wash away the calcium and magnesium ions after the reduction and replacement, and is directly discharged after entering the washing tank body 600.
- the description of the terms “embodiment”, “example” and the like means that a specific feature, structure, material or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present invention. .
- the schematic representation of the above terms does not necessarily mean the same embodiment or example.
- the particular features, structures, materials, or characteristics described may be combined in a suitable manner in any one or more embodiments or examples.
Landscapes
- Treatment Of Water By Ion Exchange (AREA)
Abstract
Description
Claims (10)
- 一种水槽式洗碗机,其特征在于,包括:呼吸器,所述呼吸器的壳体内设有储水腔,所述储水腔具有再生水路口;软水器,所述软水器包括本体和再生控制件,所述本体内设有相互连通的软水腔和软化再生腔,所述再生控制件用于控制所述软水腔与所述软化再生腔之间的连通和截断,其中,所述本体上形成有分别连通所述软水腔两侧的软水入口和软水出口,所述本体上还形成有连通所述软化再生腔的再生水入口,所述再生水入口与所述再生水路口相连。
- 根据权利要求1所述的水槽式洗碗机,其特征在于,所述软水腔和所述软化再生腔水平并排设置,所述软水入口和所述再生水入口并排设在所述软水腔的上方,所述软水出口位于所述本体的上部。
- 根据权利要求2所述的水槽式洗碗机,其特征在于,所述本体内设有再生水入道,所述再生水入道包括竖向段、环绕段和通入段,所述竖向段位于所述软水腔的外侧且竖向延伸,所述竖向段的顶部为所述再生水入口,所述环绕段从所述竖向段的底端沿所述软水腔的周壁朝向远离所述软水入口的方向延伸,所述通入段与所述环绕段相连且连通所述软化再生腔。
- 根据权利要求3所述的水槽式洗碗机,其特征在于,所述通入段的底壁与所述软化再生腔的底壁平齐,所述通入段的顶部与所述软化再生腔隔断,所述通入段的朝向所述软化再生腔的侧壁上设有多个通水孔,所述通入段沿水平方向向所述软化再生腔的底部通水。
- 根据权利要求2-4中任一项所述的水槽式洗碗机,其特征在于,所述本体内设有再生水出道,所述再生水出道竖向设置且位于所述软水腔和所述软化再生腔之间,所述再生水出道的顶端与所述软化再生腔连通,所述再生水出道的底端与所述软水腔连通,所述再生控制件为控制阀,且所述控制阀的阀芯的至少一部分堵截所述再生水出道。
- 根据权利要求5所述的水槽式洗碗机,其特征在于,所述本体上位于所述软水腔的外侧设有入水通道,所述软水入口通过所述入水通道连通所述软水腔的底部。
- 根据权利要求6所述的水槽式洗碗机,其特征在于,所述入水通道包括:弧形段和竖直段,所述弧形段沿所述软水腔的周壁朝向远离所述再生水入口的方向延伸,所述竖直段从所述弧形段的端部竖直向下延伸,所述竖直段位于所述软水腔和所述软化再生腔之间,所述竖直段的底端连通所述软水腔,所述再生水出道的底端与所述竖直段相连,所述再生控制件用于控制所述再生水出道和所述竖直段之间的连通或者断截。
- 根据权利要求7所述的水槽式洗碗机,其特征在于,所述再生水出道的底端设有连通所述竖直段的通断口,所述再生水出道的底壁上设有与所述通断口对应的凹槽。
- 根据权利要求8所述的水槽式洗碗机,其特征在于,所述再生水出道和所述入 水通道之间的侧壁上设有通断管,所述通断管的管口构成所述通断口,所述控制阀的阀芯与所述通断管相配合;所述再生水出道和所述入水通道之间的侧壁上设有固定管,所述固定管环绕通道管设置,所述通道管的管壁上设有缺口以连通所述入水通道。
- 根据权利要求1-9中任一项所述的水槽式洗碗机,其特征在于,所述呼吸器的壳体内设有进水腔,所述进水腔包括进水通道和回水通道,所述回水通道包括相连通的主回路和所述储水腔,所述进水通道的一端设有进水口,所述进水通道的另一端连通所述储水腔,所述主回路具有主水路口,当所述储水腔内水满后溢出的水朝向所述主水路流动。
Applications Claiming Priority (8)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201711192607.4A CN107773188B (zh) | 2017-11-24 | 2017-11-24 | 水槽式洗碗机 |
| CN201711192607.4 | 2017-11-24 | ||
| CN201721608814.9 | 2017-11-24 | ||
| CN201721608814.9U CN208659236U (zh) | 2017-11-24 | 2017-11-24 | 水槽式洗碗机 |
| CN201721604610.8 | 2017-11-24 | ||
| CN201711195453.4A CN107752952B (zh) | 2017-11-24 | 2017-11-24 | 水槽式洗碗机 |
| CN201721604610.8U CN208573662U (zh) | 2017-11-24 | 2017-11-24 | 水槽式洗碗机 |
| CN201711195453.4 | 2017-11-24 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2019101109A1 true WO2019101109A1 (zh) | 2019-05-31 |
Family
ID=66630510
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2018/116754 Ceased WO2019101109A1 (zh) | 2017-11-24 | 2018-11-21 | 水槽式洗碗机 |
Country Status (1)
| Country | Link |
|---|---|
| WO (1) | WO2019101109A1 (zh) |
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| CN107773193A (zh) * | 2017-11-24 | 2018-03-09 | 佛山市顺德区美的洗涤电器制造有限公司 | 水槽式洗碗机的软水器及水槽式洗碗机 |
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| DE19913577A1 (de) * | 1999-03-24 | 2000-09-28 | Miele & Cie | Türsteuerung für eine Geschirrspülmaschine |
| CN203016902U (zh) * | 2012-09-19 | 2013-06-26 | 韦英明 | 一种洗碗机呼吸器 |
| CN205222750U (zh) * | 2015-10-17 | 2016-05-11 | 中山市富迪电器有限公司 | 可循环使用的水软化器 |
| CN107713937A (zh) * | 2017-11-24 | 2018-02-23 | 佛山市顺德区美的洗涤电器制造有限公司 | 水槽式洗碗机 |
| CN107752952A (zh) * | 2017-11-24 | 2018-03-06 | 佛山市顺德区美的洗涤电器制造有限公司 | 水槽式洗碗机 |
| CN107773188A (zh) * | 2017-11-24 | 2018-03-09 | 佛山市顺德区美的洗涤电器制造有限公司 | 水槽式洗碗机 |
| CN107773193A (zh) * | 2017-11-24 | 2018-03-09 | 佛山市顺德区美的洗涤电器制造有限公司 | 水槽式洗碗机的软水器及水槽式洗碗机 |
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