Integrated cleaning machine
By setting up airflow and water flow channels inside the exhaust pipe, the problems of exhaust pipe blockage and bubble noise in the integrated cleaning machine are solved, achieving efficient exhaust and quiet operation.
Patent Information
- Application Number
- CN202520036600.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-07
AI Technical Summary
Existing integrated cleaning machines are prone to clogging of the exhaust pipe and producing bubbling noise in low-temperature environments, which affects the user experience.
An airflow channel and a water flow channel are set in the exhaust pipe. Condensate flows to the respirator through the water flow channel. The water collection groove collects the condensate and flows into the water flow channel under the action of gravity, avoiding interference of condensate with airflow and realizing water-air separation.
It avoids exhaust pipe blockage, ensures exhaust efficiency, reduces bubbling noise, and improves user experience.
Smart Images

Figure CN223746308U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of cleaning machine especially relates to an integrated cleaning machine. BACKGROUND
[0002] In order to make full use of kitchen space, the applicant's prior application ZL202322663317.0 (authorized announcement number CN221383467U) discloses an integrated cleaning machine device, which comprises a first sink and a second sink arranged side by side in a cabinet, a first dishwasher is arranged below the first sink, the second sink can be switched to a second dishwasher, the first dishwasher is a front-opening dishwasher, and the second sink constitutes an upper-opening dishwasher. An overflow seat is arranged between the first sink and the second sink, the overflow seat is provided with a second air inlet connected with a first air outlet of the first dishwasher, a first air inlet connected with a second air outlet of the second sink, and an air outlet connected with the first sink.
[0003] However, a large amount of condensate water is generated in the drying process after cleaning of the dishwasher, especially in a low-temperature environment (2-5℃), which can cause the following problems:
[0004] (1) The long exhaust pipe path can reduce the ventilation section of the exhaust pipe, affect the exhaust speed, and even cause the exhaust pipe to be blocked, because a large amount of condensate water generated in the drying process is accumulated in the exhaust pipe.
[0005] (2) The formed condensate water is difficult to return due to the influence of air pressure, and the condensate water accumulated at the corner of the exhaust pipe is blown by the airflow, which can easily produce bubble sound when falling back, affecting the user's experience. SUMMARY
[0006] The first technical problem to be solved by the utility model is to provide an integrated cleaning machine capable of avoiding exhaust pipe blockage.
[0007] The second technical problem to be solved by the utility model is to provide an integrated cleaning machine capable of avoiding exhaust pipe blockage and bubble sound.
[0008] The utility model discloses a technical scheme that solves at least one of the above technical problems: an integrated cleaning machine, comprising a first water tank and a second water tank arranged side by side, wherein the first water tank is provided below with a first dishwasher having a cleaning inner container, and the second water tank can be switched to a second dishwasher, further comprising a water overflow seat arranged between the first water tank and the second water tank and having a first air inlet and a second air inlet, and the first air inlet is in fluid communication with a first air outlet of the first dishwasher, and the second air inlet is in fluid communication with a second air outlet of the second dishwasher, wherein a first breather is arranged on the first air outlet, and the first air inlet is in communication with a first air outlet end of the first breather through an exhaust pipe, characterized in that the exhaust pipe is provided with an air flow channel and a water flow channel in the length direction respectively, wherein exhaust gas is discharged from the first air outlet to the first air inlet through the air flow channel, and condensate water formed in the exhaust pipe flows to the first air outlet end of the first breather through the water flow channel.
[0009] Further, the exhaust pipe is further provided with a water collecting groove for collecting condensate water formed in the exhaust pipe, and the groove opening of the water collecting groove is in fluid communication with the water inlet end of the water flow channel. Thus, the formed condensate water can be collected in the water collecting groove in time to avoid interference with the air flow, and when the condensate water in the water collecting groove accumulates to a certain amount (5-7 ml), it can be smoothly collected in the water flow channel.
[0010] Further, the groove opening of the water collecting groove is in fluid communication with the air outlet end of the air flow channel and is staggered with the air flow direction of the air flow channel. In this way, on the one hand, the condensate water formed in the air flow channel can be smoothly collected in the water collecting groove, and on the other hand, interference with the air flow in the air flow channel can be avoided.
[0011] Further, the water collecting groove is located at the rear side of the water inlet end of the water flow channel along the water flow direction of the water flow channel, and is located at the front side of the air outlet end of the air flow channel along the air flow direction of the air flow channel. The condensate water formed at the air outlet end of the exhaust pipe is more, and the position of the water collecting groove is designed as above, which can better collect the condensate water formed in the exhaust pipe in the water collecting groove.
[0012] Further, the exhaust pipe comprises a first pipe section, a second pipe section and a third pipe section which are arranged in sequence and connected smoothly in the direction from the first air inlet to the first air outlet of the respirator, wherein the first pipe section and the third pipe section extend vertically and the second pipe section extends horizontally, and the air flow channel and the water flow channel are arranged side by side in the second pipe section and the third pipe section. In this way, the condensed water formed in the exhaust pipe can flow to the respirator and finally return to the cleaning tank under the action of gravity, and the air flow channel and the water flow channel are arranged in the second pipe section and the third pipe section, and not arranged in the first pipe section, because the first pipe section extends vertically, and the water vapor can be separated automatically under the action of wind pressure and gravity, so that the water vapor in the exhaust pipe can be separated and the exhaust efficiency can be ensured.
[0013] Further, the water collecting groove is located at the junction of the first pipe section and the second pipe section, and the water collecting groove is located at the lowest part of the first pipe section. The first pipe section is located at the air outlet end of the exhaust pipe, so a large amount of condensed water is formed, and arranging the water collecting groove at the lowest part of the first pipe section is beneficial to collecting the condensed water formed in the first pipe section.
[0014] Further, the inside of the exhaust pipe is provided with a first partition plate along the length direction thereof, so that the corresponding part of the inner cavity of the exhaust pipe is divided into the air flow channel and the water flow channel, and the pipe wall of the corresponding part of the exhaust pipe protrudes outward to form the water collecting groove. This facilitates the arrangement of the air flow channel, the water flow channel and the water collecting groove in the exhaust pipe, and avoids complex internal structure of the exhaust pipe.
[0015] Further, the air flow channel and the water flow channel are arranged above and below in the second pipe section, and the air flow channel is located above the water flow channel, and the water collecting groove is formed by the downward protrusion of the bottom wall of the exhaust pipe at the corresponding part and is connected smoothly with the water outlet end of the water flow channel. In this way, the water flow can be better avoided from interfering with the air flow, and the condensed water collected in the water collecting groove can flow into the water flow channel.
[0016] Further, the cross section of the exhaust pipe is square and the inner surface of the exhaust pipe is smooth, and the bottom wall of the exhaust pipe at the position of the water collecting groove comprises a first wall connected with the first pipe section and a second wall connected with the second pipe section, wherein the first wall extends vertically and the second wall extends upwardly from bottom to top along the length direction of the exhaust pipe, and the lower end of the first wall is connected smoothly with the lower end of the second wall along the length direction of the first wall to form the water collecting groove. In this way, the condensed water formed in the first pipe section can be guided into the water collecting groove through the first wall, and when the water in the water collecting groove exceeds the designed capacity, the water can flow into the water flow channel smoothly.
[0017] Further, the first respirator comprises a cover shell covering the first air outlet and provided with the first air outlet end, and an air outlet fan installed in the cover shell, the first air outlet end of the first respirator vertically extends, and a second partition plate is vertically arranged in the first air outlet end to divide the first air outlet end into an air flow joint and a water flow joint, wherein the upper port of the air flow joint is connected with the air inlet end of the air flow channel, and the lower port is connected with the air outlet of the air outlet fan, the upper port of the water flow joint is connected with the water outlet end of the water flow channel, and the lower port is in fluid connection with a water guide structure arranged in the cover shell, and the water guide structure is used for guiding the water outlet of the water flow channel to the first air outlet. In this way, water vapor separation is realized in the first air outlet end of the first respirator, which is beneficial to the exhaust of the steam-containing air flow under the driving of the air outlet fan, and can also ensure that the condensed water can flow into the first respirator smoothly, avoiding that the condensed water cannot flow into the first respirator due to the wind pressure.
[0018] Compared with the prior art, the exhaust pipe is provided with the air flow channel and the water flow channel in the length direction, respectively, wherein the exhaust gas is exhausted from the first air outlet to the first air inlet through the air flow channel, and the condensed water formed in the exhaust pipe flows to the first air outlet of the first respirator through the water flow channel. Thus, water vapor separation is realized in the exhaust pipe, the condensed water formed is prevented from hindering the exhaust, the exhaust pipe is prevented from being blocked, the exhaust efficiency is ensured, the bubble sound caused by the condensed water blown by the air flow is avoided, the working noise is reduced, and the use experience of the user is improved. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a structure schematic view of the integrated cleaning machine in the embodiment of the utility model;
[0020] Figure 2 It is a sectional view of the integrated cleaning machine in the embodiment of the utility model;
[0021] Figure 3 It is Figure 2 It is an enlarged view of part A in the embodiment of the utility model;
[0022] Figure 4 It is Figure 2 It is an enlarged view of part B in the embodiment of the utility model;
[0023] Figure 5 It is a partial structure schematic view of the integrated cleaning machine in the embodiment of the utility model. DETAILED DESCRIPTION
[0024] The utility model will be described further in detail in combination with the embodiment of the drawings.
[0025] In the description of the utility model, need understanding is, the term "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom" "internal", "external", "clockwise", "counterclockwise", "axial", "radial", "circumferential" such as the orientation or positional relationship indicated by the figure is based on the orientation or positional relationship shown in the drawing, just for the convenience of describing the utility model and simplifying the description, and not indicate or imply that the device or element referred to must have a particular orientation, with a particular orientation configuration and operation, since the disclosed embodiment of the utility model can be arranged in different directions, so these directional terms are just as an illustration and should not be regarded as a limitation, such as "upper", "lower" is not necessarily limited to the direction opposite or consistent with the direction of gravity. In addition, the features defined as "first", "second" can be explicitly or implicitly include one or more features.
[0026] As Figures 1-5 The utility model discloses an integrated washing machine, including side by side setting first water tank 1 and second water tank 21, wherein, the first water tank 1 below setting has the first dishwasher 3 of washing inner bag 31, and the second water tank 21 can switch to second dishwasher 2. Further, still including overflow seat 6, this overflow seat 6 sets up between first water tank 1 and second water tank 21, and has first air inlet 61 and second air inlet 62, and first air inlet 61 with first dishwasher 3's first air outlet 311 fluidly connected with second air inlet 62 and second dishwasher 2's second air outlet (not shown) fluidly connected. Wherein, the first air outlet 311 is provided with the first breather 4, and the first air inlet 61 is communicated with the first air outlet end 40 of the first breather 4 through the exhaust pipe 5. And, the exhaust pipe 5 is provided with airflow channel 51 and water flow channel 52 respectively in its length direction, wherein, the exhaust gas is discharged from the first air outlet end 40 to the first air inlet 61 through the airflow channel 51, and the condensate formed in the exhaust pipe 5 flows to the first air outlet end 40 of the first breather 4 through the water flow channel 52.
[0027] As can be seen from the above, the air flow channel 51 and the water flow channel 52 are arranged in the length direction of the exhaust pipe 5, respectively, and the exhaust gas is discharged from the first air outlet 40 to the first air inlet 61 through the air flow channel 51, and the condensed water formed in the exhaust pipe 5 flows to the first air outlet 40 of the first breather 4 through the water flow channel 52. Thus, the water and gas in the exhaust pipe 5 are separated, the condensed water formed does not hinder the exhaust, the exhaust pipe 6 is prevented from being blocked, the exhaust efficiency is ensured, the bubble sound caused by the condensed water blown by the air flow is avoided, the working noise is reduced, and the user's use experience is improved. In addition, in the embodiment, the overflow port 11 is formed in the side wall of the first water tank 1, and the overflow seat 6 is in the form of a cover and covers the overflow port 11, as shown in Figure 1
[0028] Further, the water collecting groove 53 for collecting the condensed water formed in the exhaust pipe 5 is arranged in the exhaust pipe 5, and the groove of the water collecting groove 53 is in fluid communication with the water inlet end of the water flow channel 52. Thus, when the condensed water formed cannot be timely collected into the water flow channel 52, the air flow is not disturbed, and when the condensed water in the water collecting groove 53 accumulates to a certain amount (5-7 ml), it can be smoothly collected into the water flow channel 52. Further, the groove of the water collecting groove 53 is in fluid communication with the air outlet end of the air flow channel 51 and is staggered with the air flow direction of the air flow channel 51. In this way, on the one hand, the condensed water formed in the air flow channel 51 can be smoothly collected in the water collecting groove 53, and on the other hand, the air flow in the air flow channel 51 can be avoided.
[0029] Preferably, the water collecting groove 53 is located at the rear side of the water inlet end of the water flow channel 52 along the water flow direction of the water flow channel 52, and is located at the front side of the air outlet end of the air flow channel 51 along the air flow direction of the air flow channel 51. The condensed water formed at the air outlet end of the exhaust pipe 5 is more, and the water collecting groove 53 at the above position can better collect the condensed water formed in the exhaust pipe 5 in the water collecting groove 53.
[0030] Further, the exhaust pipe 5 includes the first pipe section 5a, the second pipe section 5b and the third pipe section 5c arranged continuously and connected smoothly in sequence from the first air inlet 61 to the first air outlet 40 of the first breather 4, as shown in Figure 2 As shown. The first pipe section 5a and the third pipe section 5c extend vertically, while the second pipe section 5b extends horizontally. The airflow channel 51 and the water flow channel 52 are arranged side-by-side on the second pipe section 5b and the third pipe section 5c. This allows the condensate formed in the exhaust pipe 5 to flow more effectively along the exhaust pipe 5 to the first respirator 4 under its own gravity, and finally back to the cleaning liner 31. Simultaneously, the airflow channel 51 and the water flow channel 52 are located in the second pipe section 5b and the third pipe section 5c, but not in the first pipe section 5a. This is because the first pipe section 5a extends vertically, and under the influence of wind pressure and the gravity of the condensate, water and air can automatically separate. This achieves water and air separation inside the exhaust pipe 5 while better ensuring exhaust efficiency (the first pipe section 5a retains a large exhaust diameter).
[0031] Preferably, such as Figure 2 As shown, the water collection groove 53 is located at the junction of the first pipe section 5a and the second pipe section 5b, and the water collection groove 53 is located at the lowest point of the first pipe section 5a. The first pipe section 5a is located at the air outlet of the exhaust pipe 5, so a large amount of condensate will be formed. Setting the water collection groove 53 at the lowest point of the first pipe section 5a is beneficial to fully collect the condensate formed in the first pipe section 5a.
[0032] Specifically, in this embodiment, a first partition 54 is provided inside the exhaust pipe 5 along its length to divide the corresponding part of the inner cavity of the exhaust pipe 5 into the airflow channel 51 and the water flow channel 52, and the pipe wall at the corresponding part of the exhaust pipe 5 protrudes outward to form the water collection groove 53. This facilitates the setting of the airflow channel 51, the water flow channel 52 and the water collection groove 53 in the exhaust pipe 5, avoiding a complex internal structure of the exhaust pipe 5.
[0033] Furthermore, the airflow channel 51 and water flow channel 52 at the second pipe section 5b are arranged vertically, with the airflow channel 51 located above the water flow channel 52. The water collection groove 53 is formed by the downward protrusion of the bottom pipe wall corresponding to the exhaust pipe 5 and is smoothly connected to the pipe wall of the exhaust pipe 5 at the water inlet end of the water flow channel 52. This better avoids water flow interfering with airflow and facilitates the flow of condensate collected in the water collection groove 53 into the water flow channel 52. Preferably, as shown... Figure 3As shown, the cross section of the exhaust pipe 5 is square and the inner surface of the exhaust pipe 5 is smooth, the bottom wall of the exhaust pipe 5 at the position of the water collecting groove 53 comprises a first wall 531 connected with the first pipe section 5a and a second wall 532 connected with the second pipe section 5b, wherein the first wall 531 extends vertically and the second wall 532 extends upwardly along the length direction of the exhaust pipe 5, and the lower end of the first wall 531 is connected with the lower end of the second wall 532 along the length direction of the first wall 531 to form the water collecting groove 53. In this way, the condensed water formed in the first pipe section 5a can be introduced into the water collecting groove 53 through the first wall 531, and when the water in the water collecting groove 53 exceeds the designed capacity (5-7 ml) during the continuous operation, the water can flow into the water flow channel 52 smoothly.
[0034] Further, the first breather 4 comprises a cover shell 41 covering the first air outlet 311 and provided with the first air outlet end 40, and an air outlet fan 42 installed in the cover shell 41, the first air outlet end 40 of the first breather 4 extends vertically, and the inside of the first air outlet end 40 is vertically separated by a second partition plate 45 into an air flow joint 43 and a water flow joint 44, wherein the upper end of the air flow joint 43 is connected with the air inlet end of the air flow channel 51, and the lower end is connected with the air outlet 421 of the air outlet fan 42, the upper end of the water flow joint 44 is connected with the water outlet end of the water flow channel 52, and the lower end is in fluid communication with a water guide structure (not shown, which is a prior structure, comprising holes, gaps, flow guide walls and other structures arranged in the cover shell 41) arranged in the cover shell 41, and the water guide structure is used to guide the water outlet of the water flow channel 52 to the first air outlet 311. In this way, the water vapor is separated in the first air outlet end 40 of the first breather 4, which is beneficial to the exhaust of the air flow containing steam under the drive of the air outlet fan 42, and can also ensure that the condensed water flows into the first breather 4 smoothly, avoiding that the condensed water cannot flow into the first breather 4 due to the wind pressure.
[0035] The "fluid communication" in the utility model refers to the spatial position relationship between two components or parts (hereinafter referred to as the first part and the second part), i.e. the fluid (gas, liquid or mixture of the two) can flow or / and be transported from the first part to the second part along the flow path, which can be directly connected between the first part and the second part, or indirectly connected between the first part and the second part through at least one third party, which can be a fluid passage such as a pipeline, a channel, a conduit, a flow guide, a hole, a groove, etc., or a chamber allowing fluid to flow, or a combination thereof.
Claims
1. An integrated washing machine comprising a first sink (1) and a second sink (21) arranged side by side, wherein, The first water tank (1) is provided with a first dishwasher (3) having a cleaning inner container (31), and the second water tank (21) can be switched to a second dishwasher (2), further comprising an overflow seat (6) provided between the first water tank (1) and the second water tank (21) and having a first air inlet (61) and a second air inlet (62), and the first air inlet (61) is in fluid communication with a first air outlet (311) of the first dishwasher (3) and the second air inlet (62) is in fluid communication with a second air outlet of the second dishwasher (2), wherein the first air outlet (311) is provided with a first breather (4), and the first air inlet (61) is connected to a first air outlet end (40) of the first breather (4) through an exhaust pipe (5), characterized in that the exhaust pipe (5) is provided with an air flow channel (51) and a water flow channel (52) in the length direction thereof, respectively, wherein the exhaust gas is discharged from the first air outlet end (40) to the first air inlet (61) through the air flow channel (51), and the condensed water formed in the exhaust pipe (5) flows to the first air outlet end (40) of the first breather (4) through the water flow channel (52).
2. The integrated cleaning machine of claim 1, wherein, The exhaust pipe (5) is further provided with a water collecting groove (53) for collecting the condensed water formed in the exhaust pipe (5), and the groove opening of the water collecting groove (53) is in fluid communication with the water inlet end of the water flow channel (52).
3. The integrated cleaning machine of claim 2, wherein, The groove opening of the water collecting groove (53) is in fluid communication with the air outlet end of the air flow channel (51) and is staggered with the air flow direction of the air flow channel (51).
4. The integrated cleaning machine of claim 3, wherein, The water collecting groove (53) is located at the rear side of the water inlet end of the water flow channel (52) along the water flow direction of the water flow channel (52), and is located at the front side of the air outlet end of the air flow channel (51) along the air flow direction of the air flow channel (51).
5. The integrated washing machine according to any of claims 2 to 4, characterized in that, The exhaust pipe (5) sequentially comprises a first pipe section (5a), a second pipe section (5b) and a third pipe section (5c) which are continuously arranged and smoothly connected from the first air inlet (61) to the first air outlet end (40) of the first breather (4), wherein the first pipe section (5a) and the third pipe section (5c) extend upward and downward respectively, and the second pipe section (5b) extends horizontally, and the air flow channel (51) and the water flow channel (52) are arranged side by side on the second pipe section (5b) and the third pipe section (5c).
6. The integrated cleaning machine of claim 5, wherein, The water collecting groove (53) is located at the junction of the first pipe section (5a) and the second pipe section (5b), and the water collecting groove (53) is located at the lowest position of the first pipe section (5a).
7. The integrated cleaning machine of claim 6, wherein, The first partition plate (54) is arranged in the length direction of the exhaust pipe (5) to divide the corresponding positions of the inner cavity of the exhaust pipe (5) into the air flow channel (51) and the water flow channel (52), and the pipe wall of the corresponding position of the exhaust pipe (5) is protruded outward to form the water collecting groove (53).
8. The integrated cleaning machine of claim 7, wherein, The air flow channel (51) and the water flow channel (52) are arranged in an up-down manner at the second pipe section (5b), and the air flow channel (51) is located above the water flow channel (52), and the water collecting groove (53) is formed by the downward protrusion of the bottom wall of the exhaust pipe (5) at the corresponding position and is connected with the water flow channel (52) in a smooth manner.
9. The integrated cleaning machine of claim 8, wherein, The cross section of the exhaust pipe (5) is square, and the inner surface of the exhaust pipe (5) is smooth, the bottom wall of the exhaust pipe (5) at the position of the water collecting groove (53) includes a first wall (531) connected with the first pipe section (5a) and a second wall (532) connected with the second pipe section (5b), wherein the first wall (531) extends vertically, and the second wall (532) extends upwardly along the length direction of the exhaust pipe (5), and the lower end of the first wall (531) is connected with the lower end of the second wall (532) in a smooth manner along the length direction to form the water collecting groove (53).
10. The integrated cleaning machine of any one of claims 1-9, wherein, The first respirator (4) includes a cover shell (41) covering the first air outlet (311) and provided with a first air outlet end (40) and an air outlet fan (42) installed in the cover shell (41), the first air outlet end (40) of the first respirator (4) extends vertically, and the inside of the first air outlet end (40) is vertically separated by a second partition plate (45) to divide into an air flow connector (43) and a water flow connector (44), wherein the upper end of the air flow connector (43) is connected with the air inlet end of the air flow channel (51), and the lower end is connected with the air outlet (421) of the air outlet fan (42), the upper end of the water flow connector (44) is connected with the water outlet end of the water flow channel (52), and the lower end is connected with a water guide structure arranged in the cover shell (41) in a fluid manner, and the water guide structure is used to guide the water outlet of the water flow channel (52) to the first air outlet (311).
Citation Information
Patent Citations
Integrated cleaning machine device
CN221383467U