Container cleaning machine with respirator

By incorporating a breather and drainage components into the container cleaning machine, the problem of poor drainage of washing liquid is solved by utilizing gravity circulation and a blocking structure, ensuring the safety and normal operation of the container cleaning machine.

CN224055942UActive Publication Date: 2026-03-31GUANGZHOU LIGHTWEIGHT INNOVATION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing container washing machines have problems with poor drainage of washing liquid from the inner tank, which may lead to problems such as the drain hose being squeezed, bursting, or leaking.

Method used

Design a container cleaning machine with a breather. By connecting the breather to the drainage component and the inner liner, the washing liquid is circulated within the breather by gravity, which avoids leakage and explosion caused by excessive pressure. A blocking structure is adopted to prevent backflow of the washing liquid.

Benefits of technology

This ensures effective drainage of the washing liquid, preventing leaks and explosions caused by excessive pressure in the drain hose, and guaranteeing the normal operation and safety of the container cleaning machine.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a container cleaning machine with a respirator, which comprises an inner container, an outer container and an inner container, the inner container comprises a washing cavity, a circulating water inlet hole and a water outlet hole, and the washing cavity is communicated with the circulating water inlet hole and the water outlet hole; the drainage component is connected with the inner container, and a water inlet of the drainage component is communicated with the drainage hole; the breather is connected with the drainage component, a water inlet of the breather is communicated with a water outlet of the drainage component, the breather is further connected with the inner container, and a circulating water outlet of the breather is communicated with a circulating water inlet hole of the inner container; wherein the drainage component is used for driving the washing liquid from the drainage hole of the inner container to the water inlet of the respirator, and the washing liquid in the respirator can be discharged from the drainage hole of the respirator under the action of gravity. The washing liquid in the respirator can enter the circulating water inlet hole of the inner container from the circulating water outlet of the respirator and then flow into the washing cavity of the inner container.
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Description

Technical Field

[0001] This application relates to the field of container cleaning technology, and more particularly to a container cleaning machine with a breather. Background Technology

[0002] Containers such as baby bottles are everyday containers for holding milk or drinking water. A baby bottle generally consists of two main parts: the bottle body and the nipple. Tools for cleaning baby bottles include handheld cleaners or brushes, as well as bottle washing machines.

[0003] Existing container washing machines, such as baby bottle washing machines, have a drain hole in their inner tank to drain the washing liquid from the tank to the outside. Specifically, the inner tank is connected to a drain hose, and the drain hole of the inner tank is connected to the drain hose, which transfers the washing liquid from the inner tank to the outside of the container washing machine. However, in practical applications, the drain hose can be squeezed, causing the washing liquid in the inner tank to fail to drain in a timely manner. Utility Model Content

[0004] This application provides a container cleaning machine with a respirator, which can effectively discharge the washing liquid in the inner tank of the container cleaning machine to the outside of the container cleaning machine.

[0005] This application provides a container cleaning machine with a respirator, comprising:

[0006] The inner tank includes a washing chamber, a circulating water inlet, and a drain hole, wherein the washing chamber is connected to the circulating water inlet and the drain hole; a drain component is connected to the inner tank, and the inlet of the drain component is connected to the drain hole; and

[0007] A respirator is connected to a drainage component, and the inlet of the respirator is connected to the outlet of the drainage component. The respirator is also connected to an inner liner, and the circulation outlet of the respirator is connected to the circulation inlet of the inner liner.

[0008] The drainage component is used to drive the washing liquid from the drain hole of the inner liner to the inlet of the respirator. The washing liquid in the respirator can be discharged from the drain hole of the respirator under the action of gravity. The washing liquid in the respirator can also enter the circulation inlet of the inner liner from the circulation outlet of the respirator and flow into the washing chamber of the inner liner.

[0009] In one optional embodiment of this application, the container cleaning machine has a height direction;

[0010] The inlet of the respirator is located below the circulation inlet in the height direction; and / or

[0011] The inlet of the respirator is located above the highest point of the washing chamber used to hold the washing liquid in the height direction.

[0012] In one optional embodiment of this application, the container washing machine has a height direction, and the inner liner further includes an opening communicating with the washing chamber, the opening being located at the top of the inner liner in the height direction;

[0013] The container washing machine also includes a top cover, which can cover and open the opening of the inner liner. The top cover has an exhaust hole, and the washing chamber is connected to the outside air of the container washing machine through the opening and the exhaust hole.

[0014] In one optional embodiment of this application, a blocking structure is further included, disposed on the respirator and / or the inner liner, the blocking structure being used to prevent the washing liquid in the inner liner from entering the respirator from the circulation inlet and circulation outlet of the inner liner.

[0015] In one optional embodiment of this application, the container cleaning machine has a height direction;

[0016] The blocking structure includes a first blocking structure and a second blocking structure. The respirator includes the first blocking structure, which extends in the height direction from below the respirator's circulation outlet to a portion of the respirator's circulation outlet. The inner liner includes the second blocking structure, which extends in the height direction from above the inner liner's circulation inlet to a portion of the inner liner's circulation inlet. The free end of the first blocking structure is located above the free end of the second blocking structure in the height direction, or both free ends are flush, so that the first blocking structure and the second blocking structure can jointly prevent the washing liquid in the inner liner from entering the respirator from the inner liner's circulation inlet and circulation outlet; or

[0017] The blocking structure includes a first blocking structure, and the respirator includes the first blocking structure. The first blocking structure extends in the height direction from below the circulating water outlet of the respirator to a portion of the location of the circulating water outlet of the respirator. The first blocking structure is used to prevent the washing liquid in the inner tank from entering the respirator from the circulating water inlet and the circulating water outlet of the inner tank; or

[0018] The blocking structure includes a second blocking structure, and the inner liner includes the second blocking structure. The second blocking structure extends in the height direction from above the circulation inlet of the inner liner to the portion where the circulation inlet of the inner liner is located. The second blocking structure is used to prevent the washing liquid in the inner liner from entering the respirator from the circulation inlet and the circulation outlet of the inner liner.

[0019] In one optional embodiment of this application, the container cleaning machine has a height direction;

[0020] The blocking structure includes a first blocking structure, and the respirator includes the first blocking structure. The first blocking structure extends in the height direction from below the circulating water outlet of the respirator to the portion where the circulating water outlet of the respirator is located. The first blocking structure is used to prevent the washing liquid in the inner tank from entering the respirator from the circulating water inlet and the circulating water outlet of the inner tank.

[0021] The first blocking structure includes a blocking body disposed in the circulation outlet and a return plate connected to the blocking body and disposed at an inclination. The end of the return plate near the inner tank is located below the end away from the inner tank in the height direction, so that the washing liquid in the inner tank can be blocked by the first blocking structure when it enters the circulation outlet and can flow back to the circulation inlet of the inner tank through the return plate.

[0022] In one optional embodiment of this application, the respirator includes a first connecting structure arranged around the circulating water outlet of the respirator;

[0023] The inner liner includes a second connecting structure arranged around the circulation inlet hole of the inner liner, and the first connecting structure and the second connecting structure are connected.

[0024] In one optional embodiment of this application, the connection method between the first connection structure and the second connection structure includes one of the following connection methods:

[0025] The first connection structure and the second connection structure are nested together.

[0026] One of the first connecting structure and the second connecting structure is a connecting groove and the other is a connecting ring, with the connecting ring placed inside the connecting groove;

[0027] The second connecting structure includes a first connecting ring and a second connecting ring. The second connecting ring forms an annular groove around the first connecting ring. The first connecting structure is disposed in the annular groove such that the inner and outer sides of the first connecting structure are limited by the first connecting ring and the second connecting ring.

[0028] In one optional embodiment of this application, the respirator includes a sidewall and a top cover, the top cover being disposed on top of the sidewall, and the connection between the top cover and the sidewall includes one of the following connection methods:

[0029] The top cover is fixed to the top of the side wall and cannot be removed;

[0030] The top cover can be attached to the top of the side wall and can be detached from the top of the side wall.

[0031] In one optional embodiment of this application, an electronic control device is also included. The drainage component and the electronic control device are electrically connected. Under the control of the electronic control device, the drainage component can drive the washing liquid from the drain hole of the inner liner to the water inlet of the respirator. Attached Figure Description

[0032] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0033] To gain a more complete understanding of this application and its beneficial effects, the following description will be provided in conjunction with the accompanying drawings, wherein the same reference numerals in the following description denote the same parts.

[0034] Figure 1 and Figure 2 This is a partial structural schematic diagram of the container cleaning machine according to an embodiment of this application.

[0035] Figure 3 This is a partial structural cross-sectional view of the container cleaning machine according to an embodiment of this application.

[0036] Figure 4 for Figure 3 A magnified view of the Y region.

[0037] Figure 5 and Figure 6 This is a partial structural cross-sectional view of the container cleaning machine according to an embodiment of this application.

[0038] Figure 7 for Figure 6 A magnified view of a portion of the Z-axis.

[0039] Figure 8 and Figure 9 This is a schematic diagram of the structure of the respirator according to an embodiment of this application.

[0040] Figure 10 This is a schematic diagram of the electrical connection between the electrical control device and the drainage component in an embodiment of this application.

[0041] in:

[0042] 10a. Container cleaning machine;

[0043] 1100 Inner tank; 1101 Circulation water inlet; 1102 Drain hole; 1103 Drain hole; 1104 Washing chamber; 1105 Opening; 1110 Side wall; 1111 First connecting ring; 1112 Second connecting ring; 1113 Annular groove; 1114 Second blocking structure; 1115 Fixing structure; 1120 Bottom wall; 1130 Mounting shell; 1300 Top cover; 1301 Vent hole;

[0044] 2000, Breathing apparatus; 2001, Inlet; 2002, Circulating outlet; 2003, Outlet; 2004, Receiving cavity; 2011, First socket; 2033, Second socket; 2100, Side wall; 2200, Top cover; 2300, Bottom wall; 2400, First blocking structure; 2410, Blocking body; 2420, Return plate; 2500, First connecting structure; 2600, Fixing plate; 2601, Fixing hole;

[0045] 3000, Drainage component; 3001, Inlet; 3002, Outlet; 3100, First pipe body; 3200, Second pipe body; 3300, Third pipe body; 3301, Drain outlet;

[0046] 4000, Electrical control device. Detailed Implementation

[0047] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. The following description of at least one exemplary embodiment is merely illustrative and is in no way intended to limit the application or its application or use. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the protection scope of this application.

[0048] In this document, references to "embodiment" or "implementation" mean that a particular feature, structure, or characteristic described in connection with an embodiment or implementation may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0049] like Figures 1 to 9As shown in the figure, this application provides a container cleaning machine 10a with a respirator 2000, hereinafter referred to as container cleaning machine 10a. The container cleaning machine 10a can clean containers such as baby bottles and water cups. The container cleaning machine 10a includes an inner liner 1100, a drainage component 3000, and a respirator 2000.

[0050] like Figure 2 As shown, the container cleaning machine 10a has a height direction F1, which can be understood as the height direction of the bottom of the container cleaning machine 10a placed on the placement surface.

[0051] The inner tank 1100 includes a washing chamber 1104, a circulating water inlet 1101, and a drain hole 1102. The washing chamber 1104 is connected to the circulating water inlet 1101 and the drain hole 1102. The inner tank 1100 can accommodate at least one shelf, such as an upper shelf and a lower shelf, which can hold containers. The container washing machine 10a may also include at least one rotating spray arm, such as an upper rotating spray arm and a lower rotating spray arm, which can rotate within the inner tank 1100 and spray washing liquid to clean the containers inside the inner tank 1100. The upper and lower rotating spray arms can rotate using the pressure of the washing liquid. For example, both arms have power holes. Under pressure, such as from a pressure pump, the washing liquid enters the upper and lower spray arms and is sprayed out through the power holes. The spraying of washing liquid generates a force in the opposite direction to the direction of the sprayed liquid, causing the upper and lower spray arms to rotate. Both arms also have spray holes that spray washing liquid towards the upper and lower shelves to clean the containers located on them. The washing liquid sprayed from the upper and lower spray arms collects inside the inner liner 1100 and is discharged outside the inner liner 1100 through the drain hole 1102.

[0052] For example, the inner liner 1100 may include a side wall 1110 and a bottom wall 1120. The side wall 1110 is connected to the periphery of the bottom wall 1120, defining the washing chamber 1104. After the side wall 1110 and the bottom wall 1120 are connected, an opening 1105 is also defined. The opening 1105 is located at the top of the inner liner 1100 in the height direction F1, or in other words, the opening 1105 is located at the end of the side wall 1110 away from the bottom 1120. A circulation water inlet 1101 is provided on the side wall 1110; and a drain hole 1102 is provided on the bottom wall 1120.

[0053] The drainage component 3000 is connected to the inner liner 1100, and its inlet 3001 and drain hole 1103 are in communication. For example, the inner liner 1100 may further include a mounting shell 1130, which is disposed below the bottom wall 1120. A power pump can be installed inside the mounting shell 1130. The mounting shell 1130 and the drain hole 1102 of the inner liner 1100 are in communication. The drainage component 3000 and the mounting shell 1130 are connected, and their inlet 3001 and drain hole 1103 are in communication. For example, the drainage component 3000 and the mounting shell 1130 are connected via a first pipe 3100, and the inlet 3001 of the drainage component 3000 and the drain hole 1103 of the mounting shell 1130 are in communication via a channel in the first pipe 3100.

[0054] For example, the drainage component 3000 may include a water pump.

[0055] The respirator 2000 is connected to the drainage component 3000, and the inlet 2001 of the respirator 2000 and the outlet 3002 of the drainage component 3000 are in communication. For example, the respirator 2000 and the drainage component 3000 are connected via a second tube 3200, and the inlet 2001 of the respirator 2000 and the outlet 3002 of the drainage component 3000 are in communication via a channel in the second tube 3200. For example, the respirator 2000 includes a first socket 2011 defining the inlet 2001, and the second tube 3200 and the first socket 2011 are interlocked, for example, the second tube 3200 can be fitted onto the first socket 2011.

[0056] The respirator 2000 is also connected to the inner liner 1100, and the circulating water outlet 2002 of the respirator 2000 communicates with the circulating water inlet 1101 of the inner liner 1100. For example, the respirator 2000 is mounted to the outer surface of the side wall 1110 of the inner liner 1100 via a fixing structure. The fixing structure of the respirator 2000 may include multiple fixing plates 2600, each fixing plate 2600 having a fixing hole 2601. Correspondingly, the outer surface of the side wall 1110 of the inner liner 1100 is provided with multiple fixing structures 1115, which can be fixed to the fixing structures 1115 by fasteners such as screws passing through the fixing holes 2601.

[0057] For example, the respirator 2000 may include a sidewall 2100 and a top cover 2200, with the top cover 2200 disposed on top of the sidewall 2100. In an optional embodiment, the top cover 2200 and the sidewall 2100 may be connected in such a way that the top cover 2200 is fixed to the top of the sidewall 2100 and cannot be removed. This allows the top cover 2200 to completely seal the top of the sidewall 2100, forming a sealed structure on the top of the sidewall 2100, ensuring that the washing fluid flows within the respirator 2000 without splashing out from the connection between the sidewall 2100 and the top cover 2200. The non-removable connection between the top cover 2200 and the sidewall 2100 may be integrally injection molded or fixed together by welding. In another optional embodiment, the top cover 2200 and the side wall 2100 can be connected in a detachable manner at the top. That is, the top cover 2200 can be attached to the top of the side wall 2100 and can be detached from the top of the side wall 2100, thereby facilitating maintenance of the respirator 2000 and cleaning of its interior. In this embodiment, the top cover 2200 and the side wall 2100 are tightly connected, which also prevents the washing liquid inside the respirator 2000 from splashing out from the connection point. The detachable connection between the top cover 2200 and the side wall 2100 can be achieved by a snap-fit ​​or by screw locking.

[0058] For example, at least two of the plurality of fixing plates 2600 are disposed on the outer surface of the side wall 2100, such as two fixing plates 2600 disposed on the side wall 2100 and disposed opposite to each other. At least one of the plurality of fixing plates 2600 is disposed on the top cover 2200.

[0059] The drainage component 3000 drives the washing liquid from the drain hole 1102 of the inner tank 1100 to the inlet 2001 of the breather 2000. The washing liquid inside the breather 2000 can be discharged from the drain hole 2003 under gravity. The washing liquid in the breather 2000 can also enter the circulation inlet 1101 of the inner tank 1100 from the circulation outlet 2002 of the breather 2000 and flow into the washing chamber 1104 of the inner tank 1100. Compared to the existing technology that uses a drain hose for drainage, when the drain hose is improperly placed or blocked, causing abnormal drainage, the washing liquid cannot be discharged normally outside the container washing machine. Excessive pressure in the drain hose may also lead to explosions or leaks. Therefore, in this embodiment, the washing liquid inside the respirator 2000 can also enter the washing chamber 1104 through the circulation outlet 2002 and then the circulation inlet 1101, forming a circulating flow of the washing liquid. This prevents the pressure on the entire system of the container cleaner 10a from increasing, which could lead to ruptures or leaks at various water pipe joints, thus effectively solving the problem. Furthermore, in this embodiment, the container cleaner 10a will not siphon during the washing process, preventing all the washing liquid from overflowing from the drain outlet 2003 of the respirator 2000. Also, when the water inlet control of the container cleaner 10a is abnormal, excess water can be discharged without affecting the normal operation of the entire system.

[0060] For example, the respirator 2000 has a receiving cavity 2004 defined by a top cover 2200 and a side wall 2100, which is used to receive washing liquid. In other alternative embodiments, the respirator 2000 may further include a bottom wall 2300 connected to the bottom of the side wall 2100, and the top cover 2200, side wall 2100, and bottom wall 2300 together define the receiving cavity 2004. An inlet 2001 is provided on the side wall 2100; a circulating outlet 2002 is provided on the side wall 2100. For example, the inlet 2001 and the circulating outlet 2002 are provided on different surfaces of the side wall 2100. The drain outlet 2003 of the respirator 2000 is provided on the bottom wall 2300.

[0061] For example, the container cleaner 10a further includes a third tube 3300, which is connected to the bottom wall 2300 of the respirator 2000 and communicates with the drain outlet 2003 of the respirator 2000. For example, the respirator 2000 further includes a second sleeve 2033, which is disposed around the drain outlet 2003 and is sleeved onto the third tube 3300, for example, the third tube 3300 is sleeved onto the second sleeve 2033. The end of the third tube 3300 away from the respirator 2000 has a drain outlet 3301, which allows the washing liquid inside the respirator 2000 to be discharged to the outside of the container cleaner 10a. Compared to existing technologies, even if the third tube 3300 is blocked or improperly positioned and unable to drain, the washing fluid in the respirator 2000 can enter the washing chamber 1104 from the circulation outlet 2002 and flow into the circulation inlet 1101, forming a circulating flow of the washing fluid, thus preventing excessive pressure in the third tube 3300 from causing an explosion or leakage.

[0062] For example, such as Figure 5 The dashed arrows indicate the flow direction of the washing liquid circulation between the respirator 2000 and the inner tank 1100. Referring to other accompanying drawings, the washing liquid in the inner tank 1100 is driven by the drain component 3000 from the vent 1102 along the first flow direction a to the inlet 2001 of the respirator 2000. When the third tube 3300 can drain normally, the washing liquid entering the respirator 2000 along the first flow direction a flows along the third flow direction c under gravity to the drain 3301 and is discharged to the outside of the container washing machine 10a. However, if the third tube 3300 cannot drain in time, the washing liquid entering the respirator 2000 along the first flow direction a gradually accumulates until it reaches the circulation outlet 2002. Then, the washing liquid in the respirator 2000 flows along the second flow direction b to the circulation outlet 2002 and the circulation inlet 1101, entering the inner tank 1100 to achieve circulation.

[0063] For example, such as Figure 6 and Figure 7 Referring to other accompanying drawings, the inlet 2001 of the respirator 2000 is located below the circulation inlet 1101 in the height direction F. For example, the position of the inlet 2001 of the respirator 2000 in the height direction F can be defined as h1, which is located below the circulation inlet 1101 and below the circulation outlet 2002. Thus, when the third tube 3300 can drain normally, the washing liquid entering the respirator 2000 from the inlet 2001 can be preferentially discharged from the third tube 3300 to the outside of the container washing machine 10a.

[0064] For example, the inlet 2001 of the respirator 2000 is located above the highest point of the washing chamber 1104 used to hold the washing liquid in the height direction F1. For example, the highest point of the washing chamber 1104 used to hold the washing liquid is defined as h4, and h4 is located below h1. This ensures that the washing liquid in the respirator 2000 will not accidentally flow out of the container washer 10a, thus ensuring that the washing liquid in the washing chamber 1104 is sufficient.

[0065] For example, the container washer 10a also includes a top cover 130, which can cover and open the opening 1105 of the inner tank 1100. The washing chamber 1104 is connected to the external air of the container washer 10a through the opening 1105 and the exhaust port 1301, thereby ensuring that the air pressure in the washing chamber 1104 is consistent with the atmospheric pressure outside the container washer 10a. Moreover, when the circulating water outlet 2002 of the breather 2000 is connected to the circulating water inlet 1101, the air pressure in the receiving chamber 2004 of the breather 2000 is consistent with the air pressure in the washing chamber 1104. This achieves air pressure balance between the breather 2000 and the inner tank 1100, ensuring that the drainage component 3000 can quickly depressurize after generating water pressure and entering the breather 2000, avoiding damage or performance degradation of the container washer 10a due to pressure accumulation.

[0066] For example, the container cleaning machine 10a also includes a blocking structure disposed on the respirator 2000 and / or the inner tank 1100. The blocking structure is used to prevent the washing liquid in the inner tank 1100 from entering the respirator 2000 from the circulation inlet 1101 and circulation outlet 2002 of the inner tank 1100.

[0067] In one optional embodiment, the blocking structure includes a first blocking structure 2400 and a second blocking structure 1114. The respirator 2000 includes the first blocking structure 2400, which extends in the height direction F1 from below the circulation outlet 2002 of the respirator 2000 to the portion where the circulation outlet 2002 of the respirator 2000 is located. The inner liner 1100 includes the second blocking structure 1114, which extends in the height direction F1 from above the circulation inlet 1101 of the inner liner 1100 to the portion where the circulation inlet 1101 of the inner liner 1100 is located. In this configuration, the free end of the first blocking structure 2400 is positioned above the free end of the second blocking structure 1114 in the height direction F1, allowing the first blocking structure 2400 and the second blocking structure 1114 to jointly prevent the washing liquid in the inner liner 1100 from entering the respirator 2000 through the circulation inlet 1101 and circulation outlet 2002 of the inner liner 1100. For example, as shown... Figure 6 and Figure 7The position of the free end of the first blocking structure 2400 in the height direction F1 is defined as h3, and the position of the free end of the second blocking structure 1114 in the height direction F1 is defined as h2, with h3 located above h2. Alternatively, it can be understood that the projections of the first blocking structure 2400 onto the second blocking structure 1114 overlap, or that the projections of the second blocking structure 1114 onto the first blocking structure 2400 overlap. This completely prevents the washing liquid inside the inner liner 1100 from splashing into the respirator 2000. In other optional embodiments, the free ends of the first blocking structure 2400 and the second blocking structure 1114 are flush.

[0068] In another optional embodiment, the blocking structure includes only the first blocking structure 2400 and excludes the second blocking structure 1114. In yet another optional embodiment, the blocking structure includes only the second blocking structure 1114 and excludes the first blocking structure 2400. This can, to a certain extent, prevent the washing liquid inside the inner liner 1100 from splashing into the respirator 2000.

[0069] For example, a portion of the first blocking structure 2400 is disposed within the circulation outlet 2002.

[0070] For example, at least a portion of the second blocking structure 1114 is disposed within the circulation inlet hole 1101, such that the second blocking structure 1114 is completely located within the circulation inlet hole 1101.

[0071] For example, at least a portion of the first blocking structure 2400 is a semi-circular structure.

[0072] For example, the second blocking structure 1114 is a semi-circular structure.

[0073] For example, the first blocking structure 2400 includes a blocking body 2410 disposed in the circulation outlet 2002 and a return plate 2420 connected to the blocking body 2410 and disposed at an inclination. The end of the return plate 2420 near the inner tank 1100 is located below the end away from the inner tank 1100 in the height direction F1, so that the washing liquid in the inner tank 1100 can be blocked by the first blocking structure 2400 when it enters the circulation outlet 2002 and can flow back to the circulation inlet hole 1101 of the inner tank 1100 through the return plate 2420.

[0074] For example, the respirator 2000 includes a first connecting structure 2500 arranged in a circle around the circulating water outlet 2002 of the respirator 2000; the inner liner 1100 includes a second connecting structure arranged in a circle around the circulating water inlet 1101 of the inner liner 1100, and the first connecting structure 2500 and the second connecting structure are connected.

[0075] In one optional embodiment, the connection between the first connecting structure 2500 and the second connecting structure includes: the second connecting structure includes a first connecting ring 1111 and a second connecting ring 1112, the second connecting ring 1112 forming an annular groove 1113 around the first connecting ring 1111, and the first connecting structure 2500 being disposed within the annular groove 1113 such that the inner and outer sides of the first connecting structure 2500 are limited by the first connecting ring 1111 and the second connecting ring 1112. In another optional embodiment, the first connecting structure 2500 and the second connecting structure are nested together; for example, the second connecting structure includes only the first connecting ring 1111 and does not include the second connecting ring 1112. In yet another optional embodiment, one of the first connecting structure 2500 and the second connecting structure is a connecting groove and the other is a connecting ring, with the connecting ring placed within the connecting groove.

[0076] like Figure 10 As shown, the container washing machine 10a also includes an electrical control device 4000, which is electrically connected to the drainage component 3000. When powered on, the electrical control device 4000 can control the drainage component 3000. For example, under the control of the electrical control device 4000, the drainage component 3000 can drive the washing liquid from the drain hole 1102 of the inner liner 1100 to the inlet 2001 of the breather 2000, and then drive it into the breather 2000.

[0077] The container cleaning machine 10a with a respirator 2000 provided in the embodiments of this application has been described in detail above. Specific examples have been used to illustrate the principle and implementation of this utility model. The description of the above embodiments is only for the purpose of helping to understand the method and core idea of ​​this utility model. At the same time, for those skilled in the art, there will be changes in the specific implementation and application scope based on the idea of ​​this application. Therefore, the content of this specification should not be construed as a limitation of this application.

Claims

1. A container washing machine with a respirator, characterized by, The container cleaning machine comprises: a liner comprising a washing cavity, a circulating water inlet hole and a water outlet hole, the washing cavity being in communication with the circulating water inlet hole and the water outlet hole; a water draining component connected with the liner, and a water inlet of the water draining component being in communication with the water outlet hole; and a breather connected with the water draining component, and a water inlet of the breather being in communication with a water outlet of the water draining component, the breather being further connected with the liner, and a circulating water outlet of the breather being in communication with the circulating water inlet hole of the liner; wherein the water draining component is configured to drive the washing liquid from the water outlet hole of the liner to the water inlet of the breather, the washing liquid in the breather being capable of being drained from a water outlet of the breather under the action of gravity, and the washing liquid in the breather being further capable of flowing into the circulating water inlet hole of the liner from the circulating water outlet of the breather and then into the washing cavity of the liner.

2. The container washing machine with respirator according to claim 1, characterized by, The container cleaning machine has a height direction; the water inlet of the breather is located below the circulating water inlet hole in the height direction; and / or the water inlet of the breather is located above the highest position of the washing cavity for containing the washing liquid in the height direction.

3. The container washing machine with respirator according to claim 1, characterized by, The container cleaning machine has a height direction, and the liner further comprises an opening in communication with the washing cavity, the opening being located at the top of the liner in the height direction; The container cleaning machine further comprises a cover capable of covering and opening the opening of the liner, the cover being provided with an air outlet, and the washing cavity being in communication with the air outside the container cleaning machine through the opening and the air outlet.

4. The container washing machine with respirator according to claim 1, characterized by, The container cleaning machine further comprises a blocking structure provided in the breather and / or the liner, the blocking structure being configured to block the washing liquid in the liner from entering the breather through the circulating water inlet hole and the circulating water outlet of the liner.

5. The container washing machine with respirator according to claim 4, characterized in that, The container cleaning machine has a height direction; The blocking structure comprises a first blocking structure and a second blocking structure, the breather comprises the first blocking structure, the first blocking structure extending from below the circulating water outlet of the breather to a position where the circulating water outlet of the breather is located in the height direction, the liner comprises the second blocking structure, the second blocking structure extending from above the circulating water inlet hole of the liner to a position where the circulating water inlet hole of the liner is located in the height direction, a free end of the first blocking structure is located above a free end of the second blocking structure in the height direction or the free ends of the first and second blocking structures are flush with each other, so that the first and second blocking structures can jointly block the washing liquid in the liner from entering the breather through the circulating water inlet hole and the circulating water outlet of the liner; or The blocking structure comprises a first blocking structure, the breather comprises the first blocking structure, the first blocking structure extending from below the circulating water outlet of the breather to a position where the circulating water outlet of the breather is located in the height direction, and the first blocking structure is configured to block the washing liquid in the liner from entering the breather through the circulating water inlet hole and the circulating water outlet of the liner; or The blocking structure comprises a second blocking structure, the inner container comprises the second blocking structure, the second blocking structure extends from above the circulating water inlet hole of the inner container to a position where the circulating water inlet hole of the inner container is located in the height direction, and the second blocking structure is used to block the washing liquid in the inner container from entering the respirator through the circulating water inlet hole and the circulating water outlet.

6. The container washing machine with respirator according to claim 4, characterized by The container cleaning machine has a height direction; The blocking structure comprises a first blocking structure, the respirator comprises the first blocking structure, the first blocking structure extends from below the circulating water outlet of the respirator to a position where the circulating water outlet of the respirator is located in the height direction, and the first blocking structure is used to block the washing liquid in the inner container from entering the respirator through the circulating water inlet hole and the circulating water outlet. The first blocking structure comprises a blocking body arranged in the circulating water outlet and a reflux plate connected with the blocking body and arranged obliquely, one end of the reflux plate close to the inner container is located below the other end of the inner container in the height direction, so that the washing liquid in the inner container entering the circulating water outlet can be blocked by the first blocking structure and refluxed to the circulating water inlet hole of the inner container through the reflux plate.

7. The container washing machine with respirator according to any one of claims 1 to 6, characterized in that, The respirator comprises a first connecting structure arranged around the circulating water outlet of the respirator; The inner container comprises a second connecting structure arranged around the circulating water inlet hole of the inner container, and the first connecting structure and the second connecting structure are connected.

8. The container washing machine with respirator according to claim 7, characterized in that, The connection mode of the first connecting structure and the second connecting structure comprises one of the following connection modes: The first connecting structure and the second connecting structure are mutually sleeved; One of the first connecting structure and the second connecting structure is a connecting groove, and the other is a connecting protruding ring; The second connecting structure comprises a first connecting protruding ring and a second connecting protruding ring, the second connecting protruding ring surrounds the first connecting protruding ring to form an annular groove, and the first connecting structure is arranged in the annular groove so that the inner and outer sides of the first connecting structure are limited by the first connecting protruding ring and the second connecting protruding ring.

9. The container washing machine with respirator according to any one of claims 1 to 6, characterized in that, The respirator comprises a side wall and a top cover, the top cover is arranged at the top of the side wall, and the connection mode of the top cover and the side wall comprises one of the following connection modes: The top cover is fixed at the top of the side wall and cannot be detached; The top cover can be connected to the top of the side wall and can be detached from the top of the side wall.

10. The container washing machine with a respirator according to any one of claims 1 to 6, characterized in that, Further comprising an electric control device, the drain component and the electric control device are electrically connected, and the drain component can drive the washing liquid from the drain hole of the inner container to the water inlet of the respirator under the control of the electric control device.