Salt chlorine machine

By setting up special devices at the air inlet and outlet ends of the box of the salt chlorine machine, heat dissipation is achieved using airflow, and the opening and closing of the vents is controlled through the baffle, the existing salt chlorine machine has been solved, and more efficient heat dissipation and better waterproof performance are achieved.

CN119977087AActive Publication Date: 2025-05-13CHLORITECH INTERNATIONAL CO LTD
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Patent Information

Application Number
CN202510242237.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2025-05-13
Estimated Expiration
2045-03-03

AI Technical Summary

Technical Problem

The existing high-power salt and chlorine machines achieve heat dissipation by increasing the heat dissipation area or expanding the heat dissipation port, resulting in low heat dissipation efficiency and difficulty in preventing external liquid from entering, affecting the waterproof, dustproof and insect-proof effect.

Method used

A salt chlorine machine is designed. By providing an air inlet device at the air inlet end of the box and an air outlet device at the air outlet end, these devices are used to deflect the incoming gas, forming an airflow to achieve heat dissipation, and shielding the ventilation openings through a control baffle to form a sealing structure to prevent external liquid from entering.

Benefits of technology

It improves the heat dissipation efficiency of the salt and chlorine machine, enhances the waterproof quality, and avoids the entry of external liquids, thereby improving the stability and safety of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a salt chlorine machine, and belongs to the technical field of water treatment equipment. The salt chlorine machine comprises a box body, an air inlet device and an air outlet device, an accommodating cavity is defined by the box body, and the box body is provided with an air inlet end and an air outlet end which are communicated with the accommodating cavity; the air inlet device is arranged at the air inlet end and at least comprises an air inlet plate, a first draught fan and a first baffle, the air inlet plate is provided with a first ventilation opening communicating with the air inlet end in a penetrating mode, and the first baffle is slidably connected with the air inlet plate so as to open or shield the first ventilation opening; the air outlet device is arranged at the air outlet end and at least comprises a supporting frame, a second draught fan and a second baffle, the supporting frame is provided with a second ventilation opening communicating with the air outlet end in a penetrating mode, and the second baffle is slidably connected with the supporting frame so as to open or shield the second ventilation opening. According to the salt chlorine machine provided by the invention, the air inlet device is arranged at the air inlet end of the box body, so that the accommodating cavity can be cooled; and in addition, external liquid can be prevented from entering the containing cavity through the air inlet end and the air outlet end, and the waterproof quality is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of water treatment equipment, and in particular to a salt chlorine machine. Background Art

[0002] Conventional high-power salt-chlorine machines now achieve heat dissipation by increasing the heat dissipation area or making large heat dissipation ports. Not only is the heat dissipation efficiency low, but the large heat dissipation ports also make it difficult to prevent water, dust and insects. Summary of the invention

[0003] In view of this, the purpose of this application is to overcome the deficiencies in the prior art and provide a salt chlorine machine.

[0004] The present application provides the following technical solution: a salt chlorine machine, comprising:

[0005] A box body defines a receiving cavity, wherein the box body is provided with an air inlet end and an air outlet end communicating with the receiving cavity;

[0006] An air inlet device is arranged at the air inlet end, the air inlet device at least comprises an air inlet plate, a first fan and a first baffle, the air inlet plate is penetrated by a first vent connected to the air inlet end, the first baffle is slidably connected to the air inlet plate to open or cover the first vent, the first fan has a first air inlet and a first air outlet, the first air inlet faces the first vent, and the first air outlet faces the accommodating cavity;

[0007] An air outlet device is arranged at the air outlet end, and the air outlet device at least includes a support frame, a second fan and a second baffle. The support frame is penetrated by a second vent connected to the air outlet end. The second baffle is slidably connected to the support frame to open or cover the second vent. The second fan has a second air inlet and a second air outlet. The second air inlet faces the accommodating cavity, and the second air outlet faces the second vent.

[0008] In some embodiments, the air intake device includes a first driving device, a first driving wheel is provided at the output end of the first driving device, a first rack is provided on a side of the first baffle facing the first driving wheel, and the first driving wheel is meshed with the first rack.

[0009] In some embodiments, the air inlet device further includes a first base and a condenser, the first base is connected to the air inlet plate, and an installation space is defined between the first base and the air inlet plate, and the condenser is disposed in the installation space;

[0010] The first fan is connected to the first base and is accommodated in the installation space.

[0011] In some embodiments, a first connecting plate and a second connecting plate are provided on one side of the air inlet plate facing the first base, the first connecting plate is adjacent to the edge of the first vent, so that the installation space is divided into a first cavity and a second cavity by the first connecting plate and the second connecting plate, and the first cavity is communicated with the first vent;

[0012] The air inlet plate is penetrated by a guide hole, and the guide hole is communicated with the second cavity.

[0013] In some embodiments, a guide surface is provided on the side of the air inlet plate facing the second cavity, one end of the guide surface is adjacent to the guide hole, and the distance from the guide surface to the side of the air inlet plate facing away from the first base gradually decreases from the side far away from the guide hole to the side close to the guide hole.

[0014] In some embodiments, a guide groove is provided on the side of the air inlet plate facing the second cavity, and one end of the guide groove is connected to the guide hole;

[0015] The guide groove is arranged between the second connecting plate and the guide surface.

[0016] In some embodiments, the air outlet device includes a second driving device, a second driving wheel is provided at the output end of the second driving device, a second rack is provided on the side of the second baffle facing the second driving wheel, and the second driving wheel is meshed with the second rack.

[0017] In some embodiments, the box body includes a bottom plate and a shell, and the bottom plate and the shell are connected to define the accommodating cavity;

[0018] A waterproof pad is provided between the support frame and the bottom plate, the waterproof pad is provided with a through hole, and the air outlet is communicated with the second vent through the through hole.

[0019] In some embodiments, a rain shield is provided on a side of the bottom plate facing away from the housing, and the rain shield covers the air outlet end;

[0020] A side of the rain shield facing the bottom plate is provided with a clearance groove, and a side of the rain shield facing the air outlet device is provided with an opening.

[0021] In some embodiments, a groove is provided on the edge of the rain shield toward the first side of the bottom plate, a waterproof adhesive layer is provided in the groove, and the waterproof adhesive layer abuts against the bottom plate on one side toward the bottom plate.

[0022] The embodiments of the present application have the following advantages: by arranging an air inlet device at the air inlet end of the box body and arranging an air outlet device at the air outlet end of the box body, the air inlet device and the air outlet device can form a guide effect on the gas entering the accommodating chamber, so as to form an airflow in the accommodating chamber, thereby heat dissipating the accommodating chamber; by controlling the first baffle to cover the first vent, and the second baffle to cover the second vent, a sealing structure is formed at the air outlet end and the air inlet end respectively, thereby preventing external liquid from entering the accommodating chamber through the air inlet end and the air outlet end, thereby improving the waterproof quality.

[0023] In order to make the above-mentioned objects, features and advantages of the present application more obvious and understandable, preferred embodiments are given below and described in detail with reference to the attached drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for use in the embodiments will be briefly introduced below. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other related drawings can be obtained based on these drawings without paying creative work.

[0025] Figure 1 A schematic structural diagram of a salt chlorine machine from one perspective is shown in some embodiments of the present invention;

[0026] Figure 2 A schematic structural diagram of a salt chlorine machine from another perspective is shown in some embodiments of the present invention;

[0027] Figure 3 Shows Figure 2 Cross-sectional view of the middle AA section;

[0028] Figure 4 Shows Figure 3 Enlarged view of middle part B;

[0029] Figure 5 A schematic structural diagram showing a perspective of the interior of a salt chlorine machine provided by some embodiments of the present invention;

[0030] Figure 6 A schematic structural diagram showing another perspective of the interior of a salt chlorine machine provided by some embodiments of the present invention;

[0031] Figure 7 A structural schematic diagram showing a perspective view of the connection between a condenser and a first baffle in a salt chlorine machine provided by some embodiments of the present invention;

[0032] Figure 8A structural schematic diagram showing a first embodiment of a second air outlet device in a salt chlorine machine provided by some embodiments of the present invention from one viewing angle;

[0033] Fig. 9 A structural schematic diagram showing a second embodiment of a second air outlet device in a salt chlorine machine provided by some embodiments of the present invention from one viewing angle;

[0034] Fig.10 A schematic structural diagram showing a perspective of an air inlet plate in a salt chlorine machine provided by some embodiments of the present invention;

[0035] Fig.11 A schematic structural diagram of a rain shield in a salt chlorine machine from one perspective is shown in some embodiments of the present invention;

[0036] Fig.12 A structural schematic diagram showing a first base in a salt chlorine machine provided by some embodiments of the present invention from one perspective;

[0037] Fig.13 A structural schematic diagram showing another perspective of a first base in a salt chlorine machine provided by some embodiments of the present invention;

[0038] Fig.14 A structural schematic diagram showing a support frame in a salt chlorine machine provided by some embodiments of the present invention from one perspective;

[0039] Fig.15 A structural schematic diagram of a waterproof pad in a salt chlorine machine provided by some embodiments of the present invention is shown from one perspective.

[0040] Description of main component symbols:

[0041] 100-box; 110-accommodating chamber; 120-air inlet end; 130-air outlet end; 200-air inlet device; 210-air inlet plate; 220-first fan; 230-first baffle; 211-first vent; 300-air outlet device; 310-support frame; 320-second fan; 330-second baffle; 311-second vent; 312-second guide hole; 240-first driving device; 241-first driving wheel; 231-first rack; 250-first base; 251-first mounting position; 252-second mounting position; 253-accommodating slot; 254-card slot; 255-limiting member; 260-condenser; 261-condensing box; 2611-first guide Flow port; 2612-second flow guide port; 2613-first guide hole; 262-refrigeration plate; 270-installation space; 400-first connecting plate; 500-second connecting plate; 271-first cavity; 272-second cavity; 280-first insect-proof net; 212-flow guide hole; 213-flow guide surface; 214-flow guide groove; 340-second driving device; 341-second driving wheel; 331-second rack; 350-second insect-proof net; 140-bottom plate; 150-housing; 600-waterproof pad; 610-through hole; 700-rain shield; 710-gap groove; 720-opening; 800-partition; 730-groove; 1000-power supply; 1100-control board. DETAILED DESCRIPTION

[0042] The embodiments of the present application are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present application, and cannot be understood as limiting the present application.

[0043] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly on the other element or there may be a central element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be a central element at the same time. In contrast, when an element is referred to as being "directly on" another element, there is no intermediate element. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.

[0044] In this application, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", "fixed" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to specific circumstances.

[0045] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of this application, the meaning of "plurality" is two or more, unless otherwise clearly and specifically defined.

[0046] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art to which this application belongs. The terms used herein in the specification of the template are only for the purpose of describing specific embodiments and are not intended to limit this application. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0047] like Figures 1 to 6 As shown, some embodiments of the present application provide a salt chlorine machine, which includes a housing 100 , an air inlet device 200 and an air outlet device 300 .

[0048] The box body 100 defines a accommodating cavity 110 , and the box body 100 is provided with an air inlet end 120 and an air outlet end 130 connected to the accommodating cavity 110 . It is understandable that external gas can enter the accommodating cavity 110 through the air inlet end 120 and be discharged from the air outlet end 130 , thereby forming an air flow channel in the box body 100 .

[0049] The air inlet 120 and the air outlet 130 are arranged at intervals on the side wall of the box 100. In some embodiments, the air inlet 120 and the air outlet 130 are arranged on the same side of the box 100; in other embodiments, the air inlet 120 is arranged on one side of the box 100, and the air outlet 130 is arranged on the other side of the box 100; it can be understood that the air inlet 120 and the air outlet 130 are respectively arranged on two adjacent sides of the box 100, or the air inlet 120 and the air outlet 130 are respectively arranged on two opposite sides of the box 100, which can be specifically set according to actual conditions.

[0050] In this embodiment, the air inlet device 200 is accommodated in the accommodating cavity 110, and is connected to the box body 100, and the air inlet device 200 is arranged at the air inlet end 120, so that the air inlet device 200 can guide, filter or block the gas entering the accommodating cavity 110 through the air inlet end 120.

[0051] Among them, the air inlet device 200 includes at least an air inlet plate 210, a first fan 220 and a first baffle 230. The air inlet plate 210 is connected to the inner wall of the box body 100. The connection method between the air inlet plate 210 and the box body 100 includes any one of bonding, magnetic connection, bolt connection, clamping, threaded connection or one-piece molding, which can be specifically set according to actual conditions.

[0052] In addition, the air inlet plate 210 is provided with a first vent 211 communicating with the air inlet end 120, and the first baffle 230 is slidably connected to the air inlet plate 210 so as to open or cover the first vent 211 through the first baffle 230. It should be noted that when heat dissipation is required, the first baffle 230 slides relative to the air inlet plate 210 and opens the first vent 211 so that external gas can enter the accommodating chamber 110 through the air inlet end 120 and the first vent 211 and be discharged from the air outlet end 130, thereby forming an airflow in the accommodating chamber 110, thereby heat dissipating the salt chlorinator in the accommodating chamber 110, that is, the heat in the accommodating chamber 110 is taken out from the air outlet end 130 through the airflow, so as to prevent the temperature in the salt accommodating chamber 110 from rising, thereby ensuring the stability of the operation of the salt chlorinator. When heat dissipation is not required, the first baffle 230 slides relative to the air inlet plate 210, and the first vent 211 is blocked by the first baffle 230, that is, the first vent 211 is sealed by the first baffle 230 to prevent external gas or liquid from entering the accommodating cavity 110 through the air inlet end 120 and the first vent 211. In other words, at this time, the first baffle 230 can block the gas and liquid outside the box 100 to prevent the gas or liquid outside the box 100 from entering the accommodating cavity 110, thereby forming a waterproof structure at the air inlet end 120 of the box 100.

[0053] In this embodiment, the first fan 220 has a first air inlet (not shown in the figure) and a first air outlet (not shown in the figure), the first air inlet faces the first vent 211, and the first air outlet faces the accommodating chamber 110, so that during the operation of the first fan 220, the gas outside the box 100 can be guided into the accommodating chamber 110 to form an airflow in the accommodating chamber 110, so as to bring out the heat in the accommodating chamber 110 through the gas flowing through the accommodating chamber 110, thereby achieving the purpose of lowering the temperature of the accommodating chamber 110.

[0054] In addition, the air outlet device 300 is accommodated in the accommodating cavity 110, the air outlet device 300 is arranged at the air outlet end 130, and the air outlet device 300 is connected to the inner wall of the box body 100. The connection method between the air outlet device 300 and the box body 100 includes any one of snap connection, bonding, magnetic connection, bolt connection, threaded connection or integrated molding, which can be specifically set according to actual conditions.

[0055] In this embodiment, the air outlet device 300 is connected to the box body 100 by bolts to ensure the stability of the connection between the air outlet device 300 and the box body 100, while improving the installation or disassembly efficiency between the air outlet device 300 and the box body 100 to facilitate maintenance, replacement or cleaning.

[0056] The air outlet device 300 at least includes a support frame 310, a second fan 320, and a second baffle 330. The support frame 310 is provided with a second vent 311 communicating with the air outlet end 130, so that the gas flowing through the accommodating chamber 110 can pass through the second vent 311 and be discharged from the air outlet end 130. The second fan 320 has a second air inlet (not shown in the figure) and a second air outlet (not shown in the figure). The second air inlet faces the accommodating chamber 110, and the second air outlet faces the second vent 311, so that during the operation of the second fan 320, the gas outside the accommodating chamber 110 can be directed to the outside of the box body 100, so as to form an airflow in the accommodating chamber 110, so as to take out the heat in the accommodating chamber 110 through the gas flowing through the accommodating chamber 110, thereby achieving the purpose of reducing the temperature of the accommodating chamber 110.

[0057] In this embodiment, the air outlet device 300 can provide diversion and guidance for the gas in the accommodating chamber 110, that is, the gas in the accommodating chamber 110 can be discharged from the air outlet end 130 under the diversion effect of the air outlet device 300. At the same time, external gas can enter the accommodating chamber 110 from the air inlet end 120 to form an airflow in the accommodating chamber 110, thereby reducing the temperature in the accommodating chamber 110 through the airflow.

[0058] In this embodiment, the second baffle 330 is slidably connected to the support frame 310, so that the second vent 311 is opened or covered during the sliding process of the second baffle 330 relative to the support frame 310. It should be noted that when heat dissipation is required, the second baffle 330 slides relative to the support frame 310 and opens the second vent 311, so that the gas in the accommodating chamber 110 can pass through the second vent 311 and be discharged from the air outlet 130. At the same time, the external gas can enter the accommodating chamber 110 from the air inlet 120 and the first vent 211, so as to form an airflow in the accommodating chamber 110, thereby forming heat dissipation for the salt chlorinator in the accommodating chamber 110, that is, the heat in the accommodating chamber 110 is taken out from the air outlet 130 by the airflow, so as to prevent the temperature in the salt accommodating chamber 110 from rising, thereby ensuring the stability of the operation of the salt chlorinator. When heat dissipation is not required, the second baffle 330 slides relative to the support frame 310, and the second vent 311 is blocked by the second baffle 330, that is, the second vent 311 is sealed by the second baffle 330 to prevent external gas or liquid from entering the accommodating cavity 110 through the air outlet end 130 and the second vent 311. In other words, at this time, the second baffle 330 can block the gas and liquid outside the box 100 to prevent the gas or liquid outside the box 100 from entering the accommodating cavity 110, thereby forming a waterproof structure at the air inlet end 120 of the box 100.

[0059] By setting an air inlet device 200 at the air inlet end 120 of the box body 100 and setting an air outlet device 300 at the air outlet end 130 of the box body 100, the air inlet device 200 and the air outlet device 300 can form a guide effect on the gas entering the accommodating chamber 110, so as to form an airflow in the accommodating chamber 110, thereby heat dissipating the accommodating chamber 110; by controlling the first baffle plate 230 to cover the first vent 211, and the second baffle plate 330 to cover the second vent 311, a sealing structure is formed at the air outlet end 130 and the air inlet end 120 respectively, so as to prevent external liquid from entering the accommodating chamber 110 through the air inlet end 120 and the air outlet end 130, thereby improving the waterproof quality.

[0060] like Figure 3 and Figure 4 As shown, in some embodiments of the present application, the air inlet device 200 includes a first driving device 240 , which is accommodated in the accommodating cavity 110 , and the first driving device 240 is arranged on a side of the air inlet plate 210 facing the accommodating cavity 110 .

[0061] The output end of the first driving device 240 is provided with a first driving wheel 241 , and the first driving wheel 241 is coaxially connected to the output end of the first driving device 240 , so that the first driving wheel 241 can be driven to rotate coaxially during the operation of the first driving device 240 .

[0062] In addition, a first rack 231 is provided on one side of the first baffle 230 facing the first driving wheel 241 , and the first driving wheel 241 meshes with the first rack 231 , so that the first driving wheel 241 can drive the first rack 231 to move during rotation, thereby driving the first baffle 230 to move through the first rack 231 .

[0063] It should be noted that, in some embodiments, when the first driving wheel 241 rotates clockwise, the first driving wheel 241 drives the first rack 231 to move toward the direction close to the first vent 211, and the first rack 231 drives the first baffle 230 to block the first vent 211 to prevent liquid outside the box body 100 from entering the accommodating chamber 110; when the first driving wheel 241 rotates counterclockwise, the first driving wheel 241 drives the first rack 231 to move away from the first vent 211, and the first baffle 230 opens the first vent 211, so that the gas outside the box body 100 can enter the accommodating chamber 110 through the air inlet end 120 and the first vent 211, and be discharged from the air outlet end 130, so as to form airflow in the accommodating chamber 110, thereby forming a heat dissipation effect on the accommodating chamber 110.

[0064] like Figure 4 , Figure 5 and Figure 7 As shown, in some embodiments of the present application, the air inlet device 200 also includes a first insect-proof net 280, which covers the air inlet end 120 along the air inlet direction of the air inlet end 120, and the edge of the first insect-proof net 280 is connected to the edge of the first vent 211, so as to prevent insects outside the box 100 from entering into the accommodating cavity 110 through the first vent 211 through the first insect-proof net 280, thereby ensuring the stability and safety of the operation of components inside the accommodating cavity 110.

[0065] In some embodiments, a first annular step is provided at the edge of the first vent 211, and the edge of the first insect-proof net is connected to the first annular step. The connection between the first insect-proof net and the first annular step includes any one of bonding, clamping or bolting, which can be specifically set according to actual conditions.

[0066] It can be understood that by providing a first annular step on the edge of the first vent 211 so that the side of the first insect-proof net facing the accommodating chamber 110 is flush with the side of the air inlet plate 210 facing the accommodating chamber 110, not only can the space utilization be improved, but also the first vent 211 can be completely sealed during the sliding process of the first baffle 230 relative to the air inlet plate 210, thereby ensuring the sealing quality of the first baffle 230 to the first vent 211, thereby improving the waterproof quality of the salt chlorine machine.

[0067] like Figures 4 to 7 As shown, in some embodiments of the present application, the air inlet device 200 also includes a first base 250 and a condenser 260, the first base 250 is connected to the air inlet plate 210, and the first base 250 is arranged on the side of the air inlet plate 210 facing the accommodating cavity 110, and an installation space 270 is defined between the first base 250 and the air inlet plate 210, and the first driving device 240, the first baffle 230 and the condenser 260 are respectively arranged in the installation space 270.

[0068] The first fan 220 is connected to the first base 250 , and the first fan 220 is accommodated in the installation space 270 . The first fan 220 is connected to the first base 250 .

[0069] In this embodiment, the base is provided with an installation opening connected to the installation space 270 , the first fan 220 is received in the installation opening, and the first fan 220 is connected to the inner wall of the installation opening.

[0070] It should be noted that the condenser 260 can cool and condense the gas entering the installation space 270, so that the gas cooled by the condenser 260 enters the accommodating cavity 110 through the first fan 220, so as to further reduce the temperature in the accommodating cavity 110 and improve the heat dissipation efficiency and heat dissipation quality of the accommodating cavity 110.

[0071] like Figure 4 and Fig.10 As shown, in some embodiments of the present application, a first connecting plate 400 and a second connecting plate 500 are provided on the side of the air inlet plate 210 facing the first base 250, and the first connecting plate 400 and the second connecting plate 500 are respectively perpendicular to the air inlet plate 210, and the first connecting plate 400 and the second connecting plate 500 are perpendicular to each other, and the first connecting plate 400 is adjacent to the edge of the first vent 211, so as to separate the installation space 270 into a connected first cavity 271 and a second cavity 272 through the first connecting plate 400 and the second connecting plate 500, and the first cavity 271 is connected to the first vent 211.

[0072] The air inlet plate 210 is penetrated by a guide hole 212, which penetrates the air inlet plate 210 in a direction perpendicular to the air inlet plate 210, and the guide hole 212 is located on the side of the first connecting plate 400 away from the first baffle 230, and the guide hole 212 is connected to the second cavity 272, so that the condensed water in the second cavity 272 can be discharged through the guide hole 212. It can be understood that the guide hole 212 and the first vent 211 are arranged at intervals.

[0073] Specifically, in this embodiment, the condenser 260 is disposed in the second cavity 272. It should be noted that since the gas entering the installation space 270 is cooled by the condenser 260, condensed water will be generated in the second cavity 272, and the condensed water can be discharged from the second cavity 272 through the guide hole 212.

[0074] It can be understood that the first connecting plate 400 can limit and block the condensed water entering the second cavity 272 to prevent the condensed water in the second cavity 272 from entering the first cavity 271, thereby ensuring the stability and smoothness of the gas outside the box 100 entering the accommodating cavity 110 through the air inlet end 120 and the first vent 211.

[0075] like Figure 3 , Figure 4 , Figure 5 and Figure 7 As shown, in some embodiments of the present application, the condenser 260 is arranged in the first cavity 271, and the condenser 260 includes a condensation box 261 and a cooling fin 262, and the cooling fin 262 is arranged on the outer surface of the condensation box 261, and the cooling fin 262 is attached to the outer surface of the condensation box 261. It should be noted that the cooling fin 262 is electrically connected to the control board 1100, so as to control the start, shutdown or adjustment of the operating temperature of the cooling fin 262 through the control board 1100, thereby realizing the adjustment of the temperature of the condensation box 261. In addition, the number of cooling fins 262 can be specifically set according to actual conditions. In some embodiments, the condenser 260 includes a plurality of cooling fins 262, and the plurality of cooling fins 262 are evenly distributed on the outer surface of the condensation box 261, so as to ensure the uniformity of the temperature adjustment of the condensation box 261.

[0076] The condensation box 261 is a hollow structure, and a first guide port 2611 is provided on the side of the condensation box 261 facing the air inlet plate 210, and the first guide port 2611 is connected to the air inlet end 120 provided on the air inlet plate 210, and a second guide port 2612 is provided on the side of the condensation box 261 facing the first fan 220, and the first guide port 2611 and the second guide port 2612 are connected, and the first cavity 271 and the second cavity 272 are connected through the second guide port 2612, so as to form a condensation channel in the condensation box 261, so that the external gas can pass through the air inlet. The gas enters the condensation box 261 through the end 120 and the first guide port 2611, is cooled by the condensation box 261, and is discharged into the second cavity 272 from the second guide port 2612. The gas in the second cavity 272 is guided to the accommodating cavity 110 by the first fan 220. The gas flowing through the condensation channel can be cooled by the condensation box 261, thereby reducing the temperature of the gas entering the accommodating cavity 110. The gas is discharged from the air outlet after heat conduction between the gas and the various components in the accommodating cavity 110, thereby reducing the temperature of the various components in the accommodating cavity 110, thereby achieving the purpose of cooling.

[0077] In addition, first guide holes 2613 are respectively provided on two opposite sides of the condensation box 261, and the first rack 231 is penetrated through the first guide hole 2613, and the first rack 231 and the hole wall of the first guide hole 2613 are smoothly connected, so that the hole wall of the first guide hole 2613 forms a guiding and limiting effect on the first rack 231, so as to ensure the stability of the first rack 231 during the movement. Since the first rack 231 is connected to the first baffle 230, the first baffle 230 can be driven to move synchronously through the first rack 231, so that the first baffle 230 can cover or open the air inlet end 120 during the movement. It should be noted that the first baffle 230 can completely cover the air inlet end 120.

[0078] like Figure 4 , Fig.12 and Fig.13As shown, in some embodiments of the present application, a portion of the first base 250 facing the air inlet plate 210 is recessed toward a side away from the air inlet plate 210, and defines a receiving groove 253, and a groove wall of the receiving groove 253 is provided with a clamping groove 254, and the edge of the air inlet plate 210 is received in the clamping groove 254, so as to connect the air inlet plate 210 and the first base 250, and at the same time, the notch of the receiving groove 253 is covered by the air inlet plate 210. In addition, a stopper 255 is provided on a side of the first base 250 adjacent to the notch of the notch 253, and the stopper 255 abuts against a side of the air inlet plate 210 away from the first base 250, so as to form a limiting effect on the air inlet plate 210 through the stopper 255 and the first base 250, so as to prevent the air inlet plate 210 from falling off the first base 250, and ensure the stability of the air inlet plate 210 on the first base 250.

[0079] In this embodiment, the first base 250 is provided with a first mounting position 251 and a second mounting position 252, the first fan 220 is arranged at the first mounting position 251, and the first driving device 240 is arranged at the second mounting position 252, wherein the first mounting position 251 is a mounting opening, the first fan 220 is accommodated in the mounting opening, and the first fan 220 is connected to the inner wall of the mounting opening to ensure that during the operation of the first fan 220, the gas in the mounting space 270 can enter the cavity through the mounting opening to form an air flow channel. In addition, the second mounting position 252 is a mounting groove, the first driving device 240 is accommodated in the mounting groove, and the groove wall of the mounting groove forms a limiting effect on the first driving device 240 to ensure the stability of the first driving device 240 in the mounting groove.

[0080] like Figure 3 and Fig.10 As shown, in some embodiments of the present application, a guide surface 213 is provided on the side of the air inlet plate 210 facing the second cavity 272, that is, the guide plate is arranged on the side of the first connecting plate 400 away from the first vent 211, and one end of the guide surface 213 is adjacent to the guide hole 212, so as to provide a guiding effect on the condensed water entering the second cavity 272 through the guide surface 213, so that the condensed water enters the guide hole 212 under the guiding effect of the guide surface 213 and is discharged from the guide hole 212.

[0081] Specifically, the distance from the guide surface 213 to the side of the air inlet plate 210 away from the first base 250 gradually decreases from the side away from the guide hole 212 to the side close to the guide hole 212, so as to ensure that the condensed water can flow into the guide hole 212 through the guide surface 213, so as to ensure the smoothness and efficiency of the diversion of the condensed liquid entering the second cavity 272.

[0082] like Figure 3 , Figure 4 and Fig.10 As shown, in some embodiments of the present application, a guide groove 214 is provided on the side of the air inlet plate 210 facing the second cavity 272, and one end of the guide groove 214 is connected to the guide hole 212, so as to provide a guiding effect on the condensed water in the second cavity 272 through the guide groove 214, so as to prevent the condensed water from accumulating in the second cavity 272, so as to further improve the diversion efficiency of the condensed water.

[0083] Among them, the guide groove 214 is arranged between the second connecting plate 500 and the guide surface 213, and the guide groove 214 is inclined from one end of the guide hole 212 to the other end close to the guide hole 212, so that the condensed water entering the guide groove 214 can flow to the guide hole 212 under the guiding action of the guide groove 214, thereby improving the diversion efficiency and diversion quality of the condensed water in the second cavity 272, and avoiding water accumulation in the second cavity 272.

[0084] like Figure 6 , Figure 8 , Fig. 9 and Fig.14 As shown, in some embodiments of the present application, the air outlet device 300 includes a second driving device 340 , which is received in the accommodating cavity 110 , and the second driving device 340 is disposed on the supporting frame 310 .

[0085] The output end of the second driving device 340 is provided with a second driving wheel 341 , and the second driving wheel 341 is coaxially connected to the output end of the second driving device 340 , so that the second driving wheel 341 can be driven to rotate coaxially during the operation of the second driving device 340 .

[0086] In addition, a second rack 331 is provided on the side of the second baffle 330 facing the second driving wheel 341, and the second driving wheel 341 meshes with the second rack 331, so that the second driving wheel 341 can drive the second rack 331 to move during rotation, thereby driving the second baffle 330 to move through the second rack 331.

[0087] It should be noted that, in some embodiments, when the second driving wheel 341 rotates clockwise, the second driving wheel 341 drives the second rack 331 to move toward the direction close to the second vent 311, and the second rack 331 drives the second baffle 330 to block the second vent 311, and at the same time, the air outlet end 130 is sealed by the second baffle 330 to prevent liquid outside the box 100 from entering the accommodating chamber 110; when the second driving wheel 341 rotates counterclockwise, the second driving wheel 341 drives the second rack 331 to move away from the second vent 311, and the second baffle 330 opens the second vent 311 and the air outlet end 130, so that the gas in the accommodating chamber 110 can be discharged from the box 100 through the air outlet end 130 and the second vent 311, so as to form an airflow in the accommodating chamber 110, thereby forming a heat dissipation effect on the accommodating chamber 110.

[0088] Specifically, along the moving direction of the second rack 331, the support frame 310 is penetrated by a second guide hole 312, and the second rack 331 is penetrated by the second guide hole 312. The outer wall of the second rack 331 is slidably connected with the hole wall of the second guide hole 312, so as to form a limiting effect on the second rack 331 through the hole wall of the second guide hole 312, so as to ensure the stability and smoothness of the second rack 331 during the sliding process relative to the support frame 310 driven by the second driving device 340.

[0089] like Figure 1 , Figure 2 , Figure 6 and Fig.15 As shown, in some embodiments of the present application, the box body 100 includes a bottom plate 140 and a shell 150, and the bottom plate 140 and the shell 150 are connected to define the accommodating cavity 110. The connection between the bottom plate 140 and the shell 150 includes any one of bonding, clamping, bolt connection, threaded connection, magnetic connection or integrated molding, which can be specifically set according to actual conditions.

[0090] Among them, a waterproof pad 600 is provided between the support frame 310 and the bottom plate 140, and the waterproof pad 600 is provided with a through hole 610. The air outlet end 130 is connected with the second vent 311 through the through hole 610, so that the gas in the accommodating cavity 110 can be discharged from the air outlet end 130 through the second vent 311 and the through hole 610. The provision of the waterproof pad 600 can improve the waterproof quality between the bottom plate 140 and the support frame 310 to prevent external liquid from entering the accommodating cavity 110 from the gap between the bottom plate 140 and the support frame 310, so as to improve the waterproof quality.

[0091] In this embodiment, the waterproof pad 600 is a waterproof silicone pad.

[0092] like Figure 8 As shown, in some embodiments of the present application, the air outlet device 300 also includes a second insect-proof net 350, which covers the air outlet end 130 along the air outlet direction of the air outlet end 130, and the second insect-proof net 350 is connected to the bottom plate 140 to prevent insects outside the box 100 from entering into the accommodating cavity 110 through the second vent 311 through the second insect-proof net 350, thereby ensuring the stability and safety of the operation of components inside the accommodating cavity 110.

[0093] like Figure 2 and Fig.11 As shown, in some embodiments of the present application, a rain shield 700 is provided on the side of the bottom plate 140 facing away from the outer shell 150, and the rain shield 700 covers the air outlet end 130 to form a waterproof structure at the air outlet end 130 through the rain shield 700 to prevent external liquid from entering the accommodating cavity 110 through the air outlet end 130.

[0094] Among them, the rain shield 700 is provided with a clearance groove 710 on the side facing the bottom plate 140, and the rain shield 700 is provided with an opening 720 on the side facing the air outlet device 300. The clearance groove 710 is connected with the air outlet end 130, so that the gas in the accommodating cavity 110 can pass through the air outlet end 130 and the clearance groove 710 and be discharged from the opening 720 to form an air flow channel.

[0095] It should be noted that, in this embodiment, the opening 720 is arranged on the side of the rain shield 700 facing the air inlet device 200 in the vertical direction to prevent external liquid from entering the clearance groove 710 and the air outlet end 130 under the action of gravity, thereby improving the waterproof quality of the rain shield 700.

[0096] like Fig.11 As shown, in some embodiments of the present application, a plurality of spaced-apart partitions 800 are disposed at the bottom of the recess 710 , and the plurality of partitions 800 are staggered along the direction of the opening 720 .

[0097] It is understandable that the number of the partitions 800 can be two or more than two, and can be set according to actual conditions.

[0098] In this embodiment, the number of the partitions 800 is at least three.

[0099] It should be noted that by staggering the plurality of baffles 800, the plurality of baffles 800 can be used to block the liquid between the opening 720 and the air outlet 130, so as to prevent the external liquid from entering the air outlet 130 through the opening 720 and the clearance groove 710, and entering the accommodating cavity 110 from the second vent 311, so as to further improve the waterproof quality. In addition, by staggering the plurality of baffles 800, the gas in the accommodating cavity 110 can be discharged through the gap between the adjacent baffles 800, so as to ensure the smoothness of the gas in the accommodating cavity 110 being discharged from the air outlet 130, thereby ensuring the stability of heat dissipation.

[0100] It should be noted that the direction of the opening 720 is vertical, and by placing the salt chlorine machine vertically, the gravity factor can achieve a waterproof effect.

[0101] like Figure 2 and Fig.11 As shown, in some embodiments of the present application, a groove 730 is provided on the first side of the edge of the rain shield 700 facing the bottom plate 140, and a waterproof adhesive layer is provided in the groove 730. The side of the waterproof adhesive layer facing the bottom plate 140 abuts against the bottom plate 140, so as to form a sealed connection structure between the edge of the rain shield 700 and the bottom plate 140 through the waterproof adhesive layer, so as to prevent the liquid outside the box body 100 from entering the make way groove 710 and the air outlet end 130 through the gap between the rain shield 700 and the bottom plate 140, thereby further improving the waterproof quality of the rain shield 700 and the waterproof quality of the salt chlorine machine.

[0102] like Figures 4 to 6 As shown, in some embodiments of the present application, a power supply 1000 and a control board 1100 are provided in the accommodating cavity 110, and the control board 1100 is electrically connected to the power supply 1000 so as to provide electric energy to the control board through the power supply 1000, and the air inlet device 200 and the air outlet device 300 are electrically connected to the control board 1100 respectively so as to control the air outlet device 300 and the air inlet device 200 respectively through the control board.

[0103] The control board 1100 and the power supply 1000 are respectively installed on one side of the bottom plate 140 facing the housing 150 .

[0104] Specifically, the first drive device 240, the second drive device 340, the first fan 220, and the second fan 320 are respectively connected to the control panel to control the start or stop of the first drive device 240, the second drive device 340, the first fan 220, and the second fan 320 through the control panel.

[0105] In all examples shown and described herein, any specific values ​​should be interpreted as merely exemplary and not as limiting, and thus other examples of the exemplary embodiments may have different values.

[0106] It should be noted that similar reference numerals and letters denote similar items in the following drawings, and therefore, once an item is defined in one drawing, further definition and explanation thereof is not required in subsequent drawings.

[0107] The above-mentioned embodiments only express several implementation methods of the present application, and the descriptions thereof are relatively specific and detailed, but they cannot be understood as limiting the scope of the present application. It should be pointed out that, for ordinary technicians in this field, several variations and improvements can be made without departing from the concept of the present application, and these all belong to the protection scope of the present application.

Claims

1. A salt chlorine machine, characterized in that: include: A box body defines a receiving cavity, wherein the box body is provided with an air inlet end and an air outlet end communicating with the receiving cavity; An air inlet device is arranged at the air inlet end, the air inlet device at least comprises an air inlet plate, a first fan and a first baffle, the air inlet plate is penetrated by a first vent connected to the air inlet end, the first baffle is slidably connected to the air inlet plate to open or cover the first vent, the first fan has a first air inlet and a first air outlet, the first air inlet faces the first vent, and the first air outlet faces the accommodating cavity; An air outlet device is arranged at the air outlet end, and the air outlet device at least includes a support frame, a second fan and a second baffle. The support frame is penetrated by a second vent connected to the air outlet end. The second baffle is slidably connected to the support frame to open or cover the second vent. The second fan has a second air inlet and a second air outlet. The second air inlet faces the accommodating cavity, and the second air outlet faces the second vent.

2. The salt chlorine machine according to claim 1, characterized in that The air inlet device includes a first driving device, an output end of the first driving device is provided with a first driving wheel, a first rack is provided on a side of the first baffle facing the first driving wheel, and the first driving wheel is meshed with the first rack.

3. The salt chlorine machine according to claim 1, characterized in that The air inlet device further includes a first base and a condenser, wherein the first base is connected to the air inlet plate, and an installation space is defined between the first base and the air inlet plate, and the condenser is arranged in the installation space; The first fan is connected to the first base and is accommodated in the installation space.

4. The salt chlorine machine according to claim 3, characterized in that A first connecting plate and a second connecting plate are provided on one side of the air inlet plate facing the first base, the first connecting plate is adjacent to the edge of the first vent, so that the installation space is divided into a first cavity and a second cavity by the first connecting plate and the second connecting plate, and the first cavity is communicated with the first vent; The air inlet plate is penetrated by a guide hole, and the guide hole is communicated with the second cavity.

5. The salt chlorine machine according to claim 4, characterized in that A guide surface is provided on the side of the air inlet plate facing the second cavity, one end of the guide surface is adjacent to the guide hole, and the distance from the guide surface to the side of the air inlet plate facing away from the first base gradually decreases from the side far away from the guide hole to the side close to the guide hole.

6. The salt chlorine machine according to claim 4, characterized in that A guide groove is provided on one side of the air inlet plate facing the second cavity, and one end of the guide groove is connected to the guide hole; The guide groove is arranged between the second connecting plate and the guide surface.

7. A salt chlorine machine according to any one of claims 1 to 6, characterized in that The air outlet device includes a second driving device, an output end of the second driving device is provided with a second driving wheel, a second rack is provided on a side of the second baffle facing the second driving wheel, and the second driving wheel is meshed with the second rack.

8. A salt chlorine machine according to any one of claims 1 to 6, characterized in that The box body comprises a bottom plate and an outer shell, wherein the bottom plate and the outer shell are connected to define the accommodating cavity; A waterproof pad is provided between the support frame and the bottom plate, the waterproof pad is provided with a through hole, and the air outlet is communicated with the second vent through the through hole.

9. The salt chlorine machine according to claim 8, characterized in that A rain shield is provided on one side of the bottom plate away from the shell, and the rain shield covers the air outlet end; A side of the rain shield facing the bottom plate is provided with a clearance groove, and a side of the rain shield facing the air outlet device is provided with an opening.

10. The salt chlorine machine according to claim 9, characterized in that A groove is provided on the first side of the edge of the rain shield facing the bottom plate, a waterproof adhesive layer is provided in the groove, and a side of the waterproof adhesive layer facing the bottom plate abuts against the bottom plate.

Citation Information

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