Air conditioner type spraying framework and lamplight spraying equipment

By introducing an air-conditioned spray architecture into the spray system, combining the fog machine and refrigeration components to form a circulating supercooling zone, the problems of low cooling efficiency and poor applicability in the prior art are solved, and a more efficient environmental cooling effect is achieved.

CN223050143UActive Publication Date: 2025-07-01ZHENGZHOU DONGCAI ELECTROMECHANICAL TECH CO LTD
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Patent Information

Application Number
CN202422262959.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-07-01
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

In the prior art, the cooling efficiency is not high when the environmental cooling is directly carried out by spraying, and the overall applicability of the spray-coated part is poor when it encounters heat volatile substances, making it difficult to promote and apply.

Method used

The air-conditioned spray architecture is adopted, combining the fog machine component structure and the refrigeration component structure to form a circulating supercooling zone, significantly reducing the initial fog making temperature of the fog machine component structure and enhancing the overall fog making and cooling effect.

Benefits of technology

It significantly improves the fog cooling efficiency, enhances the overall cooling effect, and improves the functional coordination and applicability of the architecture.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an air-conditioning type spraying framework and lamplight spraying equipment, which comprises a fog machine assembly structure, a light source assembly structure and a light source assembly structure, a circulating supercooling area is formed in the refrigeration assembly structure, and the circulating supercooling area of the refrigeration assembly structure correspondingly passes through the interior of the water tank of the fog machine assembly structure. The technical problems that in the prior art, the cooling efficiency is not high when environment cooling is carried out directly through spraying, and the overall applicability is poor when environment cooling is carried out through cooperation of spraying and part of substances volatilized when heated are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of spray design, and more specifically, to an air-conditioning type spray structure and a lighting spray device. Background Art

[0002] Currently, when spraying for cooling in scenic spots or other occasions, the common cooling method is to directly spray through a fog machine. The tiny water droplets in the spray will quickly vaporize in the air, and by using the heat absorption characteristics during the vaporization process, the surrounding environmental temperature is decreased. In some fog machine water tanks, organic substances such as menthol are pre-added to further take away heat when heated and volatilized, so as to improve the overall cooling effect. Although the above cooling method can achieve a certain degree of cooling effect, the overall cooling efficiency is not high. Moreover, when adding organic substances such as menthol, it may cause discomfort to some sensitive people, and the overall applicability is poor, making it difficult to promote and apply. Summary of the Utility Model

[0003] Therefore, the utility model provides an air-conditioning type spray structure and a lighting spray device to solve the technical problems of low cooling efficiency when directly spraying for environmental cooling in the prior art and poor overall applicability when using spray in combination with some heat-volatile substances for environmental cooling.

[0004] To achieve the above object, the utility model provides the following technical solutions:

[0005] An air-conditioning type spray structure, comprising:

[0006] A fog machine component structure having a water tank;

[0007] A refrigeration component structure forming a circulating subcooling zone, and the circulating subcooling zone of the refrigeration component structure correspondingly passes through the interior of the water tank of the fog machine component structure.

[0008] Based on the above technical solutions, the following further description is made for the utility model:

[0009] As a further solution of the utility model,

[0010] The refrigeration component structure includes a compressor and an evaporator and a condenser respectively connected and communicated with the compressor to form a compression refrigeration cycle;

[0011] A circulating subcooling zone is formed through the evaporator based on the compression refrigeration cycle;

[0012] And the evaporator is correspondingly arranged inside the water tank of the fog machine component structure.

[0013] As a further solution of the utility model,

[0014] The structure of the fog machine assembly includes a high-pressure fog pump, a water tank, and a water suction head;

[0015] The input end of the high-pressure fog pump is connected to the water suction head through a pipeline;

[0016] The water suction head is correspondingly arranged inside the water tank.

[0017] As a further solution of the present invention, it further includes:

[0018] A DMX512 standard control board, which is respectively connected to the fog machine assembly structure and the refrigeration assembly structure through circuits.

[0019] As a further solution of the present invention,

[0020] The DMX512 standard control board is respectively connected with a fog machine variable-frequency drive assembly and an air-conditioning compressor variable-frequency drive assembly through circuits;

[0021] The fog machine variable-frequency drive assembly is connected to the fog machine assembly structure through a circuit, and the air-conditioning compressor variable-frequency drive assembly is connected to the refrigeration assembly structure through a circuit.

[0022] A lighting spray device includes the air-conditioning type spray architecture described above;

[0023] The lighting spray device further includes:

[0024] A fog machine assembly structure with a fog-making output end;

[0025] A fan blade assembly structure with a blade air-sending end, and the blade air-sending direction of the blade air-sending end corresponds to the fog-sending direction of the fog-making output end of the fog machine assembly structure;

[0026] A lighting assembly structure is arranged on the blade air-sending direction path of the blade air-sending end, and the light divergence direction of the lighting assembly structure corresponds to the blade air-sending direction of the blade air-sending end.

[0027] As a further solution of the present invention, it further includes:

[0028] An integrated machine cabin structure integrating the fan blade assembly structure, the lighting assembly structure, and the atomizing nozzle structure, including an integrated machine cabin main body and an assembly inner cavity correspondingly arranged inside the integrated machine cabin main body;

[0029] The fan blade assembly structure and the lighting assembly structure are respectively assembled and arranged in the assembly inner cavity of the integrated machine cabin main body;

[0030] The fog machine assembly structure is connected to the atomizing nozzle structure through the assembly inner cavity of the integrated machine cabin main body.

[0031] As a further solution of the utility model,

[0032] The atomizing nozzle structure is provided with a plurality of groups, and the plurality of groups of the atomizing nozzle structure are evenly fixedly connected to a side portion of the integrated machine chamber body corresponding to the blade air supply direction of the fan blade assembly structure, and the plurality of groups of the atomizing nozzle structure are connected and arranged with the assembly inner cavity respectively;

[0033] The light assembly structure is arranged between the fan blade assembly structure and the atomizing nozzle structure, and the light divergence direction of the light assembly structure is toward a side portion of the integrated machine chamber body on which a plurality of groups of the atomizing nozzle structures are arranged;

[0034] The one side of the integrated machine chamber body provided with a plurality of groups of the atomizing nozzle structures is a light-transmitting side.

[0035] As a further solution of the utility model,

[0036] The lighting assembly structure includes a lamp body base and a lamp body;

[0037] The base portion of the lamp body base is fixedly mounted in the assembly inner cavity of the integrated machine chamber body;

[0038] The lamp main body transmission assembly is arranged on the lamp body base.

[0039] As a further solution of the utility model,

[0040] The bottom of the integrated machine compartment body is also provided with a controllable and adjustable mounting base;

[0041] The controllable and adjustable mounting base has a controllable indexable shaft end;

[0042] The integrated machine bin body is assembled and arranged on the end of the controllable indexing shaft of the mounting base, and the integrated machine bin body can be adjusted in angle based on the end of the controllable indexing shaft of the mounting base;

[0043] and / or, the controllably adjustable mounting base has a controllable rail end;

[0044] The integrated machine bin body is assembled on the end of the controllable guide rail of the mounting base, and the integrated machine bin body can be adjusted for displacement in all directions based on the end of the controllable guide rail of the mounting base.

[0045] The utility model has the following beneficial effects:

[0046] This architecture can effectively achieve the established fog-making and cooling function through the fog machine component structure. At the same time, while the refrigeration component structure completes its own customized refrigeration function, it can also effectively form a circulating subcooled area based on the refrigeration component structure corresponding to the fog machine component structure. As a result, the initial fog-making temperature of the fog machine component structure is further significantly reduced, the overall fog-making and cooling effect is enhanced, and the functional coordination and practicality of the architecture are improved. Brief Description of the Drawings

[0047] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. The structures, ratios, sizes, etc. depicted in this specification are only used to cooperate with the content disclosed in the specification for those familiar with this technology to understand and read. Any modification of the structure, change in the proportional relationship, or adjustment of the size, without affecting the effects that the present invention can produce and the purposes that can be achieved, should still fall within the scope that can be covered by the technical content disclosed in the present invention.

[0048] Figure 1 It is a schematic diagram of the overall structure of the air-conditioning type spray architecture provided by an embodiment of the present invention.

[0049] Figure 2 It is a schematic diagram of the control architecture principle of the air-conditioning type spray architecture based on the DMX512 standard control board provided by an embodiment of the present invention.

[0050] Figure 3 It is a schematic diagram of the overall structure of the lighting spray device provided by an embodiment of the present invention.

[0051] In the drawings, the list of components represented by each reference numeral is as follows:

[0052] Fog machine component structure 1: High-pressure fog pump 11, water tank 12, water suction head 13;

[0053] Refrigeration component structure 2: Compressor 21, evaporator 22, condenser 23;

[0054] Integrated machine housing structure 3: Integrated machine housing main body 31, assembly inner cavity 32;

[0055] Fan blade component structure 4;

[0056] Lighting component structure 5: Lamp body base 51, lamp fixture main body 52;

[0057] Atomizing nozzle structure 6; DMX512 standard control board 7. Detailed Embodiments

[0058] The following specific embodiments illustrate the implementation manners of the present utility model. Those skilled in the art can easily understand other advantages and effects of the present utility model from the content disclosed in this specification. Obviously, the described embodiments are part of the embodiments of the present utility model, rather than all embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0059] Terms such as "upper", "lower", "left", "right", "middle", etc. cited in this specification are only for the convenience of clear narration, rather than used to limit the scope of implementation of the present utility model. The change or adjustment of their relative relationship, without substantial change in technical content, shall also be regarded as the scope of implementation of the present utility model.

[0060] As Figures 1 to 3 shown, the embodiment of the present utility model provides an air-conditioning type spray structure and a lighting spray device including the air-conditioning type spray structure. The air-conditioning type spray structure includes a fog machine component structure 1 and a refrigeration component structure 2, which can effectively realize the established fog-making and temperature-lowering function through the fog machine component structure 1. At the same time, on the basis of completing its own established refrigeration function by using the refrigeration component structure 2, a circulating supercooled area can be effectively formed for the fog machine component structure 1 based on the refrigeration component structure 2, thereby further significantly reducing the initial fog-making temperature of the fog machine component structure 1, effectively enhancing the overall fog-making and temperature-lowering effect, and improving the functional coordination and practicality of the overall structure. The specific settings are as follows:

[0061] Please refer to Figure 1 , the fog machine component structure 1 includes a high-pressure fog pump 11, a water tank 12 and a water suction head 13; wherein, the input end of the high-pressure fog pump 11 is connected through a pipeline with the water suction head 13, and the water suction head 13 is arranged inside the water tank 12, so as to extract the fog-making water body inside the water tank 12 through the water suction head 13 and further conduct it to the high-pressure fog pump 11 to realize the established fog-making and temperature-lowering function.

[0062] The refrigeration component structure 2 includes a compressor 21, an evaporator 22 and a condenser 23 which are respectively connected to the compressor 21, and is used to form a compression refrigeration cycle to effectively realize its own refrigeration function.

[0063] The evaporator 22 is correspondingly arranged inside the water tank 12 of the fog machine component structure 1, and is used to form a supercooled area by using the characteristic of the evaporator 22 to reduce the surrounding temperature, effectively reducing the water temperature inside the water tank 12, significantly reducing the initial fog-making temperature of the fog machine component structure 1, and enhancing the overall fog-making and temperature-lowering effect.

[0064] Currently, as a current electrical control structure, the DMX512 standard control board can output standard DMX512 control signals. It has the advantages of strong anti-interference ability, long-distance signal transmission, fast data refreshing, and simple implementation. It can be effectively applied to the master-slave control system of one point to multiple points. Its interconnection form adopts a multi-point bus structure, there is no problem of information path blockage, and the functional reliability is high.

[0065] As an optional implementation, please refer to Figure 2 , the air-conditioning type spray architecture further includes a DMX512 standard control board 7. The DMX512 standard control board 7 is respectively connected with a fog machine variable frequency drive component and an air-conditioning compressor variable frequency drive component through circuits. Among them, the fog machine variable frequency drive component is connected with the high-pressure fog pump 11 through a spray DC brushless motor through a circuit, and the air-conditioning compressor variable frequency drive component is connected with the air-conditioning compressor DC brushless motor of the compressor 21 through a circuit, so as to effectively realize the established drive function through each group of variable frequency drive components. At the same time, the variable frequency functions of each group of variable frequency drive components can be used to further realize the operation characteristics such as the control of fog fineness and air-conditioning coldness in cooperation with the DMX512 standard control board 7, thereby significantly improving the overall functional stability and flexibility.

[0066] At the same time, when traditionally spraying for cooling in scenic spots or creating spray landscapes in performance occasions, it is generally to directly use a fog machine to cooperate with a control terminal to complete the spraying process. For specific lighting requirements, separate lighting equipment is usually used, and further cooperate with the fog machine to achieve lighting-based spraying. The integration degree of the overall architecture is low, the function integration degree is poor, the application process is cumbersome and inconvenient, and it is not conducive to efficient transportation.

[0067] As another optional implementation, please refer to Figure 3 , the lighting spray device further includes an integrated machine housing structure 3, a fan blade assembly structure 4, a lighting component structure 5 and an atomizing nozzle structure 6, so as to effectively integrate the fan blade assembly structure 4, the lighting component structure 5 and the atomizing nozzle structure 6 based on the integrated machine housing structure 3 to form an integrated lighting-based spraying architecture. At the same time, the fog machine component structure 1 and the refrigeration component structure 2 can be further used to cooperate with the integrated lighting-based spraying architecture to complete the cooling-based lighting spray process, thereby significantly enhancing the function integration degree and application transportation convenience of the overall architecture. The specific settings are as follows:

[0068] Please refer to Figure 3 , the integrated machine housing structure 3 includes an integrated machine housing main body 31 and an assembly inner cavity 32 correspondingly arranged inside the integrated machine housing main body 31, so as to effectively use the integrated machine housing main body 31 and its assembly inner cavity 32 as the architecture assembly basis of the integrated lighting-based spraying architecture.

[0069] The fog machine component structure 1 is connected to the assembly inner cavity 32 of the integrated machine chamber main body 31 through a pipeline, so as to generate fog through the fog machine component structure 1 and transport it to the assembly inner cavity 32 through the pipeline.

[0070] The base of the fan blade assembly structure 4 is fixedly mounted on the assembly inner cavity 32 of the integrated machine chamber main body 31, and the blade air supply direction of the fan blade assembly structure 4 is the same as the mist supply direction of the fog machine assembly structure 1 corresponding to the assembly inner cavity 32, so as to output wind force through the fan blade assembly structure 4 to drive the mist of the fog machine assembly structure 1 to be quickly sprayed in a predetermined direction inside the assembly inner cavity 32.

[0071] The atomizing nozzle structure 6 is provided with several groups, and the several groups of the atomizing nozzle structures 6 are evenly fixedly connected to one side of the integrated machine chamber main body 31 corresponding to the air supply direction of the blades of the fan blade assembly structure 4, and the several groups of the atomizing nozzle structures 6 are respectively connected and arranged between the assembly inner cavity 32, so as to further diffuse the spray of the fan blade assembly structure 4 through the atomizing nozzle structure 6.

[0072] Please continue to refer to Figure 3 The lighting component structure 5 is arranged between the fan blade component structure 4 and the atomizing nozzle structure 6, and the light divergence direction of the lighting component structure 5 is toward a side portion of the integrated machine room main body 31 on which several groups of the atomizing nozzle structures 6 are arranged.

[0073] Specifically, the lighting component structure 5 includes a lamp body base 51 and a lamp body 52; wherein, the base portion of the lamp body base 51 is fixedly mounted on the assembly inner cavity 32 of the integrated machine chamber body 31, and the lamp body 52 is transmission mounted on the lamp body base 51; a side portion of the integrated machine chamber body 31 corresponding to a plurality of groups of the atomizing nozzle structures 6 is configured as a light-transmitting side portion; the above-mentioned configuration is used to effectively complete the light-type spray process, thereby significantly enhancing the functional integration and practicality of the overall architecture.

[0074] A controllable and adjustable mounting base is also provided at the bottom of the integrated machine compartment body.

[0075] As a preferred solution of this embodiment, the mounting base has a controllable rotation axis end, and the integrated machine warehouse body 31 is assembled and arranged on the controllable rotation axis end of the mounting base, so that the integrated machine warehouse body 31 can be adjusted in angle based on the controllable rotation axis end of the mounting base.

[0076] As another preferred solution of this embodiment, the installation base has a controllable guide rail end, and the all-in-one machine cabin body is assembled and arranged at the controllable guide rail end of the installation base, so that the all-in-one machine cabin body can perform displacement adjustment in all directions based on the controllable guide rail end of the installation base, thereby further significantly improving the flexible adjustability of the overall structure, and further enhancing the practicality of overall function coordination.

[0077] Although the present invention has been described in detail with general descriptions and specific embodiments above, on the basis of the present invention, some modifications or improvements can be made, which are obvious to those skilled in the art. Therefore, these modifications or improvements made without departing from the spirit of the present invention all fall within the scope of protection required by the present invention.

Claims

1. An air-conditioning spray structure, characterized in that: include: The fog machine assembly structure has a water tank; The refrigeration component structure forms a circulating supercooling zone, and the circulating supercooling zone of the refrigeration component structure corresponds to the inside of the water tank passing through the fog machine component structure.

2. The air-conditioning spray structure according to claim 1, characterized in that: The refrigeration assembly structure includes a compressor, and an evaporator and a condenser respectively connected to the compressor to form a compression refrigeration cycle; Forming a cycle subcooling zone based on the compression refrigeration cycle through the evaporator; And the evaporator is correspondingly arranged inside the water tank of the fog machine component structure.

3. The air-conditioning spray structure according to claim 2, characterized in that: The fog machine assembly structure includes a high-pressure fog pump, a water tank and a water suction head; The input end of the high-pressure mist pump is connected to the water suction head via a pipeline; The water suction head is correspondingly arranged inside the water tank.

4. The air-conditioning spray structure according to claim 1, characterized in that: Also includes: The DMX512 standard control panel is respectively connected to the fog machine component structure and the refrigeration component structure through circuits.

5. The air-conditioning spray structure according to claim 4, characterized in that: The DMX512 standard control panel is respectively provided with a fog machine variable frequency drive component and an air conditioning compressor variable frequency drive component through circuit connection; The fog machine variable frequency drive component is connected to the fog machine component structure through a circuit, and the air-conditioning compressor variable frequency drive component is connected to the refrigeration component structure through a circuit.

6. A light spray device, characterized in that: Comprising the air-conditioning spray structure as described in any one of claims 1 to 5; The lighting spray equipment also includes: The fog machine component structure has a fog-making output end; The fan blade assembly structure has a blade air supply end portion, and the blade air supply direction of the blade air supply end portion corresponds to the mist supply direction of the mist output end portion of the fog machine assembly structure; The light assembly structure is arranged on the blade air supply direction path of the blade air supply end, and the light divergence direction of the light assembly structure corresponds to the blade air supply direction of the blade air supply end.

7. The light spray equipment according to claim 6, characterized in that: Also includes: An integrated machine chamber structure integrating the fan blade assembly structure, the light assembly structure and the atomizing nozzle structure, comprising an integrated machine chamber body and an assembly inner cavity correspondingly arranged inside the integrated machine chamber body; The fan blade assembly structure and the light assembly structure are respectively assembled in the assembly inner cavity of the integrated machine chamber body; The fog machine component structure is connected and arranged between the assembly inner cavity of the integrated machine chamber body and the atomizing nozzle structure.

8. The light spray equipment according to claim 7, characterized in that: The atomizing nozzle structure is provided with a plurality of groups, and the plurality of groups of the atomizing nozzle structure are evenly fixedly connected to a side portion of the integrated machine chamber body corresponding to the blade air supply direction of the fan blade assembly structure, and the plurality of groups of the atomizing nozzle structure are connected and arranged with the assembly inner cavity respectively; The light assembly structure is arranged between the fan blade assembly structure and the atomizing nozzle structure, and the light divergence direction of the light assembly structure is toward a side portion of the integrated machine chamber body on which a plurality of groups of the atomizing nozzle structures are arranged; The one side of the integrated machine chamber body provided with a plurality of groups of the atomizing nozzle structures is a light-transmitting side.

9. The light spray equipment according to claim 8, characterized in that: The lighting assembly structure includes a lamp body base and a lamp body; The base portion of the lamp body base is fixedly mounted in the assembly inner cavity of the integrated machine chamber body; The lamp main body transmission assembly is arranged on the lamp body base.

10. The light spray equipment according to claim 7, characterized in that: The bottom of the integrated machine compartment body is also provided with a controllable and adjustable mounting base; The controllable and adjustable mounting base has a controllable indexable shaft end; The integrated machine bin body is assembled and arranged on the end of the controllable indexing shaft of the mounting base, and the integrated machine bin body can be adjusted in angle based on the end of the controllable indexing shaft of the mounting base; and / or, the controllably adjustable mounting base has a controllable rail end; The integrated machine bin body is assembled on the end of the controllable guide rail of the mounting base, and the integrated machine bin body can be adjusted for displacement in all directions based on the end of the controllable guide rail of the mounting base.