Assembly for cold and hot adjusting circulation of pet house and fish tank
By designing a heat and heat regulation system for refrigerant circulation with compressor components, the limitations of existing pet houses and fish tank temperature regulation equipment are solved, and the temperature control for automated and convenient installation is realized, which improves the comfort and survival stability of pets and aquatic organisms.
Patent Information
- Application Number
- CN202510628381.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-15
- Publication Date
- 2025-08-01
AI Technical Summary
The temperature adjustment equipment of existing pet houses and fish tanks has problems such as limited adjustment range, low degree of automation, high energy consumption and poor safety. It is especially not suitable for scenarios with limited space and is cumbersome to install and maintain.
A heat and heat regulation system including compressor components, condensation components, evaporation components and control components is designed. Through the compressor components, the refrigerant is driven to circulate between the condenser and the evaporator to achieve automatic temperature regulation. The condenser components and evaporator are integrated in compactly, easy to install and simple maintenance.
It realizes automatic temperature control in pet houses and fish tank environments, meets the temperature control needs of different seasons, improves the comfort and survival stability of pets and aquatic organisms, and has a flexible system structure and strong adaptability.
Smart Images

Figure CN120391383A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of environmental regulation equipment, and particularly relates to a component for hot and cold regulation and circulation in pet houses and fish tanks. Background Art
[0002] With the continuous improvement of people's living standards, more and more families begin to keep pets or set up ornamental fish tanks to enrich the home environment. However, the environmental temperature where the pet house and the fish tank are located has a significant impact on the health of pets and the stability of the water ecosystem. Especially in areas with significant temperature differences between winter and summer, it is more necessary to effectively regulate their temperatures. Currently, common temperature control methods mostly rely on means such as independent heaters, air coolers, or ice packs. These devices often have problems such as limited adjustment range, low automation level, high energy consumption, or poor safety, and cannot meet the requirements of long-term and constant environmental regulation.
[0003] Although some existing hot and cold regulation devices have a compression refrigeration structure, most of them are large air conditioning systems with complex structures, not suitable for pet houses or fish tank scenarios with limited space, and the installation and maintenance processes are cumbersome, which is not conducive to the convenient use of household users.
[0004] In view of this, overcoming the above-mentioned defects of the existing technology is an urgent problem to be solved in this technical field. Summary of the Invention
[0005] Aiming at the technical problems mentioned in the background art, the purpose of the present invention is to provide a component for hot and cold regulation and circulation in pet houses and fish tanks to solve the technical problems mentioned in the above background art.
[0006] To achieve the above purpose, the technical solution provided by the present invention: A component for hot and cold regulation and circulation in pet houses and fish tanks, which includes an installation box body and a compressor assembly. The compressor assembly is installed on the installation box body. The compressor assembly includes a condensation assembly, an evaporation assembly, and a control assembly. The evaporation assembly is correspondingly installed on the condensation assembly. The control assembly is installed on the side of the evaporation assembly. An installation opening is provided on the side surface of the installation box body, and the lower end of the condensation assembly is embedded in the installation opening.
[0007] Furthermore, the condensation assembly and the installation opening are fixed by glue paste, so that the compressor assembly is installed on the installation box body.
[0008] Further, the condensation assembly includes a first fan housing, a condensation fan, and a condensation plate. The condensation fan is snap-fitted into the first fan housing. On both inner sides of the first fan housing, first fixing buckles are symmetrically protruded. The first fixing buckles are fastened and fixed with the edge of the condensation fan. The condensation plate is installed at the upper end of the first fan housing. On both lower sides of the condensation plate, first installation through plates are symmetrically provided. On both upper sides of the first fan housing, second installation through plates are symmetrically provided. The first installation through plates are correspondingly arranged on the second installation through plates and are connected and fixed by passing fasteners through the first installation through plates and the second installation through plates.
[0009] Further, the evaporation assembly includes a second fan housing, an evaporation fan, and an evaporation plate. The evaporation fan is snap-fitted into the second fan housing. On both inner sides of the second fan housing, second fixing buckles are symmetrically protruded. The second fixing buckles are fastened and fixed with the edge of the evaporation fan. The evaporation plate is installed at the lower end of the second fan housing. On both upper sides of the evaporation plate, first connection through plates are symmetrically provided. On both lower sides of the second fan housing, second connection through plates are symmetrically provided. The first connection through plates are correspondingly arranged on the second connection through plates and are connected and fixed by passing fasteners through the first connection through plates and the second connection through plates.
[0010] Further, the control assembly includes a circuit board housing and a control circuit board. On the side of the second fan housing, a plurality of fixed through blocks are provided. On the side of the circuit board housing, a plurality of fixed through columns are provided. A plurality of the fixed through columns and a plurality of the fixed through blocks correspond to each other one by one and are connected and fixed by passing fasteners through the fixed through blocks and the fixed through columns, so that the circuit board housing is installed on the side of the second fan housing.
[0011] Further, an installation groove is recessed inside the circuit board housing. On the inner side of the installation groove, a plurality of installation buckles are provided. The control circuit board is embedded in the installation groove. At the same time, the plurality of installation buckles fasten and fix the control circuit board.
[0012] The present invention mainly has the following beneficial effects: The compressor assembly is installed on the installation box body. The compressor assembly includes a condensation assembly, an evaporation assembly, and a control assembly. The evaporation assembly is correspondingly installed on the condensation assembly. The control assembly is installed on the side of the evaporation assembly. The component for temperature regulation and circulation in the pet house and fish tank of the present invention drives the refrigerant to circulate between the condenser and the evaporator through the compressor assembly, realizes the automatic rise and fall of the environmental temperature, meets the temperature control requirements of the pet house and fish tank in different seasons, and the condensation assembly, evaporation assembly, and control assembly are compactly and integrally installed, and the installation operation is convenient and the maintenance is simple. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic three-dimensional structure diagram of the whole of the present invention.
[0014] Figure 2 Schematic exploded view of the installation box body and the compressor assembly of the present invention.
[0015] Figure 3 Schematic exploded view of the condensing assembly of the present invention.
[0016] Figure 4 Schematic exploded view of the evaporating assembly of the present invention.
[0017] Figure 5 Schematic exploded view of the control assembly of the present invention.
[0018] Reference numerals: installation box body 10; compressor assembly 20; condensing assembly 30; evaporating assembly 40; control assembly 50; installation opening 11; first fan housing 31; condensing fan 32; condensing plate 33; first fixing buckle 311; first installation through plate 331; second installation through plate 312; second fan housing 41; evaporating fan 42; evaporating plate 43; second fixing buckle 411; first connection through plate 431; second connection through plate 412; circuit board housing 51; control circuit board 52; fixing through block 413; fixing through post 511; installation groove 512; installation buckle 513. Detailed implementation manners
[0019] As Figures 1 to 5 shown, a component for hot and cold adjustment and circulation of a pet house and an aquarium includes an installation box body 10 and a compressor assembly 20. The compressor assembly 20 is installed on the installation box body 10. During use, after the compressor assembly 20 is started, through refrigeration cycle processes such as compression, condensation, throttling, and evaporation, the generation of cold and heat sources is realized, and the refrigerant continuously flows between the condenser and the evaporator, thereby performing heat exchange on the water body inside the installation box body 10 or connected thereto, and completing the temperature adjustment of the pet house or the aquarium.
[0020] In specific implementation, the compressor assembly 20 includes a condensation assembly 30, an evaporation assembly 40, and a control assembly 50. The evaporation assembly 40 is correspondingly installed on the condensation assembly 30, and the control assembly 50 is installed on the side of the evaporation assembly 40 for controlling the start-stop and cold-hot switching operations of the compressor system. An installation opening 11 is formed on the side surface of the installation box body 10. The lower end of the condensation assembly 30 is embedded in the installation opening 11. At the same time, the condensation assembly 30 is fixedly adhered to the installation opening 11 through glue, so that the compressor assembly 20 is installed on the installation box body 10. When in use, after the system is powered on and started, the control assembly 50 drives the compressor to work, and the refrigerant circulates between the condensation assembly 30 and the evaporation assembly 40. The condensation assembly 30 releases heat, and the evaporation assembly 40 absorbs heat to form a cold-hot exchange effect. By cooperating with the water circulation module or air circulation module inside the installation box body 10, the heating or refrigeration adjustment of the environment in the pet house or fish tank is realized, and the purpose of constant temperature control is achieved.
[0021] In specific implementation, the condensation assembly 30 includes a first fan housing 31, a condensation fan 32, and a condensation plate 33. Among them, the condensation fan 32 is clamped in the first fan housing 31. First fixing buckles 311 are symmetrically protruded on both inner sides of the first fan housing 31. The two first fixing buckles 311 are fastened and fixed with the edge of the condensation fan 32. The condensation plate 33 is installed at the upper end of the first fan housing 31. First installation through plates 331 are symmetrically arranged on both lower sides of the condensation plate 33. Second installation through plates 312 are symmetrically arranged on both upper sides of the first fan housing 31. The first installation through plates 331 are correspondingly arranged on the second installation through plates 312 and are connected and fixed by fasteners passing through the first installation through plates 331 and the second installation through plates 312. When in use, after the condensation fan 32 is started, external air is inhaled, and the air flows through the surface of the condensation plate 33 to take away heat, so that the refrigerant completes the phase change condensation process from high-temperature and high-pressure gas to medium-temperature liquid in the condensation plate 33, thereby realizing the release of heat and providing conditions for the subsequent evaporation and heat absorption process.
[0022] In specific implementation, the evaporation component 40 includes a second fan housing 41, an evaporation fan 42, and an evaporation plate 43. Among them, the evaporation fan 42 is clamped in the second fan housing 41. On both inner sides of the second fan housing 41, second fixing buckles 411 are symmetrically protruded. The two second fixing buckles 411 are fastened and fixed with the edge of the evaporation fan 42. The evaporation plate 43 is installed at the lower end of the second fan housing 41. On both upper sides of the evaporation plate 43, first connection through plates 431 are symmetrically provided. On both lower sides of the second fan housing 41, second connection through plates 412 are symmetrically provided. The first connection through plates 431 are correspondingly arranged on the second connection through plates 412 and are connected and fixed by fasteners passing through the first connection through plates 431 and the second connection through plates 412. During use, the evaporation fan 42 operates to suck in air and guide it through the surface of the evaporation plate 43. The refrigerant flowing in the evaporation plate 43 absorbs the heat in the air during this process, completing the evaporation process from a low-temperature and low-pressure liquid to a gas, and realizing air cooling. The cooled air can be conveyed to the surrounding of the pet house or the fish tank through subsequent pipelines or ventilation structures to achieve the purpose of environmental temperature adjustment.
[0023] In specific implementation, the control component 50 includes a circuit board housing 51 and a control circuit board 52. Among them, several fixing through blocks 413 are provided on the side of the second fan housing 41. Several fixing through columns 511 are provided on the side of the circuit board housing 51. The several fixing through columns 511 and the several fixing through blocks 413 correspond to each other one by one and are connected and fixed by fasteners passing through the fixing through blocks 413 and the fixing through columns 511, so that the circuit board housing 51 is installed on the side of the second fan housing 41. An installation groove 512 is recessed inside the circuit board housing 51. Several installation buckles 513 are provided on the inner side of the installation groove 512. The control circuit board 52 is embedded in the installation groove 512. At the same time, the several installation buckles 513 fasten and fix the control circuit board 52. During use, the control circuit board 52 is used to receive user input or system signals and control the operating states of various parts of the compressor component 20, including the start-stop control of the condensation fan 32 and the evaporation fan 42, the switching logic of refrigerant circulation, etc. Through the intelligent management of the control component 50, the entire cooling and heating adjustment circulation system can be automatically adjusted according to the set temperature, realizing the constant temperature control of the internal environment of the pet house or the fish tank, and improving the comfort and survival stability of pets or aquatic organisms.
[0024] In specific implementation, the compressor assembly 20 is of a detachable structure, and the user can detach it as a whole from the installation box body 10 according to actual usage requirements. After the compressor assembly 20 is detached, an external pipe can be inserted through an installation opening 11 preset on the side of the installation box body 10 to achieve connection with other cold and heat source systems. The installation opening 11 has a standard-size interface for connecting to a flexible or rigid conduit, and the conduit can be further connected to an external electronic refrigeration and heating device, such as a heat pump air conditioner, a semiconductor refrigeration device, etc. Through the temperature control function of the external device, remote intelligent temperature adjustment of the pet house or fish tank environment is realized. The system structure is flexible and can flexibly switch between local compressor refrigeration and external refrigeration modes according to environmental conditions or user requirements, improving the practicability and adaptability of the device.
[0025] In summary, the compressor assembly 20 is installed on the installation box body 10. The compressor assembly 20 includes a condensation assembly 30, an evaporation assembly 40, and a control assembly 50. The evaporation assembly 40 is correspondingly installed on the condensation assembly 30, and the control assembly 50 is installed on the side of the evaporation assembly 40. The assembly for pet house and fish tank cooling and heating adjustment cycle of the present invention drives the refrigerant to circulate between the condenser and the evaporator through the compressor assembly, realizes the automatic rise and fall of the environmental temperature, meets the temperature control requirements of the pet house and fish tank in different seasons, and the condensation assembly, evaporation assembly, and control assembly are compactly and integrally installed, with convenient installation operation and simple maintenance.
Claims
1. A component for the hot and cold adjustment and circulation of a pet house and an aquarium, characterized in that, It includes an installation box body (10) and a compressor assembly (20). The compressor assembly (20) is installed on the installation box body (10). The compressor assembly (20) includes a condensation assembly (30), an evaporation assembly (40), and a control assembly (50). The evaporation assembly (40) is correspondingly installed on the condensation assembly (30). The control assembly (50) is installed on the side of the evaporation assembly (40). An installation opening (11) is formed on the side surface of the installation box body (10). The lower end of the condensation assembly (30) is embedded in the installation opening (11).
2. The component for the hot and cold adjustment and circulation of a pet house and an aquarium according to claim 1, wherein The condensation assembly (30) is fixedly adhered to the installation opening (11) through glue, so that the compressor assembly (20) is installed on the installation box body (10).
3. The component for the hot and cold adjustment and circulation of a pet house and an aquarium according to claim 1, characterized in that, The condensation assembly (30) includes a first fan housing (31), a condensation fan (32), and a condensation plate (33). The condensation fan (32) is clamped in the first fan housing (31). First fixing buckles (311) are symmetrically protruded on both inner sides of the first fan housing (31). The first fixing buckles (311) are fastened and fixed with the edge of the condensation fan (32). The condensation plate (33) is installed at the upper end of the first fan housing (31). First installation through plates (331) are symmetrically arranged on both lower sides of the condensation plate (33). Second installation through plates (312) are symmetrically arranged on both upper sides of the first fan housing (31). The first installation through plates (331) are correspondingly arranged on the second installation through plates (312), and are connected and fixed by passing fasteners through the first installation through plates (331) and the second installation through plates (312).
4. The component for the hot and cold adjustment and circulation of a pet house and an aquarium according to claim 1, characterized in that, The evaporation assembly (40) includes a second fan housing (41), an evaporation fan (42), and an evaporation plate (43). The evaporation fan (42) is clamped in the second fan housing (41). Second fixing buckles (411) are symmetrically protruded on both inner sides of the second fan housing (41). The second fixing buckles (411) are fastened and fixed with the edge of the evaporation fan (42). The evaporation plate (43) is installed at the lower end of the second fan housing (41). First connection through plates (431) are symmetrically arranged on both upper sides of the evaporation plate (43). Second connection through plates (412) are symmetrically arranged on both lower sides of the second fan housing (41). The first connection through plates (431) are correspondingly arranged on the second connection through plates (412), and are connected and fixed by passing fasteners through the first connection through plates (431) and the second connection through plates (412).
5. The component for hot and cold adjustment and circulation of a pet house and an aquarium according to claim 1, wherein The control assembly (50) includes a circuit board housing (51) and a control circuit board (52). A plurality of fixed through blocks (413) are arranged on the side of the second fan housing (41). A plurality of fixed through columns (511) are arranged on the side of the circuit board housing (51). The plurality of fixed through columns (511) and the plurality of fixed through blocks (413) correspond to each other one by one, and are connected and fixed by passing fasteners through the fixed through blocks (413) and the fixed through columns (511), so that the circuit board housing (51) is installed on the side of the second fan housing (41).
6. The component for pet house and fish tank heat and cold regulation and circulation according to claim 5, characterized in that, An installation groove (512) is recessed inside the circuit board housing (51). A number of installation buckles (513) are provided on the inner side of the installation groove (512). The control circuit board (52) is embedded in the installation groove (512). At the same time, the control circuit board (52) is fixed by buckling a number of the installation buckles (513).