Condenser mounting device, refrigerating system and cold drink machine

By designing a condenser installation device, the detachable connections between the base and the mounting bracket and the suspended installation method are used to increase the contact area between the condenser and the flowing air, solving the problem of low heat exchange efficiency of air-cooled condensers, achieving a more efficient condensation effect and noise reduction effect.

CN223064111UActive Publication Date: 2025-07-04GUANGZHOU XINAN TRADING CO LTD
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Patent Information

Application Number
CN202422194329.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-07-04
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

When existing air-cooled condensers are installed on the base, the contact between the condenser and the flowing air is reduced, resulting in a decrease in heat exchange efficiency.

Method used

A condenser mounting device is designed to increase the contact area between the condenser and the flowing air through the removable connection between the base and the mounting bracket and the suspended installation method, and to buffer vibration through the support structure to reduce noise.

Benefits of technology

The heat exchange efficiency and condensation effect of the condenser are improved, while reducing noise caused by vibration, enhancing installation stability and connection reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of ice making equipment, in particular to a condenser mounting device, a refrigerating system and a cold drink machine. The condenser installation device comprises a base, an installation support and a condensation assembly. The installation support is connected to the base and provided with a first connecting piece, the condensation assembly is provided with a second connecting piece, and the second connecting piece is detachably connected with the first connecting piece so that the condensation assembly can be detachably connected to the installation support. A first spacing distance is formed between the first connecting piece and the base, a second spacing distance is formed between the first connecting piece and the bottom of the condensation assembly, and the first spacing distance is larger than the second spacing distance. According to the condenser installation device, the contact area between the condenser and flowing air can be increased, so that the heat exchange efficiency and the condensation effect of the condenser are improved.
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Description

Technical Field

[0001] The utility model relates to the field of refrigeration equipment, in particular to a condenser installation device, a refrigeration system and an ice cream machine. Background Art

[0002] An air-cooled condenser is a condenser that drives heat through air flow. It dissipates the heat of the high-temperature refrigerant gas in the condenser into the atmosphere through a fan or natural convection, so that the refrigerant gas is cooled and condensed into a liquid. The existing air-cooled condenser is installed on a base, and the air fluidity at the bottom of the condenser is relatively low, resulting in a reduction in the contact between the air-cooled condenser and the flowing air, and reducing the heat exchange efficiency of the air-cooled condenser. Summary of the Utility Model

[0003] In order to solve the defects of the prior art, the utility model provides a condenser installation device, a refrigeration system and an ice cream machine, which can increase the contact area between the condenser and the flowing air, so as to improve the heat exchange efficiency and condensation effect of the condenser.

[0004] In order to solve the above technical problems, the utility model provides a condenser installation device, including:

[0005] A base;

[0006] An installation bracket connected to the base;

[0007] A condensation component, wherein a first connecting piece is arranged on the installation bracket, a second connecting piece is arranged on the condensation component, and the second connecting piece is detachably connected to the first connecting piece;

[0008] A first preset distance is formed between the first connecting piece and the base, and a second preset distance is formed between the first connecting piece and the bottom of the condensation component, and the first preset distance is greater than the second preset distance.

[0009] Wherein, at least one buckle is formed on one of the first connecting piece and the second connecting piece, at least one clamping groove is formed on the other one, and the buckle is in clamping fit with the clamping groove;

[0010] And / or, at least one threaded hole is formed on the first connecting piece, at least one connecting hole is formed on the second connecting piece, each connecting hole is coaxial with one of the threaded holes, and the connecting hole and the corresponding coaxial threaded hole are threadedly connected by a connecting bolt.

[0011] Wherein, a support plate is formed on the side wall of the installation bracket, and the support plate is located below the first connecting piece;

[0012] The condensing assembly is provided with an outer extension plate, the outer extension plate faces the mounting bracket, the second connecting member is formed on the outer extension plate, and the supporting plate abuts against the lower portion of the outer extension plate.

[0013] Wherein, a connecting foot is provided at the bottom of the mounting bracket, and the connecting foot is detachably connected to the base.

[0014] Wherein, the condensation component comprises:

[0015] A condenser body, wherein the second connecting member is disposed on the condenser body to connect the condenser body to the mounting bracket;

[0016] The air cooling component is installed on a side of the condenser body facing the mounting bracket. The air cooling component forms an air outlet area, and the condenser body is located in the air outlet area.

[0017] Among them, the condenser body includes a mounting plate, a condensing tube and a plurality of cooling fins. The mounting plate is detachably connected to the mounting bracket. The plurality of cooling fins are spaced apart along a direction parallel to the base on a side of the mounting plate away from the mounting bracket. The condensing tube is inserted in a serpentine shape in the plurality of cooling fins.

[0018] A positioning column and at least one mounting hole are provided on one side of the mounting plate facing the air-cooling component, and a plurality of positioning holes are provided on the side of the air-cooling component facing the mounting plate, wherein the positioning column is suitable for being inserted into a part of the positioning holes, and the mounting hole is detachably connected to another part of the positioning holes by fasteners.

[0019] Wherein, the mounting bracket is provided with a supporting beam, the supporting beam is located below the mounting plate, and the mounting plate is suitable for abutting against the supporting beam.

[0020] Correspondingly, the utility model also provides a refrigeration system, including a compressor, a refrigeration pipeline and a condenser installation device as described in any one of the above, the compressor and the condensing component are connected through the refrigeration pipeline, the base is provided with a mounting frame, the compressor is installed on the mounting frame, and a gap is formed between the bottom surface of the mounting frame and the base.

[0021] Correspondingly, the utility model also provides a cold drink machine, including an ice-making cavity, a control system and the above-mentioned refrigeration system, the ice-making cavity and the refrigeration system are connected through the refrigeration pipeline, the refrigeration end of the refrigeration pipeline is wound around the inner wall of the ice-making cavity, and the condensing component and the compressor are both connected to the control system.

[0022] The implementation of this utility model has the following beneficial effects:

[0023] In the condenser installation device provided in this embodiment, after the condensation assembly is installed on the installation bracket by detachably connecting the second connecting member and the first connecting member, since the first spacing distance between the base and the first connecting member is greater than the second spacing distance between the bottom of the condensation assembly and the first connecting member, that is, a gap is formed between the bottom of the condensation assembly and the base after the condensation assembly is installed, so that the condensation assembly is suspended and installed on the base and the installation bracket, and the air flow can also pass through the bottom of the condensation assembly, thereby increasing the contact area between the condensation assembly and the flowing air, effectively improving the heat exchange efficiency between the condenser and the air, and enhancing the condensation effect of the condenser. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is a three-dimensional structural schematic diagram of the condenser installation device of the present utility model;

[0025] Figure 2 is a side view structural schematic diagram of the condenser installation device of the present utility model;

[0026] Figure 3 is a three-dimensional structural schematic diagram of the installation bracket of the present utility model;

[0027] Figure 4 is a three-dimensional structural schematic diagram of the condenser body of the present utility model;

[0028] Figure 5 is a three-dimensional structural schematic diagram of the air-cooling part of the present utility model;

[0029] Figure 6 is a structural schematic diagram of the refrigeration system of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0030] To make the objectives, technical solutions, and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings. It is hereby declared that the upper, lower, left, right, front, rear, inner, outer, etc. orientation terms that appear or will appear in the text of the present utility model are only based on the drawings of the present utility model, and they do not specifically limit the present utility model.

[0031] The condenser installation device provided by the present utility model can suspend the condenser on the base 1 and the installation bracket 2, thereby increasing the contact area between the overall condenser and the flowing air, improving the heat exchange efficiency between the condenser and the air, and thus enhancing the condensation effect of the condenser.

[0032] In an embodiment of the present utility model, as Figures 1 to 5As shown in the figure, the condenser installation device includes a base 1, a mounting bracket 2, and a condensation component 3. The mounting bracket 2 is connected to the base 1. The mounting bracket 2 is provided with a first connecting member 21, and the condensation component 3 is provided with a second connecting member 31. The second connecting member 31 is detachably connected to the first connecting member 21 to detachably connect the condensation component 3 to the mounting bracket 2. A first spacing distance is formed between the first connecting member 21 and the base 1, and a second spacing distance is formed between the first connecting member 21 and the bottom of the condensation component 3. The first spacing distance is greater than the second spacing distance.

[0033] For the condenser installation device provided in this embodiment, after using the second connecting member 31 to be detachably connected to the first connecting member 21 to install the condensation component 3 on the mounting bracket 2, since the first spacing distance between the base 1 and the first connecting member 21 is greater than the second spacing distance between the bottom of the condensation component 3 and the first connecting member 21, that is, a gap is formed between the bottom of the condensation component 3 and the base 1 after the condensation component 3 is installed, so that the condensation component 3 is suspended and installed on the base 1 and the mounting bracket 2, and an air flow can also pass through the bottom of the condensation component 3, thereby increasing the contact area between the condensation component 3 and the flowing air, effectively improving the heat exchange efficiency between the condenser and the air, and enhancing the condensation effect of the condenser.

[0034] In addition, since the condensation component 3 is suspended and installed, the vibration generated by the condensation component 3 during operation will be buffered by the mounting bracket 2, which can avoid resonance between the condensation component 3 and the base 1, thereby reducing the noise generated by the condensation component 3 due to vibration during operation.

[0035] It should be noted here that the mounting bracket 2 can be spliced by three aluminum rods, and an enclosing space is formed between the three aluminum rods. The size of the enclosing space is preferably larger than the overall size of the condensation component 3. The first spacing distance and the second spacing distance can be selected and set according to the specific dimensions of the mounting bracket 2 and the condensation component 3, as long as it can ensure that the condensation component 3 can be suspended and installed on the mounting bracket 2. For example, when the overall height of the condensation component 3 is 0.8 times the height of the mounting bracket 2, the first connecting member 21 can be set at the position of 0.6 times the height of the mounting bracket 2, and the second connecting member 31 is set at the position of 0.5 times the height of the condensation component 3, so that the condensation component 3 can be suspended and installed on the mounting bracket 2.

[0036] In this embodiment, as Figures 1 to 4 shown, in order to detachably connect the condensation component 3 and the mounting bracket 2, the following connection methods can be adopted between the first connecting member 21 and the second connecting member 31:

[0037] The first connection method, as Figure 3 and Figure 4As shown, at least one snap 311 is formed on one of the first connecting member 21 and the second connecting member 31, and at least one engaging groove 211 is formed on the other. The snap 311 is engaged with the engaging groove 211. Further, when the condensation assembly 3 is installed, the cooperation of the snap 311 and the engaging groove 211 can be utilized to ensure the accurate positioning of the installation between the condensation assembly 3 and the mounting bracket 2, thereby improving the convenience during the installation of the condensation assembly 3 and ensuring the connection stability between the condensation assembly 3 and the mounting bracket 2.

[0038] Specifically, the first connecting member 21 of the mounting bracket 2 is formed with an engaging groove 211, and the second connecting member 31 of the condensation assembly 3 is formed with a snap 311. When the condensation assembly 3 needs to be installed on the mounting bracket 2, the snap 311 of the condensation assembly 3 can be snapped into the engaging groove 211 to complete the connection between the condensation assembly 3 and the mounting bracket 2.

[0039] It should be noted here that the first connecting member 21 may be provided with a plurality of engaging grooves 211 arranged at intervals, and the second connecting member 31 may be provided with a corresponding number of snaps 311 to utilize the cooperation of the plurality of snaps 311 and the plurality of engaging grooves 211 to ensure the connection stability between the condensation assembly 3 and the mounting bracket 2. The specific number of the snaps 311 and the engaging grooves 211 can be selected according to the actual situation and is not specifically limited herein.

[0040] The second connection method, as Figure 3 and Figure 4 shown, the first connecting member 21 is formed with at least one threaded hole 212, and the second connecting member 31 is formed with at least one connection hole 312. Each connection hole 312 is coaxial with one of the threaded holes 212, and the connection hole 312 and the corresponding coaxial threaded hole 212 are threadedly connected by a connecting bolt. Further, the condensation assembly 3 is tightly installed on the mounting bracket 2 through the connecting bolt and the threaded hole 212, and the fastening force during the connection between the connecting bolt and the threaded hole 212 is utilized to improve the connection stability between the condensation assembly 3 and the mounting bracket 2 in different environments.

[0041] The third connection method: The first connecting member 21 is provided with at least one set of first connection groups. Each first connection group includes a clamping groove 211 and two threaded holes 212, and the two threaded holes 212 are respectively distributed on both sides of the clamping groove 211. The second connecting member 31 is provided with at least one set of second connection groups. Each second connection group includes a buckle 311 and two connection holes 312, and the two connection holes 312 are respectively distributed on both sides of the clamping groove 211. When installing the condensation assembly 3 on the mounting bracket 2, the positioning effect of the buckle 311 and the clamping groove 211 can be used to determine the installation position of the condensation assembly 3 on the mounting bracket 2. Subsequently, the condensation assembly 3 can be locked and fixed to the mounting bracket 2 through a connecting bolt. Thus, while improving the installation convenience of the condensation assembly 3 on the mounting bracket 2, the connection stability between the condensation assembly 3 and the mounting bracket 2 can also be ensured.

[0042] Among them, the connection method between the condensation assembly 3 and the mounting bracket 2 preferably adopts the third connection method to ensure quick installation while ensuring connection stability.

[0043] In this embodiment, when the condenser is installed suspended, the weight of the condenser is applied to the base 1 through the mounting bracket 2. Therefore, the mounting bracket 2 needs to have a certain load-bearing capacity. To improve the load-bearing capacity of the mounting bracket 2, as Figure 2 and Figure 3 shown, a support plate 22 is formed on the side wall of the mounting bracket 2. The support plate 22 is located below the first connecting member 21. The condensation assembly 3 is provided with an outward extension plate 32. The outward extension plate 32 faces the mounting bracket 2. The second connecting member 31 is formed on the outward extension plate 32, and the support plate 22 abuts against the lower part of the outward extension plate 32.

[0044] It can be understood that since the second connecting member 31 is formed on the outward extension plate 32, the condensation assembly 3 is connected to the mounting bracket 2 through the outward extension plate 32. By supporting the outward extension plate 32 with the support plate 22, in addition to the gravity of the condensation assembly 3 acting on the mounting bracket 2 through the connection structure, the gravity of the condensation assembly 3 can also act on the mounting bracket 2 through the support plate 22, thereby preventing the gravity of the condensation assembly 3 from concentrating on the connection structure and causing deformation or damage to the connection structure, thereby improving the support load-bearing capacity of the mounting bracket 2 for the condensation assembly 3 and effectively ensuring the stability and reliability of the connection between the condensation assembly 3 and the mounting bracket 2.

[0045] In this embodiment, as Figure 3 shown, the bottom of the mounting bracket 2 is provided with connecting feet 23. The connecting feet 23 are detachably connected to the base 1 to increase the contact area between the bottom of the mounting bracket 2 and the base 1 by using the connecting feet 23, and strengthen the connection strength between the mounting bracket 2 and the base 1, thereby ensuring the fixing stability of the mounting bracket 2.

[0046] Specifically, the connecting leg 23 extends towards the interior of the mounting bracket 2. The connecting leg 23 is preferably integrally formed with the mounting bracket 2. The base 1 may be formed with a mounting groove, and the connecting leg 23 is located in the mounting groove. The connecting leg 23 and the base 1 are threadedly connected by bolts or studs to fix the mounting bracket 2 to the base 1.

[0047] It should be noted here that, to further reduce the transmission vibration between the mounting bracket 2 and the base 1, a damping pad is provided on the contact surface between the connecting leg 23 and the base 1. The damping pad can be a silicone pad or a soft pad made of other materials.

[0048] In the embodiment of the present utility model, as Figure 1 、 Figure 2 、 Figure 4 and Figure 5 shown, the condensation assembly 3 includes a condenser body 33 and an air-cooling member 34. The second connecting member 31 is provided on the condenser body 33 to connect the condenser body 33 to the mounting bracket 2. The air-cooling member 34 is installed on one side of the condenser body 33 facing the mounting bracket 2. The air-cooling member 34 forms an air outlet area, and the condenser body 33 is located in the air outlet area. Furthermore, the air-cooling member 34 can be operated to provide a flowing cooling air flow for the condenser body 33, and the cooling air flow exchanges heat with the refrigerant gas in the condenser body 33, increasing the heat exchange efficiency between the cooling air flow and the refrigerant gas in the condenser body 33 and improving the condensation efficiency of the condenser body 33.

[0049] Preferably, in this embodiment, the air-cooling member 34 is a cooling fan, and the condenser body 33 is located in the direction of the fan blades of the cooling fan. When the cooling fan rotates, the fan blades accelerate the air flow, improving the heat exchange efficiency between the condenser body 33 and the air.

[0050] Among them, as Figure 1 、 Figure 2 and Figure 4 shown, the condenser body 33 includes a mounting plate 331, a condensation pipe 332, and a plurality of heat dissipation fins 333. The mounting plate 331 is detachably connected to the mounting bracket 2. The plurality of heat dissipation fins 333 are arranged at intervals along the direction parallel to the base 1 on the side of the mounting plate 331 facing away from the mounting bracket 2. The condensation pipe 332 is inserted into the plurality of heat dissipation fins 333 in a serpentine shape.

[0051] It can be understood that when the flowing air passes through the condenser body 33, due to the obstruction of the heat dissipation fins 333, more turbulences and vortices are formed in the flowing air. Thus, while increasing the contact area between the condensation pipe 332 and the flowing air, the convective heat transfer between the air and the condenser is enhanced, enabling the flowing air to more fully exchange heat with the condensation pipe 332 and further improving the condensation efficiency of the condenser body 33.

[0052] In this embodiment, for the convenience of installing the air-cooling component 34 on the condenser body 33, as Figure 4 and Figure 5 shown, on the side of the mounting plate 331 facing the air-cooling component 34, positioning posts 334 and at least one mounting hole 335 are provided. On the side of the air-cooling component 34 facing the mounting plate 331, a plurality of positioning holes 341 are provided. Among them, the positioning posts 334 are adapted to be inserted into a part of the positioning holes 341, and the mounting holes 335 and another part of the positioning holes 341 are detachably connected by fasteners. Preferably, the fasteners are studs or bolts. When installing the air-cooling component 34 on the condenser body 33, the positioning posts 334 can be first inserted into the corresponding part of the positioning holes 341. At this time, the mounting holes 335 and another part of the positioning holes 341 are coaxial, which is convenient for the fasteners to firmly connect the air-cooling component 34 and the mounting plate 331. Through the cooperation between the positioning holes 341 and the positioning posts 334, the accurate positioning of the air-cooling component 34 on the mounting plate 331 can be ensured, effectively reducing the human error during the installation process, thereby improving the installation quality between the air-cooling component 34 and the mounting plate 331.

[0053] Furthermore, the mounting bracket 2 is provided with a support cross beam. The support cross beam is located below the mounting plate 331, and the mounting plate 331 is adapted to abut against the support cross beam to use the support cross beam to provide support for the condenser body 33, further dispersing the stress received by the connection structure between the condenser body 33 and the mounting bracket 2, thereby improving the support load-bearing capacity of the mounting bracket 2 for the condenser body 33 and ensuring the stability of the condenser body 33 installed on the mounting bracket 2.

[0054] Preferably, a abutting boss is provided at the bottom of the mounting plate 331. The abutting boss extends towards the support cross beam so that the mounting plate 331 abuts against the support cross beam through the abutting boss, thereby providing support for the condenser body 33.

[0055] The present utility model also provides a refrigeration system, as Figure 6 shown. The refrigeration system includes a compressor 4, a refrigeration pipeline 5 and the condenser installation device of any one of the above. The compressor 4 is communicated with the condensation component 3 through the refrigeration pipeline 5 to ensure that the high-temperature and high-pressure gas formed by the compressor 4 can be transported to the condensation component 3 through the refrigeration pipeline 5. The base 1 is provided with a mounting chassis 41. The compressor 4 is installed on the mounting chassis 41, and a gap is formed between the bottom surface of the mounting chassis 41 and the base 1.

[0056] The refrigeration system has all the beneficial effects of the above condenser installation device, which will not be elaborated here. In addition, since the compressor 4 is installed on the base 1 through the mounting chassis 41, and there is a gap between the bottom surface of the mounting chassis 41 and the base 1, the vibration generated when the compressor 4 operates can also be buffered by the mounting chassis 41, further avoiding the resonance among the condensing assembly 3, the compressor 4 and the base 1 during the operation of the refrigeration system, and further reducing the noise generated by vibration during the operation of the refrigeration system.

[0057] Correspondingly, the present utility model further provides an ice cream machine, which includes an ice-making cavity, a control system and the above refrigeration system. The ice-making cavity and the refrigeration system are connected through a refrigeration pipeline 5. The refrigeration end of the refrigeration pipeline 5 is wound around the inner wall of the ice-making cavity. The condensing assembly 3 and the compressor 4 are both connected to the control system. Since the ice cream machine includes the above refrigeration system, the ice cream machine also has all the beneficial effects of the above condenser installation device and the refrigeration system, which will not be elaborated here.

[0058] The above is the preferred embodiment of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements are also regarded as the protection scope of the present utility model.

Claims

1. A condenser installation device, characterized in that, include: Pedestal; A mounting bracket connected to the base; A condensing assembly, wherein the mounting bracket is provided with a first connecting piece, and the condensing assembly is provided with a second connecting piece, and the second connecting piece is detachably connected to the first connecting piece; A first preset distance is formed between the first connecting member and the base, and a second preset distance is formed between the first connecting member and the bottom of the condensation component, and the first preset distance is greater than the second preset distance.

2. The condenser installation device according to claim 1, characterized in that, One of the first connecting member and the second connecting member is formed with at least one buckle, and the other is formed with at least one clamping groove, and the buckle is clamped and matched with the clamping groove; And / or, the first connecting member is formed with at least one threaded hole, the second connecting member is formed with at least one connecting hole, each of the connecting holes is coaxial with one of the threaded holes, and the connecting holes are threadedly connected to the corresponding coaxial threaded holes via connecting bolts.

3. The condenser installation device according to claim 2, wherein, A support plate is formed on the side wall of the mounting bracket, and the support plate is located below the first connecting member; The condensing assembly is provided with an outer extension plate, the outer extension plate faces the mounting bracket, the second connecting member is formed on the outer extension plate, and the supporting plate abuts against the lower portion of the outer extension plate.

4. The condenser installation device according to claim 1, characterized in that, A connecting foot is provided at the bottom of the mounting bracket, and the connecting foot is detachably connected to the base.

5. The condenser installation device according to claim 1, characterized in that, The condensing assembly comprises: A condenser body, wherein the second connecting member is disposed on the condenser body to connect the condenser body to the mounting bracket; The air cooling component is installed on a side of the condenser body facing the mounting bracket. The air cooling component forms an air outlet area, and the condenser body is located in the air outlet area.

6. The condenser installation device according to claim 5, wherein, The condenser body includes a mounting plate, a condensing tube and a plurality of heat dissipating fins. The mounting plate is detachably connected to the mounting bracket. The plurality of heat dissipating fins are spaced apart along a direction parallel to the base on a side of the mounting plate away from the mounting bracket. The condensing tube is inserted in a serpentine shape in the plurality of heat dissipating fins.

7. The condenser installation device according to claim 6, characterized in that, A positioning column and at least one mounting hole are provided on one side of the mounting plate facing the air-cooling component, and a plurality of positioning holes are provided on the side of the air-cooling component facing the mounting plate, wherein the positioning column is suitable for being inserted into a part of the positioning holes, and the mounting hole is detachably connected to another part of the positioning holes by fasteners.

8. The condenser installation device according to claim 6, characterized in that, The mounting bracket is provided with a supporting crossbeam, the supporting crossbeam is located below the mounting plate, and the mounting plate is suitable for abutting against the supporting crossbeam.

9. A refrigeration system, characterized in that, It comprises a compressor, a refrigeration pipeline and a condenser installation device as described in any one of claims 1 to 8, wherein the compressor is connected to the condensing component through the refrigeration pipeline, the base is provided with a mounting frame, the compressor is mounted on the mounting frame, and a gap is formed between the bottom surface of the mounting frame and the base.

10. A cold drink machine, characterized in that, It includes an ice-making cavity, a control system and the refrigeration system according to claim 9, the ice-making cavity and the refrigeration system are connected through the refrigeration pipeline, the refrigeration end of the refrigeration pipeline is wound around the inner wall of the ice-making cavity, and the condensing component and the compressor are both connected to the control system.