Condenser mounting apparatus, refrigeration system, and cold drink machine
By designing a suspended condenser device, the contact area between the condenser and the air is increased, solving the problem of low heat exchange efficiency in air-cooled condensers, and achieving more efficient condensation and reduced noise.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2026-03-12
AI Technical Summary
When existing air-cooled condensers are installed on a base, the airflow at the bottom of the condenser is low, which reduces the contact between the air-cooled condenser and the flowing air, thus reducing the heat exchange efficiency.
A condenser mounting device was designed. By setting a detachable connector and mounting bracket between the base and the condenser assembly, the condenser assembly is suspended in the air, which increases the contact area between the condenser and the flowing air. The connection stability is improved by using a support plate and connecting feet.
It improves the heat exchange efficiency between the condenser and the air, enhances the condensation effect, reduces noise caused by vibration, and ensures the stability and reliability of the connection.
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Figure CN2024138341_12032026_PF_FP_ABST
Abstract
Description
Condenser mounting device, refrigeration system and cold drink machine TECHNICAL FIELD
[0001] The utility model relates to refrigeration equipment field especially, relates to a condenser mounting device, refrigeration system and cold drink machine. BACKGROUND
[0002] The air-cooled condenser is a kind of condenser driven by air flow heat, which is cooled and condensed into liquid by fan or natural convection to dissipate the heat of high-temperature refrigerant gas in the condenser to the atmosphere. The existing air-cooled condenser is installed on the base, and the air flow at the bottom of the condenser is low, which reduces the contact between the air-cooled condenser and the flowing air, and reduces the heat exchange efficiency of the air-cooled condenser.
[0003] SUMMARY
[0004] The utility model discloses a kind of condenser mounting device, refrigeration system and cold drink machine, which can increase the contact area between condenser and flowing air, to improve the heat exchange efficiency and condensing effect of condenser.
[0005] To solve the above technical problems, the utility model provides a kind of condenser mounting device, comprising:
[0006] Base;
[0007] Mounting bracket connected to the base;
[0008] Condensing assembly, the mounting bracket is provided with a first connecting piece, the condensing assembly is provided with a second connecting piece, and the second connecting piece is detachably connected with the first connecting piece;
[0009] The first connecting piece and the base form a first preset distance, and the first connecting piece and the bottom of the condensing assembly form a second preset distance, and the first preset distance is greater than the second preset distance.
[0010] Wherein, one of the first connecting piece and the second connecting piece 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;
[0011] And / or, the first connecting piece is formed with at least one threaded hole, and the second connecting piece is formed with at least one connecting hole, 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 connecting bolt.
[0012] Wherein, the side wall of the mounting bracket is formed with a support plate, and the support plate is located below the first connecting piece;
[0013] The condensing assembly is provided with an outer extension plate facing the mounting support, the second connecting piece is formed on the outer extension plate, and the support plate abuts against the lower part of the outer extension plate.
[0014] The bottom of the mounting support is provided with a connecting leg, and the connecting leg is detachably connected with the base.
[0015] The condensing assembly comprises:
[0016] The second connecting piece is arranged on the condenser body to connect the condenser body to the mounting support.
[0017] The air cooling piece is mounted on one side of the condenser body facing the mounting support, the air cooling piece is formed with an air outlet area, and the condenser body is located in the air outlet area.
[0018] The condenser body comprises a mounting plate, a condenser pipe and a plurality of heat dissipation fins, the mounting plate is detachably connected with the mounting support, a plurality of the heat dissipation fins are arranged on one side of the mounting plate away from the mounting support in a direction parallel to the base, and the condenser pipe is inserted into the plurality of heat dissipation fins in a serpentine shape.
[0019] The side of the mounting plate facing the air cooling piece is provided with a positioning column and at least one mounting hole, the side of the air cooling piece facing the mounting plate is provided with a plurality of positioning holes, the positioning column is adapted to be inserted into a part of the positioning holes, and the mounting hole is detachably connected with another part of the positioning holes through a fastener.
[0020] The mounting support is provided with a support cross beam below the mounting plate, and the mounting plate is adapted to abut against the support cross beam.
[0021] Correspondingly, the utility model also provides a refrigeration system, including compressor, refrigeration pipeline and above-mentioned any one condenser mounting device, the compressor with between condensing assembly through refrigeration pipeline intercommunication, the base is provided with installation chassis, the compressor is installed in installation chassis, and the bottom surface of installation chassis and base form gap.
[0022] Correspondingly, the utility model also provides a cold drink machine, including ice making cavity, control system and above-mentioned refrigeration system, ice making cavity and refrigeration system are connected through refrigeration pipeline, and the refrigeration end of refrigeration pipeline is arranged on the inner wall of ice making cavity, and condensing assembly, compressor are connected with control system.
[0023] The utility model is implemented, and has the following beneficial effects:
[0024] The condenser mounting device provided by the embodiment can be detachably connected with the first connecting piece through the second connecting piece, so that the condenser assembly is mounted on the mounting bracket, the first spacing distance between the base and the first connecting piece is greater than the second spacing distance between the bottom of the condenser assembly and the first connecting piece, that is, a gap is formed between the bottom of the condenser assembly and the base after the condenser assembly is mounted, so that the condenser assembly is suspendedly mounted on the base and the mounting bracket, the bottom of the condenser assembly can also flow through the air flow, thereby increasing the contact area between the condenser assembly and the flowing air, effectively improving the heat exchange efficiency between the condenser and the air, and enhancing the condensing effect of the condenser. BRIEF DESCRIPTION OF DRAWINGS
[0025] Fig. 1 is a perspective structural schematic view of the condenser mounting device of the utility model;
[0026] Fig. 2 is a side structural schematic view of the condenser mounting device of the utility model;
[0027] Fig. 3 is a perspective structural schematic view of the mounting bracket of the utility model;
[0028] Fig. 4 is a perspective structural schematic view of the condenser body of the utility model;
[0029] Fig. 5 is a perspective structural schematic view of the air cooling piece of the utility model;
[0030] Fig. 6 is a structural schematic view of the refrigeration system of the utility model. DETAILED DESCRIPTION
[0031] In order to make the purpose, technical scheme and advantages of the utility model more clear, the utility model will be further described in detail below in combination with the drawings. Only by this declaration, the up, down, left, right, front, back, inside and outside directions appearing or about to appear in the utility model in the text are based on the drawings of the utility model, and they are not specific limitations on the utility model.
[0032] The condenser mounting device provided by the utility model can make the condenser suspendedly mounted on the base 1 and the mounting bracket 2, thereby increasing the contact area between the whole condenser and the flowing air, improving the heat exchange efficiency between the condenser and the air, and thereby improving the condensing effect of the condenser.
[0033] In an embodiment of the utility model, as shown in figures 1 to 5, condenser mounting device includes base 1, mounting bracket 2 and condensing assembly 3, mounting bracket 2 is connected to base 1, and mounting bracket 2 is provided with first connecting piece 21, and condensing assembly 3 is provided with second connecting piece 31, and second connecting piece 31 is detachably connected with first connecting piece 21 to detachably connect condensing assembly 3 on mounting bracket 2, and first connecting piece 21 and base 1 form first interval distance, and first connecting piece 21 and the bottom of condensing assembly 3 form second interval distance, and first interval distance is greater than second interval distance.
[0034] The condenser mounting device provided in the embodiment is detachably connected with first connecting piece 21 by second connecting piece 31 to install condensing assembly 3 on mounting bracket 2, and first interval distance between base 1 and first connecting piece 21 is greater than second interval distance between the bottom of condensing assembly 3 and first connecting piece 21, that is, the bottom of condensing assembly 3 and base 1 form a gap after the installation of condensing assembly 3, so that condensing assembly 3 is suspendedly installed on base 1 and mounting bracket 2, and the bottom of condensing assembly 3 can also flow through air flow, thereby increasing the contact area between condensing assembly 3 and flowing air, effectively improving the heat exchange efficiency between condenser and air, and enhancing the condensing effect of condenser.
[0035] In addition, since condensing assembly 3 is suspendedly installed, the vibration generated by condensing assembly 3 during work can be buffered through mounting bracket 2, so that resonance between condensing assembly 3 and base 1 can be avoided, thereby reducing the noise generated by condensing assembly 3 during work due to vibration.
[0036] It should be noted that mounting bracket 2 can be spliced by three aluminum rods, and a surrounding space is formed between the three aluminum rods, and the size of the surrounding space is preferably greater than the overall size of condensing assembly 3. First interval distance and second interval distance can be selected and arranged according to the specific dimensions of mounting bracket 2 and condensing assembly 3, so that condensing assembly 3 can be suspendedly installed on mounting bracket 2. For example, when the overall height of condensing assembly 3 is 0.8 times the height of mounting bracket 2, first connecting piece 21 can be arranged at a position of 0.6 times the height of mounting bracket 2, and second connecting piece 31 is arranged at a position of 0.5 times the height of condensing assembly 3, so that condensing assembly 3 can be suspendedly installed on mounting bracket 2.
[0037] In the embodiment, as shown in figures 1 to 4, to detachably connect condensing assembly 3 and mounting bracket 2, the following connection modes can be used between first connecting piece 21 and second connecting piece 31:
[0038] The first connecting mode, as shown in FIGS. 3 and 4, one of the first connecting member 21 and the second connecting member 31 is formed with at least one buckle 311, and the other is formed with at least one clamping groove 211, and the buckle 311 is clamped and matched with the clamping groove 211. Further, when the condensing assembly 3 is installed, the buckle 311 and the clamping groove 211 can be matched to ensure the accurate positioning of the installation between the condensing assembly 3 and the mounting bracket 2, thereby improving the convenience of the installation of the condensing assembly 3 and ensuring the connection stability between the condensing assembly 3 and the mounting bracket 2.
[0039] Specifically, the first connecting member 21 of the mounting bracket 2 is formed with the clamping groove 211, and the second connecting member 31 of the condensing assembly 3 is formed with the buckle 311. When the condensing assembly 3 needs to be installed on the mounting bracket 2, the buckle 311 of the condensing assembly 3 can be buckled into the clamping groove 211 to complete the connection between the condensing assembly 3 and the mounting bracket 2.
[0040] It should be noted here that the first connecting member 21 can be provided with a plurality of spaced clamping grooves 211, and the second connecting member 31 can be provided with a corresponding number of buckles 311, so as to ensure the connection stability between the condensing assembly 3 and the mounting bracket 2 by matching the plurality of buckles 311 and the plurality of clamping grooves 211. The specific number of buckles 311 and clamping grooves 211 can be selected according to the actual situation, which is not limited here.
[0041] The second connecting mode, as shown in FIGS. 3 and 4, 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 connecting hole 312. Each connecting hole 312 is coaxial with one of the threaded holes 212, and the connecting hole 312 and the corresponding coaxial threaded hole 212 are connected by a connecting bolt. Further, the condensing assembly 3 is tightly installed on the mounting bracket 2 by the connecting bolt and the threaded hole 212, and the fastening force between the connecting bolt and the threaded hole 212 during connection improves the connection stability between the condensing assembly 3 and the mounting bracket 2 in different environments.
[0042] The third connecting mode, the first connecting member 21 is provided with at least one first connecting group, and the first connecting group includes one 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 second connecting group, and the second connecting group includes one buckle 311 and two connecting holes 312, and the two connecting holes 312 are respectively distributed on both sides of the clamping groove 211. When the condensing assembly 3 is installed 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 condensing assembly 3 on the mounting bracket 2, and then the condensing assembly 3 is locked and fixed on the mounting bracket 2 by the connecting bolt. Further, while improving the convenience of the installation of the condensing assembly 3 on the mounting bracket 2, the connection stability between the condensing assembly 3 and the mounting bracket 2 can also be ensured.
[0043] The third connection mode is preferably adopted between the condenser assembly 3 and the mounting bracket 2 to ensure quick installation and connection stability.
[0044] In this embodiment, when the condenser is suspended, the weight of the condenser is applied to the base 1 through the mounting bracket 2, so the mounting bracket 2 needs to have a certain bearing capacity. To improve the bearing capacity of the mounting bracket 2, as shown in FIGS. 2 and 3, the side wall of the mounting bracket 2 is formed with a support plate 22, the support plate 22 is located below the first connecting piece 21, the condenser assembly 3 is provided with an outer extension plate 32, the outer extension plate 32 faces the mounting bracket 2, the second connecting piece 31 is formed on the outer extension plate 32, and the support plate 22 abuts against the lower part of the outer extension plate 32.
[0045] It can be understood that, since the second connecting piece 31 is formed on the outer extension plate 32, the condenser assembly 3 is connected with the mounting bracket 2 through the outer extension plate 32. By supporting the outer extension plate 32 through the support plate 22, the gravity of the condenser assembly 3 can act on the mounting bracket 2 through the support plate 22 in addition to the connecting structure, thereby preventing the gravity of the condenser assembly 3 from concentrating on the connecting structure and causing deformation or damage of the connecting structure, improving the supporting bearing capacity of the mounting bracket 2 to the condenser assembly 3, and effectively ensuring the stability and reliability of the connection between the condenser assembly 3 and the mounting bracket 2.
[0046] In this embodiment, as shown in FIG. 3, the bottom of the mounting bracket 2 is provided with a connecting leg 23, the connecting leg 23 is detachably connected with the base 1, so as to increase the contact area between the bottom of the mounting bracket 2 and the base 1 by using the connecting leg 23, strengthen the connection strength between the mounting bracket 2 and the base 1, and ensure the fixing stability of the mounting bracket 2.
[0047] Specifically, the connecting leg 23 extends towards the inside of the mounting bracket 2, the connecting leg 23 is preferably integrally formed with the mounting bracket 2, the base 1 can be formed with a mounting groove, the connecting leg 23 is located in the mounting groove, and the connecting leg 23 and the base 1 are threadedly connected through bolts or studs to fix the mounting bracket 2 to the base 1.
[0048] It should be noted that, in order to further reduce the transmission vibration between the mounting bracket 2 and the base 1, the contact surface between the connecting leg 23 and the base 1 is provided with a damping pad, which can be a silica gel pad or a soft pad made of other materials.
[0049] In the embodiment of the utility model, as shown in Figure 1, Figure 2, Figure 4 and Figure 5, the condensing assembly 3 includes a condenser body 33 and a wind cooling piece 34, the second connecting piece 31 is arranged on the condenser body 33 to connect the condenser body 33 to the mounting bracket 2. The wind cooling piece 34 is installed on the side of the condenser body 33 facing the mounting bracket 2, the wind cooling piece 34 forms an air outlet area, and the condenser body 33 is located in the air outlet area. Further, the wind cooling piece 34 can provide a flowing cooling air flow for the condenser body 33, the cooling air flow and the refrigerant gas in the condenser body 33 are heat exchanged, the heat exchange efficiency of the cooling air flow and the refrigerant gas in the condenser body 33 is increased, and the condensing efficiency of the condenser body 33 is improved.
[0050] Preferably, in the embodiment, the wind cooling piece 34 is a heat dissipation fan, the condenser body 33 is located in the direction of the fan blade of the heat dissipation fan, and when the heat dissipation fan rotates, the fan blade accelerates the air flow, and the heat exchange efficiency between the condenser body 33 and the air is improved.
[0051] As shown in Figure 1, Figure 2 and Figure 4, the condenser body 33 includes a mounting plate 331, a condensing pipe 332 and a plurality of heat dissipation fins 333, the mounting plate 331 is detachably connected with the mounting bracket 2, the plurality of heat dissipation fins 333 are arranged on the side of the mounting plate 331 away from the mounting bracket 2 in a direction parallel to the base 1, and the condensing pipe 332 is inserted into the plurality of heat dissipation fins 333 in a serpentine shape.
[0052] It can be understood that when the flowing air flows through the condenser body 33, more turbulence and vortex are formed in the flowing air due to the blocking of the heat dissipation fins 333, thereby increasing the contact area between the condensing pipe 332 and the flowing air and enhancing the convective heat exchange between the air and the condenser, so that the flowing air can continue to exchange heat with the condensing pipe 332 more fully, and the condensing efficiency of the condenser body 33 is further improved.
[0053] In the embodiment, for the installation between the air cooling piece 34 and the condenser body 33, as shown in FIG. 4 and FIG. 5, the side of the installation plate 331 facing the air cooling piece 34 is provided with positioning columns 334 and at least one installation hole 335, and the side of the air cooling piece 34 facing the installation plate 331 is provided with a plurality of positioning holes 341, wherein the positioning columns 334 are adapted to be inserted into a part of the positioning holes 341, and the installation hole 335 is detachably connected with another part of the positioning holes 341 through a fastener. Preferably, the fastener is a stud or a bolt. When the air cooling piece 34 is installed on the condenser body 33, the positioning columns 334 can be inserted into the corresponding part of the positioning holes 341, at this time, the installation hole 335 is coaxial with another part of the positioning holes 341, which facilitates the fastener to fasten and connect the air cooling piece 34 and the installation plate 331. Through the cooperation between the positioning holes 341 and the positioning columns 334, the accurate positioning of the air cooling piece 34 on the installation plate 331 can be ensured, the human error in the installation process is effectively reduced, and the installation quality between the air cooling piece 34 and the installation plate 331 is improved.
[0054] Further, the installation support 2 is provided with a support beam, the support beam is located below the installation plate 331, and the installation plate 331 is adapted to abut against the support beam to provide support for the condenser body 33 by the support beam, further disperses the stress borne by the connecting structure between the condenser body 33 and the installation support 2, thereby improving the support bearing capacity of the installation support 2 to the condenser body 33 and ensuring the stability of the condenser body 33 installed on the installation support 2.
[0055] Preferably, the bottom of the installation plate 331 is provided with an abutting boss extending to the support beam, so that the installation plate 331 abuts against the support beam through the abutting boss to provide support for the condenser body 33.
[0056] The utility model also provides a refrigeration system, as shown in FIG. 6, the refrigeration system includes compressor 4, refrigeration pipeline 5 and the condenser installation device of any one of above, compressor 4 and condensing assembly 3 are communicated through refrigeration pipeline 5, to ensure that the high temperature and high pressure gas formed by compressor 4 can be transported to condensing assembly 3 through refrigeration pipeline 5.Base 1 is provided with installation chassis 41, compressor 4 is installed on installation chassis 41, and a gap is formed between the bottom surface of installation chassis 41 and base 1.
[0057] The refrigeration system has all the beneficial effects of the above-mentioned condenser installation device, which will not be repeated here. In addition, since the compressor 4 is installed on the base 1 through the installation chassis 41, and a gap is formed between the bottom surface of the installation chassis 41 and the base 1, the vibration generated by the compressor 4 during operation can also be buffered through the installation chassis 41, further avoiding the resonance of the condensing assembly 3, the compressor 4 and the base 1 during operation of the refrigeration system, and further reducing the noise generated by vibration during operation of the refrigeration system.
[0058] Correspondingly, the utility model still provides a cold drink machine, the cold drink machine includes ice making cavity, control system and above-mentioned refrigeration system, ice making cavity and refrigeration system are connected through refrigeration pipeline 5 between, the refrigeration end of refrigeration pipeline 5 is around the inner wall of ice making cavity, condensing assembly 3, compressor 4 are connected with control system. Since the cold drink machine includes above-mentioned refrigeration system, the cold drink machine is also provided with above-mentioned condenser mounting device and all beneficial effects of refrigeration system, here will not repeat.
[0059] The above is the preferred embodiment of the utility model, it should be pointed out that for ordinary skilled person in the art, without departing from the principles of the present application, can make a number of improvements and refinements, these improvements and refinements are also considered as the protection scope of the utility model.
Claims
1. A condenser mounting device, characterized by, The application relates to a condenser mounting device, which comprises a base, a mounting support connected to the base, a condenser assembly, the mounting support is provided with a first connecting member, the condenser assembly is provided with a second connecting member, the second connecting member is detachably connected with the first connecting member, a first preset distance is formed between the first connecting member and the base, a second preset distance is formed between the first connecting member and the bottom of the condenser assembly, and the first preset distance is greater than the second preset distance. One of the first connecting member and the second connecting member is provided with at least one buckle, and the other is provided with at least one clamping groove, the buckle is clamped and matched with the clamping groove, and / or the first connecting member is provided with at least one threaded hole, the second connecting member is provided with at least one connecting hole, each connecting hole is coaxial with one threaded hole, and the connecting hole and the corresponding coaxial threaded hole are threadedly connected through a connecting bolt. The side wall of the mounting support is provided with a supporting plate, and the supporting plate is located below the first connecting member. The condenser assembly is provided with an outer extension plate, the outer extension plate faces the mounting support, the second connecting member is formed on the outer extension plate, and the supporting plate abuts against the lower part of the outer extension plate. The bottom of the mounting support is provided with a connecting leg, and the connecting leg is detachably connected with the base.
2. The condenser mounting arrangement of claim 1, wherein, The condenser assembly comprises a condenser body, the second connecting member is arranged on the condenser body to connect the condenser body to the mounting support, and an air cooling member is arranged on one side of the condenser body facing the mounting support, the air cooling member is provided with an air outlet area, and the condenser body is located in the air outlet area. The condenser body comprises a mounting plate, a condenser pipe and a plurality of heat dissipation fins, the mounting plate is detachably connected with the mounting support, the plurality of heat dissipation fins are arranged on one side of the mounting plate away from the mounting support in a direction parallel to the base, and the condenser pipe is arranged in a serpentine shape among the plurality of heat dissipation fins.
3. The condenser mounting arrangement of claim 2, wherein, One side of the mounting plate facing the air cooling member is provided with a positioning column and at least one mounting hole, the side of the air cooling member facing the mounting plate is provided with a plurality of positioning holes, the positioning column is adapted to be inserted into a part of the positioning holes, and the mounting hole is detachably connected with another part of the positioning holes through a fastener. The mounting support is provided with a supporting cross beam, the supporting cross beam is located below the mounting plate, and the mounting plate is adapted to abut against the supporting cross beam.
4. The condenser mounting arrangement of claim 1, wherein, The application further relates to a refrigeration system comprising a compressor, a refrigeration pipeline and the condenser mounting device, the compressor is communicated with the condenser assembly through the refrigeration pipeline, the base is provided with a mounting base frame, the compressor is mounted on the mounting base frame, and a gap is formed between the bottom surface of the mounting base frame and the base.
5. The condenser mounting arrangement of claim 1, wherein, The application further relates to a refrigeration system comprising an ice making cavity, a control system and the refrigeration system, the ice making cavity and the refrigeration system are connected through the refrigeration pipeline, a refrigeration end of the refrigeration pipeline is arranged on the inner wall of the ice making cavity, and the condenser assembly and the compressor are connected with the control system. 6. The condenser mounting arrangement of claim 5, wherein, 7. The condenser mounting arrangement of claim 6, wherein, 8. The condenser mounting arrangement of claim 6, wherein, 9. A refrigeration system characterized by, 10. A cold beverage machine characterized by
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