Back-hanging condenser structure and freezer
By designing the condenser assembly to be completely embedded in the freezer body and arranged in a circuitous manner, the problem of easy damage to the back-mounted condenser and possible injury to the user is solved, and the structural compactness and aesthetics of the freezer are improved.
Patent Information
- Application Number
- CN202422733263.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-11-11
AI Technical Summary
The existing back-mounted condenser protrudes from the back of the freezer and is easily damaged by collision with other objects, causing injuries to users and reducing the appearance of the freezer.
A back-mounted condenser structure is designed so that the surface width of the condenser assembly is less than or equal to the depth of the installation cavity. The condenser is arranged in a circuitous manner and fixed in the cavity by fixings and limit strips to avoid protrusion.
It effectively prevents the condenser from being damaged by collision with external objects, reduces the risk of users being injured by high temperatures, and improves the compactness and aesthetics of the freezer.
Smart Images

Figure CN223435341U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of refrigeration, in particular to a back-hanging condenser structure and a freezer. Background Art
[0002] Freezers are one of the indispensable electrical appliances in modern homes and commercial places. Their main purpose is to maintain the freshness and quality of food, beverages and other items. The refrigeration system of the freezer includes a condenser for heat exchange with the outside world. The refrigerant in the refrigeration system dissipates heat through the condenser, realizing heat exchange between the freezer and the outside world.
[0003] Due to the large size and flatness of the back-mounted condenser, it is generally installed on the back of the freezer. Nowadays, the freezers on the market that use the back-mounted condenser have the back-mounted condenser completely protruding from the back of the box. Such a design can easily cause the back-mounted condenser to collide with external objects and be damaged. At the same time, the user is at risk of being injured by touching the high-temperature back-mounted condenser, and the protruding back-mounted condenser will reduce the appearance of the freezer. Therefore, it is necessary to develop a back-mounted condenser structure and freezer to solve the problems of the existing back-mounted condenser protruding from the back of the freezer and easily colliding with other objects and being damaged, the user being injured by touching it, and the freezer's appearance being reduced. Utility Model Content
[0004] In order to solve the above-mentioned problems that the existing back-mounted condenser protrudes from the back of the freezer and is easily damaged by collision with other objects, causes injuries to users, and reduces the appearance of the freezer, the technical solution adopted by the present invention is as follows:
[0005] A back-mounted condenser structure comprises a box body and a condenser assembly. The box body is provided with a first cavity for installing the condenser assembly. The surface width of the condenser assembly is less than or equal to the depth of the first cavity.
[0006] Furthermore, the condenser assembly includes a fixing member connected to the first cavity and a condenser connected to the fixing member, and the surface width of the condenser assembly is at least the thickness of the fixing member and the condenser after assembly.
[0007] Furthermore, the condenser includes a first condensation section and a second condensation section connected to the first condensation section, the fixing part is connected to the second condensation section, the two ends of the first condensation section are respectively connected to two second condensation sections, and a plurality of alternately connected first condensation sections and second condensation sections form the condenser, and the condenser is arranged in a circuitous manner.
[0008] Furthermore, the cross-sectional shape of the first condensation portion is an arc shape, the cross-sectional shape of the second condensation portion is a straight line shape, the two second condensation portions are arranged in parallel, and the distance between the two second condensation portions is equal to the distance between the two ends of the first condensation portion.
[0009] Furthermore, the fixing part includes a mounting part connected to the first cavity, a first fixing part and a second fixing part respectively connected to the mounting part, the first fixing part and the second fixing part are respectively used to fix two adjacent second condensation parts, the mounting part and the first cavity are provided with connecting holes for fasteners to pass through, and the fasteners pass through the connecting holes respectively located in the mounting part and the first cavity, so that the fixing part is connected and fixed to the first cavity.
[0010] Furthermore, the first fixing portion and the second fixing portion are respectively provided with a first card slot and a second card slot for fixing two adjacent second condensation portions, and the first card slot and the second card slot match the second condensation portion.
[0011] Furthermore, the opening widths of the first card slot and the second card slot are less than or equal to the cross-sectional diameter of the second condensation portion, the opening direction of the first card slot is the same as the vertical direction, and the opening direction of the second card slot is the same as the horizontal direction.
[0012] Furthermore, the condenser assembly also includes a limit bar connected to the condenser, and the limit bar is simultaneously connected to multiple second condensation parts. The multiple limit bars form a limit net that fixes the relative positions of multiple second condensation parts. The first cavity is provided with a groove on the side away from the opening for strengthening the structural strength of the first cavity. The surface width of the condenser assembly is the thickness of the fixing part, condenser and limit bar after assembly.
[0013] Furthermore, the two limiting nets are respectively located on opposite sides of the condenser, the number of the fixing members is at least two, and the plurality of grooves are evenly distributed on a side away from the opening of the first cavity.
[0014] The refrigerator comprises a refrigerator body, wherein the refrigerator body comprises the box body and the condenser assembly.
[0015] The beneficial effects of the utility model are as follows:
[0016] The utility model discloses a first cavity for installing condenser assembly is set up in the box, and the surface width of condenser assembly is less than or equal to the depth of first cavity, to make condenser assembly embed completely in first cavity, avoid the situation that condenser assembly collides with external object and is damaged, reduce the risk that user touches high temperature condenser assembly and is wounded, effectively improve the rationality of condenser structure, solve the existing back hanging condenser and protrude from the back of ice cabinet and be easy to collide with other articles and be damaged, user touch and be wounded, and reduce the ice cabinet color value etc. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the structure schematic view of the utility model of a kind of back hanging condenser structure and ice cabinet.
[0018] Figure 2 It is the structure schematic view of the box of the utility model of a kind of back hanging condenser structure and ice cabinet.
[0019] Figure 3 It is the partial enlarged view A of the utility model of a kind of back hanging condenser structure and ice cabinet.
[0020] Figure 4 It is the partial enlarged view B of the utility model of a kind of back hanging condenser structure and ice cabinet.
[0021] Figure 5 It is the structure schematic view of the fixing piece of the utility model of a kind of back hanging condenser structure and ice cabinet.
[0022] Figure 6 It is the sectional view of the utility model of a kind of back hanging condenser structure and ice cabinet.
[0023] Figure 7 It is the partial enlarged view C of the utility model of a kind of back hanging condenser structure and ice cabinet. DETAILED DESCRIPTION
[0024] The embodiment of the utility model is explained in detail below in connection with the drawings.
[0025] Please refer to Figures 1 to 7A back-mounted condenser structure includes a housing 1 and a condenser assembly 3. The housing 1 is provided with a first cavity 4 for mounting the condenser assembly 3, and the surface width of the condenser assembly 3 is less than or equal to the depth of the first cavity 4. The housing 1 is the load-bearing structure of the back-mounted condenser. In some embodiments, the housing 1 is made of metal or high-strength plastic to ensure sufficient structural strength and durability. The condenser assembly 3 is the part of the freezer's refrigeration system responsible for transferring heat from the refrigerant to the external environment, and the first cavity 4 is a space specifically used to mount the condenser assembly 3. The surface width of the condenser assembly 3 is less than or equal to the depth of the first cavity 4, which can ensure that the condenser assembly 3 can be completely embedded in the first cavity 4 without protruding from the housing 1, effectively avoiding the risk of damage caused by collision between the condenser assembly 3 and external objects. In summary, by providing a first cavity 4 for installing the condenser assembly 3 in the box body 1, and making the surface width of the condenser assembly 3 less than or equal to the depth of the first cavity 4, so that the condenser assembly 3 is completely embedded in the first cavity 4, the structural compactness of the freezer is effectively improved, and the situation where the condenser assembly 3 is damaged by collision with external objects is avoided, and the risk of users being injured by touching the high-temperature condenser assembly 3 is reduced, the rationality of the condenser structure is effectively improved, and the problems of the existing back-hanging condenser protruding from the back of the freezer and easily colliding with other objects and being damaged, users being injured by touching, and the reduction in the appearance of the freezer are solved.
[0026] Furthermore, the condenser assembly 3 includes a fixing member 31 connected to the first cavity 4 and a condenser 32 connected to the fixing member 31. The surface width of the condenser assembly 3 is at least the thickness of the fixing member 31 and the condenser 32 after assembly. The fixing member 31 is a connecting component used to connect the condenser 32 and the first cavity 4. It is responsible for firmly mounting the condenser 32 in the first cavity 4. The condenser 32 is a component of the freezer's refrigeration system responsible for transferring heat from the refrigerant to the external environment. Furthermore, the surface width of the condenser assembly 3 is at least the total thickness of the fixing member 31 and the condenser 32 after assembly. This design ensures that the condenser assembly 3 can be fully embedded in the first cavity 4 and will not exceed the outline of the cabinet 1, thereby avoiding the risk of collision with external objects. At the same time, it effectively improves the overall structural compactness, aesthetics, and rationality of the freezer.
[0027] Furthermore, the condenser 32 includes a first condensation section 321 and a second condensation section 322 connected to the first condensation section 321. The fixing part 31 is connected to the second condensation section 322. The two ends of the first condensation section 321 are respectively connected to two second condensation sections 322. A plurality of alternately connected first condensation sections 321 and second condensation sections 322 form the condenser 32. The condenser 32 is arranged in a circuitous manner. The first condensation section 321 and the second condensation section 322 are the parts of the condenser 32 responsible for heat exchange with the outside world. At the same time, the fixing part 31 is connected to the second condensation section 322 to ensure that the condenser 32 is fixedly connected to the fixing part 31. Furthermore, the two ends of the first condensation section 321 are respectively connected to the two second condensation sections 322 to form a continuous flow path, and the condenser 32 is composed of a plurality of alternatingly connected first condensation sections 321 and second condensation sections 322 to form a circuitous structure, which can maximize the length of the condenser 32 within a limited space, thereby improving the heat dissipation effect of the condenser 32. At the same time, the circuitous setting also helps to evenly distribute heat, avoid local overheating of the condenser 32, and effectively extend the service life of the condenser 32. Specifically, the circuitous shape of the condenser 32 can be M-shaped or bow-shaped.
[0028] Furthermore, the cross-section of the first condenser section 321 is arc-shaped, the cross-section of the second condenser section 322 is linear, the two second condenser sections 322 are arranged in parallel, and the distance between the two second condenser sections 322 is equal to the distance between the two ends of the first condenser section 321. The cross-sections of the first condenser section 321 and the second condenser section 322 are arc-shaped and linear, respectively, meaning that the first condenser section 321 is curved and the second condenser section 322 is straight. The alternating connection of the first condenser section 321 and the second condenser section 322 enables a circuitous arrangement of the condenser 32, effectively improving the heat dissipation capacity of the condenser 32. Furthermore, the two second condenser sections 322 are arranged in parallel, and the distance between the two second condenser sections 322 is equal to the distance between the two ends of the first condenser section 321. This design ensures that the refrigerant is evenly distributed in the condenser 32, avoids local overheating, effectively improves the heat dissipation capacity and reliability of the condenser 32, and ensures the overall structural compactness and aesthetics of the condenser 32.
[0029] Further, the fixing member 31 comprises a mounting portion 311 connected with the first cavity 4, a first fixing portion 312 and a second fixing portion 313 connected with the mounting portion 311 respectively, the first fixing portion 312 and the second fixing portion 313 are used for fixing two adjacent second condensing portions 322 respectively, the mounting portion 311 and the first cavity 4 are provided with connecting holes 6 for fasteners to pass through, the fasteners pass through the connecting holes 6 of the mounting portion 311 and the first cavity 4 respectively, so that the fixing member 31 is connected and fixed to the first cavity 4. The mounting portion 311 is the part of the fixing member 31 for connecting with the first cavity 4, and the mounting portion 311 and the first cavity 4 are both provided with connecting holes 6 for fasteners to pass through, the fasteners pass through the connecting holes 6 of the mounting portion 311 and the first cavity 4 respectively, so that the fixing member 31 is connected and fixed to the first cavity 4, adopting such a connection mode can effectively ensure the connection stability and reliability of the fixing member 31 and the first cavity 4, further, the first fixing portion 312 is used for fixing one second condensing portion 322, and the second fixing portion 313 is used for fixing another adjacent second condensing portion 322, adopting such a design means that the fixing member 31 can fix the condenser 32 and fix the relative positions of two adjacent second condensing portions 322 at the same time, avoiding the deformation of the condenser 32 due to high temperature during use, causing two adjacent second condensing portions 322 to be too close and locally overheated, resulting in damage to the condenser 32, effectively improving the reliability and stability of the condenser assembly 3.
[0030] Further, the first fixing portion 312 and the second fixing portion 313 are respectively provided with a first clamping groove 3121 and a second clamping groove 3131 for fixing two adjacent second condensing portions 322, the first clamping groove 3121 and the second clamping groove 3131 match the second condensing portion 322. The first clamping groove 3121 is located on the first fixing portion 312 and is used for fixing one second condensing portion 322, similarly, the second clamping groove 3131 is located on the second fixing portion 313 and is used for fixing another adjacent second condensing portion 322, the shape and size of the first clamping groove 3121 and the second clamping groove 3131 match the outer contour of the second condensing portion 322, to ensure that the second condensing portion 322 can be stably clamped into the clamping groove, adopting such a design not only ensures that the second condensing portion 322 can be stably installed on the fixing member 31, but also provides a convenient installation method, making the installation and maintenance of the condenser 32 more convenient, effectively improving the stability, reliability and convenience of the connection between the fixing member 31 and the condenser 32.
[0031] Further, the opening width of the first clamping groove 3121 and the second clamping groove 3131 is less than or equal to the cross-sectional diameter of the second condensing part 322, the opening direction of the first clamping groove 3121 is the same as the vertical direction, and the opening direction of the second clamping groove 3131 is the same as the horizontal direction. By setting the opening width of the first clamping groove 3121 and the second clamping groove 3131 to be less than or equal to the cross-sectional diameter of the second condensing part 322, it can be ensured that the second condensing part 322 can be tightly clamped into the clamping groove, preventing it from moving or falling off during operation. At the same time, since the opening width matches the cross-sectional diameter of the second condensing part 322, no additional fixing members or tools are needed during installation and disassembly. It only needs to push the second condensing part 322 into the clamping groove to achieve fixation, effectively improving the convenience of installing and disassembling the condenser assembly 3. Further, the opening direction of the first clamping groove 3121 is the same as the vertical direction, which means that the first clamping groove 3121 provides at least horizontal limiting for the second condensing part 322. The opening direction of the second clamping groove 3131 is the same as the horizontal direction, which means that the second clamping groove 3131 provides at least vertical limiting for another adjacent second condensing part 322. Such a design can further ensure that the second condensing part 322 is fixed to the fixing member 31, avoiding deformation or loosening during use, and effectively improving the structural stability and reliability of the condenser assembly 3.
[0032] Furthermore, the condenser assembly 3 also includes a limiting bar 331 connected to the condenser 32, and the limiting bar 331 is simultaneously connected to multiple second condensation parts 322. The multiple limiting bars 331 form a limiting net 33 for fixing the relative positions of multiple second condensation parts 322. The first cavity 4 is provided with a groove 41 on the side away from the opening for strengthening the structural strength of the first cavity 4. The surface width of the condenser assembly 3 is the thickness of the fixing part 31, condenser 32 and limiting bar 331 after assembly. The limiting strips 331 are used to fix the relative positions of the plurality of second condensation parts 322. The plurality of limiting strips 331 form the limiting net 33. The limiting net 33 can effectively prevent the second condensation part 322 from moving or deforming during operation, thereby ensuring the heat dissipation efficiency of the condenser 32. At the same time, the limiting net 33 can effectively reduce the risk of injury caused by the user directly touching the hot and sharp condenser 32. Furthermore, the first cavity 4 is provided with a groove 41 on the side away from the opening for strengthening the structural strength of the first cavity 4. The design of the groove 41 can enhance the rigidity of the first cavity 4 and prevent it from moving or deforming in the condenser. The condenser 32 deforms under long-term high-temperature baking, and at the same time makes the first cavity 4 more solid when subjected to external pressure and / or impact, effectively improving the structural stability and reliability of the entire freezer. The surface width of the condenser assembly 3 is the total thickness of the fixing part 31, condenser 32 and limit bar 331 after assembly, which means that the condenser assembly 3 can be completely embedded in the first cavity 4 and will not exceed the outline of the box 1, thereby avoiding the risk of damage to the condenser assembly 3 due to collision with external objects, and at the same time reducing the risk of users getting hurt by touching the hot and sharp condenser assembly 3, thereby improving the appearance of the entire freezer.
[0033] Furthermore, the two limiting nets 33 are respectively located on opposite sides of the condenser 32, the number of the fixing members 31 is at least two, and the plurality of grooves 41 are evenly distributed on the side away from the opening of the first cavity 4. The two limiting nets 33 are respectively located on opposite sides of the condenser 32, which can fix the condenser 32 in all directions, prevent the condenser 32 from being deformed or loosened during use, and effectively improve the structural stability of the condenser assembly 3. At the same time, the number of the fixing members 31 is at least two, and the plurality of fixing members 31 can provide the condenser 32 with multiple fixing points, effectively improving the connection stability and reliability between the condenser assembly 3 and the first cavity 4. Furthermore, the plurality of grooves 41 are evenly distributed on the side away from the opening of the first cavity 4, which can enhance the structural strength of the first cavity 4, prevent it from being deformed under long-term high-temperature baking of the condenser 32, and make the first cavity 4 stronger when subjected to external pressure and / or impact.
[0034] The freezer includes a freezer body, which includes the housing 1 and the condenser assembly 3. The freezer body includes a refrigerated or frozen space for storing items. The freezer body also includes the housing 1 and the condenser assembly 3. Therefore, the freezer body can prevent the condenser assembly from being damaged by collision with external objects, reducing the risk of injury to users from touching the hot condenser assembly, and effectively improving the structural rationality of the freezer body.
[0035] Example 1
[0036] A back-mounted condenser structure includes a box body 1 and a condenser assembly 3. The box body 1 is provided with a first cavity 4 for installing the condenser assembly 3. The surface width of the condenser assembly 3 is smaller than the depth of the first cavity 4.
[0037] Furthermore, the condenser assembly 3 includes a fixing member 31 connected to the first cavity 4 and a condenser 32 connected to the fixing member 31 . The surface width of the condenser assembly 3 is at least the thickness of the fixing member 31 and the condenser 32 after assembly.
[0038] Furthermore, the condenser 32 includes a first condensation section 321 and a second condensation section 322 connected to the first condensation section 321. The fixing part 31 is connected to the second condensation section 322. The two ends of the first condensation section 321 are respectively connected to two second condensation sections 322. A plurality of alternately connected first condensation sections 321 and second condensation sections 322 form the condenser 32. The condenser 32 is arranged in a circuitous manner.
[0039] Furthermore, the cross-sectional shape of the first condensation portion 321 is an arc shape, the cross-sectional shape of the second condensation portion 322 is a straight line shape, the two second condensation portions 322 are arranged in parallel, and the distance between the two second condensation portions 322 is equal to the distance between the two ends of the first condensation portion 321.
[0040] Furthermore, the fixing member 31 includes a mounting portion 311 connected to the first cavity 4, a first fixing portion 312 and a second fixing portion 313 respectively connected to the mounting portion 311, the first fixing portion 312 and the second fixing portion 313 respectively used to fix two adjacent second condensation portions 322, the mounting portion 311 and the first cavity 4 are provided with connecting holes 6 for fasteners to pass through, the fasteners pass through the connecting holes 6 respectively located on the mounting portion 311 and the first cavity 4, so that the fixing member 31 is connected and fixed to the first cavity 4.
[0041] Further, the first fixing part 312 and the second fixing part 313 are respectively provided with a first clamping groove 3121 and a second clamping groove 3131 for fixing two adjacent second condensing parts 322, and the first clamping groove 3121 and the second clamping groove 3131 are matched with the second condensing part 322.
[0042] Further, the opening width of the first clamping groove 3121 and the second clamping groove 3131 is less than or equal to the cross-sectional diameter of the second condensing part 322, the opening direction of the first clamping groove 3121 is the same as the vertical direction, and the opening direction of the second clamping groove 3131 is the same as the horizontal direction.
[0043] Further, the condenser assembly 3 further comprises a limiting strip 331 connected with the condenser 32, the limiting strip 331 is connected with a plurality of second condensing parts 322 at the same time, a plurality of limiting strips 331 form a limiting net 33 for fixing the relative position of a plurality of second condensing parts 322, and the first cavity 4 is provided with a groove 41 on the side away from the opening for strengthening the structural strength of the first cavity 4, and the surface width of the condenser assembly 3 is the thickness after the assembly of the fixing part 31, the condenser 32 and the limiting strip 331.
[0044] Embodiment 2
[0045] Based on embodiment 1, two limiting nets 33 are respectively located on opposite sides of the condenser 32, the number of the fixing part 31 is two, and three grooves 41 are evenly distributed on the side away from the opening of the first cavity 4.
[0046] Embodiment 3
[0047] Different from embodiment 1, the surface width of the condenser assembly 3 is equal to the depth of the first cavity 4.
[0048] Embodiment 4
[0049] Different from embodiment 2, the number of the fixing part 31 is six, and four grooves 41 are evenly distributed on the side away from the opening of the first cavity 4.
[0050] Embodiment 5
[0051] Based on embodiment 2, the tortuous shape of the condenser 32 is m-shaped.
[0052] Embodiment 6
[0053] Different from embodiment 5, the tortuous shape of the condenser 32 is arc-shaped.
[0054] Embodiment 7
[0055] The ice cabinet comprises an ice cabinet body, wherein the ice cabinet body comprises the cabinet 1 and the condenser assembly 3.
[0056] Further, the cabinet 1 is provided with a first cavity 4 for mounting the condenser assembly 3, and the surface width of the condenser assembly 3 is less than the depth of the first cavity 4.
[0057] Further, the condenser assembly 3 comprises a fixing member 31 connected with the first cavity 4, and a condenser 32 connected with the fixing member 31, and the surface width of the condenser assembly 3 is at least the thickness of the fixing member 31 and the condenser 32 after assembly.
[0058] Further, the condenser 32 comprises a first condensing part 321 and a second condensing part 322 connected with the first condensing part 321, the fixing member 31 is connected with the second condensing part 322, and both ends of the first condensing part 321 are respectively communicated with two second condensing parts 322, a plurality of alternately connected first condensing parts 321 and second condensing parts 322 form the condenser 32, and the condenser 32 is arranged in a circuitous manner.
[0059] Embodiment 8
[0060] Different from embodiment 5, the surface width of the condenser assembly 3 is equal to the depth of the first cavity 4.
[0061] The above is only to further illustrate the technical content of the present application by way of examples, so as to make the reader more easily understand, but does not represent that the embodiments of the present application are limited to this, any technical extension or re-creation made according to the present application is also protected by the present application. The protection scope of the present application is subject to the claims.
Claims
1. A back-mounted condenser structure, comprising a housing (1) and a condenser assembly (3), characterized in that: The box body (1) is provided with a first cavity (4) for installing the condenser assembly (3), and the surface width of the condenser assembly (3) is less than or equal to the depth of the first cavity (4).
2. The back-mounted condenser structure according to claim 1, characterized in that: The condenser assembly (3) comprises a fixing member (31) connected to the first cavity (4) and a condenser (32) connected to the fixing member (31); the surface width of the condenser assembly (3) is at least the thickness of the fixing member (31) and the condenser (32) after assembly.
3. The back-mounted condenser structure according to claim 2, characterized in that: The condenser (32) includes a first condensation section (321) and a second condensation section (322) connected to the first condensation section (321). The fixing member (31) is connected to the second condensation section (322). The two ends of the first condensation section (321) are respectively connected to two second condensation sections (322). A plurality of alternately connected first condensation sections (321) and second condensation sections (322) form the condenser (32). The condenser (32) is arranged in a circuitous manner.
4. The back-mounted condenser structure according to claim 3, characterized in that: The cross-sectional shape of the first condensation portion (321) is an arc shape, the cross-sectional shape of the second condensation portion (322) is a straight line shape, the two second condensation portions (322) are arranged in parallel, and the distance between the two second condensation portions (322) is equal to the distance between the two ends of the first condensation portion (321).
5. The back-mounted condenser structure according to claim 3, characterized in that: The fixing member (31) includes a mounting portion (311) connected to the first cavity (4), a first fixing portion (312) and a second fixing portion (313) respectively connected to the mounting portion (311), the first fixing portion (312) and the second fixing portion (313) respectively being used to fix two adjacent second condensation portions (322), the mounting portion (311) and the first cavity (4) being provided with connection holes (6) for fasteners to pass through, the fasteners passing through the connection holes (6) respectively located on the mounting portion (311) and the first cavity (4), so that the fixing member (31) is connected and fixed to the first cavity (4).
6. The back-mounted condenser structure according to claim 5, characterized in that: The first fixing portion (312) and the second fixing portion (313) are respectively provided with a first card slot (3121) and a second card slot (3131) for fixing two adjacent second condensation portions (322), and the first card slot (3121) and the second card slot (3131) match the second condensation portions (322).
7. The back-mounted condenser structure according to claim 6, characterized in that: The opening widths of the first card slot (3121) and the second card slot (3131) are less than or equal to the cross-sectional diameter of the second condensation portion (322); the opening direction of the first card slot (3121) is the same as the vertical direction, and the opening direction of the second card slot (3131) is the same as the horizontal direction.
8. The back-mounted condenser structure according to claim 3, characterized in that: The condenser assembly (3) further comprises a limiting strip (331) connected to the condenser (32), the limiting strip (331) being simultaneously connected to a plurality of the second condensation parts (322), the plurality of limiting strips (331) forming a limiting net (33) for fixing the relative positions of the plurality of the second condensation parts (322), a groove (41) for reinforcing the structural strength of the first cavity (4) being provided on a side of the first cavity (4) away from the opening, and the surface width of the condenser assembly (3) being the thickness of the assembled fixing member (31), the condenser (32) and the limiting strip (331).
9. The back-mounted condenser structure according to claim 8, characterized in that: The two limiting nets (33) are respectively located on opposite sides of the condenser (32), the number of the fixing members (31) is at least two, and the plurality of grooves (41) are evenly distributed on a side away from the opening of the first cavity (4).
10. A freezer, comprising a freezer body, characterized in that: The refrigerator body comprises a box (1) and a condenser assembly (3) according to any one of claims 1 to 9.