Cooler device based on radiator plastic assembly

By using an isolation mounting base for basic strength support in the cooler unit and designing the connection structure of the radiator, fan and condenser, the problem of insufficient strength of plastic components is solved, and high reliability and efficient cooling effect are achieved.

CN224121506UActive Publication Date: 2026-04-14TAIAN XIANGJIE RADIATOR MFG
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TAIAN XIANGJIE RADIATOR MFG
Filing Date
2025-05-20
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

In existing cooling devices, those based on radiator plastic components are not strong enough when the fan is installed, resulting in a decrease in reliable performance.

Method used

An isolation mounting base is used for basic strength support. By designing the connection between the radiator body, fan body, and condenser body, and combining buffer pads and support bases, an integral structure is formed, which improves the strength and stability of the plastic components.

Benefits of technology

It improves the reliability of the cooler unit, enhances the overall strength and stability of the radiator plastic components, prevents damage to the radiator from the fan, and improves the cooling effect and system stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

A cooler device based on a radiator plastic assembly comprises a radiator body (1) used for cooling a cooling intermediate medium body, a fan body (3) used for air cooling and a condenser body (2) arranged between the fan body (3) and the radiator body (1). The radiator body (1) and the condenser body (2) are cooled windward, a cooling intermediate medium body of the condenser body (2) is cooled through the radiator body (1), a working medium body of a machine is cooled through the condenser body (2), basic strength supporting is achieved through the isolation mounting base, and the cooling effect is achieved. The technical problems that the radiator is prepared by using the aluminum alloy metal assembly and the fan is directly mounted are solved, so that the use reliability of the cooler device with the radiator plastic assembly is improved.
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Description

Technical Field

[0001] This utility model relates to a cooler device, and more particularly to a cooler device based on a radiator plastic component. Background Technology

[0002] Coolers are a type of heat exchange equipment used to cool fluids, typically using water or air as the coolant to remove heat. Therefore, coolers are an important type of heat exchange equipment. Currently, there are no existing coolers based on plastic radiator components; all use aluminum alloy metal components for the radiators. A fan is installed before the aluminum alloy radiator. However, due to the strength limitations of the plastic radiator components, installing a fan before the plastic radiator generates an impact force, affecting the reliability of coolers with plastic radiator components.

[0003] This invention, through its technical feature of providing basic strength support via an isolation mounting base, effectively explores and studies the technical problem of using aluminum alloy metal components to manufacture heat sinks and directly mounting fans.

[0004] The statements herein provide only background information related to this utility model and do not necessarily constitute prior art. Based on the technical disclosure provided by the applicant on February 18, 2025, which addresses practical technical problems encountered during the work process, and the existing technical problems, technical features, and technical effects in similar patent documents and background information obtained through retrieval, the technical solution of this invention is proposed. Summary of the Invention

[0005] The subject of this utility model is a cooler device based on a radiator plastic component.

[0006] In order to overcome the above-mentioned technical shortcomings, the purpose of this utility model is to provide a cooler device based on a radiator plastic component, thereby improving the reliability of the cooler device with the radiator plastic component.

[0007] To achieve the above objectives, the technical solution adopted by this utility model is as follows: it includes a radiator body for cooling an intermediate cooling medium, a fan body for air cooling, and a condenser body disposed between the fan body and the radiator body.

[0008] By designing a radiator body, fan body, and condenser body, the fan body enables airflow cooling of the radiator body and condenser body, the radiator body enables cooling of the intermediate cooling medium of the condenser body, and the condenser body enables cooling of the machine's working medium. The design also incorporates a base with isolated mounting brackets for structural strength support. This design solves the technical problem of using aluminum alloy metal components to manufacture radiators and directly mounting fans, thus improving the reliability of the cooler device with plastic radiator components.

[0009] This utility model is designed to connect the radiator body, fan body and condenser body to each other by means of basic strength support by an isolation mounting base.

[0010] This utility model is designed to connect the condenser body, the radiator body, and the fan body in a way that cools the working medium of the machine.

[0011] The technical effects of the above three technical solutions are: highlighting the technical feature of basic strength support by isolation mounting base, and introducing its application in the technical field of cooler devices based on radiator plastic components.

[0012] This utility model is designed to include a first accessory device, which is disposed between the fan body and the condenser body, and the first accessory device is configured as a buffer pad.

[0013] This utility model is designed to include a second accessory device, which is disposed between the radiator body and the condenser body, and the second accessory device is configured as a support base.

[0014] The technical effect of the above two technical solutions is that they enable the integrated installation of other components and expand the technical effect of this utility model.

[0015] This utility model is designed with a condenser body on the radiator body, a support base between the condenser body and the radiator body, a fan body on the condenser body, and a buffer pad between the fan body and the condenser body.

[0016] The technical effect of the above technical solution is that the radiator body, condenser body, fan body, buffer pad and support base constitute the basic technical solution of this utility model, and solve the technical problem of this utility model.

[0017] This utility model designs a radiator body with a plastic side plate and a plastic water chamber, wherein the inner end face of the plastic water chamber of the radiator body is configured to be in contact with the condenser body, and the outer side face of the plastic side plate of the radiator body is configured to be connected with the support base.

[0018] The technical effect of the above solution is that it enables the assembly of radiators using plastic side panels and plastic water chambers.

[0019] This utility model designs a condenser body comprising a condenser section and an ear section, with receiving holes I provided on the upper and lower edges of the outer end face of the condenser section. The outer side of the condenser section is connected to the inner end face of the ear section, and the inner end face of the condenser section is connected in contact with the radiator body. The middle of the upper and lower edges of the outer end face of the condenser section is connected in contact with a buffer pad, and the outer end face of the condenser section is distributed correspondingly to the fan body. The ear section is connected to a support base, and the receiving holes I are connected to the fan body via intermediate bolts.

[0020] This utility model designs a condenser section as a sieve plate condenser and an ear seat section as a single plate ear seat with an Ω-shaped hole. The Ω-shaped hole of the ear seat section is configured to connect with the support base, and the receiving hole body I is configured as a threaded hole body. The receiving hole bodies I are arranged at intervals along the transverse center line of the condenser section.

[0021] The technical effect of the above two solutions is that they achieve cooling of the working medium of the machine.

[0022] This utility model designs a fan body comprising a frame, a fan, and a socket. The frame has receiving holes II on its outer end face and upper and lower edges. The middle of the frame is connected to the fan, and the left edge of the frame's outer end face is connected to the inner end face of the socket. The cable end on the socket is connected to the power interface of the fan, and the middle of the upper and lower edges of the frame's inner end face is in contact with a buffer pad. The inner end face of the frame is distributed correspondingly to the condenser body. The receiving holes II are connected to the condenser body via a central bolt, and the upper and lower edges of the frame's outer end face are in contact with a central bolt flange located between the condenser body and the fan body.

[0023] This utility model is designed with a frame that is rectangular and a fan that is a cooling fan, a socket that is a power socket with a protective sleeve, and a receiving hole II that is a hole that is spaced out along the transverse center line of the frame.

[0024] The technical effect of the above two solutions is that they achieve the formation of a cooling airflow.

[0025] The present invention is designed such that the buffer pad is a sponge strip and one end face of the buffer pad is configured to be in contact with the condenser body, and the other end face of the buffer pad is configured to be in contact with the fan body.

[0026] The technical effect of the above solution is that it enables buffered intermediate docking.

[0027] This utility model designs a support base comprising a base, a shock-absorbing wheel, a nut I, a rod, a screw, and a nut II. A receiving hole III is provided on the outer middle of the vertical outer end face of the base. The lower end of the shaft on the shock-absorbing wheel is connected through-through to the upper horizontal part of the base, and the lower end face of the shock-absorbing wheel is in contact with the outer end face of the upper horizontal part of the base. Nut I is threadedly connected to the lower end of the shaft on the shock-absorbing wheel, and the inner end face of nut I is in contact with the inner end face of the upper horizontal part of the base. The outer end face of the lower horizontal part of the base is connected to the inner end face of the rod, and the inner end of the screw is threadedly connected to the receiving hole III. The outer end of the screw is threadedly connected to nut II and is connected through-through to the condenser body. The outer middle of the vertical outer end face of the base and the inner end face of nut II are respectively in contact with the condenser body, and the outer vertical side of the base is connected to the radiator body.

[0028] This utility model is designed with a seat portion configured as a U-shaped plate and a shock-absorbing wheel portion configured as a rubber disc, a rod portion configured as a rod and a screw portion configured as a cylindrical bolt, a nut portion I and a nut portion II respectively configured as hexagonal nuts and a receiving hole portion III configured as a hole, with at least two receiving holes III provided on the seat portion.

[0029] The technical effect of the above solution is that it enables the intermediate connection of the insertion parts.

[0030] This utility model is designed such that the radiator body and fan body are connected to the condenser body and support base in the manner of an intermediate clamping body, and the radiator body, fan body, condenser body and support base are connected to the buffer pad in the manner of an intermediate buffer body.

[0031] This utility model is designed such that the center lines of the radiator body, the condenser body, the fan body, and the buffer pad are all on the same straight line, and two support seats are set between the condenser body and the radiator body. The seat part, the screw part, and the nut part II are respectively set to connect with the ear part.

[0032] In this technical solution, the radiator body, condenser body, and fan body are the basic components and essential technical features of this utility model. The buffer pad and support base are functional components and features that achieve other technical effects of this utility model. The design of the condenser part, ear part, receiving hole I, frame part, fan part, socket part, receiving hole II, base part, shock-absorbing wheel part, nut part I, rod part, screw part, nut part II, and receiving hole III are technical features that comply with the Patent Law and its implementing regulations.

[0033] In this technical solution, the isolation mounting base, which provides basic strength support, is implemented by the condenser body.

[0034] In this technical solution, the radiator body, fan body, and condenser body, which are supported by the isolation mounting base for basic strength, are important technical features. In the field of cooler devices based on radiator plastic components, this solution is novel, inventive, and practical. The terminology used in this technical solution can be explained and understood using patent literature in this technical field. Attached Figure Description

[0035] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0036] Figure 1 This is a schematic diagram of one of the first embodiments of the present utility model.

[0037] Figure 2 for Figure 1 Top view,

[0038] Figure 3 for Figure 1 The right view,

[0039] Figure 4 for Figure 1 Left view,

[0040] Figure 5 This diagram shows the connection relationship between the radiator body 1 and the support base 5.

[0041] Figure 6 for Figure 5 Top view,

[0042] Figure 7 for Figure 5 The right view,

[0043] Figure 8This is a schematic diagram of the condenser body 2.

[0044] Figure 9 for Figure 8 Top view,

[0045] Figure 10 This is a schematic diagram of the fan body 3.

[0046] Figure 11 for Figure 10 The right view,

[0047] Radiator body-1, condenser body-2, fan body-3, buffer pad-4, support base-5, condenser section-21, ear section-22, receiving hole I-23, frame section-31, fan section-32, socket section-33, receiving hole II-34, base section-51, shock absorber wheel section-52, nut section I-53, rod section-54, screw section-55, nut section II-56, receiving hole III-57. Detailed Implementation

[0048] According to the examination guidelines, terms such as “having,” “comprising,” and “including” used in this invention should be understood as not dispensing the presence or addition of one or more other elements or combinations thereof.

[0049] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0050] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0051] Furthermore, the technical features involved in the different embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other. In addition, unless otherwise specified, the equipment and materials used in the following embodiments are commercially available. Unless otherwise specified, please make improvements according to conventional methods in the field.

[0052] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0053] Figure 1 As one of the first embodiments of this utility model, this embodiment is described in detail with reference to the accompanying drawings. It includes a heat sink body 1, a condenser body 2, a fan body 3, a buffer pad 4, and a support base 5. The condenser body 2 is disposed on the heat sink body 1, the support base 5 is disposed between the condenser body 2 and the heat sink body 1, the fan body 3 is disposed on the condenser body 2, and the buffer pad 4 is disposed between the fan body 3 and the condenser body 2.

[0054] The second embodiment of the present invention will be described in detail with reference to the accompanying drawings.

[0055] In this embodiment, the radiator body 1 is configured as a radiator with a plastic side plate and a plastic water chamber, and the inner end face of the plastic water chamber of the radiator body 1 is configured to be in contact with the condenser body 2, and the outer side face of the plastic side plate of the radiator body 1 is configured to be connected with the support base 5.

[0056] The radiator body 1 forms a support connection point for the condenser body 2 and the support base 5. The radiator body 1 is connected to the condenser body 2 and the support base 5. Its technical purpose is to serve as a component for cooling the intermediate cooling medium of the condenser body 2.

[0057] In this embodiment, the condenser body 2 is configured to include a condenser portion 21 and an ear portion 22, and a receiving hole I 23 is provided on the upper and lower edges of the outer end face of the condenser portion 21. The outer side of the condenser portion 21 is configured to be connected to the inner end face of the ear portion 22, and the inner end face of the condenser portion 21 is configured to be connected to the heat sink body 1 in contact. The middle of the upper and lower edges of the outer end face of the condenser portion 21 is configured to be connected to the buffer pad 4 in contact, and the outer end face of the condenser portion 21 is configured to be distributed correspondingly to the fan body 3. The ear portion 22 is configured to be connected to the support base 5, and the receiving hole I 23 is configured to be connected to the fan body 3 by a middle bolt.

[0058] The condenser body 2 forms a support connection point for the radiator body 1, fan body 3, buffer pad 4 and support base 5. The condenser part 21 is connected to the radiator body 1 and the buffer pad 4. The condenser part 21 and the receiving hole body I 23 are connected to the fan body 3. The ear part 22 is connected to the support base 5. Its technical purpose is to be used as a component for cooling the working medium.

[0059] In this embodiment, the condenser section 21 is configured as a sieve plate condenser and the lug section 22 is configured as a single plate lug with an Ω-shaped hole. The Ω-shaped hole of the lug section 22 is configured to be connected to the support base 5 and the receiving hole body I 23 is configured as a threaded hole body. The receiving hole bodies I 23 are configured to be arranged at intervals along the transverse center line of the condenser section 21.

[0060] Its technical objective is to achieve air cooling and medium cooling of the working medium.

[0061] In this embodiment, the fan body 3 is configured to include a frame 31, a fan 32, and a socket 33. A receiving hole II 34 is provided on the upper and lower edges of the outer end face of the frame 31. The middle of the frame 31 is connected to the fan 32, and the left edge of the outer end face of the frame 31 is connected to the inner end face of the socket 33. The cable end on the socket 33 is connected to the power interface of the fan 32, and the middle of the upper and lower edges of the inner end face of the frame 31 is connected to the buffer pad 4. The inner end face of the frame 31 is distributed correspondingly to the condenser body 2. The receiving hole II 34 is connected to the condenser body 2 by a middle bolt, and the upper and lower edges of the outer end face of the frame 31 are connected to the middle bolt flange located between the condenser body 2 and the fan body 3 in contact.

[0062] The fan body 3 forms a support connection point for the condenser body 2 and the support base 5. The frame part 31 and the receiving hole body II 34 realize the connection with the condenser body 2. The frame part 31 realizes the connection with the buffer pad 4. The fan part 32 realizes the air cooling treatment of the condenser body 2. The socket part 33 realizes the connection with the external power supply. Its technical purpose is to serve as a component for cooling the condenser body 2.

[0063] In this embodiment, the frame 31 is configured as a rectangular frame and the fan 32 is configured as a cooling fan, the socket 33 is configured as a power socket with a protective sleeve and the receiving hole II 34 is configured as a hole, and the receiving hole II 34 is configured to be arranged at intervals along the transverse center line of the frame 31.

[0064] Its technical objective is to achieve air cooling of the condenser body 2.

[0065] In this embodiment, the buffer pad 4 is configured as a sponge strip and one end face of the buffer pad 4 is configured to be in contact with the condenser body 2, and the other end face of the buffer pad 4 is configured to be in contact with the fan body 3.

[0066] The buffer pad 4 forms a support connection point for the condenser body 2 and the fan body 3. The buffer pad 4 realizes the connection with the condenser body 2 and the fan body 3. Its technical purpose is to serve as a component that provides intermediate support for the buffer between the condenser body 2 and the fan body 3.

[0067] In this embodiment, the support base 5 is configured to include a base portion 51, a shock-absorbing wheel portion 52, a nut portion I 53, a rod portion 54, a screw portion 55, and a nut portion II 56. A receiving hole III 57 is provided on the outer side of the middle of the vertical outer end face of the base portion 51. The lower end of the shaft on the shock-absorbing wheel portion 52 is configured to be connected through-hole to the upper horizontal portion of the base portion 51, and the lower end face of the shock-absorbing wheel portion 52 is configured to be connected in contact with the outer end face of the upper horizontal portion of the base portion 51. The nut portion I 53 is configured to be threadedly connected to the lower end of the shaft on the shock-absorbing wheel portion 52, and the inner end face of the nut portion I 53 is configured to be threadedly connected. The upper horizontal part of the seat 51 is connected to the inner end face of the upper horizontal part. The lower horizontal part of the seat 51 is connected to the inner end face of the rod 54. The inner end of the screw part 55 is connected to the receiving hole Ⅲ 57 by a thread. The outer end of the screw part 55 is connected to the nut part Ⅱ 56 by a thread. The outer end of the screw part 55 is connected to the condenser body 2 through the screw. The middle outer side of the vertical part of the seat 51 and the inner end face of the nut part Ⅱ 56 are respectively connected to the condenser body 2 by contact. The outer side of the vertical part of the seat 51 is connected to the radiator body 1.

[0068] The support base 5 forms a support connection point for the radiator body 1 and the condenser body 2. The base part 51 realizes the connection with the radiator body 1, and the base part 51, the screw part 55 and the nut part II 56 realize the connection with the condenser body 2. Its technical purpose is to serve as an intermediate connection between the condenser body 2 and the radiator body 1.

[0069] In this embodiment, the seat 51 is configured as a U-shaped plate and the shock-absorbing wheel 52 is configured as a rubber disc, the rod 54 is configured as a rod and the screw 55 is configured as a bolt, the nut part I 53 and the nut part II 56 are respectively configured as hexagonal nuts and the receiving hole III 57 is configured as a hole, and at least two receiving holes III 57 are provided on the seat 51.

[0070] Its technical purpose is to achieve a screw and nut type intermediate connection between the condenser body 2 and the radiator body 1.

[0071] In this embodiment, the radiator body 1 and fan body 3 are connected to the condenser body 2 and support base 5 in the manner of intermediate clamping, and the radiator body 1, fan body 3, condenser body 2 and support base 5 are connected to the buffer pad 4 in the manner of intermediate buffering. The center line of the radiator body 1, the center line of the condenser body 2, the center line of the fan body 3 and the center line of the buffer pad 4 are arranged on the same straight line. Two support bases 5 are arranged between the condenser body 2 and the radiator body 1. The seat part 51, the screw part 55 and the nut part II 56 are respectively arranged to be connected to the ear part 22.

[0072] The method of use in this embodiment is as follows: Place the frame 31 on the outer end face of the condenser 21, place the buffer pad 4 between the middle of the upper and lower edges of the inner end face of the frame 31 and the middle of the middle of the upper and lower edges of the outer end face of the condenser 21, place the intermediate bolt into the receiving hole II 34, and rotate the intermediate bolt in the receiving hole I 23, so that the flange of the intermediate bolt acts on the upper and lower edge sides of the outer end face of the frame 31, thereby connecting the fan body 3 and the condenser body 2 together, and rotate the inner end of the screw 55 in the receiving hole III 57, thereby installing the screw 55 in the receiving hole III 57, and place the outer end of the screw 55 into the Ω-shaped hole of the lug 22. The nut part II 56 is rotated on the outer end of the screw part 55, causing the inner end face of the nut part II 56 and the outer middle outer end face of the vertical part of the seat part 51 to act on the ear part 22, thereby installing the radiator body 1 on the condenser body 2. The shock-absorbing wheel part 52 and the rod part 54 are respectively installed on the machine using the cooler device. Cooling intermediate medium is injected into the heat exchange interface of the condenser body 2 and the radiator body 1, respectively. The heat exchange interface of the condenser body 2 and the interface of the radiator body 1 are connected through pipes. The working medium interface of the condenser body 2 is connected to the working medium interface of the machine using the cooler device. The socket part 33 is connected to the power supply of the machine.

[0073] When the machine is in operation, the fan 32 is activated to provide airflow cooling to the radiator body 1 and the condenser body 21. The radiator body 1 cools the intermediate cooling medium in the condenser body 2, which in turn cools the working medium in the condenser body 2, and the working medium in the condenser body 2 cools the machine.

[0074] In verifying this utility model, the inventor abandoned the existing technical features of using aluminum alloy metal components to manufacture the radiator and directly installing the fan. Instead, they first proposed a technical feature of using an isolation mounting base for basic strength support, resulting in the first unexpected technical effect: the addition of an intermediate support body improves the overall strength of the cooler device. The second unexpected technical effect is that the condenser body 2 can fix the fan body 3, preventing damage to the radiator body 1. The third unexpected technical effect is that the condenser body 2 can perform heat exchange cooling and air cooling of the machine's working medium, improving the cooling effect on the working medium. The fourth unexpected technical effect is that the radiator body 1 can provide heat exchange cooling and air cooling of the intermediate cooling medium. The material is used for heat dissipation and air cooling, which improves the cooling effect of the condenser body 2 and achieves the fifth unexpected technical effect: the buffer pad 4 provides buffer support for the fan body 3, absorbing the impact force generated by the fan body 3 and improving the stability of the condenser body 2. This also achieves the fifth unexpected technical effect: the support base 5 enables external insertion connection between the radiator body 1 and the condenser body 2, improving the installation stability between the radiator body 1 and the condenser body 2 and enhancing the reliability of the cooling system. This also achieves the sixth unexpected technical effect: the application of plastic components in the radiator allows for the development and arrangement of the fan body 3 installation scheme, eliminating the interference factors of the fan body 3 on the radiator body 1 and improving the cooling efficiency of the radiator body 1.

[0075] In the second embodiment of this utility model, the radiator body 1, the fan body 3, and the condenser body 2 are interconnected by means of basic strength support provided by the isolation mounting base.

[0076] In this embodiment, the condenser body 2 is connected to the radiator body 1 and the fan body 3 in a manner that cools the working medium of the machine.

[0077] In this embodiment, a first accessory device is also included and disposed between the fan body 3 and the condenser body 2. The first accessory device is configured as a buffer pad 4.

[0078] In this embodiment, a second accessory device is also included and disposed between the radiator body 1 and the condenser body 2. The second accessory device is configured as a support base 5.

[0079] The second embodiment of this utility model is based on the first embodiment.

[0080] This utility model has the following features:

[0081] 1. By designing a radiator body 1, a fan body 3, and a condenser body 2, the fan body 3 enables airflow cooling of the radiator body 1 and the condenser body 2. The radiator body 1 enables cooling of the intermediate cooling medium of the condenser body 2. The condenser body 2 enables cooling of the working medium of the machine. The isolation mounting base provides basic strength support, solving the technical problem of using aluminum alloy metal components to manufacture radiators and directly installing fans. Therefore, the reliability of the cooler device with radiator plastic components is improved.

[0082] 2. Due to the design of the buffer pad 4, a buffered indirect connection is achieved between the fan body 3 and the condenser body 2.

[0083] 3. Due to the design of the support base 5, the radiator body 1 and the condenser body 2 are connected as a whole.

[0084] 4. Because the design limits the numerical range of the structural shape, the numerical range is a technical feature in the technical solution of this utility model, and is not a technical feature obtained by formula calculation or a limited number of experiments. The experiment shows that the technical feature of the numerical range has achieved very good technical effect.

[0085] 5. Due to the design of the technical features of this utility model, and the combined effect of the individual and collective technical features, experiments have shown that the performance indicators of this utility model are at least 1.7 times that of existing performance indicators, and it has been evaluated that it has great market value.

[0086] Other technical features that connect to the radiator body 1, fan body 3, and condenser body 2, which are supported by the isolation mounting base, are also embodiments of this utility model. Furthermore, the technical features of the above embodiments can be combined in any way. In order to meet the requirements of the Patent Law, the Patent Implementation Regulations, and the Examination Guidelines, all possible combinations of the technical features in the above embodiments will not be described.

[0087] Therefore, in the field of cooler device technology based on radiator plastic components, any technical content that includes a radiator body 1 for cooling an intermediate cooling medium, a fan body 3 for air cooling, and a condenser body 2 disposed between the fan body 3 and the radiator body 1 is within the protection scope of this utility model.

Claims

1. A cooler device based on a radiator plastic assembly, characterized in that: It includes a radiator body (1) for cooling a cooling intermediate medium, a fan body (3) for air cooling, and a condenser body (2) disposed between the fan body (3) and the radiator body (1).

2. The cooler device based on a radiator plastic assembly according to claim 1, characterized in that: The radiator body (1), fan body (3) and condenser body (2) are interconnected by means of basic strength support provided by the isolation mounting bracket.

3. The cooler device based on a radiator plastic assembly according to claim 2, characterized in that: The condenser body (2) is connected to the radiator body (1) and the fan body (3) in a manner that cools the working medium of the machine.

4. The cooler device based on a radiator plastic assembly according to claim 1, characterized in that: It also includes a first accessory device and is disposed between the fan body (3) and the condenser body (2), the first accessory device being configured as a buffer pad (4). Alternatively, it may also include a second accessory device and the second accessory device is disposed between the radiator body (1) and the condenser body (2), the second accessory device being configured as a support base (5).

5. The cooler device based on a radiator plastic assembly according to claim 4, characterized in that: in A condenser body (2) is provided on the radiator body (1), a support base (5) is provided between the condenser body (2) and the radiator body (1), a fan body (3) is provided on the condenser body (2), and a buffer pad (4) is provided between the fan body (3) and the condenser body (2).

6. The cooler device based on a radiator plastic assembly according to claim 5, characterized in that: The radiator body (1) is configured as a radiator with a plastic side plate and a plastic water chamber, and the inner end face of the plastic water chamber of the radiator body (1) is configured to be in contact with the condenser body (2), and the outer side face of the plastic side plate of the radiator body (1) is configured to be connected with the support base (5).

7. The cooler device based on a radiator plastic assembly according to claim 5, characterized in that: The condenser body (2) is configured to include a condenser section (21) and an ear section (22), and a receiving hole I (23) is provided on the upper and lower edges of the outer end face of the condenser section (21). The outer surface of the condenser section (21) is configured to be connected to the inner end face of the ear section (22), and the inner end face of the condenser section (21) is configured to be connected to the heat sink body (1) in contact. The middle of the upper and lower edges of the outer end face of the condenser section (21) is configured to be connected to the buffer pad (4), and the outer end face of the condenser section (21) is configured to be distributed correspondingly to the fan body (3). The ear section (22) is configured to be connected to the support base (5), and the receiving hole I (23) is configured to be connected to the fan body (3) by a middle bolt. Alternatively, the condenser section (21) is configured as a sieve plate condenser and the lug section (22) is configured as a single plate lug with an Ω-shaped hole. The Ω-shaped hole of the lug section (22) is configured to connect with the support base (5) and the receiving hole body I (23) is configured as a threaded hole body. The receiving hole body I (23) is configured to be arranged at intervals along the transverse center line of the condenser section (21).

8. The cooler device based on a radiator plastic assembly according to claim 5, characterized in that: The fan body (3) is configured to include a frame (31), a fan (32), and a socket (33). Receiving holes II (34) are provided on the upper and lower edges of the outer end face of the frame (31). The middle of the frame (31) is connected to the fan (32), and the left edge of the outer end face of the frame (31) is connected to the inner end face of the socket (33). The cable end on the socket (33) is connected to the power interface of the fan (32), and the middle of the upper and lower edges of the inner end face of the frame (31) is connected in contact with the buffer pad (4). The inner end face of the frame (31) is distributed correspondingly to the condenser body (2). The receiving holes II (34) are connected to the condenser body (2) via intermediate bolts, and the upper and lower edges of the outer end face of the frame (31) are connected in contact with the intermediate bolt flange located between the condenser body (2) and the fan body (3). Alternatively, the frame (31) is configured as a rectangular frame and the fan (32) is configured as a cooling fan, the socket (33) is configured as a power socket with a sheath and the receiving hole II (34) is configured as a hole, and the receiving hole II (34) is configured to be arranged at intervals along the transverse center line of the frame (31).

9. The cooler device based on a radiator plastic assembly according to claim 5, characterized in that: The buffer pad (4) is configured as a sponge strip, and one end face of the buffer pad (4) is configured to be in contact with the condenser body (2), and the other end face of the buffer pad (4) is configured to be in contact with the fan body (3). Alternatively, the support base (5) is configured to include a seat portion (51), a shock-absorbing wheel portion (52), a nut portion I (53), a rod portion (54), a screw portion (55), and a nut portion II (56), and a receiving hole III (57) is provided on the outer side of the middle of the vertical outer end face of the seat portion (51). The lower end of the shaft on the shock-absorbing wheel portion (52) is configured to be connected through to the upper horizontal portion of the seat portion (51), and the lower end face of the shock-absorbing wheel portion (52) is configured to be connected in contact with the outer end face of the upper horizontal portion of the seat portion (51). The nut portion I (53) is configured to be threadedly connected to the lower end of the shaft on the shock-absorbing wheel portion (52), and the inner end face of the nut portion I (53) is configured to be connected in contact with the outer end face of the upper horizontal portion of the seat portion (51). The upper horizontal part of the seat (51) is connected to the inner end face in contact with the rod (54), the lower horizontal part of the seat (51) is connected to the inner end face of the rod (54), and the inner end of the screw (55) is connected to the receiving hole (57) in a threaded manner. The outer end of the screw (55) is connected to the nut (56) in a threaded manner and the outer end of the screw (55) is connected to the condenser body (2) in a through manner. The middle outer side of the vertical part of the seat (51) and the inner end face of the nut (56) are respectively connected to the condenser body (2) in contact with the condenser body (2), and the outer side of the vertical part of the seat (51) is connected to the radiator body (1). Alternatively, the seat (51) is configured as a U-shaped plate and the shock-absorbing wheel (52) is configured as a rubber disc, the rod (54) is configured as a rod and the screw (55) is configured as a light column bolt, the nut part I (53) and the nut part II (56) are configured as hexagonal nuts respectively and the receiving hole III (57) is configured as a hole, and at least two receiving holes III (57) are provided on the seat (51).

10. The cooler device based on a radiator plastic assembly according to any one of claims 1 to 9, characterized in that: The radiator body (1) and fan body (3) are connected to the condenser body (2) and support base (5) in a manner of intermediate clamping, and the radiator body (1), fan body (3), condenser body (2), and support base (5) are connected to the buffer pad (4) in a manner of intermediate buffering. Alternatively, the center lines of the radiator body (1), the condenser body (2), the fan body (3), and the buffer pad (4) are set on the same straight line, and two support seats (5) are set between the condenser body (2) and the radiator body (1). The seat part (51), the screw part (55), and the nut part II (56) are respectively set to be connected to the ear part (22).