Coil assembly and electronic expansion valve having the same

A single-piece structure with transition arc and inclined surfaces in the connecting seat and main body addresses the inefficiencies in conventional coil assemblies, ensuring smooth molding and improved sealing and insulation.

JP7748564B2Active Publication Date: 2025-10-02ZHEJIANG DUNAN ARTIFICIAL ENVIRONMENT CO LTD
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Patent Information

Application Number
JP2024529295
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-12-15
Filing Date
2022-11-07
Publication Date
2025-10-02
Estimated Expiration
2042-11-07

AI Technical Summary

Technical Problem

Conventional coil assemblies experience reduced injection molding efficiency due to flow obstruction and air bubble generation at the connection between the main body and the connecting seat, affecting sealing and insulating performance.

Method used

The connecting seat and main body are formed as a single-piece structure with first transition structures, including transition arc and inclined surfaces, to facilitate smooth flow of the molding compound and reduce bubble formation during injection molding.

Benefits of technology

Improves sealing and insulation performance by ensuring smooth flow of the molding compound, reducing air bubbles, and enhancing the overall quality and reliability of the coil assembly.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application provides a coil assembly and an electronic expansion valve having the same, the coil assembly including a main body having an accommodating chamber, a stator assembly provided in the accommodating chamber and having a pin, and a connecting seat provided on a side wall of the main body and integrally injection molded with the main body, the connecting seat having a mounting surface and a plurality of side surfaces, the mounting surface being located on one side of the connecting seat away from the main body, an end of the pin protruding from the mounting surface, the side surface of the connecting seat and the main body being connected to each other, and a first transition structure being provided at a connecting point between at least one side surface of the connecting seat and the main body. The technical aspects provided by the present application can solve the problem of the reduced effect of injection molding of the coil assembly in the prior art.
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Description

[Technical Field]

[0001] This application claims priority to a patent application filed with the State Intellectual Property Office of China on December 15, 2021, bearing application number 2021231767335 and titled "Coil assembly and electronic expansion valve having the same."

[0002] The present application relates to the technical field of electronic expansion valves, and more particularly to a coil assembly and an electronic expansion valve having the same. [Background technology]

[0003] Currently, conventional coil assemblies include a main body, a connecting seat, and a circuit board, with a stator assembly disposed within the main body, and the connecting seat used to secure a pin structure. One end of the pin structure is connected to the stator assembly, and the other end of the pin structure is electrically connected to the circuit board. To process the main body and the connecting seat, the main body and the connecting seat are placed in an injection mold and then fixed by injecting a molding compound. However, during the injection molding process, the molding compound experiences a flow obstruction at the connection between the main body and the connecting seat, reducing the flow efficiency of the molding compound. After molding, air bubbles are generated within the connection between the main body and the connecting seat, reducing the sealing and insulating effect and further reducing the quality of the entire coil assembly. Summary of the Invention

[0004] SUMMARY OF THE INVENTION The present application provides a coil assembly and an electronic expansion valve having the same, in order to solve the problem of reduced injection molding efficiency of the coil assembly in the prior art.

[0005] According to one aspect of the present application, there is provided a coil assembly including: a main body having an accommodating chamber; a stator assembly provided within the accommodating chamber and having a pin; and a connecting seat provided on a side wall of the main body and injection molded integrally with the main body, the connecting seat having a mounting surface and a plurality of side surfaces, the mounting surface being located on one side of the connecting seat away from the main body, an end of the pin protruding from the mounting surface, the side surface of the connecting seat and the main body being connected to each other, and a first transition structure being provided at a connection point between at least one side surface of the connecting seat and the main body.

[0006] According to the technical aspects of the present application, the connecting seat and the body are formed as a single-piece structure during processing, and the side surface of the connecting seat and the body are connected to each other, while a first transition structure is provided at the connection point between the connecting seat and the body. By using this structure, the first transition structure can be used to reduce the resistance at the connection point between the connecting seat and the body when injection molding the molding compound, allowing the molding compound to flow more smoothly and reducing the overall occurrence of bubbles after final molding, thereby improving sealing and insulation performance and ensuring the quality of the coil assembly.

[0007] Furthermore, the first transition structure includes a transition arc surface, which contacts the side wall of the connecting seat where the transition arc surface is located, and the transition arc surface contacts the side wall of the main body. This design facilitates processing and at the same time, further ensures the flow effect of the molding compound and the molding effect of the connecting portion between the connecting seat and the main body.

[0008] Furthermore, the radius of the transition arc surface is A, and 4 mm ≥ A ≥ 0.5 mm. If the radius of the transition arc surface is less than 0.5 mm, the structural dimensions of the first transition structure are too small, and the molding compound still has a relatively large resistance when in the first transition structure, affecting the flow of the molding compound. If the radius of the transition arc is more than 4 mm, the structural dimensions of the first transition structure are too large, causing interference with the connecting seat or other components and affecting the normal connection between the coil assembly and other components.

[0009] Furthermore, the first transition structure includes a transition inclined surface, and the included angle between the transition inclined surface and the side surface of the connecting seat where the transition inclined surface is located is B, where 180°>B≧130°. This design makes it easier to process the coil assembly and allows the molding compound to flow more smoothly.

[0010] The connecting seat further has a first side, a second side, a third side, and a fourth side, the first side and the second side being opposite each other, the third side and the fourth side being opposite each other, the first side and the second side being located on opposite sides of the connecting seat, the third side and the fourth side being located on the top and bottom of the connecting seat, and a plurality of first transition structures being provided between the first side and the main body, between the second side and the main body, and between the third side and the main body. The provision of a plurality of first transition structures can further improve the smooth flow of the molding compound, ensuring that no air bubbles are generated at the connections between the first side, second side, and third side of the connecting seat and the main body, and improving the quality of the entire coil assembly.

[0011] Furthermore, a second transition structure is further provided between the connecting seat and the side wall of the main body, and the second transition structure is located between two adjacent first transition structures and connects the two adjacent first transition structures. With this design, the second transition structure can prevent gaps from occurring between the two adjacent first transition structures, thereby further ensuring the product quality of the coil assembly.

[0012] Furthermore, at least one of the first transition structures is a transition arc surface, and at least one of the remaining first transition structures is a transition inclined surface. This design makes the processing of the connection seat and the main body more flexible, and allows different structures to be provided at the connection point between the connection seat and the main body to adapt to different usage situations.

[0013] According to another aspect of the present application, there is provided an electronic expansion valve including the coil assembly provided above, which can improve the product quality of the electronic expansion valve and extend the service life of the electronic expansion valve after using the coil assembly provided in the above embodiment. [Brief explanation of the drawings]

[0014] The drawings in the specification that form a part of this application are intended to provide a further understanding of the application, and the schematic examples and descriptions thereof are intended to aid in the interpretation of the application and are not intended to unduly limit the application.

[0015] [Figure 1] 1 shows a structural schematic diagram of a coil assembly provided in Example 1 of the present application. [Figure 2] FIG. 1 shows a top view of a coil assembly provided in Example 1 of the present application. [Figure 3] 1 shows a structural schematic diagram of a coil assembly provided in Example 2 of the present application. [Figure 4] FIG. 1 shows a top view of a coil assembly provided in Example 2 of the present application.

[0016] Here, the above drawings include the following reference numerals: 10 main body, 20 connecting seat, 21 first transition structure, 22 first side, 23 second side, 24 third side, 25 second transition structure. DETAILED DESCRIPTION OF THE INVENTION

[0017] Hereinafter, the technical aspects of the embodiments of the present application will be described clearly and completely with reference to the drawings in the embodiments of the present application. However, it is clear that the described embodiments are only some of the embodiments of the present application, and not all of the embodiments. The description of at least one exemplary embodiment below is merely explanatory in nature and does not impose any restrictions on the present application and its application or use. Based on the embodiments of the present application, all other embodiments that can be obtained by those skilled in the art without creative efforts shall fall within the scope of protection of the present application.

[0018] As shown in Figures 1 and 2, an embodiment of the present application provides a coil assembly including a main body 10, a stator assembly, and a connecting seat 20. The main body 10 has an accommodating chamber, the stator assembly is disposed within the accommodating chamber, and the connecting seat 20 has a pin. The connecting seat 20 is disposed on a side wall of the main body 10, and the connecting seat 20 and the main body 10 are integrally injection molded. The connecting seat 20 has a mounting surface and a plurality of side surfaces. The mounting surface is located on one side of the connecting seat 20 away from the main body 10, and the ends of the pin protrude from the mounting surface. The side surfaces of the connecting seat 20 and the main body 10 are connected to each other, and a first transition structure 21 is disposed at a connection point between at least one side surface of the connecting seat 20 and the main body 10.

[0019] When the technical aspects of the present application are applied, the connecting seat 20 and the main body 10 form a one-piece structure during processing, and the side of the connecting seat 20 and the main body 10 are connected to each other, while a first transition structure 21 is provided at the connection point between the connecting seat 20 and the main body 10. By using the above structure, the first transition structure 21 can be used to reduce the resistance at the connection point between the connecting seat 20 and the main body 10 when injection molding the molding compound, allowing the molding compound to flow more smoothly and reducing the overall generation of bubbles after final molding, thereby improving sealing and insulation performance and ensuring the quality of the coil assembly.

[0020] Here, the first transition structure 21 includes a transition arc surface, which contacts the side wall where the transition arc surface of the connecting seat 20 is located, and the transition arc surface contacts the side wall of the main body 10. The transition arc surfaces contact the side wall of the connecting seat 20 and the side wall of the main body 10, respectively. This design facilitates processing and at the same time further ensures the flow effect of the molding compound and the molding effect of the connection point between the connecting seat 20 and the main body 10.

[0021] Furthermore, the radius of the transition arc surface is A, and 4 mm ≥ A ≥ 0.5 mm. If the radius of the transition arc surface is less than 0.5 mm, the structural dimensions of first transition structure 21 are too small, and the molding compound still faces a relatively large resistance in first transition structure 21, affecting the flow of the molding compound. If the radius of the transition arc is more than 4 mm, the structural dimensions of first transition structure 21 are too large, causing interference with connecting seat 20 or other components and affecting the normal connection between the coil assembly and other components.

[0022] Here, the connecting seat 20 may be a cylindrical body or a polygonal prism, and the first transition structure 21 may be annularly arranged on the outer periphery of the connecting seat 20, or may be partially arranged outside the connecting seat 20.

[0023] In this embodiment, the connecting seat 20 has a first side surface 22, a second side surface 23, a third side surface 24, and a fourth side surface, the first side surface 22 and the second side surface 23 are opposite each other, the third side surface 24 and the fourth side surface are opposite each other, the first side surface 22 and the second side surface 23 are located on both sides of the connecting seat 20, and the third side surface 24 and the fourth side surface are located on the top and bottom of the connecting seat 20. There are multiple first transition structures 21, and a first transition structure 21 is provided between the first side surface 22 and the main body 10, between the second side surface 23 and the main body 10, and between the third side surface 24 and the main body 10. By providing multiple first transition structures 21, the smoothness of the flow of the molding compound can be further improved, ensuring that no air bubbles occur at the connection points between the first side 22, the second side 23, and the third side 24 of the connecting seat 20 and the main body, and further ensuring the processing effectiveness of the connection points between the first side 22, the second side 23, and the third side 24 of the connecting seat 20 and the main body, thereby improving the quality of the entire coil assembly.

[0024] Here, a second transition structure 25 is further provided between the connecting seat 20 and the side wall of the main body 10, and the second transition structure 25 is located between two adjacent first transition structures 21 and is used to connect the two adjacent first transition structures 21. With this design, the second transition structure 25 can prevent gaps from occurring between the two adjacent first transition structures 21, thereby further ensuring the product quality of the coil assembly and enhancing the structural strength of the coil assembly.

[0025] 3 and 4, Example 2 of the present application provides a coil assembly that differs from Example 1 in that first transition structure 21 includes a transition inclined surface, and the included angle between the transition inclined surface and the side surface of connecting seat 20 where the transition inclined surface is located is B, where 180° > B ≥ 130°. This design facilitates processing of the coil assembly and allows the molding compound to flow more smoothly. If the included angle between the transition inclined surface and the side surface of connecting seat 20 where the transition inclined surface is located is less than 130°, the included angle is too small, and the molding compound still experiences relatively large resistance, the molding compound does not flow smoothly, and many bubbles still occur after molding, which makes it difficult to ensure the quality of the coil assembly.

[0026] Example 3 of the present application provides a coil assembly that differs from Example 1 in that at least one first transition structure 21 is a transition arc surface, and at least one first transition structure among the remaining plurality of first transition structures 21 is a transition inclined surface. Here, a transition arc surface may be provided between the first side surface 22, the second side surface 23, and the main body 10, a transition inclined surface may be provided between the third side surface 24 and the main body 10, or a transition inclined surface may be provided between the first side surface 22, the second side surface 23, and the main body 10, and a transition arc surface may be provided between the third side surface 24 and the main body 10. This design makes the processing of the connecting seat 20 and the main body 10 more flexible, and different structures may be provided at the connection point between the connecting seat 20 and the main body 10 to adapt to different usage situations.

[0027] Example 4 of the present application provides an electronic expansion valve including the coil assembly provided in the above example, which can improve the product quality of the electronic expansion valve and extend the service life of the electronic expansion valve after using the coil assembly provided in the above example.

[0028] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to the present application. As used herein, the singular also intends to include the plural unless the context clearly dictates otherwise, and it should also be understood that when the terms "comprise" and / or "comprises" are used herein, it means that features, steps, operations, devices, assemblies, and / or combinations thereof are present.

[0029] Unless otherwise specifically stated, the relative arrangements of components and steps, formulas, and numerical values ​​described in these embodiments do not limit the scope of this application. At the same time, it should be understood that, for convenience of explanation, the dimensions of each part shown in the drawings are not drawn to actual proportions. Detailed descriptions of techniques, methods, and equipment already known to those skilled in the art may be omitted, but, where necessary, these techniques, methods, and equipment should be considered part of the approved specification. In all examples shown and described herein, any specific values ​​should be construed as merely illustrative and not limiting. Therefore, other examples of the illustrative embodiments may have different values. It should be noted that similar symbols and characters represent similar objects in the following drawings, so that once something is defined in one drawing, it need not be further described in subsequent drawings.

[0030] In the description of this application, orientations or positional relationships expressed by directional terms such as "front, rear, top, bottom, left, right," "lateral, longitudinal, vertical, horizontal," and "top, bottom" are generally based on the orientations or positional relationships shown in the drawings, but this is merely for the ease and simplicity of the description of this application, and unless otherwise stated, these directional terms do not necessarily indicate or imply that the devices or elements shown have a specific orientation or are constructed and operated in a specific orientation, and therefore should not be understood as limiting the scope of protection of this application, and directional terms such as "inside, outside" refer to the inside and outside of the contours of each member itself.

[0031] For convenience of description, spatially relative terms such as "above," "upper," "on top of," "above," etc. may be used herein to describe the spatial location of one device or feature relative to another device or feature, as shown in the figures. It should be understood that spatially relative terms are intended to encompass different orientations during use or operation other than the orientation depicted in the figures of the device. For example, if a device in the figures were turned upside down, a device described as "above other devices or structures" or "on top of other devices or structures" would then be positioned "below other devices or structures" or "below other devices or structures." Thus, the exemplary term "above" can encompass two orientations: "above" and "below." The device can also be oriented in other different ways (rotated 90 degrees or positioned at other orientations) and a corresponding interpretation given to the spatially relative descriptions used herein.

[0032] It should be further explained that the use of terms such as "first" and "second" to define components is merely for distinguishing corresponding components, and should not be understood as limiting the scope of protection of the present application, since the terms do not have any special meaning unless otherwise specified.

[0033] The above is only a preferred embodiment of the present application, and is not intended to limit the present application, and those skilled in the art can make various modifications and variations to the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. a main body (10) having a storage chamber; a stator assembly disposed within the chamber and having a pin; A connecting seat (20), The connecting seat (20) is provided on the side wall of the main body (10), The connecting seat (20) is integrally formed with the main body (10) by injection molding, The connecting seat (20) has a mounting surface and a plurality of side surfaces, the mounting surface is located on one side of the connecting seat (20) away from the main body (10), and the end of the pin is provided to protrude from the mounting surface, The side surface of the connecting seat (20) and the main body (10) are connected to each other, and a first transition structure (21) is provided at a connection point between at least one side surface of the connecting seat (20) and the main body (10); The connecting seat (20) has a first side surface (22), a second side surface (23), a third side surface (24), and a fourth side surface, the first side surface (22) and the front second side surface (23) are arranged opposite each other, the third side surface (24) and the fourth side surface are arranged opposite each other, the first side surface (22) and the second side surface (23) are respectively located on both sides of the connecting seat (20), and the third side surface (24) and the fourth side surface are respectively located at the top and bottom of the connecting seat (20), The number of the first transition structures (21) is plural, The first transition structure (21) is provided between the first side surface (22) and the main body (10), between the second side surface (23) and the main body (10), and between the third side surface (24) and the main body (10), A second transition structure (25) is further provided between the connecting seat (20) and the side wall of the main body (10), The second transition structure (25) is located between two adjacent first transition structures (21) and connects the two adjacent first transition structures (21). Coil assembly.

2. The first transition structure (21) includes a transition arc surface; The transition arc surface contacts the side wall of the connecting seat (20) on which the transition arc surface is located, The coil assembly of claim 1 , wherein the transition arc surface abuts a side wall of the body (10).

3. 3. The coil assembly of claim 2, wherein the radius of the transition arc surface is A, and 4 mm ≥ A ≥ 0.5 mm.

4. The first transition structure (21) includes a transition slope, 2. The coil assembly according to claim 1, wherein an included angle B between the transition inclined surface and a side surface of the connecting seat (20) on which the transition inclined surface is located satisfies 180°>B≧130°.

5. At least one of the first transition structures (21) is a transition arc surface; The coil assembly of claim 1 , wherein at least one first transition structure of the remaining plurality of first transition structures (21) is a transition ramp.

6. An electronic expansion valve comprising a coil assembly according to any one of claims 1 to 5.

Citation Information

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