Flip type shell
Through the matching design of the chute-type shaft position and the shaft end, combined with the guide matching structure and snap design, the gaps in the flip-type shell affect the aesthetics and the misclosing of the flip-type shell are solved, and the stable flip and micro-slit design of the flip is achieved, which improves the dust-proof and waterproof performance of the power supply and installation convenience.
Patent Information
- Application Number
- CN202422186306.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-09-05
AI Technical Summary
The gap design of the existing power supply flip affects the beauty and easily causes dust to enter. The flip is easy to close automatically after being flipped, increasing the difficulty and cost of electricians.
A flip-type shell is designed. Through the cooperation of the slide-type shaft position and the rotating shaft end, the flip-shaped flip is flipped and automatically limited. Combined with the guide matching structure and snap design, it ensures that the flip is closed accidentally when opened and the gap is narrowed.
The stable flip of the flip is achieved, the gap between the shell and the flip is reduced, the aesthetics and dust-proof and waterproof performance are improved, and the installation operation is facilitated.
Smart Images

Figure CN223094039U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of shells of electronic / electrical equipment, and particularly relates to a flip-type shell. Background Art
[0002] Reference Figure 1A and Figure 1B As shown, an existing power supply 10P is schematically shown. Both ends of the power supply 10P are respectively provided with a wiring cavity 11P and a flip cover 12P. The flip cover 12P is rotatably arranged on the power supply 10P, so that the wiring cavity 11P can be opened or closed based on the flipping of the flip cover 12P. When the flip cover 12P is opened, the wiring cavity 11P is opened to enable an operator to perform wiring operations. To ensure the progress of the wiring operation, as Figure 1A shown, the flipping angle of the flip cover 12P needs to be more than 90° to effectively prevent the flip cover 12P from obstructing the wiring operation of the operator in the wiring cavity 11P. Therefore, to achieve a large-angle flipping of the flip cover 12P, a chamfer design needs to be carried out at the connection between the shell of the power supply 10P and the flip cover 12P to leave a sufficient-width gap 13P between the shell and the flip cover 12P, so as to prevent the shell of the power supply 10P from obstructing the flip cover 12P when the flip cover 12P is flipped. However, due to the existence of the gap 13P, when the flip cover 12P is in a closed state, the gap 13P will be significantly exposed on the power supply 10P, affecting the overall aesthetics of the power supply 10P. At the same time, external dust and the like can easily enter the wiring cavity 11P through the gap 13P, which is not conducive to the waterproof and dustproof design of the power supply 10P.
[0003] Moreover, in the usage costs of sensors, power supplies, etc. in many regions currently, the labor cost of electricians accounts for a larger proportion. Especially in the European market, electricians, as a professional type of work, have specific entry thresholds. Electrical equipment such as power supplies needs to be purchased and installed by professional electricians, and the labor cost of electricians is charged by the hour. During the installation process of the power supply 10P, general electricians need to work at heights to perform wiring operations. After the flip cover 12P is opened, since there is no corresponding structure to limit it, it is very easy to automatically flip in the closing direction due to factors such as gravity or external force touch, thus affecting the wiring operation of the electrician and further increasing the working hours of the electrician. Summary of the Utility Model
[0004] An object of the utility model is to provide a flip-type shell, wherein the flip-type shell can reduce the gap between the shell and the flip cover while ensuring the flipping angle of the flip cover.
[0005] Another object of the present utility model is to provide a flip-type housing, wherein the flip-type housing can ensure the flipping angle of the flip while not needing to avoid the flip, thus enabling the gap between the flip and the housing to be infinitely reduced, thereby realizing a micro-gap design, which is beneficial to improving the aesthetics of the flip-type housing and facilitating the dust-proof and waterproof design of the flip-type housing.
[0006] Another object of the present utility model is to provide a flip-type housing, wherein the flip-type housing can maintain the flip in the open position and prevent the flip from accidentally closing, thus facilitating the corresponding installation operation.
[0007] Another object of the present utility model is to provide a flip-type housing, which comprises a housing body, a cavity, a chute-type shaft position and a flip cover. The cavity extends from the side of the housing body into the housing body and is used for arranging corresponding wiring and wire-pressing structures, adjustment structures such as DIP switches, or batteries, etc. The chute-type shaft position is opened in the cavity and has a front end position and a rear end position closer to the housing body relative to the front end position. The flip cover has a rotating shaft end, and the flip cover is installed in the cavity in a state where the rotating shaft end is inserted into the chute-type shaft position. When the flip cover flips relative to the housing body, the rotating shaft end slides back and forth along the chute-type shaft position. In the closed state, the rotating shaft end is located at the rear end position, and during the process of the flip cover switching from the closed state to the open state, the rotating shaft end slides along the chute-type shaft position towards the front end position, so that the flip cover has an opening angle greater than 90° with the cavity to form the open state. During the process of the flip cover switching from the open state to the closed state, the rotating shaft end slides along the chute-type shaft position towards the rear end position so that the flip cover approaches the housing body, thereby reducing the gap between the housing body and the flip cover while ensuring the flipping angle of the flip cover.
[0008] Another object of the present utility model is to provide a flip-type housing, wherein the front end position is a circular arc end, and the diameter of the front end position is equal to or tends to be equal to the diameter of the rotating shaft end, so that when the rotating shaft end is at the front end position, it can be clamped and limited by the front end position, thereby restricting the rotation of the rotating shaft end, so as to be able to keep the flip cover in the open state, thus being able to prevent the flip cover from accidentally closing and being beneficial to ensuring the corresponding installation operation.
[0009] Another object of the present utility model is to provide a flip-type housing, wherein the rear end is a circular arc end, and the diameter of the rear end is larger than that of the front end, thereby facilitating ensuring the smooth sliding of the rotating shaft end in the chute-type shaft position and the smooth flipping of the flip cover.
[0010] Another object of the present utility model is to provide a flip-type housing, wherein a semi-open slot is formed in the rotating shaft end along its diameter direction, so that the rotating shaft end can have a certain deformation force along its diameter direction, so that when the rotating shaft end slides to the front end position, it can be deformed under pressure to increase the clamping force of the front end position on the rotating shaft end, so as to ensure the opening limit of the flip cover.
[0011] Another object of the present utility model is to provide a flip-type housing, wherein during the process of the flip cover switching from the closed state to the open state, when the flip cover is flipped to a certain angle, the flip cover abuts against the housing body, and when the flip cover is further flipped, due to being blocked by the housing body, the flip cover is pushed to make the rotating shaft end slide towards the front end position, thereby forming a sliding drive for the rotating shaft end. It can also be understood that when the flip cover is blocked by the housing body, the rotating shaft end slides towards the front end position, and further enables the flip cover to be further flipped, so as to expand the flipping angle of the flip cover.
[0012] Another object of the present utility model is to provide a flip-type housing, wherein the flip cover has a buckle portion extending downward from one side end thereof, the rotating shaft end approaches the opposite side end of this side end, and the housing body extends upward at the front end of the cavity to have a bayonet matching the buckle portion. In the closed state, the buckle portion is clamped in the bayonet to form a limit for the flip cover and maintain the flip cover in a state of being tightly abutted against the housing body.
[0013] Another object of the present utility model is to provide a flip - type housing, wherein the flip - type housing includes a guiding and matching structure, and the guiding and matching structure includes a sliding driving part extending from the flip - cover and a sliding guiding edge arranged in the cavity. The sliding guiding edge is matched with the sliding driving part, so that in the process of the flip - cover switching from the open state to the closed state, the sliding driving part abuts against the sliding guiding edge and slides along the sliding guiding edge, so that the flip - cover is pushed backward, and the rotating shaft end slides toward the rear end position, so as to form a sliding drive for the rotating shaft end, so as to realize the automatic linkage of the three structural relationships of the closing and flipping of the flip - cover, the sliding of the rotating shaft end toward the rear end position, and the alignment of the buckle part and the buckle, and make the flip - cover abut against the housing body backward, reducing the gap between the housing body and the flip - cover.
[0014] Another object of the present utility model is to provide a flip - type housing, wherein the flip - cover extends downward and has at least one rear extrusion and insertion part, and the rear extrusion and insertion part approaches the side end where the buckle part is located. In the state where the buckle part is clamped in the bayonet, the rear extrusion and insertion part is inserted into the cavity and abuts against the side wall of the cavity, and is squeezed backward, so as to maintain a limiting force for the flip - cover to approach the housing body backward, which is beneficial to further reducing the gap between the housing body and the flip - cover or maintaining the micro - gap characteristic between the housing body and the flip - cover.
[0015] Another object of the present utility model is to provide a flip - type housing, wherein the housing body is provided with a support part at the rear end of the cavity, and the flip - cover extends downward at the opposite side end of the side end where the buckle part is located and has an abutting edge. In the closed state, the abutting edge of the flip - cover abuts against the support part and is supported upward by the support part, so as to improve the structural strength of the flip - cover.
[0016] According to one aspect of the present utility model, the present utility model provides a flip - type housing, wherein the flip - type housing includes:
[0017] A housing body;
[0018] A cavity, wherein the cavity extends from the side part of the housing body into the housing body;
[0019] A chute - type shaft position, which is opened in the cavity and has a front end position and a rear end position relative to the front end position and close to the housing body; and
[0020] A flip cover, wherein the flip cover has a shaft end, and the flip cover is mounted on the cavity in a state where the shaft end is inserted into the chute-shaped shaft position, and has a closed state and an open state. In the closed state, the shaft end is located at the rear end position so that the flip cover is close to the housing body. During the process of the flip cover switching from the closed state to the open state, the shaft end slides along the chute-shaped shaft position towards the front end position, so that the flip cover has an opening angle greater than 90° with the cavity to form the open state.
[0021] In an embodiment, the front end position is an arc-shaped end, and the diameter of the front end position is equal to or approximately equal to the diameter of the shaft end, so that when the shaft end is at the front end position, it can be clamped and limited by the front end position.
[0022] In an embodiment, the rear end position is an arc-shaped end, and the diameter of the rear end position is greater than the diameter of the front end position.
[0023] In an embodiment, a semi-open slot is formed in the shaft end along its diameter direction, so that the shaft end can have a certain deformation force along its diameter direction.
[0024] In an embodiment, the flip cover housing includes a guiding and matching structure. The guiding and matching structure includes a sliding driving part extending from the flip cover and a sliding guiding edge arranged in the cavity. The sliding guiding edge is matched with the sliding driving part, so that during the process of the flip cover switching from the open state to the closed state, the sliding driving part abuts against the sliding guiding edge and slides along the sliding guiding edge, so that the flip cover is pushed backward and the shaft end slides towards the rear end position.
[0025] In an embodiment, the flip cover has a buckle part extending downward at one side end thereof. The shaft end approaches the opposite side end of this side end. The housing body extends upward at the front end of the cavity and has a bayonet matching the buckle part. In the closed state, the buckle part is clamped in the bayonet.
[0026] In an embodiment, the flip cover extends downward and has at least one rear extrusion and insertion part. The rear extrusion and insertion part approaches the side end where the buckle part is located. In a state where the buckle part is clamped in the bayonet, the rear extrusion and insertion part is inserted into the cavity and abuts against the side wall of the cavity, and is squeezed backward.
[0027] In one embodiment, a support portion is provided at the rear end of the cavity of the housing body, and an abutting edge extends downward from the opposite side end of the side end where the snap portion of the flip cover is located. In the closed state, the abutting edge of the flip cover abuts against the support portion and is upwardly supported by the support portion.
[0028] In one embodiment, the positions of the shaft end and the chute-shaped shaft position are swapped.
[0029] In one embodiment, the positions of the sliding driving portion and the sliding guiding edge are swapped.
[0030] In one embodiment, the flip cover is designed to be transparent.
[0031] Through the understanding of the subsequent description and the drawings, the further objects and advantages of the present utility model will be fully embodied. Brief Description of the Drawings
[0032] Figure 1A It is a schematic structural diagram of an existing power supply in a wired state.
[0033] Figure 1B It is a schematic structural diagram of the above-mentioned existing power supply.
[0034] Figure 2 It is a schematic structural diagram of a flip-type housing according to a first embodiment of the present utility model.
[0035] Figure 3 It is a schematic structural diagram of the flip-type housing according to the above-mentioned first embodiment of the present utility model during the opening process.
[0036] Figure 4 It is a schematic structural diagram of the flip-type housing according to the above-mentioned first embodiment of the present utility model in the open state.
[0037] Figure 5 It is a schematic structural diagram of a flip cover of the flip-type housing according to the above-mentioned first embodiment of the present utility model.
[0038] Figure 6 It is a schematic structural diagram of a cavity of the flip-type housing according to the above-mentioned first embodiment of the present utility model.
[0039] Figure 7 It is a schematic structural diagram of a flip-type housing according to a second embodiment of the present utility model.
[0040] Figure 8 It is a schematic structural diagram of the flip-type housing according to the above-mentioned second embodiment of the present utility model in the open state.
[0041] Figure 9 Schematic structural view of a flip cover of the flip-type housing according to the second embodiment of the present utility model.
[0042] Figure 10 Schematic structural view of a cavity of the flip-type housing according to the second embodiment of the present utility model.
[0043] Figure 11 Schematic structural view of a flip-type housing in an open state according to a third embodiment of the present utility model.
[0044] Figure 12 Schematic structural view of the flip-type housing according to the third embodiment of the present utility model.
[0045] Figure 13 Schematic structural view of a flip-type housing according to a fourth embodiment of the present utility model. Detailed implementation manners
[0046] The following description is used to disclose the present utility model so that those skilled in the art can implement the present utility model. The preferred embodiments described below are only examples, and those skilled in the art can think of other obvious variations. The basic principles defined in the following description can be applied to other implementation manners, variations, improvements, equivalent manners, and other technical solutions that do not depart from the spirit and scope of the present utility model.
[0047] Those skilled in the art should understand that in the disclosure of the present utility model, the orientation or positional relationships indicated by the terms "longitudinal", "lateral", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are based on the orientation or positional relationships shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limitations on the present utility model.
[0048] It can be understood that the term "a" should be understood as "at least one" or "one or more". That is, in one embodiment, the number of an element can be one, and in other embodiments, the number of the element can be multiple. The term "a" should not be construed as a limitation on the number.
[0049] The present utility model provides a flip-type housing. The flip-type housing includes a housing main body and a flip cover rotatably mounted on the housing main body. The gap between the flip cover and the housing main body is significantly reduced compared to the gap 13P of the existing power supply 10P and is designed with a micro-gap. At the same time of the micro-gap design, the large-angle flipping of the flip cover can be ensured. Specifically, taking the power supply housing as an example in the present utility model, referring to the accompanying drawings of the specification of the present utility model Figures 2 to 6 , a flip-type housing 100 according to a first embodiment of the present utility model is schematically shown. In the present utility model, the flip-type housing 100 is implemented as a power supply housing and has a wiring terminal 101 and a high-voltage wiring terminal 102. In the first embodiment of the present utility model, the wiring terminal 101 is taken as a specific example.
[0050] Specifically, the flip-type housing 100 includes a housing main body 10, a cavity 11, a flip cover 20, and a chute-type shaft position 30. The cavity 11 extends integrally from the side of the housing main body 10 to the housing main body 10. The cavity 11 is used to arrange corresponding wiring and pressing structures, adjustment structures such as DIP switches, or batteries, etc. Specifically, in the illustration of these embodiments of the present utility model, the cavity 11 is provided with a wiring and pressing structure for wiring. The chute-type shaft position 30 is opened in the cavity 11 and has a front end position 31 and a rear end position 32 relative to the front end position 31 and close to the housing main body 10. The flip cover 20 has a rotating shaft end 21. The flip cover 20 is installed in the cavity 11 in a state where the rotating shaft end 21 is inserted into the chute-type shaft position 30. When the flip cover 20 is in a state of flipping relative to the housing main body 10, the rotating shaft end 21 slides back and forth along the chute-type shaft position 30. The flip cover 20 has a closed state and an opened state. In the closed state, the rotating shaft end 21 is located at the rear end position 32. During the process of the flip cover 20 switching from the closed state to the opened state, the rotating shaft end 21 slides along the chute-type shaft position 30 towards the front end position 31, so that the flip cover 20 has an opening angle greater than 90° with the cavity 11 to form the opened state. During the process of the flip cover 20 switching from the opened state to the closed state, the rotating shaft end 21 slides along the chute-type shaft position 30 towards the rear end position 32 so that the flip cover 20 approaches the housing main body 10, thus reducing the gap between the housing main body 10 and the flip cover 20 while ensuring the flipping angle of the flip cover 20.
[0051] For detailed reference Figures 2 to 4 As shown, during the process of the flip cover 20 switching from the closed state to the opened state, when the flip cover 20 is flipped to a certain angle, such asFigure 3 As shown, when the angle between the flip cover 20 and the cavity 11 is 90°, continue to flip the flip cover 20, the flip cover 20 will abut against the housing body 10, and when the flip cover 20 is further flipped, due to being blocked by the housing body 10, the flip cover 20 is pushed forward, causing the shaft end to slide towards the front position 31, as Figure 3 shown by the arrow direction in the figure, thereby forming a sliding drive for the shaft end.
[0052] It can also be understood that when the flip cover 20 is blocked by the housing body 10, the shaft end 21 slides towards the front position 31, further enabling the flip cover 20 to be further flipped, thereby expanding the flipping angle of the flip cover 20.
[0053] It is worth mentioning that the front position 31 of the chute-type shaft position 30 is a circular arc end, and the diameter of the front position 31 is equal to or approximately equal to the diameter of the shaft end 21, so that when the shaft end 21 is at the front position 31, it can be clamped and limited by the front position 31, thereby restricting the rotation of the shaft end 21, so as to be able to keep the flip cover 20 in the opened state, thus being able to avoid the flip cover 20 from closing by mistake, which is beneficial to ensuring the corresponding installation operation.
[0054] In particular, a semi-open slot 211 is provided in the shaft end 21 along its diameter direction, so that the shaft end 21 can have a certain deformation force along its diameter direction, so that when the shaft end 21 slides to the front position 31, it can be deformed under pressure to ensure that the shaft end 21 can fit against the front position 31, improving the clamping force of the front position 31 on the shaft end 21, so as to ensure the open limit of the flip cover 20.
[0055] It is worth mentioning that the rear position 32 is a circular arc end, and the diameter of the rear position 32 is greater than the diameter of the front position 31, which is beneficial to ensuring the smooth sliding of the shaft end 21 in the chute-type shaft position 30 and the smooth flipping of the flip cover 20.
[0056] Specifically, in the present utility model, the shaft end 21 is disposed on the flip cover 20, and the chute-shaped shaft position 30 is opened in the cavity 11. Based on the mating relationship between the shaft end 21 and the chute-shaped shaft position 30, in some other embodiments of the present utility model, the positions of the shaft end 21 and the chute-shaped shaft position 30 can be swapped, that is, the chute-shaped shaft position 30 is opened in the flip cover 20, and the shaft end 21 is disposed in the cavity 11. Based on the structural relationship that the chute-shaped shaft position 30 is inserted by the shaft end 21, the flip cover 20 is pivotally disposed on the housing body 10.
[0057] Further, the flip cover 20 has a buckle portion 24 extending downward at one side end thereof. The shaft end 21 is close to the opposite side end of this side end. The housing body 10 has a bayonet 12 matching the buckle portion 24 extending upward at the front end of the cavity 11. In the closed state, the buckle portion 24 is snapped into the bayonet 12 to form a limit for the flip cover 20 and maintain the flip cover 20 in a state of being pressed against the housing body 10.
[0058] Further, the flip-type housing 100 includes a guiding and matching structure 40. The guiding and matching structure 40 includes a sliding driving portion 41 extending from the flip cover 20 and a sliding guiding edge 42 disposed in the cavity 11. The sliding guiding edge 42 matches the sliding driving portion 41. During the process of the flip cover 20 switching from the open state to the closed state, the sliding driving portion 41 abuts against the sliding guiding edge 42 and slides along the sliding guiding edge 42. Based on the curved surface guiding of the mutual cooperation between the sliding guiding edge 42 and the sliding driving portion 41, the flip cover 20 is pushed backward to make the shaft end 21 slide toward the rear end position 32, so as to form a sliding drive for the shaft end 21, realize the automatic linkage of the three structural relationships of the closing and flipping of the flip cover 20, the sliding of the shaft end 21 toward the rear end position 32, and the alignment of the buckle portion 24 and the buckle 12, and make the flip cover 20 approach the housing body 10 backward, reducing the gap between the housing body 10 and the flip cover 20.
[0059] In particular, based on the matching structural relationship between the sliding driving part 41 and the sliding guide 42, in some other embodiments of the present invention, the positions of the sliding driving part 41 and the sliding guide 42 can be swapped, that is, the sliding driving part 41 is arranged in the cavity 11, and the sliding guide 42 is arranged on the flip cover 20. During the process of the flip cover 20 switching from the open state to the closed state, the sliding guide 42 follows the flip cover 20 and approaches the sliding driving part 41 and then abuts against the sliding driving part 41. Based on the structural relationship between the sliding guide 42 and the sliding driving part 41 under the movement of the flip cover 20, the flip cover 20 is pushed backward, causing the shaft end 21 to slide toward the rear end position 32.
[0060] In particular, the flip cover 20 extends downward and has at least one rear extrusion insertion part 23, which approaches the side end where the buckle part 24 is located. When the buckle part 24 is clamped in the bayonet 12, the rear extrusion insertion part 23 is inserted into the cavity 11 and abuts against the side wall of the cavity 11, and is squeezed backward, so as to maintain a limiting force on the flip cover 20 to approach the housing main body 10 backward, which is beneficial to further reduce the gap between the housing main body 10 and the flip cover 20 or maintain the micro-gap characteristic between the housing main body 10 and the flip cover 20.
[0061] It is worth mentioning that the sliding driving part 41 approaches the shaft end 21, and the shaft end 21 is located between the sliding driving part 41 and the opposite side end, so as to facilitate the backward thrust formed by the sliding driving part 41 sliding along the sliding guide 42 to be applied to the shaft end 21, thereby effectively driving the shaft end 21 to slide backward along the chute-shaped shaft position 30.
[0062] In particular, the housing main body 10 further has at least one wire outlet groove 13 at the front end of the cavity 11, so that the corresponding cable can be led out after being wired from the cavity 11. The flip cover 20 extends downward and has at least one wire pressing part 25, so that when the flip cover 20 is in the closed state, it can apply pressure to the corresponding cable to fix the cable by wire pressing.
[0063] Further reference Figures 7 to 10, the flip - type housing 100 according to the second embodiment of the present utility model is shown. In the second embodiment of the present utility model, a micro - gap design is adopted between the flip - cover 20 of the high - voltage terminal 102 of the flip - type housing 100 and the housing body 10. That is to say, based on the technical solution of the present utility model, the high - voltage terminal 102 of the power supply can also adopt a micro - gap design to improve the aesthetics, facilitate dust - proof and waterproof design, and at the same time can ensure the flipping angle of the flip - cover 20, which is beneficial to the corresponding wiring operation.
[0064] Particularly, since the flip - cover 20 of the high - voltage receiving terminal 102 has a relatively large spanning dimension, the present utility model further provides a support portion 14 at the rear end of the cavity 11. The flip - cover 20 extends downward at the opposite side end of the side end where the buckle portion 22 is located to have an abutting edge 26. In the closed state, the abutting edge 26 of the flip - cover 20 abuts against the support portion 14 and is upwardly supported by the support portion 14, so as to improve the structural strength of the flip - cover 20 and ensure the structural stability of the flip - cover 20.
[0065] In summary, based on the design concept that the rotating shaft end 21 of the present utility model can slide back and forth in the chute - type shaft position 30, the present utility model does not limit the specific size and shape of the flip - cover 20. That is to say, the flip - cover 20 can either be the flip - cover 20 with a smaller size located at the terminal 101 corresponding to the first embodiment of the present utility model, or the flip - cover 20 with a larger size located at the high - voltage terminal 102 corresponding to the second embodiment of the present utility model.
[0066] Therefore, it is worth mentioning that referring to Figure 11 and Figure 12 , in the third embodiment of the present utility model, the flip - type housing 100 is provided with the flip - cover 20 having a micro - gap design with the housing body 10 at both the terminal 101 and the high - voltage terminal 102, which is beneficial to improving the aesthetics, facilitating dust - proof and waterproof design, and at the same time can ensure the flipping angle of the flip - cover 20.
[0067] Furthermore, referring to Figure 13 shown, in the fourth embodiment of the present utility model, the flip - type housing 100 has only one - end wiring, so there is only the cavity 11 at one end of the housing body 10, and the flip - cover 20 having a micro - gap design with the housing body 10 is provided at this end.
[0068] In particular, the flip cover 20 can be designed to be transparent. For example, the flip cover 20 can be fully transparent, or a part of the flip cover 20 can be made transparent so that the flip cover 20 is semi-transparent. Based on the transparent design of the flip cover 20, when the flip cover 20 is in the closed state, it is convenient for the user to observe the internal situation of the cavity 11, which is beneficial to the inspection and maintenance of the corresponding equipment.
[0069] It is worth mentioning that based on the disclosure of the present invention, the flip-type housing 100 can be implemented not only as the power housing in the strip form shown in the above embodiments of the present invention, but also as an integrated power housing, a sensor housing, a remote control housing, an electrical box housing, etc. The present invention does not limit this.
[0070] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.
[0071] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the drawings are only examples and do not limit the present invention. The object of the present invention has been fully and effectively achieved. The function and structural principle of the present invention have been shown and described in the embodiments. Without departing from the principle, the embodiments of the present invention can have any deformation or modification.
Claims
1. A flip-type housing, characterized in that, Comprising: A housing body; A cavity, wherein the cavity extends from a side portion of the housing body into the housing body; A chute-type axial position, wherein the chute-type axial position is formed in the cavity and has a front end position and a rear end position relative to the front end position and closer to the housing body; and A flip cover, wherein the flip cover has a rotating shaft end, and the flip cover is mounted in the cavity in a state where the rotating shaft end is inserted into the chute-type axial position, and has a closed state and an opened state. In the closed state, the rotating shaft end is located at the rear end position so that the flip cover abuts against the housing body, and during the process of the flip cover switching from the closed state to the opened state, the rotating shaft end slides along the chute-type axial position towards the front end position, so that the flip cover has an opening angle greater than 90° with the cavity to form the opened state.
2. The flip-type housing according to claim 1, wherein the front end position is an arc-shaped end portion, and the diameter of the front end position is equal to or tends to be equal to the diameter of the rotating shaft end, so that when the rotating shaft end is at the front end position, it can be clamped and limited by the front end position.
3. The flip-type housing according to claim 2, wherein the rear end position is an arc-shaped end portion, and the diameter of the rear end position is greater than the diameter of the front end position.
4. The flip-type housing according to claim 3, wherein the rotating shaft end is formed with a semi-open slot along its diameter direction, so that the rotating shaft end can have a certain deformation force along its diameter direction.
5. The flip-type housing according to any one of claims 1 to 4, wherein the flip-type housing includes a guiding and matching structure, and the guiding and matching structure includes a sliding driving portion extending from the flip cover and a sliding guiding edge provided in the cavity. The sliding guiding edge is matched with the sliding driving portion, so that during the process of the flip cover switching from the opened state to the closed state, the sliding driving portion abuts against the sliding guiding edge and slides along the sliding guiding edge, so that the flip cover is pushed backward and the rotating shaft end slides towards the rear end position.
6. The flip-type housing according to claim 5, wherein the flip cover has a buckle portion extending downward from one side end thereof, the rotating shaft end approaches the opposite side end of this side end, and the housing body extends upward at the front end of the cavity to have a bayonet matching with the buckle portion. In the closed state, the buckle portion is snapped into the bayonet.
7. The flip-type housing according to claim 6, wherein the flip cover extends downward to have at least one rear extrusion and insertion portion approaching the side end where the buckle portion is located. In a state where the buckle portion is snapped into the bayonet, the rear extrusion and insertion portion is inserted into the cavity and abuts against the side wall of the cavity, and is squeezed backward.
8. The flip-type housing according to claim 7, wherein a support portion is provided at the rear end of the cavity of the housing body, and an abutting edge extends downward from the opposite side end of the side end where the snap portion is located on the flip cover, and in the closed state, the abutting edge of the flip cover abuts against the support portion to be upwardly supported by the support portion.
9. The flip-type housing according to any one of claims 1 to 4, wherein the positions of the shaft end and the chute-type shaft position are swapped.
10. The flip-type housing according to claim 5, wherein the positions of the sliding driving portion and the sliding guiding edge are swapped.
11. The flip-type housing according to any one of claims 1 to 4, wherein the flip cover is designed to be transparent.