A rainproof hydraulic station housing

By designing a detachable rain cover and connectors on the hydraulic station housing, the waterproof and rainproof issues caused by different hoisting methods are solved, achieving a balance between waterproof and rainproof performance and hoisting function, making it suitable for a variety of hydraulic station products.

CN224283106UActive Publication Date: 2026-05-26HEBEI BOKE ELECTROMECHANICAL EQUIP CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEBEI BOKE ELECTROMECHANICAL EQUIP CO LTD
Filing Date
2025-06-23
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing hydraulic station rain cover plates cannot simultaneously meet the lifting requirements and waterproof and rainproof effects of export products due to different hoisting methods.

Method used

A rainproof hydraulic station box was designed, which adopts a detachable rain cover plate with avoidance holes and water baffles. Water guide grooves are opened around the perimeter, and multiple boxes are connected into an integral structure through connectors to ensure that the lifting function and waterproof effect are taken into account.

Benefits of technology

The rain cover can be detached and installed to meet hoisting requirements, while also enhancing waterproof and rainproof capabilities. It is suitable for hydraulic station products with different hoisting methods, especially export products.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224283106U_ABST
    Figure CN224283106U_ABST
Patent Text Reader

Abstract

This utility model relates to the field of hydraulic station housing technology, and provides a rainproof hydraulic station housing, which includes a plurality of lifting rings on the top surface of the housing; a rain cover plate is detachably installed on the top surface of the housing, and the rain cover plate has a plurality of clearance holes adapted to the size of the lifting rings, with each clearance hole corresponding to one of the lifting rings, and each clearance hole is surrounded by a water baffle plate, and the rain cover plate is surrounded by water guide grooves. In this design, the top surface of the housing is provided with welded lifting rings that meet export requirements, the rain cover plate is detachably installed with adapted clearance holes, the exposed lifting rings are suitable for lifting, and the lifting rings can seal the clearance holes to prevent rainwater from seeping in. The water baffle plates around the clearance holes prevent water from entering through gaps, and the water guide grooves around the cover plate accelerate drainage, reducing the possibility of rainwater entering through gaps. Its detachable design facilitates installation and maintenance, and the combined structure combines waterproofing and lifting, making it suitable for export products.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The embodiments of this utility model relate to the field of hydraulic station housing technology, specifically, to a rainproof hydraulic station housing. Background Technology

[0002] Existing hydraulic disc brake power units mainly consist of a frame and other hydraulic components. Most frames have a welded square tube top, meaning the square tubes are spliced ​​and welded together, and are equipped with a rain cover. Currently, there are two types of rain covers: the first is an embedded rain cover, which is embedded within the top rectangular square tube frame and installed with bolts at the four corners. This type is mostly used in hydraulic power unit frames with welded lifting ring structures for hoisting. This type of rain cover has gaps between the cover and the frame square tubes, resulting in poor waterproofing and rainproofing.

[0003] The second type has downward-folded edges around the rain cover, forming a surrounding rectangular tube frame at the top. It is often used for hydraulic station frames that use ring screws for hoisting. This type of rain cover has a significant waterproof and rainproof effect on the top, but because the hoisting is done with ring screws, it cannot meet the hoisting requirements of export products (which require the use of welded lifting rings). Utility Model Content

[0004] To overcome the above-mentioned defects, the embodiments of this utility model provide a rainproof hydraulic station box, which solves the technical problem that the enclosed rain cover plate in the related technology cannot meet the hoisting requirements of export products (which require the use of welded lifting rings for hoisting) because the hoisting is done by ring screws.

[0005] According to one aspect, at least one embodiment of the present invention provides a rainproof hydraulic station housing, comprising:

[0006] The box body has several lifting rings on its top surface;

[0007] A rain cover is detachably installed on the top surface of the box. The rain cover has several clearance holes adapted to the size of the lifting rings. Each clearance hole corresponds to one of the lifting rings, and each clearance hole is surrounded by a water baffle.

[0008] The rain cover is provided with water guide grooves around its perimeter.

[0009] For example, at least one embodiment of this utility model provides a rainproof hydraulic station housing, wherein there are four lifting rings arranged in a matrix, and each of the water guide channels has a drain outlet at both ends.

[0010] For example, at least one embodiment of this utility model provides a rainproof hydraulic station housing, wherein the width direction of the housing is a first direction, there are at least two housings, and a plurality of housings are arranged at intervals along the first direction, with a gap formed between adjacent housings. The rainproof hydraulic station housing further includes:

[0011] A connector is provided, with each side of the connector corresponding to one of the two rain cover plates. The connector is located within the interval and can connect two adjacent boxes.

[0012] For example, at least one embodiment of this utility model provides a rainproof hydraulic station box, wherein the length direction of the box is a second direction, the connecting member is arranged along the second direction, the rain cover has L-shaped water guide plates around its perimeter, each of the L-shaped water guide plates has a water guide groove, and the two sides of the connecting member are respectively connected to two L-shaped water guide plates one by one.

[0013] For example, at least one embodiment of this utility model provides a rainproof hydraulic station housing, wherein the vertical end of the L-shaped water guide plate located within the interval has a U-shaped reinforcing connecting strip, the U-shaped reinforcing connecting strip is arranged horizontally, and two adjacent U-shaped reinforcing connecting strips are symmetrically arranged, and the connecting member includes:

[0014] The U-shaped water guiding connecting strip has its two ends respectively embedded in the two U-shaped reinforcing connecting strips, so that the water in the water guiding channel can overflow into the U-shaped water guiding connecting strip.

[0015] For example, at least one embodiment of this utility model provides a rainproof hydraulic station housing, wherein the top surface of the U-shaped reinforcing connecting strip is an inclined water guiding surface, and the height of the inclined water guiding surface gradually decreases away from the corresponding L-shaped water guiding plate.

[0016] For example, at least one embodiment of this utility model provides a rainproof hydraulic station housing, wherein the U-shaped water guide connecting strip is arranged vertically, and the connecting member further includes:

[0017] A strip-shaped water-blocking cover is installed above the U-shaped water-guiding connecting strip, and the two sides of the strip-shaped water-blocking cover are respectively inserted into the two inclined water-guiding surfaces. The strip-shaped water-blocking cover can block external water from flowing into the U-shaped water-guiding connecting strip and guide external water into the water-guiding channel.

[0018] For example, at least one embodiment of this utility model provides a rainproof hydraulic station housing, wherein water guide strip holes are provided on both sides of the strip-shaped water baffle, and the bottom surface of the water guide strip holes is coplanar with the inclined water guide surface, so that the water flow in the water guide groove can overflow into the U-shaped water guide connecting strip through the water guide strip holes.

[0019] For example, at least one embodiment of this utility model provides a rainproof hydraulic station housing, wherein the inclined water guiding surface has a high end, and the two sides of the strip-shaped water baffle are respectively inserted into the two high ends, so that the strip-shaped water baffle can guide external water flow into the water guiding channel, and the two sides of the strip-shaped water baffle are respectively inserted into the U-shaped reinforcing connecting strip to fit the end of the U-shaped water guiding connecting strip and the outer wall of the L-shaped water guiding plate.

[0020] The beneficial effects of the embodiments of this utility model are as follows:

[0021] This rainproof hydraulic station housing features a removable, integrated rain cover on the top surface, preventing water ingress or seepage during rain and protecting the hydraulic station. Welded lifting rings, compliant with export-grade requirements, are positioned on the top surface of the housing. The integrated rain cover can be detachably installed through clearance holes, ensuring that the welded lifting rings, meeting export-grade requirements, remain visible even after assembly. The appropriately sized welded lifting rings, through the clearance holes, effectively seal the housing and prevent rainwater from seeping in.

[0022] Furthermore, water baffles are installed around each clearance hole to effectively prevent rainwater from entering the housing through the gap between the clearance hole and the lifting ring. At the same time, water guide channels are opened around the rain cover. When rainwater falls on the rain cover, it will be quickly discharged through the water guide channels, further enhancing the rainproof capability. Compared with the first type of rain cover, it greatly reduces the possibility of rainwater entering the hydraulic station from all sides along the gaps in the hydraulic station door panel, and greatly improves the waterproof and rainproof effect.

[0023] This rainproof hydraulic station housing features a detachable rain cover, facilitating installation and maintenance. Furthermore, the combined design of the clearance hole, water baffle, and water guide channel solves the waterproofing problem without affecting the lifting function. It simultaneously meets the dual requirements of rain protection and specific lifting methods, making it more widely applicable, especially suitable for export-oriented hydraulic station products with strict requirements for rain protection and lifting methods. Attached Figure Description

[0024] To more clearly illustrate the technical solutions in the embodiments of this utility model, the accompanying drawings used in the description of the embodiments of this utility model will be briefly introduced below. Obviously, the drawings described below are merely some exemplary embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the content of the exemplary embodiments of this utility model and these drawings without any creative effort.

[0025] Figure 1 This is a schematic diagram of the structure of the box in one embodiment of the present invention;

[0026] Figure 2 for Figure 1 A schematic diagram of the structure of the rain cover in the embodiment;

[0027] Figure 3 for Figure 2 Enlarged view of section A in the middle;

[0028] Figure 4 This is a diagram showing the fit between two boxes in yet another embodiment of this disclosure;

[0029] Figure 5 for Figure 4 A magnified view of a portion of the image;

[0030] Figure 6 for Figure 4 Enlarged view of section B;

[0031] Figure 7 for Figure 5 Enlarged view of section C;

[0032] Figure 8 for Figure 4 A cross-sectional view of the connector in the embodiment;

[0033] Figure 9 for Figure 4 A schematic diagram of the connector structure in the embodiment;

[0034] Figure 10 for Figure 4 A partial enlarged view of the connector in the embodiment.

[0035] In the diagram: 1. Box body; 101. Lifting ring; 2. Rain cover; 201. Clearance hole; 202. Water baffle; 203. Water guide channel; 204. Drain outlet; 205. L-shaped water guide plate; 3. Spacing; 4. Connector; 401. U-shaped reinforcing connecting strip; 4011. Inclined water guide surface; 4012. High end; 402. U-shaped water guide connecting strip; 403. Strip-shaped water baffle; 4031. Water guide strip hole. Detailed Implementation

[0036] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit its scope.

[0037] To keep the drawings concise, each drawing only schematically shows the parts relevant to the disclosure; these do not represent the actual structure of the product. Furthermore, for ease of understanding, in some drawings, only one of components with the same structure or function is schematically shown, or only one is labeled. In this document, "one" not only means "only one," but can also mean "more than one," and "several" includes "two" and "more than two."

[0038] In this document, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal connection between 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.

[0039] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0040] In the description of this embodiment, terms such as "upper," "lower," "left," and "right" are based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of description and simplification of operation, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0041] Furthermore, in the description of this application, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0042] like Figures 1-3As shown, this invention illustrates a rainproof hydraulic station housing 1 according to one embodiment. Four lifting rings 101 are welded to the top surface of the housing 1, arranged in a matrix to form a stable lifting structure. The rain cover 2 is an integral structure; the main body and water guide channel 203 are made of a 2mm thick steel plate, laser-cut and bent, with the four corners welded together, ensuring that the rain cover 2 is integrally formed without splicing. The plate is detachably mounted on the top surface of the housing 1 using bolts, etc. The rain cover 2 has openings for connection with the lifting rings 101. Four clearance holes 201 of the appropriate size are provided, and the four clearance holes 201 correspond one-to-one with the four hanging rings 101. Each clearance hole 201 is provided with a vertical water baffle 202 around its perimeter. The water baffle 202 extends upward perpendicularly to the surface of the rain cover 2 and forms a ring-shaped water-blocking structure with the rain cover 2. Water guide grooves 203 are provided around the perimeter of the rain cover 2. The water guide grooves 203 are provided along the edge of the rain cover 2, and each water guide groove 203 has a drain outlet 204 at both ends for collecting rainwater and guiding it to the drain outlet 204 for discharge.

[0043] First, this solution features a welded lifting ring 101 on the top surface of the housing 1, replacing the ring screws used in the existing second type of rain cover. This structure meets the requirements of export products for lifting methods. Second, an obstacle hole 201 is provided to achieve compatibility between the lifting function and the cover plate installation. An obstacle hole 201 with a size matching the lifting ring 101 is provided on the rain cover plate 2. When the rain cover plate 2 is installed on the top surface of the housing 1, the lifting ring 101 can pass through the obstacle hole 201 and protrude, preventing additional gaps that would allow rainwater to seep in. Furthermore, a water baffle 202 and a water guide trough 203 are provided to solve the water retention problem. The water guide trough 203 around the rain cover plate 2 can collect rainwater falling on the cover plate and quickly discharge it through the drain outlets 204 at both ends, further enhancing the rainproof capability. This solves the defect that the rain cover cannot be applied to export products due to the lifting method, achieving the dual satisfaction of waterproofing and lifting functions.

[0044] like Figures 4-5 As shown, in the actual use of the container 1, multiple containers 1 are usually arranged and used in combination at intervals 3. Due to the high requirements for structural stability and waterproof integrity, the individual structure of the container 1 (rain cover 2 and water channel 203, etc.) still needs to be improved. Therefore, a connector 4 is added between adjacent containers 1 to connect multiple containers 1 into a unified structure, so as to avoid the independent support structure of a single container 1 from failing to form an overall load-bearing system, and to prevent rainwater from seeping into the interior of the container 1 from the interval 3. The connector 4 can simultaneously undertake the connection structure and water guiding function, ensuring the waterproof integrity of the multi-container 1 system.

[0045] Specifically, at least two boxes 1 are arranged at intervals along their width direction (first direction). Connectors 4 for connecting the two boxes are arranged within the interval 3 between adjacent boxes 1. T-shaped elastic plug-in connectors 4 can be used. These connectors 4 have a T-shaped metal frame as their main body, with elastic claws made of stainless steel spring sheets at both ends of the transverse section. The longitudinal section extends vertically downwards and has a strip-shaped water guide channel 203. During connection, the transverse section of the T-shaped frame is plugged into the U-shaped groove on the edge of the rain cover 2 through the elastic claws. The inner wall of the groove has a waterproof rubber strip... It forms a seal; the longitudinal section of the water guide channel 203 is connected to the cover plate water guide channel 203, and the bottom inclined slope is connected to the flexible water guide pipe to guide rainwater; a magnetic connector 4 can also be adopted, which is divided into upper and lower layers. The upper layer is a permanent magnet frame with a waterproof adhesive layer on the surface, and the lower layer is a water guide plastic module with a built-in siphon pipe. When connected, it is attracted to the metal edge of the rain cover plate 2 by the permanent magnet. The cross-shaped water guide channel 203 of the water guide module is connected to the cover plate water guide channel 203 through the siphon pipe. The pipe has a built-in float valve, which automatically opens to drain when the rainwater exceeds the threshold.

[0046] For connector 4, such as Figures 6-10 As shown, preferably, firstly, an integral or welded L-shaped water guide plate 205 is used around the rain cover 2 to form a water guide channel 203, and a connector 4 is installed (e.g., bolted or welded) on one side of the vertical end of the L-shaped water guide plate 205 at interval 3. The two vertical ends are respectively installed on the two sides of the connector 4 to form a rigid connection frame. The horizontal section of the L-shaped water guide plate 205 is flush with the bottom surface of the rain cover 2, and the vertical end extends vertically upward to form the side wall of the water guide channel 203. The U-shaped reinforcing connecting strip 401 at interval 3 forms an "I" shaped cross section with the L-shaped water guide plate 205 to enhance the bending strength of the edge of the rain cover 2 and prevent water from accumulating in the middle of the rain cover 2 due to the increased span when multiple boxes 1 are combined.

[0047] Furthermore, a horizontal U-shaped reinforcing connecting strip 401, constituting the connecting component 4, is provided at the vertical end of the L-shaped water guide plate 205 within interval 3. Its opening is away from the center of interval 3, and adjacent U-shaped reinforcing connecting strips 401 are symmetrically distributed. The top surface of the U-shaped reinforcing connecting strip 401 is an inclined water guiding surface 4011, with its height decreasing towards the center of interval 3. This facilitates guiding water overflowing from the water guide channel 203 to the U-shaped water guiding connecting strip 402. The water guide channel 203 and the U-shaped water guiding connecting strip 402 form a three-dimensional water guiding network: a single-box 1 water guide channel. 203 drains water quickly through the drain outlet 204. Excess rainwater flows into the U-shaped water-guiding connecting strip 402 through the water guide strip hole 4031 and drains to the ground along the vertical channel, preventing water accumulation at interval 3 or seepage into the box 1 from interval 3. Specifically, the U-shaped water-guiding connecting strip 402 is vertically arranged, with both ends completely embedded in the grooves of two adjacent U-shaped reinforcing connecting strips 401 (i.e., the ends of the U-shaped water-guiding connecting strip 402 are completely fitted with the grooves of the U-shaped reinforcing connecting strip 401 to ensure stable engagement), forming a continuous water guiding channel. When the water flow in the water guide channel 203 exceeds the drainage capacity of the drain outlet 204, it can overflow to below interval 3 through the U-shaped water-guiding connecting strip 402 to prevent water accumulation. The U-shaped water-guiding connecting strip 402 is preferably made of a flexible material, such as rubber, for easy disassembly and maintenance.

[0048] It is worth mentioning that, to ensure the normal functioning of the U-shaped water-guiding connector 402, if it and the water-guiding channel 203 could simultaneously receive water flow, the above-mentioned function could not be achieved. Therefore, a strip-shaped water-blocking cover 403 is installed above the U-shaped water-guiding connector 402 to provide a shielding effect. When external rainwater hits the water-blocking cover, it can flow along its outer surface into the water-guiding channels 203 on both sides, instead of directly entering the gap 3, thus maximizing the function of the water-guiding channels 203. Specifically, inclined water-guiding surfaces 4011 are inserted into both sides of the strip-shaped water-blocking cover 403. Preferably, the highest end 4012 of the inclined water-guiding surface 4011 is inserted to prevent the blocked external rainwater from being diverted. During the process of guiding the water to the water guide channel 203, the water comes into contact with the inclined water guide surface 4011 except for the highest point 4012. This causes water to accumulate at the installation connection between the strip baffle 403 and the inclined water guide surface 4011, or it may flow directly into the U-shaped water guide connecting strip 402 through the water guide strip hole 4031 on its side, thus failing to achieve the above function. In addition, the bottom surface of the water guide strip hole 4031 opened on both sides of the strip baffle 403 is coplanar with the inclined water guide surface 4011, ensuring that after the water overflows from the water guide channel 203, it can flow into the U-shaped water guide connecting strip 402 through the water guide strip hole 4031, avoiding being blocked by the strip baffle 403.

[0049] The multi-layer waterproof design of the strip-shaped water-blocking cover 403 and the inclined water-guiding surface 4011 is adopted. The strip-shaped water-blocking cover 403 is placed above the U-shaped water-guiding connecting strip 402. Its inclined structure can guide external rainwater to the water-guiding channels 203 on both sides. With the silicone rubber waterproof strip at the junction of the U-shaped reinforcing connecting strip 401 and the water-guiding connecting strip, a double sealing barrier is formed. In addition, multiple boxes 1 can be arbitrarily combined by adding or removing connecting parts 4 to meet the modular integration requirements of large hydraulic stations.

[0050] To further improve the installation stability of the strip-shaped water-blocking cover 403, and to enhance the overall structural stability of the connector 4, such as... Figures 8-10 As shown, specifically, the strip-shaped water-blocking cover 403 has arc-shaped insertion parts on both sides that match the inner groove of the U-shaped reinforcing connecting strip 401. When inserted into the U-shaped reinforcing connecting strip 401, the insertion parts on both sides are inserted along the high-end slot 4012 of the inclined water-guiding surface 4011, so that the inner edge of the arc-shaped insertion part is tightly attached to the outer wall of the end of the U-shaped water-guiding connecting strip 402, and the outer edge is attached to the outer wall of the vertical end of the L-shaped water-guiding plate 205, forming a multi-faceted enclosed sealing structure that fills the entire inner groove of the U-shaped reinforcing connecting strip 401. This structure forms multiple waterproof barriers through the tight fit between the insertion part and the slot, reducing the water seepage rate. The insertion connection makes the strip-shaped water-blocking cover 403, the U-shaped reinforcing connecting strip 401, and the L-shaped water-guiding plate 205 form a triangular support, improving the bending strength and making the entire connector 4 structure more stable.

[0051] It should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.

Claims

1. A rainproof hydraulic station housing, characterized in that, include: Box (1), the top surface of which has a plurality of lifting rings (101); Rain cover (2), the rain cover (2) is detachably installed on the top surface of the box (1), the rain cover (2) has a plurality of clearance holes (201) adapted to the size of the lifting ring (101), the plurality of clearance holes (201) correspond one to one of the plurality of lifting rings (101), and each clearance hole (201) is provided with a water baffle (202) around it. The rain cover (2) is provided with water guide grooves (203) around its perimeter.

2. The rainproof hydraulic station housing according to claim 1, characterized in that, There are four lifting rings (101), which are arranged in a matrix, and each of the water guide channels (203) has a drain outlet (204) at both ends.

3. The rainproof hydraulic station housing according to claim 1, characterized in that, The width direction of the housing (1) is the first direction, and there are at least two housings (1). Several housings (1) are arranged at intervals along the first direction, and a gap (3) is formed between two adjacent housings (1). The rainproof hydraulic station housing also includes: Connector (4), the two sides of the connector (4) are respectively connected to the two rain cover plates (2), the connector (4) is located in the interval (3) and can connect the two adjacent boxes (1).

4. The rainproof hydraulic station housing according to claim 3, characterized in that, The length direction of the box (1) is the second direction, the connector (4) is arranged along the second direction, the rain cover (2) has L-shaped water guide plates (205) around its perimeter, each L-shaped water guide plate (205) has a water guide groove (203), and the two sides of the connector (4) are respectively connected to the two L-shaped water guide plates (205).

5. A rainproof hydraulic station housing according to claim 4, characterized in that, The vertical end of the L-shaped water guide plate (205) located within the interval (3) has a U-shaped reinforcing connecting strip (401). The U-shaped reinforcing connecting strip (401) is arranged horizontally, and two adjacent U-shaped reinforcing connecting strips (401) are symmetrically arranged. The connector (4) includes: U-shaped water guiding connecting strip (402), with its two ends respectively embedded in the two U-shaped reinforcing connecting strips (401), so that the water in the water guiding groove (203) can overflow into the U-shaped water guiding connecting strip (402).

6. A rainproof hydraulic station housing according to claim 5, characterized in that, The top surface of the U-shaped reinforcing connecting strip (401) is an inclined water guiding surface (4011), and the height of the inclined water guiding surface (4011) gradually decreases away from the corresponding L-shaped water guiding plate (205).

7. A rainproof hydraulic station housing according to claim 6, characterized in that, The U-shaped water-guiding connecting strip (402) is arranged vertically, and the connector (4) further includes: A strip-shaped water baffle (403) is installed above the U-shaped water guiding connecting strip (402), and the two sides of the strip-shaped water baffle (403) are respectively inserted into the two inclined water guiding surfaces (4011). The strip-shaped water baffle (403) can block the external water flow into the U-shaped water guiding connecting strip (402) and guide the external water flow into the water guiding groove (203).

8. A rainproof hydraulic station housing according to claim 7, characterized in that, The strip-shaped water baffle (403) has water guide holes (4031) on both sides. The bottom surface of the water guide hole (4031) is coplanar with the inclined water guide surface (4011) so that the water flow in the water guide groove (203) can overflow into the U-shaped water guide connecting strip (402) through the water guide hole (4031).

9. A rainproof hydraulic station housing according to claim 7, characterized in that, The inclined water guiding surface (4011) has a high end (4012), and the two sides of the strip-shaped water baffle (403) are respectively inserted into the two high ends (4012) so that the strip-shaped water baffle (403) can guide the external water flow into the water guiding channel (203). The two sides of the strip-shaped water baffle (403) are respectively inserted into the U-shaped reinforcing connecting strip (401) to fit the end of the U-shaped water guiding connecting strip (402) and the outer wall of the L-shaped water guiding plate (205).