Movable side opening door type water collector assembly

The water collection tray assembly with a movable side-opening design solves the problem of large space occupation in the existing technology of large-opening door, and realizes convenient operation and safe workpiece handling.

CN223776196UActive Publication Date: 2026-01-09SUZHOU BAOMA NUMERICAL CONTROL EQUIP
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Patent Information

Application Number
CN202423321342.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-09
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing water collection trays require a large operating space due to their up-and-down or left-and-right flip-opening mechanism, resulting in a large distance between processing equipment, occupying a large factory area, and being inconvenient to operate.

Method used

Featuring a movable side-opening door design, the hinged door can move along the guide rail and be fully or partially retracted into the side panel when open, eliminating the force required to overcome gravity when flipping it over and providing convenient operating space.

Benefits of technology

It reduces the space occupied in the factory, facilitates the operation of workpieces by operators or robotic arms, and improves the convenience and safety of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a movable side-opening door type water collector assembly which comprises a base plate and a water collector body. The rear side baffle is located on the rear side of the upper end face of the chassis. The first lateral baffle is arranged on the chassis; the second lateral baffle is arranged on the chassis, and a first containing space is formed in the side face of the second lateral baffle; the movable door comprises a guide rail which is fixed on the chassis and is partially arranged in the first accommodating space in a penetrating manner, and a hinged door of which the upper end part or the lower end part is arranged on the guide rail and can move along the guide rail; when the hinged door is in a closed state, the hinged door is connected with the first lateral baffle, the second lateral baffle and the rear side baffle end to end in pairs; when the hinged door is in the open state, the hinged door is completely or at least partially contained in the first containing space, and a notch is formed between the hinged door and the first lateral baffle. And when the hinged door is opened, the force for overcoming the gravity of the turnover door during turnover is saved, and the operation of an operator is facilitated.
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Description

Technical Field

[0001] This utility model belongs to the field of electrical spark supply equipment, and specifically relates to a mobile side-opening water collection tray assembly. Background Technology

[0002] When using electrical discharge machining (EDM) equipment, the workpiece to be processed needs to be surrounded by a barrier to prevent splashing of the medium, oil or water, and to ensure the safety of the operators. Most existing water collection tray assemblies use a flip-up or flip-down door opening method. This opening method often requires a large operating space for the door to rotate and open, thus requiring a large clearance space, resulting in a large distance between processing equipment and occupying a large factory area. Moreover, the flip-down door opening method is also relatively inconvenient to operate. Summary of the Invention

[0003] The purpose of this invention is to provide a convenient and easy-to-operate mobile side-opening water collection tray assembly.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is: a movable side-opening water collection tray assembly, comprising:

[0005] The chassis has a low frame that extends upwards around it;

[0006] The rear side panel is located within the low frame and on the rear side of the upper surface of the chassis.

[0007] A first lateral baffle is disposed on the chassis and located within the low enclosure;

[0008] The second side baffle is located on the chassis and within the low frame, and a first receiving space is provided on its side.

[0009] A sliding door, comprising a guide rail fixed to the chassis and having a guide rail partially extending through the first accommodating space, and a hinged door having an upper or lower end disposed on the guide rail and capable of moving along the guide rail;

[0010] The hinged door has at least two states: closed and open. When the hinged door is in the closed state, the hinged door is connected end-to-end to the first side baffle, the second side baffle, and the rear side baffle. When the hinged door is in the open state, the hinged door is fully or at least partially housed in the first receiving space, and a gap is formed between the hinged door and the first side baffle.

[0011] In another embodiment, the first lateral baffle is installed on the left side of the chassis, and the second lateral baffle is installed on the right side of the chassis, with the sliding door located at the front of the chassis when closed. Preferably, the first lateral baffle extends from the left side of the chassis to the front of the chassis, and the second lateral baffle extends from the right side of the chassis to the front of the chassis. The connection points of the first and second lateral baffles with the chassis form a triangular connection, making the connection more stable and facilitating the folding of the sliding door.

[0012] In another embodiment, the guide rail includes a front guide rail located on the front side of the chassis, a right guide rail located on the right side of the chassis, and an arc-shaped transition guide rail connecting the front guide rail and the right guide rail, wherein the second lateral baffle extends along the guide rail.

[0013] In another embodiment, a sliding groove is formed on the upper surface of the guide rail, and the hinged door includes a plurality of door units hinged sequentially. Each door unit has a press-fit ball wheel on its lower surface, and the press-fit ball wheel slides along the sliding groove. The press-fit ball wheel makes the sliding of the hinged door and the guide rail smoother.

[0014] In another embodiment, the lower end of the hinged door is provided with several clamping guide wheel assemblies. Each clamping guide wheel assembly includes a clamping plate fixed to the lower end face of the hinged door and extending to both sides of the guide rail, and a lower clamping wheel mounted on the clamping plate and located on both sides of the guide rail. The axis of the lower clamping wheel is perpendicular to the upper end face of the guide rail, and the circumferential surface of the lower clamping wheel is in contact with the side surface of the guide rail. The lower clamping wheels clamp the two sides of the guide rail, making the hinged door connection more stable and providing good guiding function.

[0015] In another embodiment, the guide rail is provided with a plurality of positioning grooves. These positioning grooves are formed on the side of the guide rail or on the side and upper surface of the guide rail. When the lower clamping wheel moves to the position of the positioning groove, a portion of it is located within the positioning groove, and this portion occupies no more than half of the lower clamping wheel. The distribution of the positioning grooves corresponds to the distribution of the lower clamping wheels. When one lower clamping wheel engages in one positioning groove, the other lower clamping wheels also engage in the other positioning grooves respectively. The hinged door can be positioned in different positions as needed and will not easily shift.

[0016] In another embodiment, upper clamping wheels located on both sides of the hinged door are installed on the upper end of the first receiving space of the second lateral baffle. This improves the stability of the hinged door.

[0017] In another embodiment, a clamping frame is mounted on the upper end of the first receiving space of the second lateral baffle. An upper guide wheel is provided on the upper surface of the clamping frame, positioned above the hinged door. The upper clamping wheel is mounted on two side walls of the clamping frame and located on both sides of the hinged door. The upper guide wheel provides smooth movement of the hinged door.

[0018] In another embodiment, a second receiving space is provided on the side of the first lateral baffle, and when the hinged door is closed, a portion of the hinged door is located within the second receiving space, making the hinged door more stably positioned when closed.

[0019] In another embodiment, a guide block is provided on the side of the hinged door facing the second receiving space. When the hinged door is closed, the guide block is engaged within the second receiving space. A first notch for clearance is provided on the first side baffle. A handle is provided on one end of the hinged door near the first side baffle. When the hinged door is closed, the handle is located within the first notch. The guide block facilitates the precise entry of the hinged door into the second receiving space.

[0020] Due to the application of the above technical solution, this utility model has the following advantages compared with the prior art: When the hinged door is opened, the operator or a device such as a robotic arm can operate the processed parts on the chassis through the notch. Most of the hinged door can be stored in the second side baffle. Not only does it not require additional clearance space when opening, but it also only requires a force to push the hinged door to move when opening. Compared with the flip-open door, it saves the force required to overcome the gravity of the flip door when flipping, making it easier for the operator to operate. Attached Figure Description

[0021] Figure 1 This is a perspective view of the present utility model;

[0022] Figure 2 This is the front view of the present invention;

[0023] Figure 3 for Figure 2 Sectional view AA;

[0024] Figure 4 This is a schematic diagram of the sliding door structure. Detailed Implementation

[0025] The present invention will be further described below with reference to the embodiments shown in the accompanying drawings.

[0026] See Figure 1-3 As shown, the movable side-opening water collection tray assembly includes: a chassis 5, a rear baffle 4, a first lateral baffle 3, a second lateral baffle 2, and a movable door 1.

[0027] The chassis 5 has an upwardly extending low frame 51 around its perimeter; the rear baffle 4 is located inside the low frame 51 and on the rear side of the upper surface of the chassis 5; the first lateral baffle 3 is located on the chassis 5 and inside the low frame 51; the second lateral baffle 2 is located on the chassis 5 and inside the low frame 51, and a first accommodating space 20 is provided on its side.

[0028] Specifically:

[0029] See Figure 4 As shown, the movable door 1 includes a guide rail 11 fixed to the chassis 5 and partially passing through the first accommodating space 20, and a hinged door 16 whose upper or lower end is located on the guide rail 11 and can move along the guide rail 11; the hinged door 16 has at least two states: closed and open. When the hinged door 16 is in the closed state, the hinged door 16 is connected end-to-end with the first side baffle 3, the second side baffle 2, and the rear side baffle 4; when the hinged door 16 is in the open state, the hinged door 16 is fully or at least partially housed in the first accommodating space 20, and a gap is formed between the hinged door 16 and the first side baffle 3.

[0030] The first lateral baffle 3 is installed on the left side of the chassis 5, and the second lateral baffle 2 is installed on the right side of the chassis 5. When the sliding door 1 is closed, it is located on the front side of the chassis 5. Preferably, the first lateral baffle 3 extends from the left side of the chassis 5 to the front side of the chassis 5, and the second lateral baffle 2 extends from the right side of the chassis 5 to the front side of the chassis 5. The connection between the first lateral baffle 3 and the second lateral baffle 2 and the chassis 5 forms a triangular connection, which makes the connection more stable and facilitates the storage of the sliding door 1.

[0031] The guide rail 11 includes a front guide rail 12 located on the front side of the chassis 5, a right guide rail 13 located on the right side of the chassis 5, and an arc-shaped transition guide rail 14 connecting the front guide rail 12 and the right guide rail 13. The second lateral baffle 2 extends along the guide rail 11. A sliding groove 15 is formed on the upper end surface of the guide rail 11. The hinged door 16 includes several door units 17 that are hinged laterally in sequence. Each door unit 17 has a press-fit ball wheel 18 on its lower end surface. The press-fit ball wheel 18 slides along the sliding groove 15. The press-fit ball wheel 18 makes the sliding of the hinged door 16 and the guide rail 11 smoother.

[0032] The lower end of the hinge door 16 is provided with several clamping guide wheel assemblies. Each clamping guide wheel assembly includes a clamping plate 19 fixed to the lower end face of the hinge door 16 and extending to both sides of the guide rail 11, and a lower clamping wheel 110 mounted on the clamping plate 19 and located on both sides of the guide rail 11. The axis of the lower clamping wheel 110 is perpendicular to the upper end face of the guide rail 11, and the circumferential surface of the lower clamping wheel 110 is in contact with the side of the guide rail 11. The lower clamping wheels 110 clamp the two sides of the guide rail 11, making the hinge door 16 more securely connected and providing good guiding function.

[0033] The guide rail 11 has several positioning grooves 111 formed on its side or on its side and upper surface. When the lower clamping wheel 110 moves to the position of the positioning groove 111, a portion of it is located within the positioning groove 111, and this portion occupies no more than half of the lower clamping wheel 110. The distribution of the positioning grooves 111 corresponds to the distribution of the lower clamping wheels 110. When one lower clamping wheel 110 is engaged in one of the positioning grooves 111, the other lower clamping wheels 110 are also engaged in the other positioning grooves 111 respectively. The hinged door 16 can be positioned in different positions as needed and will not easily shift.

[0034] Upper clamping wheels 112 located on both sides of the hinge door 16 are installed on the upper end of the first receiving space 20 of the second side baffle 2. This improves the stability of the hinge door 16.

[0035] A clamping frame 113 is installed on the upper end of the first receiving space 20 of the second side baffle 2. An upper guide wheel 114 is provided on the upper end surface of the clamping frame 113, which is located above the hinge door 16. The upper clamping wheels 112 are installed on the two side walls of the clamping frame 113 and are located on both sides of the hinge door 16. The upper guide wheel 114 can provide smooth movement of the hinge door 16.

[0036] A handle 116 is provided on one end of the hinged door 16 near the first lateral baffle 3. The side of the first lateral baffle 3 is provided with a second receiving space 30 and a second notch 32 communicating with the second receiving space 30. When the hinged door 16 is closed, the hinged door 16 is partially located in the second receiving space 30, and the handle 116 is located in the second notch 32. This makes the hinged door 16 more securely positioned when closed.

[0037] A guide block 115 is provided on the side of the hinge door 16 facing the second receiving space 30. When the hinge door 16 is closed, the guide block 115 is engaged in the second receiving space 30, which facilitates the precise entry of the hinge door 16 into the second receiving space 30. A first notch 22 for clearance is provided on the first side baffle. When the hinge door 16 is fully opened, the handle 116 is located in the first notch 22.

[0038] The principle of this utility model is as follows: When the hinged door is opened, the operator or a device such as a robotic arm can operate the processed parts on the chassis 5 through the notch. Most of the hinged door can be stored in the second side baffle 2. Not only does it not require additional clearance space when opening, but it also only requires a force to push the hinged door to move when opening. Compared with a flip-open door, it eliminates the force required to overcome the gravity of the flipped door when flipping, making it easier for the operator to operate.

[0039] The above embodiments are only for illustrating the technical concept and features of this utility model, and are intended to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be construed as limiting the scope of protection of this utility model. All equivalent changes or modifications made in accordance with the spirit and essence of this utility model should be included within the scope of protection of this utility model.

Claims

1. A mobile side opening door type sump assembly, comprising: a base pan having a low perimeter frame extending upward around the periphery thereof; a rear baffle disposed within the low perimeter frame and located at the rear side of the upper end surface of the base pan; a first lateral baffle disposed on the base pan and located within the low perimeter frame; a second lateral baffle disposed on the base pan and located within the low perimeter frame, the second lateral baffle having a first receiving space formed on the side surface thereof; a mobile door comprising a guide rail fixed to the base pan and having a hinge door having an upper end portion or a lower end portion disposed on the guide rail and being movable along the guide rail; the hinge door having at least two states of closing and opening, when the hinge door is in the closing state, the hinge door is connected end to end with the first lateral baffle, the second lateral baffle and the rear baffle, respectively, when the hinge door is in the opening state, the hinge door is wholly or at least partially received in the first receiving space, and a gap is formed between the hinge door and the first lateral baffle.

2. The mobile side-swing door type sump assembly of claim 1, wherein: the first lateral baffle is installed on the left side of the base pan, the second lateral baffle is installed on the right side of the base pan, and the mobile door is located at the front side of the base pan when the mobile door is closed.

3. The mobile side-swing door type sump assembly of claim 2, wherein: the guide rail comprises a front side guide rail disposed on the front side of the base pan, a right side guide rail disposed on the right side of the base pan, and a transition guide rail connected between the front side guide rail and the right side guide rail in an arc shape, and the second lateral baffle extends along the guide rail.

4. The mobile side-swing door type sump assembly of claim 1, wherein: a sliding groove is formed on the upper end surface of the guide rail, the hinge door comprises a plurality of door units connected in sequence, and each door unit is provided with a press-in type ball wheel on the lower end surface thereof, the press-in type ball wheel slides along the sliding groove.

5. The mobile side-swing door type sump assembly of claim 1, wherein: a plurality of clamping guide wheel sets are provided on the lower end portion of the hinge door, each clamping guide wheel set comprises a clamping plate fixed to the lower end surface of the hinge door and extending to both sides of the guide rail, and a lower clamping wheel installed on the clamping plate and located on both sides of the guide rail, the axis of the lower clamping wheel is perpendicular to the upper end surface of the guide rail, and the peripheral surface of the lower clamping wheel is attached to the side surface of the guide rail.

6. The mobile side-swing door type sump assembly of claim 5, wherein: a plurality of positioning grooves are formed on the guide rail, the positioning grooves are formed on the side surface of the guide rail or on the side surface and the upper end surface of the guide rail, when the lower clamping wheel travels to the position of the positioning groove, a part of the lower clamping wheel is located in the positioning groove, and the part occupies no more than half of the lower clamping wheel.

7. The mobile side-swing door type sump assembly of claim 1, wherein: upper clamping wheels are installed on the upper end portion of the first receiving space of the second lateral baffle and located on both sides of the hinge door.

8. The mobile side-swing door type sump assembly of claim 7, wherein: a clamping frame is installed on the upper end portion of the first receiving space of the second lateral baffle, the upper end surface of the clamping frame is provided with upper guide wheels located above the hinge door, and the upper clamping wheels are installed on the two side walls of the clamping frame and located on both sides of the hinge door.

9. The mobile side-swing door type sump assembly of claim 1, wherein: a second receiving space is formed on the side surface of the first lateral baffle, and when the hinge door is closed, the hinge door has a part located in the second receiving space.

10. The mobile side-swing door type sump assembly of claim 9, wherein: The hinge door is provided with a guide block on the side facing the second containing space, the guide block is clamped in the second containing space when the hinge door is closed, a first gap is formed on the first lateral baffle for allowing the guide block to pass through, and a handle is arranged on the end of the hinge door close to the first lateral baffle, the handle is located in the first gap when the hinge door is closed.