Cleaning machine for metal joint machining
By designing an automatic control system that adapts to components and nozzle seats, radial erosion cleaning of metal joints is achieved, and the problems of low cleaning efficiency and unenvironmental protection in the prior art are solved, and the cleaning effect and water resource utilization are improved.
Patent Information
- Application Number
- CN202421738319.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-22
AI Technical Summary
The existing metal joint cleaning methods are inefficient and not environmentally friendly, and it is difficult to achieve radial flushing through manual operation, resulting in poor cleaning results.
A cleaning machine for metal joint processing is designed, using adaptive components. By adapting to the coordination of the pipe and adaptive seat, the opening of the nozzle seat and the opening and breaking of the water flow are automatically controlled to achieve radial flushing.
Improves cleaning efficiency and effect, saves water resources, avoids unnecessary waste, adapts to different types and specifications of metal joints, and improves the flexibility and practicality of the device.
Smart Images

Figure CN222931482U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of metal joint cleaning machines, and more specifically, particularly relates to a cleaning machine for metal joint processing. Background Art
[0002] A metal joint is a common pipe connector that can connect two independent pipes to ensure the stable flow and transportation of the fluid inside. During the processing of metal joints, a large amount of oil stains will remain inside, and it is necessary to clean them to keep the inside clean.
[0003] Currently, when cleaning the inside of metal joints, it is mostly done by manually holding a cleaning nozzle and inserting it into the inside of the metal joint for cleaning. The cleaning water flow cannot radially wash the inner wall of the metal joint, resulting in poor cleaning effect, low cleaning efficiency, and poor practicability. Summary of the Utility Model
[0004] The embodiment of the present disclosure relates to a cleaning machine for metal joint processing. Its adaptation component, when cleaning the metal joint, only needs to sleeve the metal joint outside the adaptation pipe and squeeze the adaptation seat according to the axial length of the metal joint. The cleaning water flow can radially wash the inner wall of the metal joint, with high cleaning efficiency and good cleaning effect. And only the nozzle seat at the top of the adaptation seat will open and spray water, while the nozzle seat at the bottom of the adaptation seat will not open, thus improving the utilization rate of water and avoiding unnecessary waste. The adaptation component can automatically adapt to the axial length of the metal joint to control the on-off of the cleaning water flow, and can adapt to the cleaning of different types and specifications of metal joints, with flexibility, adaptability, and practicability.
[0005] In the first aspect of the present disclosure, a cleaning machine for metal joint processing is provided, including a pipe component. The pipe component includes a mounting plate and a water supply pipe. The mounting plate is fixedly installed on the workbench, and the water supply pipe is fixedly installed inside the mounting plate. It also includes an adaptation component, which consists of a control mechanism and a nozzle seat;
[0006] The control mechanism includes an adaptation pipe and an adaptation seat. The adaptation pipe is fixedly installed on the top of the water supply pipe, and the top of the adaptation pipe is in a blocked state. The adaptation seat is inserted outside the adaptation pipe;
[0007] The nozzle seat is radially inserted inside the adaptation pipe, and several nozzle seats are arranged along the axial direction outside the adaptation pipe.
[0008] In at least some embodiments, a limiting groove is provided outside the adaptation pipe, and a limiting block is provided inside the adaptation seat. The limiting block is inserted inside the limiting groove.
[0009] In at least some embodiments, a return spring is provided at the bottom of the adaptable seat, and two ends of the return spring are respectively against the bottom of the adaptable seat and the top of the mounting plate.
[0010] In at least some embodiments, a sealing top spring is provided on the side of the nozzle seat, and two ends of the sealing top spring are respectively against the inside of the nozzle seat and the inside of the adaptation pipe.
[0011] In at least some embodiments, a resistance block is provided at the bottom of the nozzle seat, and the resistance block extends out to accommodate the interior of the pipe.
[0012] In at least some embodiments, a water flow channel is provided inside the adaptive pipe, and a cleaning channel is provided inside the nozzle seat. Under the action of the reset top spring, when the resistance block is not resisted or squeezed by external force, the cleaning channel is blocked by the inner wall of the adaptive pipe.
[0013] In at least some embodiments, a synchronization shift block is provided at the top of the nozzle seat, and a synchronization shift groove is provided at the bottom of the nozzle seat, the groove length of the synchronization shift groove is greater than the block length of the synchronization shift block, the synchronization shift block is inserted into the synchronization shift groove of the top adjacent nozzle seat, and when the resistance block is not subjected to resistance or extrusion by external force, the synchronization shift block is located on the inner side of the synchronization shift groove.
[0014] Compared with the prior art, the utility model has the following beneficial effects:
[0015] When the adaptive component is used to clean the metal joint, it only needs to put the metal joint into the outside of the adaptive pipe and squeeze the adaptive seat according to the axial length of the metal joint. The cleaning water flow can radially flush the inner wall of the metal joint, with high cleaning efficiency and good cleaning effect. Only the nozzle seat at the top of the adaptive seat will open and spray water, while the nozzle seat at the bottom of the adaptive seat will not open, thereby improving the utilization rate of the water body and avoiding unnecessary waste. The adaptive component can automatically adapt to the axial length of the metal joint to control the on-off of the cleaning water flow, and can adapt to the cleaning use of metal joints of different types and specifications, thereby improving the flexibility, adaptability and practicality of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a structural schematic diagram of the utility model.
[0017] Figure 2 It is a schematic diagram of the internal structure of the utility model.
[0018] Figure 3 It is a structural schematic diagram of the utility model after the pipeline assembly and the control mechanism are disassembled.
[0019] Figure 4 It is a structural schematic diagram of the nozzle seat of the utility model.
[0020] Figure 5It is a schematic internal structure diagram when the inner wall of the metal joint is cleaned by the present utility model.
[0021] Figure 6 It is the present utility model Figure 2 The enlarged schematic structure diagram of part A in it.
[0022] Figure 7 It is the present utility model Figure 5 The enlarged schematic structure diagram of part B in it.
[0023] In the figure, the corresponding relationship between the component names and the drawing reference numbers is as follows:
[0024] 1. Pipe assembly; 101. Mounting plate; 102. Water supply pipe;
[0025] 2. Control mechanism; 201. Adaptation pipe; 2011. Limit groove; 2012. Water flow channel; 202. Adaptation seat; 2021. Limit block; 2022. Reset top spring;
[0026] 3. Nozzle seat; 301. Plugging top spring; 302. Contact block; 303. Cleaning channel; 304. Synchronous dial block; 305. Synchronous dial groove. Specific implementation mode
[0027] The following further describes in detail the implementation mode of the present utility model in conjunction with the drawings and embodiments.
[0028] As Figures 1 to 7 shown:
[0029] Embodiment 1: This embodiment provides a cleaning machine for metal joint processing, including a pipe assembly 1. The pipe assembly 1 includes a mounting plate 101 and a water supply pipe 102. The mounting plate 101 is fixedly installed on the workbench, and the water supply pipe 102 is fixedly installed inside the mounting plate 101; it also includes an adaptation assembly, and the adaptation assembly is composed of a control mechanism 2 and a nozzle seat 3;
[0030] The control mechanism 2 includes an adaptation pipe 201 and an adaptation seat 202. The adaptation pipe 201 is fixedly installed on the top of the water supply pipe 102, and the top of the adaptation pipe 201 is in a plugged state. The adaptation seat 202 is inserted outside the adaptation pipe 201;
[0031] The nozzle seat 3 is radially inserted inside the adaptation pipe 201, and a plurality of nozzle seats 3 are arranged along the axial direction outside the adaptation pipe 201.
[0032] In an embodiment of the present disclosure, a reset top spring 2022 is provided at the bottom of the adaptor seat 202, and both ends of the reset top spring 2022 respectively abut against the bottom of the adaptor seat 202 and the top of the mounting plate 101. During use, when the adaptor seat 202 is not externally pressed or abutted, it is located at the top of the adaptor pipe 201 under the action of the reset top spring 2022, and all the nozzle seats 3 are located at the bottom of the adaptor seat 202. A sealing top spring 301 is provided on the side of the nozzle seat 3, and both ends of the sealing top spring 301 respectively abut against the inside of the nozzle seat 3 and the inside of the adaptor pipe 201. A water flow channel 2012 is provided inside the adaptor pipe 201, and a cleaning channel 303 is provided inside the nozzle seat 3. Under the action of the reset top spring 2022, when the abutting block 302 is not externally abutted or pressed, the cleaning channel 303 is blocked by the inner wall of the adaptor pipe 201. Under the action of the reset top spring 2022, the cleaning channel 303 is blocked by the inner wall of the adaptor pipe 201 and remains in a closed state, avoiding leakage and waste of the cleaning water flow, and ensuring stable use.
[0033] In an embodiment of the present disclosure, an abutting block 302 is provided at the bottom of the nozzle seat 3, and the abutting block 302 extends out of the inside of the adaptor pipe 201. During use, when it is necessary to clean the inner wall of the metal joint, only need to sleeved the metal joint outside the adaptor pipe 201 and press the adaptor seat 202 downward. When the metal joint presses and abuts the adaptor seat 202, it will drive the adaptor seat 202 to move downward. When the adaptor seat 202 moves downward, its inner wall will press and abut the abutting block 302. After the abutting block 302 is pressed and abutted, it will drive the nozzle seat 3 to move inward and compress the sealing top spring 301. After the nozzle seat 3 moves inward, the cleaning channel 303 is no longer blocked by the inner wall of the adaptor pipe 201. Thus, thereafter, the water flow can enter the inside of the cleaning channel 303 through the water supply pipe 102 and the water flow channel 2012 and spray out, realizing the cleaning operation of the inner wall of the metal joint. The water flow spraying direction is the radial direction of the metal joint, with good cleaning effect and high cleaning efficiency.
[0034] In the disclosed embodiment, a synchronous shift block 304 is provided at the top of the nozzle seat 3, and a synchronous shift groove 305 is provided at the bottom of the nozzle seat 3. The groove length of the synchronous shift groove 305 is greater than the block length of the synchronous shift block 304. The synchronous shift block 304 is inserted into the synchronous shift groove 305 of the top adjacent nozzle seat 3, and when the resistance block 302 is not subjected to external resistance or extrusion, the synchronous shift block 304 is located on the inner side of the synchronous shift groove 305. During use, the degree of extrusion of the adaptation seat 202 by the metal joint (i.e., the downward movement distance of the adaptation seat 202) is artificially controlled according to the axial length of the metal joint. Only the nozzle seat 3 located at the top of the adaptation seat 202 will be in the open state, so that the inner wall of the metal joint can be fully cleaned. During operation, as the adaptable seat 202 moves downward, the adaptable seat 202 will squeeze the nozzle seats 3 at the corresponding positions downward in turn, and the synchronous shifting block 304 of the nozzle seat 3 opened by the adaptable seat 202 contacting the contact block 302 can drive the top adjacent nozzle seat 3 to be opened synchronously through the synchronous shifting groove 305 of the adjacent nozzle seat 3 at the top of the nozzle seat 3, that is, all the nozzle seats 3 located on the top of the nozzle seat 3 opened by the adaptable seat 202 contacting the contact block 302 will be in the opened state, and the synchronous shifting groove 305 of the nozzle seat 3 opened by the adaptable seat 202 contacting the contact block 302 can avoid the synchronous shifting block 304 of the bottom adjacent nozzle seat 3, so that the bottom nozzle seat 3 is still in the closed state, which is stable to use.
[0035] The specific usage and function of this embodiment are as follows:
[0036] In the present utility model, when the adaptor seat 202 is not externally pressed and abutted, it is located at the top of the adaptor pipe 201 under the action of the reset top spring 2022, and all the nozzle seats 3 are located at the bottom of the adaptor seat 202. At this time, under the action of the reset top spring 2022, the cleaning channel 303 is blocked by the inner wall of the adaptor pipe 201 and remains in a closed state, avoiding leakage and waste of the cleaning water flow. When it is necessary to clean the inner wall of the metal joint, only need to sleave the metal joint outside the adaptor pipe 201 and press and extrude the adaptor seat 202 downward. When the metal joint presses and extrudes the adaptor seat 202, it will drive the adaptor seat 202 to move downward. When the adaptor seat 202 moves downward, its inner wall will press and extrude the abutting block 302. After the abutting block 302 is pressed and abutted, it will drive the nozzle seat 3 to move inward and compress the sealing top spring 301. After the nozzle seat 3 moves inward, the cleaning channel 303 is no longer blocked by the inner wall of the adaptor pipe 201. Thus, the water flow can then enter the inside of the cleaning channel 303 through the water supply pipe 102 and the water flow channel 2012 and spray out, realizing the cleaning operation of the inner wall of the metal joint. The water flow spraying direction is the radial direction of the metal joint, with good cleaning effect and high cleaning efficiency. According to the axial length of the metal joint, manually adjust the extrusion degree of the adaptor seat 202 by the metal joint (i.e., the downward movement distance of the adaptor seat 202). Only the nozzle seats 3 located at the top of the adaptor seat 202 will be in an open state, so as to comprehensively clean the inner wall of the metal joint. Along with the downward movement of the adaptor seat 202, the adaptor seat 202 will sequentially press the corresponding nozzle seats 3 downward. The synchronous block 304 of the nozzle seat 3 opened by being pressed and abutted by the adaptor seat 202 can drive the adjacent nozzle seat 3 at the top to open synchronously through the synchronous slot 305 of the adjacent nozzle seat 3 at the top of this nozzle seat 3, that is, all the nozzle seats 3 located at the top of the nozzle seat 3 opened by being pressed and abutted by the adaptor seat 202 will be in an open state, and the synchronous slot 305 of the nozzle seat 3 opened by being pressed and abutted by the adaptor seat 202 can avoid the synchronous block 304 of the adjacent nozzle seat 3 at the bottom, so that the bottom nozzle seat 3 remains in a closed state.
[0037] In another embodiment, a limiting groove 2011 is provided on the outside of the adaptor pipe 201, and a limiting block 2021 is provided inside the adaptor seat 202. The limiting block 2021 is inserted into the limiting groove 2011. This design can limit the movement track of the adaptor seat 202, so that the adaptor seat 202 will not be skewed, distorted or disengaged from the adaptor pipe 201 during movement, and the use is stable.
[0038] In this article, the following points need to be noted:
[0039] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure. Other structures can refer to the general design.
[0040] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments may be combined with each other to obtain new embodiments.
[0041] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure shall be subject to the protection scope of the claims.
Claims
1. A cleaning machine for metal joint processing, comprising: A pipeline assembly (1), the pipeline assembly (1) comprising a mounting plate (101) and a water supply pipe (102), the mounting plate (101) being fixedly mounted on a workbench, and the water supply pipe (102) being fixedly mounted inside the mounting plate (101); characterized in that: it also comprises an adaption assembly, the adaption assembly comprising a control mechanism (2) and a nozzle seat (3); The control mechanism (2) comprises an adaptable pipe (201) and an adaptable seat (202); the adaptable pipe (201) is fixedly installed on the top of the water supply pipe (102), and the top of the adaptable pipe (201) is in a blocked state; the adaptable seat (202) is plugged onto the outside of the adaptable pipe (201); The nozzle seat (3) is radially inserted into the interior of the adaptable pipe (201), and a plurality of nozzle seats (3) are arranged along the axial direction outside the adaptable pipe (201).
2. The metal joint processing cleaning machine according to claim 1, characterized in that: The adaptable pipe (201) is provided with a limiting groove (2011) on the outside, and the adaptable seat (202) is provided with a limiting block (2021) on the inside, and the limiting block (2021) is inserted into the limiting groove (2011).
3. The metal joint processing cleaning machine according to claim 2, characterized in that: A return spring (2022) is provided at the bottom of the adaptable seat (202), and two ends of the return spring (2022) respectively abut against the bottom of the adaptable seat (202) and the top of the mounting plate (101).
4. The metal joint processing cleaning machine according to claim 3, characterized in that: A blocking top spring (301) is provided on the side of the nozzle seat (3), and two ends of the blocking top spring (301) respectively abut against the inside of the nozzle seat (3) and the inside of the adaptation pipe (201).
5. The metal joint processing cleaning machine according to claim 4, characterized in that: A resistance block (302) is provided at the bottom of the nozzle seat (3), and the resistance block (302) extends out into the interior of the adaptation pipe (201).
6. The metal joint processing cleaning machine according to claim 5, characterized in that: The adaptable pipe (201) is provided with a water flow channel (2012) inside, and the nozzle seat (3) is provided with a cleaning channel (303) inside; under the action of the return spring (2022), when the resistance block (302) is not resisted or squeezed by an external force, the cleaning channel (303) is blocked by the inner wall of the adaptable pipe (201).
7. The metal joint processing cleaning machine according to claim 6, characterized in that: The top of the nozzle seat (3) is provided with a synchronous shift block (304), and the bottom of the nozzle seat (3) is provided with a synchronous shift groove (305), the groove length of the synchronous shift groove (305) is greater than the block length of the synchronous shift block (304), the synchronous shift block (304) is inserted into the synchronous shift groove (305) of the top adjacent nozzle seat (3), and when the resistance block (302) is not subjected to resistance or extrusion by external force, the synchronous shift block (304) is located on the inner side of the synchronous shift groove (305).