Metal nut scrap iron cleaning equipment

By designing a metal nut iron filing cleaning equipment with motor drive, the problems of nut accumulation and impurity deposition are solved, and efficient cleaning and convenient recycling are achieved.

CN222999266UActive Publication Date: 2025-06-20CHONGQING JPS TECH CO LTD
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Patent Information

Application Number
CN202421726466.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-06-20
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

During the cleaning process of metal nuts, the nuts are prone to accumulate, resulting in low cleaning efficiency. At the same time, impurities such as iron chips sink into the interior of the cleaning equipment, making the rear end inconvenient to clean.

Method used

A metal nut iron chip cleaning equipment is designed, including a box, cleaning chamber, auxiliary mechanism, etc., which drives the placement barrel and raw materials to rotate back and forth through the motor, combines the cleaning liquid to improve the cleaning efficiency, and passes through the filter to facilitate the recycling of waste chips.

Benefits of technology

It improves the cleaning efficiency of nuts, facilitates the classification and recycling of waste chips and raw materials in the later stage, and simplifies the cleaning process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides metal nut scrap iron cleaning equipment, and relates to the technical field of nuts, the metal nut scrap iron cleaning equipment comprises a box body, the upper end of the box body is provided with a cleaning cavity, an auxiliary mechanism is installed between the box body and the cleaning cavity, a liquid discharge pipe is installed at the lower end in the cleaning cavity in a penetrating mode, and the auxiliary mechanism comprises a motor and a placing barrel. A user pours a plurality of raw materials into the containing barrel, then the air cylinder drives the containing barrel to be immersed into the cleaning cavity, cleaning liquid makes contact with the raw materials along the grooves, and after the containing barrel is connected with the rotating shaft, the motor can drive the containing barrel and the raw materials to rotate back and forth through the rotating shaft; the raw materials are continuously shaken in the containing barrel, so that the overall cleaning efficiency is improved in cooperation with cleaning liquid, then cleaned waste chips can be retained on the surface of the filter screen and can be separated from the interior of the cleaning cavity along with the containing barrel, a user can conveniently and separately clean and recycle the waste chips and the raw materials in the later period, and the cleaning device is simpler and more convenient to use.
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Description

Technical Field

[0001] The utility model relates to the technical field of nut production, and more specifically, to a metal nut iron chip cleaning device. Background Technique

[0002] During the production process of metal nuts, iron chips, oil stains and other impurities often adhere to the nut surface. These impurities not only affect the quality and performance of the nuts, but may also cause obstacles to subsequent use. Therefore, it is often necessary to use a cleaning device to clean the nuts. However, when cleaning the nuts with a cleaning device, the nuts are often directly poured into the interior of the cleaning device, causing the nuts to pile up together, resulting in low cleaning efficiency of the nuts. At the same time, iron chips and the like during the nut cleaning process will sink to the interior of the cleaning device, making it inconvenient to clean the backend. Therefore, we propose a metal nut iron chip cleaning device to solve the above problems. Content of the Utility Model

[0003] The main purpose of the utility model is to provide a metal nut iron chip cleaning device, which solves the problems that when cleaning nuts with a cleaning device, the nuts are often directly poured into the interior of the cleaning device, causing the nuts to pile up together, resulting in low cleaning efficiency of the nuts, and at the same time, iron chips and the like during the nut cleaning process will sink to the interior of the cleaning device, making it inconvenient to clean the backend.

[0004] To achieve the above purpose, the technical solution adopted by the utility model is as follows:

[0005] A metal nut iron chip cleaning device includes a box body. A cleaning cavity is provided at the upper end of the box body. An auxiliary mechanism is installed between the box body and the cleaning cavity. A drain pipe is installed through the lower end inside the cleaning cavity. The auxiliary mechanism includes a motor and a placement bucket. The motor is installed at the lower end of the box body, and the output end of the motor is movably installed inside the cleaning cavity. The placement bucket is movably installed at the upper end inside the cleaning cavity. A connecting rod is installed in the middle of the lower surface of the placement bucket. The connecting rod is snap-fitted with the output end of the motor. A filter screen is snap-fitted on the outside of the connecting rod. A number of grooves are provided through the inside of the placement bucket. A fixing frame is installed at the upper end of the box body. A cylinder is installed at the upper end of the fixing frame. The output end of the cylinder is connected to the placement bucket.

[0006] Preferably, a rotating shaft is installed at the output end of the motor. A snap-fitting block is installed at the upper end of the rotating shaft. A snap-fitting groove is provided at the lower end of the connecting rod. The snap-fitting block is snap-fitted inside the snap-fitting groove.

[0007] Preferably, a movable groove is provided on the outside of the connecting rod. A support frame is movably sleeved inside the movable groove. The outside of the support frame is attached to the inner wall of the cleaning cavity. A filter screen is installed at the upper end of the support frame.

[0008] Preferably, the inner surface of the cleaning chamber is provided with a guide groove, and a plurality of guide blocks are respectively installed on the outer side of the support frame, and the guide blocks are respectively engaged and installed in the inner part of the guide groove.

[0009] Preferably, a support plate is installed at the output end of the cylinder, hooks are installed at both ends of the lower surface of the support plate, a limiting groove is provided at the upper end of the outer side of the placement barrel, and the lower ends of the hooks are respectively engaged and installed inside the limiting grooves.

[0010] Preferably, the limiting groove has inlets penetrating through the front and rear ends thereof, respectively, and the inlets are snap-fittedly connected to the hooks.

[0011] Compared with the prior art, the utility model has the following beneficial effects:

[0012] (1) In the utility model, the user pours a number of raw materials into the placement barrel, and then the cylinder drives the placement barrel to immerse into the interior of the cleaning chamber, so that the cleaning liquid contacts the raw materials along the groove. Then, after the placement barrel is connected to the rotating shaft, the motor can drive the placement barrel and the raw materials to rotate back and forth through the rotating shaft, so that the raw materials are constantly shaking in the placement barrel, thereby cooperating with the cleaning liquid to improve the overall cleaning efficiency. Then, the waste debris washed out will be retained on the surface of the filter screen, so that it can follow the placement barrel out of the interior of the cleaning chamber, which is convenient for the user to clean and recycle the waste debris and raw materials separately in the later stage, which is more convenient.

[0013] (2) In the utility model, the hook and the limit groove cooperate to facilitate the cylinder to control the placement bucket to move up and down, and at the same time will not hinder the motor from driving the placement bucket to rotate. Then the import is used to assist the user to install and disassemble the placement bucket and the hook, so that the user can remove the placement bucket and classify and recycle the raw materials and waste. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a schematic diagram of the overall structure of a metal nut iron chip cleaning device of the utility model;

[0015] Figure 2 This is a front view structural diagram of a metal nut iron chip cleaning device of the utility model;

[0016] Figure 3 This is a side structural schematic diagram of a metal nut iron chip cleaning device of the utility model;

[0017] Figure 4 The utility model is a metal nut iron chips cleaning device Figure 2 Schematic diagram of the cross-section structure at AA in the middle;

[0018] Figure 5For a metal nut iron filings cleaning device of the present utility model Figure 3 Schematic cross-sectional structure diagram at B-B in

[0019] Figure 6 For a metal nut iron filings cleaning device of the present utility model Figure 4 Enlarged structure diagram at C in

[0020] Figure 7 For a metal nut iron filings cleaning device of the present utility model Figure 5 Enlarged structure diagram at D in

[0021] In the figure: 1, box body; 2, cleaning chamber; 3, auxiliary mechanism; 301, motor; 302, rotating shaft; 303, placing bucket; 304, groove; 305, connecting rod; 306, engaging groove; 307, engaging block; 308, support frame; 309, moving groove; 310, filter screen; 311, guiding block; 312, guiding groove; 313, limiting groove; 314, hook; 315, inlet; 316, support plate; 317, fixing frame; 318, cylinder; 4, drain pipe. Specific embodiments

[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0023] As Figures 1 to 7 shown, an embodiment of the present utility model provides a metal nut iron filings cleaning device, which includes a box body 1. A cleaning chamber 2 is provided at the upper end of the box body 1. An auxiliary mechanism 3 is installed between the box body 1 and the cleaning chamber 2. A drain pipe 4 is installed through the lower end inside the cleaning chamber 2. The auxiliary mechanism 3 includes a motor 301 and a placing bucket 303. The motor 301 is installed at the lower end of the box body 1, and the output end of the motor 301 is movably installed inside the cleaning chamber 2. The placing bucket 303 is movably installed at the upper end inside the cleaning chamber 2. A connecting rod 305 is installed in the middle of the lower surface of the placing bucket 303. The connecting rod 305 is engaged and connected to the output end of the motor 301. A filter screen 310 is engaged and installed on the outer side of the connecting rod 305. A plurality of grooves 304 are provided through the inside of the placing bucket 303. A fixing frame 317 is installed at the upper end of the box body 1. A cylinder 318 is installed at the upper end of the fixing frame 317. The output end of the cylinder 318 is connected to the placing bucket 303.

[0024] As Figures 4 to 7As shown in the figure, in another embodiment of the present utility model, a rotating shaft 302 is installed at the output end of the motor 301. A clamping block 307 is installed at the upper end of the rotating shaft 302. A clamping groove 306 is provided at the lower end of the connecting rod 305. The clamping block 307 is clamped and installed inside the clamping groove 306. An activity groove 309 is provided on the outer side of the connecting rod 305. A support frame 308 is movably sleeved and installed inside the activity groove 309. The outer side of the support frame 308 is attached to the inner wall of the cleaning chamber 2. A filter screen 310 is installed at the upper end of the support frame 308. A plurality of guiding grooves 312 are provided on the inner surface of the cleaning chamber 2. A plurality of guiding blocks 311 are respectively installed on the outer side of the support frame 308. The guiding blocks 311 are respectively clamped and installed inside the guiding grooves 312. The output end of the air cylinder 318 is installed with a support plate 316. Hooks 314 are respectively installed at both ends of the lower surface of the support plate 316. A limiting groove 313 is provided at the upper end of the outer side of the placement bucket 303. The lower ends of the hooks 314 are respectively clamped and installed inside the limiting groove 313. Inlets 315 are respectively provided through the front and rear ends inside the limiting groove 313, and a clamping connection is provided between the inlets 315 and the hooks 314.

[0025] The user pours the raw materials into the placement bucket 303, and then the air cylinder 318 drives the placement bucket 303 to move downward through the hooks 314, so that the placement bucket 303 enters the cleaning chamber 2. At the same time, through the cooperation of the guiding grooves 312 and the guiding blocks 311, the movement of the placement bucket 303 and the support frame 308 is assisted, so that the support frame 308 drives the filter screen 310 to enter the cleaning chamber 2. Then, the cleaning liquid inside the cleaning chamber 2 can enter the placement bucket 303 along the groove 304 and contact the raw materials. Then, after the clamping connection between the clamping groove 306 and the clamping block 307 is driven by the placement bucket 303, the air cylinder 318 can stop moving. After the air cylinder 318 stops moving, the motor 301 can drive the rotating shaft 302 to rotate, so that the rotating shaft 302 controls the placement bucket 303 to continuously rotate back and forth through the clamping block 307 and the clamping groove 306, so that the raw materials inside the placement bucket 303 are continuously shaken, increasing the contact area between the raw materials and the cleaning liquid, improving the cleaning efficiency of the raw materials. At the same time, impurities such as waste chips on the surface of the raw materials will enter the cleaning chamber 2 along with the flow of the cleaning liquid. Therefore, when the raw materials are cleaned and the air cylinder 318 pulls the placement bucket 303 to move upward, the placement bucket 303 will drive the filter screen 310 to filter the waste chips and other residues in the cleaning liquid, leaving them on the surface of the filter screen 310, which is convenient for the user to recycle various waste chips in the cleaning liquid and is more convenient;

[0026] Through the cooperation of the guiding blocks 311 and the guiding grooves 312, the movement of the support frame 308 is assisted, and at the same time, it is also used for the limiting work of the support frame 308 to prevent the support frame 308 from driving the filter screen 310 to rotate with the placement bucket 303, so that the filter screen 310 can stably filter the waste chips;

[0027] Through the cooperation of the hook 314 and the limit groove 313, the cylinder 318 can stably drive the placement barrel 303 to move up and down. At the same time, it also assists the motor 301 to drive the placement barrel 303 to rotate, improving the overall stability. Then, the user can install or disassemble between the hook 314 and the limit groove 313 through the inlet 315, which is convenient for the user to remove the placement barrel 303 and is more convenient.

[0028] The working principle of this metal nut iron chip cleaning equipment:

[0029] When in use, first the user pours the raw materials into the interior of the placement barrel 303. Then the cylinder 318 drives the placement barrel 303 to move downward through the hook 314, so that the placement barrel 303 enters the interior of the cleaning chamber 2. At the same time, through the cooperation of the guiding groove 312 and the guiding block 311, it assists the placement barrel 303 and the support frame 308 to move, so that the support frame 308 drives the filter screen 310 to enter the interior of the cleaning chamber 2. Then the cleaning liquid inside the cleaning chamber 2 can enter the interior of the placement barrel 303 along the groove 304 and contact the raw materials. After the placement barrel 303 drives the engagement groove 306 and the engagement block 307 to be engaged and connected, the cylinder 318 can stop moving. After the cylinder 318 stops moving, the motor 301 can drive the rotating shaft 302 to rotate, so that the rotating shaft 302 controls the placement barrel 303 to continuously reciprocate through the engagement block 307 and the engagement groove 306, thereby making the raw materials inside the placement barrel 303 continuously shake, increasing the contact area between the raw materials and the cleaning liquid, and improving the cleaning efficiency of the raw materials. At the same time, waste chips and other impurities on the surface of the raw materials will enter the interior of the cleaning chamber 2 along with the flow of the cleaning liquid. Therefore, when the raw materials are cleaned and the cylinder 318 pulls the placement barrel 303 to move upward, the placement barrel 303 will drive the filter screen 310 to filter the waste chips and other residues in the cleaning liquid, making them stay on the surface of the filter screen 310, which is convenient for the user to recycle various waste chips in the cleaning liquid and is more convenient.

[0030] Obviously, the above embodiments of the present invention are merely examples for clearly illustrating the present invention, rather than limitations on the implementation manners of the present invention. For those of ordinary skill in the art, other different forms of changes or variations can be made based on the above description. It is impossible to enumerate all the implementation manners here. Any obvious changes or variations derived from the technical solutions of the present invention still fall within the protection scope of the present invention.

Claims

1. A metal nut iron chip cleaning device, comprising a housing (1), characterized in that: A cleaning chamber (2) is provided at the upper end of the box (1), an auxiliary mechanism (3) is installed between the box (1) and the cleaning chamber (2), a drain pipe (4) is installed through the lower end of the interior of the cleaning chamber (2), the auxiliary mechanism (3) comprises a motor (301) and a placement bucket (303), the motor (301) is installed at the lower end of the box (1), and the output end of the motor (301) is movably installed inside the cleaning chamber (2), the placement bucket (303) is movably installed at the upper end of the interior of the cleaning chamber (2), and the placement bucket (303) is movably installed at the upper end of the interior of the cleaning chamber (2). A connecting rod (305) is installed in the middle of the lower surface of the barrel (303), the connecting rod (305) is snap-connected with the output end of the motor (301), a filter (310) is snap-connected on the outer side of the connecting rod (305), a plurality of grooves (304) are provided through the interior of the placement barrel (303), a fixing frame (317) is installed at the upper end of the box body (1), a cylinder (318) is installed at the upper end of the fixing frame (317), and the output end of the cylinder (318) is connected to the placement barrel (303).

2. The metal nut iron chip cleaning device according to claim 1, characterized in that: The output end of the motor (301) is mounted with a rotating shaft (302), the upper end of the rotating shaft (302) is mounted with a snap-fit ​​block (307), the lower end of the connecting rod (305) is provided with a snap-fit ​​groove (306), and the snap-fit ​​block (307) is snap-fitted inside the snap-fit ​​groove (306).

3. The metal nut iron chip cleaning device according to claim 1, characterized in that: The outer side of the connecting rod (305) is provided with a movable groove (309), the inner movable sleeve of the movable groove (309) is provided with a support frame (308), the outer side of the support frame (308) is in contact with the inner wall of the cleaning chamber (2), and the upper end of the support frame (308) is provided with a filter screen (310).

4. The metal nut iron chip cleaning device according to claim 3, characterized in that: The inner surface of the cleaning chamber (2) is provided with a guide groove (312), and a plurality of guide blocks (311) are respectively installed on the outer side of the support frame (308), and the guide blocks (311) are respectively mounted in engagement with the inside of the guide groove (312).

5. The metal nut iron chip cleaning device according to claim 1, characterized in that: A support plate (316) is installed at the output end of the cylinder (318), hooks (314) are installed at both ends of the lower surface of the support plate (316), a limiting groove (313) is provided at the upper end of the outer side of the placement barrel (303), and the lower ends of the hooks (314) are respectively engaged and installed inside the limiting grooves (313).

6. The metal nut iron chip cleaning device according to claim 5, characterized in that: The limiting groove (313) has inlets (315) penetrating the front and rear ends thereof, respectively, and the inlets (315) are snap-fitted and connected to the hooks (314).