Steel ball cleaning device

By adopting a design of high-pressure water flow from upper and lower spray heads and a conveyor belt in the steel ball cleaning device, the problems of water waste and low cleaning efficiency of existing cleaning devices are solved, achieving a fast and efficient steel ball cleaning effect.

CN223946319UActive Publication Date: 2026-02-27XINXIANG WEITU CNC EQUIP CO LTD
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Patent Information

Application Number
CN202423219826.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2026-02-27
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing steel ball cleaning devices suffer from serious water waste, low cleaning efficiency, and poor cleaning results.

Method used

Design a steel ball cleaning device that uses high-pressure water flow from upper and lower spray heads to clean steel balls from all directions, combined with a conveyor belt and screening module to achieve rapid cleaning of steel balls.

Benefits of technology

While reducing water waste, it achieves rapid and efficient cleaning of steel balls, and significantly improves the cleaning effect.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223946319U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of steel ball cleaning, in particular to a steel ball cleaning device which comprises a cleaning support, and a steel ball blanking module, a first cleaning module, a second cleaning module and a screening and discharging module are sequentially arranged on the cleaning support from right to left. The first cleaning module comprises a first cleaning conveying mesh belt, the first cleaning conveying mesh belt is rotationally arranged on a cleaning support, and a first high-pressure water conveying header pipe and a second high-pressure water conveying header pipe are arranged on the front side, close to the first cleaning conveying mesh belt, of the cleaning support. The first high-pressure water conveying header pipe is connected with a plurality of first spraying cleaning pipes, the first spraying cleaning pipes are located above the first cleaning conveying net belt, and a plurality of first spraying heads are vertically and downwards arranged on the first spraying cleaning pipes. According to the steel ball cleaning device, waste of water resources can be reduced, and a good cleaning effect is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to steel ball cleaning technical field, especially a kind of steel ball cleaning device. BACKGROUND

[0002] In the steel ball processing process, the process of steel ball grinding can cause the impurities such as debris, dust on the surface of steel ball, so the steel ball will be cleaned. The existing steel ball cleaning device is mostly manually cleaned, or the steel ball is placed in the cleaning barrel for rubbing, and manual cleaning and mechanical rubbing will waste a lot of water resources, and there are problems of low cleaning efficiency and poor cleaning effect, UTILITY MODEL CONTENT

[0003] The utility model discloses a kind of steel ball cleaning devices, can reduce the waste of water resources, and have good cleaning effect.

[0004] To achieve the above object, the technical scheme of the utility model is as follows:

[0005] A kind of steel ball cleaning device, including cleaning support, steel ball blanking module, first cleaning module, second cleaning module, screening discharge module are sequentially provided on the cleaning support from right to left;

[0006] The first cleaning module includes first cleaning transmission mesh belt, the first cleaning transmission mesh belt is rotationally arranged on the cleaning support, first high-pressure water delivery main pipe and second high-pressure water delivery main pipe are provided on the front side of the cleaning support close to the first cleaning transmission mesh belt, a plurality of first spray cleaning pipes are connected to the first high-pressure water delivery main pipe, the first spray cleaning pipe is located above the first cleaning transmission mesh belt, and a plurality of first spray heads are vertically downward provided on the first spray cleaning pipe;

[0007] A plurality of second spray cleaning pipes are connected to the second high-pressure water delivery main pipe, the second spray cleaning pipe is located below the first cleaning transmission mesh belt, and a plurality of second spray heads are vertically upward provided on the second spray cleaning pipe;

[0008] The second cleaning module includes second cleaning transmission mesh belt, the second cleaning transmission mesh belt is located on the left side of the first cleaning transmission mesh belt, the second cleaning transmission mesh belt is rotationally arranged on the cleaning support, third high-pressure water delivery main pipe and fourth high-pressure water delivery main pipe are provided on the front side of the cleaning support close to the second cleaning transmission mesh belt;

[0009] A plurality of third spray cleaning pipes are connected to the third high-pressure water conveying main pipe, the third spray cleaning pipes are located above the second cleaning conveying mesh belt, a plurality of third spray heads are vertically downwardly arranged on the third spray cleaning pipes, a plurality of fourth spray cleaning pipes are connected to the fourth high-pressure water conveying main pipe, the fourth spray cleaning pipes are located below the second cleaning conveying mesh belt, and a plurality of fourth spray heads are vertically upwardly arranged on the fourth spray cleaning pipes.

[0010] As an improvement, two first conveying baffles are arranged on the two sides of the first cleaning conveying mesh belt, and two second conveying baffles are arranged on the two sides of the second cleaning conveying mesh belt.

[0011] As an improvement, the steel ball discharging module comprises a discharging chute, a discharging port is arranged on the left side of the discharging chute, and a discharging roller is rotatably arranged in the discharging port.

[0012] The discharging chute is rotatably arranged on the cleaning support, a telescopic cylinder is rotatably arranged on the cleaning support at a position opposite to the discharging chute, and a piston rod of the telescopic cylinder is hingedly connected to the bottom of the discharging chute.

[0013] A material receiving box is arranged in the discharging chute.

[0014] As an improvement, a rotating motor is fixed on the cleaning support, the rotating motor is located on the front side of the discharging port, and a rotor of the rotating motor is fixedly connected to the discharging roller.

[0015] As an improvement, the screening and discharging module comprises a screening chute, a plurality of guide grooves are arranged in the screening chute, and a plurality of filtering through holes are arranged in the bottom of the guide grooves.

[0016] A feeding baffle is arranged in the screening chute, and a guide inclined plate is arranged at the input end of the screening chute, the right end of the guide inclined plate abuts against the left side of the second cleaning conveying mesh belt, and the right end of the guide inclined plate abuts against the input end of the screening chute.

[0017] A discharging guide groove is arranged at the output end of the screening chute, and a receiving box is arranged below the screening chute, and the receiving box is fixed on the cleaning support.

[0018] In summary, the utility model has the following beneficial effects:

[0019] 1. In the cleaning, the first spray head sprays high pressure water from the top, the second spray head sprays high pressure water from the bottom, so as to realize the first all-round cleaning of the steel ball, when the steel ball is conveyed to the second cleaning conveying net belt, the third spray head sprays high pressure water from the top, the fourth spray head sprays high pressure water from the bottom, so as to realize the second all-round cleaning of the steel ball, through the above operation, the fast cleaning of the steel ball can be realized under the premise of reducing the waste of water resources, and the cleaning effect is better;

[0020] 2. The steel ball after cleaning flows into the guide chute in the screening chute, the filter through hole is arranged in the guide chute, the steel ball with smaller diameter can be screened and falls into the receiving box, and the excess moisture on the steel ball can also be discharged into the receiving box through the filter through hole. BRIEF DESCRIPTION OF DRAWINGS

[0021] In order to more clearly illustrate the technical scheme in the embodiment, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description.

[0022] Figure 1 It is a whole structure schematic view of a steel ball cleaning device;

[0023] Figure 2 It is a rear view of a steel ball cleaning device;

[0024] Figure 3 It is a sectional view of a steel ball cleaning device; Figure 1 ;

[0025] Figure 4 It is a sectional view of a steel ball cleaning device; Figure 2 ;

[0026] Figure 5 It is a sectional view of a steel ball cleaning device; Figure 3 ;

[0027] Among them: 1, cleaning support; 2, first cleaning conveying net belt; 3, first high pressure water conveying main pipe; 4, second high pressure water conveying main pipe; 5, first spray cleaning pipe; 6, first spray head; 7, second spray cleaning pipe; 8, second spray head; 9, second cleaning conveying net belt; 10, third high pressure water conveying main pipe; 11, fourth high pressure water conveying main pipe; 12, third spray cleaning pipe; 13, fourth spray cleaning pipe; 14, third spray head; 15, fourth spray head; 16, first high pressure water pump; 17, second high pressure water pump; 18, first conveying baffle; 19, second conveying baffle; 20, discharging chute; 21, discharge port; 22, discharge roller; 23, telescopic air cylinder; 24, material receiving box; 25, rotating motor; 26, screening chute; 27, guide chute; 28, filter through hole; 29, feeding baffle; 30, guide inclined plate; 31, discharge guide groove; 32, receiving box. DETAILED DESCRIPTION

[0028] The utility model will be described in further detail below with reference to the drawings.

[0029] Please refer to Figures 1-5 A steel ball cleaning device, comprising a cleaning support 1, a steel ball feeding module, a first cleaning module, a second cleaning module and a screening discharge module are sequentially arranged on the cleaning support 1 from right to left.

[0030] The first cleaning module comprises a first cleaning conveying mesh belt 2, the first cleaning conveying mesh belt 2 is rotationally arranged on the cleaning support 1, a first high-pressure water conveying main pipe 3 and a second high-pressure water conveying main pipe 4 are arranged on the cleaning support 1 near the front side of the first cleaning conveying mesh belt 2, a plurality of first spray cleaning pipes 5 are connected to the first high-pressure water conveying main pipe 3, the first spray cleaning pipes 5 are located above the first cleaning conveying mesh belt 2, and a plurality of first spray heads 6 are vertically arranged downward on the first spray cleaning pipes 5.

[0031] A plurality of second spray cleaning pipes 7 are connected to the second high-pressure water conveying main pipe 4, the second spray cleaning pipes 7 are located below the first cleaning conveying mesh belt 2, and a plurality of second spray heads 8 are vertically arranged upward on the second spray cleaning pipes 7.

[0032] The second cleaning module comprises a second cleaning conveying mesh belt 9, the second cleaning conveying mesh belt 9 is located on the left side of the first cleaning conveying mesh belt 2, the second cleaning conveying mesh belt 9 is rotationally arranged on the cleaning support 1, a third high-pressure water conveying main pipe 10 and a fourth high-pressure water conveying main pipe 11 are arranged on the cleaning support 1 near the front side of the second cleaning conveying mesh belt 9.

[0033] A plurality of third spray cleaning pipes 12 are connected to the third high-pressure water conveying main pipe 10, the third spray cleaning pipes 12 are located above the second cleaning conveying mesh belt 9, a plurality of third spray heads 14 are vertically arranged downward on the third spray cleaning pipes 12, a plurality of fourth spray cleaning pipes 13 are connected to the fourth high-pressure water conveying main pipe 11, the fourth spray cleaning pipes 13 are located below the second cleaning conveying mesh belt 9, and a plurality of fourth spray heads 15 are vertically arranged upward on the fourth spray cleaning pipes 13.

[0034] In the embodiment, when cleaning, the first spray heads 6 spray high-pressure water from above, and the second spray heads 8 spray high-pressure water from below, so as to realize the first omnidirectional cleaning of the steel balls, when the steel balls are conveyed to the second cleaning conveying mesh belt 9, the third spray heads 14 spray high-pressure water from above, and the fourth spray heads 15 spray high-pressure water from below, so as to realize the second omnidirectional cleaning of the steel balls, through the above operation, the rapid cleaning of the steel balls can be realized under the premise of reducing the waste of water resources, and the cleaning effect is better.

[0035] The input end of the first high-pressure water conveying main pipe 3 and the input end of the second high-pressure water conveying main pipe 4 are connected with the first high-pressure water pump 16, the input end of the third high-pressure water conveying main pipe 10 and the input end of the fourth high-pressure water conveying main pipe 11 are connected with the second high-pressure water pump 17, and the first high-pressure water pump 16 and the second high-pressure water pump 17 are fixed on the front side of the cleaning support 1.

[0036] Two first conveying baffles 18 are arranged on both sides of the first cleaning conveying mesh belt 2, and two second conveying baffles 19 are arranged on both sides of the second cleaning conveying mesh belt 9.

[0037] In the embodiment, the arrangement of the first conveying baffles 18 and the second conveying baffles 19 can prevent the steel balls from flying out of the cleaning conveying mesh belt during the conveying process.

[0038] The steel ball discharging module comprises a discharging chute 20, a discharging port 21 is arranged on the left side of the discharging chute 20, and a discharging roller 22 is rotatably arranged in the discharging port 21; the discharging chute 20 is rotatably arranged on the cleaning support 1, a telescopic pneumatic cylinder 23 is rotatably arranged on the cleaning support 1 at a position opposite to the discharging chute 20, and the piston rod of the telescopic pneumatic cylinder 23 is hingedly connected to the bottom of the discharging chute 20; a material receiving box 24 is arranged in the discharging chute 20.

[0039] In the embodiment, the angle of the discharging chute 20 can be adjusted by the telescopic pneumatic cylinder 23, so that the steel balls fall into the discharging port 21 under the action of gravity; the surface of the discharging roller 22 is covered with a silica gel sleeve or a sponge sleeve, the surface of the silica gel sleeve or the sponge sleeve has a certain friction, and the silica gel sleeve or the sponge sleeve is soft, so that the discharging roller 22 can sequentially input the steel balls in the discharging port 21 to the first cleaning conveying mesh belt during the rotation process.

[0040] A rotating motor 25 is fixed on the cleaning support 1, the rotating motor 25 is located on the front side of the discharging port 21, and the rotor of the rotating motor 25 is fixedly connected to the discharging roller 22.

[0041] The screening and discharging module comprises a screening chute 26, the screening chute 26 is fixed on the cleaning support 1, a plurality of guide grooves 27 are arranged in the screening chute 26, a plurality of filter through holes 28 are arranged in the bottom of each guide groove 27; an inlet baffle 29 is arranged in the interior of the screening chute 26, a guide inclined plate 30 is arranged at the input end of the screening chute 26, the right end of the guide inclined plate 30 abuts against the left side of the second cleaning conveying mesh belt 9, and the left end of the guide inclined plate 30 abuts against the input end of the screening chute 26; a discharging guide groove 31 is arranged at the output end of the screening chute 26, and a receiving box 32 is arranged below the screening chute 26, and the receiving box 32 is fixed on the cleaning support 1.

[0042] In this embodiment, the cleaned steel balls flow into the guide chute 27 in the screening chute 26, the filter through hole 28 is arranged in the guide chute 27, the steel balls with small diameter are screened into the receiving box 32, and the excess water on the steel balls is also drained into the receiving box 32 through the filter through hole 28.

[0043] Working principle: the material receiving box 24 filled with steel balls is placed into the discharging chute 20, the position of the discharging chute 20 is adjusted by the telescopic cylinder 23, then the material receiving box 24 is opened, the steel balls fall into the discharge port 21 of the discharging chute 20 under the action of gravity, and the steel balls to be cleaned fall onto the first cleaning conveying mesh belt 2 under the action of the discharging roller 22, when the steel balls are conveyed below the first spray head 6, the first spray head 6 sprays high-pressure water from above, and the second spray head 8 sprays high-pressure water from below, so as to realize the first omnidirectional cleaning of the steel balls, the cleaned steel balls fall onto the second cleaning conveying mesh belt 9 under the action of the first cleaning conveying mesh belt 2, when the steel balls are conveyed below the third spray head 14, the third spray head 14 sprays high-pressure water from above, and the fourth spray head 15 sprays high-pressure water from below, so as to realize the second omnidirectional cleaning of the steel balls.

[0044] The cleaned steel balls fall into the guide chute 27 in the screening chute 26 under the action of the second cleaning conveying mesh belt 9, the steel balls with small diameter fall into the receiving box 32 through the filter through hole 28, and the excess water on the steel balls is also drained into the receiving box 32 through the filter through hole 28, and the steel balls with a diameter greater than the filter through hole 28 flow into the discharging guide chute 31, which is received by the external box.

[0045] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that; the specific embodiments of the present application can be modified or some technical features can be replaced by equivalent ones; without departing from the spirit of the technical solutions of the present application, they should be covered in the technical solution range of the present application claimed.

Claims

1. A steel ball cleaning device characterized by comprising: The cleaning frame is provided with a steel ball discharging module, a first cleaning module, a second cleaning module and a screening discharging module from right to left. The first cleaning module comprises a first cleaning conveying mesh belt rotatably arranged on the cleaning frame. A first high-pressure water conveying main pipe and a second high-pressure water conveying main pipe are arranged on the cleaning frame near the front side of the first cleaning conveying mesh belt. A plurality of first spray cleaning pipes are connected to the first high-pressure water conveying main pipe and located above the first cleaning conveying mesh belt. A plurality of first spray heads are vertically arranged downward on the first spray cleaning pipes.

2. The steel ball cleaning device according to claim 1, wherein A plurality of second spray cleaning pipes are connected to the second high-pressure water conveying main pipe and located below the first cleaning conveying mesh belt.

3. The steel ball cleaning device according to claim 1, wherein A plurality of second spray heads are vertically arranged upward on the second spray cleaning pipes. The second cleaning module comprises a second cleaning conveying mesh belt located on the left side of the first cleaning conveying mesh belt. The second cleaning conveying mesh belt is rotatably arranged on the cleaning frame.

4. The steel ball cleaning device according to claim 3, wherein A third high-pressure water conveying main pipe and a fourth high-pressure water conveying main pipe are arranged on the cleaning frame near the front side of the second cleaning conveying mesh belt.

5. The steel ball cleaning device according to claim 1, wherein A plurality of third spray cleaning pipes are connected to the third high-pressure water conveying main pipe and located above the second cleaning conveying mesh belt. A plurality of fourth spray cleaning pipes are connected to the fourth high-pressure water conveying main pipe and located below the second cleaning conveying mesh belt. A plurality of fourth spray heads are vertically arranged upward on the fourth spray cleaning pipes. Two first conveying baffles are arranged on both sides of the first cleaning conveying mesh belt. Two second conveying baffles are arranged on both sides of the second cleaning conveying mesh belt. The steel ball discharging module comprises a discharging chute. A discharging roller is rotatably arranged in the discharging opening. The discharging chute is rotatably arranged on the cleaning frame. A telescopic cylinder is rotatably arranged on the cleaning frame opposite to the discharging chute. The piston rod of the telescopic cylinder is hingedly connected to the bottom of the discharging chute. A material receiving box is arranged in the discharging chute. A rotating motor is fixed on the cleaning frame. The rotor of the rotating motor is fixedly connected to the discharging roller. The screening discharging module comprises a screening chute. A plurality of guide grooves are arranged in the screening chute. A plurality of filter through holes are arranged in the bottom of the guide grooves. A feeding baffle is arranged in the screening chute. A guide inclined plate is arranged at the input end of the screening chute. The right end of the guide inclined plate abuts against the left side of the second cleaning conveying mesh belt. A discharging guide groove is arranged at the output end of the screening chute. A receiving box is arranged below the screening chute. The receiving box is fixed on the cleaning frame.