Oil removing machine for steel ball manufacturing
By adding a ball screening assembly and a vibrator to the degreasing machine, combined with an inclined design, multiple screenings and cleaning of steel balls can be achieved, solving the problems of single function and low efficiency of existing degreasing machines, and improving the efficiency and quality of steel ball manufacturing.
Patent Information
- Application Number
- CN202422382578.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-09-29
AI Technical Summary
Existing steel ball degreasing machines have limited functionality, low cleaning efficiency, and require significant manpower and resources for manual operation, making it difficult to meet the demand for efficient cleaning.
By adding a first and second ball screening assembly, combined with a vibrator and an inclined design, multiple screening and cleaning of steel balls can be achieved, simplifying the ball screening process and improving the functionality and efficiency of the degreasing machine.
Through multiple screenings and cleaning processes, the efficiency and quality of steel ball manufacturing have been improved, the operation process has been simplified, the intensity of manual labor has been reduced, and environmental pollution has been minimized.
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Figure CN223571481U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of steel ball manufacturing, and more particularly to an oil removing machine for steel ball manufacturing. BACKGROUND
[0002] Steel ball is a common mechanical part, which is mostly applied in the field of precision bearings and the like. The steel ball plays an important role in the precision and reliability of bearings. The bearing steel ball needs to be cooled by quenching oil in the production process, which results in a large amount of quenching oil remaining on the steel ball. If the oil on the steel ball is not removed before subsequent polishing processing, the steel ball may have low precision, large noise, unstable quality and surface defects, which greatly affects the qualified rate of the steel ball and the service life of the product. The common cleaning method for the surface of the steel ball is to directly flush with cleaning agent. The surface of the steel ball cannot be completely cleaned, which results in a rough surface of the steel ball and poor polishing effect. Moreover, the cleaning is difficult to be performed manually, which consumes a large amount of manpower and material resources and has low cleaning efficiency. For example, the Chinese utility model patent with the publication number CN220049104U discloses an oil removing machine for steel ball production, which comprises a cleaning chamber. An oil removing mechanism is fixedly connected to the upper left front end of the cleaning chamber. A rolling mechanism is fixedly connected to the lower left front end of the cleaning chamber. A collecting box is arranged at the bottom right end of the cleaning chamber. The rolling mechanism comprises a second motor, which is fixedly connected to the lower left front end of the cleaning chamber. A rolling rod is fixedly connected to the back end of the second motor. A chain wheel is fixedly connected to the surface of the rolling rod near the front end. A supporting strip is fixedly connected to the back end of the second motor. The surface of the supporting strip is fixedly connected to the inner side of the cleaning chamber. In the technical solution, the oil removing mechanism is arranged to facilitate the conveying of the steel ball during cleaning. When the steel ball is conveyed to the top of the collecting box, the steel ball can be collected in the collecting box, which facilitates the batch cleaning of the steel ball. However, the ordinary oil removing machine for steel ball can only clean the steel ball, and has single function and low practicality. SUMMARY
[0003] The technical problem to be solved by the present application is to provide an oil removing machine for steel ball manufacturing. The oil removing machine is provided with a first ball screening assembly to increase the ball screening function, simplify the subsequent ball screening process, improve the functionality of the oil removing machine, meet more use requirements, and improve the manufacturing efficiency of the steel ball.
[0004] The application provides a kind of oil removal machine for steel ball manufacturing, including bunker and cleaning chamber, the bunker is used to stack steel ball, the cleaning chamber is used to clean steel ball, first ball screening assembly is installed in the cleaning chamber, the bunker is provided with first outlet, the first outlet is located above first ball screening assembly to make bunker and first ball screening assembly communicate, steel ball in the bunker is screened by first ball screening assembly and then enters cleaning chamber for cleaning.In the technical solution, bunker and cleaning chamber are provided, steel balls to be cleaned are stacked in the bunker for subsequent cleaning in the cleaning chamber, first ball screening assembly is installed in the cleaning chamber, and the first ball screening assembly is communicated with the first outlet of the bunker, so that qualified steel balls can be screened by the first ball screening assembly and then enter the cleaning chamber, the first ball screening assembly adds the ball screening function to the oil removal machine, the steel balls to be cleaned in the bunker enter the first ball screening assembly through the first outlet, and the screened steel balls directly pass through the first ball screening assembly and then enter the cleaning chamber for cleaning, which simplifies the subsequent ball screening process, improves the functionality of the oil removal machine, meets more use requirements, and improves the manufacturing efficiency of steel balls.
[0005] As an improvement, the first ball screening assembly includes a first screen and a vibrator, the vibrator is connected with the first screen, and the vibrator vibrates to make the steel balls pass through the first screen and then enter the cleaning chamber.In the technical solution, the first ball screening assembly screens qualified steel balls through the first screen and then enters the cleaning chamber, the first ball screening assembly vibrates the first screen through the vibrator, so that the qualified steel balls on the first screen can pass through the first screen and then enter the cleaning chamber, the vibrating ball method is simple and efficient, and the steel ball cleaning efficiency is improved.
[0006] As an improvement, the bottom of the cleaning chamber is provided with a second outlet, and the bottom surface of the cleaning chamber is inclined to make the steel balls in the cleaning chamber gather at the second outlet.In the technical solution, the second outlet is provided at the bottom of the cleaning chamber to discharge the steel balls, and the bottom surface of the cleaning chamber is inclined, so that the cleaned steel balls can automatically gather at the second outlet along the inclined bottom surface for subsequent discharge, which improves the cleaning efficiency of the oil removal machine.
[0007] As an improvement, the second outlet is connected with a second ball screening assembly, and the steel balls in the cleaning chamber are screened again by the second ball screening assembly through the second outlet.In the technical solution, the second outlet is connected with the second ball screening assembly, the cleaned steel balls in the cleaning chamber are discharged to the second ball screening assembly through the second outlet, and the second ball screening assembly can screen the cleaned steel balls again, which is more accurate and reliable, simplifies the subsequent ball screening process, improves the functionality of the oil removal machine, meets more use requirements, and improves the manufacturing efficiency of steel balls.
[0008] As an improvement, the second sieve ball assembly is in a long strip structure, the first storage box is connected to the second sieve ball assembly in an inclined manner, and part of the steel balls in the second sieve ball assembly roll into the first storage box for collection. In the technical solution, the second sieve ball assembly in a long strip structure is arranged, and the first storage box is connected to the second sieve ball assembly in an inclined manner. The steel balls discharged from the second outlet enter the second sieve ball assembly. The long strip structure of the second sieve ball assembly can prevent the steel balls from rolling off and falling outside. The steel balls can roll along the second sieve ball assembly to the first storage box for collection, thereby improving the work efficiency.
[0009] As an improvement, one end of the second sieve ball assembly is connected to the second outlet in a communication manner, the other end of the second sieve ball assembly is provided with a plurality of first sieve ball holes, and the second sieve ball assembly communicates with the first storage box through the first sieve ball holes. In the technical solution, the second outlet and the first storage box are connected in a communication manner through the second sieve ball assembly, and a plurality of first sieve ball holes are arranged on the second sieve ball assembly. The steel balls discharged from the second outlet roll along the second sieve ball assembly to the bottom end. The qualified steel balls can pass through the first sieve ball holes and enter the first storage box for collection. The subsequent steel ball screening process is simplified, and the work efficiency is improved.
[0010] As an improvement, a plurality of second sieve ball holes are arranged on the second sieve ball assembly, the second sieve ball holes are in a strip shape, and the width of the second sieve ball holes is smaller than the diameter of the first sieve ball holes. In the technical solution, the second sieve ball holes in a strip shape are arranged on the second sieve ball assembly, and the width of the second sieve ball holes is smaller than the diameter of the first sieve ball holes. Therefore, the unqualified steel balls with smaller sizes can be preferentially discharged through the second sieve ball holes, so as to avoid being mixed with the qualified steel balls and entering the first sieve ball holes. The second sieve ball holes can effectively remove the defective steel balls mixed in the qualified steel balls. The multiple steel ball screening is more accurate and reliable. The subsequent steel ball screening process is simplified, and the work efficiency is improved.
[0011] As an improvement, a second storage box is arranged below the second sieve ball hole, and part of the steel balls in the second sieve ball assembly pass through the second sieve ball hole and are collected in the second storage box. In the technical solution, the second storage box is arranged below the second sieve ball hole. The steel balls with smaller sizes discharged through the second sieve ball hole are collected through the second storage box, so as to avoid the steel balls from falling and being mixed. The efficiency of the subsequent process is improved.
[0012] As an improvement, a flow distribution plate is arranged on the side of the second sieve ball assembly close to the second outlet. In the technical solution, the flow distribution plate is arranged on the second sieve ball assembly, so that the steel balls discharged from the second outlet can be uniformly distributed through the flow distribution plate. Therefore, the second sieve ball assembly can uniformly and efficiently screen the steel balls, and the steel ball screening efficiency is improved.
[0013] As an improvement, the bottom of the cleaning chamber is provided with a liquid discharge port, the liquid discharge port is distributed on both sides of the cleaning chamber with the second outlet, and the liquid discharge port is connected with a liquid collecting barrel. In the technical solution, the liquid discharge port is arranged on the bottom of the cleaning chamber and away from one side of the second outlet, so that the waste liquid mixed with the cleaning agent and the oil in the cleaning chamber can be discharged, and the liquid collecting barrel connected with the liquid discharge port is arranged, so that the waste liquid is collected through the liquid collecting barrel, and environmental pollution is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a partial structure schematic diagram of the oil removing machine in the application.
[0015] Figure 2 It is a partial structure schematic diagram of the first sieve ball assembly of the oil removing machine in the application.
[0016] Figure 3 It is a partial structure schematic diagram of the second sieve ball assembly of the oil removing machine in the application.
[0017] Figure 4 It is a partial structure schematic diagram of the liquid collecting barrel of the oil removing machine in the application.
[0018] As shown in the figure: 1, the stock bin; 11, the first outlet; 2, the cleaning chamber; 21, the second outlet; 22, the bottom surface; 23, the liquid discharge port; 3, the first sieve ball assembly; 31, the first sieve screen; 32, the vibrator; 4, the second sieve ball assembly; 41, the first sieve ball hole; 42, the second sieve ball hole; 43, the flow dividing plate; 5, the first storage box; 6, the second storage box; 7, the liquid collecting barrel. DETAILED DESCRIPTION
[0019] In order to better understand the application, various aspects of the application will be described in more detail with reference to the accompanying drawings. It should be understood that these detailed descriptions are only descriptions of exemplary embodiments of the application, and do not limit the scope of the application in any way. Throughout the specification, the same reference numerals refer to the same elements.
[0020] In the drawings, the thickness, size and shape of the objects have been slightly exaggerated for ease of illustration. The drawings are only examples and are not strictly drawn to scale.
[0021] It should also be understood that the use of terms such as "including", "comprising", "having" "containing", "involving", "characterized by" and the like are used herein to mean that the specified features, integers, steps, operations, elements, and / or components are present, but not excluding the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or groups thereof. The terms "first", "second", and the like, do not denote any order, quantity, or importance, but rather are used to distinguish one element from another, and the terms "a" and "an" and "the" and similar referents are to be construed to be inclusive of both singular and plural, unless otherwise indicated herein by context.
[0022] Furthermore, it should be understood that the terms "mounting", "arrangement", "provided with", "connected", "linked" are to be interpreted broadly. For example, it can be a fixed connection, detachable connection, or integral configuration; it can be a mechanical connection, or electrical connection; it can be a direct connection, or indirect connection through an intermediate medium, or internal communication between two devices, elements or components; it can be directly arranged on another component, or there can be another intermediate component. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only. Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the application herein is for the purpose of describing specific embodiments only and is not intended to be limiting of the application. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.
[0023] As shown in Figures 1 to 4 The application discloses an oil removing machine for steel ball manufacturing, which comprises a stock bin 1 and a cleaning chamber 2. The stock bin 1 is used for stacking steel balls, and the cleaning chamber 2 is used for cleaning the steel balls. A first ball screening assembly 3 is arranged in the cleaning chamber 2. The stock bin 1 is provided with a first outlet 11, and the first outlet 11 is located above the first ball screening assembly 3 so as to communicate the stock bin 1 with the first ball screening assembly 3. The steel balls in the stock bin 1 enter the cleaning chamber 2 for cleaning after being screened by the first ball screening assembly 3. The steel balls to be cleaned are stacked in the stock bin 1 so as to enter the cleaning chamber 2 for cleaning subsequently. The first ball screening assembly 3 is arranged in the cleaning chamber 2, and the first ball screening assembly 3 communicates with the first outlet 11 of the stock bin 1. The first ball screening assembly 3 can screen qualified steel balls to enter the cleaning chamber 2. The first ball screening assembly 3 increases the ball screening function of the oil removing machine. The steel balls to be cleaned in the stock bin 1 enter the first ball screening assembly 3 through the first outlet 11, and the screened steel balls directly pass through the first ball screening assembly 3 to enter the cleaning chamber 2 for cleaning. The subsequent ball screening process is simplified, the functionality of the oil removing machine is improved, more use requirements are met, and the steel ball manufacturing efficiency is improved.
[0024] More specifically, as shown in Figure 1 and Figure 2 , the first sieve ball assembly 3 includes a first sieve 31 and a vibrator 32, the vibrator 32 is connected with the first sieve 31, the vibrator 32 passes through the first sieve 31 into the cleaning chamber 2 by vibrating, the first sieve ball assembly 3 screens qualified steel balls into the cleaning chamber 2 through the first sieve 31, the first sieve ball assembly 3 drives the first sieve 31 to vibrate through the vibrator 32, so that the qualified steel balls on the first sieve 31 can pass through the first sieve 31 into the cleaning chamber 2, the vibrating ball is simple and efficient, and the steel ball cleaning efficiency is improved.
[0025] More specifically, as shown in Figures 1 to 3 , the bottom of the cleaning chamber 2 is provided with a second outlet 21, and the bottom surface 22 of the cleaning chamber 2 is inclined, so that the steel balls in the cleaning chamber 2 are collected at the second outlet 21, by setting the second outlet 21 at the bottom of the cleaning chamber 2 to discharge the steel balls, and setting the bottom surface 22 of the cleaning chamber 2 to be inclined, the cleaned steel balls can be automatically collected at the second outlet 21 along the inclined bottom surface 22, so as to facilitate subsequent discharge, and improve the cleaning efficiency of the oil removal machine.
[0026] More specifically, as shown in Figures 1 to 3 , the second outlet 21 is connected with the second sieve ball assembly 4, the steel balls in the cleaning chamber 2 are subjected to secondary ball screening through the second outlet 21 to the second sieve ball assembly 4, by setting the second outlet 21 to connect the second sieve ball assembly 4, the cleaned steel balls in the cleaning chamber 2 are discharged through the second outlet 21 to the second sieve ball assembly 4, the second sieve ball assembly 4 can perform secondary ball screening on the cleaned steel balls, the secondary ball screening is more accurate and reliable, the subsequent ball screening process is simplified, the functionality of the oil removal machine is improved, more use requirements are met, and the steel ball manufacturing efficiency is improved.
[0027] More specifically, as shown in Figure 3 , the second sieve ball assembly 4 is in a long strip structure, and the second sieve ball assembly 4 is inclined downwardly connected with a first storage box 5, part of the steel balls in the second sieve ball assembly 4 roll into the first storage box 5 for collection, the second sieve ball assembly 4 is provided in a long strip structure, and the second sieve ball assembly 4 is inclined to connect the first storage box 5, the steel balls discharged from the second outlet 21 enter the second sieve ball assembly 4, the long strip structure of the second sieve ball assembly 4 can avoid the deviation of the rolling of the steel balls, prevent the steel balls from falling outside, and the steel balls can roll into the first storage box 5 for collection along the second sieve ball assembly 4, thereby improving the work efficiency.
[0028] More specifically, as shown in Figure 3As shown, one end of the second screen ball assembly 4 is connected in communication with the second outlet 21, and the other end of the second screen ball assembly 4 is provided with a plurality of first screen ball holes 41, and the second screen ball assembly 4 is connected in communication with the first storage box 5 through the first screen ball holes 41, and the second outlet 21 is connected in communication with the first storage box 5 through the second screen ball assembly 4, and a plurality of first screen ball holes 41 are arranged on the second screen ball assembly 4, and the steel balls discharged from the second outlet 21 roll to the bottom end along the second screen ball assembly 4, and the qualified steel balls can pass through the first screen ball holes 41 into the first storage box 5 to be collected, thereby simplifying the subsequent screening process and improving work efficiency.
[0029] More specifically, as shown in the drawings, Figure 3 As shown, a plurality of second screen ball holes 42 are arranged on the second screen ball assembly 4, the second screen ball holes 42 are in strip shape, and the width of the second screen ball holes 42 is smaller than the diameter of the first screen ball holes 41. By arranging the second screen ball holes 42 in strip shape on the second screen ball assembly 4, and the width of the second screen ball holes 42 is smaller than the diameter of the first screen ball holes 41, therefore, the unqualified steel balls with smaller size can be preferentially discharged through the second screen ball holes 42, avoiding being mixed in the qualified steel balls and entering the first screen ball holes 41, and the second screen ball holes 42 can effectively remove the defective steel balls mixed in the qualified steel balls, and the multiple screening is more accurate and reliable, thereby simplifying the subsequent screening process and improving work efficiency.
[0030] More specifically, as shown in the drawings, Figure 3 As shown, a second storage box 6 is arranged below the second screen ball holes 42, and part of the steel balls in the second screen ball assembly 4 pass through the second screen ball holes 42 into the second storage box 6 to be collected. By arranging the second storage box 6 below the second screen ball holes 42, the steel balls with smaller size discharged through the second screen ball holes 42 can be collected through the second storage box 6, avoiding the steel balls from falling and being mixed, and improving the efficiency of the subsequent process.
[0031] More specifically, as shown in the drawings, Figure 3 As shown, a shunt plate 43 is arranged on one side of the second screen ball assembly 4 close to the second outlet 21. By arranging the shunt plate 43 on the second screen ball assembly 4, the steel balls discharged from the second outlet 21 can be uniformly dispersed through the shunt plate 43, so that the second screen ball assembly 4 can uniformly and efficiently screen the steel balls, thereby improving the screening efficiency.
[0032] More specifically, as shown in the drawings, Figure 4 As shown, a liquid discharge port 23 is arranged at the bottom of the cleaning chamber 2, the liquid discharge port 23 and the second outlet 21 are distributed on both sides of the cleaning chamber 2, and the liquid discharge port 23 is connected with a liquid collecting tank 7. The liquid discharge port 23 is arranged at the bottom of the cleaning chamber 2 and away from the second outlet 21 on one side, so that the waste liquid mixed with the cleaning agent and oil in the cleaning chamber 2 can be discharged, and the liquid collecting tank 7 connected with the liquid discharge port 23 is arranged, so that the waste liquid can be collected through the liquid collecting tank 7, avoiding environmental pollution.
[0033] The application is not limited to the above best mode, and anyone can derive other various forms of products under the inspiration of the application, but regardless of any changes in shape or structure, any technical solution with the same or similar to the application falls within the scope of the application.
Claims
1. An oil removing machine for steel ball manufacturing, characterized by, The utility model provides a steel ball cleaning device, which comprises a bin (1) for stacking steel balls and a cleaning chamber (2) for cleaning the steel balls, wherein the cleaning chamber (2) is provided with a first ball screening assembly (3), the bin (1) is provided with a first outlet (11) above the first ball screening assembly (3) to communicate the bin (1) with the first ball screening assembly (3), and the steel balls in the bin (1) are screened by the first ball screening assembly (3) and then enter the cleaning chamber (2) for cleaning.
2. The oil removing machine for steel ball manufacturing according to claim 1, characterized in that, The first ball screening assembly (3) comprises a first screen (31) and a vibrator (32), the vibrator (32) is connected with the first screen (31), and the vibrator (32) vibrates to make the steel balls pass through the first screen (31) and enter the cleaning chamber (2).
3. The oil removing machine for steel ball manufacturing according to claim 1, characterized in that, The bottom of the cleaning chamber (2) is provided with a second outlet (21), and the bottom surface (22) of the cleaning chamber (2) is inclined to make the steel balls in the cleaning chamber (2) gather at the second outlet (21).
4. The oil removing machine for steel ball manufacturing according to claim 3, characterized in that, The second outlet (21) is connected with a second ball screening assembly (4), and the steel balls in the cleaning chamber (2) pass through the second outlet (21) to the second ball screening assembly (4) for secondary ball screening.
5. The oil removing machine for steel ball manufacturing according to claim 4, wherein The second ball screening assembly (4) is in a long strip structure, the second ball screening assembly (4) is connected with a first storage box (5) in an inclined downward manner, and part of the steel balls in the second ball screening assembly (4) roll into the first storage box (5) for collection.
6. The oil removing machine for steel ball manufacturing according to claim 5, wherein One end of the second ball screening assembly (4) is connected with the second outlet (21) in communication, the other end of the second ball screening assembly (4) is provided with a plurality of first ball screening holes (41), and the second ball screening assembly (4) communicates with the first storage box (5) through the first ball screening holes (41).
7. The oil removing machine for steel ball manufacturing according to claim 6, wherein A plurality of second ball screening holes (42) are arranged on the second ball screening assembly (4), the second ball screening holes (42) are in a strip shape, and the width of the second ball screening holes (42) is smaller than the diameter of the first ball screening holes (41).
8. The oil removing machine for steel ball manufacturing according to claim 7, characterized in that, A second storage box (6) is arranged directly below the second ball screening holes (42), and part of the steel balls in the second ball screening assembly (4) pass through the second ball screening holes (42) and enter the second storage box (6) for collection.
9. The oil removing machine for steel ball manufacturing according to claim 5, wherein A shunt plate (43) is arranged on the side of the second ball screening assembly (4) close to the second outlet (21).
10. The oil removing machine for steel ball manufacturing according to claim 3, characterized in that, The bottom of the cleaning chamber (2) is provided with a drainage port (23), the drainage port (23) and the second outlet (21) are arranged on both sides of the cleaning chamber (2), and the drainage port (23) is connected with a liquid collecting barrel (7).
Citation Information
Patent Citations
Oil removing machine for steel ball production
CN220049104U