Wear-resistant cast ball screening device

By using the first and second material distribution components of the wear-resistant cast ball screening device, the problem of repeatedly replacing screens during the screening process is solved, achieving efficient and convenient casting ball sorting and improving production efficiency and screening accuracy.

CN223902261UActive Publication Date: 2026-02-13NINGGUO JINQIAO WEAR RESISTANT MATERIALS CO LTD
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Patent Information

Application Number
CN202423195002.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2026-02-13
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

In existing technologies, the screening of wear-resistant cast balls requires repeated screen replacements, resulting in low production efficiency and high labor costs, making it difficult to efficiently sort wear-resistant cast balls that meet a certain size range.

Method used

A wear-resistant cast ball screening device is adopted, which includes first and second material distribution components. The first material distribution component screens out cast balls with a volume larger than the standard and they enter zone A. The second material distribution component screens out standard cast balls and they enter zone E. Cast balls smaller than the standard enter zone F. Combined with the guide plate and the left guide plate, the device prevents accumulation and improves screening efficiency.

Benefits of technology

It enables rapid and convenient sorting of wear-resistant cast balls, improves production efficiency, reduces labor costs, and ensures the integrity and accuracy of the screening process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wear-resistant cast ball screening device, which belongs to the technical field of grinding ball screening equipment and comprises two bases and a material passing plate obliquely arranged between the two bases, the material passing plate is divided into an area A and an area B by a long baffle, the area B consists of an area C and an area D, the area C is positioned at the oblique upper part of the material passing plate, the area D is divided into an area E and an area F by a short baffle, and the area E is positioned at the oblique upper part of the material passing plate. In the using process, wear-resisting casting balls are put in from the higher end of the material passing plate, the wear-resisting casting balls enter the area C and the first material distributing assembly, the wear-resisting casting balls are screened out through the first material distributing assembly, and grinding balls with the size larger than the standard are screened out and enter the area A; and the screened grinding balls enter the second material separating assembly to be screened, the second material separating assembly screens out standard wear-resisting cast balls, the standard wear-resisting cast balls enter the E area, and the wear-resisting cast balls smaller than the standard wear-resisting cast balls are screened out of the F area, so that the wear-resisting cast balls in a certain area can be effectively sorted out, the screening process is convenient and rapid, and the efficiency is high.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the wear -resisting cast ball screening equipment technical field, concretely relates to a wear -resisting cast ball screening device. BACKGROUND

[0002] The wear -resisting cast ball is widely used in metallurgical mine, cement building material, thermal power generation, flue gas desulfurization, magnetic material, chemical industry, coal water slurry, pellet, slag, superfine powder, fly ash, calcium carbonate, quartz sand and other industry ball mill.

[0003] In prior art, the screening and removing work of the whole batch of wear -resisting cast ball is usually completed by using screen, when the wear -resisting cast ball is screened by using screen, the screen can only select out the wear -resisting cast ball smaller than the screen hole, and the wear -resisting cast ball meeting certain size range in the whole batch of wear -resisting cast ball needs to be selected out repeatedly, and the screen with different aperture needs to be replaced in the screening process, so a large amount of manpower cost needs to be invested, and the production efficiency is not high. UTILITY MODEL CONTENT

[0004] The utility model discloses a kind of wear -resisting cast ball screening devices, to solve the problem raised in above background art. To achieve the above purpose, the utility model provides the following technical solutions: including two pedestals and the material passing plate being arranged between two the pedestal is inclined, the upper surface of the material passing plate is equipped with long baffle, the long baffle divides material passing plate into A area and B area, the B area is composed of C area and D area, the C area is located in the oblique upper part of the material passing plate, the material passing plate is also equipped with short baffle, the short baffle divides D area into E area and F area, and further include first sorting mechanism and first sorting mechanism;

[0005] The first sorting mechanism includes first mounting bracket and the first material component movably arranged in the first mounting bracket, the second sorting mechanism includes second mounting bracket and the second material component movably arranged in the second mounting bracket, the first mounting bracket and the second mounting bracket are all inverted U type, the material passing plate and two the pedestal are all located in the first mounting bracket and the second mounting bracket, the first material component and second material component are all arranged in C.

[0006] It needs to be explained in scheme that the first material component includes first adjusting rod shuttling in the inner wall of the top end of the first mounting bracket, the first adjusting rod bottom is fixedly connected with right adjusting plate, one end of the right adjusting plate is abutted with long baffle, the other end of the right adjusting plate is abutted with pedestal.

[0007] It needs to be explained in the scheme that the second material distribution assembly comprises a second adjusting rod shuttling in the inner wall of the top end of the second mounting frame, the bottom of the second adjusting rod is fixedly connected with a left adjusting plate, one end of the left adjusting plate abuts against the long baffle, and the other end of the right adjusting plate abuts against the short baffle.

[0008] It needs to be explained in the scheme that the C area is further provided with a guide plate and a left guide plate, both the guide plate and the left guide plate are connected with the upper surface of the material passing plate, the guide plate is located between the left adjusting plate and the right adjusting plate, and the left guide plate is located on the side, away from the guide plate, of the right adjusting plate.

[0009] It needs to be explained in the scheme that the upper surface of the material passing plate located in the E area is provided with a plurality of dust collecting holes uniformly distributed, and a material collecting box is arranged between the two bases and located below the dust collecting holes.

[0010] It needs to be explained in the scheme that the long baffle is provided with a discharging port adjacent to the right adjusting plate, and the discharging port is located on the side, away from the left adjusting plate, of the right adjusting plate.

[0011] Compared with the prior art, the wear-resistant casting ball screening device has at least the following beneficial effects:

[0012] (1) Through the arrangement of the first material distribution assembly and the second material distribution assembly, in actual use, the wear-resistant casting ball is placed into the higher end of the material passing plate, so that the wear-resistant casting ball enters the C area, the wear-resistant casting ball enters the first material distribution assembly, the wear-resistant casting ball larger than the standard is screened out and enters the A area, the screened wear-resistant casting ball enters the second material distribution assembly for screening, the standard wear-resistant casting ball is screened out by the second material distribution assembly and enters the E area, and the wear-resistant casting ball smaller than the standard is screened to the F area, so that the wear-resistant casting balls in a certain interval can be effectively screened out, the screening process is convenient and fast, and the efficiency is high.

[0013] (2) Through the arrangement of the guide plate and the left guide plate, in actual use, the wear-resistant casting ball enters the upper surface of the material passing plate, the wear-resistant casting ball is blocked by the left guide plate after entering the upper surface of the material passing plate, the wear-resistant casting ball is guided to the right adjusting plate, the wear-resistant casting ball is screened by the first material distribution assembly, and the wear-resistant casting ball is guided to the left adjusting plate by the guide plate in the process that the wear-resistant casting ball enters the second material distribution assembly from the first material distribution assembly, so that the wear-resistant casting ball is screened by the second material distribution assembly, and the wear-resistant casting balls are prevented from being accumulated together to cause individual wear-resistant casting balls to be missed. BRIEF DESCRIPTION OF DRAWINGS

[0014] Fig. 1 is a schematic diagram of the three-dimensional structure of the utility model product;

[0015] Fig. 2It is the second perspective three-dimensional structure schematic view of the utility model product.

[0016] Fig. 3 It is the overhead cross section structure schematic view of the utility model product.

[0017] In the drawing: 1. Base; 2. Material passing plate; 3. Second mounting frame; 4. First mounting frame; 5. Dust collecting hole; 6. Short baffle; 7. Left adjusting plate; 8. Second adjusting rod; 9. Right material guide plate; 10. Long baffle; 11. Right adjusting plate; 12. Left material guide plate; 13. First adjusting rod; 14. Second air cylinder; 15. First air cylinder; 16. Material collecting box. DETAILED DESCRIPTION

[0018] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0019] Please refer to Figs. 1-3 A wear-resistant cast ball screening device, including two base 1 and the material passing plate 2 that is arranged between two base 1 in the inclined shape, the long baffle 10 is equipped on the material passing plate 2 upper surface, the long baffle 10 will material passing plate 2 divide into A area and B area, B area is composed of C area and D area, C area is located in the inclined upper part of material passing plate 2, material passing plate 2 is also equipped with short baffle 6, short baffle 6 will D area divide into E area and F area, also include first sorting mechanism and the first sorting mechanism, the first sorting mechanism includes first mounting frame and the first material component that is movably arranged in the inboard of first mounting frame, the second sorting mechanism includes second mounting frame 3 and the second material component that is movably arranged in the inboard of second mounting frame 3, first mounting frame and second mounting frame 3 are all inverted U-shaped, material passing plate 2 and two base 1 are all located in the inboard of first mounting frame and second mounting frame 3, first material component and second material component are all arranged in C;

[0020] Through the setting of first material component and second material component, in actual use, wear-resistant cast ball is put into from the higher end of material passing plate 2, so that wear-resistant cast ball enters C area, wear-resistant cast ball enters first material component, and the wear-resistant cast ball with volume greater than the standard is screened out and enters A area after the screening of first material component, the screened wear-resistant cast ball enters second material component for screening, and the standard wear-resistant cast ball is screened out by second material component and enters E area, and the wear-resistant cast ball less than the standard is screened to F area, so that the wear-resistant cast ball in a certain interval can be effectively screened out, and the screening process is convenient, fast and efficient.

[0021] Further, referring to Figs. 1-3 As shown in the figure, the first sub-assembly includes a first adjusting rod 13 arranged on the inner wall of the top end of the first mounting frame, the top end of the first mounting frame is provided with a first cylinder 15, the output end of the first cylinder 15 penetrates the first mounting frame and is fixed with the first adjusting rod 13, the bottom of the first adjusting rod 13 is fixedly connected with a right adjusting plate 11, one end of the right adjusting plate 11 abuts against the long baffle 10, and the other end of the right adjusting plate 11 abuts against the base 1.

[0022] Through the arrangement of the first sub-assembly, in the installation, the first mounting frame is installed on both sides of the two bases 1, the first cylinder 15 is installed on the top of the first mounting frame, and the right adjusting plate 11 and the first adjusting rod 13 are installed on the telescopic end of the first mounting frame. In use, the first cylinder 15 is started to adjust the right adjusting plate 11 to a suitable position and height, and then the wear-resistant cast ball is rolled to the right adjusting plate 11, so that the wear-resistant cast ball with a qualified diameter passes through the gap below the right adjusting plate 11, and the unqualified wear-resistant cast ball enters the A area, thereby effectively performing the first screening on the wear-resistant cast ball.

[0023] Further, referring to Figs. 1-3 As shown in the figure, it is worth noting that the second sub-assembly includes a second adjusting rod 8 arranged on the inner wall of the top end of the second mounting frame 3, the top end of the second mounting frame 3 is provided with a second cylinder 14, the output end of the second cylinder 14 penetrates the second mounting frame 3 and is fixed with the second adjusting rod 8, and the bottom of the second adjusting rod 8 is fixedly connected with a left adjusting plate 7. One end of the left adjusting plate 7 abuts against the long baffle 10, and the other end of the right adjusting plate 11 abuts against the short baffle 6.

[0024] Through the arrangement of the second sub-assembly, in the installation, the second mounting frame 3 is installed on both sides of the two bases 1, the second cylinder 14 is installed on the top of the second mounting frame 3, and the left adjusting plate 7 and the second adjusting rod 8 are installed on the telescopic end of the second mounting frame 3. In use, the first cylinder 15 is started to adjust the right adjusting plate 11 to a suitable position and height, and then the wear-resistant cast ball screened through the first sub-assembly is rolled to the left adjusting plate 7, so that the wear-resistant cast ball with a diameter less than the standard range passes through the gap below the right adjusting plate 11 and enters the F area, and the qualified wear-resistant cast ball enters the next production step from the E area on one side.

[0025] Further, referring to Figs. 1-3 As shown in the figure, the upper surface of the C area is provided with a guide plate 9 and a left guide plate 12, the guide plate 9 is located between the left adjusting plate 7 and the right adjusting plate 11, and the left guide plate 12 is located on the side of the right adjusting plate 11 away from the guide plate 9.

[0026] Through the arrangement of the guide plate 9 and the left guide plate 12, in actual use, the wear-resistant cast ball enters the upper surface of the guide plate 2, after the wear-resistant cast ball enters the upper surface of the guide plate 2, the wear-resistant cast ball is blocked by the left guide plate 12, and the wear-resistant cast ball is guided to the right adjusting plate 11, so that the wear-resistant cast ball is screened through the first material dividing assembly, in the process that the wear-resistant cast ball enters the second material dividing assembly from the first material dividing assembly, the wear-resistant cast ball is blocked by the guide plate 9, and the wear-resistant cast ball is guided to the left adjusting plate 7, so that the wear-resistant cast ball is screened through the second material dividing assembly, and it is prevented that the wear-resistant cast balls are accumulated together to cause individual wear-resistant cast balls to be missed.

[0027] Further, referring to Figs. 1-3 It is worth noting that the upper surface of the E area is provided with a plurality of dust collecting holes 5 which are uniformly distributed, the two bases 1 are provided with a material collecting box 16 which is located below the dust collecting holes 5, and the long baffle 10 is provided with a discharge port which is adjacent to the right adjusting plate 11.

[0028] Through the arrangement of the dust collecting holes 5 and the discharge port, in actual use, the wear-resistant cast ball which is screened through the first material dividing assembly is discharged through the discharge port and enters the A area, after the qualified wear-resistant cast ball enters the E area, the debris and some impurities on the wear-resistant cast ball fall into the dust collecting holes 5 and enter the material collecting box 16, and the material collecting box 16 collects the debris and some impurities, so that the wear-resistant cast ball which passes through the E area can be directly packed.

[0029] The above describes the wear-resistant cast ball screening device provided by the utility model, the principle and implementation mode of the utility model are described in the description by using the specific preferred embodiments, and these embodiments are only applicable to helping understand the principle and core idea of the utility model, it should be pointed out that, for ordinary skilled persons in the art, the implementation scheme in the above embodiments can be further combined or replaced without departing from the design idea of the utility model, the utility model can be improved and modified in several ways, and these improvements and modifications also fall within the protection scope of the utility model claim.

Claims

1. A wear resistant ball mill classifier apparatus, characterized by: The utility model provides a kind of sorting device, including two pedestals (1) and the material passing plate (2) being arranged between two the pedestal (1) in an inclined manner, the upper surface of the material passing plate (2) is equipped with long baffle (10), the long baffle (10) will material passing plate (2) be divided into A area and B area, the B area is composed of C area and D area, the C area is located in the inclined upper part of the material passing plate (2), the material passing plate (2) is also equipped with short baffle (6), the short baffle (6) will D area be divided into E area and F area, further including first sorting mechanism and second sorting mechanism; The first sorting mechanism includes a first mounting bracket (4) and a first material distribution assembly movably arranged inside the first mounting bracket (4), and the second sorting mechanism includes a second mounting bracket (3) and a second material distribution assembly movably arranged inside the second mounting bracket (3). The first mounting bracket (4) and the second mounting bracket (3) are both in the shape of an inverted U, and the material passing plate (2) and the two pedestals (1) are both inside the first mounting bracket (4) and the second mounting bracket (3). The first material distribution assembly and the second material distribution assembly are both arranged in C.

2. The wear resistant ball mill and screen assembly of claim 1, wherein: The first material distribution assembly includes a first adjusting rod (13) shuttling in the inner wall of the top end of the first mounting bracket (4). The bottom of the first adjusting rod (13) is fixedly connected with a right adjusting plate (11). One end of the right adjusting plate (11) abuts against the long baffle (10), and the other end of the right adjusting plate (11) abuts against the pedestal (1).

3. The wear resistant ball mill ball and screen apparatus of claim 2, wherein: The second material distribution assembly includes a second adjusting rod (8) shuttling in the inner wall of the top end of the second mounting bracket (3). The bottom of the second adjusting rod (8) is fixedly connected with a left adjusting plate (7). One end of the left adjusting plate (7) abuts against the long baffle (10), and the other end of the right adjusting plate (11) abuts against the short baffle (6).

4. The wear resistant ball mill ball and screen apparatus of claim 3, wherein: The C area is also provided with a material guide plate (9) and a left material guide plate (12), both of which are connected with the upper surface of the material passing plate (2). The material guide plate (9) is located between the left adjusting plate (7) and the right adjusting plate (11), and the left material guide plate (12) is located on the side of the right adjusting plate (11) away from the material guide plate (9).

5. The wear resistant ball and screen assembly of claim 4, wherein: The upper surface of the material passing plate (2) in the E area is provided with a plurality of dust collection holes (5) evenly distributed. The two pedestals (1) are provided with a material collecting box (16) located below the dust collection holes (5).

6. The wear resistant ball and screen assembly of claim 2 wherein: The long baffle (10) is provided with a discharge port adjacent to the right adjusting plate (11). The discharge port is located on the side of the right adjusting plate (11) away from the left adjusting plate (7).