High titanium slag autogenous mill

By introducing the autogenous grinding through hole and the rotary reset mechanism into the autogenous grinding mill, the problem of material hole blockage is solved, the stable flow of the material hole is achieved, and the normal operation of the autogenous grinding cylinder is ensured.

CN223439995UActive Publication Date: 2025-10-17CHAOYANG XINMING VANADIUM TITANIUM TECH CO LTD
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Patent Information

Application Number
CN202422807111.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-10-17
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

During the cleaning process of the existing autogenous grinding mill, the scraper scraping method is difficult to clear the material particles inside the autogenous grinding cylinder material hole, resulting in blockage and affecting the material flowability.

Method used

A high-titanium slag autogenous grinding machine was designed, which included an autogenous grinding through-hole mechanism and a rotating reset mechanism. The through-hole column was flipped and reset in the material hole to dredge the material inside the material hole. Combined with the magnetic positioning and screw lifting structure, the stable connection and reset of the through-hole column and the rotating cover were ensured.

Benefits of technology

Effectively clear the material particles inside the material hole to avoid blockage, improve the fluidity of the material hole, and ensure the normal operation of the grinding cylinder.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a high titanium slag autogenous mill, and belongs to the technical field of high titanium slag treatment. The high titanium slag autogenous mill comprises an autogenous grinding cover and an autogenous grinding through hole mechanism, an autogenous grinding barrel is installed in the autogenous grinding cover, material holes are formed in the surface of the autogenous grinding barrel, a mounting opening is formed in the top of the autogenous grinding cover, a mounting cover located on the outer side of the mounting opening is fixedly connected to the top of the autogenous grinding cover, and a lifting frame is movably connected to the interior of the mounting cover. The two sides of the lifting frame are fixedly connected with rotating covers, the through hole seats are movably connected to the inner sides of the rotating covers, the bottoms of the through hole seats are fixedly connected with through hole columns located in the material holes, and the rotating reset mechanisms are arranged on the inner sides of the rotating covers. And dredging force is applied to materials in the material holes, so that material particles are separated from the material holes, the situation that the material holes are blocked due to the influence of the material particles during working is avoided, and the working liquidity of the material holes is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to high titanium slag processing technical field, specifically, relate to a kind of high titanium slag autogenous mill. BACKGROUND

[0002] High titanium slag is a kind of slag material containing high titanium content, usually as by-product of metallurgical industry, it mainly comes from the titanium element in the ore in smelting process, is obtained by smelting and extraction process, high titanium slag usually contains high titanium content, when high titanium slag is further processed and used, high titanium slag is ground by autogenous mill, autogenous mill is a special equipment for crushing and grinding high titanium slag mineral, is important equipment for improving high titanium slag utilization rate, when autogenous mill works, autogenous cylinder is driven by motor, and high-speed rotation of autogenous cylinder and friction, collision between mineral particles make mineral particles gradually smaller, since surface material hole needs to keep open circulation when autogenous cylinder works, it is necessary to dredge material hole.

[0003] In related art, during the use of the autogenous mill, a scraper in contact with the autogenous cylinder is generally arranged to scrape and clean the autogenous cylinder to ensure the flow property of the material holes of the autogenous cylinder.

[0004] However, during the use of the autogenous mill, the scraping and cleaning manner of the scraper can only scrape and clean the surface of the autogenous cylinder, and it is difficult to dredge the material particles in the material holes of the autogenous cylinder, and even the material particles are more compacted to block the material holes, thereby affecting the material flow property of the autogenous cylinder. UTILITY MODEL CONTENTS

[0005] To make up for the above shortcomings, the utility model provides a high titanium slag autogenous mill which overcomes the above technical problems or at least partially solves the above problems.

[0006] The utility model is implemented as follows:

[0007] The utility model provides a high titanium slag autogenous mill, including autogenous cover, the inside of autogenous cover is installed with autogenous cylinder, and the surface of autogenous cylinder is provided with material hole.

[0008] Autogenous through-hole mechanism, the autogenous through-hole mechanism includes;

[0009] Mounting port, the mounting port is arranged at the top of autogenous cover, and the top of autogenous cover is fixedly connected with mounting cover outside the mounting port.

[0010] Lifting frame, the lifting frame is movably connected in the inside of mounting cover, and the two sides of lifting frame are fixedly connected with rotating cover.

[0011] The through hole seat is movably connected to the inner side of the rotating cover, and a through hole column is fixedly connected to the bottom of the through hole seat and located in the material hole.

[0012] The rotating reset mechanism is arranged in the inner side of the rotating cover.

[0013] In a preferred scheme, the rotating reset mechanism comprises a rotating hole, a rotating column and a spring, the rotating hole is arranged in the inner side of the rotating cover, the rotating column is movably connected to the inside of the rotating hole, and the spring is arranged in the inside of the rotating cover, one end of the spring is fixedly connected to the inner wall of the rotating cover, and the other end of the spring is fixedly connected to the surface of the rotating column.

[0014] In a preferred scheme, the inside of the through hole seat is provided with a connecting port, the connecting port is movably connected with a connecting rod, and the outer side of the connecting rod is fixedly connected with the inner side of the rotating column.

[0015] In a preferred scheme, the top of the inner wall of the connecting port is embeddedly connected with a magnetic block, the top of the connecting rod is embeddedly connected with a magnetic strip, and the top of the magnetic strip is magnetically connected with the bottom of the magnetic block.

[0016] In a preferred scheme, the top of the mounting cover is fixedly connected with a screw cylinder, the inside of the screw cylinder is screwedly connected with a screw rod, and the bottom of the screw rod is rotatably connected with the top of the lifting frame.

[0017] In a preferred scheme, the top of the lifting frame is provided with a rotating cavity, the inside of the rotating cavity is rotatably connected with a rotating seat, and the top of the rotating seat is fixedly connected with the bottom of the screw rod.

[0018] In a preferred scheme, the two sides of the top of the mounting cover are provided with lifting holes, the inside of the lifting hole is movably connected with a lifting column, and the bottom of the lifting column is fixedly connected with the top of the lifting frame.

[0019] In a preferred scheme, the outer side of the front side of the lifting column is embeddedly connected with a scale strip, a plurality of scale strips are arranged, and the plurality of scale strips are equidistantly distributed.

[0020] The high-titanium slag self-grinding machine has the following beneficial effects:

[0021] 1. By arranging the self-grinding through hole mechanism, the material in the material hole can be separated from the material hole when the material hole is used in cooperation with the self-grinding cylinder, so that the material particles are separated from the material hole, and the blockage of the material hole during work is avoided, and therefore the working flow of the material hole is improved.

[0022] 2. By setting the rotating reset mechanism, the rotating reset force can be applied to the through-hole column when the through-hole column cooperates with the hole, avoiding the situation that the through-hole column is difficult to reset due to the rotating force of the hole following the self-grinding cylinder, thus improving the reset effect of the through-hole column.

[0023] 3. By setting the connecting port and the connecting rod, the through-hole seat can be connected between the through-hole column and the rotating cover when the through-hole seat cooperates with the through-hole column, avoiding the situation that the through-hole column is difficult to connect with the rotating cover when working, thus improving the connection effect of the through-hole column and the rotating cover. BRIEF DESCRIPTION OF DRAWINGS

[0024] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings used in the embodiments will be briefly introduced as follows. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.

[0025] Figure 1 is the overall perspective view provided by the embodiments of the present application;

[0026] Figure 2 is the installation cover cross-sectional structure schematic diagram provided by the embodiments of the present application;

[0027] Figure 3 is the rotating cover cross-sectional structure schematic diagram provided by the embodiments of the present application;

[0028] Figure 4 is the through-hole seat cross-sectional structure schematic diagram provided by the embodiments of the present application;

[0029] In the figure: 1, self-grinding cover; 2, self-grinding cylinder; 3, hole; 4, installation port; 5, installation cover; 6, lifting frame; 7, rotating cover; 8, through-hole seat; 9, through-hole column; 10, rotating hole; 11, rotating column; 12, clockwork; 13, connecting port; 14, connecting rod; 15, magnetic block; 16, magnetic strip; 17, screw cylinder; 18, screw rod; 19, rotating cavity; 20, rotating seat; 21, lifting hole; 22, lifting column; 23, scale bar. DETAILED DESCRIPTION

[0030] In order to make the purpose, technical scheme and advantages of the utility model embodiment clearer, the technical scheme in the utility model embodiment will be clearly and completely described below in combination with the drawings in the utility model embodiment. Obviously, the described embodiment is part of the utility model, rather than all the embodiments. Based on the embodiment in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.

[0031] With reference to Figures 1-4 The utility model provides a kind of technical scheme: a kind of high titanium slag autogenous mill, including self-milling cover 1 and self-milling through-hole mechanism, the inside of self-milling cover 1 is equipped with self-milling cylinder 2, the surface of self-milling cylinder 2 is provided with material hole 3, can be used when material hole 3 cooperates self-milling cylinder 2, the material in the material hole 3 is applied dredging force, make material particle separate from material hole 3, avoid the situation that material hole 3 is blocked when working by material particle, thus improve the working flow of material hole 3.

[0032] With reference to Figures 1-4 In a preferred embodiment, the self-milling through-hole mechanism includes a mounting port 4, which is provided in the top of the self-milling cover 1. The top of the self-milling cover 1 is fixedly connected with a mounting cover 5 located outside the mounting port 4. A lifting frame 6 is movably connected inside the mounting cover 5. The lifting frame 6 is fixedly connected with a rotating cover 7 on both sides. A through-hole seat 8 is movably connected inside the rotating cover 7. The bottom of the through-hole seat 8 is fixedly connected with a through-hole column 9 located inside the material hole 3. A rotating reset mechanism is provided inside the rotating cover 7. The lifting frame 6 and the rotating cover 7 are installed inside the self-milling cover 1 through the mounting port 4 and the mounting cover 5. The through-hole seat 8 and the through-hole column 9 are moved to the top of the self-milling cylinder 2. The through-hole column 9 enters the inside of the material hole 3. When the self-milling cylinder 2 rotates, the through-hole column 9 is affected by the rotation force of the material hole 3 following the self-milling cylinder 2 and flips to separate from the material hole 3. When the rotating material hole 3 on the surface of the self-milling cylinder 2 aligns with the through-hole column 9, the through-hole column 9 flips again into the inside of the material hole 3. Force is applied to the blocked material particles inside the material hole 3 to dredge the work. The flow of the material hole 3 is ensured when the self-milling cylinder 2 works. The rotating reset mechanism includes a rotating hole 10, a rotating column 11 and a clockwork 12. The rotating hole 10 is provided inside the rotating cover 7. The rotating column 11 is movably connected inside the rotating hole 10. The clockwork 12 is provided inside the rotating cover 7. One end of the clockwork 12 is fixedly connected with the inner wall of the rotating cover 7. The other end of the clockwork 12 is fixedly connected with the surface of the rotating column 11. When the through-hole column 9 works with the material hole 3, the rotating reset force is applied to the through-hole column 9. The rotating difficulty of the through-hole column 9 affected by the rotation force of the material hole 3 following the self-milling cylinder 2 is avoided. The reset effect of the through-hole column 9 is improved.

[0033] With reference to Figures 2-4In a preferred implementation, the connecting port 13 is arranged inside the through-hole seat 8, the connecting rod 14 is movably connected inside the connecting port 13, the outer side of the connecting rod 14 is fixedly connected with the inner side of the rotating column 11, the through-hole seat 8 can be used in cooperation with the through-hole column 9 to connect the through-hole column 9 and the rotating cover 7, avoiding the difficulty in connecting the through-hole column 9 and the rotating cover 7 during the operation of the through-hole column 9, thus improving the connection effect of the through-hole column 9 and the rotating cover 7, the top of the inner wall of the connecting port 13 is embedded with the magnetic block 15, the top of the connecting rod 14 is embedded with the magnetic strip 16, and the top of the magnetic strip 16 is magnetically connected with the bottom of the magnetic block 15, so that the through-hole seat 8 can be used in cooperation with the connecting rod 14 to magnetically position the through-hole column 9 and the connecting rod 14, avoiding the difficulty in positioning the through-hole column 9 during the use of the through-hole column 9, thus improving the positioning convenience of the through-hole column 9.

[0034] Referring to Figure 2 In a preferred implementation, the screw cylinder 17 is fixedly connected to the top of the mounting cover 5, the screw rod 18 is threadedly connected inside the screw cylinder 17, and the bottom of the screw rod 18 is rotatably connected with the top of the lifting frame 6, so that the mounting cover 5 can provide a force medium for the user to exert a lifting force on the lifting frame 6 when the mounting cover 5 is used in cooperation with the lifting frame 6, avoiding the difficulty in lifting and moving the lifting frame 6 during the use of the lifting frame 6, thus improving the lifting and moving convenience of the lifting frame 6, the top of the lifting frame 6 is provided with the rotating cavity 19, the rotating seat 20 is rotatably connected inside the rotating cavity 19, and the top of the rotating seat 20 is fixedly connected with the bottom of the screw rod 18, so that the screw rod 18 can be rotatably connected with the lifting frame 6 when the screw rod 18 is used in cooperation with the lifting frame 6, avoiding the difficulty in exerting a lifting force on the lifting frame 6 or separating the screw rod 18 from the lifting frame 6 during the use of the screw rod 18, thus improving the connection effect of the screw rod 18 and the lifting frame 6.

[0035] Referring to Figure 2 In a preferred implementation, the lifting holes 21 are arranged on both sides of the top of the mounting cover 5, the lifting columns 22 are movably connected inside the lifting holes 21, and the bottoms of the lifting columns 22 are fixedly connected with the top of the lifting frame 6, so that the lifting frame 6 can be stably lifted when the screw rod 18 is used in cooperation with the lifting frame 6, avoiding the position deviation of the lifting frame 6 during the lifting of the lifting frame 6, thus improving the lifting stability of the lifting frame 6, the outer side of the front side of the lifting column 22 is embedded with the scale bar 23, a plurality of scale bars 23 are arranged at equal distances, and the scale bars 23 can provide a reference medium for the user to determine the actual lifting height of the lifting frame 6 when the lifting column 22 is used in cooperation with the lifting frame 6, avoiding the difficulty in determining the lifting position of the lifting frame 6 during the use of the lifting frame 6, thus improving the height determination of the lifting frame 6.

[0036] Specifically, the working process or working principle of the high-titanium slag self-milling machine is as follows: in use, first, according to the actual position of the material hole 3 on the surface of the self-milling cylinder 2, the through-hole column 9 is moved on the surface of the connecting rod 14 by hand holding the through-hole seat 8, and the position of the through-hole column 9 is adjusted by translation to make the through-hole seat 8 consistent with the position of the material hole 3. At this time, the magnetic strip 16 cooperates with the magnetic suction block 15 to perform magnetic suction positioning work between the through-hole seat 8 and the adjusted through-hole column 9 and the connecting rod 14. Then, the lifting frame 6 and the rotating cover 7 are installed into the self-milling cover 1 through the installation port 4 cooperating with the installation cover 5. At this time, the connecting rod 14 drives the through-hole seat 8 and the through-hole column 9 to move to the top of the self-milling cylinder 2 through the connecting port 13. Then, according to the actual position of the self-milling cylinder 2, the lifting force is exerted on the lifting frame 6 by rotating the screw rod 18 cooperating with the screw cylinder 17 by hand, so that the through-hole column 9 is lifted by the rotating cover 7 cooperating with the connecting rod 14, and the through-hole column 9 enters the inside of the material hole 3. At this time, the rotating seat 20 rotates in the rotating cavity 19 to rotate and connect the screw rod 18 and the lifting frame 6, so as to ensure the lifting force exerted by the screw rod 18 on the lifting frame 6. In this process, the lifting column 22 moves in the lifting port to stably lift the lifting frame 6 and the installation cover 5. At the same time, the lifting position of the lifting frame 6 can be determined by referring to the scale bar 23 on the surface of the lifting column 22. When the self-milling cylinder 2 rotates to process the high-titanium slag material, the through-hole column 9 is turned off from the material hole 3 due to the rotation force of the material hole 3. At this time, the through-hole column 9 exerts a rotating force on the rotating column 11 through the through-hole seat 8 cooperating with the connecting port 13 and the connecting rod 14, so that the clockwork spring 12 is wound to prepare for the subsequent rotating reset force of the through-hole column 9. At the same time, the bottom of the turned through-hole column 9 is always in contact with the surface of the self-milling cylinder 2. As the material hole 3 on the back side of the surface of the self-milling cylinder 2 rotates with the self-milling cylinder 2, when the rotating material hole 3 is aligned with the through-hole column 9, the through-hole column 9 is turned into the material hole 3 due to the torsion of the clockwork spring 12, so as to exert a force on the blocked material particles in the material hole 3 to dredge the material hole 3. The through-hole column 9 is sequentially used to dredge the material hole 3 rotating with the self-milling cylinder 2, so as to ensure the flowability of the material hole 3 during the working of the self-milling cylinder 2.

[0037] It should be noted that the self-milling cover 1, the self-milling cylinder 2 and the material hole 3 are devices or equipment existing in the prior art or devices or equipment that can be realized in the prior art. Their power supply, specific components and principles are clear to those skilled in the art, and therefore will not be described in detail.

Claims

1. A high titanium slag autogenous grinding mill, comprising an autogenous grinding cover (1), an autogenous grinding cylinder (2) installed inside the autogenous grinding cover (1), and a material hole (3) provided on the surface of the autogenous grinding cylinder (2), characterized in that ; Self-grinding through-hole mechanism, the self-grinding through-hole mechanism comprising: A mounting opening (4); the mounting opening (4) is provided at the top of the self-grinding cover (1); and the top of the self-grinding cover (1) is fixedly connected to a mounting cover (5) located outside the mounting opening (4); A lifting frame (6); the lifting frame (6) is movably connected to the interior of the mounting cover (5), and both sides of the lifting frame (6) are fixedly connected to a rotating cover (7); A through-hole seat (8); the through-hole seat (8) is movably connected to the inner side of the rotating cover (7); the bottom of the through-hole seat (8) is fixedly connected to a through-hole column (9) located inside the material hole (3); Rotation reset mechanism; the rotation reset mechanism is arranged on the inner side of the rotation cover (7).

2. The high titanium slag autogenous grinding mill according to claim 1, characterized in that: The rotation reset mechanism comprises a rotation hole (10), a rotation column (11) and a spring (12); the rotation hole (10) is opened on the inner side of the rotation cover (7); the rotation column (11) is movably connected to the inside of the rotation hole (10); the spring (12) is arranged inside the rotation cover (7); one end of the spring (12) is fixedly connected to the inner wall of the rotation cover (7); and the other end of the spring (12) is fixedly connected to the surface of the rotation column (11).

3. The high titanium slag autogenous grinding mill according to claim 2, characterized in that: A connecting port (13) is provided inside the through hole seat (8), a connecting rod (14) is movably connected inside the connecting port (13), and the outer side of the connecting rod (14) is fixedly connected to the inner side of the rotating column (11).

4. The high titanium slag autogenous grinding mill according to claim 3, characterized in that: A magnetic block (15) is embedded in the top of the inner wall of the connection port (13), a magnetic strip (16) is embedded in the top of the connection rod (14), and the top of the magnetic strip (16) is magnetically connected to the bottom of the magnetic block (15).

5. The high titanium slag autogenous grinding mill according to claim 1, characterized in that: The top of the mounting cover (5) is fixedly connected to a screw barrel (17), the internal thread of the screw barrel (17) is connected to a screw rod (18), and the bottom of the screw rod (18) is rotatably connected to the top of the lifting frame (6).

6. The high titanium slag autogenous grinding mill according to claim 5, characterized in that: A rotating chamber (19) is provided at the top of the lifting frame (6), and a rotating seat (20) is rotatably connected inside the rotating chamber (19), and the top of the rotating seat (20) is fixedly connected to the bottom of the screw rod (18).

7. The high titanium slag autogenous grinding mill according to claim 1, characterized in that: Lifting holes (21) are provided on both sides of the top of the mounting cover (5), and lifting columns (22) are movably connected inside the lifting holes (21), and the bottom of the lifting columns (22) is fixedly connected to the top of the lifting frame (6).

8. The high titanium slag autogenous grinding mill according to claim 7, characterized in that: A scale bar (23) is inlaid and connected to the outer side of the front side of the lifting column (22), and a plurality of the scale bars (23) are provided, and the plurality of scale bars (23) are distributed at equal distances.