A method and apparatus for beneficiating magnetite ore with a high content of filling
The magnetite beneficiation unit, through grinding, extrusion, and filtration steps, solves the problem of concentrate inclusions caused by high backfill content, improves concentrate quality, and reduces production costs.
Patent Information
- Application Number
- CN202411594631.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-09
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2044-11-09
AI Technical Summary
Magnetite ore with a high content of infilling material results in larger inclusions in the concentrate during the beneficiation process, affecting the quality of the concentrate and increasing the difficulty and cost of subsequent beneficiation.
A magnetite ore beneficiation device with a high content of backfill material is used, including a grinding component, a vibrating component, and a filtering component. The backfill material is removed through grinding, extrusion, and filtering steps to improve the quality of the concentrate.
It effectively removes backfill material, improves concentrate quality, reduces production costs, minimizes equipment damage, and achieves efficient mineral processing.
Smart Images

Figure CN119702115B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of ore dressing method and device, in particular to a magnetite ore dressing method and device with high filling content. BACKGROUND
[0002] Magnetite ore dressing refers to the process of separating minerals by using the magnetic difference of magnetite ore through magnetic separation method. Magnetic separation method is a mineral dressing method that separates minerals in a non-uniform magnetic field by using the difference in magnetism of various minerals. Filling mining method has the advantages of safe operation, high recovery rate, and less damage to the ecological environment, and is increasingly widely used due to the increasing attention to environmental problems in China.
[0003] Due to the influence of filling body quality, mining blasting and other factors, the ore mined by the filling mining method will cause various adverse effects on the ore dressing environment after entering the ore dressing process. The existence of the filling body causes large inclusions in the magnetic concentrate, affecting the quality of the concentrate. The mixing of the filling body in the mined ore increases the difficulty of subsequent separation, increases the cost, and even affects production. SUMMARY
[0004] The purpose of the present application is to provide a magnetite ore dressing method and device with high filling content to solve the problems raised in the background.
[0005] To solve the above technical problems, the present application is realized by the following technical scheme:
[0006] The present application is a magnetite ore dressing method and device with high filling content, which comprises a base, a top plate fixedly connected to the top of the base, a motor fixedly connected to the end face of the top plate away from the base, an electric telescopic rod provided on the surface of the motor, a control panel fixedly connected to the surface of the base, a material collecting tank fixedly connected to the end face of the base away from the control panel, and an engine provided on the inner wall of the base away from the top plate. The number of electric telescopic rods is two, and the two electric telescopic rods are symmetrically distributed on the surface of the base. The present application further comprises:
[0007] A grinding component, which comprises a vertical rod, a conductive rod fixedly connected to the surface of the vertical rod, and a fixed shaft plate slidably connected to the surface of the conductive rod away from the vertical rod.
[0008] A vibrating component, which comprises a lifting vertical plate, a pull rod fixedly connected to the end face of the lifting vertical plate, and a rotating plate fixedly connected to the surface of the pull rod.
[0009] A filtering component, which comprises an output rod, an output vertical shaft fixedly connected to the end face of the output rod, and a rotating shaft plate fixedly connected to the surface of the output vertical shaft.
[0010] Further, the grinding component comprises a grinding push plate, an end surface of the grinding push plate is fixedly connected with an extrusion block, an end surface of the top plate close to one end of the grinding push plate is fixedly connected with an arc seat, a surface of the arc seat is rotatably connected with a vertical shaft, a surface of the vertical shaft is fixedly connected with a push vertical plate, an end surface of the push vertical plate is fixedly connected with an elastic rod;
[0011] The number of the vertical rods is two, the two vertical rods are symmetrically distributed on the surface of the control plate, the bottom of the fixed shaft plate is fixedly connected with the top of the base, an end surface of the conducting rod away from the vertical rod is fixedly connected with an end surface of the grinding push plate away from the extrusion block, the number of the arc seats is four, the four arc seats are divided into two groups, and the number of each group is two, the two groups of arc seats are symmetrically distributed on the surface of the base, and an end surface of the elastic rod away from the push vertical plate is fixedly connected with the surface of the top plate.
[0012] Further, an end surface of the motor away from the top plate is fixedly connected with a lifting pressure rod, an end surface of the lifting pressure rod is fixedly connected with a lifting pressure plate, an end surface of the electric telescopic rod away from the lifting pressure plate is fixedly connected with a lifting rod, an end surface of the lifting pressure plate close to the lifting pressure rod is in contact with the end surface of the electric telescopic rod, and the number of the lifting rods is two, the two lifting rods are symmetrically distributed on the surface of the electric telescopic rod.
[0013] Further, a surface of the lifting rod away from the electric telescopic rod is slidably connected with a sliding plate, a surface of the top plate close to the sliding plate is provided with a sliding groove, an end surface of the sliding plate away from the lifting rod is fixedly connected with an extrusion spring, an end surface of the extrusion spring away from the sliding plate is fixedly connected with an extrusion plate, a surface of the extrusion plate is fixedly connected with an auxiliary plate, a surface of the extrusion plate close to the auxiliary plate is fixedly connected with an elastic arc plate, the surface of the sliding plate is slidably connected with the inner wall of the sliding groove, the surface of the extrusion block penetrates through the sliding plate to the end surface of the extrusion plate, and the end surface of the elastic arc plate is fixedly connected with the surface of the extrusion plate.
[0014] Further, the vibration component comprises a rotating arc plate, a surface of the rotating arc plate is provided with a positioning inclined plate, a surface of the positioning inclined plate away from the rotating arc plate is provided with a clamping plate, an end surface of the clamping plate away from the rotating arc plate is fixedly connected with an inclined pressing plate, and a surface of the top plate close to the inclined pressing plate is fixedly connected with a positioning horizontal plate.
[0015] The number of the lifting vertical plates is two, the two lifting vertical plates are symmetrically distributed on the surface of the control plate, the end surface of the positioning inclined plate is fixedly connected with the inner wall of the top plate, the end surface of the rotating plate is fixedly connected with the surface of the rotating arc plate away from the positioning inclined plate, and the number of the rotating plates is four, the four rotating plates are equidistantly distributed along the surface of the pull rod.
[0016] Further, the inner wall of the top plate near the one side of the positioning inclined plate is provided with an inclined plate groove, the inner wall of the end of the inclined plate groove far from the pull rod is fixedly connected with a positioning column rod, the surface of the positioning column rod is fixedly connected with a feeding plate, the inner wall of the top plate near the one side of the feeding plate is fixedly connected with a filter plate, the surface of the turning plate near the one side of the top plate is fixedly connected with a T-shaped stretching plate, the end surface of the T-shaped stretching plate is fixedly connected with a stretching connecting plate, and the surface of the base near the T-shaped stretching plate is fixedly connected with the surface of the stretching connecting plate.
[0017] Further, the filter part comprises a circular-arc filter plate, the end surface of the circular-arc filter plate far from the turning shaft plate is fixedly connected with a positioning elastic plate, the surface of the turning shaft plate near the one side of the positioning elastic plate is fixedly connected with a positioning turning rod, the surface of the positioning turning rod is fixedly connected with a reset plate, and the surface of the turning shaft plate near the one side of the positioning turning rod is fixedly connected with a blanking clamp plate.
[0018] The number of the circular-arc filter plates is four, the four circular-arc filter plates are distributed in a central symmetry on the surface of the output vertical shaft, the number of the positioning turning rods is four, the four positioning turning rods are distributed in a central symmetry on the surface of the output vertical shaft turning shaft plate, and the number of the blanking clamp plates is four, the four blanking clamp plates are distributed in a central symmetry on the surface of the turning shaft plate.
[0019] Further, the end surface of the vertical rod near the one side of the base is fixedly connected with a telescopic pushing rod, the end surface of the telescopic pushing rod far from the vertical rod is fixedly connected with a pushing plate, the surface of the pushing plate is slidably connected with a pushing groove, the inner wall of the base near the one end of the pushing groove is fixedly connected with a connecting plate, the inner wall of the connecting plate is fixedly connected with a turning shaft clamp plate, and the surface of the turning shaft clamp plate is provided with a sundry material outlet.
[0020] The number of the pushing plates is two, the two pushing plates are distributed in a symmetry on the surface of the telescopic pushing rod, the surface of the pushing groove is fixedly connected with the inner wall of the base, the output rod penetrates through the inner wall of the pushing groove to the end surface of the output vertical shaft, the number of the connecting plates is four, the four connecting plates are divided into two groups, the number of each group is two, the two groups of connecting plates are distributed in a symmetry on the surface of the turning shaft clamp plate, and the end surface of the pushing groove far from the telescopic pushing rod is fixedly connected with the surface of the material collecting groove.
[0021] Further, a magnetite ore dressing method with a high filling body content comprises the following steps.
[0022] S1: when the ore to be processed is put into the device, the control plate is started to drive the vertical rod to run, the vertical rod drives the conductive rod to run along the inner wall of the fixed shaft plate when the vertical rod runs, and the fixed shaft plate drives the grinding pushing plate to run when the fixed shaft plate runs.
[0023] S2: when the grinding push plate runs, the extrusion block is pushed to run, the two sides of the extrusion block run, the ore in it is ground and crushed, and when the grinding push plate runs, when running to a certain position, the push stand plate is in collision contact;
[0024] S3: the lifting stand plate drives the pull rod to run, when the pull rod runs, the rotating plate is driven to run, when the rotating plate runs, the arc plate is driven to run along the surface of the positioning inclined plate, and when the arc plate runs, the clamping plate is driven to run;
[0025] S4: when the clamping plate runs, the inclined pressing plate is driven to run, and finally runs to the surface of the positioning horizontal plate, the positioning horizontal plate limits it, and when the inclined pressing plate runs, the ore in it is extruded and ground, and the ore material in it is run.
[0026] The present application has the following beneficial effects:
[0027] When the device runs, the ore to be processed is put into the device, the control plate in the grinding part is started, the vertical rod is driven to run, the conduction rod is driven to run along the inner wall of the fixed shaft plate when the vertical rod runs, the grinding push plate is driven to run when the fixed shaft plate runs, the extrusion block is pushed to run when the grinding push plate runs, the two sides of the extrusion block run, the ore in it is ground and crushed, and when the grinding push plate runs, when running to a certain position, the push stand plate is in collision contact, the push stand plate drives the vertical shaft to run along the surface of the arc seat, and the push stand plate drives the elastic rod to run, the elastic rod generates elastic tension, prevents damage caused by the running of the grinding push plate being too large, and assists the resetting thereof, at the same time, the electric telescopic rod is started, the lifting rod is driven to run, the sliding plate is driven to run along the inner wall of the sliding groove when the lifting rod runs, and the extrusion spring is driven to run when the lifting rod runs, the extrusion plate is driven to run, the extrusion plate drives the auxiliary plate to run, and the ore in it is ground, at the same time, when the sliding plate runs along the sliding groove, the two extrusion plates extrude the elastic arc plate, the elastic arc plate generates elastic pressure, protects the parts in the device, and prevents damage caused by running.
[0028] The present application when running, at this time in the vibration component, the control panel will drive the lifting vertical plate to run, the lifting vertical plate will drive the pull rod to run, when the pull rod runs, it will drive the rotating plate to run, when the rotating plate runs, it will drive the arc plate to run along the surface of the positioning inclined plate, at the same time, when the arc plate runs, it will drive the clamping plate to run, when the clamping plate runs, it will drive the inclined pressing plate to run, and finally run to the surface of the positioning horizontal plate, the positioning horizontal plate will limit it, at the same time, when the inclined pressing plate runs, it will extrude and grind the ore in it, and run the ore material in it, drive the ground material to the surface of the feeding plate, finally fall through the filter plate, at the same time, when the arc plate runs, it will drive the T-shaped stretching plate to run, when the T-shaped stretching plate runs, it will drive the stretching connecting plate to stretch and run, through the stretching operation of the stretching connecting plate, the device in it is protected, preventing the incomplete grinding ore from damaging the device in it.
[0029] The present application when running, at this time in the filter component, the engine starts, will drive the output rod to run, when the output rod runs, it will drive the output vertical shaft to run, when the output vertical shaft runs, it will drive the rotating shaft plate to run along the surface of the rotating shaft clamping plate, at the same time, when the output vertical shaft runs, it will drive the circular arc filter plate to run, when the circular arc filter plate runs, it will filter the material falling in it, so that the ground material falls in it, when the material that cannot fall off falls through the surface of the circular arc filter plate and collides with the falling material clamping plate, finally falls through the falling material clamping plate into the positioning elastic plate, the positioning elastic plate falls into the surface of the rotating shaft clamping plate through the elastic force, finally falls out through the impurity outlet, when the ground material falls into the pushing chute, at this time, when the vertical rod runs, it will drive the telescopic pushing rod to run, the telescopic pushing rod will drive the pushing plate to run along the surface of the pushing chute, finally push the material in the pushing chute to fall into the material collecting chute.
[0030] Of course, implementing any product of the present application does not necessarily need to achieve all the advantages above at the same time. BRIEF DESCRIPTION OF DRAWINGS
[0031] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creating laborious work.
[0032] Figure 1 It is a schematic diagram of the overall structure of the present application;
[0033] Figure 2 It is a cross-sectional view of the overall structure of the present application;
[0034] Figure 3Structure diagram of grinding component of the present application;
[0035] Figure 4 Structure diagram of grinding component of the present application; Figure 3
[0036] Figure 5 Structure diagram of vibrating component of the present application;
[0037] Figure 6 Structure diagram of vibrating component of the present application; Figure 5
[0038] Figure 7 Structure diagram of vibrating component of the present application; Figure 5
[0039] Structure diagram of vibrating component of the present application; Figure 8
[0040] Structure diagram of vibrating component of the present application; Figure 9 Figure 8 Structure diagram of vibrating component of the present application;
[0041] Figure 10 Structure diagram of vibrating component of the present application;
[0042] In the drawings, the components represented by the respective reference numerals are listed as follows:
[0043] In the drawings, the components represented by the respective reference numerals are listed as follows:1. Grinding component; 2. Vibrating component; 3. Filtering component; 4. Engine; 5. Motor; 6. Electric telescopic rod; 7. Control panel; 8. Base; 9. Top plate; 10. Material collecting tank; 21. Vertical rod; 22. Conduction rod; 23. Fixed shaft plate; 24. Grinding push plate; 25. Extrusion block; 26. Arc seat; 27. Vertical shaft; 28. Push vertical plate; 29. Spring rod; 30. Extrusion plate; 31. Auxiliary plate; 32. Spring arc plate; 33. Lifting and pressing rod; 34. Lifting and pressing plate; 35. Lifting rod; 36. Slide plate; 37. Slide groove; 38. Extrusion spring; 41. Lifting vertical plate; 42. Pull rod; 43. Turn plate; 44. Turn arc plate; 45. Positioning inclined plate; 46. Clamping plate; 47. Inclined pressing plate; 48. Positioning horizontal plate; 49. Inclined plate groove; 50. Positioning column rod; 51. Feeding plate; 52. Filtering plate; 53. T-shaped stretching plate; 54. Stretching connecting plate; 61. Output rod; 62. Output vertical shaft; 63. Turn shaft plate; 64. Circular arc filtering plate; 65. Positioning spring plate; 66. Positioning turn rod; 67. Reset plate; 68. Material falling clamping plate; 69. Impurity outlet; 70. Telescopic pushing rod; 71. Pushing plate; 72. Pushing groove; 73. Connecting plate; 74. Turn shaft clamping plate. DETAILED DESCRIPTION
[0044] Clearly, the embodiments described are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.
[0045] Please refer to Figures 1-10 As shown in the figure, the present application is a kind of magnetite ore dressing method and device with high filling content, including base 8, the top of base 8 is fixedly connected with top plate 9, the end face of the end of top plate 9 away from base 8 is fixedly connected with motor 5, the surface of motor 5 is provided with electric telescopic rod 6, the surface of base 8 is fixedly connected with control panel 7, the end face of the end of base 8 away from control panel 7 is fixedly connected with material collecting tank 10, the inner wall of the end of base 8 away from top plate 9 is provided with engine 4, the number of electric telescopic rod 6 is two, two electric telescopic rods 6 are symmetrically distributed on the surface of base 8, and the present application further comprises:
[0046] Grinding part 1, grinding part 1 includes vertical rod 21, control panel 7 starts, which drives vertical rod 21 to run, when vertical rod 21 runs, it drives conductive rod 22 to run along the inner wall of fixed shaft plate 23, the surface of vertical rod 21 is fixedly connected with conductive rod 22, the surface of the end of conductive rod 22 away from vertical rod 21 is slidably connected with fixed shaft plate 23, when fixed shaft plate 23 runs, it drives grinding push plate 24 to run;
[0047] Vibration part 2, vibration part 2 includes lifting vertical plate 41, control panel 7 drives lifting vertical plate 41 to run, lifting vertical plate 41 drives pull rod 42 to run, the end surface of lifting vertical plate 41 is fixedly connected with pull rod 42, when pull rod 42 runs, it drives rotating plate 43 to run, the surface of pull rod 42 is fixedly connected with rotating plate 43, when rotating plate 43 runs, it drives arc plate 44 to run along the surface of positioning inclined plate 45;
[0048] Filtering part 3, filtering part 3 includes output rod 61, engine 4 starts, which drives output rod 61 to run, when output rod 61 runs, it drives output vertical shaft 62 to run, the end surface of output rod 61 is fixedly connected with output vertical shaft 62, when output vertical shaft 62 runs, it drives rotating shaft plate 63 to run along the surface of rotating shaft clamping plate 74, at the same time, when output vertical shaft 62 runs, it drives circular arc filter plate 64 to run, the surface of output vertical shaft 62 is fixedly connected with rotating shaft plate 63.
[0049] The grinding part 1 comprises a grinding push plate 24, when the grinding push plate 24 runs, the extrusion block 25 runs, the two sides of the extrusion block 25 run, the ore in the middle is ground and crushed, when the grinding push plate 24 runs, when running to a certain position, the collision contact with the push stand plate 28 occurs, the end surface of the grinding push plate 24 is fixedly connected with the extrusion block 25, the end surface of the top plate 9 close to one end of the grinding push plate 24 is fixedly connected with the arc seat 26, the surface of the arc seat 26 is rotatably connected with the vertical shaft 27, the surface of the vertical shaft 27 is fixedly connected with the push stand plate 28, the push stand plate 28 drives the vertical shaft 27 to run along the surface of the arc seat 26, the end surface of the push stand plate 28 is fixedly connected with the elastic rod 29, at the same time, the push stand plate 28 drives the elastic rod 29 to run, the elastic rod 29 generates elastic tensile force, prevents the grinding push plate 24 from running too much and causing damage, and assists the reset;
[0050] The number of the vertical rods 21 is two, the two vertical rods 21 are symmetrically distributed on the surface of the control plate 7, the bottom of the fixed shaft plate 23 is fixedly connected with the top of the base 8, the end surface of the transmission rod 22 away from one end of the vertical rod 21 is fixedly connected with the end surface of the grinding push plate 24 away from one end of the extrusion block 25, the number of the arc seats 26 is four, the four arc seats 26 are divided into two groups, and the number of each group is two, the two groups of arc seats 26 are symmetrically distributed on the surface of the base 8, the end surface of the elastic rod 29 away from one end of the push stand plate 28 is fixedly connected with the surface of the top plate 9.
[0051] The end surface of the motor 5 away from one end of the top plate 9 is fixedly connected with the lifting pressure rod 33, the end surface of the lifting pressure rod 33 is fixedly connected with the lifting pressure plate 34, the end surface of the electric telescopic rod 6 away from one end of the lifting pressure plate 34 is fixedly connected with the lifting rod 35, at the same time, the electric telescopic rod 6 is started, drives the lifting rod 35 to run, when the lifting rod 35 runs, drives the sliding plate 36 to run along the inner wall of the sliding groove 37, at the same time, when the lifting rod 35 runs, drives the extrusion spring 38 to run, the end surface of the lifting pressure plate 34 close to one end of the lifting pressure rod 33 is in contact with the end surface of the electric telescopic rod 6, the number of the lifting rod 35 is two, the two lifting rods 35 are symmetrically distributed on the surface of the electric telescopic rod 6.
[0052] The surface of the lifting rod 35 away from one end of the electric telescopic rod 6 is slidingly connected with a sliding plate 36, the surface of the top plate 9 close to one side of the sliding plate 36 is provided with a sliding groove 37, and the end surface of the sliding plate 36 away from one end of the lifting rod 35 is fixedly connected with an extrusion spring 38. When the extrusion spring 38 operates, it will drive the extrusion plate 30 to operate, and the extrusion plate 30 will drive the auxiliary plate 31 to operate, so as to grind the ore in it. The end surface of the extrusion spring 38 away from one end of the sliding plate 36 is fixedly connected with the extrusion plate 30. When the sliding plate 36 operates along the sliding groove 37, it will drive the two extrusion plates 30 to extrude and operate the elastic arc plate 32. The elastic arc plate 32 generates elastic pressure to protect the components in the device and prevent operation damage. The surface of the extrusion plate 30 is fixedly connected with the auxiliary plate 31, the surface of the extrusion plate 30 close to one side of the auxiliary plate 31 is fixedly connected with the elastic arc plate 32, the surface of the sliding plate 36 is slidingly connected with the inner wall of the sliding groove 37, the surface of the extrusion block 25 penetrates through the sliding plate 36 to the end surface of the extrusion plate 30, and the end surface of the elastic arc plate 32 is fixedly connected with the surface of the extrusion plate 30.
[0053] The vibration component 2 comprises a rotating arc plate 44, and when the rotating arc plate 44 operates, it will drive the clamping plate 46 to operate. The surface of the rotating arc plate 44 is provided with a positioning inclined plate 45, the surface of the positioning inclined plate 45 away from one side of the rotating arc plate 44 is provided with the clamping plate 46, and when the clamping plate 46 operates, it will drive the inclined pressing plate 47 to operate and finally operate to the surface of the positioning horizontal plate 48. The positioning horizontal plate 48 will limit it. The end surface of the clamping plate 46 away from one end of the rotating arc plate 44 is fixedly connected with the inclined pressing plate 47. When the inclined pressing plate 47 operates, it will extrude and grind the ore in it, and will operate the ore material in it, drive the ground material to the surface of the feeding plate 51, and finally drop through the filter plate 52. The surface of the top plate 9 close to one side of the inclined pressing plate 47 is fixedly connected with the positioning horizontal plate 48.
[0054] The number of the lifting vertical plate 41 is two, and the two lifting vertical plates 41 are symmetrically distributed on the surface of the control plate 7. The end surface of the positioning inclined plate 45 is fixedly connected with the inner wall of the top plate 9, the end surface of the rotating plate 43 is fixedly connected with the surface of the rotating arc plate 44 away from the positioning inclined plate 45, and the number of the rotating plate 43 is four. The four rotating plates 43 are equally distributed along the surface of the pull rod 42.
[0055] The inner wall of the top plate 9 near the positioning inclined plate 45 side is provided with an inclined plate groove 49, the inner wall of the inclined plate groove 49 far away from the one end of the pull rod 42 is fixedly connected with a positioning column rod 50, the surface of the positioning column rod 50 is fixedly connected with a feeding plate 51, the inner wall of the top plate 9 near the feeding plate 51 side is fixedly connected with a filter plate 52, the surface of the arc plate 44 near the top plate 9 side is fixedly connected with a T-shaped stretching plate 53, when the arc plate 44 operates, the T-shaped stretching plate 53 will operate, when the T-shaped stretching plate 53 operates, the stretching connecting plate 54 will operate, the end surface of the T-shaped stretching plate 53 is fixedly connected with the stretching connecting plate 54, through the stretching operation of the stretching connecting plate 54, the device inside is protected, the device inside is prevented from being damaged by the incomplete grinding ore, the surface of the base 8 near the T-shaped stretching plate 53 is fixedly connected with the surface of the stretching connecting plate 54.
[0056] The filter part 3 comprises a circular arc filter plate 64, when the circular arc filter plate 64 operates, the material falling inside will be filtered, the material after grinding is dropped inside, the end surface of the circular arc filter plate 64 far away from the one end of the rotating shaft plate 63 is fixedly connected with a positioning elastic plate 65, when the material that cannot fall off collides with the material falling clamping plate 68 through the surface of the circular arc filter plate 64, finally falls into the positioning elastic plate 65 through the material falling clamping plate 68, the positioning elastic plate 65 falls into the surface of the rotating shaft clamping plate 74 through the elastic force, finally falls out through the sundry material outlet 69, the surface of the rotating shaft plate 63 near the positioning elastic plate 65 side is fixedly connected with a positioning rotating rod 66, the surface of the positioning rotating rod 66 is fixedly connected with a reset plate 67, the surface of the rotating shaft plate 63 near the positioning rotating rod 66 side is fixedly connected with a material falling clamping plate 68.
[0057] The number of the circular arc filter plate 64 is four, the four circular arc filter plates 64 are distributed in the surface center of the output vertical shaft 62 in a symmetrical manner, the number of the positioning rotating rod 66 is four, the four positioning rotating rods 66 are distributed in the surface center of the rotating shaft plate 63 of the output vertical shaft 62 in a symmetrical manner, the number of the material falling clamping plate 68 is four, the four material falling clamping plates 68 are distributed in the surface center of the rotating shaft plate 63 in a symmetrical manner.
[0058] The end surface of the vertical rod 21 near the base 8 side is fixedly connected with a telescopic pushing rod 70, the end surface of the telescopic pushing rod 70 far away from the vertical rod 21 side is fixedly connected with a pushing plate 71, when the material after grinding falls into the pushing groove 72, at this time, when the vertical rod 21 operates, the telescopic pushing rod 70 will operate, the telescopic pushing rod 70 will drive the pushing plate 71 to operate along the surface of the pushing groove 72, finally pushes the material in the pushing groove 72 to fall into the material collecting groove 10, the surface of the pushing plate 71 is slidingly connected with the pushing groove 72, the inner wall of the base 8 near the one end of the pushing groove 72 is fixedly connected with a connecting plate 73, the inner wall of the connecting plate 73 is fixedly connected with a rotating shaft clamping plate 74, the surface of the rotating shaft clamping plate 74 is provided with a sundry material outlet 69.
[0059] The number of pushing plates 71 is two, and the two pushing plates 71 are distributed symmetrically on the surface of the telescopic pushing rod 70. The surface of the pushing groove 72 is fixedly connected with the inner wall of the base 8. The output rod 61 penetrates the inner wall of the pushing groove 72 to the end surface of the output vertical shaft 62. The number of connecting plates 73 is four. The four connecting plates 73 are divided into two groups, and the number of each group is two. The two groups of connecting plates 73 are distributed symmetrically on the surface of the rotating shaft clamping plate 74. The end surface of the pushing groove 72 away from one end of the telescopic pushing rod 70 is fixedly connected with the surface of the material collecting groove 10.
[0060] A magnetite ore dressing method with high filling body content includes the following steps:
[0061] S1: when the required ore is put into the device, the control plate 7 in the grinding part 1 is started, which drives the vertical rod 21 to run, and when the vertical rod 21 runs, the transmission rod 22 runs along the inner wall of the fixed shaft plate 23, and when the fixed shaft plate 23 runs, the grinding push plate 24 runs;
[0062] S2: when the grinding push plate 24 runs, the extrusion block 25 runs, and when the two extrusion blocks 25 run, the ore in them is ground and crushed. At the same time, when the grinding push plate 24 runs, when it runs to a certain position, it will collide with the push vertical plate 28;
[0063] S3: the lifting vertical plate 41 drives the pull rod 42 to run, and when the pull rod 42 runs, the rotating plate 43 runs, and when the rotating plate 43 runs, the arc plate 44 runs along the surface of the positioning inclined plate 45, and at the same time, when the arc plate 44 runs, the clamping plate 46 runs;
[0064] S4: when the clamping plate 46 runs, the inclined pressing plate 47 runs, and finally runs to the surface of the positioning horizontal plate 48. The positioning horizontal plate 48 limits it, and at the same time, when the inclined pressing plate 47 runs, it extrudes and grinds the ore in it, and runs the ore material in it.
[0065] When the device is in use, after the ore to be processed is put into the device, the control plate 7 in the grinding part 1 is started, which drives the vertical rod 21 to operate, when the vertical rod 21 operates, it drives the transmission rod 22 to operate along the inner wall of the fixed shaft plate 23, when the fixed shaft plate 23 operates, it drives the grinding push plate 24 to operate, when the grinding push plate 24 operates, it drives the extrusion block 25 to operate, when the two extrusion blocks 25 operate, they grind and crush the ore in them, at the same time, when the grinding push plate 24 operates, when it reaches a certain position, it collides with the push stand plate 28, which drives the vertical shaft 27 to operate along the surface of the arc seat 26, at the same time, the push stand plate 28 drives the elastic rod 29 to operate, which produces elastic tension force to prevent the grinding push plate 24 from being damaged by over operation and to assist its reset, at the same time, the electric telescopic rod 6 is started, which drives the lifting rod 35 to operate, when the lifting rod 35 operates, it drives the sliding plate 36 to operate along the inner wall of the sliding groove 37, at the same time, when the lifting rod 35 operates, it drives the extrusion spring 38 to operate, when the extrusion spring 38 operates, it drives the extrusion plate 30 to operate, which drives the auxiliary plate 31 to operate, which grinds the ore in it, at the same time, when the sliding plate 36 operates along the sliding groove 37, it drives the two extrusion plates 30 to extrude and operate the elastic arc plate 32, which produces elastic pressure to protect the parts in the device from damage caused by operation. At this time, in the vibration part 2, the control plate 7 drives the lifting stand plate 41 to operate, which drives the pull rod 42 to operate, when the pull rod 42 operates, it drives the rotating plate 43 to operate, when the rotating plate 43 operates, it drives the rotating arc plate 44 to operate along the surface of the positioning inclined plate 45, at the same time, when the rotating arc plate 44 operates, it drives the clamping plate 46 to operate, when the clamping plate 46 operates, it drives the inclined pressing plate 47 to operate, which finally operates to the surface of the positioning horizontal plate 48, which limits its operation, at the same time, when the inclined pressing plate 47 operates, it extrudes and grinds the ore in it, and operates the ore material in it, which drives the ground material to the surface of the feeding plate 51, and finally falls through the filter plate 52, at the same time, when the rotating arc plate 44 operates, it drives the T-shaped stretching plate 53 to operate, when the T-shaped stretching plate 53 operates, it drives the stretching connecting plate 54 to operate, which protects the device in it from damage caused by incomplete grinding of the ore.At this time in the filter component 3, the engine 4 starts, and the output rod 61 is driven to operate, when the output rod 61 operates, the output vertical shaft 62 is driven to operate, when the output vertical shaft 62 operates, the rotating shaft plate 63 is driven to operate along the surface of the rotating shaft clamping plate 74, and when the output vertical shaft 62 operates, the circular arc filter plate 64 is driven to operate, when the circular arc filter plate 64 operates, the material falling into it is filtered, so that the material after grinding falls into it, when the material that cannot fall off falls through the surface of the circular arc filter plate 64 and collides with the falling material clamping plate 68, finally falls into the positioning elastic plate 65 through the falling material clamping plate 68, the positioning elastic plate 65 falls into the surface of the rotating shaft clamping plate 74 through the elastic force, and finally falls out through the sundry material outlet 69, when the material after grinding falls into the pushing material groove 72, at this time, when the vertical rod 21 operates, the telescopic pushing material rod 70 is driven to operate, the telescopic pushing material rod 70 drives the pushing material plate 71 to operate along the surface of the pushing material groove 72, and finally pushes the material in the pushing material groove 72 to fall into the material collecting groove 10.
[0066] The preferred embodiments of the application disclosed above are only used to help explain the application. The preferred embodiments do not describe all the details, and the application is not limited to the specific embodiments. Obviously, according to the content of the specification, many modifications and changes can be made. The specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the application, so that those skilled in the art can well understand and utilize the application. The application is limited by the claims and the entire scope and equivalents thereof.
Claims
1. A magnetite ore beneficiation device with a high filler content, comprising a base (8), a top plate (9) fixedly connected to the top of the base (8), a motor (5) fixedly connected to the end face of the top plate (9) away from the base (8), an electric telescopic rod (6) provided on the surface of the motor (5), a control plate (7) fixedly connected to the surface of the base (8), a collection trough (10) fixedly connected to the end face of the base (8) away from the control plate (7), an engine (4) provided on the inner wall of the end of the base (8) away from the top plate (9), and two electric telescopic rods (6) symmetrically distributed on the surface of the base (8), characterized in that, Also include: Grinding parts (1), the grinding parts (1) include vertical rod (21), the surface of the vertical rod (21) is fixedly connected with the conducting rod (22), the surface of the conducting rod (22) far from vertical rod (21) one end is slidably connected with fixed shaft plate (23); Vibration parts (2), the vibration parts (2) include lifting vertical plate (41), the end surface of the lifting vertical plate (41) is fixedly connected with pull rod (42), the surface of the pull rod (42) is fixedly connected with rotating plate (43); Filtering parts (3), the filtering parts (3) include output rod (61) and circular arc filter plate (64), the end surface of the output rod (61) is fixedly connected with output vertical shaft (62), the surface of the output vertical shaft (62) is fixedly connected with rotating shaft plate (63), the end surface of the circular arc filter plate (64) far from rotating shaft plate (63) one end is fixedly connected with positioning elastic plate (65), the surface of the rotating shaft plate (63) close to positioning elastic plate (65) one side is fixedly connected with positioning rotating rod (66), the surface of the positioning rotating rod (66) is fixedly connected with reset plate (67), the surface of the rotating shaft plate (63) close to positioning rotating rod (66) one side is fixedly connected with blanking clamp plate (68), the end surface of the vertical rod (21) close to base (8) one side is fixedly connected with telescopic pushing rod (70), the end surface of the telescopic pushing rod (70) far from vertical rod (21) one end is fixedly connected with pushing plate (71), the surface of the pushing plate (71) is slidably connected with pushing groove (72), the inner wall of the base (8) close to pushing groove (72) one end is fixedly connected with connecting plate (73), the inner wall of the connecting plate (73) is fixedly connected with rotating shaft clamp plate (74), the surface of the rotating shaft clamp plate (74) is provided with sundry material outlet (69); In the filtering parts (3), the engine (4) is started, which drives the output rod (61) to run, when the output rod (61) runs, the output vertical shaft (62) runs, when the output vertical shaft (62) runs, the rotating shaft plate (63) runs along the surface of the rotating shaft clamp plate (74), at the same time, when the output vertical shaft (62) runs, the circular arc filter plate (64) runs, when the circular arc filter plate (64) runs, the material falling into it is filtered, so that the ground material falls into it, when the material that cannot fall off falls off the surface of the circular arc filter plate (64) and collides with the blanking clamp plate (68), it finally falls into the positioning elastic plate (65) through the blanking clamp plate (68), the positioning elastic plate (65) falls into the surface of the rotating shaft clamp plate (74) through the elastic force, and finally falls out through the sundry material outlet (69), when the ground material falls into the pushing groove (72), at this time, when the vertical rod (21) runs, the telescopic pushing rod (70) runs, the telescopic pushing rod (70) drives the pushing plate (71) to run along the surface of the pushing groove (72), and finally pushes the material in the pushing groove (72) to fall into the material collecting groove (10). The vibration component (2) is located below the grinding component (1), and the filtering component (3) is located below the vibration component (2).
2. A high magnetite concentrate content magnetite ore beneficiation device according to claim 1, characterized in that: The grinding component (1) comprises a grinding push plate (24), the end surface of the grinding push plate (24) is fixedly connected with an extrusion block (25), the end surface of the top plate (9) close to one end of the grinding push plate (24) is fixedly connected with an arc seat (26), the surface of the arc seat (26) is rotatably connected with a vertical shaft (27), the surface of the vertical shaft (27) is fixedly connected with a push vertical plate (28), and the end surface of the push vertical plate (28) is fixedly connected with a spring rod (29). The number of the vertical rods (21) is two, the two vertical rods (21) are symmetrically distributed on the surface of the control plate (7), the bottom of the fixed shaft plate (23) is fixedly connected with the top of the base (8), the end surface of the conductive rod (22) away from one end of the vertical rod (21) is fixedly connected with the end surface of the grinding push plate (24) away from one end of the extrusion block (25), the number of the arc seats (26) is four, the four arc seats (26) are divided into two groups, and the number of each group is two, the two groups of arc seats (26) are symmetrically distributed on the surface of the base (8), and the end surface of the spring rod (29) away from one end of the push vertical plate (28) is fixedly connected with the surface of the top plate (9).
3. A high magnetite concentrate content magnetic ore beneficiation device according to claim 2, characterized in that: The end surface of the motor (5) away from one end of the top plate (9) is fixedly connected with a lifting pressure rod (33), the end surface of the lifting pressure rod (33) is fixedly connected with a lifting pressure plate (34), the end surface of the electric telescopic rod (6) away from one end of the lifting pressure plate (34) is fixedly connected with a lifting rod (35), the end surface of the lifting pressure plate (34) close to one end of the lifting pressure rod (33) is in contact with the end surface of the electric telescopic rod (6), and the number of the lifting rods (35) is two, and the two lifting rods (35) are symmetrically distributed on the surface of the electric telescopic rod (6).
4. A high magnetite concentrate content magnetite ore beneficiation device according to claim 3, characterized in that: The surface of the lifting rod (35) away from one end of the electric telescopic rod (6) is slidably connected with a sliding plate (36), the surface of the top plate (9) close to one side of the sliding plate (36) is provided with a sliding groove (37), the end surface of the sliding plate (36) away from one end of the lifting rod (35) is fixedly connected with an extrusion spring (38), the end surface of the extrusion spring (38) away from one end of the sliding plate (36) is fixedly connected with an extrusion plate (30), the surface of the extrusion plate (30) is fixedly connected with an auxiliary plate (31), the surface of the extrusion plate (30) close to one side of the auxiliary plate (31) is fixedly connected with a spring arc plate (32), the surface of the sliding plate (36) is slidably connected with the inner wall of the sliding groove (37), the surface of the extrusion block (25) penetrates through the sliding plate (36) to the end surface of the extrusion plate (30), and the end surface of the spring arc plate (32) is fixedly connected with the surface of the extrusion plate (30).
5. A high magnetite concentrate content magnetic ore beneficiation device according to claim 4, characterized in that: The vibrating component (2) comprises an arc plate (44), the surface of the arc plate (44) is provided with a positioning inclined plate (45), the surface of the positioning inclined plate (45) away from the arc plate (44) is provided with a clamping plate (46), the end face of the clamping plate (46) away from the arc plate (44) is fixedly connected with an inclined pressing plate (47), and the surface of the top plate (9) close to the inclined pressing plate (47) is fixedly connected with a positioning horizontal plate (48). The number of the lifting vertical plates (41) is two, the two lifting vertical plates (41) are symmetrically distributed on the surface of the control plate (7), the end face of the positioning inclined plate (45) is fixedly connected with the inner wall of the top plate (9), the end face of the rotating plate (43) is fixedly connected with the surface of the arc plate (44) away from the positioning inclined plate (45), and the number of the rotating plates (43) is four.
6. A high magnetite concentrate content magnetic ore beneficiation device according to claim 5, characterized in that: The inner wall of the top plate (9) close to the positioning inclined plate (45) is provided with an inclined plate groove (49), the inner wall of the inclined plate groove (49) away from the pull rod (42) is fixedly connected with a positioning column (50), the surface of the positioning column (50) is fixedly connected with a feeding plate (51), the inner wall of the top plate (9) close to the feeding plate (51) is fixedly connected with a filtering plate (52), the surface of the arc plate (44) close to the top plate (9) is fixedly connected with a T-shaped stretching plate (53), the end face of the T-shaped stretching plate (53) is fixedly connected with a stretching connecting plate (54), and the surface of the base (8) close to the T-shaped stretching plate (53) is fixedly connected with the surface of the stretching connecting plate (54).
7. A high magnetite concentrate content magnetic ore beneficiation device according to claim 6, characterized in that: The number of the arc-shaped filtering plates (64) is four, the four arc-shaped filtering plates (64) are symmetrically distributed on the surface center of the output vertical shaft (62), the number of the positioning rotating rods (66) is four, the four positioning rotating rods (66) are symmetrically distributed on the surface center of the rotating shaft plate (63) of the output vertical shaft (62), and the number of the blanking clamping plates (68) is four.
8. A high magnetite concentrate content magnetic ore beneficiation device according to claim 7, characterized in that: The number of the pushing plates (71) is two, the two pushing plates (71) are symmetrically distributed on the surface of the telescopic pushing rod (70), the surface of the pushing groove (72) is fixedly connected with the inner wall of the base (8), the output rod (61) penetrates through the inner wall of the pushing groove (72) to the end face of the output vertical shaft (62), the number of the connecting plates (73) is four, the four connecting plates (73) are divided into two groups, and the number of each group is two, the two groups of connecting plates (73) are symmetrically distributed on the surface of the rotating shaft clamping plate (74), and the end face of the pushing groove (72) away from the telescopic pushing rod (70) is fixedly connected with the surface of the material collecting groove (10).
9. A method for beneficiation of high-packing-content magnetite ore using the high-packing-content magnetite ore beneficiation device according to claim 8, characterized by, The method comprises the following steps: S1: when the required processing of ore into the device, at this time in the grinding parts (1), control panel (7) start, will drive the vertical rod (21) operation, when the vertical rod (21) operation, will drive the transmission rod (22) along the inner wall of the fixed shaft plate (23) operation, when the fixed shaft plate (23) operation, will drive the grinding push plate (24) operation; S2: when the grinding push plate (24) operation, will push the extrusion block (25) operation, both sides of the extrusion block (25) operation, will be ground to the ore in the process of crushing, at the same time, when the grinding push plate (24) operation, when running to a certain position, will be in contact with the push plate (28) collision; S3: lift vertical plate (41) will drive the pull rod (42) operation, when the pull rod (42) operation, will drive the rotation plate (43) operation, when the rotation plate (43) operation, will drive the arc plate (44) along the positioning inclined plate (45) surface operation, at the same time, when the arc plate (44) operation, will drive the clamping plate (46) operation; S4: when the clamping plate (46) operation, will drive the inclined pressure plate (47) operation, finally run to the positioning horizontal plate (48) surface, positioning horizontal plate (48) will be limited to its processing, at the same time, when the inclined pressure plate (47) operation, will be extruded grinding processing to the ore in it, and the ore material in it operation.
Citation Information
Patent Citations
Mine coal crushing and treatment equipment
CN108160290A
Quartz sand purifying device
CN110455607A