Environment-friendly ore conveying equipment for phosphorite mining

By using transparent glass plates and dust collection components in phosphate rock conveying equipment, the problems of ore removal and dust dispersion in a closed environment are solved, achieving environmentally friendly transportation and stable delivery.

CN223315717UActive Publication Date: 2025-09-09YONGSHAN JINSHA MINING CO LTD
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Patent Information

Application Number
CN202422779516.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-09-09
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

Existing phosphate rock conveying equipment has problems such as ore falling and being difficult to remove in a closed environment, as well as dust overflow, which affects environmental protection and observation convenience.

Method used

A transparent glass plate is used to observe the state of the ore. A dust collection component and a wiping component are combined to observe the transportation state through the transparent glass plate, and a vacuum cleaner is used to remove dust. A material blocker is set to prevent the ore from sliding.

Benefits of technology

It achieves the environmental friendliness of closed transportation, avoids dust spillage, and improves observation convenience and the stability of ore transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses environment-friendly ore conveying equipment for phosphorite mining, and relates to the technical field of mining equipment. The transport case comprises a transport case body. A dust collection assembly is erected on the top of the transport box, transparent glass plates are inlaid in the front side wall and the rear side wall of the transport box correspondingly, and wiping assemblies are further installed on the transparent glass plates and comprise first clamping plates arranged on the inner side walls of the transparent glass plates and second clamping plates arranged on the outer side walls of the transparent glass plates. A conveying assembly is further arranged in the conveying box and comprises a driving roller rotationally connected to the interior of the conveying box, and a material blocking part is further installed on the conveying belt. According to the phosphate ore transportation device, the transportation state of phosphate ore in the transportation box can be directly observed through the transparent glass plate, the transparent glass plate can be wiped through the wiping assembly, the phosphate ore can be transported in a closed mode through the conveying assembly and the transportation box, environmental protection is achieved, and the phenomenon that the phosphate ore slides down in the conveying process can be avoided.
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Description

Technical Field

[0001] The utility model belongs to the technical field of mining equipment, in particular to an environmentally friendly ore conveying equipment for phosphate mining. Background Art

[0002] Phosphate rock is the most common mineral product in ore mining. After being mined, the phosphate rock raw materials need to be transported to a designated area for storage. Ore transportation equipment is needed in this process. The conveying equipment currently used for phosphate rock is mostly belt conveyor belts. The phosphate rock is put into one end of the conveyor belt, and then the conveyor belt rotates with the power support of the motor, and then the ore is transported to the other end of the belt.

[0003] A Chinese patent application (or patent) with announcement number CN221116149U discloses a closed conveying equipment, including an equipment main body, which can be used for conveying crushed phosphate ore, an upper cover body, which includes a feeding part, an inspection part and a dust suppression part, wherein the feeding part is arranged on the feeding section of the equipment main body, the inspection part is arranged on the rising section of the equipment main body, and can assist in observing the feeding status, the dust suppression part is arranged between the feeding part and the inspection part, and the lower cover body is arranged on the rotating section of the equipment main body. Through the cooperation of the inspection part and the dust suppression part, the lower cover body and the feeding part form a protective cover for the rising section of the equipment main body, and the dust suppression part receives the feeding section of the equipment main body below the feeding part and the rising section of the equipment main body below the inspection part, and can absorb dust generated by changes in conveying direction. At the same time, the dust suppression part is combined with the inspection part, and the protective cover formed can be opened by operation outside the equipment main body for staff to judge the conveying situation and facilitate inspection and maintenance.

[0004] The aforementioned enclosed conveying equipment has a lower cover at the bottom of the main body, which carries and recovers phosphate ore that falls from the conveyor belt. However, because the entire conveying environment is a closed structure, it is difficult to remove the fallen phosphate ore from the lower cover. In addition, when it is necessary to observe the ore transportation status, the upper cover needs to be opened from the outside of the equipment body. When the upper cover is opened, the entire phosphate ore conveyor belt and the phosphate ore thereon are exposed, and the conveying process still causes dust to escape. To this end, we provide an environmentally friendly phosphate mining ore conveying equipment to solve the above-mentioned problems. Utility Model Content

[0005] The purpose of the utility model is to provide an environmentally friendly ore conveying equipment for phosphate mining. By using a transparent glass plate, the transportation status of the phosphate ore in the transport box can be directly observed. By using a wiping component, the transparent glass plate can be cleaned to make it easier to observe. By using the conveying component and the transport box, not only can the phosphate ore be transported in a closed manner to improve environmental protection, but the phosphate ore can also be prevented from falling and sliding during the transportation process, thereby solving the problems of the above-mentioned closed conveying equipment.

[0006] In order to solve the above technical problems, the present invention is achieved through the following technical solutions:

[0007] The utility model is an environmentally friendly ore conveying equipment for phosphate rock mining, comprising a transport box; a feed hopper is mounted on the left side wall of the transport box, and a discharge hopper is mounted on the right end of the bottom side wall of the transport box; a dust collection assembly is mounted on the top of the transport box, and the dust collection assembly includes a branch pipe mounted on the top side wall of the transport box, and the branch pipe is also connected to the main pipe, and the main pipe is connected to the dust collector through an absorption pipe; transparent glass plates are mounted on the front and rear side walls of the transport box, and elastic springs are mounted below the transparent glass plates and in the side walls of the transport box. The transparent glass plate is also provided with a wiping assembly, and the wiping assembly includes a first plywood arranged on the inner wall of the transparent glass plate, and a second plywood arranged on the outer wall of the transparent glass plate, and the first plywood and the second plywood are detachably fixedly connected. The interior of the transport box is also provided with a conveying assembly, and the conveying assembly includes a driving roller rotatably connected to the interior of the transport box, and the driving roller is rotatably connected to the conveyor belt through a linkage frame, and a material blocking member is also installed on the conveyor belt, and the material blocking member includes a rotating rod inserted into the conveyor belt, and a baffle is also inserted into the rotating rod.

[0008] The utility model is further configured such that axial holes are opened in the front and rear side walls of the transport box, and two groups of axial holes are provided, and the two groups of axial holes are symmetrically arranged on the left and right sides of the central axis of the transport box.

[0009] The utility model is further configured such that a bearing is embedded in the shaft hole, the transport box is rotatably connected to the drive roller through the bearing, a linkage frame is also installed on the outside of the drive roller, an inner groove is opened on the inner wall of the conveyor belt, and the conveyor belt is connected to the shaft end of the linkage frame through the inner groove.

[0010] The utility model is further configured such that an observation slot is provided on the upper portion of the front and rear side walls of the transport box, and a slide slot is provided below the observation slot; the transport box is connected to the transparent glass plate through the observation slot, and the transport box is connected to the elastic plate through the slide slot.

[0011] The utility model is further configured such that an absorption hole is opened on the top of the transport box, and a plurality of absorption holes are provided. The plurality of absorption holes are arranged in a ring array structure, the absorption holes and the branch pipes are arranged in a one-to-one correspondence, and the internal environment of the transport box is connected to the branch pipes through the absorption holes.

[0012] The utility model is further configured such that a card slot is opened on the side wall of the first splint, and a wiping plate one is bonded above the card slot; a card plate is fixedly installed on the side wall of the second splint, and a wiping plate two is bonded above the card plate.

[0013] The utility model is further configured such that the first splint is clamped with the card plate on the second splint through a card slot, the card plate and the positions on the first splint and the second splint corresponding to the card slot are arranged in a slide groove, and the first splint and the second splint are in contact with the outer wall of the transparent glass plate through the first wiping plate and the second wiping plate respectively.

[0014] The utility model is further configured such that a plurality of belt holes are opened on the outer wall of the conveyor belt, and the belt holes are arranged in one-to-one correspondence with the material blocking parts, a fixing sleeve is fixedly arranged in the belt holes, and a reset spring is arranged inside the fixing sleeve, and the fixing sleeve is connected to the rotating rod through the reset spring.

[0015] The utility model has the following beneficial effects:

[0016] The utility model provides a transparent glass plate, an elastic plate and a wiping assembly. The transparent glass plate is embedded in the front and rear side walls of the transport box. The transport status of the phosphate ore in the transport box can be directly observed through the transparent glass plate. The transparent glass plate is also clamped with a wiping assembly. The wiping assembly includes a wiping plate 1 arranged on the inner side of the transparent glass plate and a wiping plate 2 on the outer side of the transparent glass plate. The wiping plate 1 and the wiping plate 2 are detachably fixedly connected. When in use, it is only necessary to hold the handrail and pull the wiping plate 2 back and forth in the slide groove to wipe the outer wall of the transparent glass plate back and forth with the wiping plate 1, so that the dust on the transparent glass plate can be wiped off, which makes it easier to observe the interior of the transport box through the transparent glass plate.

[0017] The utility model provides a conveying component, and the transport component is arranged inside the transport box for transporting phosphate ore, and the transport box can be used in conjunction with a height lifting device and an angle adjustment device to meet the requirements of adjusting the height and inclination angle of phosphate ore transportation, and a plurality of blocking members are also provided on the conveyor belt in the transport component, which can block the phosphate ore put into the conveyor belt so that it is located on one side of the conveyor belt. When the phosphate ore is transported in an inclined state, the phosphate ore on the conveyor belt can still be blocked by the blocking members to prevent it from naturally sliding or falling along the conveyor belt.

[0018] Of course, any product implementing the present invention does not necessarily need to achieve all of the advantages described above at the same time. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0020] Figure 1 This is a structural schematic diagram of an environmentally friendly ore conveying equipment for phosphate mining.

[0021] Figure 2 This is a structural disassembly diagram of an environmentally friendly ore conveying equipment used in phosphate mining.

[0022] Figure 3 This is a disassembled diagram of the structure of the transparent glass plate, elastic plate and wiping assembly.

[0023] Figure 4 This is an exploded view of the transport box and conveyor assembly.

[0024] Figure 5 This is a structural disassembly diagram of the conveying component.

[0025] In the accompanying drawings, the components represented by the reference numerals are as follows:

[0026] 1- transport box, 101- box slot, 102- axis hole, 103- absorption hole, 104- observation slot, 105- chute, 2- feed hopper, 3- discharge hopper, 4- dust collection component, 401- main pipe, 402- branch pipe, 403- absorption pipe, 404- dust collector, 5- transparent glass plate, 6- elastic plate, 7- wiping component, 701- splint 1, 701a- card slot, 701b- Wiping plate one, 702-clamping plate two, 702a-card plate, 702b-wiping plate two, 703-armrest, 8-conveyor assembly, 801-conveyor belt, 801a-inner groove, 801b-with hole, 802-driving roller, 802a-bearing, 802b-linkage frame, 803-material stopper, 803a-rotating rod, 803b-baffle, 803c-reset spring, 803d-fixing sleeve. DETAILED DESCRIPTION

[0027] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention. Example 1

[0028] See also Figure 1-2 The utility model is an environmentally friendly ore conveying equipment for phosphate mining, including a transport box 1 and a dust collection component 4. By utilizing the dust collection component 4 mounted on the top of the transport box 1, the dust in the internal environment of the transport box 1 can be absorbed. At the same time, the branch pipes 402 for absorbing dust in the dust collection component 4 are arranged at equal intervals on the top of the transport box 1 to improve the dust absorption efficiency.

[0029] Specifically, a feed hopper 2 is embedded in the upper left side of the transport box 1, and a discharge hopper 3 is embedded in the right end of the bottom side of the transport box 1. An absorption hole 103 is also provided on the top of the transport box 1. The dust collection component 4 includes a branch pipe 402 fixedly installed in the absorption hole 103, and the branch pipe 402 is also connected to the main pipe 401, and the main pipe 401 is connected to the dust collector 404 through the absorption pipe 403.

[0030] Furthermore, the absorption holes 103 and the branch pipes 402 are arranged in a one-to-one correspondence, and a plurality of absorption holes 103 are provided, and the plurality of absorption holes 103 are arranged in a matrix structure.

[0031] The operating process of this embodiment is as follows: when in use, the phosphate ore to be transported is put into the feed hopper 2, and then the phosphate ore enters the interior of the transport box 1 through the feed hopper 2 and falls on the conveying component 8, and then the part of the phosphate ore is transported, and finally the phosphate ore falls at the position of the discharge hopper 3 and flows out of the transport box 1 through the discharge hopper 3. The transportation process and the input and output process of the phosphate ore will cause the dust attached to it to overflow, and this part of the dust is retained in the interior of the transport box 1, and then the dust collector 404 in the dust collection component 4 works, which generates negative pressure, and this part of the negative pressure is transmitted to the branch pipe 402 through the absorption pipe 403 and the main pipe 401. At this time, the branch pipe 402 is connected to the environment inside the transport box 1, and the dust inside it can be quickly sucked into the branch pipe 402, and enter the dust box of the vacuum cleaner 404 through the main pipe 401 and the absorption pipe 403 for storage. Example 2

[0032] See also Figure 3On the basis of Example 1, a transparent glass plate 5, an elastic plate 6 and a wiping assembly 7 are further provided. By utilizing the transparent glass plate 5, the conveying status of the phosphate rock in the transport box 1 can be intuitively observed. At the same time, the wiping assembly 7 can wipe both the inside and outside of the transparent glass plate 5, thereby improving its cleaning degree.

[0033] Specifically, observation slots 104 are provided on the front and rear sides of the transport box 1, and the transport box 1 is connected to the transparent glass plate 5 through the observation slots 104, and a slide slot 105 is provided below the observation slot 104. An elastic plate 6 is slidably arranged in the slide slot 105, and a wiping assembly 7 is also provided on the front and rear sides of the transparent glass plate 5. The wiping assembly 7 includes a splint 1 701 and a splint 2 702 arranged on the front and rear sides of the transparent glass plate 5, and the bottoms of the splint 1 701 and the splint 2 702 are also slidably arranged inside the slide slot 105. The elastic plate 6 is provided with two sections, and the elastic plates 6 at both ends are arranged on both sides of the wiping assembly 7.

[0034] Furthermore, a card slot 701a is provided on the bottom outer wall of the splint 1 701, and a wiping plate 1 701b is adhered to the upper part of the card slot 701a and the outer wall of the splint 1 701, a card plate 702a is adhered to the bottom outer wall of the splint 2 702, and a wiping plate 2 702b is adhered to the upper part of the card plate 702a and the outer wall of the splint 2 702, the card plate 702a is engaged with the card slot 701a, and the splint 1 701 and the splint 2 702 are in contact with the transparent glass plate 5 through the wiping plate 1 701b and the wiping plate 2 702b respectively. At the same time, a handrail 703 is fixedly installed on the bottom outer wall of the splint 2 702.

[0035] The operation process of this embodiment is as follows: when in use, hold the armrest 703 and pull the armrest 703 to slide in the slide groove 105. At this time, the clamping plate 1 701 and the clamping plate 2 702 move back and forth on the transparent glass plate 5. When they move, the wiping plate 1 701a and the wiping plate 2 702a wipe the inner and outer side walls of the transparent glass plate 5. Example 3

[0036] See also Figure 4-5 On the basis of Examples 1 and 2, a conveying assembly 8 is further provided. By utilizing the blocking member 803 on the conveyor belt 801, the phosphate ore placed therein can be blocked. Even when the phosphate ore is transported at an angle with the aid of an angle adjustment device, the phosphate ore can still be blocked to prevent it from sliding or falling naturally.

[0037] Specifically, the interior of the transport box 1 is provided with a box groove 101 for installing the conveying component 8. The conveying component 8 includes a driving roller 802 with bearings 802a sleeved on both ends. The driving roller 802 is rotatably connected to the shaft hole 102 in the side wall of the transport box 1 through the bearing 802a. The driving roller 802 is synchronously rotatably connected with the conveyor belt 801 through the linkage frame 802b. The inner ring surface of the conveyor belt 801 is provided with an inner groove 801a, and the inner groove 801a is clearance-matched with the axial end of the linkage frame 802b. The outer ring surface of the conveyor belt 801 is provided with a belt hole 801b for installing the material blocking member 803.

[0038] Furthermore, the material blocking member 803 includes a baffle 803b arranged on the conveyor belt 801, a rotating rod 803a is inserted into the bottom of the baffle 803b, and the two side axial ends of the rotating rod 803a are sleeved with return springs 803c, the rotating rod 803a is connected to the fixed sleeve 803d through the return spring 803c, and the fixed sleeve 803d is embedded in the belt hole 801b of the conveyor belt 801.

[0039] The operating process of this embodiment is as follows: when in use, the driving roller 802 is started, and the driving roller 802 rotates with the linkage frame 802b. When the linkage frame 802b rotates, its shaft end is inserted into the inner groove 801a of the conveyor belt 801, thereby pushing the conveyor belt 801 to move forward, thereby achieving the effect of pushing the conveyor belt 801 to move. When the phosphate ore enters the interior of the transport box 1 through the feed hopper 2, it will naturally fall onto the conveyor belt 801 of the conveying component 8, and then as the conveyor belt 801 continues to move, it will be separated by multiple blocking members 803 on the conveyor belt 801. When the phosphate ore is transported at an inclination, the phosphate ore on the conveyor belt 801 can still be blocked by the blocking member 803 to prevent it from naturally sliding or falling along the conveyor belt 801.

[0040] Throughout this specification, references to terms such as "one embodiment," "example," or "specific example" indicate that a specific feature, structure, material, or characteristic described in conjunction with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, schematic representations of these terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.

[0041] The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. The preferred embodiments do not describe all details in detail, nor do they limit the present invention to the specific embodiments described. Obviously, many modifications and variations are possible based on the contents of this specification. These embodiments are selected and described in detail in this specification to better explain the principles and practical applications of the present invention, thereby enabling those skilled in the art to better understand and utilize the present invention. The present invention is limited only by the claims and their full scope and equivalents.

Claims

1. An environmentally friendly phosphate mining ore conveying device, comprising a transport box (1); characterized in that: The left side wall of the transport box (1) is inlaid with a feed hopper (2), and the right end of the bottom side wall of the transport box (1) is inlaid with a discharge hopper (3). The top of the transport box (1) is provided with a dust collection assembly (4), and the dust collection assembly (4) includes a branch pipe (402) inlaid on the top side wall of the transport box (1), and the branch pipe (402) is also connected to the main pipe (401), and the main pipe (401) is connected to the dust collector (404) through the absorption pipe (403). Transparent glass plates (5) are inlaid on both the front and rear side walls of the transport box (1), and elastic plates (6) are inlaid below the transparent glass plates (5) and in the side walls of the transport box (1). A wiping assembly (7) is also installed on the transparent glass plates (5). The wiping assembly (7) ) includes a first clamp (701) arranged on the inner wall of the transparent glass plate (5), and a second clamp (702) arranged on the outer wall of the transparent glass plate (5), wherein the first clamp (701) and the second clamp (702) are detachably fixedly connected, and a conveying assembly (8) is further provided inside the transport box (1), wherein the conveying assembly (8) includes a driving roller (802) rotatably connected to the inside of the transport box (1), and the driving roller (802) is rotatably connected to the conveyor belt (801) through a linkage frame (802b), and a material blocking member (803) is further installed on the conveyor belt (801), wherein the material blocking member (803) includes a rotating rod (803a) inserted into the conveyor belt (801), and a baffle (803b) is also inserted into the rotating rod (803a).

2. The environmentally friendly ore conveying equipment for phosphate mining according to claim 1, characterized in that: Axial holes (102) are provided in the front and rear side walls of the transport box (1), and two groups of the axial holes (102) are provided. The two groups of the axial holes (102) are symmetrically arranged on the left and right sides of the central axis of the transport box (1).

3. The environmentally friendly ore conveying equipment for phosphate mining according to claim 2, characterized in that: A bearing (802a) is embedded in the shaft hole (102), and the transport box (1) is rotatably connected to the driving roller (802) via the bearing (802a). A linkage frame (802b) is also installed on the outside of the driving roller (802). An inner groove (801a) is provided on the inner wall of the conveyor belt (801), and the conveyor belt (801) is connected to the shaft end of the linkage frame (802b) via the inner groove (801a).

4. The environmentally friendly ore conveying equipment for phosphate mining according to claim 1, characterized in that: An observation slot (104) is provided on the upper portion of the front and rear side walls of the transport box (1), and a slide slot (105) is provided below the observation slot (104). The transport box (1) is connected to the transparent glass plate (5) via the observation slot (104), and the transport box (1) is connected to the elastic plate (6) via the slide slot (105).

5. The environmentally friendly ore conveying equipment for phosphate mining according to claim 1, characterized in that: The top of the transport box (1) is provided with an absorption hole (103), and a plurality of the absorption holes (103) are provided. The plurality of absorption holes (103) are arranged in a ring array structure. The absorption holes (103) and the branch pipes (402) are arranged in a one-to-one correspondence, and the internal environment of the transport box (1) is connected to the branch pipes (402) through the absorption holes (103).

6. The environmentally friendly ore conveying equipment for phosphate mining according to claim 1, characterized in that: A slot (701a) is provided on the side wall of the first clamping plate (701), and a wiping plate (701b) is bonded above the slot (701a); a clamping plate (702a) is fixedly mounted on the side wall of the second clamping plate (702), and a wiping plate (702b) is bonded above the clamping plate (702a).

7. The environmentally friendly ore conveying equipment for phosphate mining according to claim 6, characterized in that: The first splint (701) is engaged with the clamping plate (702a) on the second splint (702) via the clamping slot (701a); the clamping plate (702a) and the positions on the first splint (701) and the second splint (702) corresponding to the clamping slot (701a) are arranged in the slide groove (105); and the first splint (701) and the second splint (702) are in contact with the outer wall of the transparent glass plate (5) via the wiping plate (701b) and the wiping plate (702b) respectively.

8. The environmentally friendly ore conveying equipment for phosphate mining according to claim 1, characterized in that: A plurality of belt holes (801b) are provided on the outer wall of the conveyor belt (801), and the belt holes (801b) and the material blocking members (803) are arranged in a one-to-one correspondence. A fixing sleeve (803d) is fixedly provided in the belt hole (801b), and a return spring (803c) is provided inside the fixing sleeve (803d). The fixing sleeve (803d) is connected to the rotating rod (803a) via the return spring (803c).

Citation Information

Patent Citations

  • Closed conveying equipment

    CN221116149U