Ore flushing device for ore dressing chute
By expanding the ore dressing plate and designing the disassembly mechanism, the problem of expansion of existing equipment when there is a large demand for ore flushing was solved, achieving more efficient flushing operation and improved production efficiency. The disassembly of the equipment reduces the space occupied and weight.
Patent Information
- Application Number
- CN202422639781.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-10-31
AI Technical Summary
Existing flushing devices for mineral processing sluices are unable to meet the expanded demand when flushing needs are high, resulting in a decrease in production efficiency.
A device was designed that includes an extended ore dressing plate, a disassembly and assembly mechanism, and a flushing mechanism. The device is extended by the detachable extended ore dressing plate and support components. The combination of magnetic strips and spring locking structure enables the rapid installation and disassembly of multiple ore dressing plates, thereby increasing the flushing volume. The flushing mechanism provides water through connecting pipes and pumps, and uses rigid pipes and anti-slip strips for flushing operations.
It enables expansion capabilities when ore flushing demand increases, meets the need for larger flushing volumes, improves production efficiency, and reduces the weight and space occupied by the unit through a detachable design.
Smart Images

Figure CN223530552U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ore flushing devices, and in particular to an ore flushing device for a mineral processing sluice. Background Technology
[0002] Existing technology, patent CN221268508U, discloses a flushing device for a mineral processing sluice, installed above the sluice. It includes a guide rail frame, a flushing support, a pneumatic control valve, nozzles, a motor, pulley shafts, pulleys, and a drag chain. The guide rail frame is aligned with the sluice and mounted on it. The flushing support is mounted on the guide rail frame. Several branch pipes are evenly distributed on the water supply pipe. Pneumatic control valves are installed on each branch pipe, and nozzles are installed at the ends of each branch pipe. The motor is located in the middle of the flushing support, and pulleys are installed at both ends of the pulley shaft within grooved guide rails on both sides of the guide rail frame. The drag chain is mounted on one side of the guide rail frame, with its end attached to the flushing support. This invention fully automates the flushing process by controlling the nozzles with pneumatic control valves and providing them with spray power, significantly improving production efficiency.
[0003] The device cannot expand the flushing capacity during use. When the flushing demand is large, the device is difficult to meet the flushing demand. Therefore, a flushing device for mineral processing sluices is needed to meet the usage requirements. Utility Model Content
[0004] The purpose of this invention is to provide a flushing device for a mineral processing sluice to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a flushing device for a mineral processing sluice, comprising a flushing platform;
[0006] A basic ore dressing plate is installed on the ore washing platform;
[0007] The basic chute is installed inside the basic mineral processing plate;
[0008] An extended beneficiation plate, detachably mounted on the base beneficiation plate, is used for the deposition of heavy minerals;
[0009] An integrator, disposed on the extended ore dressing plate, is used for integrating the extended ore dressing plate;
[0010] A support member is provided at the bottom of the extended ore dressing plate for supporting the extended ore dressing plate and preventing slippage.
[0011] An extended filter box is disposed at the bottom of the extended mineral processing plate and is used for the collection and filtration of heavy minerals within the extended mineral processing plate.
[0012] A basic filter box is located at the bottom of the ore-washing platform and is used for the collection and filtration of heavy minerals within the basic ore-washing plate.
[0013] A disassembly and assembly mechanism is provided on the basic ore dressing plate and the extended ore dressing plate for disassembly and assembly of the extended ore dressing plate;
[0014] A ore-flushing mechanism is located at the bottom of the ore-flushing platform and is used for ore flushing.
[0015] Furthermore, the integrated component includes a magnetic strip mounted on one side of the extended ore dressing plate, and an iron strip mounted on the other side of the extended ore dressing plate.
[0016] Furthermore, the support includes a support column installed at the bottom of the extended ore dressing plate, and an anti-slip pad is installed at the bottom of the support column.
[0017] Furthermore, the disassembly and assembly mechanism includes a miniature disassembly and assembly base installed on the basic ore dressing plate, a miniature insert installed on the extended ore dressing plate, the miniature insert being inserted into the miniature disassembly and assembly base, the miniature insert having a slot, and a locking rod slidably installed in the miniature disassembly and assembly base, the locking rod being engaged in the slot.
[0018] Furthermore, the disassembly and assembly mechanism also includes a spring mounted on the miniature disassembly and assembly base, with the other end of the spring mounted on the lever.
[0019] Furthermore, the ore flushing mechanism includes a bracket installed at the bottom of the ore flushing platform, an input end of the bracket is equipped with a connecting pipe, an output end of the bracket is equipped with a pump, a conduit is installed on the pump, a rigid pipe is installed on the conduit, and an anti-slip strip is installed on the rigid pipe.
[0020] Furthermore, the ore-flushing mechanism also includes an ore-flushing head mounted on the rigid pipe, and a receiving wheel is installed at the bottom of the ore-flushing platform.
[0021] The beneficial effects of this utility model are:
[0022] In this invention, by setting up an extended ore dressing plate and a disassembly and assembly mechanism, a miniature insert is inserted into a miniature disassembly and assembly base. The end of the clamping rod will move upward under the pressure of the miniature insert, and under the action of the spring, it will drive the clamping rod to engage with the slot. Multiple extended ore dressing plates can be installed on the base ore dressing plate. An extended ore dressing chute is set inside the extended ore dressing plate. At this time, the flushing volume can be expanded by extending the ore dressing plate to meet more flushing needs.
[0023] In this invention, by setting up an extended filter box, a basic filter box, and a flushing mechanism, the connecting pipe is connected to an external water source. Under the action of the support, the external water source is pumped from the connecting pipe into the conduit. The flushing personnel can hold the rigid pipe and flush the ore on the basic ore dressing plate and the extended ore dressing plate through the anti-slip strip, flushing the heavy minerals into the basic filter box and the extended filter box for collection. Attached Figure Description
[0024] Figure 1 This is a three-dimensional structural diagram of a ore-flushing device for a mineral processing sluice box proposed in this utility model;
[0025] Figure 2 This is a three-dimensional structural diagram of a ore-flushing device for a mineral processing sluice box, as proposed in this utility model.
[0026] Figure 3 This is a schematic diagram of the structure of an extended mineral processing plate, magnetic strip, etc., for a sluice box flushing device for mineral processing.
[0027] Figure 4 This is a schematic diagram of the micro-frame, clamp, and other structures of a ore-flushing device for a mineral processing sluice box proposed in this utility model.
[0028] In the diagram: 1. Flushing platform; 2. Basic beneficiation plate; 3. Basic sluice; 4. Extended beneficiation plate; 5. Integrated component; 51. Magnet strip; 52. Iron strip; 6. Support component; 61. Support column; 62. Anti-slip pad; 7. Extended filter box; 8. Basic filter box; 9. Disassembly and assembly mechanism; 91. Miniature disassembly and assembly base; 92. Miniature insert; 93. Slot; 94. Locking rod; 95. Spring; 10. Flushing mechanism; 101. Bracket; 102. Pump; 103. Connecting pipe; 104. Conduit; 105. Rigid pipe; 106. Anti-slip strip; 107. Flushing head; 108. Receiving wheel. Detailed Implementation
[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Example
[0030] like Figure 1-4 As shown, this embodiment provides a ore flushing device for a mineral processing sluice, including a flushing platform 1; a basic mineral processing plate 2, disposed on the flushing platform 1; a basic sluice 3, disposed within the basic mineral processing plate 2; an extended mineral processing plate 4, detachably disposed on the basic mineral processing plate 2, for the deposition of heavy minerals; an integrator 5, disposed on the extended mineral processing plate 4, for the integration of the extended mineral processing plate 4; a support 6, disposed at the bottom of the extended mineral processing plate 4, for supporting and preventing slippage of the extended mineral processing plate 4; an extended filter box 7, disposed at the bottom of the extended mineral processing plate 4, for the collection and filtration of heavy minerals within the extended mineral processing plate 4; a basic filter box 8, disposed at the bottom of the flushing platform 1, for the collection and filtration of heavy minerals within the basic mineral processing plate 2; a disassembly and assembly mechanism 9, disposed on the basic mineral processing plate 2 and the extended mineral processing plate 4, for the disassembly and assembly of the extended mineral processing plate 4; and a flushing mechanism 10, disposed at the bottom of the flushing platform 1, for flushing ore.
[0031] Short-pile cotton cloth or cotton floss cloth is laid on the base sluice 3 as a surface material. The feed concentration is 8% to 10% of the base filter box and the flushing mechanism. A slurry film with a thickness of no more than 5 mm and formed from the top of the base sluice 3 flows evenly down to the bottom of the base sluice 3. During this process, heavy minerals are deposited on the cloth surface. This process is existing technology, and the specific principle will not be elaborated. When there is a greater flushing demand, multiple extended beneficiation plates 4 can be attached and assembled through the integrator 5 and installed on the base beneficiation plate 2 through the disassembly and assembly mechanism 9. The support member 6 can provide stable support and anti-slip for the extended beneficiation plate 4. An extended beneficiation sluice is set in the extended beneficiation plate 4. At this time, the flushing volume can be increased through the extended beneficiation plate 4 to meet more flushing demand. The flushing operation is carried out through the flushing mechanism 10. The heavy minerals in the base beneficiation plate 2 and the extended beneficiation plate 4 will enter the base filter box 8 and the extended filter box 7 respectively for collection and filtration under the impact of the flushing mechanism 10.
[0032] In one embodiment, specifically, the integrated component 5 includes a magnet strip 51 installed on one side of the extended ore dressing plate 4, and an iron strip 52 installed on the other side of the extended ore dressing plate 4.
[0033] When multiple extended ore dressing plates 4 need to be integrated, the magnetic strip 51 and the iron strip 52 are attached together. Under the action of magnetic attraction, multiple extended ore dressing plates 4 can be integrated together.
[0034] In one embodiment, specifically, the support member 6 includes a support column 61 installed at the bottom of the extended ore dressing plate 4, and an anti-slip pad 62 is installed at the bottom of the support column 61.
[0035] The support column 61 provides stable support for the extended ore dressing plate 4, and the anti-slip pad 62 provides anti-slip function.
[0036] In one embodiment, the disassembly and assembly mechanism 9 specifically includes a miniature disassembly and assembly base 91 installed on the base ore dressing plate 2, a miniature insert 92 installed on the extended ore dressing plate 4, the miniature insert 92 being inserted into the miniature disassembly and assembly base 91, the miniature insert 92 having a slot 93, a locking rod 94 slidably installed in the miniature disassembly and assembly base 91, the locking rod 94 being locked into the slot 93, and the disassembly and assembly mechanism 9 also includes a spring 95 installed on the miniature disassembly and assembly base 91, the other end of the spring 95 being installed on the locking rod 94;
[0037] To assemble the extended beneficiation plate 4 onto the basic beneficiation plate 2 and meet more ore flushing needs, a miniature insert 92 is inserted into the miniature disassembly base 91. The end of the clamping rod 94 will move upward under the pressure of the miniature insert 92. At this time, the spring 95 will also be compressed. When the clamping slot 93 and the clamping rod 94 overlap, the spring 95 will drive the clamping rod 94 to engage with the clamping slot 93. Multiple extended beneficiation plates 4 can be installed on the basic beneficiation plate 2. Multiple extended beneficiation plates 4 can be used for extended ore flushing to meet more ore flushing needs. When the extended beneficiation plate 4 is not needed, the clamping rod 94 can be pulled upward so that the clamping rod 94 is no longer engaged with the miniature insert 92. At this time, the extended beneficiation plate 4 can be directly pulled out to complete the disassembly of the extended beneficiation plate 4, which can reduce the weight of the device and the space occupied.
[0038] In one embodiment, the ore flushing mechanism 10 includes a support 101 installed at the bottom of the ore flushing platform 1. A connecting pipe 103 is installed at the input end of the support 101, and a pumping pump 102 is installed at the output end of the support 101. A conduit 104 is installed on the pumping pump 102, a rigid pipe 105 is installed on the conduit 104, and an anti-slip strip 106 is installed on the rigid pipe 105.
[0039] When flushing is required, the connecting pipe 103 is connected to an external water source. Under the action of the support 101, the external water source is drawn from the connecting pipe 103 into the conduit 104. The flushing personnel can hold the rigid pipe 105 and flush the ore on the basic beneficiation plate 2 and the extended beneficiation plate 4 through the anti-slip strip 106, flushing the heavy minerals into the basic filter box 8 and the extended filter box 7 for collection.
[0040] In one embodiment, the ore-flushing mechanism 10 further includes an ore-flushing head 107 mounted on a rigid pipe 105, and a collection wheel 108 is mounted on the bottom of the ore-flushing platform 1.
[0041] With the setting of the punch head 107, when the punching personnel hold the hard pipe 105, the punch head 107 can play an anti-slip role, making it easy to control the anti-slip strip 106. After the punching is completed, the guide tube 104 can be wrapped around the storage wheel 108 for storage and organization.
[0042] Working principle: In use, short-pile cotton cloth or cotton floss cloth is laid on the base sluice 3 as a surface material. The feed concentration is 8% for the base filter box and 10% for the flushing mechanism. A slurry film with a thickness of no more than 5 mm and formed from the top of the base sluice 3 flows evenly down to the bottom of the base sluice 3. During this process, heavy minerals are deposited on the cloth surface. When there is a greater flushing demand, the magnet strip 51 and the iron strip 52 are attached together. Under the action of magnetic attraction, multiple extended beneficiation plates 4 can be integrated together. The support column 61 can provide stable support for the extended beneficiation plates 4. The anti-slip pad 62 can play an anti-slip role. The micro-insertion 92 is inserted into the micro-disassembly seat 91. The end of the clamping rod 94 will move upward due to the pressure of the micro-insertion 92. At this time, the spring 95 will also be compressed. When the clamping slot 93 and the clamping rod 94 overlap, the spring 95 will drive the clamping rod 94 to engage with the clamping slot 93. Multiple extended beneficiation plates 4 are installed on the base beneficiation plate 2. Extended beneficiation chutes are set inside the extended beneficiation plates 4. At this time, the flushing volume can be expanded by the extended beneficiation plates 4 to meet more flushing needs. When the extended beneficiation plates 4 are not needed, the clamping rod 94 can be pulled upward so that the clamping rod 94 is no longer locked in the micro insert 92. At this time, the extended beneficiation plates 4 can be directly pulled out to complete the disassembly of the extended beneficiation plates 4, which can reduce the weight of the device and the space occupied. During the flushing operation, the connecting pipe 103 is connected to the external water source. Under the action of the bracket 101, the external water source is drawn from the connecting pipe 103 to the conduit 104. The flushing personnel can hold the rigid pipe 105 and flush the base beneficiation plate 2 and the extended beneficiation plate 4 through the anti-slip strip 106 to flush the heavy minerals into the base filter box 8 and the extended filter box 7 for collection. After the flushing is completed, the conduit 104 can be wound around the collection wheel 108 for storage and organization.
[0043] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A flushing device for a mineral processing sluice, comprising, characterized in that: Chongkuangtai (1); A basic ore dressing plate (2) is set on the ore washing platform (1); The basic chute (3) is set inside the basic ore dressing plate (2); An extended beneficiation plate (4) is detachably mounted on the base beneficiation plate (2) for the deposition of heavy minerals; An integrator (5) is disposed on the extended beneficiation plate (4) for integrating the extended beneficiation plate (4); Support member (6) is provided at the bottom of the extended mineral processing plate (4) for supporting and preventing slippage of the extended mineral processing plate (4); An extended filter box (7) is provided at the bottom of the extended mineral processing plate (4) for the collection and filtration of heavy minerals within the extended mineral processing plate (4); The basic filter box (8) is set at the bottom of the ore-washing platform (1) for the collection and filtration of heavy minerals in the basic ore-washing plate (2); The disassembly and assembly mechanism (9) is provided on the basic mineral processing plate (2) and the extended mineral processing plate (4) for disassembly and assembly of the extended mineral processing plate (4); A ore flushing mechanism (10) is located at the bottom of the ore flushing platform (1) and is used for ore flushing.
2. The ore flushing device for a mineral processing sluice box according to claim 1, characterized in that: The integrated component (5) includes a magnet strip (51) installed on one side of the extended ore dressing plate (4) and an iron strip (52) installed on the other side of the extended ore dressing plate (4).
3. The ore flushing device for a mineral processing sluice box according to claim 2, characterized in that: The support member (6) includes a support column (61) installed at the bottom of the extended ore dressing plate (4), and the bottom of the support column (61) is equipped with an anti-slip pad (62).
4. The ore flushing device for a mineral processing sluice box according to claim 1, characterized in that: The disassembly and assembly mechanism (9) includes a miniature disassembly and assembly base (91) installed on the basic ore dressing plate (2), a miniature insert (92) installed on the extended ore dressing plate (4), the miniature insert (92) being inserted into the miniature disassembly and assembly base (91), a slot (93) being provided on the miniature insert (92), and a locking rod (94) being slidably installed in the miniature disassembly and assembly base (91), the locking rod (94) being locked into the slot (93).
5. The ore flushing device for a mineral processing sluice box according to claim 4, characterized in that: The disassembly and assembly mechanism (9) also includes a spring (95) mounted on the miniature disassembly and assembly base (91), with the other end of the spring (95) mounted on the lever (94).
6. The ore flushing device for a mineral processing sluice box according to claim 1, characterized in that: The ore flushing mechanism (10) includes a bracket (101) installed at the bottom of the ore flushing platform (1). A connecting pipe (103) is installed at the input end of the bracket (101), and a pumping pump (102) is installed at the output end of the bracket (101). A conduit (104) is installed on the pumping pump (102), and a rigid pipe (105) is installed on the conduit (104). An anti-slip strip (106) is installed on the rigid pipe (105).
7. The ore flushing device for a mineral processing sluice box according to claim 6, characterized in that: The ore-flushing mechanism (10) also includes an ore-flushing head (107) mounted on the rigid pipe (105), and a receiving wheel (108) is mounted on the bottom of the ore-flushing platform (1).
Citation Information
Patent Citations
Ore flushing device for ore dressing chute
CN221268508U