CN214877164U - Circulating pump pool - Google Patents
Circulating pump pool Download PDFInfo
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- CN214877164U CN214877164U CN202121274738.9U CN202121274738U CN214877164U CN 214877164 U CN214877164 U CN 214877164U CN 202121274738 U CN202121274738 U CN 202121274738U CN 214877164 U CN214877164 U CN 214877164U
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- tailing
- pond
- raw ore
- circulating pump
- discharge pipe
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Abstract
The utility model discloses a circulating pump pond, including the raw ore pond that has the outer calandria of ore pulp, arrange the tailing circulation pond on the inboard upper portion of raw ore pond, inside main cavity and the vice chamber of being linked together and arranging of separating into the top by the baffle in the tailing circulation pond, be equipped with on the tailing circulation pond and be used for communicateing calandria in the inside tailing of main cavity and raw ore pond, be equipped with the tailing input tube of arranging with the main cavity intercommunication on the raw ore pond, the outer calandria of tailing of arranging with vice chamber intercommunication, be equipped with the level gauge in the raw ore pond, install the governing valve on the calandria in the tailing, the outer calandria of ore pulp sets up department in raw ore pond lateral wall bottom. The utility model arranges the ore pulp discharge pipe on the side of the raw ore pool, so that the raw ore pool can be directly arranged on the platform without lifting and erecting, and the installation process is more convenient; the opening or closing of the tailing inner discharge pipe is controlled by the adjusting valve, so that the sealing performance of the tailing inner discharge pipe can be guaranteed, and the situation that untreated primary pulp is discharged by mistake through a tailing outer discharge pipe is avoided.
Description
Technical Field
The utility model relates to a feed liquid regulation and control circulation technical field especially relates to a circulating pump pond.
Background
Generally, the feed liquid is usually circulated or discharged in the processing process, for example, the pulp needs to screen the effective components in the pulp in the flotation processing process, and the pulp needs to circulate after primary processing, when the pulp needs to be discharged after being processed for many times, the pulp is convenient to process new pulp, but the conventional pulp discharge and circulation selection is generally adjusted manually by a producer, so that the production efficiency of the pulp is reduced, the discharge and circulation pipelines are difficult to be controlled quickly, and the operation difficulty of the producer in pulp flotation is increased.
In order to solve the problems, the Chinese patent with the publication number of CN 210279504U discloses a liquid material regulation and control circulating device, which comprises a material storage box, a material cavity and a connecting pipe, wherein the material cavity is arranged inside the material storage box, the connecting pipe is connected below the material storage box and is communicated with the material cavity, a circulating box is connected inside the material storage box, a main cavity and an auxiliary cavity are arranged inside the circulating box, a partition plate is used for separating the main cavity from the auxiliary cavity, the height of the partition plate is smaller than that of the circulating box, a discharging pipe communicated with the auxiliary cavity is further connected to the side of the material storage box, a flow hole used for communicating the main cavity with the material cavity is formed in the outer surface of the circulating box, a rotating plate used for closing the flow hole is movably connected to the outer surface of the circulating box, a floating ball used for controlling the movement of the rotating plate is connected to the surface of the rotating plate, and the floating ball is positioned in the material cavity. Although the above device can facilitate the control of the circulation or discharge of the feed liquid, the following problems exist: the utility model provides an utilize rotatory commentaries on classics board control opening or closing of discharge orifice, the leakproofness when the discharge orifice is closed is decided by the leakproofness when changeing board and discharge orifice department tank wall butt joint, after long-term use, change the board by feed liquid corruption, extrusion produce certain deformation, change the board edge and can't hug closely with the tank wall and be connected to cause material chamber and main cavity unnecessary intercommunication, cause the magma that has not been handled in the material chamber to get into the main cavity after the vice chamber discharges, lead to the waste of active ingredient in the magma. The floating ball is utilized to control the rotating plate to rotate to close the flow hole, the closing speed of the flow hole is determined by the rising speed of liquid in the material cavity, and the quick closing cannot be realized, so that a time period for communicating the material cavity and the main cavity exists, raw slurry which is not processed in the material cavity flows into the main cavity, the direct discharging condition of the raw slurry is likely to occur, and the waste of effective components in the raw slurry is caused. Thirdly, the connecting pipe is arranged below the storage box, so that the storage box can only be lifted and erected on the platform to realize the connection and discharge, and the installation process is more inconvenient.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a better, the more convenient circulating pump pond of installation of inner space independence to prior art's weak point.
The utility model provides a this kind of circulating pump pond, including the raw ore pond that has the outer calandria of ore pulp, arrange the tailing circulation pond on the inboard upper portion of raw ore pond, inside main cavity and the vice chamber of being linked together and arranging of separating into the top by the baffle of tailing circulation pond, be equipped with on the tailing circulation pond and be used for communicateing calandria in the inside tailing of main cavity and raw ore pond, be equipped with the tailing input tube of arranging with the main cavity intercommunication on the raw ore pond, the outer calandria of tailing of arranging with vice chamber intercommunication, be equipped with the level gauge in the raw ore pond, install the governing valve on the calandria in the tailing, the outer calandria of ore pulp sets up department in raw ore pond lateral wall bottom.
In order to facilitate the discharge of slurry, a first guide plate which is obliquely arranged towards the ore pulp outer discharge pipe is arranged at the bottom of the inner side of the raw ore tank.
The first guide plate and the horizontal plane form an included angle of 10-15 degrees.
In order to facilitate the discharge of slurry, a second guide plate which is obliquely arranged towards the tailing inner discharge pipe is arranged at the bottom of the main cavity.
The second guide plate and the horizontal plane form an included angle of 4-6 degrees.
In order to facilitate the discharge of slurry, a third guide plate which is obliquely arranged facing the tailing outer discharge pipe is arranged in the auxiliary cavity.
And the third guide plate and the horizontal plane form an included angle of 4-6 degrees.
In order to facilitate the installation and the positioning of the liquid level meter, a supporting frame for installing the liquid level meter is arranged at the top of the raw ore pond.
The support frame is 7 fonts, including vertical portion and horizontal part, vertical portion and former ore deposit pond top fixed connection are equipped with the jack that is used for cartridge level gauge on the horizontal part.
For the convenience of transportation, the two sides of the top of the raw ore pond are provided with symmetrically arranged hanging rings.
The utility model arranges the ore pulp discharge pipe on the side of the raw ore pool, so that the raw ore pool can be directly arranged on the platform without lifting and erecting, and the installation process is more convenient; the height of the slurry in the raw ore pond is detected through the liquid level meter, the regulating valve is utilized to control the opening or closing of the exhaust pipe in the tailings, the airtightness of the exhaust pipe in the tailings can be guaranteed, unnecessary communication between the main cavity and the interior of the raw ore pond is reduced, and the condition that raw pulp which is not processed in the raw ore pond is discharged by mistake through the exhaust pipe of the tailings is avoided. The utility model is simple in operation, improved the mineral processing equipment handling capacity, strong adaptability uses extensively.
Drawings
Fig. 1 is a schematic view of the axial side local explosion structure of the present invention.
FIG. 2 is a schematic view of the structure in the direction A of FIG. 1 (omitting the liquid level meter).
Fig. 3 is a partial sectional structural view of the direction B in fig. 2.
Fig. 4 is a schematic sectional view at C-C in fig. 3.
The labels shown in the figures and the corresponding component names are:
1. a raw ore pond; 11. an ore pulp external discharge pipe; 12. a tailing input pipe; 13; the tailings are externally arranged in a pipe; 14. a first baffle; 15. a support frame; 16. a hoisting ring; 151, and (b); a jack;
2. a tailing circulating pond; 21. a partition plate; 22. a main chamber; 23. a secondary chamber; 24. arranging pipes in the tailings; 25. a second baffle; 26. a third baffle;
3. a liquid level meter;
4. and adjusting the valve.
Detailed Description
As can be seen from the figures 1 to 4, the circulating pump pond of the utility model comprises a raw ore pond 1, a tailing circulating pond 2, a liquid level meter 3 and a regulating valve 4, wherein the whole raw ore pond 1 is a cube, the whole tailing circulating pond 2 is a cuboid,
the tailing circulation pool 2 is fixed at the edge position above the rear side inside the raw ore pool 1, and the top of the tailing circulation pool 2 is arranged flush with the top of the raw ore pool 1; the inside of the tailing circulation pool 2 is divided into a main cavity 22 and an auxiliary cavity 23 which are arranged side by side along the left-right direction by a partition plate 21, the right side of the auxiliary cavity 23 is arranged to be clung to the right side wall of the raw ore pool 1, and the top of the partition plate 21 is 120-140 mm lower than the top of the tailing circulation pool 2, so that the main cavity 22 and the top of the auxiliary cavity 23 are communicated and arranged; a tailing internal discharge pipe 24 is arranged on the front side wall of the tailing circulation tank 2 corresponding to the main cavity 22, and the main cavity 22 is communicated with the interior of the raw ore tank 1 through the tailing internal discharge pipe 24; a second guide plate 25 which is obliquely arranged towards the tailing inner discharge pipe 24 is arranged at the bottom of the main cavity 22; a third guide plate 26 which is obliquely arranged is arranged at the bottom of the auxiliary cavity 23;
an ore pulp external discharge pipe 11 is arranged at the bottom of the front side wall of the raw ore pool 1, a tailing input pipe 12 is arranged on the rear side wall of the raw ore pool 1 corresponding to the main cavity 22, and the main cavity 22 is communicated with the outside of the raw ore pool 1 through the tailing input pipe 12; the right side wall of the raw ore pond 1 corresponding to the auxiliary cavity 23 is provided with a tailing external discharge pipe 13, the auxiliary cavity 23 is communicated with the outside of the raw ore pond 1 through the tailing external discharge pipe 13, and a third guide plate 26 is obliquely arranged facing the tailing external discharge pipe 13; a first guide plate 14 which is obliquely arranged facing the ore pulp outer discharge pipe 11 is arranged in the raw ore tank 1 below the tailing circulating tank 2; a 7-shaped support frame 15 is arranged at the top position in front of the left side wall of the raw ore pool 1, the support frame 15 comprises a vertical part and a horizontal part, the vertical part is welded with the left side wall of the raw ore pool 1, the horizontal part extends towards the interior of the raw ore pool 1, and the horizontal part is provided with a jack 151; the left side and the right side of the top of the raw ore pond 1 are provided with hanging rings 16 which are symmetrically arranged;
the liquid level meter 3 is vertically inserted into the jack 151 of the support frame 15, and the bottom of the liquid level meter 3 is arranged in the raw ore pool 1;
the regulating valve 4 is an electric butterfly valve, and the regulating valve 4 is arranged on the tailing internal discharge pipe 24 and is used for controlling the communication or the separation of the main cavity 22 at the two ends of the tailing internal discharge pipe 24 and the raw ore pond 1.
As can be seen from FIG. 4, in the present invention, the first guide plate 14 intersects with the horizontal plane to form an included angle α, where α is 10-15 °.
As can be seen from FIG. 4, in the present invention, the second guide plate 25 intersects with the horizontal plane to form a beta angle, where beta is 4-6 degrees.
As can be seen from FIG. 3, in the present invention, the third guide plate 26 intersects with the horizontal plane to form a gamma included angle, where gamma is 4-6 deg.
In the utility model, the support frame 15 is made by bending a steel block with the width of 56mm, the horizontal section of the support frame 15 is 100mm higher than the top of the raw ore pool 1, and the distance between the front end surface of the support frame 15 and the front side wall of the raw ore pool 1 is 52 mm; the diameter of the jack 151 is 26mm, and the center distance of the jack 151 from the front side wall of the raw ore pool 1 is 60-70 mm.
As can be seen from fig. 2 to 4, in the present invention, the outer end of the adjusting valve 4 is connected with a 90 ° elbow, and the outlet of the elbow is arranged downward.
When the device is used, the ore pulp external discharge pipe 11 is connected with an ore pulp inlet of the mineral processing equipment, and the tailing input pipe 12 is connected with a tailing discharge port of the mineral processing equipment. Raw ore is directly fed into a raw ore pool 1 from the outside and enters the mineral separation equipment through an ore pulp external discharge pipe 11, tailings of the mineral separation equipment enter a main cavity 22 through a tailing input pipe 12, an adjusting valve 4 is opened, the tailings enter the raw ore pool 1 through a tailing internal discharge pipe 24 and then enter the mineral separation equipment through the ore pulp external discharge pipe 11, and circulation is formed. When the liquid level in the raw ore pool 1 measured by the liquid level meter 3 reaches a set value, the regulating valve 4 is closed, and the tailings in the main cavity 22 overflow into the auxiliary cavity 23 and are discharged through a tailing external discharge pipe to serve as final tailings discharge.
The tailings in the utility model enter the mineral processing equipment for many times after circulation, so that the recovery rate is greatly improved; the tailings discharged by the mineral separation equipment are circulated for multiple times to become the source of ore pulp of the mineral separation equipment, so that the treatment capacity is improved.
The utility model discloses there is good adaptability, can extensively be used for the circulation of tailings such as coal, copper, lead zinc, molybdenum, gold, nickel, antimony, platinum, graphite, cobalt, oil sand and sylvite to reselect.
Claims (10)
1. The utility model provides a circulating pump pond, including raw ore pond (1) that has ore pulp outer calandria (11), arrange tailing circulation pond (2) on the inboard upper portion of raw ore pond, tailing circulation pond is inside to be separated into main cavity (22) and vice chamber (23) that the top was linked together and was arranged by baffle (21), be equipped with calandria (24) in the tailing that is used for communicateing main cavity and raw ore pond inside on tailing circulation pond, be equipped with tailing input tube (12) of arranging with the main cavity intercommunication on raw ore pond, outer calandria (13) of tailing of arranging with vice chamber intercommunication, its characterized in that: a liquid level meter (3) is arranged in the raw ore pond, an adjusting valve (4) is arranged on the tailing internal discharge pipe, and the ore pulp external discharge pipe is arranged at the bottom of the side wall of the raw ore pond.
2. The circulating pump sump of claim 1, wherein: the bottom of the inner side of the raw ore pool is provided with a first guide plate (14) which is obliquely arranged facing the ore pulp outer discharge pipe.
3. The circulating pump sump of claim 2, wherein: the first guide plate and the horizontal plane form an included angle of 10-15 degrees.
4. The circulating pump sump of claim 1, wherein: and a second guide plate (25) which is obliquely arranged facing the tailing inner discharge pipe is arranged at the bottom of the main cavity.
5. The circulating pump sump of claim 4, wherein: the second guide plate and the horizontal plane form an included angle of 4-6 degrees.
6. The circulating pump sump of claim 1, wherein: and a third guide plate (26) which is obliquely arranged facing the tailing outer discharge pipe is arranged in the auxiliary cavity.
7. The circulating pump sump of claim 6, wherein: and the third guide plate and the horizontal plane form an included angle of 4-6 degrees.
8. The circulating pump sump of claim 1, wherein: and a supporting frame (15) for mounting a liquid level meter is arranged at the top of the raw ore pond.
9. The circulating pump sump of claim 8, wherein: the support frame is 7 fonts, and including vertical portion and horizontal part, vertical portion and former ore deposit pond top fixed connection are equipped with jack (151) that are used for cartridge level gauge on the horizontal part.
10. The circulating pump sump of claim 1, wherein: and hanging rings (16) which are symmetrically arranged are arranged on two sides of the top of the raw ore pond.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121274738.9U CN214877164U (en) | 2021-06-08 | 2021-06-08 | Circulating pump pool |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121274738.9U CN214877164U (en) | 2021-06-08 | 2021-06-08 | Circulating pump pool |
Publications (1)
Publication Number | Publication Date |
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CN214877164U true CN214877164U (en) | 2021-11-26 |
Family
ID=78898799
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202121274738.9U Active CN214877164U (en) | 2021-06-08 | 2021-06-08 | Circulating pump pool |
Country Status (1)
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CN (1) | CN214877164U (en) |
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2021
- 2021-06-08 CN CN202121274738.9U patent/CN214877164U/en active Active
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