CN209999483U - cement paste processing equipment - Google Patents

cement paste processing equipment Download PDF

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Publication number
CN209999483U
CN209999483U CN201920277637.3U CN201920277637U CN209999483U CN 209999483 U CN209999483 U CN 209999483U CN 201920277637 U CN201920277637 U CN 201920277637U CN 209999483 U CN209999483 U CN 209999483U
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CN
China
Prior art keywords
tank
stirring
water supply
pipe
slurry
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Expired - Fee Related
Application number
CN201920277637.3U
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Chinese (zh)
Inventor
郭庆林
张宗统
曹辉
马兴
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Civil Aviation Airport Construction Engineering Co Ltd
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Civil Aviation Airport Construction Engineering Co Ltd
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Priority to CN201920277637.3U priority Critical patent/CN209999483U/en
Application granted granted Critical
Publication of CN209999483U publication Critical patent/CN209999483U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses an grout processing equipment, including cement storage device, material feeding unit and compounding device, cement storage device sets up on the base, the compounding device is provided with 1 strut and second strut including weighing the agitator, mix stocker and water feeder 0 on the 390 base, it connects on the 2 strut to mix the stocker, weighing agitator and water supply mechanism connect on the second strut, weighing the agitator includes 3 pulp tank, be provided with weighing mechanism and stirring component in the pulp tank, the upper end of pulp tank is provided with inlet pipe and agitator motor, mix the stocker including the second pulp tank, the pulp tank is linked together with the second pulp tank through thick liquid discharge pipe, the upper end of second pulp tank is provided with second agitator motor, water supply mechanism includes the water supply tank, be equipped with the water supply pump in the water supply tank, the water supply pump links to each other through delivery pipe and pulp tank this processing equipment's automated processing, and more economic environmental protection, and the machining efficiency is higher.

Description

cement paste processing equipment
Technical Field
The utility model relates to an engineering machine tool field, concretely relates to kind grout processing equipment.
Background
The existing cement mixing pile adopts a mode of digging a mud pit on site and manually mixing cement paste. Before construction, a bulk cement silo is erected, a slurry pond is excavated nearby the cement silo, and the slurry pond is used as a stirring barrel. And then, manually conveying the cement into the mud pit through the hopper car, wherein in the process, the cement and water consumption are manually measured. In the cement slurry mixing process, a tester is required to continuously test and detect the specific gravity of the cement slurry, the operation procedure is complex, and the dosage of cement and water cannot be accurately controlled. The cement passes through the hopper car, and the manual in-process of transporting the mud pit easily produces the raise dust, and the control degree of difficulty is big.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide kind grout processing equipment, the automatic processing of slurrying can be realized to this processing equipment to more economic environmental protection, machining efficiency is higher.
The utility model discloses a realize above-mentioned purpose, the technical solution who adopts is:
cement paste processing equipment comprises a cement storage device, a feeding device, a mixing device and a th base, wherein the cement storage device is arranged on the th base, and the feeding device is connected with the cement storage device;
the weighing stirrer comprises an th slurry tank, a weighing mechanism is arranged on the bottom end face of the th slurry tank, a th feeding pipe and a th stirring motor are arranged at the upper end of the 0 th slurry tank, a transmission shaft of a th stirring motor penetrates through the th slurry tank to be connected with a th stirring rod arranged in the th slurry tank, and a th stirring component is connected to the th stirring rod;
the mixing and storing device comprises a second slurry tank, the th slurry tank is communicated with the second slurry tank through a slurry discharging pipe, the upper end of the second slurry tank is provided with a second stirring motor, a transmission shaft of the second stirring motor penetrates through the second slurry tank to be connected with a second stirring rod arranged in the second slurry tank, the second stirring rod is connected with a second stirring assembly, a double-cylinder grouting pump is connected to the slurry outlet of the second slurry tank, the second slurry discharging pipe is connected to the double-cylinder grouting pump, the water supply mechanism comprises a water supply tank, a water supply pump is arranged in the water supply tank, and the water supply pump is connected with the th slurry tank through a water supply pipe.
Preferably, cement storage device includes storage tank, dust removal mechanism and blows material mechanism, and the storage tank passes through the material jar and props the seat and connect on the th base, and dust removal mechanism includes filter core and vibrator, and the upper end of storage tank is provided with a material jar air outlet cylinder, and the vibrator passes through the vibration support frame to be connected in a material jar air outlet cylinder, and the dust filter core sets up in a material jar air outlet cylinder of vibrator lower extreme.
Preferably, blow material mechanism and include that air injector, air compressor machine and pore case, air compressor machine and pneumatic control case connect on the material jar props the seat, and the air compressor machine passes through the gas-supply pipe and connects air injector, and air injector links to each other with the outer wall of the lower part of storage tank, and the trachea of air injector passes the storage tank.
Preferably, the feeding device comprises a spiral feeder, the lower part of the spiral feeder is connected with the material pipe supporting seat through a feeding support, an th pulling plate is arranged on the outer wall of the middle part of the material storage tank, the middle part of the spiral feeder is connected with a th pulling plate through a th steel cable, and the rear part of the spiral feeder is positioned above a th feeding pipe.
Preferably, the thick liquid jar is circular shell form, and agitator motor sets up the middle part in the upper end of thick liquid jar, and the inlet pipe is located agitator motor's front end, has seted up observation window on the thick liquid jar of agitator motor rear end, is provided with transparent plastic board in the observation window.
Preferably, the second slurry tank is in a circular shell shape, the second stirring motor is arranged in the middle of the upper end of the second slurry tank, a second observation port is formed in the second slurry tank at the rear end of the second stirring motor, a second transparent plastic plate is arranged in the second observation port, the slurry discharging pipe is located at the side end of the second observation port, and the pneumatic valve is arranged on the slurry discharging pipe at the upper end of the support frame.
Preferably, there are two th stirring assemblies, and two th stirring assemblies are respectively connected to the upper part and the lower part of the th stirring rod;
the th stirring assembly comprises a th positioning pipe, a th positioning pipe is sleeved on the th stirring rod, and the outer end of the th positioning pipe is connected with a plurality of th stirring blades.
Preferably, the number of the second stirring assemblies is two, and the two second stirring assemblies are respectively connected to the upper part and the lower part of the second stirring rod;
the second stirring assembly comprises a second positioning pipe, the second positioning pipe is sleeved on the second stirring rod, and the outer end of the second positioning pipe is connected with a plurality of second stirring blades.
Preferably, a control room is arranged in an th support frame at the rear end of the mixing hopper, a controller is arranged in the control room, and the controller controls the feeding device and the mixing device through a circuit.
The utility model has the advantages that:
the cement paste processing equipment is provided with the cement storage device, the feeding device and the mixing device, the automatic control of pulping is realized, the accurate metering problem of cement and water is solved, the water cement ratio can be better controlled in the cement paste processing equipment, the quality of a cement stirring pile is effectively controlled, the cement is favorably saved, the environmental protection problem is solved, dust is effectively controlled, the cement paste processing equipment is integrally positioned in a integration device, the operation is convenient, the installation and the movement are convenient, the land use is saved, the green construction is embodied, the cost is saved in the processing of the device, the mud after stirring is fully utilized, the phenomenon of mud waste is prevented, the integral working efficiency is improved, and the device is more economical and practical.
Drawings
Fig. 1 is a schematic view of the overall structure of a cement slurry processing apparatus.
Fig. 2 is a schematic diagram of the overall structure of the mixing device.
FIG. 3 is a schematic view showing a connection structure of a cement storing device and a feeding device.
Fig. 4 is a schematic view of the connection structure of the weighing stirrer and the water supply mechanism.
Fig. 5 is a schematic view of the overall structure of the mixing hopper.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings:
with reference to fig. 1 to 5, cement paste processing equipment comprises a cement storage device 1, a feeding device 2, a mixing device 3 and a base 4, wherein the cement storage device 1 is arranged on the base 4, the feeding device 2 is connected with the cement storage device 1, the mixing device 3 comprises a weighing stirrer 5, a mixing stocker 6 and a water supply mechanism 7, a -th support frame 41 is arranged on the -th base at the rear end of the cement storage device 1, the mixing stocker 6 is arranged on a -th support frame 41, a second support frame 42 is arranged at the upper end of the -th support frame 41, and the weighing stirrer 5 and the water supply mechanism 7 are arranged on the second support frame 42.
The weighing stirrer 5 comprises an -th slurry tank 51, a weighing mechanism 52 is arranged on the bottom end face of the -th slurry tank 51, a -th feeding pipe 53 and a -th stirring motor 54 are arranged at the upper end of the 0-th slurry tank 51, a transmission shaft of the -th stirring motor 54 penetrates through the -th slurry tank 51 to be connected with a -th stirring rod 55 arranged in the -th slurry tank, and a -th stirring component 56 is connected to the -th stirring rod 55.
The mixing hopper 6 comprises a second slurry tank 61, a th slurry tank 51 is communicated with the second slurry tank 61 through a th slurry discharge pipe 57, the upper end of the second slurry tank 61 is provided with a second stirring motor 62, the transmission shaft of the second stirring motor 62 passes through the second slurry tank 61 and is connected with a second stirring rod 63 arranged in the second slurry tank 61, and a second stirring assembly 64 is connected on the second stirring rod 63.
The grout outlet of the second grout tank 61 is connected with a double-cylinder grouting pump 65, a second grout discharging pipe 66 is connected to the double-cylinder grouting pump 65, the water supply mechanism 7 comprises a water supply tank 71, a water supply pump 72 is arranged in the water supply tank 71, and the water supply pump 72 is connected with the -th grout tank 61 through a water supply pipe 73.
The cement storage device 1 comprises a storage tank 11, a dust removal mechanism 12 and a blowing mechanism 13, wherein the storage tank 11 is connected to a th base 4 through a charging bucket supporting seat 14, the dust removal mechanism 12 comprises a th filter element 121 and a th vibrator 122, a charging bucket air outlet cylinder 15 is arranged at the upper end of the storage tank 11, the th vibrator 122 is connected to the charging bucket air outlet cylinder 15 through a vibration supporting frame, and the dust filter element 121 is arranged in the charging bucket air outlet cylinder 15 at the lower end of the th vibrator 122.
Blowing mechanism 13 includes that air injector 131, air compressor machine and pore case, and air compressor machine and pneumatic control box connect on the material jar props seat 14, and the air compressor machine passes through the air-supply pipe and connects air injector, and air injector 131 links to each other with the outer wall of the lower part of storage tank 11, and air pipe that air injector 131 passed storage tank 11.
The feeding device 2 comprises a screw feeder 21, the lower part of the screw feeder 21 is connected with a material pipe support seat 14 through a feeding bracket 22, an th pulling plate 16 is arranged on the outer wall of the middle part of the storage tank 11, the middle part of the screw feeder 21 is connected with a th pulling plate 16 through a th steel cable 23, and the rear part of the screw feeder 21 is positioned above a th feeding pipe 53.
The th pulp tank 51 is circular shell form, the th agitator motor 54 is arranged in the middle of the upper end of the th pulp tank 51, the th feeding pipe 53 is arranged at the front end of the th agitator motor 54, the th pulp tank 51 at the rear end of the th agitator motor 54 is provided with a th observation port 58, and the th transparent plastic plate is arranged in the th observation port 58.
The second pulp tank 61 is in a circular shell shape, the second stirring motor 62 is arranged in the middle of the upper end of the second pulp tank 51, a second observation port 67 is formed in the second pulp tank 61 at the rear end of the second stirring motor 62, a second transparent plastic plate is arranged in the second observation port 67, the pulp discharging pipe 57 is positioned at the side end of the second observation port 67, and the pneumatic valve 59 is arranged on the pulp discharging pipe 57 at the upper end of the support frame 41.
The th stirring assemblies 56 have two, the two th stirring assemblies 56 are respectively connected with the upper part and the lower part of the th stirring rod 55. the th stirring assembly 56 comprises a th positioning tube 561, a th positioning tube 561 is connected with the th stirring rod 55 in a sleeved mode, and a plurality of th stirring blades 562 are connected with the outer end of the th positioning tube 561.
The number of the second agitating members 64 is two, and the two second agitating members 64 are respectively connected to the upper and lower portions of the second agitating shaft 63. The second stirring assembly 64 includes a second positioning tube 641, the second positioning tube 641 is sleeved on the second stirring rod 63, and a plurality of second stirring blades 642 are connected to an outer end of the second positioning tube 641.
A control chamber 8 is arranged in an th support frame 41 at the rear end of the mixing hopper 6, a controller 81 is arranged in the control chamber, the controller 81 controls the feeding device 2 and the mixing device 3 through a line, a water supply tank 71 is fixed on a second support frame 42 at the rear end of a th pulp tank 51, a th ladder stand 82 is arranged in a th support frame 42, and a second ladder stand 83 is arranged in the second support frame 42.
In embodiment 1, when the cement storage device 1 is charged, bulk cement enters the storage tank 11 through the cement feeding pipe, much dust is in the storage tank 11 during charging, and can be absorbed by the th filter element 121, when the th filter element 121 is too much, the th vibrator 122 drives the th filter element 121 to vibrate, and the dust absorbed by the th filter element 121 falls into the storage tank 11 after vibration.
When the cement storage device 1 is unloaded, the bulk cement falls into the screw feeder 21, the screw feeder 21 feeds the bulk cement into the th slurry tank 51 through the th feeding pipe 53, and when the material blockage or the material discharging obstruction occurs at the material outlet at the lower part of the material storage tank 11, the material blowing mechanism 13 is controlled, the air pipe on the air sprayer 131 blows air to perform air spraying and material passing on the blocked part.
Example 2, the above-mentioned weighing mixer 5, when performing the mixing type mixing, the th pneumatic valve 59 was closed by the control of the controller 81, the cement storing device 1 delivered the bulk cement to the th mortar tank 51 through the screw feeder 21, the weighing mechanism 52 monitored the weight of the bulk cement in the th mortar tank 51 in real time, when the weight of the bulk cement weighed by the weighing mechanism 51 reached the designated value, the screw feeder 21 and the cement storing device 1 were stopped, then the controller 81 controlled the water supply pump 72 to operate, the water supply pump 72 filled water to the th mortar tank 51, during which the th stirring motor 54 controlled the th stirring module 56 to rotate, and when the weighing mechanism 51 detected that the designated weight was reached, the water supply pump 72 stopped filling water.
Example 3, because the mud that the weighing agitator 5 stirs, can not be used at once, but the mud of jar still needs normal stirring processing down, so in the utility model discloses in set up mixing stocker 6. above-mentioned weighing agitator 5 stirs out the mud automatically, stirs after accomplishing, pneumatic valve 59 opens, and the mud that stirs enters into mixing stocker 6. simultaneously, the second agitator motor 62 in mixing stocker 6 works, stirs the mud that enters into second thick liquid jar 61, prevents that mud from taking place the segregation, when needing to use the mud, double-cylinder grouting pump 65 carries out the work of unloading through second discharge tube 66.
Above-mentioned grout processing equipment has designed cement storage device 1, material feeding unit 2 and compounding device 3, realizes the automated control of slurrying, has solved the accurate measurement problem of cement and water. In the cement paste processing equipment, the water cement ratio can be better controlled, the quality of the cement mixing pile is effectively controlled, and the cement is saved. And the problem of environmental protection is solved, and the dust is effectively controlled.
The cement slurry processing equipment is integrally positioned in the integrated device, is convenient to operate, install and move, saves land, embodies green construction, saves cost in processing, fully utilizes the stirred slurry, prevents slurry waste, improves the overall working efficiency, and is more economical and practical.
Of course, the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and the changes, modifications, additions or substitutions made by those skilled in the art within the scope of the present invention should also belong to the protection scope of the present invention.

Claims (9)

  1. The cement paste processing equipment is characterized by comprising a cement storage device, a feeding device, a mixing device and a th base, wherein the cement storage device is arranged on the th base, the feeding device is connected with the cement storage device, the mixing device comprises a weighing stirrer, a mixing material storage device and a water supply mechanism, a th support frame is arranged on a th base at the rear end of the cement storage device, the mixing material storage device is connected to a th support frame, a second support frame is arranged at the upper end of a th support frame, and the weighing stirrer and the water supply mechanism are connected to the second support frame;
    the weighing stirrer comprises an th slurry tank, a weighing mechanism is arranged on the bottom end face of the th slurry tank, a th feeding pipe and a th stirring motor are arranged at the upper end of the 0 th slurry tank, a transmission shaft of a th stirring motor penetrates through the th slurry tank to be connected with a th stirring rod arranged in the th slurry tank, and a th stirring component is connected to the th stirring rod;
    the mixing and storing device comprises a second slurry tank, the th slurry tank is communicated with the second slurry tank through a slurry discharging pipe, the upper end of the second slurry tank is provided with a second stirring motor, a transmission shaft of the second stirring motor penetrates through the second slurry tank to be connected with a second stirring rod arranged in the second slurry tank, the second stirring rod is connected with a second stirring assembly, a double-cylinder grouting pump is connected to the slurry outlet of the second slurry tank, the second slurry discharging pipe is connected to the double-cylinder grouting pump, the water supply mechanism comprises a water supply tank, a water supply pump is arranged in the water supply tank, and the water supply pump is connected with the th slurry tank through a water supply pipe.
  2. 2. The cement paste processing equipment of claim 1, wherein the cement storage device includes a storage tank, a dust removal mechanism and a blowing mechanism, the storage tank is connected to the th base through a charging bucket support seat, the dust removal mechanism includes a th filter element and a th vibrator, a charging bucket outlet cylinder is arranged at the upper end of the storage tank, the th vibrator is connected to the inside of the charging bucket outlet cylinder through a vibration support frame, and the dust filter element is arranged inside the charging bucket outlet cylinder at the lower end of the th vibrator.
  3. 3. The cement paste processing equipment of claim 2, wherein the blowing mechanism includes an air sprayer, an air compressor and an air hole box, the air compressor and the air control box are connected to the bucket support base, the air compressor is connected to the air sprayer through an air pipe, the air sprayer is connected to the outer wall of the lower portion of the storage tank, and the air pipe of the air sprayer passes through the storage tank.
  4. 4. The cement paste processing device according to claim 2, wherein the feeding device comprises a screw feeder, the lower part of the screw feeder is connected with the material pipe support base through a feeding bracket, the outer wall of the middle part of the storage tank is provided with a th pulling plate, the middle part of the screw feeder is connected with a th pulling plate through a th steel cable, and the rear part of the screw feeder is positioned above a th feeding pipe.
  5. 5. The cement paste processing equipment of claim 1, wherein the pulp tank is a circular shell, the 0 th agitator motor is arranged in the middle of the upper end of the th pulp tank, the th feed pipe is arranged at the front end of the th agitator motor, the th pulp tank at the rear end of the th agitator motor is provided with a th observation port, and the th observation port is provided with a th transparent plastic plate.
  6. 6. The cement paste processing equipment of claim 1, wherein the second slurry tank is in a circular shell shape, the second stirring motor is arranged in the middle of the upper end of the second slurry tank, the second slurry tank at the rear end of the second stirring motor is provided with a second observation port, a second transparent plastic plate is arranged in the second observation port, the slurry discharge pipe is positioned at the side end of the second observation port, and the slurry discharge pipe at the upper end of the strut is provided with a pneumatic valve.
  7. 7. The cement paste working devices of claim 1, wherein there are two stirring assemblies, two stirring assemblies are respectively connected to the upper and lower parts of the stirring rod;
    the th stirring assembly comprises a th positioning pipe, a th positioning pipe is sleeved on the th stirring rod, and the outer end of the th positioning pipe is connected with a plurality of th stirring blades.
  8. 8. kinds of cement paste processing equipment according to claim 1, wherein there are two second stirring assemblies, two second stirring assemblies are connected to the upper and lower parts of the second stirring rod respectively;
    the second stirring assembly comprises a second positioning pipe, the second positioning pipe is sleeved on the second stirring rod, and the outer end of the second positioning pipe is connected with a plurality of second stirring blades.
  9. 9. The cement paste processing equipment of claim 1, wherein a control room is provided in the th support frame at the rear end of the mixing hopper, a controller is provided in the control room, and the controller controls the feeding device and the mixing device through a line.
CN201920277637.3U 2019-03-06 2019-03-06 cement paste processing equipment Expired - Fee Related CN209999483U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920277637.3U CN209999483U (en) 2019-03-06 2019-03-06 cement paste processing equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920277637.3U CN209999483U (en) 2019-03-06 2019-03-06 cement paste processing equipment

Publications (1)

Publication Number Publication Date
CN209999483U true CN209999483U (en) 2020-01-31

Family

ID=69301057

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920277637.3U Expired - Fee Related CN209999483U (en) 2019-03-06 2019-03-06 cement paste processing equipment

Country Status (1)

Country Link
CN (1) CN209999483U (en)

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Granted publication date: 20200131