CN213107437U - Fast moving concrete mixing plant - Google Patents

Fast moving concrete mixing plant Download PDF

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Publication number
CN213107437U
CN213107437U CN202021409203.3U CN202021409203U CN213107437U CN 213107437 U CN213107437 U CN 213107437U CN 202021409203 U CN202021409203 U CN 202021409203U CN 213107437 U CN213107437 U CN 213107437U
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water
unit
box
storage unit
tank
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CN202021409203.3U
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Chinese (zh)
Inventor
张瑞
王强
毕志杰
林栋�
王世花
兰孝强
逯与向
仇洪林
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Qingdao Co Nele Machinery Co ltd
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Qingdao Co Nele Machinery Co ltd
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Abstract

A fast moving concrete mixing plant comprises a box-type unit provided with a box-type frame, wherein the box-type unit is divided into a mixing unit and a water storage unit; a stirrer and a water supply tank are arranged in a box type frame of the stirring unit, the water supply tank is connected with a liquid inlet arranged on the stirrer through a water supply pipe, and a first water pump is arranged on the water supply pipe; a water storage tank is arranged in a tank type frame of the water storage unit, a second water pump is arranged at the bottom in the water storage tank, the second water pump is connected with a water delivery pipe, and the water delivery pipe extends out of the water storage tank and is communicated with a water supply tank; the stirring unit is stacked on the water storage unit. The utility model discloses a remove formula concrete mixing plant soon is through setting up modular box unit, the combination and the partition of being convenient for, and the volume of every box unit is less after the partition, is convenient for directly transport to what make the mixing plant realize removes soon. The box-type units of the mixing plant are stacked, the occupied area is small, the mixing plant is convenient to lay in a narrow space, and more early-stage foundation investment is not needed to be carried out on a laying site.

Description

Fast moving concrete mixing plant
Technical Field
The utility model belongs to the building engineering machinery field especially relates to a remove formula concrete mixing plant soon.
Background
Among the prior art, the ultra high performance concrete mixing plant that the building engineering field used, need to put into special proportioning machine with the broken bag of various ton bag raw materials that the ration is good in advance, through proportioning machine ration according to the mix proportion of various aggregates once more, various powdery material also need pack into in advance in the cement storehouse and carry through screw conveyer and weigh in the weighing hopper and throw in the mixer after weighing, various liquid also carry through the water pump and throw in the mixer after the measurement in the weighing hopper, its structure is comparatively traditional, adopt equipment quantity more, area is big, equipment fixing is troublesome, equipment foundation drops into greatly in installation earlier stage, it is inconvenient to transport, the batching time is longer. The existing mixing plant has the disadvantages of more process steps, troublesome working process, complex control system configuration, high difficulty in later maintenance and long-time training of operators of the control system.
SUMMERY OF THE UTILITY MODEL
The utility model discloses to above-mentioned current mixing plant area is big, the structure is complicated, transport inconvenient, the difficult problem of maintaining, provide one kind take up an area of for a short time, simple structure, be convenient for transport and maintain move formula concrete mixing plant soon.
In order to achieve the above object, the utility model discloses a technical scheme be:
a fast moving type concrete mixing plant comprises a box-type unit provided with a box-type frame, wherein the box-type unit is divided into a mixing unit and a water storage unit;
a stirrer and a water supply tank are arranged in a box-type frame of the stirring unit, the water supply tank is connected with a liquid inlet arranged on the stirrer through a water supply pipe, a first water pump is arranged on the water supply pipe, and a first feed inlet and a second feed inlet arranged on the stirrer are respectively connected with a first feed hopper and a second feed hopper;
a water storage tank is arranged in a tank type frame of the water storage unit, a second water pump is arranged at the bottom in the water storage tank, the second water pump is connected with a water delivery pipe, and the water delivery pipe extends out of the water storage tank and is communicated with a water supply tank;
the stirring unit is stacked on the water storage unit.
Preferably, a controller electrically connected with the stirrer is installed in a box-type frame of the stirring unit, a water level sensor is installed in the water supply tank, and the second water pump and the water level sensor are both electrically connected with the controller;
and a flowmeter is arranged on the water supply pipe, and the flowmeter and the first water pump are electrically connected with the controller.
Preferably, the water supply pipe is connected to a top of the water supply tank, and the water supply pipe is connected to a bottom of the water supply tank.
Preferably, the water conveying pipe comprises a first pipe section, a second pipe section and a hose, the first pipe section and the second pipe section are connected through the hose, the first pipe section is located in the water storage unit, and the second pipe section is located in the stirring unit.
Preferably, the first feeding hole and the second feeding hole are both provided with gates.
Preferably, the stirrer is positioned at the front part of the corresponding box-type frame, a discharge port is arranged at the front side of the bottom of the stirrer, and the discharge port is connected with a discharge hopper;
and an accommodating space is arranged between the front end of the water storage tank and the front end of the corresponding box-type frame, and the discharge hopper is positioned in the accommodating space.
Preferably, the stirring unit is provided with walking platforms which are arranged on the left side and the right side of the bottom end of the corresponding box type frame;
the top ends of the first feed hopper and the second feed hopper extend out of the tops of the corresponding box-type frames.
Preferably, a ladder stand is arranged at the rear end of the box-type frame of the water storage unit.
Preferably, the box-type unit is further divided into a stirring unit, a water storage unit and a storage unit, the storage unit is a box-type house, and the water storage unit is stacked on the storage unit.
Preferably, a ladder stand is arranged at the rear end of the storage unit, and a space is arranged between the rear end of the water storage unit and the rear end of the storage unit so as to arrange a platform on the top surface of the storage unit.
Compared with the prior art, the utility model discloses an advantage lies in with positive effect:
the utility model discloses a remove formula concrete mixing plant soon is through setting up modular box unit, the combination and the partition of being convenient for, and the volume of every box unit is less after the partition, is convenient for directly transport to what make the mixing plant realize removes soon. The box-type units of the mixing plant are stacked, the occupied area is small, the mixing plant is convenient to lay in a narrow space, and more early-stage foundation investment is not needed to be carried out on a laying site. The internal structure of each box-type unit is simpler, and the combination and installation are easier.
The controller is arranged in the box-type unit, and the plurality of sensors are arranged, so that automatic control of each device of the mixing plant can be realized, the use difficulty is reduced, and long-time training is not needed.
The conduit pipe is divided into two pipe sections, the middle of the conduit pipe is connected through the hose, the mounting precision of the two pipe sections of the conduit pipe is reduced when the box-type units are stacked and spliced, the two pipe sections are not required to be completely coaxial, the communication can be completed, and the assembly of the mixing plant is easier.
All install the gate on two feed inlets, make the gate close the back, can put in the material to the feeder hopper, make the material keep in the feeder hopper, open the gate, the material of keeping in alright get into the mixer, improved the work efficiency of material stirring operation.
The bottom of the stirrer is provided with a discharge hole, and the water storage unit is provided with an accommodating space so as to accommodate a hopper, ensure that materials in the stirrer can be completely discharged, and simultaneously avoid the hopper to greatly increase the overall length of the stirring station, thereby reducing the occupation of space and improving the compactness of equipment.
The box-type unit also comprises a storage unit, so that workers can conveniently live or store construction articles, and the flexibility of the combined use of the mixing station is further increased.
Drawings
FIG. 1 is a first schematic structural view of a fast moving concrete mixing plant of the present invention;
FIG. 2 is a schematic structural view of a second fast moving concrete mixing plant of the present invention;
in the above figures: 1. a box-type frame; 21. a stirring unit; 22. a water storage unit; 23. a storage unit; 3. a blender; 31. a first feed port; 32. a second feed port; 33. a discharge hopper; 4. a water supply tank; 5. a water supply pipe; 51. a flow meter; 61. a first water pump; 62. a second water pump; 71. a first feed hopper; 72. a second feed hopper; 8. a water storage tank; 9. a water delivery pipe; 91. a first tube section; 92. a second tube section; 93. a hose; 10. a controller; 11. an accommodating space; 12. walking; 13. climbing a ladder; 14. a platform.
Detailed Description
The present invention is specifically described below by way of exemplary embodiments. It should be understood, however, that elements, structures and features of one embodiment may be beneficially incorporated in other embodiments without further recitation.
In the description of the present invention, it should be noted that the terms "inside", "outside", "upper", "lower", "front", "rear", and the like indicate orientations or positional relationships based on positional relationships shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
As shown in fig. 1 to 2, the present invention provides a fast moving concrete mixing plant, which comprises a box unit provided with a box frame 1.
The tank unit is divided into a stirring unit 21 and a water storage unit 22.
The mixer 3 and the water supply tank 4 are mounted in the tank frame 1 of the mixer unit 21.
The water supply tank 4 is connected to a liquid inlet provided in the mixer 3 through a water supply pipe 5, and a first water pump 61 is installed in the water supply pipe 5, so that water in the water supply tank 4 can be pumped into the mixer 3 through the water supply pipe 5.
The first feeding port 31 and the second feeding port 32 of the mixer 3 are respectively connected with a first feeding hopper 71 and a second feeding hopper 72 for respectively feeding dry-mixed materials formed by mixing quartz sand, silica fume, cement and the like and feeding fibers.
A water storage tank 8 is installed in the tank type frame 1 of the water storage unit 22, a second water pump 62 is installed at the bottom in the water storage tank 8, the second water pump 62 is connected with a water delivery pipe 9, and the water delivery pipe 9 extends out of the water storage tank 8 and is communicated with the water supply tank 4, so that the second water pump 62 can suck water in the water storage tank 8 and pump the water into the water supply tank 4 through the water delivery pipe 9.
The stirring unit 21 is stacked on the water storage unit 22, so that the floor space is small after the box-type units are combined.
The dry-mixed material and the fiber are respectively put into the mixer 3 through a first feed hopper 71 and a second feed hopper 72, the first water pump 61 pumps the water in the water supply tank 4 into the mixer 3, and the auxiliary material is put into the mixer 3 through a small material putting port. The dry-mixed materials, fibers, auxiliary materials and water are mixed and stirred in a stirrer 3 to form the required ultra-high performance concrete, and the ultra-high performance concrete is discharged through a discharge port of the stirrer 3.
When the amount of water in the water service box 4 is small, the second water pump 62 pumps the water in the storage tank 8 into the water service box 4. The feed water tank 4 is closer to the mixer 3, and can feed water quickly, improving the efficiency of the mixing operation.
In order to automate the control, a controller 10 is installed in the cabinet frame 1 of the stirring unit 21.
The controller 10 is electrically connected to the agitator 3 to control the operation of the agitator 3.
Install level sensor in the feed water tank 4, second water pump 62 and level sensor all are connected with controller 10 electricity to make controller 10 can survey the liquid level of holding water in the feed water tank 4, when the liquid level is less than the minimum of settlement, control second water pump 62 is gone into the water pump in the storage water tank 8, fills water for feed water tank 4, until the liquid level reaches the maximum of settlement.
The flow meter 51 is installed on the water supply pipe 5, the flow meter 51 and the first water pump 61 are electrically connected to the controller 10, the controller 10 can obtain the amount of water filled in the mixer 3 according to the flow rate measured by the flow meter 51, and the operation of the first water pump 6 is stopped when the amount of water reaches a set value.
The delivery pipe 5 is connected in the bottom of feed tank 4, and raceway 9 is connected at the top of feed tank 4 to can make full use of feed tank 4's accommodation space, the water can all flow into mixer 3 in feed tank 4, and the hydroenergy that storage water tank 8 sent into can be full of feed tank 4.
To facilitate the combined connection of the stirring unit 21 and the water storage unit 22, the water pipe 9 includes a first pipe section 91, a second pipe section 92, and a hose 93.
The first pipe section 91 is located in the water storage unit 22, and the second pipe section 92 is located in the stirring unit 21.
When the stirring unit 21 is dropped on the water storage unit 22, the first pipe section 91 and the second pipe section 92 need to be connected to restore the pipe connection between the water storage tank 8 and the water supply tank 4. Because the hose 93 is flexible, the first pipe section 91 and the second pipe section 92 are connected by the hose 93, so that the first pipe section 91 and the second pipe section 92 do not need to be coaxially aligned, the stirring unit 21 does not need to be stacked particularly accurately, and the assembly difficulty of the box-type unit is reduced.
In order to improve the efficiency of the stirring operation, gates are installed at both the first inlet 31 and the second inlet 32.
When the gate is closed, dry-mixed materials and fibers can be respectively put into the first feed hopper 71 and the second feed hopper 72, and the dry-mixed materials and the fibers cannot enter the stirrer 3 under the blocking of the gate, so that the dry-mixed materials and the fibers are temporarily stored in the corresponding feed hoppers. When the mixer 3 finishes one mixing operation, the gate can be opened after the mixed concrete is emptied, and dry-mixed materials and fibers required by the next mixing operation can fall into the mixer 3, so that the next mixing operation can be started as soon as possible, and the working efficiency is improved.
In order to empty the concrete, the bottom of the mixer 3 is provided with a discharge outlet, which is connected with a discharge hopper 33.
In order to reduce the occupation of the discharge hopper 33 to the space in the length direction, the mixer 3 is positioned at the front part of the corresponding box type frame 1, the discharge port is arranged at the front side of the mixer 3, the accommodating space 11 is arranged between the front end of the water storage tank 8 and the front end of the corresponding box type frame 1, the discharge hopper 33 is positioned in the accommodating space 11, and only the bottom end of the discharge hopper extends out of the accommodating space 11, so that the concrete is sent into other concrete storage and transportation devices.
In order to facilitate the operation of workers, the stirring unit 21 is provided with a walking board 12, the walking board 12 is arranged at the left side and the right side of the bottom end of the corresponding box type frame 1, so that the workers can walk on the walking board 12 and go to the stirrer 3 to perform the operations of maintenance, auxiliary material feeding and the like.
The top ends of the first hopper 71 and the second hopper 72 are protruded from the top of the corresponding box frame 1, thereby preventing the box frame 1 from interfering with the material feeding.
In order to improve the functionality of the mixing station, the box-type unit further comprises a storage unit 23, the storage unit 23 is a box-type house formed by the box-type frame 1, and the water storage unit 22 is stacked on the storage unit 23.
The storage unit 23 serves as a room, and can provide a place for a worker to rest and live, and also can provide a storage space for production tools.
In order to facilitate a worker to climb on the agitating unit 21, the rear end of the tank frame 1 of the water storage unit 22 is provided with a ladder 13.
In order to facilitate a worker to climb on the water storage unit 22, a ladder 13 is provided at the rear end of the storage unit 23.
A space is provided between the rear end of the water storage unit 22 and the rear end of the storage unit 23 to provide a platform 14 on the top surface of the storage unit, and the platform 14 enables a worker to stay on the top surface of the storage unit 23 and climb on the ladder 13 of the water storage unit 22.

Claims (10)

1. A fast moving concrete mixing plant is characterized by comprising a box-type unit provided with a box-type frame (1), wherein the box-type unit is divided into a mixing unit (21) and a water storage unit (22);
a stirrer (3) and a water supply tank (4) are installed in a box-type frame (1) of the stirring unit (21), the water supply tank (4) is connected with a liquid inlet arranged on the stirrer (3) through a water supply pipe (5), a first water pump (61) is installed on the water supply pipe (5), and a first feeding port (31) and a second feeding port (32) arranged on the stirrer (3) are respectively connected with a first feeding hopper (71) and a second feeding hopper (72);
a water storage tank (8) is installed in a box-type frame (1) of the water storage unit (22), a second water pump (62) is installed at the bottom in the water storage tank (8), the second water pump (62) is connected with a water delivery pipe (9), and the water delivery pipe (9) extends out of the water storage tank (8) and is communicated with a water supply tank (4);
the stirring unit (21) is stacked on the water storage unit (22).
2. The station according to claim 1, wherein a controller (10) electrically connected to the mixer (3) is installed in the box frame (1) of the mixing unit (21), a water level sensor is installed in the water supply tank (4), and the second water pump (62) and the water level sensor are both electrically connected to the controller (10);
and a flow meter (51) is installed on the water supply pipe (5), and the flow meter (51) and the first water pump (61) are electrically connected with the controller (10).
3. The station according to claim 1, wherein the water duct (9) is connected to the top of the water supply tank (4) and the water supply pipe (5) is connected to the bottom of the water supply tank (4).
4. The fast moving concrete mixing plant according to claim 1, characterized in that said water duct (9) comprises a first duct section (91), a second duct section (92) and a hose (93), said first duct section (91) and said second duct section (92) being connected by means of the hose (93), said first duct section (91) being located in the water storage unit (22) and said second duct section (92) being located in the mixing unit (21).
5. The station according to claim 1, wherein the first inlet (31) and the second inlet (32) are each provided with a gate.
6. The fast-moving concrete mixing plant according to claim 1, characterized in that said mixer (3) is located in front of the corresponding box frame (1), and the front side of the bottom of said mixer (3) is provided with a discharge outlet, said discharge outlet being connected with a discharge hopper (33);
an accommodating space (11) is arranged between the front end of the water storage tank (8) and the front end of the corresponding box-type frame (1), and the discharge hopper (33) is positioned in the accommodating space (11).
7. The fast moving concrete mixing plant according to claim 1, characterized in that said mixing unit (21) is provided with a walkway (12), said walkway (12) being provided on the left and right sides corresponding to the bottom end of the box frame (1);
the top ends of the first feed hopper (71) and the second feed hopper (72) extend out of the top of the corresponding box-type frame (1).
8. The fast moving concrete mixing plant according to claim 1, characterized in that the rear end of the box frame (1) of the water storage unit (22) is provided with a ladder (13).
9. The station according to claim 1, wherein the tank unit is further divided into a mixing unit (21), a water storage unit (22) and a storage unit (23), the storage unit (23) is a tank house, and the water storage unit (22) is stacked on the storage unit (23).
10. The station according to claim 9, wherein the storage unit (23) is provided with a ladder (13) at the rear end thereof, and the storage unit (23) is spaced from the rear end of the water storage unit (22) to provide a platform (14) on the top surface thereof.
CN202021409203.3U 2020-07-16 2020-07-16 Fast moving concrete mixing plant Active CN213107437U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021409203.3U CN213107437U (en) 2020-07-16 2020-07-16 Fast moving concrete mixing plant

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021409203.3U CN213107437U (en) 2020-07-16 2020-07-16 Fast moving concrete mixing plant

Publications (1)

Publication Number Publication Date
CN213107437U true CN213107437U (en) 2021-05-04

Family

ID=75677757

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021409203.3U Active CN213107437U (en) 2020-07-16 2020-07-16 Fast moving concrete mixing plant

Country Status (1)

Country Link
CN (1) CN213107437U (en)

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