CN216941302U - Concrete mixing plant system - Google Patents

Concrete mixing plant system Download PDF

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Publication number
CN216941302U
CN216941302U CN202220509212.2U CN202220509212U CN216941302U CN 216941302 U CN216941302 U CN 216941302U CN 202220509212 U CN202220509212 U CN 202220509212U CN 216941302 U CN216941302 U CN 216941302U
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module
base module
blender
mixer
base
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CN202220509212.2U
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孙科
朱良
张晶
范维全
李素坤
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Yunnan Construction Investment Construction Machinery Co ltd
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Yunnan Construction Investment Construction Machinery Co ltd
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Abstract

The utility model provides a concrete mixing plant system, its characterized in that, it includes aggregate storehouse module, conveyer module, powder storehouse module, metering device module, mixer module and base module, be equipped with a plurality of mount pads that are used for supporting and connecting concrete equipment landing leg in the base module, be equipped with the bolt hole on each mount pad respectively, the landing leg of aggregate storehouse module, conveyer module, powder storehouse module and mixer module can install in on the mount pad and through the bolt with base module rigid coupling. The concrete mixing plant system is provided with the base module which is generally used for installing various types of equipment, so that the powder bin module, the conveyor module, the aggregate bin module, the metering device module and the mixer module with proper types can be selected according to requirements, and concrete mixing plants with different performances can be matched. The utility model is beneficial to improving the product design speed, the product universality and the construction efficiency, has strong practicability and is suitable for being widely popularized.

Description

Concrete mixing plant system
[ technical field ] A method for producing a semiconductor device
The utility model relates to construction machinery equipment, in particular to a concrete mixing plant system.
[ background of the utility model ]
At present, commercial concrete in China is widely applied and popularized, and new requirements are put forward on concrete production equipment along with extension and change of construction sites. Market requirements are ever-changing, and in order to meet increasingly wide and rapidly-changing market requirements, manufacturers must accelerate the development speed of various types of mixing stations as much as possible and improve the universality of products, so that a modular design is necessary: by adopting a modular design method convenient for production and installation, independent modules of the mixing plant are developed and designed, and different types and specifications of mixing plant products are formed by selecting different types of modules, so that the requirements of customers are met. The design of the mixing plant and the production systematization can be realized through the modularized design, the adaptability of the product is better, the installation and the disassembly are more convenient, the design and trial-manufacture period is shortened, and the design and the production cost are reduced. In the prior art, various devices are generally customized according to performance requirements, then a foundation pier is poured, and then the corresponding devices are fixedly installed on the foundation pier for use. In this way, the customization requirement can be met, but the development speed of the product, the universality of the product and the construction efficiency are not improved, and therefore, the improvement is still needed.
[ Utility model ] content
The present invention is directed to solving the above problems and providing a concrete mixing plant system.
In order to solve the problems, the utility model provides a concrete mixing plant system which is characterized by comprising an aggregate bin module, a conveyor module, a powder bin module, a metering device module, a mixer module and a base module, wherein the base module is provided with a plurality of mounting seats for supporting and connecting concrete equipment supporting legs, each mounting seat is respectively provided with a bolt hole, and the supporting legs of the aggregate bin module, the conveyor module, the powder bin module and the mixer module can be arranged on the mounting seats and are fixedly connected with the base module through bolts.
Further, the base module includes aggregate storehouse base module, conveyer base module, powder storehouse base module, mixer base module, aggregate storehouse base module with the conveyer base module passes through the bolt and can dismantle the connection, conveyer base module with the connection can be dismantled through the bolt to mixer base module, mixer base module with powder storehouse base module passes through the bolt and can dismantle the connection.
Furthermore, a plurality of mounting seats are respectively arranged on the aggregate bin base module, the conveyor base module, the powder bin base module and the stirrer base module.
Furthermore, the device also comprises a control room module and a control room base module, wherein the supporting legs of the control room module can be arranged on the control room base module and are fixedly connected with the control room base module through bolts.
Further, the control room base module is detachably connected with the stirrer base module through bolts.
Furthermore, a passage for the transport vehicle to pass through is arranged on the stirrer base module.
Furthermore, a slope platform is arranged on the aggregate bin base module, one end of the slope platform is flush with the ground, and the other end of the slope platform is lifted to a position higher than the surface of the conveyor base module.
Further, the mixer module comprises a mixer, a mixer bottom steel frame and a mixer top steel frame, the mixer top steel frame is fixedly arranged on the mixer bottom steel frame, and the mixer is arranged between the mixer top steel frame and the mixer bottom steel frame.
Furthermore, a plurality of bolt mounting holes used for connecting the metering device module are formed in the steel frame at the top of the stirrer, and the metering device module can be mounted on the steel frame at the top of the stirrer through bolts.
Further, the conveyor module and the powder bin module are respectively connected with the metering device module, and the aggregate bin module is connected with the conveyor module.
The present invention advantageously contributes to effectively solving the above-mentioned problems. The concrete mixing plant system is provided with the base module which is generally used for installing various types of equipment, so that the powder bin module, the conveyor module, the aggregate bin module, the metering device module and the mixer module with proper types can be selected according to requirements, and concrete mixing plants with different performances can be matched. During installation, the powder bin module, the conveyor module, the aggregate bin module, the metering device module and the stirrer module of corresponding models are installed on the corresponding powder bin base module, the conveyor base module, the aggregate bin base module, a stirrer top steel frame and the stirrer base module through bolts, then the aggregate bin module, the conveyor module, the stirrer module, the powder bin module and the metering device module are connected through a known method, installation can be completed, foundation piers for installation do not need to be poured on site according to different equipment models on site, and construction and installation are facilitated. The concrete mixing plant system is beneficial to improving the product design speed, the required concrete mixing plant can be realized only by selecting the type from the corresponding equipment warehouse and then installing the type on the corresponding base module, the product universality can be improved, the construction efficiency is improved, and the concrete mixing plant system has strong practicability and is suitable for being widely popularized.
[ description of the drawings ]
Fig. 1 is a schematic structural diagram of the present invention.
The attached drawings are as follows: aggregate bin module 10, aggregate storage hopper 11, weighing belt conveyor 12, frame 13, conveyor module 20, aggregate bin module 30, metering device module 40, blender module 50, blender 51, blender bottom steel frame 52, blender top steel frame 53, base module 60, aggregate bin base module 61, ramp platform 611, conveyor base module 62, aggregate bin base module 63, blender base module 64, passage 641, control room base module 65, mounting seat 70, control room module 80.
[ detailed description ] embodiments
The following examples are further illustrative and supplementary to the present invention and do not limit the present invention in any way.
As shown in fig. 1, the concrete batching plant system of the present invention comprises an aggregate bin module 10, a conveyor module 20, a powder bin module 30, a metering device module 40, a blender module 50 and a base module 60.
The base module 60 is used for being matched with equipment of different models to be fixedly installed so as to reduce the workload of casting foundation piers for equipment fixation and the like on site according to different conditions, thereby conveniently selecting the equipment according to needs to form concrete mixing plants with different performances and facilitating the rapid installation on site.
The base module 60 is a steel frame structure that can be laid flat on the ground to stably mount the devices. The specific steel frame structure of the base module 60 can be set as required, and the main requirements are to meet the strength requirement and the stability requirement. A plurality of mounting seats 70 for supporting and connecting concrete equipment legs are preset at different positions on the base module 60. The shape of the mount 70 is not limited, and it can stably support the equipment. The mounting seat 70 is respectively provided with bolt holes, which can facilitate the fixing of the equipment legs on the mounting seat 70 through bolts. The distribution of the mounting seats 70 can be set by investigating the size of the existing common concrete equipment, so that the mounting seats are matched with the fixing of the support legs of various types of concrete equipment as much as possible.
The base module 60 includes an aggregate bin base module 61, a conveyor base module 62, a powder bin base module 63, and a blender base module 64. Further, it may also include a control room base module 65.
The silo base module 61 is used for fixedly mounting the silo module 10.
The conveyor base module 62 is used to fixedly mount the conveyor module 20.
The silo base module 63 is used for fixedly mounting the silo module 30.
The blender base module 64 is used to fixedly mount the blender module 50.
The control room base module 65 is used for fixedly mounting the control room module 80.
The aggregate bin base module 61 and the conveyor base module 62 are detachably connected through bolts, the conveyor base module 62 and the stirrer base module 64 are detachably connected through bolts, the stirrer base module 64 and the aggregate bin base module 63 are detachably connected through bolts, so that the aggregate bin base module 61, the conveyor base module 62, the stirrer base module 64 and the aggregate bin base module 63 are sequentially connected together, and the aggregate bin base module 61, the conveyor base module 62, the stirrer base module 64 and the aggregate bin base module 63 can be detached when being moved, so that loading is convenient. The control room base module 65 is detachably connected to the mixer base module 64 by bolts, which are located between the powder bin base module 63 and the conveyor base module 62. When the distribution positions of the aggregate bin base module 61, the conveyor base module 62, the powder bin base module 63, the mixer base module 64 and the control room base module 65 are determined, the basic layout of the concrete mixing plant is also determined, and only corresponding equipment with determined type selection needs to be fixedly installed on each base module 60 and then connected.
The aggregate bin base module 61, the conveyor base module 62, the powder bin base module 63, the mixer base module 64, and the control room base module 65 are respectively provided with a plurality of mounting seats 70, and the mounting seats 70 are respectively preset with bolt holes (not shown). The location distribution of the mounting seats 70 is designed according to the common device model on the market. Of course, the installation of all equipment models cannot be met, and only the universal installation of a plurality of frequently used equipment models needs to be met, so that the requirements of modular model selection construction can be met to a certain extent, and the universality and the construction efficiency of product design are greatly improved. Especially, a series of devices designed by the same manufacturer usually have different external dimensions, but the structural design follows similar principles, so that especially for different models of devices of the same manufacturer, universal installation requirements of different dimensions are more satisfied. In practice, the overall dimensions of various common devices can be investigated in advance, and then comprehensive analysis is performed to design the mounting seats 70 with corresponding layouts, so that the positions of the mounting seats 70 are distributed, and the mounting of devices with various models can be met.
When the aggregate bin base module 61, the conveyor base module 62, the powder bin base module 63, the mixer base module 64 and the control room base module 65 are detachably connected through bolts, connecting strips (not shown in the figure) extending outwards can be arranged at the edges of the base modules 60 respectively, and the connecting strips are steel plates or steel pipe structures and have high strength. A plurality of bolt holes are preset on the connecting strip. When the installation is carried out, the connecting strips of two adjacent base modules 60 are correspondingly arranged, and then the bolt holes are aligned, so that the connection can be fixedly carried out through bolts; through the bolt hole of selecting different positions, alright adjust the hookup location between two adjacent base modules 60 to adjust the mounted position of base module 60, in order to better adaptation installation demand. The quantity and the position of the connecting strips can be preset in a large quantity according to needs, so that the universality is improved, and various requirements are met. The shape and structure of the connecting strip are not limited, the whole connecting strip is strip-shaped, is not limited to a single metal strip or a metal plate, and can also be a steel frame strip-shaped structure formed by welding a plurality of steel pipes.
Further, since the mixed concrete can be transported by the transportation vehicle, for the transportation of the transportation vehicle, a passage 641 for the transportation vehicle to pass through is provided on the mixer base module 64. During design, the passing channel 641 can be formed on the blender base module 64 only by performing a hollow design at a lower position of the blender base module 64 corresponding to the installation position of the blender module 50.
Further, to facilitate the pouring of the aggregate into the silo module 10, a slope platform 611 is provided on the silo base module 61. One end of the slope platform 611 is flush with the ground, and the other end is raised to a position higher than the surface of the conveyor base module 62, so that the unloading is convenient, and the aggregates can be conveniently and more conveniently unloaded into the aggregate bin module 10.
The blender module 50 is used to blend and mix raw materials (aggregate, powder, water, additives, etc.) to form concrete. The blender module 50 includes a blender 51, a blender bottom steel frame 52 and a blender top steel frame 53.
The blender bottom steel frame 52 may be erected on the blender base module 64 and fixedly connected to the blender base module 64 by bolts. The blender base frame 52 should be provided with legs to facilitate attachment to the mounting base 70 on the blender base module 64. The structure of the bottom steel frame 52 of the blender can be set according to the model size of the blender 51, and the blender 51 can be conveniently installed.
The blender top steel frame 53 is disposed above the blender bottom steel frame 52 and is used to mount the metering device module 40. The mixer top steel frame 53 and the mixer bottom steel frame 52 are fixedly connected through bolts, and a space for installing the mixer 51 is formed between the mixer top steel frame 53 and the mixer bottom steel frame 52. In actual installation, the mixer 51 may be installed on the mixer bottom steel frame 52, and then the mixer top steel frame 53 may be installed on the mixer bottom steel frame 52.
The mixer 51 is used for mixing, and a known mixing device can be selected, and the mixer can be fixed on a mixer bottom steel frame 52 through bolts.
The concrete shapes of the blender bottom steel frame 52 and the blender top steel frame 53 are not limited, and the steel frame structures can provide installation space, and a plurality of bolt installation holes are preset on the steel frame structures, so that the blender 51 and the metering device module 40 can be conveniently installed on the steel frame structures. And the blender base steel frame 52 itself is provided with legs that are bolted to the blender base module 64.
The aggregate bin module 10 is used for storing aggregate, comprises an aggregate storage hopper 11, a weighing belt conveyor 12 and a rack 13, can adopt a universal design, and can select types from various known devices. Generally, the frame 13 of the silo module 10 is provided with legs, and the silo base module 61 is provided with corresponding mounting seats 70 according to the types of various silo modules 10 on the market, so that the silo module 10 can be fixed on the mounting seats 70 of the silo base module 61 through the legs and fixedly connected with the silo base module 61 through bolts. Like this, when choosing the aggregate bin module 10 of different models, the aggregate bin module 10 of different models can be convenient erects on this aggregate bin base module 61 to carry out fixed connection through the bolt hole of predetermineeing on the mount pad 70.
The conveyor module 20 is used to convey aggregate to the metering device module 40. The conveyor module 20 may be a known belt conveyor that is obliquely connected between the silo module 10 and the metering device for conveying the aggregate located at a lower level to the metering device located at an upper level. A plurality of support legs are arranged below the conveyor module 20 at intervals, and corresponding mounting seats 70 are designed on the conveyor base module 62 according to the models of various conveyors on the market, so that the conveyor module 20 can be fixed on the mounting seats 70 on the conveyor base module 62 through the support legs and fixedly connected with the conveyor base module 62 through bolts. Thus, when different types of conveyor modules 20 are selected, different types of conveyor modules 20 can be conveniently erected on the conveyor base module 62 and fixedly connected through the bolt holes preset on the mounting seat 70.
The metering device module 40 is used for metering the materials, so that the materials in accordance with the required proportion enter the stirrer 51 for stirring. The metering device module 40 is located on top of the blender module 50 and is typically comprised of a powder hopper, an additive metering device, a water weighing device, and a sensor assembly. The powder material measuring hopper and the water weighing device can be fixed on a steel frame 53 at the top of the stirring machine. Be equipped with a plurality of bolt mounting holes on mixer top steelframe 53, consequently, the bolt mounting hole of powder weighing hopper, water weighing device optional suitable position department is fixed to install powder weighing hopper, water weighing device in mixer top steelframe 53 suitable position department. The admixture metering device is usually positioned above the water weighing device and consists of a metering frame, a metering hopper and a sensor assembly, and the admixture metering device can be fixed on a top steel frame 53 of the stirring machine through a simple bracket. Because the mixer top steelframe 53 carries out the structural design time, can refer to the position of the good bolt mounting hole of the size design of the metering device module 40 of multiple model, consequently, when choosing the metering device module 40 of different models, the metering device module 40 of different models can be convenient erects on mixer top steelframe 53 to carry out fixed connection through predetermined bolt mounting hole.
The powder bin module 30 is used for storing powder and delivering powder to a metering device, and is connected to the metering device module 40 by a known method. The powder bin module 30 generally includes a cement bin, a pulverized coal bin, an expansion agent bin, a powder delivery pipe connected thereto, and the like. The powder bin module 30 may be selected from known powder bin devices, and the number and type thereof may be selected according to the need. The powder bin module 30 is generally provided with legs, and the corresponding mounting seat 70 of the powder bin base module 63 is designed according to the models of various powder bin devices on the market, so that the powder bin module 30 can be fixed on the mounting seat 70 of the powder bin base module 63 through the legs and fixedly connected with the powder bin base module 63 through bolts. Thus, when powder bin modules 30 of different models or different quantities are selected, these powder bin modules 30 can be conveniently erected on the powder bin base module 63 and fixedly connected through the bolt holes preset on the mounting seat 70.
The control room module 80 is used for the integrated control of the system, and can be designed by referring to the prior art, and is installed beside the blender module 50, and can monitor and control the system.
Thus, the concrete mixing plant system of the present invention is formed, which is provided with the base module 60 commonly used for installation of various types of equipments, so that the powder bin module 30, the conveyor module 20, the aggregate bin module 10, the metering device module 40 and the mixer module 50 of appropriate types can be selected as required, thereby matching concrete mixing plants of different performances. During installation, the powder bin module 30, the conveyor module 20, the aggregate bin module 10, the metering device module 40 and the stirrer module 50 of corresponding models are installed on the corresponding powder bin base module 63, the conveyor base module 62, the aggregate bin base module 61, the stirrer top steel frame 53 and the stirrer base module 64 through bolts, and then the aggregate bin module 10, the conveyor module 20, the stirrer module 50, the powder bin module 30 and the metering device module 40 are connected through a known method, so that installation can be completed without pouring foundation piers for installation on site according to different equipment models, and construction and installation are facilitated.
Although the present invention has been disclosed in the above embodiments, the scope of the present invention is not limited thereto, and the above components may be replaced with similar or equivalent elements known to those skilled in the art without departing from the concept of the present invention.

Claims (10)

1. The utility model provides a concrete mixing plant system, its characterized in that, it includes aggregate storehouse module (10), conveyer module (20), powder storehouse module (30), metering device module (40), mixer module (50) and base module (60), be equipped with a plurality of mount pads (70) that are used for supporting and connecting the concrete equipment landing leg on base module (60), be equipped with the bolt hole on each mount pad (70) respectively, the landing leg of aggregate storehouse module (10), conveyer module (20), powder storehouse module (30) and mixer module (50) can install in on mount pad (70) and through the bolt with base module (60) rigid coupling.
2. The concrete batching plant system according to claim 1, wherein said base module (60) comprises an aggregate bin base module (61), a conveyor base module (60), a powder bin base module (63), and a mixer base module (64), said aggregate bin base module (61) being detachably connected to said conveyor base module (60) by bolts, said conveyor base module (60) being detachably connected to said mixer base module (64) by bolts, said mixer base module (64) being detachably connected to said powder bin base module (63) by bolts.
3. The concrete batching plant system according to claim 2, wherein a plurality of said mounting bases (70) are provided on said aggregate bin base module (61), said conveyor base module (62), said powder bin base module (63) and said blender base module (64), respectively.
4. The concrete batching plant system as recited in claim 3, further comprising:
the support legs of the control room module (80) can be arranged on the control room base module (65) and are fixedly connected with the control room base module (65) through bolts.
5. The concrete batching plant system as set forth in claim 4 wherein said control room base module (65) is bolted removably to said blender base module (64).
6. The concrete batching plant system according to claim 5, wherein said blender base module (64) is provided with a passage channel (641) for the passage of transport vehicles.
7. The concrete batching plant system according to claim 6, wherein a ramp platform (611) is provided on said silo base module (61), said ramp platform (611) having one end flush with the ground and one end raised above the surface of said conveyor base module (62).
8. The concrete batching plant system of claim 7, wherein said blender module (50) comprises a blender (51), a blender bottom steel frame (52) and a blender top steel frame (53), said blender top steel frame (53) being fixedly attached to said blender bottom steel frame (52), said blender (51) being disposed between said blender top steel frame (53) and said blender bottom steel frame (52).
9. The concrete mixing plant system of claim 8 wherein said mixer top steel frame (53) has a plurality of bolt mounting holes for attachment of said metering device module (40), said metering device module (40) being bolt mountable to said mixer top steel frame (53).
10. The concrete mixing plant system according to claim 9,
the conveyor module (20) and the powder bin module (30) are respectively connected with the metering device module (40), and the aggregate bin module (10) is connected with the conveyor module (20).
CN202220509212.2U 2022-03-10 2022-03-10 Concrete mixing plant system Active CN216941302U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220509212.2U CN216941302U (en) 2022-03-10 2022-03-10 Concrete mixing plant system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220509212.2U CN216941302U (en) 2022-03-10 2022-03-10 Concrete mixing plant system

Publications (1)

Publication Number Publication Date
CN216941302U true CN216941302U (en) 2022-07-12

Family

ID=82295112

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220509212.2U Active CN216941302U (en) 2022-03-10 2022-03-10 Concrete mixing plant system

Country Status (1)

Country Link
CN (1) CN216941302U (en)

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