CN218974935U - Steel management system - Google Patents

Steel management system Download PDF

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Publication number
CN218974935U
CN218974935U CN202223348753.0U CN202223348753U CN218974935U CN 218974935 U CN218974935 U CN 218974935U CN 202223348753 U CN202223348753 U CN 202223348753U CN 218974935 U CN218974935 U CN 218974935U
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China
Prior art keywords
steel
server
module
sensor
management system
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CN202223348753.0U
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Inventor
罗燕平
李星
刘浩楠
赵劲松
张自然
唐国华
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Sichuan Chuanjiao Road and Bridge Co Ltd
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Sichuan Chuanjiao Road and Bridge Co Ltd
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Abstract

The utility model relates to the field of building material management, in particular to a steel management system, which solves the problems of time and labor consumption in steel management in the prior art. The utility model comprises a truck crane, a tension sensor for steel lifting, a server, a position sensor and a loudspeaker; a signal transmitting/receiving device; the server is respectively connected with the tension sensor, the position sensor and the loudspeaker through the signal transmitting/receiving device; the server comprises an information receiving module; a storage module; the steel storage place is used for weighing the wagon balance; the wagon balance is connected with the storage module through the signal transmitting/receiving device. According to the utility model, the sensor is arranged on the truck crane, the wagon balance is arranged at the steel storage place, and the server is used for collecting and storing data, so that the steel consistency supervision record is realized; intelligent recording is carried out on unloading points and unloading quantity; and the automatic management is realized, and the workload of project management personnel is greatly reduced.

Description

Steel management system
Technical Field
The utility model relates to the field of building material management, in particular to a steel management system.
Background
Steel is often used in the project construction process, the steel is transported to a project warehouse from a supplier, and the project can be checked and accepted according to weighing data, but in the use process, if the use positions and the number of the steel are required to be accurately monitored, corresponding manpower is required to be input for special monitoring, and project personnel workload is large, work is complex and not easy to control.
There is a need for a new steel management method that solves the above problems.
Disclosure of Invention
The utility model provides a steel management system, which solves the problems that in the prior art, steel management is time-consuming and labor-consuming, and the management cannot realize mechanical automation.
The technical scheme of the utility model is realized as follows: the steel management system comprises a truck crane, a tension sensor for hoisting steel, a server, a position sensor and a loudspeaker, wherein the position sensor and the loudspeaker are arranged on the truck crane; a signal transmitting/receiving device; the server is respectively connected with the tension sensor, the position sensor and the loudspeaker through the signal transmitting/receiving device; the server comprises an information receiving module for receiving the sensor signals; the storage module is used for recording signal change and change quantity; the steel storage place is used for weighing the wagon balance; the wagon balance is connected with the storage module through the signal transmitting/receiving device.
Further, the server also comprises an information processing module for processing the signal of the information receiving module; the information processing module comprises a judging unit for judging whether the wagon balance measurement is consistent with the tension sensor or not.
Further, the storage module comprises a point location unit for recording goods loading and unloading and a stock unit for recording the loading and unloading amount.
Preferably, the server further comprises a path setting module and an electronic fence setting module, and the path setting module and the electronic fence setting module are used for planning a path and a working range of the working of the truck.
Preferably, the server further comprises a target setting module for setting the point to be loaded and unloaded and the loading and unloading amount, and the target setting module is respectively connected with the information receiving module, the storage module, the information processing module and the loudspeaker.
Preferably, the truck mounted crane is further provided with a weight sensor, and the weight sensor is connected with a server judging unit and is used for judging whether the tension sensor is consistent with the weight sensor.
According to the steel management system disclosed by the utility model, the weight sensor, the tension sensor and the position sensor are arranged on the truck crane, the wagon balance is arranged at the steel storage place, and the data collection and storage are carried out through the server, so that the steel consistency supervision record is realized; intelligent recording is carried out on unloading points and unloading quantity; automatic management is realized, and the workload of project management personnel is greatly reduced; the safety of steel supervision is improved through path setting and electronic fence setting; the steel entrance and exit planning and real-time monitoring can be realized through target setting, and the project efficiency is greatly improved.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions of the prior art, the drawings which are used in the description of the embodiments or the prior art will be briefly described, it being obvious that the drawings in the description below are only some embodiments of the utility model, and that other drawings can be obtained according to these drawings without inventive faculty for a person skilled in the art.
Fig. 1: a block diagram of the present utility model;
wherein: 100. a server; 110. an information receiving module; 120. an information processing module; 130. A storage module; 131. a point location unit; 132. a stock unit; 140. a target setting module; 150. a path setting module; 160. an electronic fence setting module; 200. a signal transmitting/receiving device; 300. along with a crane; 310. a position sensor; 320. a tension sensor; 330. a weight sensor; 340. and a speaker.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
The utility model discloses a steel management system, which comprises a truck crane, a tension sensor 320 for steel lifting, a server 100, a position sensor 310 and a loudspeaker 340, wherein the position sensor 310 and the loudspeaker 340 are arranged on the truck crane; a signal transmission/reception device 200; the server 100 is connected to the tension sensor 320, the position sensor 310 and the speaker 340 through the signal transmission/reception device 200, respectively; the server 100 includes an information receiving module 110 for receiving sensor signals; a memory module 130 for recording signal changes and amounts of change; the steel storage place is used for weighing the wagon balance; the wagon balance is connected to the memory module 130 through the signal transmission/reception device 200.
Further, the server 100 further includes an information processing module 120 for processing signals of the information receiving module 110; the information processing module 120 includes a judging unit for judging whether the wagon balance measurement is consistent with the tension sensor 320; when the judging result is inconsistent, the result is transmitted to the server 100 to remind the manager to check and unify the records.
Further, the storage module 130 includes a point location unit 131 for recording cargo handling and a stock unit 132 for recording cargo handling.
Preferably, the server 100 further includes a path setting module 150 and an electronic fence setting module 160, for planning a path and a working range of the truck.
Preferably, the server 100 further includes a target setting module 140 for setting a point to be handled and a handling amount, and the target setting module 140 is connected to the information receiving module 110, the storage module 130, the information processing module 120, and the speaker 340, respectively.
Preferably, the truck mounted crane is further provided with a weight sensor 330, the weight sensor 330 is connected with a judging unit of the server 100, and is used for judging whether the tension sensor 320 is consistent with the weight sensor 330, and when the judging result is inconsistent, the result is transmitted to the server 100 to remind a manager to check and record uniformly.
The utility model determines the unloading and feeding positions of steel materials through the positioning device, namely the positions of the outgoing and incoming fields; the lifting weight of the truck crane is measured by adding a tension sensor 320 on the steel rope of the truck crane; the self-load is measured by a weight sensor 330 on the truck crane.
Warehouse manager can obtain the incoming number through the incoming weighing number, the delivery bill number and the like and check and uniformly record the storage module 130 of the server 100; the method comprises the steps that (1) steel is transported by truck cranes in a unified manner, and the total number of the truck cranes is obtained through wagon balance when the truck cranes are at the scene; a GPS and other positioning systems are additionally arranged on the truck crane to acquire the position and the running track of the vehicle, and the use positions and the use quantity are determined by combining the tension sensor 320 and the weight sensor 330;
in the use process, the electronic fence is set through the server 100 in the early stage, and each steel storage point is independently provided with the electronic fence containing all steel storage positions and using positions, so that the truck crane is bound with all the electronic fences. Each electronic fence can be configured as a delivery point and a discharge point, and if not, the system defaults to the discharge point. When the truck crane is used for loading steel, a warehouse manager sets a corresponding fence as a warehouse outlet point, and when the hoisting tonnage of the truck crane is changed at the warehouse outlet point, the total tonnage of the truck crane is automatically generated into the warehouse outlet tonnage of the corresponding point, deducted from the total tonnage of the storage point and automatically recorded in the storage module 130. And taking the tonnage of hoisting in the unloading fence as the warehousing tonnage of the point.
Warehouse stock tonnage is divided into manual registration and automatic calculation by a server 100, wherein the manual registration mainly comprises delivery tonnage, and a delivery bill and a weighing bill are used as the basis; automatic accounting for server 100 is automatically accounted for by a change in tension sensor 320, and manual enrollment and automatic accounting for server 100 can be checked and added and subtracted.
The sum of the stock quantity of all the points is consistent with the manually registered warehouse stock, namely the project approach quantity, each warehouse stock quantity is the project steel residual quantity, and each point stock quantity is the actual consumption quantity.
To prevent abnormal quantity in the hoisting process, the judgment can be made according to whether the data of the weight sensor 330 and the tension sensor 320 are consistent; the distance sensor can also be additionally arranged on the steel plate of the truck crane to measure the position change of the steel plate and the chassis, and the position change and the change of the lifting weight can be used for judging whether the loading and unloading are effective, namely, the lifting weight is changed from 0 to 0, the position change of the steel plate and the chassis is far, near and far, the loading and unloading are judged to be ineffective, the system automatically eliminates the ineffective loading and unloading and does not participate in the automatic accounting of the server 100.
In the using process, setting an incoming point and an outgoing point by arranging an electronic fence; the goods-taking point is provided with a wagon balance, when the wagon balance is consistent with the judgment of the tension sensor 320, the steel is judged to be normally taken in, and when the wagon balance is inconsistent with the judgment of the tension sensor 320, the judgment unit of the server 100 judges that the steel is abnormal, and the result is transmitted to the client of the server 100 to prompt a manager to check and uniformly fill the steel into the storage module 130 of the server 100; the GPS and the tension sensor 320 of the truck crane are changed to judge the shipment point, the position information and the shipment amount are automatically counted into the storage module 130, and the shipment point are correspondingly reduced, so that the total amount of project steel is kept consistent.
The GPS can judge whether the crane 300 is loaded and unloaded in a specified area and a specified path, and the server 100 monitors the crane in real time by a client.
According to the steel management system disclosed by the utility model, the weight sensor 330, the tension sensor 320 and the position sensor 310 are arranged on the truck crane, the wagon balance is arranged at the steel storage place, and the server 100 is used for collecting and storing data, so that the steel consistency supervision record is realized; intelligent recording is carried out on unloading points and unloading quantity; automatic management is realized, and the workload of project management personnel is greatly reduced; the safety of steel supervision is improved through path setting and electronic fence setting; the steel entrance and exit planning and real-time monitoring can be realized through target setting, and the project efficiency is greatly improved.
Of course, a person skilled in the art shall make various corresponding changes and modifications according to the present utility model without departing from the spirit and the essence of the utility model, but these corresponding changes and modifications shall fall within the protection scope of the appended claims.

Claims (6)

1. The utility model provides a steel management system, includes truck crane and is used for steel to lift by crane's tension transducer, its characterized in that: the system also comprises a server, a position sensor and a loudspeaker, wherein the position sensor and the loudspeaker are arranged on the truck crane; a signal transmitting/receiving device; the server is respectively connected with the tension sensor, the position sensor and the loudspeaker through the signal transmitting/receiving device;
the server comprises an information receiving module for receiving the sensor signals; the storage module is used for recording signal change and change quantity;
the steel storage place is used for weighing the wagon balance; the wagon balance is connected with the storage module through the signal transmitting/receiving device.
2. A steel management system according to claim 1, wherein: the server also comprises an information processing module for processing signals of the information receiving module; the information processing module comprises a judging unit for judging whether the wagon balance measurement is consistent with the tension sensor or not.
3. A steel management system according to claim 1, wherein: the storage module comprises a point location unit for recording cargo handling and a stock unit for recording cargo handling capacity.
4. A steel management system according to claim 1, wherein: the server also comprises a path setting module and an electronic fence setting module, and the path setting module and the electronic fence setting module are used for planning the working path and the working range of the truck.
5. A steel management system according to claim 1, wherein: the server also comprises a target setting module for setting the point position and the loading and unloading amount to be loaded and unloaded, and the target setting module is respectively connected with the information receiving module, the storage module, the information processing module and the loudspeaker.
6. A steel management system according to claim 1, wherein: the truck mounted crane is further provided with a weight sensor, and the weight sensor is connected with a server judging unit and used for judging whether the tension sensor is consistent with the weight sensor or not.
CN202223348753.0U 2022-12-14 2022-12-14 Steel management system Active CN218974935U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223348753.0U CN218974935U (en) 2022-12-14 2022-12-14 Steel management system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223348753.0U CN218974935U (en) 2022-12-14 2022-12-14 Steel management system

Publications (1)

Publication Number Publication Date
CN218974935U true CN218974935U (en) 2023-05-05

Family

ID=86149419

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223348753.0U Active CN218974935U (en) 2022-12-14 2022-12-14 Steel management system

Country Status (1)

Country Link
CN (1) CN218974935U (en)

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