Intelligent steel strand delivery and re-weighing system
The automated data comparison of the intelligent steel strand delivery reweighing system has solved the problems of low efficiency and error-proneness in traditional manual operation, achieving accuracy and reliability in steel strand delivery and improving product quality and corporate reputation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- TIANJINCHUNPENGYUZHUANGLIGANGJIAOXIAN CO LTD
- Filing Date
- 2025-12-24
- Publication Date
- 2026-04-24
AI Technical Summary
In the traditional steel strand shipping process, manual weighing is inefficient, prone to errors, and difficult to accurately verify the weight, resulting in inaccurate shipping data, which affects the timeliness of product delivery and the company's reputation.
The design includes an intelligent steel strand delivery re-weighing system, comprising a delivery re-weighing unit, electronic identification tags, and a delivery end. The system automatically compares data through a judgment module in the delivery re-weighing unit to ensure data accuracy and efficiency.
The system automates the recording and control of steel strand shipments, improving the accuracy and efficiency of data verification, ensuring the reliability of shipment data, and avoiding customer complaints and economic losses caused by weight deviations.
Smart Images

Figure CN121921085A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of data processing technology, and more specifically, to an intelligent steel strand delivery reweighing system. Background Technology
[0002] Steel strand is a steel product made of multiple steel wires twisted together. Steel strands are divided into prestressed steel strands, unbonded steel strands, galvanized steel strands, etc. The most commonly used steel strands are galvanized steel strands and prestressed steel strands, and prestressed steel strands are one of the important materials for prestressed structures.
[0003] Accurate weighing and data verification are crucial for ensuring product quality and fair transactions during the shipment of steel strands.
[0004] Traditional weighing methods have many drawbacks in the steel strand delivery process.
[0005] On the one hand, manually recording and verifying steel strand data is not only inefficient, but also prone to human error. For example, errors may occur when recording data such as the production batch, number of strands, and wire number of the strands, which will lead to inaccurate delivery data and affect the accuracy and timeliness of product delivery.
[0006] On the other hand, due to the lack of effective technical means to accurately verify the weight of steel strands, it is difficult to ensure that the weight of the shipped steel strands is completely consistent with the production records. Any weight deviation may lead to customer complaints, damage the company's reputation, and cause economic losses. Furthermore, the data transmission between various stages in the entire shipping process is untimely and inefficient, making it impossible to efficiently record and control the shipping reweighing operation, which fails to meet the needs of modern production and logistics management. Therefore, we propose an intelligent steel strand shipping reweighing system. Summary of the Invention
[0007] The purpose of this invention is to provide an intelligent steel strand delivery reweighing system to solve the technical problems of low efficiency, error-proneness, and difficulty in accurately verifying weight and tracing data during traditional steel strand delivery manual reweighing.
[0008] To solve the above-mentioned technical problems, the present invention provides the following technical solution: an intelligent steel strand delivery re-weighing system, including a delivery re-weighing unit for recording and controlling the entire delivery re-weighing operation, an electronic identification tag set on each strand, and a delivery terminal with a re-weighing APP installed;
[0009] The shipping reweighing unit includes a storage module, a control module, a receiving module, a judgment module, and a package sending module. The control module is connected to the storage module and the receiving module, and the receiving module is connected to the judgment module and the package sending module.
[0010] The control module is connected to the shipping end and is used to store and output the control data and feedback processed data of the reweighing APP.
[0011] The receiving module is used to receive data sent by the electronic identification tag;
[0012] The judgment module is used to receive production batch, strand count and wire number data sent by the receiving module, and compare the received strand count data and wire number data with strand batch data stored in the storage module;
[0013] The packaging module is used to summarize the weight of each steel wire corresponding to the strand in the strand batch data. When the sum of the strand weight in the strand batch data is consistent with the received production batch weight data, a consistency signal is issued. The consistency signal is sent back to the shipping reweighing unit through the packaging module.
[0014] The weight summary of the stranded wires in the stranded wire batch data is compared with the received production batch weight data in the following manner, assuming that the weight of each wire in a certain batch of stranded wires in the storage module is as follows: The theoretical total weight of this batch of stranded wire is... .
[0015] Preferably, the electronic identification tags are divided into stranded wire identification tags and steel wire identification tags;
[0016] The stranded wire identification tag identifies the corresponding production batch by scanning the production code therein, and sends the production batch to the weighing app through the stranded wire identification tag. The stranded wire identification tag also records the number of stranded wires and sends it directly to the weighing app.
[0017] The steel wire identification tag is used to scan the code to confirm the number of the corresponding steel wire.
[0018] Preferably, both the stranded wire identification tag and the steel wire identification tag are electronic tags.
[0019] Preferably, the steel wires on the stranded wire are installed according to the number of wires and different steel wire models.
[0020] Preferably, the delivery terminal is one or a combination of PC and smartphone.
[0021] This invention, through the design of a collaborative structure involving a shipping re-weighing unit, electronic identification tags, and the shipping end, automates the recording and control of steel strand shipping re-weighing operations, effectively solving the problems of low efficiency and error-proneness in traditional manual operations. The electronic identification tags can quickly and accurately transmit data such as the production batch, strand count, and wire number of the steel strand. The judgment module in the shipping re-weighing unit automatically compares the received data with the data in the storage module, greatly improving the accuracy and efficiency of data verification and ensuring the reliability of shipping data.
[0022] A control method for a smart steel strand delivery reweighing method includes the following steps:
[0023] S1: The stranded wire is shipped and packaged, and the corresponding steel wires of the stranded wire are marked with identification labels according to the number sequence;
[0024] S2: Production batch of stranded wire Production weight, number of strands per strand Steel wire number set and a collection of steel wire models Data is entered into the storage module;
[0025] S3: Compile the data of the twisted wire into a twisted wire identification label and affix it to the twisted wire;
[0026] S4: Compile the wire number data into a wire identification label for this batch of stranded wire and affix it to each wire;
[0027] S5: The re-weighing APP scans the strand identification label to confirm the production batch and the number of strands in each strand, displays this information on the re-weighing APP, and enters the strand count data into the re-weighing APP. Directly input the shipment reweighing unit and confirm the production batch of the stranded wire through stranded wire scanning. And send it to the shipping reweighing unit;
[0028] S6: The judgment module receives the batch and count data of the stranded wires and compares them. Is it equal to ,like If the match is successful, proceed to step S8. If the match fails, proceed to step S7;
[0029] S7: Indicates that no twisted wire was found and provides an error message;
[0030] S8: Obtain the wire number data from the wire identification tag to form a set of wire numbers obtained from the scan. The wire serial number data is uploaded to the shipping reweighing unit, and the unit awaits the entry of wire weight data. The system then performs a judgment... Is it equal to ,like Then proceed to step S9, if Then proceed to step S10;
[0031] S9: Determine whether the weight corresponding to the steel wire has been entered into the reweighing APP, forming a set of entered steel wire weights. ,like If the data contains the weight of the steel wire, proceed to step S11; otherwise, proceed to step S10.
[0032] S10: Provides a message indicating that the wire number is incorrect;
[0033] S11: Determine whether the weight of the stranded wire corresponding to the entered wire weight has been determined and sent to the shipping reweighing unit, forming a set of determined and sent wire weights. If the weight of the stranded wire for which the wire weight has been entered is already recorded... If the condition is not met, proceed to step S12; otherwise, proceed to step S13.
[0034] S12: Determine whether the weight of the stranded wire recorded in the steel wire weight is consistent with the weight of the steel wire corresponding to the stranded wire in the storage module. If yes, proceed to step S14; otherwise, proceed to step S13.
[0035] S13: The packet sending module sends a consistency signal to the twisted wire;
[0036] S14: Issue an error report on the mismatch in strand weight and feed the error report and data back to the shipping reweighing unit. Send the data to the manufacturer for verification through the packaging module to confirm whether the weight of the batch of steel strands matches. If they match, the packaging module sends a matching signal to the strands; if they do not match, inform the shipping reweighing unit that the weight of the batch of steel strands is inconsistent, issue an error message, and cancel the shipping instruction.
[0037] Preferably, in step S12, determining whether the weight of the stranded wire recorded with the weight of the steel wire matches the weight of the steel wire corresponding to the stranded wire in the storage module is done as follows: Calculate the total weight of the stranded wire recorded with the weight of the steel wire. ,judge Is it equal to ;
[0038] like Then proceed to step S13;
[0039] like Then proceed to step S14.
[0040] Preferably, step S11 further includes inputting and storing the steel wire weight data corresponding to the stranded wire into the shipping reweighing unit.
[0041] Preferably, the following step is further included between step S7 and step S13:
[0042] A: The data from the stranded wire weighing device is sent to the storage module of the shipping reweighing unit via the reweighing APP in the shipping end. Let the actual weight of the stranded wire measured by the weighing device be... ;
[0043] B: Receive the actual weight of the stranded wire sent by the weighing app at the shipping end. and the weight of the stranded wire stored in the storage module. Perform a match and determine whether the weight data in the storage module matches the stranded wire weight data entered in step S5. If... If the judgment is consistent, proceed to step S13. If the results are inconsistent, proceed to step S7.
[0044] Preferably, in step S14, when the weight of the stranded wires is inconsistent, the following steps are also included:
[0045] S1401: Re-weigh the stranded wire using a crane scale and record the actual weight of the re-weighed wire. Enter the shipment reweighing unit;
[0046] S1402: The actual weight of the stranded wire after reweighing the crane scale. Weight of stranded wire in the shipping reweighing unit Compare and judge Is it equal to ,like Then, the packaging module in the shipping reweighing unit is instructed to send a consistent signal to the twisted wire; if If the signal is received, the reweighing unit is notified to reweigh the batch of stranded wire again, and the crane scale is used to reweigh the batch of stranded wire until the weight of the steel wire matches the weight of the steel wire stored in the storage device of the shipping reweighing unit. Then the stranded wire sends a consistency signal.
[0047] Compared with the prior art, the beneficial effects of the present invention are:
[0048] 1. This invention, through the design of a collaborative structure involving a shipping re-weighing unit, electronic identification tags, and the shipping end, achieves automated recording and control of the shipping re-weighing operation for steel strands, effectively solving the problems of low efficiency and error-proneness in traditional manual operations. The electronic identification tags can quickly and accurately transmit data such as the production batch, strand count, and wire number of the steel strands. The judgment module in the shipping re-weighing unit automatically compares the received data with the data in the storage module, greatly improving the accuracy and efficiency of data verification and ensuring the reliability of shipping data.
[0049] 2. This invention further solves the problem of inaccurate verification of the weight of shipped steel strands by setting up a detailed data comparison process and multiple weight judgment mechanisms. When judging whether the weight of the strand entered with the steel wire weight is consistent with the corresponding weight of the strand in the storage module, the total weight is calculated and compared. In case of weight discrepancies, the outsourcing module is used for verification, and multiple weighings can be performed using a crane scale until the weight is consistent. This effectively avoids customer complaints and economic losses caused by weight deviations, and improves product quality and corporate reputation.
[0050] 3. This invention also addresses the issue of untimely and inefficient data transmission in the shipping process by setting the shipping terminal to one or a combination of PC and smartphone, and installing a re-weighing APP. This enables real-time transmission and sharing of shipping re-weighing data. Operators can conveniently scan electronic identification tags, enter data, and view re-weighing results through the re-weighing APP. The shipping re-weighing unit can promptly receive and process this data, achieving efficient management of the entire shipping re-weighing process and improving the efficiency and accuracy of logistics distribution. Attached Figure Description
[0051] Figure 1 This is a schematic diagram of the system structure of the present invention. Detailed Implementation
[0052] Example 1: As Figure 1 As shown, the present invention relates to an intelligent steel strand delivery re-weighing system, comprising:
[0053] The shipping reweighing unit is used to record and control the entire shipping reweighing operation;
[0054] Electronic identification tags are installed on each strand;
[0055] In embodiments of the present invention, electronic identification tags are divided into stranded wire identification tags and steel wire identification tags;
[0056] The stranded wire identification tag identifies the corresponding production batch by scanning the production code and sends the production batch to the Fucheng APP through the stranded wire identification tag. The stranded wire identification tag also records the number of stranded wires and sends it directly to the Fucheng APP.
[0057] The steel wire identification tag is used to scan the code to confirm the corresponding steel wire number;
[0058] In embodiments of the present invention, the steel wires on the stranded wire are installed according to the number of wires and different steel wire types;
[0059] In embodiments of the present invention, both the stranded wire identification tag and the steel wire identification tag are electronic tags;
[0060] The shipping end is equipped with a reweighing APP, which can be either a PC or a smartphone;
[0061] In an embodiment of the present invention, the shipping reweighing unit includes a storage module, a control module, a receiving module, a judgment module, and a shipping module. The control module is controlled to the storage module and the receiving module, and the receiving module is controlled to the judgment module and the shipping module.
[0062] The control module is connected to the shipping end and is used to store and output the control data and feedback data of the reweighing APP.
[0063] The receiving module is used to receive data sent by the stranded wire identification tag and the steel wire identification tag;
[0064] The judgment module is used to receive production batch, strand count, and wire number data sent by the receiving module, and compare the received strand count and wire number data with the strand batch data stored in the storage module;
[0065] The packaging module is used to summarize the weight of each wire corresponding to the strand in the stranded wire batch data. When the sum of the stranded wire weight in the stranded wire batch data is consistent with the weight data of the received production batch, a consistency signal is sent. The consistency signal is sent back to the shipping reweighing unit through the packaging module.
[0066] In an embodiment of the present invention, the weight summary of stranded wires in the stranded wire batch data is compared with the received production batch weight data in the following manner, assuming that the weight of each wire in a certain batch of stranded wires in the storage module is as follows: The theoretical total weight of this batch of stranded wire is... .
[0067] Example 2: A control method for an intelligent steel strand delivery re-weighing system, comprising the following steps:
[0068] S1: The stranded wire is shipped and packaged, and the corresponding steel wires of the stranded wire are marked with identification labels according to the number sequence;
[0069] S2: Production batch of stranded wire Production weight, number of strands per strand Steel wire number set and a collection of steel wire models The data is entered into the storage module of the shipping reweighing unit;
[0070] S3: Compile the data from step S2 into a stranded wire identification label and affix the stranded wire identification label to the stranded wire;
[0071] S4: Compile the wire number data from step S2 into a wire identification label for this batch of stranded wires, and affix the wire identification label to each wire.
[0072] S5: The Fucheng App identifies the production batch of the stranded wire by scanning the identification label, displays the production batch and the number of strands per wire on the Fucheng App, and enters the strand count data into the Fucheng App. Directly input the shipment reweighing unit and confirm the production batch of the stranded wire through stranded wire scanning. And send it to the shipping reweighing unit;
[0073] S6: The judgment module receives the batch and number of strands of the twisted wire and compares them. It matches the number of strands with the corresponding number of strands in the storage module. If the match is successful, proceed to step S8; if the match is unsuccessful, proceed to step S7.
[0074] In another embodiment of the present invention, in step S6, the judgment module receives the stranded wire batch and stranded wire count data and compares them in the following manner: by judgment Is it equal to ;
[0075] like If the match is successful, proceed to step S8;
[0076] like If the match fails, proceed to step S7;
[0077] S7: Indicates that no twisted wire was found and provides an error message;
[0078] S8: Obtain the wire number data from the wire identification tag to form a set of wire numbers obtained from the scan. The wire number data is uploaded to the shipping reweighing unit and the wire weight data is waited to be entered. If the wire number data of the obtained wire identification tag is compared with the wire number data in the storage module, if the match is correct, proceed to step S9; if the wire model is incorrect, proceed to step S10.
[0079] In another embodiment of the present invention, the obtained wire identification tag's wire number data is compared with the wire number data in the storage module in the following manner: by judging... Is it equal to ;
[0080] like If the match is correct, proceed to step S9;
[0081] like If the match is incorrect, proceed to step S10.
[0082] S9: Determine whether the weight corresponding to the steel wire has been entered into the reweighing APP, forming a set of entered steel wire weights. ,like If the data contains the weight of the steel wire, proceed to step S11; otherwise, proceed to step S10.
[0083] S10: Provides a message indicating that the wire number is incorrect;
[0084] S11: Determine whether the weight of the stranded wire corresponding to the entered wire weight has been determined and sent to the shipping reweighing unit, forming a set of determined and sent wire weights. If the weight of the stranded wire for which the wire weight has been entered is already recorded... If the condition is not met, proceed to step S12; otherwise, proceed to step S13.
[0085] S12: Determine whether the weight of the stranded wire recorded in the steel wire weight is consistent with the weight of the steel wire corresponding to the stranded wire in the storage module. If yes, proceed to step S14; otherwise, proceed to step S13.
[0086] In another embodiment of the present invention, the determination of whether the weight of the stranded wire recorded as the wire weight matches the weight of the stranded wire in the storage module is performed as follows: Calculate the total weight of the stranded wire recorded as the wire weight. ,judge Is it equal to ;
[0087] like Then proceed to step S13;
[0088] like Then proceed to step S14;
[0089] S13: The shipping reweighing unit's packaging module sends a consistency signal to the stranded wire;
[0090] S14: Issue an error report on the mismatch in strand weight and feed the error report and data back to the shipping reweighing unit. Send the data to the manufacturer and have the packaging module in the shipping reweighing unit verify whether the weight of the batch of steel strands matches. If they match, the packaging module of the shipping reweighing unit sends a matching signal to the strands. If they do not match, inform the shipping reweighing unit that the weight of the batch of steel strands is inconsistent, issue an error message, and cancel the shipping instruction.
[0091] In another embodiment of the present invention, step S11 further includes recording the steel wire weight data corresponding to the stranded wire into the shipping reweighing unit and storing it.
[0092] As another embodiment of the present invention, the following steps are further included between step S7 and step S13;
[0093] A: The data from the stranded wire weighing device is sent to the storage module of the shipping reweighing unit via the reweighing APP in the shipping end. Let the actual weight of the stranded wire measured by the weighing device be... ;
[0094] B: Receive the actual weight of the stranded wire sent by the weighing app at the shipping end. and the weight of the stranded wire stored in the storage module. Perform a match and determine whether the weight data in the storage module matches the stranded wire weight data entered in step S5. If... If the judgment is consistent, proceed to step S13. If the results are inconsistent, proceed to step S7.
[0095] In step S14, when the weight of the stranded wires is inconsistent, the following steps are also included;
[0096] S1401: Re-weigh the stranded wire using a crane scale and record the actual weight of the re-weighed wire. Enter the shipment reweighing unit;
[0097] S1402: The actual weight of the stranded wire after reweighing the crane scale. Weight of stranded wire in the shipping reweighing unit If the weights match, the shipping reweighing unit's packaging module sends a matching signal to the stranded wire. If they do not match, the reweighing system is notified to reweigh the stranded wire again. The crane scale is used to reweigh the batch of stranded wire until the weight of the steel wire matches the weight of the steel wire stored in the shipping reweighing unit's storage device. Then, the stranded wire sends a matching signal.
[0098] As another embodiment of the present invention, the actual weight of the stranded wire is re-weighed by the crane scale. The weight of the stranded wire in the shipping reweighing system The comparison is performed using the following method: [Judgment] Is it equal to ;
[0099] like Then, the packaging module in the shipping reweighing unit is instructed to send a consistent signal to the twisted wire.
[0100] like If the weight of the wire is notified, the reweighing unit will reweigh the wire again and continue to use the crane scale to reweigh the batch of stranded wire until the weight of the wire matches the weight of the wire stored in the storage device of the shipping reweighing unit. Then the stranded wire will send a matching signal.
[0101] The embodiments disclosed in this invention are preferred embodiments, but are not limited thereto. Those skilled in the art can easily understand the spirit of this invention based on the above embodiments and make different extensions and variations, but as long as they do not depart from the spirit of this invention, they are all within the protection scope of this invention.
Claims
1. A smart steel strand delivery re-weighing system, characterized in that, include: The shipping reweighing unit is used to record and control the entire shipping reweighing operation; An electronic identification tag is installed on each strand; On the shipping end, a re-weighing APP is installed; The shipping reweighing unit includes a storage module, a control module, a receiving module, a judgment module, and a package sending module. The control module is connected to the storage module and the receiving module, and the receiving module is connected to the judgment module and the package sending module. The control module is connected to the shipping end and is used to store and output the control data and feedback processed data of the reweighing APP. The receiving module is used to receive data sent by the electronic identification tag; The judgment module is used to receive production batch, strand count and wire number data sent by the receiving module, and compare the received strand count and wire number data with strand batch data stored in the storage module; The packaging module is used to summarize the weight of each steel wire corresponding to the strand in the strand batch data. When the sum of the strand weight in the strand batch data is consistent with the received production batch weight data, a consistency signal is issued. The consistency signal is sent back to the shipping reweighing unit through the packaging module. The weight summary of the stranded wires in the stranded wire batch data is compared with the received production batch weight data in the following manner, assuming that the weight of each wire in a certain batch of stranded wires in the storage module is as follows: The theoretical total weight of this batch of stranded wire is... .
2. The intelligent steel strand delivery re-weighing system according to claim 1, characterized in that, The electronic identification tags are divided into stranded wire identification tags and steel wire identification tags; The stranded wire identification tag identifies the corresponding production batch by scanning the production code therein, and sends the production batch to the weighing app through the stranded wire identification tag. The stranded wire identification tag also records the number of stranded wires and sends it directly to the weighing app. The steel wire identification tag is used to scan the code to confirm the number of the corresponding steel wire.
3. The intelligent steel strand delivery re-weighing system according to claim 2, characterized in that, Both the stranded wire identification tag and the steel wire identification tag are electronic tags.
4. The intelligent steel strand delivery re-weighing system according to claim 3, characterized in that, The steel wires on the stranded wire are installed according to the number of wires and different wire types.
5. The intelligent steel strand delivery re-weighing system according to claim 4, characterized in that, The delivery device is one or a combination of PC and smartphone.
6. A control method for a smart steel strand delivery re-weighing method, applicable to the smart steel strand delivery re-weighing method of claims 1-5, characterized in that, Includes the following steps: S1: The stranded wire is shipped and packaged, and the corresponding steel wires of the stranded wire are marked with identification labels according to the number sequence; S2: Production batch of stranded wire Production weight, number of strands per strand Steel wire number set and a collection of steel wire models Data is entered into the storage module; S3: Compile the data of the twisted wire into a twisted wire identification label and affix it to the twisted wire; S4: Compile the wire number data into a wire identification label for this batch of stranded wire and affix it to each wire; S5: The re-weighing APP scans the strand identification label to confirm the production batch and the number of strands in each strand, displays this information on the re-weighing APP, and enters the strand count data into the re-weighing APP. Directly input the shipment reweighing unit and confirm the production batch of the stranded wire through stranded wire scanning. And send it to the shipping reweighing unit; S6: The judgment module receives the batch and count data of the stranded wires and compares them. Is it equal to ,like If the match is successful, proceed to step S8. If the match fails, proceed to step S7; S7: Indicates that no twisted wire was found and provides an error message; S8: Obtain the wire number data from the wire identification tag to form a set of wire numbers obtained from the scan. The wire serial number data is uploaded to the shipping reweighing unit, and the unit awaits the entry of wire weight data. The system then performs a judgment... Is it equal to ,like Then proceed to step S9, if Then proceed to step S10; S9: Determine whether the weight corresponding to the steel wire has been entered into the reweighing APP, forming a set of entered steel wire weights. ,like If the data contains the weight of the steel wire, proceed to step S11; otherwise, proceed to step S10. S10: Provides a message indicating that the wire number is incorrect; S11: Determine whether the weight of the stranded wire corresponding to the entered wire weight has been determined and sent to the shipping reweighing unit, forming a set of determined and sent wire weights. If the weight of the stranded wire for which the wire weight has been entered is already recorded... If the condition is not met, proceed to step S12; otherwise, proceed to step S13. S12: Determine whether the weight of the stranded wire recorded in the steel wire weight is consistent with the weight of the steel wire corresponding to the stranded wire in the storage module. If yes, proceed to step S14; otherwise, proceed to step S13. S13: The packet sending module sends a consistency signal to the twisted wire; S14: Issue an error report on the mismatch in strand weight and feed the error report and data back to the shipping reweighing unit. Send the data to the manufacturer for verification through the packaging module to confirm whether the weight of the batch of steel strands matches. If they match, the packaging module sends a matching signal to the strands; if they do not match, inform the shipping reweighing unit that the weight of the batch of steel strands is inconsistent, issue an error message, and cancel the shipping instruction.
7. The intelligent steel strand delivery re-weighing method according to claim 6, characterized in that, In step S12, the determination of whether the weight of the stranded wire recorded in the input wire weight matches the weight of the stranded wire in the storage module is performed as follows: Calculate the total weight of the stranded wire recorded in the input wire weight. ,judge Is it equal to ; like Then proceed to step S13; like Then proceed to step S14.
8. The intelligent steel strand delivery re-weighing method according to claim 7, characterized in that, Step S11 also includes inputting the steel wire weight data corresponding to the stranded wire into the shipping reweighing unit and storing it.
9. The intelligent steel strand delivery re-weighing method according to claim 8, characterized in that, The following steps are also included between step S7 and step S13: A: The data from the stranded wire weighing device is sent to the storage module of the shipping reweighing unit via the reweighing APP in the shipping end. Let the actual weight of the stranded wire measured by the weighing device be... ; B: Receive the actual weight of the stranded wire sent by the weighing app at the shipping end. and the weight of the stranded wire stored in the storage module. Perform a match and determine whether the weight data in the storage module matches the stranded wire weight data entered in step S5. If... If the judgment is consistent, proceed to step S13. If the results are inconsistent, proceed to step S7.
10. The intelligent steel strand delivery re-weighing method according to claim 9, characterized in that, In step S14, when the weight of the stranded wires is inconsistent, the following steps are also included: S1401: Re-weigh the stranded wire using a crane scale and record the actual weight of the re-weighed wire. Enter the shipment reweighing unit; S1402: The actual weight of the stranded wire after reweighing the crane scale. Weight of stranded wire in the shipping reweighing unit Compare and judge Is it equal to ,like Then, the packaging module in the shipping reweighing unit is instructed to send a consistent signal to the twisted wire; if If the signal is received, the reweighing unit is notified to reweigh the batch of stranded wire again, and the crane scale is used to reweigh the batch of stranded wire until the weight of the steel wire matches the weight of the steel wire stored in the storage device of the shipping reweighing unit. Then the stranded wire sends a consistency signal.