A tower material management method

By dividing and numbering storage areas at the construction site and using lifting and pushing mechanisms to achieve orderly storage of tower materials, the problems of large space occupied by tower materials and low construction efficiency are solved, and construction efficiency and personnel operation convenience are improved.

CN117088031BActive Publication Date: 2025-09-30ANHUI ELECTRIC POWER TRANSMISSION & TRANSFORMATION ENG CO LTD +1
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Patent Information

Application Number
CN202311059464.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-22
Publication Date
2025-09-30
Estimated Expiration
2043-08-22

AI Technical Summary

Technical Problem

During the tower assembly process, the tower materials at the construction site are of many types and different specifications, which results in a large space occupied at the construction site, high labor intensity for construction workers, and affects construction efficiency.

Method used

The construction site is divided into multiple storage areas, and the areas are numbered. The tower materials are divided and numbered, and the tower materials are stored and taken out in an orderly manner through the lifting mechanism and the pushing mechanism.

Benefits of technology

It improves the material storage efficiency at the construction site, reduces the occupied space, reduces the labor intensity of construction workers, and ensures the orderly progress of construction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of tower material management, and more specifically, to a tower material management method. The method comprises the following steps: Step S1, dividing storage areas; Step S2, numbering and sorting storage areas; Step S3, sorting tower materials; Step S4, counting tower materials; Step S5, numbering tower materials; and Step S6, storing tower materials. Through Steps S1-S6, construction workers can more efficiently and conveniently count, reasonably sort, and orderly stack tower materials for each tower section, thereby improving construction efficiency.
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Description

Technical Field

[0001] The present invention relates to the technical field of tower material management, in particular to a tower material management method. Background Art

[0002] During actual tower assembly, the tower is installed step by step from top to bottom according to the construction drawings, and the specifications of the tower materials that make up each tower section vary. If there are errors in the construction progress and tower material supply, such as the tower being installed in the current tower section while the tower materials for the next or subsequent tower sections are transported to the construction site, the large variety of tower materials in each tower section will require a large area of ​​the construction site, which will place great pressure on the stacking of tower materials. Moreover, after the tower materials for each tower section are transported to the construction site, the construction personnel need to count, divide and stack the tower materials in each tower section in an orderly manner. This process will increase the labor intensity of the construction personnel and affect the construction efficiency of the entire construction site. Summary of the Invention

[0003] The present invention provides a tower material management method, which can overcome certain defects of the prior art.

[0004] According to a tower material management method of the present invention, it comprises the following steps:

[0005] Step S1, storage area division;

[0006] In this step, multiple storage areas are divided at the construction site, and the storage areas are used to store tower materials for tower assembly;

[0007] Step S2, sorting the storage area numbers;

[0008] In this step, the plurality of storage areas are sorted and numbered one by one;

[0009] Step S3, tower material separation;

[0010] In this step, the tower materials for the tower group are divided into tower materials for the corresponding sections of the tower group;

[0011] Step S4: Count tower materials;

[0012] In this step, the tower materials corresponding to the tower section assembled in step S3 are counted; if there is a shortage of materials, the shortage information is reported; otherwise, the next step is carried out;

[0013] Step S5, tower material numbering;

[0014] In this step, the tower materials of the corresponding sections of the tower assembly in step S4 are numbered one by one;

[0015] Step S6: storing tower materials;

[0016] In this step, the tower materials of the corresponding sections of the tower assembly in step S5 are stored one by one in the storage area in step S2.

[0017] In the present invention,

[0018] Step S1: divide the construction site into multiple storage areas so that when tower materials for tower assembly arrive at the construction site, construction workers can store the tower materials in corresponding storage areas;

[0019] Step S2: sorting and numbering the multiple storage areas so that construction workers can find the tower materials for the corresponding tower assembly according to the numbers;

[0020] Step S3, by dividing the tower materials into tower materials corresponding to the tower sections, it is convenient for construction workers to obtain materials when assembling the tower section by section;

[0021] Step S4: By counting the tower materials in the corresponding section of the tower assembly, the construction personnel can clearly know whether there is a shortage of tower materials in the corresponding section of the tower assembly. If there is a shortage, the construction personnel can report the shortage information in time to replenish the materials, thereby avoiding delays in the construction period.

[0022] Step S5: numbering the tower materials of the corresponding sections of the tower assembly one by one so that the construction personnel can find the tower materials of the corresponding tower assembly section according to the numbers;

[0023] Step S6, by storing the tower materials of the corresponding sections of the tower group in a one-to-one correspondence in the storage area, the tower materials of the corresponding sections of the tower group are stored in a better manner;

[0024] Through the above steps S1-S6, construction workers can more efficiently and conveniently complete the counting and statistics of tower materials for each tower section, reasonably divide the materials and stack them in an orderly manner, thereby improving construction efficiency.

[0025] Preferably, step S1 includes the following steps:

[0026] Step S11, setting storage space;

[0027] In this step, a plurality of storage spaces are provided in any storage area, and each storage space is used to store tower materials of corresponding sections of the tower assembly.

[0028] Through the above steps, any storage space can store tower materials corresponding to the section of the tower assembly, so that construction workers can take materials when needed.

[0029] Preferably, the plurality of storage spaces are arranged in sequence along the height direction.

[0030] Through the above structure, the arrangement of the storage space at the construction site can effectively reduce the area occupied by the storage area at the construction site.

[0031] Preferably, a spare storage area is provided at any storage area.

[0032] With the above structure, when the corresponding storage area is saturated with tower materials, the spare storage area can store other tower materials to ensure that the tower materials for tower assembly are stored in an orderly manner at the construction site.

[0033] Preferably, step S2 includes the following steps:

[0034] Step S21, sorting multiple storage areas;

[0035] In this step, multiple storage areas are sorted according to the English sorting method;

[0036] Step S22: sorting multiple storage spaces in any storage area;

[0037] In this step, the plurality of storage spaces are arranged in order from bottom to top or from top to bottom according to Arabic numerals.

[0038] Through the above steps, the storage areas and storage spaces are sorted and numbered, so that construction workers can more conveniently query the numbers and take out the tower materials in the corresponding storage space.

[0039] Preferably, step S3 includes the following steps:

[0040] Step S31, input tower material information;

[0041] In this step, enter the material information of the tower material, including specifications, quantity, tower section and matching steel stamp number.

[0042] Step S32: dividing tower materials;

[0043] In this step, the tower materials of each section of the tower assembly are distinguished according to the material information of the tower materials.

[0044] Through the above steps, the material information of the tower materials is entered, which makes it easy to distinguish the tower materials of each section of the tower group and facilitates the construction workers to assemble the tower group.

[0045] Preferably, step S4 includes the following steps:

[0046] Step S41, counting the actual list;

[0047] In this step, the actual list of tower materials for each section of the tower is compiled;

[0048] Step S42: Compare the actual list with the set list;

[0049] In this step, the actual list of tower materials for each section of the tower assembly is compared with the set list of tower materials for each section of the tower assembly. If the actual list is inconsistent with the set list, the missing material list is reported.

[0050] Through the above steps, the actual list of tower materials for each section of the tower assembly is compared with the set list of tower materials for each section of the tower assembly, so that the construction personnel can know whether there is any shortage of tower materials for each section of the tower assembly. If there is a shortage, the construction personnel can report the shortage list to the supplier to replenish the missing tower materials.

[0051] Preferably, in step S5, each section of tower materials is numbered one by one according to the tower assembly installation sequence.

[0052] Through the above steps, when the construction workers install the corresponding tower sections of the tower assembly, they can more conveniently obtain the corresponding tower materials for each section of the tower assembly according to the numbers.

[0053] Preferably, in step S6, if the actual list of tower materials for each section of the tower assembly is consistent with the set list of tower materials for each section of the tower assembly, the tower materials for the corresponding sections of the tower assembly are stored in the storage area one by one.

[0054] Through the above steps, when the construction workers install the corresponding tower sections of the tower assembly, the construction workers can more conveniently obtain the corresponding tower materials for each section of the tower assembly from the corresponding storage area according to the number.

[0055] Preferably, the multiple storage spaces are realized by a device body; the device body includes a first frame placed vertically along the height; the multiple storage spaces are arranged along the height direction of the first frame; any storage space is formed with a feed port on one side along the length direction of the first frame; a second frame is provided on the side of the first frame having the feed port, and the first frame and the second frame are spaced apart and form a material conveying channel; a lifting mechanism is provided under the material conveying channel, and the lifting mechanism includes a bracket moving up and down along the material conveying channel, and the bracket is used to place materials and transport them to the corresponding feed port; the second frame is provided with a pushing mechanism at any feed port along the height direction, and the pushing mechanism includes a push plate moving toward or away from the feed port, and the push plate is used to push the material along the feed port to the corresponding storage space.

[0056] In step S6, when the construction personnel are able to store the tower materials of each section of the corresponding tower group in the corresponding storage area according to the number, they can place the tower materials on the bracket, and make the bracket move up and down along the material conveying channel to the corresponding material passing port, and then make the push plate push the tower materials on the bracket along the material passing port to the corresponding storage space to complete the storage operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0057] Figure 1 This is a schematic structural diagram of the device body in Example 1.

[0058] Figure 2 Schematic diagram of the structure of the lifting mechanism in Example 1.

[0059] Figure 3 for Figure 1 Enlarged schematic diagram of part A.

[0060] Figure 4 This is a structural diagram of the push plate in Example 1.

[0061] Figure 5 This is a flow chart of a tower material logistics management method in Example 2.

[0062] Figure 6 This is a system block diagram of a tower material logistics management system in Example 3.

[0063] Figure 7 This is a system block diagram of the tower material input module in Example 3. DETAILED DESCRIPTION

[0064] In order to further understand the content of the present invention, the present invention is described in detail with reference to the embodiments. It should be understood that the embodiments are merely for explanation of the present invention and are not intended to limit the present invention.

[0065] Example 1

[0066] like Figure 1-4As shown, this embodiment provides a tower material management device, which includes a device body 100, and the device body 100 includes a first frame 110 placed vertically along the height direction; the first frame 110 is sequentially formed with a plurality of storage spaces 130 from top to bottom along the height direction, and any storage space 130 is formed with a feeding port 131 on one side of the length direction of the first frame 110; a second frame 120 is provided on one side of the first frame 110 having the feeding port 131, and the first frame 110 and the second frame 120 are spaced apart and spaced apart. A material conveying channel 140 is formed; a lifting mechanism is provided below the material conveying channel 140, and the lifting mechanism includes a bracket 151 that moves up and down along the material conveying channel 140, and the bracket 151 is used to place the material and transport it to the corresponding feeding port 131; the second frame 120 is provided with a pushing mechanism at any feeding port 131 along the height direction, and the pushing mechanism includes a push plate 161 that moves toward or away from the feeding port 131, and the push plate 161 is used to push the material along the feeding port 131 to the corresponding storage space 130.

[0067] During actual construction of this embodiment, construction workers can store the tower materials required for the corresponding sections of the tower assembly in the storage space 130 of the first frame 110 from bottom to top according to the construction progress. For example, the tower materials required for the current section or the next section of the tower assembly can be stored in the storage space 130 at the bottom of the first frame 110. This can, on the one hand, relieve the pressure of stacking tower materials on the construction site and avoid the tower materials occupying a large area of ​​the construction site; on the other hand, it can better sort the tower materials required for the corresponding sections of the tower assembly, so that the construction workers can assemble the corresponding sections of the tower assembly.

[0068] Specifically, after the tower materials arrive at the construction site, the construction workers can store the tower materials in the corresponding storage space 130 according to the construction progress. In actual operation, the construction workers place the corresponding tower materials on the bracket 151 at the material conveying channel 140. The bracket 151 can move upward along the material conveying channel 140 and move to the material passing port 131 of the corresponding storage space 130. Then, the push plate 161 can push the tower materials along the material passing port 131 into the corresponding storage space 130, thereby realizing the stacking of the tower materials, thereby alleviating the pressure of stacking tower materials at the construction site;

[0069] Among them, construction workers can use climbing ladders to obtain materials, which is more convenient;

[0070] Among them, since the number of tower materials required for tower assembly is large, multiple device main bodies 100 provided in this embodiment can be arranged at the actual construction site, and the overall structure of the device main body 100 provided in this embodiment can be disassembled, and the corresponding elements of the overall structure can be connected by detachable means such as angle brackets, so it is better to realize the installation or disassembly of the device main body 100 at the construction site.

[0071] In this embodiment, a bottom plate 210 is provided below the material conveying channel 140 along the length direction of the first frame 110, and a first driving mechanism 150 for driving the bracket 151 to move up and down along the material conveying channel 140 is provided between the upper end surface of the bottom plate 210 and the lower end surface of the bracket 151; the first driving mechanism 150 includes a pair of support rods 240 respectively provided on both sides of the length direction of the bottom plate 210, and the middle part of the pair of support rods 240 is hinged; the upper end surface of the bottom plate 210 is respectively provided with a first chute 221 on both sides along the length direction of the bottom plate 210, and the lower end surface of the bracket 151 is respectively provided with a second chute 222 on both sides along the length direction of the bracket 151, and the lower end of the support rod 240 is hinged to the first chute 221. The first slide 231 slides inwardly, and the upper end of the support rod 240 is hinged with a second slide 232 sliding in the second slide groove 222; the first slide 231 at the same end in the length direction of the base plate 210 is connected by a first connecting rod; the second slide 232 at the same end in the length direction of the bracket 151 is connected by a second connecting rod; a rotating rod 250 is provided on the upper end surface of the base plate 210 along the length direction, and the rotating rod 250 is used to drive the first connecting rods at both ends of the length direction of the base plate 210 to move toward or away from each other; the two ends of the rotating rod 250 are axially fixed by the shaft seat 280, and a servo motor 290 is provided at one end in the length direction of the base plate 210, and the servo motor 290 is used to drive the rotating rod 250 to rotate circumferentially.

[0072] Through the above structure, the construction worker places the corresponding tower material on the bracket 151 at the material conveying channel 140 and drives the servo motor 290, which can make the servo motor 290 drive the rotating rod 250 to rotate circumferentially, thereby making the first connecting rods at both ends of the bottom plate 210 in the length direction move toward each other. At this time, the angle formed by the pair of centrally hinged support rods 240 gradually decreases, so it is better to achieve the upward movement of the bracket 151 along the material conveying channel 140 to move the tower material to the storage port of the corresponding storage space 130;

[0073] Among them, the first slide 231 is located in the first slide groove 221 and slides linearly, and the second slide 232 is located in the second slide 232 and slides linearly. For example, the side walls of the first slide groove 221 and the second slide groove 222 can form a protrusion, and the side walls of the first slide 231 and the second slide 232 can form a groove for cooperating with the protrusion, so that the first driving mechanism 150 can more stably drive the bracket 151 to move up and down along the material conveying channel 140.

[0074] In this embodiment, fixing members 260 are provided at both ends of the upper end surface of the bracket 151 along the length direction; the fixing members 260 include a first fixing seat 261 and a second fixing seat 262 respectively provided on both sides of the length direction of the bracket 151; the side walls opposite to the first fixing seat 261 and the second fixing seat 262 are formed into arc-shaped surfaces, and the arc-shaped surfaces of the first fixing seat 261 and the arc-shaped surfaces of the second fixing seat 262 form a placement groove 263 for placing materials.

[0075] Through the above structure, the key tower materials for tower assembly are generally main pipes, horizontal pipes, and eight-shaped pipes, so a placement groove 263 is provided to prevent the tower materials from rolling on the bracket 151 when the bracket 151 is being transported.

[0076] In this embodiment, the bracket 151 is provided with a plurality of rotating grooves 270 evenly spaced along the length direction. A rotating roller 271 is rotatably provided at the rotating groove 270 , and the axial direction of the rotating roller 271 is perpendicular to the length direction of the bracket 151 .

[0077] Through the above structure, the rotating roller 271 can effectively reduce the friction between the tower material and the upper end surface of the bracket 151, so that the construction workers can more conveniently place the tower material on the bracket 151.

[0078] In this embodiment, a fixed plate 170 is provided at any storage space 130 of the second frame 120, and a second driving mechanism 160 is provided at the fixed plate 170 for moving the push plate 161 toward or away from the first frame 110; the second driving mechanism 160 includes a plurality of cylinders 310 evenly spaced along the length direction of the fixed plate 170, and the output ends of the plurality of cylinders 310 are all connected to the corresponding side walls of the push plate 161, and the side wall of the push plate 161 for pushing the material is provided with a wedge panel 410, and the upper end of the wedge panel 410 is connected to the upper end surface of the push plate 161, and the wedge panel 410 forms an angle less than 90° with the push plate 161.

[0079] Through the above structure, the cylinder 310 can better drive the push plate 161 to push the tower material at the bracket 151 into the corresponding storage space 130. When the push plate 161 is pushing, the wedge panel 410 can better cooperate with the lower bottom wall of the tower material, so that the tower material can be better separated from the bracket 151 and stored in the corresponding storage space 130 along the material outlet 131.

[0080] In this embodiment, the fixed plate 170 is provided with a plurality of limit grooves 320 spaced in sequence along the length direction, the length direction of the plurality of limit grooves 320 is consistent with the width direction of the fixed plate 170, and the lower end surface of the push plate 161 is provided with a limit block 420 located in the corresponding limit groove 320.

[0081] Through the above structure, when the cylinder 310 pushes the push plate 161 to move, the limiting block 420 can be well matched in the limiting groove 320, so that the push plate 161 has better stability when moving.

[0082] In this embodiment, the first frame 110 and the second frame 120 are connected at both upper and lower ends via ribs 180 .

[0083] With the above structure, the first frame 110 and the second frame 120 can be connected by the ribs 180 after being installed during construction, so that the integrity of the device body 100 is improved, thereby making the device body 100 more stable when installed at the construction site.

[0084] In this embodiment, a plurality of anchor rods 111 are provided at the bottom ends of the first frame 110 and the second frame 120 .

[0085] Through the above structure, construction workers can level the terrain of the construction site and bury the anchor rods 111 into the foundation surface, thereby better realizing the installation of the first frame 110 and the second frame 120 at the construction site.

[0086] In this embodiment, a shielding door 190 is provided at one side of the first frame 110 in the length direction at any storage space 130 .

[0087] Through the above structure, the shielding door 190 can shield the storage space 130 to prevent tower materials from falling out of the storage space 130; when construction workers take materials, they only need to open the shielding door 190 at the corresponding storage space 130 to take materials.

[0088] In this embodiment, a spare storage area is formed around the bottom of the first frame 110 and the second frame 120 .

[0089] Through the above structure, when the amount of tower materials is too large and the storage space 130 is saturated, the spare storage area can be used to place the corresponding tower materials.

[0090] Example 2

[0091] like Figure 5 As shown, this embodiment provides a tower material management method, which is implemented by a tower material management device provided in Example 1, and includes the following steps:

[0092] Step S1, storage area division;

[0093] In this step, multiple storage areas are divided at the construction site, and the storage areas are used to store tower materials for tower assembly;

[0094] Step S2, sorting the storage area numbers;

[0095] In this step, the plurality of storage areas are sorted and numbered one by one;

[0096] Step S3, tower material separation;

[0097] In this step, the tower materials for the tower group are divided into tower materials for the corresponding sections of the tower group;

[0098] Step S4: Count tower materials;

[0099] In this step, the tower materials corresponding to the tower section assembled in step S3 are counted; if there is a shortage of materials, the shortage information is reported; otherwise, the next step is carried out;

[0100] Step S5, tower material numbering;

[0101] In this step, the tower materials of the corresponding sections of the tower assembly in step S4 are numbered one by one;

[0102] Step S6: storing tower materials;

[0103] In this step, the tower materials of the corresponding sections of the tower assembly in step S5 are stored one by one in the storage area in step S2.

[0104] In this embodiment,

[0105] Step S1: divide the construction site into multiple storage areas so that when tower materials for tower assembly arrive at the construction site, construction workers can store the tower materials in corresponding storage areas;

[0106] Step S2: sorting and numbering the multiple storage areas so that construction workers can find the tower materials for the corresponding tower assembly according to the numbers;

[0107] Step S3, by dividing the tower materials into tower materials corresponding to the tower sections, it is convenient for construction workers to obtain materials when assembling the tower section by section;

[0108] Step S4: By counting the tower materials in the corresponding section of the tower assembly, the construction personnel can clearly know whether there is a shortage of tower materials in the corresponding section of the tower assembly. If there is a shortage, the construction personnel can report the shortage information in time to replenish the materials, thereby avoiding delays in the construction period.

[0109] Step S5: numbering the tower materials of the corresponding sections of the tower assembly one by one so that the construction personnel can find the tower materials of the corresponding tower assembly section according to the numbers;

[0110] Step S6, by storing the tower materials of the corresponding sections of the tower group in a one-to-one correspondence in the storage area, the tower materials of the corresponding sections of the tower group are stored in a better manner;

[0111] Through the above steps S1-S6, construction workers can more efficiently and conveniently complete the counting and statistics of tower materials for each tower section, reasonably divide the materials and stack them in an orderly manner, thereby improving construction efficiency.

[0112] In this embodiment, step S1 includes the following steps:

[0113] Step S11, setting a storage space 130;

[0114] In this step, a plurality of storage spaces 130 are provided in any storage area, and each storage space 130 is used to store tower materials of a corresponding section of the tower assembly.

[0115] Through the above steps, any storage space 130 can store tower materials of the corresponding section of the tower assembly, so that construction workers can take materials when needed.

[0116] In this embodiment, the plurality of storage spaces 130 are arranged in sequence along the height direction.

[0117] Through the above structure, the arrangement of the storage space 130 at the construction site can effectively reduce the area occupied by the storage area at the construction site.

[0118] In this embodiment, a spare storage area is set at any storage area.

[0119] With the above structure, when the corresponding storage area is saturated with tower materials, the spare storage area can store other tower materials to ensure that the tower materials for tower assembly are stored in an orderly manner at the construction site.

[0120] In this embodiment, step S2 includes the following steps:

[0121] Step S21, sorting multiple storage areas;

[0122] In this step, multiple storage areas are sorted according to the English sorting method;

[0123] Step S22: sorting the multiple storage spaces 130 in any storage area;

[0124] In this step, the plurality of storage spaces 130 are arranged in order from bottom to top or from top to bottom according to Arabic numerals.

[0125] Through the above steps, the storage areas and storage spaces 130 are sorted and numbered, so that construction workers can more conveniently query the numbers and take out the tower materials in the corresponding storage space 130.

[0126] In this embodiment, step S3 includes the following steps:

[0127] Step S31, input tower material information;

[0128] In this step, enter the material information of the tower material, including specifications, quantity, tower section and matching steel stamp number.

[0129] Step S32: dividing tower materials;

[0130] In this step, the tower materials of each section of the tower assembly are distinguished according to the material information of the tower materials.

[0131] Through the above steps, the material information of the tower materials is entered, which makes it easy to distinguish the tower materials of each section of the tower group and facilitates the construction workers to assemble the tower group.

[0132] In this embodiment, step S4 includes the following steps:

[0133] Step S41, counting the actual list;

[0134] In this step, the actual list of tower materials for each section of the tower is compiled;

[0135] Step S42: Compare the actual list with the set list;

[0136] In this step, the actual list of tower materials for each section of the tower assembly is compared with the set list of tower materials for each section of the tower assembly. If the actual list is inconsistent with the set list, the missing material list is reported.

[0137] Through the above steps, the actual list of tower materials for each section of the tower assembly is compared with the set list of tower materials for each section of the tower assembly, so that the construction personnel can know whether there is any shortage of tower materials for each section of the tower assembly. If there is a shortage, the construction personnel can report the shortage list to the supplier to replenish the missing tower materials.

[0138] In this embodiment, in step S5, each section of tower materials is numbered one by one according to the tower assembly installation sequence.

[0139] Through the above steps, when the construction workers install the corresponding tower sections of the tower assembly, they can more conveniently obtain the corresponding tower materials for each section of the tower assembly according to the numbers.

[0140] In this embodiment, in step S6, if the actual list of tower materials for each section of the tower assembly is consistent with the set list of tower materials for each section of the tower assembly, the tower materials for the corresponding sections of the tower assembly are stored in the storage area one by one.

[0141] Through the above steps, when the construction workers install the corresponding tower sections of the tower assembly, the construction workers can more conveniently obtain the corresponding tower materials for each section of the tower assembly from the corresponding storage area according to the number.

[0142] In this embodiment, the plurality of storage spaces 130 are realized by a device body 100; the device body 100 includes a first frame 110 placed vertically along the height; the plurality of storage spaces 130 are arranged along the height direction of the first frame 110; any storage space 130 is formed with a feeding port 131 on one side along the length direction of the first frame 110; a second frame 120 is provided on the side of the first frame 110 having the feeding port 131, and the first frame 110 and the second frame 120 are spaced apart and the spacing forms a Material conveying channel 140; a lifting mechanism is provided under the material conveying channel 140, and the lifting mechanism includes a bracket 151 that moves up and down along the material conveying channel 140, and the bracket 151 is used to place the material and transport it to the corresponding feeding port 131; the second frame 120 is provided with a pushing mechanism at any feeding port 131 along the height direction, and the pushing mechanism includes a push plate 161 that moves toward or away from the feeding port 131, and the push plate 161 is used to push the material along the feeding port 131 to the corresponding storage space 130.

[0143] In step S6, when the construction personnel are able to store the tower materials of each section of the corresponding tower group in the corresponding storage area according to the number, they can place the tower materials on the bracket 151, and make the bracket 151 move up and down along the material conveying channel 140 to the corresponding material passing port 131, and then make the push plate 161 push the tower materials at the bracket 151 along the material passing port 131 into the corresponding storage space 130 to complete the storage operation.

[0144] Example 3

[0145] like Figure 6-7 As shown, this embodiment provides a tower material management system, which is implemented by a tower material management device provided in Example 1, and includes the following modules:

[0146] The backend module is used to record the material information of the tower materials, the installation sequence of the tower, and the list of tower materials for each section of the tower;

[0147] The storage area entry module is used to obtain the quantity information of the storage areas at the construction site and number the storage areas one by one;

[0148] A storage area allocation module is used to allocate storage areas and record the material information of the tower materials for the corresponding tower assembly;

[0149] A tower material input module is used to obtain material information of tower materials for tower assembly and number the tower materials for tower assembly based on the obtained material information of tower materials for tower assembly;

[0150] The tower material allocation module is used to allocate the tower materials of the tower assembly to the corresponding storage areas according to the storage area allocation module and generate tower material storage information.

[0151] Through the above management system, first, the construction personnel record the material information of the tower materials, the installation order of the tower, and the list of materials for each section of the tower in the background module; secondly, the construction personnel arrange multiple storage areas at the construction site and enter the quantity information of multiple storage areas into the storage area entry module. The storage area entry module can number the storage areas at the construction site one by one; the storage area allocation module can allocate the storage areas and record the material information of the tower materials for the corresponding tower; thirdly, when the tower materials for the tower arrive at the construction site, The tower material input module can input the material information of the tower materials and can number the tower materials of each section of the tower; among them, the tower materials located in the same section of the tower are assigned to one number; the tower materials located in the same section and of the same type are assigned to another number; finally, the tower material allocation module allocates the tower materials of the tower with the same number to the corresponding storage area, and generates the tower material storage information for the construction personnel to know, thereby improving the construction efficiency of the construction personnel when they are counting the tower materials of each tower section, reasonably dividing the materials and stacking them in an orderly manner.

[0152] In this embodiment, the material information of the tower materials for the tower assembly includes specifications, quantity, tower sections and matching steel stamp numbers.

[0153] In this embodiment, by acquiring the material information of the tower materials for tower assembly, the tower materials for tower assembly can be better distributed to corresponding storage areas.

[0154] In this embodiment, the tower material input module includes a tower material dividing module, which is used to divide the tower material of the tower group into each section of the tower material according to the material information of the tower material of the tower group.

[0155] In this embodiment, by obtaining the material information of the tower materials for the tower assembly, the tower materials for the tower assembly can be better divided into tower materials for each section of the tower assembly, thereby achieving the storage of tower materials for the same section of the tower assembly in the same storage area, thereby facilitating construction.

[0156] In this embodiment, the tower material entry module includes a tower material inventory module and a tower material comparison module;

[0157] The tower material inventory module is used to obtain the actual list of tower materials for each section of the tower assembly; and

[0158] The tower material comparison module is used to compare the actual list of tower materials for each section of the tower assembly with the set list of tower materials for each section of the tower assembly and to generate a material shortage information report.

[0159] In this embodiment, by obtaining the actual list of tower materials for each section of the tower assembly and comparing it with the set list of tower materials for each section of the tower assembly, the material shortage information report can show the construction personnel the material shortage information of each section of the tower material. If the material shortage information shows that the tower material in this section is short of material, the construction personnel can report the material shortage information to the supplier for replenishment, thereby avoiding extension of the construction period.

[0160] In this embodiment, a tower material query module is also included, which is used to obtain tower material storage information.

[0161] In this embodiment, construction personnel can query the tower material storage information through the tower material query module, so as to quickly obtain the storage area where the corresponding tower material is located.

[0162] In this embodiment, the storage area entry module further includes a spare area division module, and the spare area division module divides any storage area into a spare area.

[0163] In this embodiment, if there is a storage area where the tower materials are saturated, the management system can allocate the corresponding tower materials to the spare area.

[0164] In this embodiment, tower materials for tower assembly are stored in a storage area through a device body 100. The device body 100 has a plurality of storage spaces 130. Each storage space 130 is used to store tower materials for each section of tower assembly.

[0165] In this embodiment, by providing a plurality of storage spaces 130 , more tower assembly materials can be placed in any storage area.

[0166] In this embodiment, the plurality of storage spaces 130 are arranged sequentially from top to bottom along the height direction.

[0167] In this embodiment, the arrangement of the storage space 130 can effectively reduce the area occupied by the storage area at the construction site.

[0168] In this embodiment, the device body has a material conveying unit group and a control unit. The material conveying unit group is used to convey the tower material to the corresponding storage space, and the control unit is used to control the action of the material conveying unit group.

[0169] In this embodiment, the construction workers can control the control unit to operate the material transfer unit group so that the material transfer unit group can transfer the materials to the corresponding storage space 130, thereby preferably reducing the labor intensity of the construction workers when storing tower materials.

[0170] In this embodiment, the material transfer unit group includes a bracket 151 and a push plate 161; the bracket 151 is used to move up and down in the height direction and is used to transfer the tower material to the corresponding storage space 130; a plurality of push plates 161 are provided and are arranged one by one in the storage space 130, and the bracket 151 is used to push the tower material into the storage space 130.

[0171] In this embodiment, the construction personnel place the tower material on the bracket 151, control the bracket 151 to drive the tower material to move upward and move to the corresponding storage space 130, and then control the push plate 161 at the corresponding storage space 130 to push the tower material into the storage space 30, thereby completing the storage of the tower material in the corresponding storage space 130.

[0172] It is easy to understand that those skilled in the art can combine, split, reorganize, etc. the embodiments of the present application based on one or several embodiments provided in the present application to obtain other embodiments, and these embodiments do not exceed the scope of protection of the present application.

[0173] The above is a schematic description of the present invention and its embodiments, which is not restrictive. The embodiments shown in the embodiments are only part of the embodiments of the present invention, and the actual structure is not limited thereto. Therefore, if a person skilled in the art is inspired by the above and, without departing from the purpose of the present invention, designs a structure and embodiment similar to the technical solution without creatively designing, they shall fall within the scope of protection of the present invention.

Claims

1. A tower material management method, characterized by: The following steps are included: Step S1, storage area division; In this step, multiple storage areas are divided at the construction site, and the storage areas are used to store tower materials for tower assembly; Step S2, sorting the storage area numbers; In this step, the plurality of storage areas are sorted and numbered one by one; Step S3, tower material separation; In this step, the tower materials of the tower group are divided into tower materials of corresponding sections of the tower group, including the following steps: Step S31, input tower material information; In this step, enter the material information of the tower material, including specifications, quantity, tower section and matching steel stamp number; Step S32: dividing tower materials; In this step, the tower materials of each section of the tower assembly are distinguished according to the material information of the tower materials; Step S4: Counting tower materials; In this step, the tower materials corresponding to the tower section assembled in step S3 are counted; if there is a shortage of materials, the shortage information is reported; otherwise, the next step is carried out; Step S5, tower material numbering; In this step, the tower materials of the corresponding sections of the tower assembly in step S4 are numbered one by one, specifically, each section of the tower materials of the tower assembly is numbered one by one according to the order of tower assembly installation; Step S6: storing tower materials; In this step, the tower materials of the corresponding sections of the tower assembly in step S5 are stored one by one in the storage area in step S2.

2. A tower material management method according to claim 1, characterized in that: Step S1 includes the following steps: Step S11, setting storage space (130); In this step, a plurality of storage spaces (130) are provided at any storage area, and any storage space (130) is used to store tower materials of corresponding sections of the tower assembly.

3. A tower material management method according to claim 2, characterized in that: The multiple storage spaces (130) are arranged in sequence along the height direction.

4. A tower material management method according to claim 3, characterized in that: A spare storage area is set up at any storage area.

5. A tower material management method according to claim 4, characterized in that: Step S2 includes the following steps: Step S21, sorting multiple storage areas; In this step, multiple storage areas are sorted according to the English sorting method; Step S22, sorting the plurality of storage spaces (130) in any storage area; In this step, the plurality of storage spaces (130) are arranged in order from bottom to top or from top to bottom according to Arabic numerals.

6. A tower material management method according to claim 1, characterized in that: Step S4 includes the following steps: Step S41, counting the actual list; In this step, the actual list of tower materials for each section of the tower is compiled; Step S42: Compare the actual list with the set list; In this step, the actual list of tower materials for each section of the tower assembly is compared with the set list of tower materials for each section of the tower assembly. If the actual list is inconsistent with the set list, the missing material list is reported.

7. A tower material management method according to claim 2, characterized in that: In step S6, if the actual list of tower materials for each section of the tower assembly is consistent with the set list of tower materials for each section of the tower assembly, the tower materials for the corresponding sections of the tower assembly are stored in the storage area one by one.

8. A tower material management method according to claim 7, characterized in that: The plurality of storage spaces (130) are realized by a device body (100); the device body (100) includes a first frame (110) vertically placed along the height; the plurality of storage spaces (130) are arranged along the height direction of the first frame (110); a feeding port (131) is formed on one side of any storage space (130) along the length direction of the first frame (110); a second frame (120) is provided on one side of the first frame (110) having the feeding port (131), and the first frame (110) and the second frame (120) are spaced apart and the gap forms a material transmission space. A material delivery channel (140); a lifting mechanism is provided below the material delivery channel (140), the lifting mechanism includes a bracket (151) that moves up and down along the material delivery channel (140), and the bracket (151) is used to place the material and transport it to the corresponding feeding port (131); the second frame (120) is provided with a pushing mechanism at any feeding port (131) along the height direction, and the pushing mechanism includes a push plate (161) that moves toward or away from the feeding port (131), and the push plate (161) is used to push the material along the feeding port (131) to the corresponding storage space (130).