Electrical equipment assembly dismantling equipment and using method thereof
By providing equipment for dismantling electrical equipment assemblies, the problems of complex storage and easy loss of parts during the dismantling process have been solved, achieving efficient dismantling, convenient storage, and recording of the dismantling and assembly process, thereby improving work efficiency and safety.
Patent Information
- Application Number
- CN202511958807.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-24
- Publication Date
- 2026-03-06
AI Technical Summary
In existing technologies, the dismantling process of power equipment is cumbersome. After dismantling, the components and accessories need to be temporarily stored, which is complicated and easy to be scattered and lost, affecting work efficiency and safety.
A device for dismantling electrical equipment assemblies is provided, including a platform, a sliding dismantling platform, and an accessory container. The accessory container can be assembled as needed. The dismantling process is recorded using the sliding dismantling platform and a camera component. The accessory container can be temporarily stored and marked. Convenient storage is achieved through thermoplastic components and welded columns.
It enables efficient disassembly and convenient storage of power equipment assemblies, records the disassembly and assembly process, facilitates marking and management, and improves disassembly and assembly efficiency and safety.
Smart Images

Figure CN121607901A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of disassembly tools, and in particular to a disassembly device for electrical equipment assemblies and its method of use. Background Technology
[0002] Among electrical equipment, some devices are small in size but complex in structure. These devices need to be disassembled and reassembled for repair, maintenance (including cleaning), modification, and troubleshooting.
[0003] Due to its complex structure, the disassembly process is also quite complicated. In order to achieve better restoration after disassembly, not only is a large space needed to place and mark the disassembled components and other accessories for reassembly, but the disassembly process also needs to be photographed or videotaped to avoid errors or omissions during reassembly, thus avoiding affecting the function of the finished product and reducing safety hazards.
[0004] When some equipment is disassembled or halfway through disassembly, it may be impossible to reassemble the equipment due to reasons such as missing or damaged parts or waiting for parts (for example, after the equipment is disassembled, it is found that the parts are damaged, but there are no replacement parts on site, and it is necessary to wait for the parts to be dispatched). In this case, it is necessary to reassemble the parts, collect the loose parts one by one, or let the loose parts occupy space while waiting for the parts to arrive. Reassembling the parts and collecting the loose parts are both complicated, time-consuming, and labor-intensive. Leaving them scattered will take up work space, seriously affect other operations, and easily lead to parts being lost or scattered due to accidents. Neither of these are good solutions.
[0005] Therefore, there is a need for a power equipment assembly dismantling device that can assist operators in dismantling power equipment assemblies and other accessories, can conveniently and efficiently store disassembled power equipment, can record the dismantling and assembly process in a good and convenient way, and is easy to use and can assist in the efficient dismantling and assembly operations. Summary of the Invention
[0006] This application provides a power equipment assembly dismantling device, which solves the technical problems in the prior art where the temporary storage and organization of assemblies and other accessories of power equipment is cumbersome and complicated during and after dismantling, and accessories are scattered and easily lost. The power equipment assembly dismantling device can assist operators in efficiently dismantling power equipment assemblies and other accessories, can conveniently and efficiently organize dismantled power equipment, can record the dismantling and assembly process well and conveniently, and is easy to use.
[0007] This application provides a power equipment assembly dismantling device, including a platform and a sliding dismantling platform; The platform is a horizontally placed rectangular platform positioned on the ground for placing accessory containers. Guide rails are positioned on the ground near the platform or on the side wall of the platform; The accessory container is used to hold the accessories of the disassembled power equipment. Its top surface is flat and has multiple recesses, which are used to hold different accessories. The sliding disassembly platform is slidably positioned on the guide rail and slides on the top of the platform; The top of the sliding disassembly table is detachably positioned with a top clamp, and a carrier is positioned on the top or one side, with a tool carrier fixed on one side. The carrier is a rigid frame, and a camera assembly is installed on the carrier to record the disassembly and assembly process.
[0008] Preferably, the accessory container is a rigid plate with multiple recesses on the top surface that function as a container.
[0009] Preferably, the accessory container placed on the top surface of the platform is composed of multiple rigid plates spliced together. When in use, the rigid plates with different sized recesses can be selected to splice together the accessory container according to the size and quantity of the accessories of the disassembled equipment.
[0010] Preferably, the accessory container is made of paper, which is pressed from cardboard.
[0011] Preferably, it also includes a coating carrier and a coating; The coating carrier is positioned near one end of the platform and is located on the ground. The main structure is a horizontally placed roll that is positioned on the ground by a rigid frame. The coating is a transparent strip film or a transparent plastic strip that is wound and positioned on the coating carrier. If disassembly or assembly of electrical equipment is suspended, apply adhesive to the top surface of the accessory container, cover and secure a coating on the accessory container, then mark and store it.
[0012] Preferably, it also includes a base carrier, a base layer, and thermoplastic components; The accessory container is made of metal. The base carrier is located at one end near the platform, and its main structure is a horizontally placed roll that is positioned on the ground by a rigid frame. The base layer is a thermoplastic plastic strip, which is wound and positioned on the covering carrier; At least one of the overlay and the base layer is a transparent material; The thermoplastic assembly includes a top cover box, a hot air pumping assembly, and a cover box displacement assembly; The top cover box is a rigid box with an open bottom, horizontally positioned between the sliding disassembly platform and the carrier platform; The bottom opening of the top cover box is provided with a bottom pad; The main body of the hot air pumping component is a combination of an air pump and a gas heating device, used to output heated gas and communicate with the internal space of the top cover box. The cover box displacement component is controlled to move the top cover box up and down.
[0013] Preferably, since the container is formed by shaping the base layer, its capacity is not limited by the top surface area of the platform or the capacity of the accessory containers, and the platform does not need to be built too large. After the container constructed by the base layer of the platform is filled, it can be pulled out of the container after the covering layer is covered and fixed, and then a new container can be constructed. Finally, a strip-shaped container composed of the base layer and the covering layer can be formed.
[0014] Preferably, it also includes a resisting combination component; The abutment assembly includes an abutment welding column and a welding column carrier; The contact welding column is a horizontally placed metal cylinder with a length greater than the width of the base layer. Its length direction is the same as the width direction of the base layer. It is equipped with heating wires or heating plates on its internal or external surface for controlled heating. The welding column is positioned on one side of the sliding disassembly table by a welding column carrier and can move up and down under the action of the welding column carrier. After covering the base layer with the coating, hot air is blown onto the recess of the accessory container on the coating using a thermoplastic component to create some downward protrusions. At this time, the base layer and the coating protrude from the top surface of the accessory container. After that, the heated abutment welding post is rolled on the coating once or multiple times to weld the coating and the base layer together by heating.
[0015] Preferably, it also includes an extension layer carrier and an extension layer; The extension layer carrier is positioned at one end near the platform and is located on the ground. The main structure is a horizontally placed roll that is positioned on the ground by a rigid frame. The extension layer is a paper strip coated with self-adhesive on one side and is wound and positioned on the extension layer carrier. The coating is a thin film; the base layer is a transparent material; After the overlay and base layer are combined, an extension layer is used to cover the overlay with another layer, which ensures the firmness while making the accessories easy to remove and easier to mark.
[0016] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages: This invention provides a power equipment assembly dismantling device comprising a platform and a sliding dismantling platform. The platform is equipped with a parts container, and the sliding dismantling platform supports and positions the equipment to be dismantled and can slide on the platform. After dismantling, the parts are directly placed into the parts container. If dismantling or assembly of the power equipment is suspended due to damaged, missing, or other issues, the parts container can hold the parts, which can then be laid flat on the ground or stacked together. This effectively solves the technical problems of cumbersome and complex temporary storage of assemblies and other parts during and after power equipment dismantling, as well as the scattered and easily lost parts in existing technologies. Furthermore, this power equipment assembly dismantling device assists operators in efficiently dismantling power equipment assemblies and other parts, provides convenient and efficient storage of dismantled power equipment, and offers good and convenient recording of the dismantling and assembly process, while also being easy to use. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of the power equipment assembly dismantling equipment of this application; Figure 2 This is a schematic diagram of the sliding disassembly platform. Figure 3 This is a schematic diagram of the stage structure; Figure 4 A schematic diagram of the external structure of the accessory container; Figure 5 This is a schematic diagram showing the positional relationship between the coating carrier and the platform. Figure 6 This is a schematic diagram of the bottom structure of a paper-based accessory container; Figure 7 This is a schematic diagram showing the positional relationship between the cladding carrier, the base carrier, and the platform. Figure 8 This is a schematic diagram showing the layout of thermoplastic components; Figure 9 This is a schematic diagram of the structure of a thermoplastic component; Figure 10 A structural diagram of the component container shaped for the base layer; Figure 11 A schematic diagram showing the positional relationship between the extended layer carrier, the cladding carrier, the base layer carrier, and the platform; Figure 12 A simplified diagram showing the positional relationship between the cladding layer, base layer, and extension layer; Figure 13 This is a schematic diagram illustrating the layout relationship of conflicting components.
[0018] In the picture: Platform 100, guide rail 110, accessory container 120, end positioning body 130, sliding disassembly platform 200, top clamp 210, carrier frame 220, camera assembly 230, assisted robotic arm 240, tool carrier 250, covering carrier 300, covering 301, base carrier 400, base 401, top cover box 510, bottom pad 511, hot air pumping assembly 520, cover box shifting assembly 530, extension layer carrier 600, extension layer 601, contact welding column 710, side frame 721, shifting carrier 722, buffer 723, positioning frame 724, marking assembly 800. Detailed Implementation
[0019] To facilitate understanding of the present invention, a more complete description of this application will be given below with reference to the accompanying drawings, which illustrate preferred embodiments of the invention. However, the invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to enable a more thorough and complete understanding of the disclosure of the present invention.
[0020] It should be noted that the terms "vertical," "horizontal," "up," "down," "left," "right," and similar expressions used in this article are for illustrative purposes only and do not represent the only possible implementation.
[0021] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains; the terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to limit the invention; the term "and / or" as used herein includes any and all combinations of one or more of the associated listed items. Example
[0022] like Figures 1 to 4 As shown, the power equipment assembly dismantling equipment of this application includes a platform 100, a sliding dismantling platform 200, a power component, and a control unit.
[0023] The platform 100 is a horizontally placed rectangular platform positioned on the ground for placing the accessory container 120. A guide rail 110 is positioned on the ground or on the side wall of the platform 100 near the platform 100; the length direction of the guide rail 110 is the same as the length direction of the platform 100, and it is used to guide the sliding disassembly platform 200 to move. The accessory container 120 is used to hold disassembled electrical equipment assemblies and other accessories. Its top surface is flat and has multiple recesses, each of which is used to hold different accessories.
[0024] The sliding disassembly platform 200 is a rectangular platform that is slidably positioned on the guide rail 110 and slides on the top of the platform 100; the sliding disassembly platform 200 can slide manually or under the coordinated control of the control unit and the power component; The top of the sliding disassembly table 200 is detachably positioned with a top clamp 210, and a carrier 220 is positioned on the top or one side, and a tool carrier 250 is fixed on one side; the top clamp 210 is a manual clamp or an electric clamp, used to clamp and fix the equipment to be disassembled. The carrier 220 is a rigid frame, the main body of which consists of a longitudinally arranged rod and a rigid plate positioned at the top of the rod; the carrier 220 is equipped with a camera component 230 for recording the disassembly and assembly process, and also with a power-assisted robotic arm 240 for reducing the workload of manual operation and improving the accuracy and efficiency of operation; the camera component 230 and the power-assisted robotic arm 240 are both existing technologies and will not be described in detail here; The tool carrier 250 is a horizontally placed plate structure with grooves and / or through slots for accommodating disassembly tools (including tool replacement heads). It is fixed to one side of the sliding disassembly table 200 for workers to pick up and place.
[0025] Furthermore, the accessory container 120 is a rigid plate, preferably made of plastic, and has multiple grooves (pits) on its top surface that function as a container.
[0026] Furthermore, the accessory container 120 placed on the top surface of the platform 100 is composed of multiple rigid plates. When in use, the rigid plates with different sized recesses can be selected to assemble the accessory container 120 according to the size and quantity of the accessories of the disassembled equipment.
[0027] Furthermore, the sliding disassembly platform 200 is a rigid curved plate with a downward-opening U-shaped cross section, which covers the platform 100 and is slidably positioned on the guide rail 110 at the bottom.
[0028] The power assembly is used to provide power for the operation of each component of the power equipment assembly dismantling equipment of this application, and the control unit plays the role of controlling the coordinated operation of each component of the power equipment assembly dismantling equipment. Both are existing technologies and will not be described in detail here.
[0029] When the power equipment assembly of this application is dismantled and used: First, based on the electrical equipment that needs to be disassembled, one or more accessory containers 120 are assembled on the platform 100 using multiple hard plates with recesses. The electrical equipment to be disassembled is placed on the sliding disassembly platform 200 and secured by the top clamp 210; The electrical equipment to be disassembled is dismantled step by step using disassembly tools. Smaller parts (within the capacity of the parts container 120) are placed directly into the same or different recesses of the parts container 120. During the process, the relative position of the electrical equipment to be disassembled and the platform 100 can be adjusted by sliding the disassembly platform 200 to facilitate efficient and convenient placement of the disassembled parts. The entire disassembly process is recorded by the camera component 230. If the disassembly or assembly of electrical equipment is suspended due to problems such as damaged or missing parts, the undisassembled parts or larger accessories should be directly packed into boxes. After marking the boxes and accessory containers 120, they should be temporarily placed in a suitable location. The accessory containers 120 can be laid flat on the ground or stacked together to save space.
[0030] The technical solutions described in the embodiments of this application have at least the following technical effects or advantages: This invention solves the technical problems of the cumbersome and complicated process of temporarily storing and organizing the components and accessories of power equipment during and after dismantling, as well as the problem of the components being scattered and easily lost. It achieves the technical effects of enabling power equipment assembly dismantling equipment to assist operators in efficiently dismantling power equipment assemblies and other accessories, to conveniently and efficiently store dismantled power equipment, to record the dismantling and assembly process in a good and convenient way, and to be easy to use. Example
[0031] Considering the drawbacks of using a rigid plate as the accessory container 120 in the above embodiments, such as large size, heavy weight, large space occupation, and inconvenience in movement and transportation, and because the electrical equipment to be disassembled is generally old equipment, the accessory container 120 is easily contaminated after the accessories are placed in it, and the accessory container 120 must be cleaned before reuse, which involves a certain amount of labor; and because of its own structure, the accessory container 120 can only be stacked together to save space and prevent the accessories from falling out, rather than placed in a row, which is relatively inconvenient to take out. In order to address the above problems, this application embodiment optimizes and improves the accessory container 120 based on the above embodiments, and adds a covering carrier 300 and a covering 301; specifically: like Figure 5 and Figure 6 As shown, the accessory container 120 is made of paper, which is made of cardboard and is lightweight and absorbent. The coating carrier 300 is positioned at one end near the platform 100 and is located on the ground. Its main structure is a horizontally placed roll that is positioned on the ground by a rigid frame. The coating 301 is a transparent strip film or a transparent plastic strip that is wound and positioned on the coating carrier 300. If the disassembly or assembly of electrical equipment is suspended due to problems such as damaged parts, missing parts, etc., apply glue to the top surface of the accessory container 120 and cover and fix a layer of cover 301 on the accessory container 120 (the cover 301 can be freely cut as needed), then mark it and store it (when storing, the accessory container 120 can be placed upright for easy access and retrieval). Example
[0032] Considering the drawbacks of the paper-based accessory container 120 used in the above embodiments, which is susceptible to moisture, breakage, and poor protection, this application embodiment adds a base carrier 400, a base layer 401, and a thermoplastic component to the above embodiments. Using the metal accessory container 120 as a mold, a new container is constructed on top of the accessory container 120 using a plastic strip through thermoplastic forming. Specifically: like Figure 7 As shown, the accessory container 120 is made of metal, with a flat top surface and multiple recesses on the top. It is assembled from multiple rigid plates. The base carrier 400 is located near one end of the platform 100 and near the covering carrier 300, and is positioned on the ground. Its main structure is a horizontally placed roll that is positioned on the ground by a rigid frame. The base layer 401 is a thermoplastic plastic strip that is wound and positioned on the covering carrier 300. At least one of the cladding layer 301 and the base layer 401 is a transparent material; like Figures 8 to 10 As shown, the thermoforming assembly is used to shape the base layer 401, and includes a top cover box 510, a hot air pumping assembly 520, and a cover box shifting assembly 530; The top cover box 510 is a rigid box with an open bottom, horizontally positioned between the sliding disassembly table 200 and the platform 100; The bottom edge length of the top cover box 510 is greater than or equal to the width of the platform 100; the bottom opening of the top cover box 510 is provided with a silicone base pad 511; the base pad 511 is annular. The main body of the hot air pumping component 520 is a combination of an air pump and a gas heating device, used to output heated gas, and communicates with the internal space of the top cover box 510. It has the functions of filling the internal space of the top cover box 510 with air and drawing air from the internal space of the top cover box 510. The cover box shifting component 530 is a telescopic rod structure, vertically set, and can be extended and retracted in a controlled manner. The top is positioned at the bottom of the sliding disassembly platform 200, and the bottom is fixed to the top of the top cover box 510. It can control the top cover box 510 to move up and down. Before disassembling the electrical equipment, a base layer 401 is placed on the accessory container 120; then, a top cover box 510 is placed on the base layer 401, with its bottom edge indirectly touching the top surface of the accessory container 120 (ensuring there are no pits directly below the bottom pad 511); at this time, the thermoplastic assembly and the base layer 401 form a sealed space; the thermoplastic assembly is controlled to operate, and air is blown to deform the base layer 401 and fit it into the accessory container 120; after resetting the thermoplastic assembly, the sliding disassembly stage 200 is moved, and then the thermoplastic assembly continues to operate as needed, using the base layer 401 to shape a new container on the stage 100.
[0033] If the disassembly or assembly of electrical equipment is suspended due to problems such as damaged parts, missing parts, etc., apply glue to the top surface of the newly formed container and cover and fix a layer of covering 301 on the base layer 401. Then mark it and store it. When storing, the plastic container containing the accessories can be rolled into a roll or ring and the undisassembled parts or larger accessories can be wrapped up and stored together.
[0034] Because the container is shaped from the base layer 401, its capacity is not limited by the top surface area of the platform 100 or the capacity of the accessory container 120, and the platform 100 does not need to be built too large. After the container constructed from the base layer 401 of the platform 100 is full, it can be pulled out of the container after the covering layer 301 is covered and fixed, and then a new container can be constructed. Finally, a strip-shaped container composed of the base layer 401 and the covering layer 301 can be formed.
[0035] Preferably, in order to facilitate the flat arrangement of the base layer 401 and the cover layer 301, both ends of the platform 100 are provided with end positioning bodies 130; the end positioning bodies 130 are rigid straight rods with built-in magnets or magnets on one side, and there are multiple of them; both ends of the platform 100 are made of ferromagnetic material or are provided with ferromagnetic material sheets that match the end positioning bodies 130; the end positioning bodies 130 are adsorbed on both ends of the platform 100; when the cover layer 301 and the base layer 401 are laid out on the top of the platform 100, the end positioning bodies 130 can be used to flatten them and make them straight. Example
[0036] Considering the tedious and labor-intensive nature of the adhesive application process, and the need to apply a significant amount of adhesive between the base layer 401 and the overlay 301 to allow for the timely cutting of components along with their containers, this application proposes an additional contact assembly component to address these issues. This component utilizes heat welding to securely bond the overlay 301 and the base layer 401 together. Specifically: like Figure 11 and Figure 13 As shown, the abutment assembly includes an abutment welding column 710 and a welding column carrier; The contact welding column 710 is a horizontally placed metal cylinder with a length greater than the width of the base layer 401. Its length direction is the same as the width direction of the base layer 401. It is equipped with heating wires or heating plates on its internal or external surface for controlled heating. It is positioned on one side of the sliding disassembly table 200 by the welding column carrier. The welding column carrier includes a side frame 721, a displacement carrier 722, a buffer 723, and a positioning frame 724; The side frame 721 is a rigid frame fixed to one side of the sliding disassembly platform 200; The displacement carrier 722 is a vertical telescopic rod structure, fixed on the side frame 721, and its bottom is fixed on the buffer 723; the buffer 723 is a spring structure; the positioning frame 724 is a U-shaped rigid frame with an opening facing downwards, fixed to the bottom of the buffer 723; The end of the abutting welded column 710 is rotatably connected to the positioning frame 724.
[0037] After covering the base layer 401 with the cover layer 301, the thermoplastic component is used to shape some downward protrusions (recesses) at the position directly above the recess of the accessory container 120 on the cover layer 301 by blowing hot air. At this time, the base layer 401 and the cover layer 301 protrude from the top surface of the accessory container 120. After that, the heated abutment welding post 710 is rolled on the cover layer 301 once or multiple times to weld the cover layer 301 and the base layer 401 together by heating. Example
[0038] To facilitate the removal of some components and for easy labeling, this application embodiment adds an extension layer carrier 600 and an extension layer 601 based on the above embodiment; and optimizes and improves the structure of the covering layer 301, specifically as follows: like Figure 11 and Figure 12 As shown, the extension layer carrier 600 is positioned at one end near the platform 100 and is located on the ground. The main structure is a horizontally placed roll that is positioned on the ground by a rigid frame. The extension layer 601 is a paper strip coated with self-adhesive on one side and is wound and positioned on the extension layer carrier 600. The covering layer 301 is a thin film; the base layer 401 is a transparent material; After the overlay 301 is combined with the base layer 401, an extension layer 601 is used to cover the overlay 301, which ensures the firmness while making the accessories easy to remove and easier to mark.
[0039] Preferred, such as Figure 13 As shown, a marking component 800 is also provided on the side wall or bottom of the sliding disassembly stage 200; the marking component 800 is a printer that can print markings on the extension layer 601.
[0040] Preferably, after the accessories are assembled, the installation process can be automatically produced using AI based on the images captured by the camera component 230, and the accessories can be automatically numbered.
[0041] The above description is merely a preferred embodiment of the present invention and is not intended to limit the invention. For those skilled in the art, the present invention can have various modifications and variations. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. An electrical power equipment assembly removal apparatus, characterized by: The device comprises a carrier (100) and a sliding dismounting platform (200); The carrier (100) is a horizontal rectangular platform, which is positioned on the ground and used for placing a spare part container (120); A guide rail (110) is positioned on the ground near the carrier (100) or on the side wall of the carrier (100); The spare part container (120) is used for containing the spare parts of the dismounted power equipment, and the top surface of the spare part container (120) is flat and provided with a plurality of recesses for containing different spare parts; The sliding dismounting platform (200) is slidingly positioned on the guide rail (110) and slides on the top of the carrier (100); The top of the sliding dismounting platform (200) is detachably provided with a top clamp (210), the top or one side of the sliding dismounting platform (200) is provided with a carrier (220), and one side of the sliding dismounting platform (200) is fixedly provided with a tool carrier (250); The carrier (220) is a hard frame body, and the carrier (220) is provided with a camera assembly (230) for recording the dismounting process.
2. The power equipment assembly removal apparatus of claim 1, wherein: The spare part container (120) is a hard plate body, and the top surface of the spare part container (120) is provided with a plurality of recesses for containing the spare parts.
3. The power equipment assembly removal apparatus of claim 1, wherein: The spare part container (120) placed on the top surface of the carrier (100) is composed of a plurality of hard plate bodies, and the hard plate bodies with different sizes of recesses are selected and spliced to form the spare part container (120) according to the size and quantity of the spare parts of the dismounted equipment.
4. The power equipment assembly removal apparatus of claim 1, wherein: The material of the spare part container (120) is paper, which is pressed from paperboard.
5. The power equipment assembly dismounting device according to any one of claims 1 to 4, characterized in that: It further comprises a coating carrier (300) and a coating (301); The coating carrier (300) is arranged near one end of the carrier (100) and positioned on the ground, and the main structure is a horizontal reel positioned on the ground by a hard frame body; the coating (301) is a transparent strip-shaped film or a transparent plastic strip body, which is wound and positioned on the coating carrier (300); If the dismounting or assembly of the power equipment is temporarily suspended, a layer of coating (301) is coated and fixed on the top surface of the spare part container (120), and then a mark is made and stored.
6. The power equipment assembly removal apparatus of claim 5, wherein: It further comprises a base layer carrier (400), a base layer (401) and a heat shaping assembly; The spare part container (120) is made of metal; The base layer carrier (400) is arranged near one end of the carrier (100), and the main structure is a horizontal reel positioned on the ground by a hard frame body; The base layer (401) is a plastic strip body made of a thermoplastic material, which is wound and positioned on the coating carrier (300); At least one of the coating (301) and the base layer (401) is made of transparent material; The heat shaping assembly comprises a top cover box (510), a hot air pumping assembly (520) and a cover box displacement assembly (530); The top cover box (510) is a hard box body with an open bottom, which is horizontally arranged between the sliding dismounting platform (200) and the carrier (100); The bottom opening of the top cover box (510) is provided with a bottom pad (511); The main body of the hot air pumping assembly (520) is a combination of an air pump and a gas heating device, which is used for outputting heated gas and communicating with the internal space of the top cover box (510); The cover box displacement assembly (530) is controlled to drive the top cover box (510) to move up and down.
7. The power equipment assembly removal apparatus of claim 6, wherein: Since the container is formed by the base layer (401), the capacity is not limited by the area of the top surface of the support (100) and the capacity of the accessory container (120), and the support (100) does not need to be built larger; after the base layer (401) of the support (100) is filled with the formed container, the cover layer (301) can be covered and fixed, then pulled out of the container, and then a new container is formed; finally, a belt-shaped container combined by the base layer (401) and the cover layer (301) is formed.
8. The power equipment assembly removal apparatus of claim 6, wherein: It also includes a resistance combination assembly; The resistance combination assembly includes a resistance welding column (710) and a welding column carrier; The resistance welding column (710) is a transversely placed metal cylinder with a length greater than the width of the base layer (401), and the length direction is the same as the width direction of the base layer (401). A heating wire or heating sheet is built-in or on the outer surface and is controlled to heat; it is positioned on one side of the sliding disassembly table (200) through the welding column carrier and can move up and down under the driving of the welding column carrier; After covering the cover layer (301) on the base layer (401), some downward protrusions are formed above the recesses of the accessory container (120) on the cover layer (301) by blowing hot air using the hot shaping assembly, at this time, the base layer (401) and the cover layer (301) protrude tightly against the top surface of the accessory container (120); thereafter, the cover layer (301) is rolled one or more times on the base layer (401) using the heated resistance welding column (710), and the cover layer (301) and the base layer (401) are welded together by heating.
9. The power equipment assembly removal apparatus of claim 8, wherein: It also includes an expansion layer carrier (600) and an expansion layer (601); The expansion layer carrier (600) is arranged near one end of the support (100) and positioned on the ground, and the main structure is a transversely placed reel positioned on the ground by a hard frame body; the expansion layer (601) is a paper tape coated with adhesive on one side and wound and positioned on the expansion layer carrier (600); The cover layer (301) is a film; the base layer (401) is a transparent material; After the cover layer (301) and the base layer (401) are combined, the expansion layer (601) is used to cover another layer on the cover layer (301), which ensures firmness while allowing accessories to be easily removed and easier to mark.
10. A method of using a power equipment assembly removal apparatus, characterized by: The supporting power equipment combination assembly disassembly device as claimed in claim 1; the steps are: First, one or more accessory containers (120) are spliced on the support (100) using multiple hard plate bodies with recesses according to the power equipment to be disassembled; Place the power equipment to be disassembled on the sliding disassembly table (200) and fix it with the top clamp (210); Use the disassembly tool to gradually disassemble the power equipment to be disassembled, and directly place the smaller accessories removed into the same or different recesses of the accessory container (120); during the process, the relative position of the power equipment to be disassembled and the support (100) can be adjusted by sliding the sliding disassembly table (200) to facilitate efficient and convenient placement of the disassembled accessories; the disassembly process is recorded by the camera assembly (230) throughout the process. If the disassembly or assembly of the power equipment is suspended, the unpacking of the disassembled parts or larger accessories is directly performed, and the box and the accessory container (120) are temporarily placed after being labeled. The accessory container (120) can be placed on the ground or stacked together to save space.