Portable grounding device storage rack and storage method

By designing a portable grounding device storage rack, the problems of inconvenient carrying of the grounding device and damage to the grounding wire are solved, stable carrying and efficient storage are achieved, the service life of the device is extended, and working efficiency is improved.

CN120621873APending Publication Date: 2025-09-12STATE GRID HENAN ELECTRIC POWER CO LUSHI COUNTY POWER SUPPLY CO
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Patent Information

Application Number
CN202511032648.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-25
Publication Date
2025-09-12

AI Technical Summary

Technical Problem

Existing grounding devices lack effective fixing and supporting structures, which makes them inconvenient to carry and the grounding wires are easily damaged, affecting their service life and electrical performance.

Method used

A portable grounding device storage rack is designed, which includes a main frame, moving wheels, a storage cylinder, a partition and a winding rack. The device can be stably carried and flexibly stored through a steering component, a lifting component and a clamping component.

Benefits of technology

It provides a stable support structure, reduces labor intensity, avoids entanglement and damage of the grounding wire, and improves service life and operating efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a portable grounding device storage rack and a storage method. The portable grounding device storage rack comprises a main body rack, a belt seat is arranged on the upper portion of the front side of the main body rack, a connecting belt is fixedly arranged on the outer side of the belt seat, a lock catch is arranged at the lower end of the connecting belt, a belt ring is arranged on the lower portion of the front side of the main body rack, and the lock catch is matched with the belt ring in a clamped mode. Moving wheels are arranged between the belt seat and the belt ring, a triangular frame is fixedly arranged on the rear side of the main body frame, bearing discs are symmetrically arranged on the side, away from the main body frame, of the triangular frame, and a storage cylinder is rotationally arranged between the two bearing discs; the device provides an independent and regular storage space for different grounding devices, can play a good role in supporting and fixing the stored insulating operating rod, and effectively avoids the problems of mutual winding and knotting of grounding wires.
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Description

Technical Field

[0001] The present invention belongs to the technical field of power storage equipment, and in particular relates to a portable grounding device storage rack and a storage method. Background Art

[0002] In power construction, equipment maintenance, and other operations, grounding devices are critical tools for ensuring worker safety. By reliably connecting equipment to the ground, they release residual electrical charge, prevent unexpected electrical currents, and ultimately prevent electric shock. Commonly used grounding devices consist primarily of two key components: an insulated operating rod and a grounding lead, resulting in a relatively loose overall structure.

[0003] Currently, due to the lack of effective fixing and support structures, insulated operating rods require additional packaging bags or tool boxes for storage, increasing the burden and inconvenience of carrying them. Furthermore, collisions and friction between components during movement can also cause damage. Grounding leads are often stored haphazardly, leading to entanglement and knotting. Over-tightening or repeated bending can also damage the grounding lead and conductor, reducing its service life and electrical performance, compromising grounding effectiveness and threatening operational safety. Summary of the Invention

[0004] The purpose of the present invention is to overcome the deficiencies of the prior art and to provide a portable grounding device storage rack and storage method to solve the problems raised in the background art.

[0005] The objective of the present invention is achieved by providing a portable grounding device storage rack, comprising a main frame, a belt seat provided on the upper front portion of the main frame, a connecting belt fixedly provided on the outer side of the belt seat, a locking buckle provided at the lower end of the connecting belt, a belt ring provided on the lower front portion of the main frame, the locking buckle engaging with the belt ring, a movable wheel provided between the belt seat and the belt ring, a tripod fixedly provided on the rear side of the main frame, bearing plates symmetrically provided on the side of the tripod away from the main frame, and a storage cylinder rotatably provided between the two bearing plates. A grounding rod can be easily and quickly placed into the storage cylinder, saving time and effort and making it easy to move and carry.

[0006] A steering assembly is provided between the moving wheel and the main frame. The steering assembly includes a steering slot, a fixed shaft fixedly disposed within the steering slot, and a positioning hole disposed on the side of the fixed shaft. The moving wheel is movably connected to the fixed shaft via a rotating sleeve, and a positioning pin is retractably disposed on the outer side of the rotating sleeve. The direction of the moving wheel can be changed by the steering assembly.

[0007] The storage cylinder includes a cover plate and a support plate, with compartments evenly spaced between them. The lower sides of the compartments are connected to the support plate via hinges. An outer curved plate is located on the outside of the compartments, an inner curved plate is located on the inside of the compartments, and a base plate is movably located at the bottom of the compartments. The compartments allow the various grounding devices to be placed separately to avoid confusion and collision.

[0008] A lifting assembly is provided between the compartment and the support plate. The lifting assembly includes a hinge fixed to the bottom of the compartment. A push rod is hingedly provided within the hinge. A push wheel is provided at the end of the push rod near the inner arc plate, and the push wheel is in contact with the bottom plate. A link is provided at the end of the push rod away from the push wheel. A lifting spring is provided between the link and the support plate. The lifting assembly can push the bottom plate upward.

[0009] The bottom plate is clamped with the outer arc plate and the inner arc plate through a translation block.

[0010] A clamping assembly is provided between the partition and the cover plate. The clamping assembly comprises a cylinder, a vertical rod is movably provided inside the cylinder, a bumper is provided at the bottom end of the vertical rod, a clamping spring is provided between the bumper and the cylinder, and a pull ring is provided at the top end of the vertical rod. The clamping assembly facilitates the positioning of the partition.

[0011] The side of the collision block facing the partition is in an arc shape.

[0012] A wire outlet hole is provided on the upper side of the outer arc plate, and a winding rack is provided outside the compartment. The winding rack includes a fixed wire arm and a movable wire arm. A limiting slot is provided on the lower side of the movable wire arm, and an inner hole is provided within the limiting slot. A pin head is provided inside the movable wire arm, and the pin head cooperates with the inner hole. A pin head spring is provided between the pin heads, and a button is provided on the outer side of the pin head. The grounding lead can be wound and placed through the winding mechanism.

[0013] The outer ends of the fixed wire arm and the movable wire arm are both provided with anti-slip plates, the interior of the anti-slip plates is provided with wire clamping holes, and the interior of the wire clamping holes is provided with spring pieces.

[0014] A method for storing a portable grounding device storage rack comprises the following steps: Step 1: Before use, check whether all parts of the main frame are intact, check whether the moving wheels, storage cylinders, partitions, winding racks and other structures can be used normally, ensure that they can work normally, and transport the grounding device to the work site through the main frame; Step 2: After using the grounding device, it needs to be stored inside the main frame, the limit of the clamping assembly is released, the compartment is rotated around the hinge axis to open, the insulating operating rod is placed vertically inside the compartment, and the compartment is closed and locked using the clamping assembly; Step 3: Lead the grounding lead through the outlet hole on the side of the outer arc plate and wind it between the movable wire arm and the fixed wire arm of the winding frame. After winding, fix the end of the grounding lead to the anti-drop plate; Step 4: Select the main frame movement method according to the actual situation. When the moving wheels are adjusted to a vertical direction with the main frame through the steering assembly, the main frame is driven to move by the moving wheels; when the moving wheels are adjusted to a parallel direction with the main frame through the steering assembly, the main frame is carried and moved by the connecting belt.

[0015] The beneficial effects of the present invention are as follows: the tripod fixedly arranged on the rear side of the main frame provides a stable support structure for the entire device, which can effectively disperse the weight of the main frame and the grounding device accommodated therein, prevent the main frame from tipping over during use, and ensure the safety of the operators.

[0016] The mobile wheels and the steering assembly installed between the main frame and the main frame allow the main frame to be flexibly adjusted according to actual needs. On flat roads, the mobile wheels can be used to pull the main frame, effectively reducing the workload of operators. When the mobile wheels are not available, the main frame can be carried on the back using the connecting straps, providing flexible movement and wide adaptability.

[0017] The evenly spaced compartments within the storage cylinder provide independent and organized storage for different grounding devices. They effectively support and secure the insulated operating rods and prevent tangling and knotting of grounding wires. The compartments allow grounding wires and accessories of different specifications and types to be stored separately, making it easier for operators to quickly and accurately locate the required components on the job site, significantly reducing search time and improving work efficiency.

[0018] The lifting assembly coordinates with the compartment opening and closing movement, pushing the base plate up and down to facilitate access to the components inside the divider. The snap assembly facilitates locking and unlocking the compartment to prevent accidental opening.

[0019] The winding rack, located outside the compartment, features a fixed and movable arm, making winding operations more flexible and convenient. The movable arm can be adjusted in distance from the fixed arm, increasing winding speed while also reducing retrieval time.

[0020] The various components of the device adopt a modular design. When a component is damaged, it can be easily replaced without scrapping the entire device, which reduces the cost of use and extends the overall service life of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is an overall structural diagram of a portable grounding device storage rack of the present invention.

[0022] Figure 2This is a structural diagram of a steering assembly of a portable grounding device storage rack of the present invention.

[0023] Figure 3 This is a diagram showing the overall structure of a storage cylinder of a portable grounding device storage rack according to the present invention.

[0024] Figure 4 This is a structural diagram of a portable grounding device storage rack of the present invention in an open state.

[0025] Figure 5 The present invention is a side view of a portable grounding device storage rack in a closed state.

[0026] Figure 6 The present invention is a side view of a portable grounding device storage rack with its compartments opened.

[0027] Figure 7 A portable grounding device storage rack according to the present invention Figure 6 The enlarged cross-sectional view of part A in FIG.

[0028] Figure 8 The present invention is a cross-sectional view of a snap-on assembly of a portable grounding device storage rack.

[0029] Figure 9 This is a structural diagram of the movable wire arm of a portable grounding device storage rack of the present invention.

[0030] Figure 10 This is a structural diagram of the limiting grooves of a portable grounding device storage rack of the present invention.

[0031] Figure 11 The figure is a side view of an anti-drop plate of a portable grounding device storage rack according to the present invention.

[0032] In the figure: 1, main frame 2, belt seat 3, connecting belt 4, belt ring 5, lock buckle 6, mobile wheel 7, tripod 8, bearing plate 9, storage cylinder 10, steering groove 11, fixed axis 12, rotating sleeve 13, positioning hole 14, positioning pin 15, cover plate 16, support plate 17, partition 18, outer arc plate 19, inner arc plate 20, bottom plate 21, hinge frame 22, push rod 23, push wheel 24, link 25, lifting spring 26, translation block 27, cylinder 28, vertical rod 29, collision block 30, clamping spring 31, pull ring 32, winding frame 33, wire outlet hole 34, fixed wire arm 35, movable wire arm 36, limiting groove 37, inner hole 38, pin head 39, pin head spring 40, button 41, anti-off plate 42, wire clamping hole 43, spring piece. DETAILED DESCRIPTION

[0033] The present invention will be further described below with reference to the accompanying drawings. Example 1

[0034] like Figure 1-2 As shown, a portable grounding device storage rack includes a main frame 1, a belt seat 2 is provided on the upper front side of the main frame 1, a connecting belt 3 is fixedly provided on the outside of the belt seat 2, a locking buckle 5 is provided at the lower end of the connecting belt 3, a belt ring 4 is provided on the lower front side of the main frame 1, the locking buckle 5 is snap-fitted with the belt ring 4, a moving wheel 6 is provided between the belt seat 2 and the belt ring 4, a tripod 7 is fixedly provided on the rear side of the main frame 1, and bearing disks 8 are symmetrically provided on the side of the tripod 7 away from the main frame 1, and a storage cylinder 9 is rotatably provided between the two bearing disks 8.

[0035] For better results, a steering assembly is provided between the mobile wheel 6 and the main frame 1. The steering assembly includes a steering groove 10. A fixed shaft 11 is fixedly provided inside the steering groove 10. A positioning hole 13 is provided on the side of the fixed shaft 11. The mobile wheel 6 is movably connected to the fixed shaft 11 through a rotating sleeve 12. A positioning pin 14 is telescopically provided on the outside of the rotating sleeve 12. The mobile wheel 6 can rotate outside the fixed shaft 11 through the rotating sleeve 12 to adjust its direction. The positioning pin 14 is inserted into the positioning hole 13 to lock the rotating sleeve 12.

[0036] When the present invention is in use, the grounding device is placed inside the storage tube 9, and the main frame 1 can be moved by the moving wheel 6 and the connecting belt 3. Specifically: when moving by the moving wheel 6, the main frame 1 needs to be placed flat on the ground, first pull out the positioning pin 14 on the outside of the rotating sleeve 12, so that it is disengaged from the positioning hole 13 on the side of the fixed axis 11, and the moving wheel 6 can now rotate freely on the fixed axis 11 through the rotating sleeve 12. Adjust the moving wheel 6 to a vertical direction with the main frame 1. At this time, the main frame 1 is in contact with the ground through the moving wheel 6, release the connection between the lock buckle 5 and the belt ring 4, and the upper end of the connecting belt 3 is still fixedly connected to the belt seat 2. The main frame 1 can be pulled to move by the connecting belt 3, which is suitable for flat roads and saves time and effort. When carrying the main frame 1 on the back of the connecting belt 3, the main frame 1 needs to be placed vertically on the ground. Similarly, adjust the moving wheel 6 to a direction parallel to the main frame 1, and the lower end of the connecting belt 3 is fixed to the belt ring 4 through the lock buckle 5. At this time, the connecting belt 3 acts like a shoulder strap, and the main frame 1 can be carried on the back through the connecting belt 3, which is suitable for rugged mountain roads, etc. On the other hand, the grounding device is placed inside the storage tube 9 to avoid damage and has a good protective effect. Example 2

[0037] like Figure 1-8As shown, a portable grounding device storage rack includes a main frame 1, a belt seat 2 is provided on the upper front side of the main frame 1, a connecting belt 3 is fixedly provided on the outside of the belt seat 2, a locking buckle 5 is provided at the lower end of the connecting belt 3, a belt ring 4 is provided on the lower front side of the main frame 1, the locking buckle 5 is snap-fitted with the belt ring 4, a moving wheel 6 is provided between the belt seat 2 and the belt ring 4, a tripod 7 is fixedly provided on the rear side of the main frame 1, and bearing disks 8 are symmetrically provided on the side of the tripod 7 away from the main frame 1, and a storage cylinder 9 is rotatably provided between the two bearing disks 8.

[0038] For better results, a steering assembly is provided between the mobile wheel 6 and the main frame 1. The steering assembly includes a steering groove 10. A fixed shaft 11 is fixedly provided inside the steering groove 10. A positioning hole 13 is provided on the side of the fixed shaft 11. The mobile wheel 6 is movably connected to the fixed shaft 11 through a rotating sleeve 12. A positioning pin 14 is telescopically provided on the outside of the rotating sleeve 12. The mobile wheel 6 can rotate outside the fixed shaft 11 through the rotating sleeve 12 to adjust its direction. The positioning pin 14 is inserted into the positioning hole 13 to lock the rotating sleeve 12.

[0039] For better performance, the storage cylinder 9 includes a cover plate 15 and a support plate 16. A partition 17 is evenly spaced between the cover plate 15 and the support plate 16. The lower side of the partition 17 is connected to the support plate 16 via a hinge. An outer arc plate 18 is provided on the outside of the partition 17, and an inner arc plate 19 is provided on the inside of the partition 17. A base plate 20 is movably provided at the bottom of the partition 17. Furthermore, a fixed clip can be provided inside the partition 17 to provide good support and fixation for the stored insulating operating rod.

[0040] For better effect, a lifting assembly is provided between the partition 17 and the support plate 16, and the lifting assembly includes a hinge 21, and the hinge 21 is fixedly provided at the bottom of the partition 17. A push rod 22 is hingedly provided inside the hinge 21, and a push wheel 23 is provided at one end of the push rod 22 close to the inner arc plate 19. The push wheel 23 is in contact with the bottom plate 20, and a link 24 is provided at the end of the push rod 22 away from the push wheel 23. A lifting spring 25 is provided between the link 24 and the support plate 16.

[0041] For better effect, the bottom plate 20 is clamped with the outer arc plate 18 and the inner arc plate 19 through the translation block 26. The bottom plate 20 moves along the outer arc plate 18 and the inner arc plate 19 through the translation block 26.

[0042] For better effect, a snap-on assembly is provided between the partition 17 and the cover plate 15, and the snap-on assembly includes a cylinder 27, a vertical rod 28 is movably provided inside the cylinder 27, a collision block 29 is provided at the bottom end of the vertical rod 28, a snap-on spring 30 is provided between the collision block 29 and the cylinder 27, and a pull ring 31 is provided at the upper end of the vertical rod 27.

[0043] For better effect, the side of the collision block 29 facing the compartment 17 is in an arc shape. When the compartment 17 is close to the storage cylinder, the arc collision block 29 is squeezed by the inner arc plate 19, which facilitates the passage of the inner arc plate 19 and thus limits the compartment 17.

[0044] In another embodiment, the structure of the storage cylinder 9 is preferably used as follows: when opening the compartment 17 through the snap-fit ​​assembly, hold the pull ring 31 by hand and pull the vertical rod 28 upward. At this time, the impact block overcomes the elastic force of the snap-fit ​​spring 30 and moves upward. When the impact block 29 is completely disengaged from the snap-fit ​​position with the inner arc plate 18, the compartment 17 can be opened around the hinge axis. After the insulating operating rod is placed inside the compartment 17, the compartment 17 is closed. At this time, when the inner arc plate 19 approaches the impact block 29, due to the arc-shaped structure on one side of the impact block 29, the inner arc plate 19 can directly squeeze the impact block 29 until it passes the position of the impact block 29. At this time, the impact block 29 has a locking effect on the compartment 17, preventing the compartment 17 from being accidentally opened. On the other hand, in order to facilitate the access to the insulating operating rod, a lifting assembly is provided at the bottom of the compartment 17. When compartment 17 is opened about the hinge axis, it drives hinge frame 21 to rotate about the hinge axis. Under the action of lifting spring 25, lifting spring 25 drives push rod 22 to rotate about hinge frame 21 via link 24. Push rod 22 pushes base plate 20 upward via push wheel 23, which in turn drives the insulating operating rod upward for easy access. When compartment 17 is closed after storing the insulating operating rod, push rod 22 drives push wheel 23 downward, and base plate 20 simultaneously moves downward to leave enough space for the insulating operating rod. Example 3

[0045] like Figure 1-11 As shown, a portable grounding device storage rack includes a main frame 1, a belt seat 2 is provided on the upper front side of the main frame 1, a connecting belt 3 is fixedly provided on the outside of the belt seat 2, a locking buckle 5 is provided at the lower end of the connecting belt 3, a belt ring 4 is provided on the lower front side of the main frame 1, the locking buckle 5 is snap-fitted with the belt ring 4, a moving wheel 6 is provided between the belt seat 2 and the belt ring 4, a tripod 7 is fixedly provided on the rear side of the main frame 1, and bearing disks 8 are symmetrically provided on the side of the tripod 7 away from the main frame 1, and a storage cylinder 9 is rotatably provided between the two bearing disks 8.

[0046] For better results, a steering assembly is provided between the mobile wheel 6 and the main frame 1. The steering assembly includes a steering groove 10. A fixed shaft 11 is fixedly provided inside the steering groove 10. A positioning hole 13 is provided on the side of the fixed shaft 11. The mobile wheel 6 is movably connected to the fixed shaft 11 through a rotating sleeve 12. A positioning pin 14 is telescopically provided on the outside of the rotating sleeve 12. The mobile wheel 6 can rotate outside the fixed shaft 11 through the rotating sleeve 12 to adjust its direction. The positioning pin 14 is inserted into the positioning hole 13 to lock the rotating sleeve 12.

[0047] For better performance, the storage cylinder 9 includes a cover plate 15 and a support plate 16. A partition 17 is evenly spaced between the cover plate 15 and the support plate 16. The lower side of the partition 17 is connected to the support plate 16 via a hinge. An outer arc plate 18 is provided on the outside of the partition 17, and an inner arc plate 19 is provided on the inside of the partition 17. A base plate 20 is movably provided at the bottom of the partition 17. Furthermore, a fixed clip can be provided inside the partition 17 to provide good support and fixation for the stored insulating operating rod.

[0048] For better effect, a lifting assembly is provided between the partition 17 and the support plate 16, and the lifting assembly includes a hinge 21, and the hinge 21 is fixedly provided at the bottom of the partition 17. A push rod 22 is hingedly provided inside the hinge 21, and a push wheel 23 is provided at one end of the push rod 22 close to the inner arc plate 19. The push wheel 23 is in contact with the bottom plate 20, and a link 24 is provided at the end of the push rod 22 away from the push wheel 23. A lifting spring 25 is provided between the link 24 and the support plate 16.

[0049] For better effect, the bottom plate 20 is clamped with the outer arc plate 18 and the inner arc plate 19 through the translation block 26. The bottom plate 20 moves along the outer arc plate 18 and the inner arc plate 19 through the translation block 26.

[0050] For better effect, a snap-on assembly is provided between the partition 17 and the cover plate 15, and the snap-on assembly includes a cylinder 27, a vertical rod 28 is movably provided inside the cylinder 27, a collision block 29 is provided at the bottom end of the vertical rod 28, a snap-on spring 30 is provided between the collision block 29 and the cylinder 27, and a pull ring 31 is provided at the upper end of the vertical rod 27.

[0051] For better effect, the side of the collision block 29 facing the compartment 17 is in an arc shape. When the compartment 17 is close to the storage cylinder, the arc collision block 29 is squeezed by the inner arc plate 19, which facilitates the passage of the inner arc plate 19 and thus limits the compartment 17.

[0052] For better effect, a wire outlet hole 33 is provided on the upper side of the outer arc plate 18, and a winding rack 32 is provided outside the partition 17. The winding rack 32 includes a fixed wire arm 34 and a movable wire arm 35. A limiting groove 36 is provided on the lower side of the movable wire arm 35, and an inner hole 37 is provided inside the limiting groove 36. A pin head 38 is provided inside the movable wire arm 35, and the pin head 38 cooperates with the inner hole 37. A pin head spring 39 is provided between the pin heads 38, and a button 40 is provided on the outside of the pin head 38.

[0053] For better results, the outer ends of the fixed wire arm 34 and the movable wire arm 35 are each provided with an anti-drop plate 41, which has a wire-holding hole 42 inside, and a spring 43 inside the wire-holding hole 42. The design of the wire-holding hole 42 and the spring 43 inside the anti-drop plate 41 can effectively prevent the wound ground lead from falling off during movement or use, ensuring that the ground lead can be quickly and stably removed and placed.

[0054] A method for storing a portable grounding device storage rack comprises the following steps: Step 1: Before use, check whether all parts of the main frame 1 are intact, check whether the moving wheels 6, storage cylinder 9, partition 17, winding rack 32 and other structures can be used normally, ensure that they can work normally, and transport the grounding device to the work site through the main frame 1; Step 2: After the grounding device is used, it needs to be stored inside the main frame 1, the limit of the clamping assembly is released, the compartment 17 is rotated around the hinge axis to open, the insulating operating rod is placed vertically inside the compartment 17, and the compartment 17 is closed and locked by the clamping assembly; Step 3: Lead the grounding lead through the outlet hole 33 on the upper side of the outer arc plate 18 and wind it between the movable wire arm 35 and the fixed wire arm 34 of the winding frame 32. After winding, fix the end of the grounding lead to the anti-drop plate 41; Step 4: Select the movement mode of the main frame 1 according to the actual situation. When the moving wheel 6 is adjusted to a vertical direction with the main frame 1 through the steering assembly, the main frame 1 is driven to move by the moving wheel 6; when the moving wheel 6 is adjusted to a parallel direction with the main frame 1 through the steering assembly, the main frame 1 is carried and moved by the connecting belt 3.

[0055] In another embodiment, the structure of the winding rack 32 is preferably used as follows: when the grounding device is stored, the grounding lead is led out from the inside of the compartment 17 through the wire outlet hole 33, and the movable wire arm 35 is clamped to the inner hole 37 through the pin head 38. At this time, the position of the movable wire arm 35 is fixed. The grounding lead is wound between the movable wire arm 35 and the fixed wire arm 34 to keep the grounding leads neatly arranged and tight. After winding, the end of the grounding lead is passed through the wire clamping hole 42 inside the anti-slip plate 41. The spring 43 presses the grounding lead under its own elastic force to prevent it from loosening. When the grounding device is taken out, press the button 40 on the outside of the movable wire arm 35. The pin head 38 retracts inward and disengages from the inner hole 37 under the action of the pin head spring 39. The movable wire arm 35 can slide along the limit groove 36 toward the fixed wire arm 34. Since the distance between the movable wire arm 35 and the fixed wire arm 34 is shortened, the grounding lead wound on the outside of the winding frame 32 becomes loose, and the grounding lead can be directly removed from the outside of the winding frame 32 without having to take it out one circle at a time, which greatly saves time.

Claims

1. A portable grounding device storage rack, comprising a main frame, characterized in that: A belt seat is provided on the upper front part of the main frame, a connecting belt is fixedly provided on the outside of the belt seat, a locking buckle is provided at the lower end of the connecting belt, a belt ring is provided on the lower front part of the main frame, the locking buckle is snap-fitted with the belt ring, a movable wheel is provided between the belt seat and the belt ring, a tripod is fixedly provided on the rear side of the main frame, bearing disks are symmetrically provided on the side of the tripod away from the main frame, and a storage cylinder is rotatably provided between the two bearing disks.

2. The portable grounding device storage rack according to claim 1, characterized in that: A steering assembly is provided between the moving wheel and the main frame, and the steering assembly includes a steering groove, a fixed shaft is fixedly provided inside the steering groove, a positioning hole is provided on the side of the fixed shaft, the moving wheel is movably connected to the fixed shaft through a rotating sleeve, and a positioning pin is telescopically provided on the outer side of the rotating sleeve.

3. The portable grounding device storage rack according to claim 1, characterized in that: The storage cylinder includes a cover plate and a support plate, and partitions are evenly arranged between the cover plate and the support plate. The lower side of the partition is connected to the support plate through a hinge shaft. An outer arc plate is arranged on the outer side of the partition, an inner arc plate is arranged on the inner side of the partition, and a bottom plate is movably arranged on the bottom of the partition.

4. A portable grounding device storage rack according to claim 3, characterized in that: A lifting assembly is provided between the partition and the support plate, and the lifting assembly includes a hinge frame, which is fixedly provided at the bottom of the partition. A push rod is hingedly provided inside the hinge frame, and a push wheel is provided at one end of the push rod close to the inner arc plate. The push wheel is in contact with the bottom plate, and a link is provided at the end of the push rod away from the push wheel. A lifting spring is provided between the link and the support plate.

5. The portable grounding device storage rack according to claim 4, characterized in that: The bottom plate is clamped with the outer arc plate and the inner arc plate through a translation block.

6. The portable grounding device storage rack according to claim 5, characterized in that: A clamping assembly is provided between the partition and the cover plate, and the clamping assembly includes a cylinder, a vertical rod is movably provided inside the cylinder, a collision block is provided at the bottom end of the vertical rod, a clamping spring is provided between the collision block and the cylinder, and a pull ring is provided at the upper end of the vertical rod.

7. The portable grounding device storage rack according to claim 6, characterized in that: The side of the collision block facing the partition is in an arc shape.

8. The portable grounding device storage rack according to claim 7, characterized in that: A wire outlet hole is provided on the upper side of the outer arc plate, a winding rack is provided outside the partition, the winding rack includes a fixed wire arm and a movable wire arm, a limiting groove is provided on the lower side of the movable wire arm, an inner hole is provided inside the limiting groove, a pin head is provided inside the movable wire arm, the pin head and the inner hole cooperate with each other, a pin head spring is provided between the pin heads, and a button is provided on the outside of the pin head.

9. The portable grounding device storage rack according to claim 8, characterized in that: The outer ends of the fixed wire arm and the movable wire arm are both provided with anti-slip plates, the interior of the anti-slip plates is provided with wire clamping holes, and the interior of the wire clamping holes is provided with spring pieces.

10. A method for storing a portable grounding device storage rack according to any one of claims 1 to 9, characterized in that: It includes the following steps: Step 1: Before use, check whether all parts of the main frame are intact, check whether the moving wheels, storage cylinders, partitions, winding racks and other structures can be used normally, ensure that they can work normally, and transport the grounding device to the work site through the main frame; Step 2: After using the grounding device, it needs to be stored inside the main frame, the limit of the clamping assembly is released, the compartment is rotated around the hinge axis to open, the insulating operating rod is placed vertically inside the compartment, and the compartment is closed and locked using the clamping assembly; Step 3: Lead the grounding lead through the outlet hole on the side of the outer arc plate and wind it between the movable wire arm and the fixed wire arm of the winding frame. After winding, fix the end of the grounding lead to the anti-drop plate; Step 4: Select the main frame movement method according to the actual situation. When the moving wheels are adjusted to a vertical direction with the main frame through the steering assembly, the main frame is driven to move by the moving wheels; when the moving wheels are adjusted to a parallel direction with the main frame through the steering assembly, the main frame is carried and moved by the connecting belt.