Combined tool basket
The modular tool basket design solves the management difficulties and hoisting inconveniences caused by the random stacking of tools and accessories, enabling modular storage and efficient hoisting of tools, thus improving transportation efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XIAN SHAN CHUAN PETROLEUM TECH CO LTD
- Filing Date
- 2025-06-10
- Publication Date
- 2026-05-08
AI Technical Summary
Traditional tool and accessory management suffers from problems such as difficulty in finding items due to random stacking, inconvenience in transportation and hoisting, low efficiency, and safety hazards.
A modular tool basket was designed, comprising a support frame, a storage basket, and a lifting structure. The support frame is used to stably support the tools, the storage basket is used for centralized storage, and the lifting structure is used to connect with the lifting mechanism, realizing modular storage and classified management, and simplifying hoisting preparation.
It improved the efficiency and safety of tool management, reduced the number of lifting operations, lowered the difficulty and safety risks of operation, and improved the efficiency of transportation and lifting.
Smart Images

Figure CN224209920U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of warehousing machinery and equipment technology, and more specifically, to a combined tool basket. Background Technology
[0002] In traditional scenarios involving the management and use of bulky tools and accessories, numerous challenging problems arise. The lack of scientific planning in warehouse layout leads to tools and accessories being haphazardly piled up, requiring staff to expend significant time and energy searching for them during distribution, resulting in immense workload. Inventory work is also fraught with difficulties and prone to errors due to the absence of a clear and organized management system. Regarding transportation and hoisting, the lack of suitable tools and appropriate auxiliary structures makes overall hoisting operations extremely inconvenient. Each transportation and hoisting operation not only involves lengthy preparation time but also high operational difficulty, numerous repetitions, low efficiency, and potential safety hazards.
[0003] Therefore, it is necessary to provide an apparatus to solve the problems existing in the prior art. Utility Model Content
[0004] The main purpose of this utility model is to provide a modular tool basket to solve the problems in the prior art where tools and accessories are randomly piled up, requiring workers to spend a lot of time and energy searching for them during distribution, and in terms of transportation and hoisting, the lack of suitable tools and reasonable auxiliary structures makes the overall hoisting operation extremely inconvenient. Each transportation and hoisting operation not only requires a long preparation time, but also involves high difficulty and many times, resulting in low efficiency and potential safety hazards.
[0005] To achieve the above objectives, this utility model provides a combined tool basket, comprising: a support frame supporting a straight pipe and a high-pressure flexible elbow; a storage basket for holding at least one of the support frames; and lifting structures symmetrically arranged on the storage basket, wherein multiple lifting structures are connected by a lifting mechanism's lifting hook for hoisting and transporting the storage basket; wherein the support frame can be stably placed in the storage basket and removed from the storage basket.
[0006] Optionally, the support frame includes: a first cable tray and a second cable tray, both of which are used to support the straight pipe; and a third cable tray, which is used to support the high-pressure movable elbow.
[0007] Optionally, the first cable tray includes: four uprights, each upright having a base at its bottom and an anti-detachment post at its top, the size of which matches the size of an opening in the base; two vertical beams, the ends of which are perpendicularly connected to each upright; and multiple horizontal beams, which are parallel to each other and perpendicular to the vertical beams.
[0008] Among them, the ends of the two horizontal beams located on the side are respectively connected to the four vertical columns, and the horizontal beam located in the middle is slidably connected to the two vertical beams through the ram provided at its end, so as to match the straight pipes of different lengths.
[0009] Optionally, the first cable tray further includes: a plurality of first lifting lugs symmetrically arranged on the two vertical beams; and a plurality of handles, each of the handles being vertically arranged on one of the columns and extending away from the vertical beams along the length of the vertical beams.
[0010] Optionally, the second cable tray includes: a first square frame, with a circular sleeve at each of the four corners of the first square frame; two rows of sleeve plates, symmetrically arranged, with the ends of multiple sleeve plates in each row vertically movable and fitted onto two sleeves on the same side of the square frame; multiple sleeve plates in each row are vertically distributed; arc-shaped grooves are formed on the upper and lower sides of multiple sleeve plates in each row, and two corresponding arc-shaped grooves in the two rows of sleeve plates are used to support the two ends of a straight pipe; and a second lifting lug, which is arranged on the square frame and used for the locking connection of the lifting device of the lifting mechanism to lift and transport the second cable tray.
[0011] Optionally, the second cable tray further includes: a clamping structure, including a handle at the top and a threaded rod at the bottom, and a pressure plate located at the top of the threaded rod; the external thread of the threaded rod engages with the internal thread at the top of the circular sleeve;
[0012] In each column of sleeve plates, the top surface of the uppermost sleeve plate and the bottom surface of the lowermost sleeve plate are flat plates. When the pressing structure is rotated downward under force, the bottom surface of the pressure plate presses against the top surface of the uppermost sleeve plate.
[0013] Optionally, the third cable tray includes: a second square frame; four support columns, which are vertically arranged at the four corners of the second square frame; two support beams, which are parallel, with both ends of each support beam located on the two support columns on the same side as the end face; multiple support beams, which are horizontally arranged and parallel, and the support beams are channel steel pipes with their openings facing upwards; along the length of each support beam, two vertical first side plates of each support beam are provided with symmetrical slots, which are used to hold the high-pressure movable elbow;
[0014] When the high-pressure movable elbow is placed on the supporting beam, the plane at the bottom of the high-pressure movable elbow is higher than the top surface of the square frame.
[0015] Optionally, the third cable tray further includes: multiple pins, each pin being disposed at the top of each support column, and the bottom of the second square frame having pin holes that match the size of the pins; multiple sets of guide plates, each set of guide plates being disposed at the top of one support column; each guide plate corresponding to one pin; the bottom end of the guide plate being connected to the top surface of the support column, the top end of the guide plate being inclined outwards towards the second square frame, and a gap existing between the bottom end of the guide plate and the pin.
[0016] Optionally, the storage basket includes: a third-dimensional frame with an opening at the top and protective netting around the sides and bottom; multiple partitions movably disposed within the third-dimensional frame to divide the frame into multiple storage areas, each storage area for placing the support frame; and the multiple partitions distributed along the length of the third-dimensional frame.
[0017] Optionally, the lifting structure includes: a plurality of fourth lifting lugs, which are symmetrically arranged on two opposite second side plates of the third triangular frame.
[0018] This utility model discloses a combined tool basket, comprising: a support frame supporting straight pipes and high-pressure flexible elbows; a storage basket for holding cable trays; and symmetrically arranged lifting structures on the storage basket, with multiple lifting structures used for locking connections with the lifting mechanism's lifting attachments to lift and transport the storage basket. The cable trays can be stably placed in and removed from the storage basket. Thus, the support frame stably supports straight pipes and high-pressure flexible elbows, while the storage basket enables modular storage and categorized management of the pipe fittings. The lifting structures allow the storage basket to be adapted to the lifting mechanism without requiring additional complex auxiliary structures. Each time transport or lifting is required, simply connecting the lifting attachments of the lifting mechanism to the locking connections of the lifting structures completes the lifting preparation, significantly reducing preparation time. Because the storage basket centrally holds the stored pipe fittings, it reduces the number of multiple, dispersed lifting operations, significantly lowers operational difficulty, improves the efficiency of traditional transport and lifting, and reduces safety hazards. Attached Figure Description
[0019] The accompanying drawings, which form part of this application, are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an undue limitation of the present invention. In the drawings:
[0020] Figure 1 This is a side view of a first cable tray according to an embodiment of the present utility model;
[0021] Figure 2 This is a top view of the first cable tray according to an embodiment of the present utility model;
[0022] Figure 3 This invention provides a first cable tray stacking diagram according to an embodiment of the present invention;
[0023] Figure 4 This is a schematic diagram of the second cable tray according to an embodiment of the present utility model;
[0024] Figure 5 This is a schematic diagram of the third cable tray according to an embodiment of the present utility model;
[0025] Figure 6 This is a schematic diagram of the placement of a high-pressure movable elbow in the third cable tray according to an embodiment of the present utility model;
[0026] Figure 7 This is a side view of the storage basket provided according to an embodiment of the present utility model;
[0027] Figure 8 This is a top view of the storage basket provided according to an embodiment of the present utility model.
[0028] Figure label:
[0029] 10. Support frame; 11. First cable tray; 111. Column; 112. Vertical beam; 113. Horizontal beam; 114. Anti-detachment column; 115. Slide block; 116. Anti-collision block; 117. First lifting lug; 118. Handle; 12. Second cable tray; 121. First square frame; 122. Sleeve plate; 123. Second lifting lug; 124. Clamping structure; 1241. Handle; 1242. Pressure plate; 125. Round 13. Third cable tray; 131. Second square frame; 132. Support column; 133. Support beam; 134. Support beam; 135. Reinforcing column; 136. Pin; 137. Guide plate; 138. Third lifting lug; 20. Storage basket; 21. Third square frame; 22. Partition; 23. Protective net; 30. Lifting structure; 31. Fourth lifting lug; 40. Straight pipe; 50. High-pressure flexible elbow. Detailed Implementation
[0030] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0031] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 and Figure 8 As shown, a modular tool basket includes:
[0032] Support frame 10, which supports straight pipe 40 and high-pressure movable elbow 50;
[0033] A storage basket 20 is used to hold at least one of the support brackets 10;
[0034] The lifting structure 30 is symmetrically arranged on the storage basket 20. Multiple lifting structures 30 are used for the lifting device locking connection of the lifting mechanism to lift and transport the storage basket 20.
[0035] The support frame 10 can be stably placed in the storage basket 20 and removed from the storage basket 20.
[0036] Specifically, the support frame 10 is used to directly support the long straight pipe 40, the straight pipe 40, and the high-pressure flexible elbow 50, providing stable support for these tools and accessories, preventing them from colliding and squeezing each other, and ensuring their integrity. The storage basket 20 houses the support frame 10, centrally storing various tools and accessories, making their storage more organized and easier to manage. Lifting structures 30 are symmetrically arranged on the storage basket 20. Multiple lifting structures 30 can be connected to the lifting mechanism's hooks to achieve convenient and quick lifting and transportation of the storage basket 20.
[0037] In this application, the support frame 10 stably supports pipe fittings such as straight pipes 40 and high-pressure flexible elbows 50, while the storage basket 20 enables modular storage and classified management of the pipe fittings. The lifting structure 30 adapts the storage basket 20 to the lifting mechanism, eliminating the need for additional complex auxiliary structures. Each time during transportation and hoisting, preparation is completed simply by locking the lifting device of the lifting mechanism to the lifting structure 30, significantly reducing preparation time. Because the storage basket 20 centrally houses the pipe fittings, the number of multiple, dispersed hoisting operations is reduced, significantly lowering the operational difficulty, improving the efficiency of traditional transportation and hoisting, and reducing safety hazards.
[0038] In one possible implementation, the cable tray includes:
[0039] A first cable tray 11 and a second cable tray 12, both of which are used to support the straight pipe 40;
[0040] The third cable tray 13 is used to support the high-pressure movable elbow 50.
[0041] Specifically, the first cable tray 11 and the second cable tray 12 are both used to support the straight pipe 40. They can be specifically designed according to the specific size and shape of the straight pipe 40. The structure of the first cable tray 11 and the second cable tray 12 matches the shape of the straight pipe 40 to stably support the straight pipe 40, prevent shaking, and facilitate retrieval. The third cable tray 13 is specifically used to support the complex-shaped high-pressure flexible elbow 50. The multiple cable trays enable the precise classification and storage of tools and accessories, making warehouse management more efficient and orderly, locating tools more convenient, significantly shortening search time, and reducing the labor intensity of workers. Moreover, during transportation and hoisting, the storage basket 20 containing different cable trays can be hoisted as a whole, avoiding the scattered handling of tools, improving transportation efficiency, reducing safety risks, and ensuring that tools are properly handled at every stage.
[0042] In one possible implementation, the first cable tray 11 includes:
[0043] Four uprights 111, with a base at the bottom of each upright 111 and an anti-detachment post 114 at the top of each upright 111. The size of the anti-detachment post 114 matches the size of the opening on the base.
[0044] Two vertical beams 112, the ends of which are parallel to each of the columns 111 and vertically connected to each other.
[0045] Multiple crossbeams 113 are parallel to each other and perpendicular to the vertical beams 112; wherein, the ends of two of the crossbeams 113 located on the side are respectively connected to the four columns 111, and the crossbeam 113 located in the middle is slidably connected to the two vertical beams 112 through a slide block 115 provided at its end, so as to match the straight pipes 40 of different lengths.
[0046] Specifically, the first cable tray 11 mainly consists of three parts: uprights 111, vertical beams 112, and horizontal beams 113, forming a stable frame structure to support the straight pipes 40. The uprights 111 are the vertical support components of the first cable tray 11, with a base at the bottom to enhance overall stability and prevent the first cable tray 11 from tipping over. An anti-detachment post 114 is installed at the top, its size matching the opening on the base. When multiple first cable trays 11 are stacked, the anti-detachment post 114 can be inserted into the opening of the base of another first cable tray 11, serving to position it and prevent slippage, facilitating storage and transportation.
[0047] Two parallel vertical beams 112 connect to four columns 111, forming the longitudinal support structure of the frame. The vertical beams 112 are perpendicularly connected to the columns 111, enhancing the longitudinal strength and rigidity of the first cable tray 11 and ensuring it can withstand the weight of the straight pipe 40 without deformation. Multiple horizontal beams 113 are arranged in parallel and perpendicular to the vertical beams 112. The ends of the two side horizontal beams 113 are connected to the four columns 111, forming the basic frame of the first cable tray 11 and providing lateral support for the straight pipe 40. The middle horizontal beam 113 is slidably connected to the two vertical beams 112 via end slides 115, allowing the cable tray to adjust the position of the middle horizontal beam 113 according to the length of the straight pipe 40, matching different lengths of straight pipe 40, improving the versatility and adaptability of the first cable tray 11, reducing the types of first cable trays 11 required for different lengths of straight pipe 40, and lowering usage costs and management difficulty.
[0048] Among them, the upper surface of the slide block 115 is provided with a collision block 116. When subjected to external impact or vibration, the collision block 116 can prevent the pipe from coming off due to inertia.
[0049] In summary, the first cable tray 11 can ensure stability and strength while being able to adapt to straight pipes 40 of different lengths, effectively improving the efficiency and flexibility of tool management.
[0050] In one possible implementation, the first cable tray 11 further includes:
[0051] Multiple first lifting lugs 117 are symmetrically arranged on the two vertical beams 112;
[0052] Multiple handles 118 are provided, each of which is vertically mounted on a column 111 and extends away from the vertical beam 112 along its length.
[0053] Specifically, multiple first lifting lugs 117 are symmetrically arranged on the two vertical beams 112. These first lifting lugs 117 employ standardized aperture and spacing designs to facilitate quick connection of the lifting hooks or slings. The symmetrical layout ensures balanced force during lifting, preventing the first bridge frame 11 from tilting or overturning during the lifting process. Furthermore, the first lifting lugs 117 are typically made of thickened steel plates or forged using a forging process, with rust-proof surface treatment to ensure long-term reliability.
[0054] Each column 111 is vertically equipped with a handle 118, which extends along the length of the vertical beam 112 in a direction away from the vertical beam 112, allowing the operator to easily grip and move the first cable tray 11. The surface of the handle 118 is covered with anti-slip material, which ensures both grip comfort and prevents slippage during operation.
[0055] The first lifting lug 117 and handle greatly improve the convenience of handling, hoisting and operation of the first cable tray 11, making it particularly suitable for use scenarios in industrial sites where frequent movement and adjustment are required.
[0056] In one possible implementation, the second cable tray 12 includes:
[0057] A first square frame 121, with a circular sleeve 125 provided at each of the four corners of the first square frame 121;
[0058] Two rows of sleeve plates 122 are symmetrically arranged. The two ends of multiple sleeve plates 122 in each row are vertically movable and sleeved onto two sleeves on the same side of the square frame. Multiple sleeve plates 122 in each row are vertically distributed. Arc-shaped grooves are formed on the upper and lower sides of multiple sleeve plates 122 in each row. Two corresponding arc-shaped grooves in the two rows of sleeve plates 122 are used to support the two ends of a straight tube 40.
[0059] The second lifting lug 123 is disposed on the square frame and is used for the locking connection of the lifting device of the lifting mechanism to lift and transport the second cable tray 12.
[0060] Specifically, the first square frame 121 is equivalent to the support base of the second cable tray 12. A circular sleeve 125 is set at each of the four corners of the first square frame 121. Two rows of symmetrical sleeve plates 122 are vertically movable and fitted onto the two circular sleeves 125 on the same side of the square frame. Multiple sleeve plates 122 in each row are vertically distributed and have arc-shaped grooves at their vertically opposite positions. The two corresponding arc-shaped grooves in the two rows of sleeve plates 122 jointly support the two ends of a straight pipe 40. The second lifting lug 123 is set on the first square frame 121 for the lifting mechanism to lock and connect to the lifting device for lifting and transporting the second cable tray 12.
[0061] The circular sleeve 125 provides a smooth guide for the sleeve plate 122. The sleeve plate 122 can move up and down to adjust its height to accommodate different pipe diameters and stacking requirements. The corresponding arc grooves in the two rows of sleeve plates 122 together form a complete circular support space, which can firmly clamp both ends of the straight pipe 40, preventing the pipe from sliding or rolling. At the same time, this structure allows for the vertical stacking of multiple layers of pipes, significantly improving space utilization and ensuring that the pipes in each layer are subjected to balanced forces, thus improving the overall support stability. The second lifting lug 123 adopts a standardized design to facilitate the connection of the lifting mechanism, and its position has been mechanically calculated to ensure lifting balance and safety. It can quickly lock and connect the lifting equipment to improve loading and unloading efficiency.
[0062] In one possible implementation, the second cable tray 12 further includes:
[0063] The clamping structure 124 includes a handle 1241 at the top, a threaded rod at the bottom, and a pressure plate 1242 located at the top of the threaded rod; the external thread of the threaded rod engages with the internal thread at the top of the circular sleeve 125.
[0064] In each column of sleeve plates 122, the top surface of the uppermost sleeve plate 122 and the bottom surface of the lowermost sleeve plate 122 are flat plates. When the pressing structure 124 is rotated downward under force, the bottom surface of the pressure plate 1242 abuts against the top surface of the uppermost sleeve plate 122.
[0065] Specifically, the clamping structure 124 of the second cable tray 12 consists of a handle 1241, a threaded rod, and a pressure plate 1242. The threaded rod engages with the internal thread at the top of the circular sleeve 125. When the handle 1241 is rotated, the threaded rod drives the pressure plate 1242 downward, transmitting pressure to the top surface of the uppermost sleeve plate 122 through a mechanical self-locking principle. By clamping the uppermost sleeve plate 122, the stacking height of the pipe fittings is fixed, preventing displacement of the pipe fittings due to transportation vibration. Utilizing the self-locking characteristic of the thread, a constant preload is maintained without external force, ensuring that the multi-layer pipe fittings remain under stable pressure during hoisting or transportation. The flat plate allows the pressure plate 1242 to form a surface contact with the top surface of the sleeve plate 122, increasing the stress-bearing area, avoiding local stress concentration, and ensuring long-term reliability.
[0066] In one possible implementation, the third cable tray 13 includes:
[0067] Second square frame 131;
[0068] Four support columns 132 are vertically arranged at the four corners of the second square frame 131.
[0069] Two support beams 133 are parallel to each other, and the two ends of each support beam 133 are disposed on two support columns 132 located on the same side as the end face;
[0070] Multiple support beams 134 are arranged horizontally and parallel to each other. Each support beam 134 is a channel steel pipe with its opening facing upward. Along the length of each support beam 134, two vertical first side plates of each support beam 134 are provided with symmetrical slots for holding the high-pressure movable elbow 50.
[0071] When the high-pressure movable elbow 50 is placed on the supporting beam 134, the plane at the bottom of the high-pressure movable elbow 50 is higher than the top surface of the square frame.
[0072] Specifically, the second square frame 131 serves as the main load-bearing structure of the third cable tray 13, with mounting points for support columns 132 at its four corners. The second square frame 131 itself constitutes a stable base for the entire support device, providing a solid support foundation for the superstructure. The four support columns 132 are vertically installed at the four corners of the square frame, forming a vertical support system that evenly transfers the weight of the superstructure to the frame. Simultaneously, in conjunction with the support beams 133, they construct a stable three-dimensional support structure, ensuring the overall stability of the device during hoisting and transportation.
[0073] Two support beams 133 are installed parallel to each other on the upper ends of two support columns 132 on the same side of the second square frame 131, forming a horizontal bearing plane to provide an installation foundation for the support beams 134. Multiple support beams 134 are arranged horizontally in parallel, using an upward-opening channel steel pipe structure. Symmetrical slots are provided on their two vertical first side plates specifically for securing high-pressure movable elbows 50. This design facilitates rapid positioning and installation while effectively preventing displacement or rolling of the elbows during transportation, ensuring the pipe fittings are safe and stable.
[0074] In addition, in the third cable tray 13, multiple reinforcing columns 135 are set between the bottom surfaces of the two supporting beams 133 and multiple supporting beams 134 and the top surface of the second square frame 131. The vertical load of the beam is directly transferred to the frame through the reinforcing columns 135, effectively dispersing concentrated stress, enhancing the overall structural rigidity and bending resistance, preventing beam deformation, improving vibration resistance during hoisting and transportation, ensuring the stability of the high-pressure movable elbow 50 slot and the pipe clamping accuracy, simplifying structural maintenance, reducing safety risks, and significantly improving the load-bearing capacity and reliability of the cable tray.
[0075] When the high-pressure movable elbow 50 is placed on the supporting beam 134, its bottom plane is higher than the top surface of the second square frame 131, so that the elbow is suspended above the second square frame 131, avoiding direct contact with the second square frame 131 and causing wear. At the same time, it is convenient for the lifting equipment to pass under the frame during hoisting, so as to achieve overall hoisting without interference from the pipe fittings and improve loading and unloading efficiency.
[0076] Multiple third lifting lugs 138 are provided between the second square frame 131 and the support column 132 bracket. The third lifting lugs 138 are used to cooperate with the lifting mechanism. By fixing the lifting ropes and other connecting parts to the third lifting lugs 138, the third cable tray 13 can be lifted as a whole, so as to realize the convenient movement of the third cable tray 13 in different working scenarios.
[0077] In one possible implementation, the third cable tray 13 further includes:
[0078] Multiple pins 136 are provided, each pin 136 is correspondingly disposed on the top of each support column 132, and the bottom of the second square frame 131 is provided with pin holes that match the size of the pins 136.
[0079] Multiple sets of guide plates 137 are provided, each set of guide plates 137 is disposed at the top of a support column 132; each guide plate 137 corresponds to a pin 136; the bottom end of the guide plate 137 is connected to the top surface of the support column 132, the top end of the guide plate 137 is inclined outward towards the second square frame 131, and there is a gap between the bottom end of the guide plate 137 and the pin 136.
[0080] Specifically, a pin 136 is provided at the top of the support column 132, and a corresponding pin hole is opened at the bottom of the second square frame 131, so that multiple third cable trays 13 can be safely and reliably stacked vertically with the pin 136 as the reference. The precise fit between the pin 136 and the pin hole not only ensures that the central axes of each cable tray are completely aligned when stacked, preventing structural instability caused by skewing, but also allows for multi-layer stacking and storage, maximizing the use of storage space. A guide plate 137 is provided around the pin 136 at the top of the support column 132. The bottom end of the guide plate 137 is connected to the top surface of the support column 132, and the top end of the guide plate 137 is inclined outward towards the second square frame 131. There is a gap between the bottom end of the guide plate 137 and the pin 136. The guide plate 137, with its bottom end connected to the top surface of the support column 132 and inclined outwards towards the second square frame 131, provides a dual guiding function during cable tray stacking: First, the inclined guide plate 137 and the pin hole at the bottom of the second square frame 131 form an oblique guiding structure, allowing the cable tray to slide naturally into the correct position along the guide plate 137 during stacking, ensuring precise alignment of the pin shaft 136 with the pin hole and avoiding installation misalignment due to human error; Second, the gap design between the bottom end of the guide plate 137 and the pin shaft 136 provides necessary space for movement during assembly, preventing rigid collision damage to components during stacking and allowing fine-tuning of the cable tray position to achieve a perfect fit.
[0081] In one possible implementation, the storage basket 20 includes:
[0082] The third square frame 21 has an opening at the top and protective netting 23 on all four sides and at the bottom.
[0083] Multiple partitions 22 are movably disposed in the third-dimensional frame 21, dividing the third-dimensional frame 21 into multiple storage areas, each of which is used to place one of the support brackets 10; the multiple partitions 22 are distributed along the length direction of the third-dimensional frame 21.
[0084] Specifically, the storage basket 20 adopts a three-dimensional rectangular frame 21 structure with an open top. Protective netting 23, made of wire mesh, is installed around the perimeter and bottom of the three-dimensional rectangular frame 21 to prevent the support brackets 10 from slipping. Multiple movable partitions 22 are configured within the three-dimensional rectangular frame 21, dividing it into multiple independent storage areas. Each area is adapted to the size of a cable tray, ensuring stability when multiple support brackets 10 are stored. The spacing of the partitions 22 can be flexibly adjusted according to the different sizes of the support brackets 10, achieving efficient space utilization. The open basket design facilitates quick access to the cable trays, while the protective netting 23 structure maintains good ventilation while ensuring safety. The overall structure balances versatility, safety, and ease of operation. The number of support brackets 10 placed in the storage basket 20 is determined according to the actual dimensions.
[0085] In one possible implementation, the supporting structure 30 includes:
[0086] Multiple fourth lugs 31 are symmetrically arranged on two opposite second side plates of the third triangular frame 21.
[0087] Specifically, the lifting structure 30 uses multiple fourth lifting lugs 31 symmetrically arranged on the two opposite second side plates of the third triangular frame 21 as lifting interfaces for the storage basket 20. The symmetrical arrangement of the multiple fourth lifting lugs 31 ensures that the lifting equipment can achieve overall balanced lifting through the evenly distributed lugs, avoiding safety hazards caused by center of gravity shift. The multiple lugs enhance the load-bearing capacity, meeting the lifting requirements of different numbers of cable trays. This achieves an integrated transportation solution from individual tools to a complete storage system, significantly improving the efficiency and safety of pipe storage and transfer operations.
[0088] The above are merely preferred embodiments of this utility model and are not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A modular tool basket, characterized in that, include: Support frame, which supports straight pipes and high-pressure flexible elbows; A storage basket, the storage basket being used to hold at least one of the support frames; A lifting structure is symmetrically arranged on the storage basket, and multiple lifting structures are used for the locking and connection of the lifting mechanism to lift and transport the storage basket; The support frame can be stably placed in the storage basket and removed from the storage basket.
2. The combined tool basket according to claim 1, characterized in that, The support frame includes: A first cable tray and a second cable tray, both of which are used to support the straight pipe; The third cable tray is used to support the high-pressure movable elbow.
3. The combined tool basket according to claim 2, characterized in that, The first cable tray includes: Four uprights, each with a base at its bottom and an anti-detachment post at its top, the dimensions of which are matched with the openings on the bases; Two vertical beams, the ends of which are parallel to each other, are vertically connected to each of the columns; Multiple crossbeams, wherein the multiple crossbeams are parallel to each other and the multiple crossbeams are perpendicular to the vertical beam; Among them, the ends of the two horizontal beams located on the side are respectively connected to the four vertical columns, and the horizontal beam located in the middle is slidably connected to the two vertical beams through the ram provided at its end, so as to match the straight pipes of different lengths.
4. The combined tool basket according to claim 3, characterized in that, The first cable tray also includes: Multiple first lifting lugs are symmetrically arranged on the two vertical beams; Multiple handles, each of which is vertically mounted on one of the columns and extends away from the vertical beam along its length.
5. The combined tool basket according to claim 2, characterized in that, The second cable tray includes: A first square frame, with a circular sleeve at each of the four corners of the first square frame; Two rows of sleeve plates are symmetrically arranged. The two ends of multiple sleeve plates in each row are vertically movable and sleeved onto two sleeves on the same side of the square frame. Multiple sleeve plates in each row are vertically distributed. Arc-shaped grooves are formed on the upper and lower sides of multiple sleeve plates in each row. Two corresponding arc-shaped grooves in the two rows of sleeve plates are used to support the two ends of a straight tube. The second lifting lug, which is disposed on the square frame, is used for the locking connection of the lifting device of the lifting mechanism to lift and transport the second cable tray.
6. The combined tool basket according to claim 5, characterized in that, The second cable tray also includes: The clamping structure includes a handle at the top, a threaded rod at the bottom, and a pressure plate located at the top of the threaded rod; the external thread of the threaded rod mates with the internal thread at the top of the circular sleeve. In each column of sleeve plates, the top surface of the uppermost sleeve plate and the bottom surface of the lowermost sleeve plate are flat plates. When the pressing structure is rotated downward under force, the bottom surface of the pressure plate presses against the top surface of the uppermost sleeve plate.
7. The combined tool basket according to claim 2, characterized in that, The third cable tray includes: The second square frame; Four support columns are vertically arranged at the four corners of the second square frame; Two support beams, the two support beams are parallel, and the two ends of each support beam are disposed on two support columns located on the same side as the end face; Multiple support beams are arranged horizontally and parallel to each other. Each support beam is a channel steel pipe with its opening facing upward. Along the length of each support beam, two vertical first side plates of each support beam are provided with symmetrical slots for holding the high-pressure movable elbow. When the high-pressure movable elbow is placed on the supporting beam, the plane at the bottom of the high-pressure movable elbow is higher than the top surface of the square frame.
8. The combined tool basket according to claim 7, characterized in that, The third cable tray also includes: Multiple pins are provided, each pin being disposed on the top of each support column, and the bottom of the second square frame is provided with pin holes that match the size of the pins. Multiple sets of guide plates are provided, with each set of guide plates positioned at the top of a support column; each guide plate corresponds to a pin; the bottom end of the guide plate is connected to the top surface of the support column, the top end of the guide plate is inclined outward toward the second square frame, and there is a gap between the bottom end of the guide plate and the pin.
9. The combined tool basket according to claim 1, characterized in that, The storage basket includes: The third square frame has an opening at the top and protective netting around its sides and bottom. Multiple partitions are movably disposed within the third-dimensional frame, dividing the third-dimensional frame into multiple storage areas, each of which is used to place the support frame; the multiple partitions are distributed along the length direction of the third-dimensional frame.
10. The combined tool basket according to claim 9, characterized in that, The supporting structure includes: Multiple fourth lugs are symmetrically arranged on the two opposite second side plates of the third triangular frame.