Windproof hanging basket for welding
By designing a windproof basket for welding that can adaptively clamp steel beams of different sizes, the problems of low installation efficiency, poor stability and short service life in the prior art are solved, and efficient, stable and flexible welding support is achieved.
Patent Information
- Application Number
- CN202510416125.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2025-05-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The hook structure adjustment range of the existing windproof hanging basket is fixed, and it is impossible to adaptively clamp steel beams of different sizes, resulting in low installation efficiency and poor stability, affecting the construction progress, and is prone to deformation due to uneven wear and tear in long-term use, shortening service life and increasing maintenance costs.
A windproof hanging basket for welding including a vertical cage assembly, a sliding assembly, a protective assembly and a suspension assembly is designed. The suspension assembly drives the sliding frame to rotate through a motor, restricts the sliding block and telescopic spring members to push the clamp movement, adaptively clamps steel beams of different sizes, and ensures stability through anti-slip pads and pressure sensors.
It improves the installation efficiency and stability of the hanging basket, extends the service life of the structural body, reduces maintenance costs, and improves the flexibility of use to meet different welding needs.
Smart Images

Figure CN119973483A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of windproof hanging baskets, in particular to a windproof hanging basket for welding. Background Art
[0002] A windproof hanging basket is a device specially designed to meet the windproof needs in outdoor welding operations. It is usually composed of a steel structure frame, a windproof enclosure, a suspension system and other parts. The steel structure frame is the main structure of the windproof hanging basket. It is generally welded with high-strength steel materials such as angle steel and channel steel. It is sturdy, durable and stable. It can bear the weight of operators and welding equipment and resist a certain degree of wind force. The size and shape of the frame can be customized according to actual use needs to adapt to different welding scenes and workspace requirements. The existing hook structure has a fixed adjustment range and cannot be clamped adaptively according to the cross-sectional size of the steel beam, resulting in low installation efficiency and poor stability, affecting the construction progress. It is easy to deform due to uneven force and wear during long-term use, shortening the service life and increasing maintenance costs. For this reason, we propose a windproof hanging basket for welding. Summary of the invention
[0003] The purpose of the present invention is to provide a windproof hanging basket for welding.
[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: A windproof hanging basket for welding, comprising a structural main body, the structural main body comprising a vertical cage assembly, a sliding assembly connected to the vertical cage assembly, a protective assembly connected to the sliding assembly, and a suspension assembly connected to the protective assembly, the suspension assembly comprising a hook, a motor, a sliding frame, a limiting ring, a sliding rod, a side plate and a clamping member, the hook is arranged in a U-shape, an anti-slip pad is arranged on the inner side of the open end, a plurality of anti-slip pads are arranged near the motor of the hook, a pressure sensor is arranged at the bending part of the hook, the sliding frame is arranged on the motor through a rotating shaft, two limiting blocks are arranged on both sides of the sliding frame, an annular groove is opened inside the limiting ring, the limiting block is rotatably connected to the inside of the annular groove, the sliding rod is fixed to the inside of the sliding frame, the two side plates are respectively arranged on both sides of the sliding frame, the two clamping members are slidably connected to the sliding rod, a telescopic spring member is arranged between the clamping member and the side plate, and the suspension assembly is arranged in two, symmetrically distributed on the left and right sides of the hook, and linked with the motor through the sliding frame.
[0005] As a further solution of the present invention: a protective assembly is provided at the bottom of the vertical cage assembly, the protective assembly includes a first cross bar and a second cross bar, a vertical bar is provided between the first cross bar and the second cross bar, the number of the vertical bar, the first cross bar and the second cross bar is set to four, the top surfaces of the four vertical bars are each provided with lighting fixtures, the number of the protective assemblies is set to four, the sliding assembly includes a slide plate, a sliding seat and a fixing bolt, a plurality of through holes are provided inside the sliding seat, the slide plate is slidably connected to the inside of the sliding seat, the fixing bolt is penetrated through the inside of the through hole, a fastener is provided on the fixing bolt, and the bottom surface of the vertical cage assembly is fixedly connected to the slide plate of the sliding assembly.
[0006] As a further solution of the present invention: the vertical cage assembly includes an angle steel vertical cage, a telescopic vertical cage, a slider and a lifting rod, the interior of the angle steel vertical cage is provided with a square groove, the four corners of the interior of the square groove are provided with sliding grooves, the four sliding blocks are slidably connected to the interior of the sliding grooves, the top surfaces of the four lifting rods are arranged on the bottom surface of the slider, and the telescopic vertical cage is arranged on the slider.
[0007] As a further solution of the present invention: a connecting component is arranged on the protective component, and the connecting component includes a fixed block A, a fixed block B, a fastener 1 and a fastener 2, the fastener 1 is rotatably connected to the fixed block A, the fastener 2 is rotatably connected to the fixed block B, the fastener 1 and the fastener 2 are mutually engaged, and the engaging surfaces of the fastener 1 and the fastener 2 are provided with matching concave and convex tooth patterns.
[0008] As a further solution of the present invention: a buffer assembly is provided at the bottom of the protective assembly, and the buffer assembly includes an inclined plate, a buffer sleeve, a limiting rod, a tension spring and a damping. A connecting rod is provided between the two inclined plates, a side block is provided on the left side of the connecting rod, a linkage block A is rotatably connected between the side blocks, the buffer sleeve is provided on the linkage block A, four limiting rods are provided on the buffer sleeve, the tension spring abuts against the buffer sleeve, a linkage rod is provided inside the tension spring, and a linkage block B is provided on the left side of the linkage rod. The number of the inclined plates, connecting rods, side blocks, linkage blocks A, buffer sleeves, limiting rods, linkage rods, tension springs and linkage blocks B are all set to four, an intermediate plate is provided between the two linkage blocks B, a spring is provided inside the intermediate plate and the damping, and the buffer assembly is hinged to the bottom of the protective assembly through the inclined plate.
[0009] As a further solution of the present invention: a buffer plate is provided on the bottom surface of the damper, connecting plates are provided on both sides of the buffer plate, and inclined grooves are provided inside the connecting plates.
[0010] As a further solution of the present invention: T-shaped rods are arranged on the front and rear sides of the angle steel cage, the number of the T-shaped rods is set to four, and the four T-shaped rods are evenly arranged on the front and rear sides of the angle steel cage, and two through grooves are respectively provided on the second cross bars on the front and rear sides, and the four T-shaped rods are slidably connected to the inside of the four through grooves.
[0011] As a further solution of the present invention: the bottom surface of the angle steel cage is conical, the bottom surface of the angle steel cage is fully covered with a bottom plate, the top surface of the slide plate is arranged on the bottom surface of the bottom plate, and wind speed sensors are arranged on both sides of the angle steel cage.
[0012] As a further solution of the present invention: the angle steel cage is made of low-alloy high-strength structural steel, the telescopic cage is made of high-strength alloy steel, the net height inside the cage assembly is 2.2 meters, and the height of the vertical rod is set to 1.2 meters.
[0013] As a further solution of the present invention: a controller is arranged on the connecting plate, and the controller is electrically connected to the lifting rod, the wind speed sensor, the pressure sensor, the telescopic spring member and the motor respectively.
[0014] By adopting the above technical solution, compared with the prior art, the beneficial effects of the present invention are:
[0015] 1. The present invention starts the motor to drive the slide frame to rotate, the limiting block slides along the ring groove of the limiting ring, and the telescopic spring member pushes the two clamping members to move relatively along the slide rod, adaptively clamping steel beams of different sizes, and further limiting the position of the steel beams with the provided hooks and anti-slip pads. The operation is simple and fast, so that the hanging basket is installed efficiently and stably each time, thereby accelerating the construction progress;
[0016] 2. The present invention sets a slide plate in the sliding assembly to slide inside the sliding seat, uses a fixing bolt to limit the slide plate, and the T-shaped rod slides inside the through groove, so that the construction personnel can adjust the vertical cage assembly according to the specific conditions of the steel beam, and the deformation degree of the steel beam can be detected in real time by the pressure sensor, so as to extend the service life of the main structure, thereby reducing the maintenance cost;
[0017] 3. The present invention provides four lifting rods to drive the slider on the top surface to rise and fall and slide, so that the telescopic cage can adapt to steel beams with different welding requirements, greatly reducing the occupied space of the main structure. At the same time, at the construction site, the cage assembly can be quickly lifted to different heights according to actual needs, meeting the requirements of different construction scenes and improving the flexibility of use.
[0018] Other advantages, objectives and features of the present invention will be set forth in part in the following description and, in part, will be apparent to those skilled in the art based on an examination of the following or may be taught from the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a first stereoscopic schematic diagram in an embodiment of the present invention;
[0020] Figure 2 is a second stereoscopic schematic diagram of an embodiment of the present invention;
[0021] Figure 3 is a three-dimensional schematic diagram of a connection assembly in an embodiment of the present invention;
[0022] Figure 4 This is a schematic diagram of the connection structure between the buffer assembly and the buffer plate in an embodiment of the present invention;
[0023] Figure 5 for Figure 4 Schematic diagram at C in the middle;
[0024] Figure 6 It is a three-dimensional schematic diagram of a vertical cage assembly in an embodiment of the present invention;
[0025] Figure 7 for Figure 6 Schematic diagram at B in the middle;
[0026] Figure 8 It is a schematic diagram of the connection structure between the vertical cage assembly and the sliding assembly in an embodiment of the present invention;
[0027] Fig. 9 is a three-dimensional schematic diagram of a suspension assembly in an embodiment of the present invention;
[0028] Fig.10 for Fig. 9 Schematic diagram at A in the middle;
[0029] Fig.11 for Figure 2 Schematic diagram at point D in the middle.
[0030] In the figure: 1, structural body; 2, protection assembly; 21, first crossbar; 22, vertical bar; 23, second crossbar; 3, connecting assembly; 31, fixing block A; 32, fixing block B; 33, buckle one; 34, buckle two; 4, buffer assembly; 41, inclined plate; 42, connecting rod; 43, side block; 44, linkage block A; 45, buffer sleeve; 46, limiting rod; 47, linkage rod; 48, tension spring; 49, linkage block B; 50, middle plate; 51 , damping; 6, buffer plate; 7, vertical cage assembly; 71, angle steel vertical cage; 72, telescopic vertical cage; 75, slider; 76, lifting rod; 8, sliding assembly; 81, slide plate; 82, slide seat; 83, fixing bolt; 9, suspension assembly; 91, hook; 92, motor; 93, slide frame; 931, limit block; 932, limit ring; 933, ring groove; 94, slide rod; 95, side plate; 96, clamping part; 97, telescopic spring part; 10, T-bar. DETAILED DESCRIPTION
[0031] The specific embodiments of the present invention will be further described below in conjunction with the accompanying drawings. It should be noted that the description of these embodiments is used to help understand the present invention, but does not constitute a limitation of the present invention.
[0032] In addition, the technical features involved in the various embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.
[0033] Please see attached Figure 1 -Attached Fig.11The present invention discloses a windproof hanging basket for welding, comprising a main body 1, the main body 1 comprising a vertical cage assembly 7, a sliding assembly 8 connected to the vertical cage assembly 7, a protective assembly 2 connected to the sliding assembly 8, and a suspension assembly 9 connected to the protective assembly 2. The sliding assembly 8 comprises a slide plate 81, a slide seat 82 and a fixing bolt 83. The interior of the slide seat 82 is provided with a plurality of through holes. The slide plate 81 is slidably connected to the interior of the slide seat 82. The fixing bolt 83 is penetrated through the interior of the through hole. A fastener is arranged on the fixing bolt 83 to facilitate the portable position adjustment of the vertical cage assembly 7. The suspension assembly 9 comprises a hook 91, a motor 92, a slide frame 93, a limiting ring 932, a slide rod 94, a side plate 95 and a clamping member 96. The hook 91 is arranged in a U shape, an anti-slip pad is arranged on the inner side of the open end, and the hook 91 is close to the motor. A plurality of anti-skid pads are arranged at 92, a pressure sensor is arranged at the bend of the hook 91, a sliding frame 93 is arranged on the motor 92 through a rotating shaft, two limiting blocks 931 are arranged on both sides of the sliding frame 93, a ring groove 933 is opened inside the limiting ring 932, the limiting block 931 is rotatably connected to the inside of the ring groove 933, a sliding rod 94 is fixed to the inside of the sliding frame 93, two side plates 95 are respectively arranged on both sides of the sliding frame 93, two clamping members 96 are slidably connected to the sliding rod 94, a telescopic spring member 97 is arranged between the clamping member 96 and the side plate 95, the suspension assembly 9 is arranged in two, symmetrically distributed on the left and right sides of the hook 91, and linked with the motor 92 through the sliding frame 93, the two clamping members 96 realize synchronous displacement through the sliding rod 94, and the bottom surface of the vertical cage assembly 7 is fixedly connected to the slide plate 81 of the sliding assembly 8.
[0034] Embodiment 1: A protective component 2 is provided at the bottom of the vertical cage component 7, and the protective component 2 includes a first cross bar 21 and a second cross bar 23. A vertical bar 22 is provided between the first cross bar 21 and the second cross bar 23. The number of the vertical bars 22, the first cross bar 21 and the second cross bar 23 is set to four. The top surfaces of the four vertical bars 22 are all provided with lighting fixtures. The number of protective components 2 is set to four. The lighting fixtures are waterproof LED lamps. The power cord is wired inside the vertical bars 22 and connected to the external power supply through the vertical bars 22 of the protective component 2. The switch is integrated in the controller panel.
[0035] Specifically, by providing the protection component 2, it is convenient to protect the internal vertical cage component 7, and by providing the lighting component, it is convenient for the staff to operate at night, thereby enhancing the applicability of the structural body 1.
[0036] Embodiment 2, the vertical cage assembly 7 includes an angle steel vertical cage 71, a telescopic vertical cage 72, a slider 75 and a lifting rod 76. A square groove is provided inside the angle steel vertical cage 71, and slide grooves are provided at the four corners of the square groove. Four sliders 75 are slidably connected to the inside of the slide grooves. The top surfaces of the four lifting rods 76 are arranged on the bottom surfaces of the sliders 75. The telescopic vertical cage 72 is arranged on the sliders 75. The lifting rods 76 are made of stainless steel.
[0037] Specifically, four lifting rods 76 are provided to drive the slider 75 on the top surface to rise and fall and slide, so that the telescopic vertical cage 72 can adapt to steel beams with different welding requirements, greatly reducing the occupied space of the structural body 1. At the same time, at the construction site, the vertical cage assembly 7 can be quickly lifted to different heights according to actual needs, meeting the requirements of different construction scenes and improving the flexibility of use.
[0038] Embodiment 3: A connecting component 3 is provided on the protection component 2, and the connecting component 3 includes a fixing block A31, a fixing block B32, a first clip 33 and a second clip 34, the first clip 33 is rotatably connected to the fixing block A31, the second clip 34 is rotatably connected to the fixing block B32, the first clip 33 and the second clip 34 are mutually engaged, and the engaging surfaces of the first clip 33 and the second clip 34 are provided with matching concave and convex tooth patterns;
[0039] Specifically, by locking the fastener 1 33 and the fastener 2 34, it is convenient for construction workers to open and close one side of the protective component 2, which greatly improves the convenience and flexibility of operation. The fastener 1 33 and the fastener 2 34 match each other. Under normal working conditions, the two are tightly engaged, which can provide reliable connection strength for the protective component 2 and effectively prevent the protective component 2 from being accidentally opened, thereby ensuring the safety of construction workers and the smooth progress of the construction process.
[0040] Embodiment 4: A buffer assembly 4 is provided at the bottom of the protection assembly 2. The buffer assembly 4 includes an inclined plate 41, a buffer sleeve 45, a limiting rod 46, a tension spring 48 and a damping 51. A connecting rod 42 is provided between the two inclined plates 41. A side block 43 is provided on the left side of the connecting rod 42. A linkage block A44 is rotatably connected between the side blocks 43. The buffer sleeve 45 is provided on the linkage block A44. Four limiting rods 46 are provided on the buffer sleeve 45. The tension spring 48 abuts against the buffer sleeve 45. The inner portion of the tension spring 48 is provided with a connecting rod 42. A linkage rod 47 is provided at the bottom, a linkage block B49 is provided on the left side of the linkage rod 47, the inclined plate 41, the connecting rod 42, the side block 43, the linkage block A44, the buffer sleeve 45, the limiting rod 46, the linkage rod 47, the tension spring 48 and the linkage block B49 are all set to four, an intermediate plate 50 is provided between the two linkage blocks B49, and springs are provided inside the intermediate plate 50 and the damping 51, and the buffer component 4 is hinged to the bottom of the protective component 2 through the inclined plate 41, so as to absorb the vertical impact force;
[0041] Specifically, through the buffer component 4, when the middle plate 50 vibrates, the linkage rods 47 and the tension springs 48 on both sides slide inside the buffer sleeve 45, and the damping 51 at the bottom isolates the middle plate 50 from vibration, thereby achieving effective buffering and stable protection of the protective component 2. The buffer component 4 is connected to the protective component 2 through the inclined plate 41. When the external impact force acts, the middle plate 50 drives the linkage rod 47 to compress the tension spring 48, and the spring in the damping 51 absorbs energy. The limiting rod 46 guides the buffer sleeve 45 to slide linearly to achieve multi-stage buffering.
[0042] Embodiment 5: A buffer plate 6 is provided on the bottom surface of the damper 51, and connecting plates are provided on both sides of the buffer plate 6. An inclined groove is provided inside the connecting plate. T-shaped rods 10 are provided on the front and rear sides of the angle steel cage 71. The number of T-shaped rods 10 is set to four, and the four T-shaped rods 10 are evenly arranged on the front and rear sides of the angle steel cage 71. Two through grooves are respectively provided on the second cross bars 23 on the front and rear sides. The four T-shaped rods 10 are slidably connected to the inside of the four through grooves. The bottom surface of the angle steel cage 71 is conical, and the bottom surface of the angle steel cage 71 is fully covered with the bottom plate. The top surface of the slide plate 81 is set on the bottom surface of the bottom plate. Wind speed sensors are provided on the left and right sides of the angle steel cage 71. One end of the T-shaped rod 10 is welded to the front and rear side walls of the angle steel cage 71, and the other end passes through the through groove of the second cross bar 23 and is fixed by a locking nut to realize the vertical sliding adjustment of the cage assembly 7 and prevent it from falling off.
[0043] Specifically, by setting the T-shaped rod 10 to slide inside the through groove, when the slide plate 81 at the bottom of the vertical cage assembly 7 slides inside the slide seat 82, the T-shaped rod 10 slides inside the through groove, which is convenient for limiting the vertical cage assembly 7. The pressure sensor is convenient for detecting the bending condition of the steel beam to be suitable for different steel beams.
[0044] Embodiment 6: The material of the angle steel cage 71 is low-alloy high-strength structural steel, the material of the telescopic cage 72 is high-strength alloy steel, the net height inside the cage assembly 7 is 2.2 meters, the height of the vertical rod 22 is set to 1.2 meters, and a controller is provided on the connecting plate. The controller is electrically connected to the lifting rod 76, the wind speed sensor, the pressure sensor, the telescopic spring member 97 and the motor 92 respectively. The material of the telescopic spring member 97 is spring steel, and the material of the slide bar 94 is high-quality carbon structural steel. The controller has a built-in PID control module, which receives signals from the wind speed sensor and the pressure sensor in real time. When the wind speed exceeds level 5 (8.0-10.7m / s), the lifting rod 76 is automatically started to lower the height of the cage. When the pressure sensor detects that the steel beam is offset, the motor 92 is controlled to adjust the spacing of the clamping members 96 to ensure balanced clamping force.
[0045] Specifically, the angle steel cage 71 is made of low-alloy high-strength structural steel (Q345 steel), which has higher strength and better corrosion resistance. Under the same stress conditions, smaller angle steels can be used to reduce the overall weight of the cage. It is suitable for occasions with high requirements for compression and bending resistance, such as working cages in bridge construction, protective cages for large machinery, etc. The telescopic spring member 97 is a double-headed compression spring, with both ends respectively fixed to the clamping member 96 and the side plate 95. The spring stiffness coefficient is 50N / mm, providing an adaptive clamping force.
[0046] Specifically, the slide plate 81 in the sliding assembly 8 is set to slide inside the slide seat 82, and the fixing bolt 83 is used to limit the slide plate 81. The T-shaped rod 10 slides inside the through groove, which is convenient for construction personnel to vertically adjust the cage assembly 7 according to the specific situation of the steel beam. The slide seat 82 is provided with anti-slip teeth inside, and the bottom surface of the slide plate 81 is correspondingly provided with grooves. The fixing bolt 83 adopts a double nut anti-loosening design to ensure that it is firmly locked after sliding adjustment.
[0047] Specifically, the motor 92 is started to drive the slide frame 93 to rotate, the limiting block 931 slides along the ring groove 933 of the limiting ring 932, and the telescopic spring member 97 pushes the two clamping members 96 to move relatively along the slide rod 94, so as to adaptively clamp steel beams of different sizes, and the hook 91 and the anti-slip pad are arranged to further limit the position of the steel beam, so the operation is simple and fast;
[0048] During the construction process, wind force or equipment vibration is transmitted to the protection component 2, and the buffer component 4 converts the vertical impact into the horizontal displacement of the linkage rod 47 through the synergistic effect of the tension spring 48 and the damper 51, thereby reducing the shaking of the vertical cage component 7.
[0049] Working principle:
[0050] First, move the structural body 1 to the required position. The staff first places the tools required for welding inside the protective component 2. When the structural body 1 needs to be hung, first use the hook 91 and the anti-slip pad to achieve preliminary limiting, then start the motor 92 to drive the slide frame 93 to rotate, thereby driving the limiting block 931 to rotate inside the limiting ring 932. At the same time, the controller starts the two telescopic spring members 97 to drive the two clamping members 96 on the slide rod 94 to move relative to each other, clamping steel beams of different sizes. When the construction personnel need to enter the interior of the protective component 2, they disengage the buckle 1 33 and the buckle 2 34, and open the protective component 2 on one side. When the vertical cage component 7 needs to be adjusted vertically, move the bottom of the vertical cage component 7. The slide plate 81 at the top slides inside the slide seat 82, and the fixing bolt 83 is used to limit the slide plate 81. The T-shaped rod 10 slides inside the through groove for easy vertical adjustment. When the height of the cage assembly 7 is not enough, the wind speed sensor senses the wind speed condition in real time, and the pressure sensor senses the pressure condition of the steel beam. The lifting rod 76 is started to drive the slider 75 and the telescopic cage 72 to rise and fall, which is convenient for welding steel beams of different heights. The middle plate 50 in the buffer assembly 4 arranged at the bottom vibrates, driving the linkage rods 47 and the tension springs 48 on both sides to slide inside the buffer sleeve 45. The damping 51 at the bottom isolates the middle plate 50 from vibration, thereby achieving effective buffering and stable protection of the protective assembly 2 and the cage assembly 7. At this point, the entire workflow is completed.
[0051] The above-mentioned front, back, left, right, top and bottom are all based on the figures in the specification. Figure 1 As a benchmark.
[0052] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the scope of protection of the present invention.
[0053] The embodiments of the present invention are described in detail above with reference to the accompanying drawings, but the present invention is not limited to the described embodiments.
[0054] It is apparent to those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the invention, and the changes still fall within the protection scope of the invention.
Claims
1. A windproof hanging basket for welding, comprising a structural main body (1), characterized in that: The structural body (1) comprises a vertical cage assembly (7), a sliding assembly (8) connected to the vertical cage assembly (7), a protective assembly (2) connected to the sliding assembly (8), and a suspension assembly (9) connected to the protective assembly (2); the suspension assembly (9) comprises a hook (91), a motor (92), a sliding frame (93), a limiting ring (932), a sliding rod (94), a side plate (95), and a clamping member (96); the hook (91) is arranged in a U shape, and an anti-skid pad is arranged on the inner side of the open end; a plurality of anti-skid pads are arranged near the motor (92) of the hook (91); a pressure sensor is arranged at the bending part of the hook (91); the sliding frame (93) is arranged on the motor through a rotating shaft. (92), two limiting blocks (931) are arranged on both sides of the sliding frame (93), a ring groove (933) is opened inside the limiting ring (932), the limiting block (931) is rotatably connected to the inside of the ring groove (933), the sliding rod (94) is fixed to the inside of the sliding frame (93), the two side plates (95) are respectively arranged on both sides of the sliding frame (93), the two clamping members (96) are slidably connected to the sliding rod (94), and a telescopic spring member (97) is arranged between the clamping member (96) and the side plate (95), and the suspension assembly (9) is arranged in two, symmetrically distributed on the left and right sides of the hook (91), and linked with the motor (92) through the sliding frame (93).
2. A windproof hanging basket for welding according to claim 1, characterized in that: A protection component (2) is arranged at the bottom of the vertical cage component (7), the protection component (2) comprises a first cross bar (21) and a second cross bar (23), a vertical bar (22) is arranged between the first cross bar (21) and the second cross bar (23), the number of the vertical bar (22), the first cross bar (21) and the second cross bar (23) is set to four, the top surfaces of the four vertical bars (22) are all provided with lighting lamps, the number of the protection components (2) is set to four, the sliding component (8) comprises a slide plate (81), a sliding seat (82) and a fixing bolt (83), the interior of the sliding seat (82) is provided with a plurality of through holes, the slide plate (81) is slidably connected to the interior of the sliding seat (82), the fixing bolt (83) is penetrated through the interior of the through hole, a fastener is arranged on the fixing bolt (83), and the bottom surface of the vertical cage component (7) is fixedly connected to the slide plate (81) of the sliding component (8).
3. A windproof hanging basket for welding according to claim 2, characterized in that: The vertical cage assembly (7) comprises an angle steel vertical cage (71), a telescopic vertical cage (72), a slider (75) and a lifting rod (76); a square groove is provided inside the angle steel vertical cage (71); four corners of the square groove are provided with sliding grooves; four sliding grooves (75) are slidably connected to the inside of the sliding grooves; the top surfaces of the four lifting rods (76) are arranged on the bottom surface of the slider (75); and the telescopic vertical cage (72) is arranged on the slider (75).
4. A windproof hanging basket for welding according to claim 2, characterized in that: The protection component (2) is provided with a connection component (3), the connection component (3) comprising a fixing block A (31), a fixing block B (32), a first snap-fit component (33) and a second snap-fit component (34), the first snap-fit component (33) being rotatably connected to the fixing block A (31), the second snap-fit component (34) being rotatably connected to the fixing block B (32), the first snap-fit component (33) and the second snap-fit component (34) being mutually engaged, and the engaging surfaces of the first snap-fit component (33) and the second snap-fit component (34) being provided with matching concave and convex tooth patterns.
5. A windproof hanging basket for welding according to claim 4, characterized in that: A buffer component (4) is arranged at the bottom of the protection component (2), and the buffer component (4) includes an inclined plate (41), a buffer sleeve (45), a limiting rod (46), a tension spring (48) and a damper (51). A connecting rod (42) is arranged between the two inclined plates (41), a side block (43) is arranged on the left side of the connecting rod (42), and a linkage block A (44) is rotatably connected between the side blocks (43). The buffer sleeve (45) is arranged on the linkage block A (44), and the four limiting rods (46) are arranged on the buffer sleeve (45). The tension spring (48) abuts against the buffer sleeve (45). A linkage rod (47) is arranged inside the tension spring (48), and a linkage block B (49) is arranged on the left side of the linkage rod (47). The number of the inclined plate (41), the connecting rod (42), the side block (43), the linkage block A (44), the buffer sleeve (45), the limiting rod (46), the linkage rod (47), the tension spring (48) and the linkage block B (49) is set to four. An intermediate plate (50) is arranged between two linkage blocks B (49), and springs are arranged inside the intermediate plate (50) and the damping (51). The buffer component (4) is hinged to the bottom of the protective component (2) through the inclined plate (41).
6. A windproof hanging basket for welding according to claim 5, characterized in that: A buffer plate (6) is provided on the bottom surface of the damper (51), connecting plates are provided on both sides of the buffer plate (6), and inclined grooves are provided inside the connecting plates.
7. The windproof hanging basket for welding according to claim 3, characterized in that: The front and rear sides of the angle steel cage (71) are both provided with T-shaped rods (10), the number of the T-shaped rods (10) is set to four, and the four T-shaped rods (10) are evenly arranged on the front and rear sides of the angle steel cage (71), and the second cross bars (23) on the front and rear sides are respectively provided with two through slots, and the four T-shaped rods (10) are all slidably connected to the inside of the four through slots.
8. The windproof hanging basket for welding according to claim 7, characterized in that: The bottom surface of the angle steel cage (71) is conical, the bottom surface of the angle steel cage (71) is fully covered with a bottom plate, the top surface of the slide plate (81) is arranged on the bottom surface of the bottom plate, and wind speed sensors are arranged on both left and right sides of the angle steel cage (71).
9. A windproof hanging basket for welding according to claim 8, characterized in that: The angle steel cage (71) is made of low-alloy high-strength structural steel, the telescopic cage (72) is made of high-strength alloy steel, the net height inside the cage assembly (7) is 2.2 meters, and the height of the vertical rod (22) is set to 1.2 meters.
10. The windproof hanging basket for welding according to claim 6, characterized in that: The connection plate is provided with a controller, which is electrically connected to the lifting rod (76), the wind speed sensor, the pressure sensor, the telescopic spring member (97) and the motor (92) respectively.