A mobile hanging basket for high-altitude construction

By setting up I-shaped rails and high-strength rods to connect the hanging basket around the shopping mall atrium, the problems of complex construction and high safety risks around the atrium are solved, and the flexible movement and stability of the hanging basket is achieved, and construction efficiency and safety are improved.

CN120401776BActive Publication Date: 2025-08-29CHINA CONSTR FOURTH ENG DIV CORP LTD
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Patent Information

Application Number
CN202510912039.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-03
Publication Date
2025-08-29
Estimated Expiration
2045-07-03

AI Technical Summary

Technical Problem

The decoration construction around the atrium of traditional shopping malls has problems such as complex construction, high safety risks, large space occupancy, and affecting the operation of the shopping mall. The existing hanging basket construction is inconvenient to move around the atrium.

Method used

I-steel is used as the track, and the hanging basket is connected to the winding assembly through high-strength rods to realize the movement of the hanging basket on the I-steel. Combined with pulley assembly, motor drive and fastening mechanism, the stability and flexibility of the hanging basket are ensured.

Benefits of technology

It improves construction efficiency, reduces the impact on the normal operation of the shopping mall, ensures construction safety, and provides a cost-effective construction plan.

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Abstract

The present invention relates to the technical field of high-altitude construction equipment, and more particularly to a mobile hanging basket for high-altitude construction. The hanging basket comprises an I-beam fixed to the edge of an atrium by a plurality of bolts. A high-strength rod is movably mounted on the I-beam, a winding assembly is mounted on the high-strength rod, a hanging basket rope is wound around the winding assembly, and the lower end of the hanging basket rope is connected to the hanging basket body. The present invention pre-embeds an I-beam on a plate surrounding the atrium as a track for the hanging basket to move. The I-beam is connected to the high-strength rod above, and the hanging basket hanger is hung below the extended rod. This design not only provides stable suspension support for the hanging basket, but also enables the hanging basket to be flexibly moved to different locations around the atrium by moving the top track (composed of the I-beam and the high-strength rod). When construction is completed, the hanging basket is lowered to the ground, and then the top track is moved to the location where construction is required, thereby achieving the reuse of the hanging basket and the rapid change of construction areas.
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Description

Technical Field

[0001] The present invention relates to the technical field of high-altitude construction equipment, in particular to a mobile hanging basket for high-altitude construction. Background Art

[0002] In modern commercial buildings, the mall atrium, as the core space, not only serves as a crucial transitional space and pedestrian evacuation mechanism, but also plays a crucial role in beautifying the mall's interior and creating a vibrant atmosphere. Renovation projects surrounding the atrium are crucial for enhancing the mall's overall image, attracting customers, and increasing its commercial value. However, due to the unique structure and construction environment surrounding the atrium, renovation work presents numerous challenges.

[0003] Traditionally, renovations around shopping mall atrias typically involve erecting full-height scaffolding. While this method can meet the operational needs of construction workers to a certain extent, it also presents numerous drawbacks. First, the erection and dismantling of full-height scaffolding is complex and time-consuming, requiring significant manpower and material resources. In malls, where efficient use of operating hours and space is crucial, the prolonged scaffolding erection and dismantling process can significantly impact normal operations, leading to a reduction in sales area and a diminished customer experience. Second, full-height scaffolding is relatively unstable, especially in areas like atrias with open air access, posing a significant safety risk to construction workers. If the scaffolding were to wobble or collapse, it would not only endanger the lives of construction workers but could also cause renovation materials and tools to fall, posing a serious threat to personnel and facilities below. Furthermore, full-height scaffolding requires a significant amount of space, which, in limited space like a shopping mall atrium, further compresses construction space and increases the difficulty and complexity of construction.

[0004] With the continuous advancement of building technology and construction techniques, people are seeking more efficient, safe, and economical alternatives to traditional scaffolding. Against this backdrop, suspended basket construction technology has gradually gained attention. Suspended basket construction involves workers working within a suspended basket suspended from a building or structure via a suspension device. It offers advantages such as flexible operation, minimal space occupation, and high construction efficiency, making it particularly suitable for high-altitude operations and construction environments with limited space.

[0005] However, in the special scenario of a shopping mall atrium, directly using conventional hanging baskets for construction also presents some problems. Due to the structural characteristics and construction requirements of the atrium, existing hanging baskets are inconvenient to move. To solve the above problems, the present invention proposes a mobile hanging basket for high-altitude construction. Summary of the Invention

[0006] To achieve the above-mentioned purpose, the present invention provides a mobile hanging basket for high-altitude construction, including an I-beam, which is fixed to the edge of the atrium by a number of bolts, and a high-strength rod is movably provided on the I-beam, and a winding assembly is provided on the high-strength rod, and a hanging basket rope is wound around the winding assembly, and the lower end of the hanging basket rope is connected to the hanging basket body. During operation, after the first decoration position is completed, the hanging basket body is dropped to the ground, and then the high-strength rod is driven to move on the I-beam to the second decoration position, and then the hanging basket body is lifted so that the hanging basket body rises to the second decoration position.

[0007] Optionally, the high-strength rod member includes a snap-fitting tube and a high-strength rod body, the snap-fitting tube is U-shaped, and the snap-fitting tube is movably snapped onto the outside of the I-beam, and several high-strength rod bodies are arranged on the outer wall of the snap-fitting tube, and the winding assembly is arranged on the high-strength rod body.

[0008] Optionally, a pulley assembly is further included, which is used to support the high-strength rod to slide on the I-beam. The pulley assembly includes a pulley body and a rotating rod. The pulley body is arranged to abut against the lower end surface of the upper transverse section of the I-beam. The pulley body is fixedly sleeved on the outside of the rotating rod, and the rotating rod is rotatably arranged on the inner side wall of the locking cylinder. There are several pulley assemblies, and the several pulley assemblies are divided into two groups. The two groups of pulley assemblies are symmetrically arranged about the vertical center line of the I-beam.

[0009] Optionally, the winding assembly includes a driving motor, which is fixedly connected to the high-strength pole body, and also includes a winding shaft, which is fixedly sleeved on the driving end of the driving motor, and the hanging basket rope is wound around the winding shaft.

[0010] Optionally, it also includes a pushing component, which includes a pushing motor, which is fixedly connected to the outer wall of the locking cylinder, and a pushing gear is fixedly connected to the driving end of the pushing motor, and the pushing gear is movably inserted into a through hole opened on the locking cylinder, and the pushing gear is engaged with a spur rack, and the spur rack is fixedly connected to the side wall of the I-beam.

[0011] Optionally, a fastening mechanism is also included, which is used to lock the locking tube and the I-beam together during construction. The fastening mechanism includes a fastening screw hole opened on the top plate of the locking tube, a fastening screw is inserted into the inner thread of the fastening screw hole, and the lower end of the fastening screw is connected to a rotating shaft, and the rotating shaft is rotatably set on the fastening plate assembly, and the fastening plate assembly is movably set in a movable groove, and the movable groove is opened on the inner top wall of the locking tube.

[0012] Optionally, the fastening mechanism also includes a guide telescopic assembly for limiting the movement of the fastening plate assembly only in the vertical direction, the guide telescopic assembly including a guide telescopic rod fixedly connected to the top wall of the movable groove, and a guide telescopic cylinder movably sleeved outside the guide telescopic rod, the guide telescopic cylinder is fixedly connected to the upper end surface of the fastening plate assembly, and also includes a guide telescopic spring wound around the outside of the guide telescopic rod, the two ends of the guide telescopic spring are respectively fixedly connected to the side wall of the guide telescopic rod and the outer side wall of the guide telescopic cylinder.

[0013] Optionally, the fastening plate assembly includes an upper fastening plate connected to the rotating shaft, and an elastic connecting member connected to the lower end surface of the upper fastening plate, the lower end of the elastic connecting member is fixedly connected to the upper end surface of the lower fastening plate, wherein the number of the elastic connecting members is set to be several, and the size of the lower fastening plate is smaller than the size of the upper fastening plate.

[0014] Optionally, a resistance plate is provided between the upper fastening plate and the lower fastening plate, and the resistance plate is fixedly connected to the lower end surface of the upper fastening plate.

[0015] Optionally, a locking mechanism is further included, and there are several locking mechanisms, which are divided into two groups. The two groups of locking mechanisms are symmetrically arranged about the vertical center line of the I-beam, and the two groups of locking mechanisms fix the I-beam and the locking tube together by snapping together from both sides of the I-beam. The locking mechanism includes an L-shaped rod fixedly connected to the lower end face of the upper fastening plate, and a locking plate is fixedly connected to the lower end face of the L-shaped rod, and the locking plate is provided with an inclined groove toward the side of the I-beam.

[0016] The beneficial effects of the present invention are as follows:

[0017] This invention uses pre-embedded I-beams in the slabs surrounding the atrium, which serve as tracks for the hanging basket. The I-beams are connected to high-strength rods above, and the extended rods hang from the hanging basket's hangers. This design not only provides stable suspension support for the hanging basket but also allows for flexible movement of the basket around the atrium by moving the top track (composed of the I-beams and high-strength rods). When construction is complete, the basket is lowered to the ground, and the top track is then moved to the desired location, enabling the basket to be reused and quickly transitioned between work areas.

[0018] This innovative hanging basket construction solution improves construction efficiency and ensures safety while effectively minimizing the impact on normal mall operations, resulting in significant economic and social benefits. It provides a new approach and solution for the renovation of mall atriums and surrounding areas, and is expected to become the preferred construction method for similar projects in the future. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic structural diagram of an embodiment of a mobile hanging basket for high-altitude construction according to the present invention;

[0020] Figure 2 The mobile hanging basket for high-altitude construction of the present invention Figure 1 Schematic diagram of the local structure from above;

[0021] Figure 3 This is a schematic diagram of the structure of the mobile hanging basket for high-altitude construction of the present invention arranged around the edge of the atrium;

[0022] Figure 4 This is a schematic diagram of a partial three-dimensional structure of a mobile hanging basket for high-altitude construction according to the present invention;

[0023] Figure 5 The mobile hanging basket for high-altitude construction of the present invention Figure 4 Schematic diagram of the cross-sectional structure in the center front view;

[0024] Figure 6 The mobile hanging basket for high-altitude construction of the present invention Figure 5 Schematic diagram of the three-dimensional structure of the middle fastening plate assembly;

[0025] Figure 7 The mobile hanging basket for high-altitude construction of the present invention Figure 5 A magnified schematic diagram of the structure in the middle;

[0026] Figure 8 This is a structural diagram of the locking mechanism in the mobile hanging basket for high-altitude construction of the present invention;

[0027] Figure 9 The mobile hanging basket for high-altitude construction of the present invention Figure 8 A magnified schematic diagram of the structure B in the middle.

[0028] Description of Reference Numerals

[0029] I-beam 1, bolt 2, atrium edge 3, pulley assembly 4, pulley body 41, rotating rod 42, high-strength rod 5, locking tube 51, high-strength rod body 52, hanging basket rope 6, hanging basket body 7, fastening mechanism 9, fastening screw 91, fastening screw hole 92, rotating shaft 93, fastening plate assembly 94, upper fastening plate 941, lower fastening plate 942, elastic connector 943, contact plate 944, movable groove 95, guide telescopic assembly 96, guide telescopic rod 961, guide telescopic tube 962, guide telescopic spring 963, locking mechanism 10, L-shaped rod 101, locking plate 102, inclined groove 103. DETAILED DESCRIPTION

[0030] In order to make the purpose, technical solutions and advantages of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention. Unless otherwise defined, the technical terms or scientific terms used herein should be the common meanings understood by people with ordinary skills in the field to which the present invention belongs. The words "including" and similar words used in this article mean that the elements or objects appearing before the word cover the elements or objects listed after the word and their equivalents, without excluding other elements or objects.

[0031] In view of the problems existing in the prior art, the embodiments of the present invention provide a mobile hanging basket for high-altitude construction, such as Figure 1 As shown, the mobile hanging basket for high-altitude construction includes an I-beam 1, which is fixed to the edge 3 of the atrium by a number of bolts 2. A high-strength rod 5 is movably provided on the I-beam 1, and a winding assembly (not shown) is provided on the high-strength rod 5. A hanging basket rope 6 is wound around the winding assembly, and the lower end of the hanging basket rope 6 is connected to the hanging basket body 7. During operation, after the first decoration position is completed, the hanging basket body 7 is dropped to the ground, and then the high-strength rod 5 is driven to move on the I-beam 1 to the second decoration position, and then the hanging basket body 7 is lifted so that the hanging basket body 7 rises to the second decoration position.

[0032] In this embodiment, the I-beam 1 serves as a movable track, and the high-strength rod 5 can flexibly move on the track, allowing the hanging basket body 7 to quickly switch construction positions, greatly improving construction efficiency. At the same time, the I-beam 1 has high structural stability, providing reliable support for the hanging basket and ensuring construction safety.

[0033] In one example, the I-beam 1 can be arranged in a circle along the edge 3 of the atrium, such as Figure 3 shown.

[0034] Specifically, if Figure 2 As shown, the high-strength rod 5 includes a snap-fitting tube 51 and a high-strength rod body 52. ​​The snap-fitting tube 51 is a U-shaped structure, and the snap-fitting tube 51 is movably snap-fitted to the outside of the I-beam 1. Several high-strength rod bodies 52 are provided on the outer wall of the snap-fitting tube 51, and the winding assembly is provided on the high-strength rod body 52.

[0035] During operation, the cooperation between the buckle tube 51 and the I-beam 1 enables the high-strength rod 5 to slide stably on the I-beam 1. At the same time, the U-shaped buckle tube 51 can effectively prevent the high-strength rod 5 from derailing during movement, ensuring the stability and safety of the hanging basket.

[0036] In one embodiment, Figure 1 and Figure 4 As shown, the mobile hanging basket for high-altitude construction also includes a pulley assembly 4, which is used to support the high-strength rod 5 to slide on the I-beam 1. The pulley assembly 4 includes a pulley body 41 and a rotating rod 42. The pulley body 41 is arranged to abut against the lower end surface of the upper transverse section of the I-beam 1. The pulley body 41 is fixedly sleeved on the outside of the rotating rod 42, and the rotating rod 42 is rotatably set on the inner side wall of the locking cylinder 51. There are several pulley assemblies 4, and the several pulley assemblies 4 are divided into two groups. The two groups of pulley assemblies 4 are symmetrically arranged about the vertical center line of the I-beam 1.

[0037] The setting of the pulley assembly 4 in this embodiment significantly reduces the friction force when the high-strength rod 5 slides on the I-beam 1, making the movement of the high-strength rod 5 smoother. At the same time, the symmetrically arranged pulley assembly 4 can ensure the balance of the high-strength rod 5 during the movement, further improving the stability of the hanging basket.

[0038] In one embodiment, the winding assembly includes a driving motor (not shown), which is fixedly connected to the high-strength rod body 52, and also includes a winding shaft (not shown), which is fixedly sleeved on the driving end of the driving motor, and the hanging basket rope 6 is wound around the winding shaft.

[0039] During operation, the driving motor controls the retraction and extension of the hanging basket rope 6 through the winding shaft, thereby realizing the lifting and lowering of the hanging basket body 7. This electric drive mode is not only simple to operate, but also can accurately control the height of the hanging basket, improving the flexibility and safety of construction.

[0040] In one embodiment, the mobile hanging basket for high-altitude construction further includes a pushing assembly (not shown), the pushing assembly including a pushing motor (not shown), the pushing motor being fixedly connected to the outer wall of the locking cylinder 51, and a pushing gear (not shown) being fixedly connected to the driving end of the pushing motor, the pushing gear being movably inserted into a through hole (not shown) provided on the locking cylinder 51, the pushing gear being engaged with a spur rack (not shown), and the spur rack being fixedly connected to the side wall of the I-beam 1.

[0041] In this embodiment, the pushing assembly drives the engagement of the gear and the rack through the motor to realize the movement of the high-strength rod 5 on the I-beam 1. This electric drive method not only improves the movement efficiency, but also reduces the error of manual operation, further improving the accuracy and safety of construction.

[0042] In one embodiment, Figure 4 and Figure 5As shown, the mobile hanging basket for high-altitude construction also includes a fastening mechanism 9, which is used to lock the locking tube 51 and the I-beam 1 together during construction. The fastening mechanism 9 includes a fastening screw hole 92 opened on the top plate of the locking tube 51, and a fastening screw 91 is inserted into the inner thread of the fastening screw hole 92. The lower end of the fastening screw 91 is connected to a rotating shaft 93, and the rotating shaft 93 is rotatably set on the fastening plate assembly 94. The fastening plate assembly 94 is movably set in a movable groove 95, and the movable groove 95 is opened on the inner top wall of the locking tube 51.

[0043] During the construction process, the fastening mechanism 9 locks the buckle tube 51 and the I-beam 1 together through the fastening screw 91 and the fastening plate assembly 94, preventing the high-strength rod 5 from moving during the construction process and ensuring the stability of the construction. At the same time, the adjustability of the fastening mechanism 9 enables the high-strength rod 5 to be quickly unlocked when it needs to be moved. Specifically, when the hanging basket body 7 moves to the first decoration position or the second decoration position, the fastening screw 91 is screwed. Due to the presence of the fastening screw hole 92, the fastening screw 91 will move downward. The downward movement of the fastening screw 91 will push the fastening plate assembly 94 to fit the upper end face of the I-beam 1 through the rotating shaft 93. In this way, the buckle tube 51 and the I-beam 1 can be locked together through the friction generated between the two when they collide.

[0044] In one example, the fastening plate assembly 94 is a disc-shaped structure, such as Figure 6 shown.

[0045] In one embodiment, Figure 7 As shown, the fastening mechanism 9 also includes a guide telescopic assembly 96 for limiting the movement of the fastening plate assembly 94 only in the vertical direction. The guide telescopic assembly 96 includes a guide telescopic rod 961 fixedly connected to the top wall of the movable groove 95, and a guide telescopic cylinder 962 movably sleeved outside the guide telescopic rod 961. The guide telescopic cylinder 962 is fixedly connected to the upper end surface of the fastening plate assembly 94 and also includes a guide telescopic spring 963 wound around the outside of the guide telescopic rod 961. The two ends of the guide telescopic spring 963 are respectively fixedly connected to the side wall of the guide telescopic rod 961 and the outer side wall of the guide telescopic cylinder 962.

[0046] In this embodiment, the guide telescopic assembly 96 effectively limits the movement direction of the fastening plate assembly 94, ensuring that it moves only in the vertical direction, thereby preventing the fastening mechanism 9 from failing due to lateral forces. At the same time, the guide telescopic spring 963 can provide a certain elastic buffer, further improving the stability and reliability of the fastening mechanism 9.

[0047] In one embodiment, Figure 8 and Figure 9As shown, the fastening plate assembly 94 includes an upper fastening plate 941 connected to the rotating shaft 93, and an elastic connecting member 943 connected to the lower end surface of the upper fastening plate 941, and the lower end of the elastic connecting member 943 is fixedly connected to the upper end surface of the lower fastening plate 942, wherein the number of the elastic connecting members 943 is set to be several, and the size of the lower fastening plate 942 is smaller than the size of the upper fastening plate 941.

[0048] In this embodiment, the upper fastening plate 941 and the lower fastening plate 942 are connected by an elastic connector 943. This structure can provide a certain elastic buffer during fastening, preventing damage to the I-beam 1 or the buckle 51 due to excessive fastening force. At the same time, fastening plates of different sizes can better fit the shape of the I-beam 1, improving the fastening effect.

[0049] In one example, the elastic connecting member 943 can be a spring or an elastic telescopic structure, including an elastic telescopic rod, an elastic telescopic tube movably mounted outside the elastic telescopic rod, and an elastic telescopic spring wound around the outside of the elastic telescopic rod, wherein the two ends of the elastic telescopic spring are respectively fixedly connected to the side wall of the elastic telescopic rod and the outer side wall of the elastic telescopic tube.

[0050] In one embodiment, Figure 8 and Figure 9 As shown, a contact plate 944 is provided between the upper fastening plate 941 and the lower fastening plate 942 , and the contact plate 944 is fixedly connected to the lower end surface of the upper fastening plate 941 .

[0051] In this embodiment, the abutment plate 944 can further enhance the stability of the fastening plate assembly 94 , prevent relative displacement between the upper fastening plate 941 and the lower fastening plate 942 during the fastening process, and ensure the reliability of the fastening mechanism 9 .

[0052] In one embodiment, Figure 8 and Figure 9 As shown, the mobile hanging basket for high-altitude construction also includes a locking mechanism 10, and the number of the locking mechanisms 10 is set to be several, and the several locking mechanisms 10 are divided into two groups. The two groups of locking mechanisms 10 are symmetrically arranged about the vertical center line of the I-beam 1, and the two groups of locking mechanisms 10 fix the I-beam 1 and the locking tube 51 together by buckling from both sides of the I-beam 1. The locking mechanism 10 includes an L-shaped rod 101 fixedly connected to the lower end face of the upper fastening plate 941, and a locking plate 102 is fixedly connected to the lower end face of the L-shaped rod 101, and the locking plate 102 is provided with an inclined groove 103 on the side facing the I-beam 1.

[0053] In this embodiment, the locking mechanism 10 is fastened from both sides of the I-beam 1 through the L-shaped rod 101 and the locking plate 102. The design of the inclined groove 103 enables the locking plate 102 to achieve a self-locking function on the I-beam 1, further enhancing the connection strength between the I-beam 1 and the locking tube 51, and ensuring stability during the construction process. Specifically, when the lower fastening plate 942 abuts against the upper end surface of the I-beam 1, the upper fastening plate 941 will continue to move downward relative to the lower fastening plate 942 until the abutting plate 944 abuts against the upper end surface of the lower fastening plate 942 and stops. When the upper fastening plate 941 moves downward relative to the lower fastening plate 942, the upper fastening plate 941 will move downward with the L-shaped rod 101. The downward movement of the L-shaped rod 101 will bring the locking plate 102 downward and cause the locking plate 102 to fill the gap between the I-beam 1 and the wall of the snap-fit ​​tube 51, so that the gap is filled, thereby locking the I-beam 1 and the snap-fit ​​tube 51 together.

[0054] It is worth noting that the presence of the inclined groove 103 can not only fill the gap, but also make the device applicable to I-beams 1 and locking cylinders 51 of different sizes.

[0055] While embodiments of the present invention have been described in detail above, it will be apparent to those skilled in the art that various modifications and variations of these embodiments are possible. However, it should be understood that such modifications and variations are within the scope and spirit of the present invention. Furthermore, the invention described herein is susceptible to other embodiments and may be practiced or implemented in a variety of ways.

Claims

1. A mobile hanging basket for high-altitude construction, characterized in that: The invention comprises an I-beam (1), wherein the I-beam (1) is fixed to the edge of the atrium (3) by a plurality of bolts (2), a high-strength rod (5) is movably provided on the I-beam (1), a winding assembly is provided on the high-strength rod (5), a hanging basket rope (6) is wound around the winding assembly, and the lower end of the hanging basket rope (6) is connected to the hanging basket body (7). When working, after the first decoration position is completed, the hanging basket body (7) is dropped to the ground, and then the high-strength rod (5) is driven to move to the second decoration position on the I-beam (1), and then the hanging basket body (7) is lifted up so that the hanging basket body (7) rises to the second decoration position; the high-strength rod (5) comprises a buckle tube ( 51) and a high-strength rod body (52), the buckling cylinder (51) is a U-shaped structure, and the buckling cylinder (51) is movably buckled outside the I-beam (1), a plurality of high-strength rod bodies (52) are provided on the outer wall of the buckling cylinder (51), and the winding assembly is provided on the high-strength rod body (52); it also includes a pulley assembly (4), the pulley assembly (4) is used to support the high-strength rod (5) to slide on the I-beam (1), the pulley assembly (4) includes a pulley body (41) and a rotating rod (42), the pulley body (41) is arranged to abut against the lower end surface of the upper transverse section of the I-beam (1), and the pulley body (41) is fixedly sleeved on the rotating rod (4 2), the rotating rod (42) is rotatably arranged on the inner side wall of the buckling cylinder (51), and the pulley assemblies (4) are provided in plurality, and the plurality of pulley assemblies (4) are divided into two groups, and the two groups of pulley assemblies (4) are symmetrically arranged about the vertical center line of the I-beam (1); it also includes a fastening mechanism (9), the fastening mechanism (9) is used to lock the buckling cylinder (51) and the I-beam (1) together during construction, and the fastening mechanism (9) includes a fastening screw hole (92) provided on the top plate of the buckling cylinder (51), the fastening screw hole (92) is internally threaded with a fastening screw (91), and the lower end of the fastening screw (91) is connected to a rotating shaft (93). The rotating shaft (93) is rotatably arranged on the fastening plate assembly (94), and the fastening plate assembly (94) is movably arranged in the movable groove (95), and the movable groove (95) is provided on the inner top wall of the buckle cylinder (51); the fastening plate assembly (94) includes an upper fastening plate (941) connected to the rotating shaft (93), and an elastic connecting member (943) connected to the lower end surface of the upper fastening plate (941), and the lower end of the elastic connecting member (943) is fixedly connected to the upper end surface of the lower fastening plate (942), wherein the number of the elastic connecting members (943) is set to be several, and the size of the lower fastening plate (942) is smaller than the size of the upper fastening plate (941);A contact plate (944) is provided between the upper fastening plate (941) and the lower fastening plate (942), and the contact plate (944) is fixedly connected to the lower end surface of the upper fastening plate (941); and further comprising a locking mechanism (10), wherein the number of the locking mechanisms (10) is set to be several, and the several locking mechanisms (10) are divided into two groups, and the two groups of the locking mechanisms (10) are symmetrically arranged about the vertical center line of the I-beam (1), and the two groups of the locking mechanisms (10) are arranged to be symmetrical about the vertical center line of the I-beam (1). The locking mechanism (10) fixes the I-beam (1) and the locking cylinder (51) together by performing a buckling action from both sides of the I-beam (1), wherein the locking mechanism (10) comprises an L-shaped rod (101) fixedly connected to the lower end surface of the upper fastening plate (941), a locking plate (102) fixedly connected to the lower end surface of the L-shaped rod (101), and an inclined groove (103) is formed on the side of the locking plate (102) facing the I-beam (1).

2. The mobile hanging basket for high-altitude construction according to claim 1, characterized in that: The winding assembly comprises a driving motor fixedly connected to the high-strength rod body (52), and a winding shaft fixedly sleeved on the driving end of the driving motor, and the hanging basket rope (6) is wound around the winding shaft.

3. The mobile hanging basket for high-altitude construction according to claim 2, characterized in that: The push assembly further comprises a push motor, the push motor being fixedly connected to the outer wall of the buckle cylinder (51), a push gear being fixedly connected to the driving end of the push motor, the push gear being movably inserted into a through hole provided on the buckle cylinder (51), the push gear being meshed with a spur rack, and the spur rack being fixedly connected to the side wall of the I-beam (1).

4. The mobile hanging basket for high-altitude construction according to claim 3, characterized in that: The fastening mechanism (9) further includes a guide telescopic assembly (96) for limiting the fastening plate assembly (94) to move only in the vertical direction, the guide telescopic assembly (96) including a guide telescopic rod (961) fixedly connected to the top wall of the movable groove (95), and a guide telescopic cylinder (962) movably sleeved outside the guide telescopic rod (961), the guide telescopic cylinder (962) being fixedly connected to the upper end surface of the fastening plate assembly (94), and also including a guide telescopic spring (963) wound around the outside of the guide telescopic rod (961), the two ends of the guide telescopic spring (963) being fixedly connected to the side wall of the guide telescopic rod (961) and the outer side wall of the guide telescopic cylinder (962), respectively.

Citation Information

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