Hanging basket type lifting machine for engineering construction

By designing a lifting motor, adjustment screw, lifting sleeve, stable wire and auxiliary winder, the problems of height fixation, long installation and disassembly time and shaking and rotating of the hanging basket in the prior art are solved, and the height flexibility adjustment and stability improvement are achieved.

CN120081302AInactive Publication Date: 2025-06-03CHINA UTONE CONSTR CONSULTING CO LTD
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Patent Information

Application Number
CN202411085476.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-06-03
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The height of the existing hanging basket type crane is difficult to adjust, and it takes a long time to install and disassemble, and the hanging basket is easily shaken and rotated when suspended, which poses safety hazards.

Method used

A hanging basket-type crane including a lifting motor, adjustment screw, lift sleeve, stabilizing steel wire and auxiliary winder is designed. The lifting motor drives the adjustment screw to control the lift sleeve to achieve height adjustment; at the same time, the stabilizing steel wire and auxiliary steel wire rope are adjusted through the winder to avoid shaking and rotating the hanging basket.

Benefits of technology

It realizes flexible adjustment of the height of the hanging basket, shortens the installation and disassembly time, improves the stability of the hanging basket, avoids shaking and rotation problems, and enhances safety.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a hanging basket type lifting machine for engineering construction. The hanging basket type lifting machine comprises a main body seat, a lifting motor is installed on the inner side of the main body seat, an adjusting screw rod is arranged at the output end of the lifting motor, a lifting sleeve is arranged on the outer side of the adjusting screw rod, a fixing plate is installed on the top of the lifting sleeve, and four sets of outward extending rods are installed on the outer side of the fixing plate. The device has the beneficial effects that the lifting sleeve and the stabilizing steel wire are arranged, the adjusting screw rod at the output end can be driven by the lifting motor to rotate, the lifting sleeve can be controlled to extend outwards in the rotating process, and after extending outwards, a suspension structure at the upper end is controlled to adjust the height; when the height is adjusted, the stable motor can release the stable steel wire in the winder, so that the stable steel wire can always provide tensile force, the problem that a suspension shakes after lifting adjustment is avoided, and the height can be flexibly adjusted by utilizing the structure to adapt to different requirements.
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Description

Technical Field

[0001] The present invention relates to the technical field of engineering construction, and specifically relates to a hanging basket type hoist for engineering construction. Background Art

[0002] In engineering construction, since building materials need to be transported from a low place to a high place, a hoist is usually used for material transportation. The height of the hanging basket structure at the end can be adjusted by using a winch and a steel wire rope. The inside of the hanging basket can be used to store building materials, effectively improving the efficiency of engineering construction. However, the height of the existing hanging basket type hoist is fixed and needs to be disassembled, otherwise the height cannot be directly adjusted, which cannot meet different requirements. At the same time, when installing the existing main hoist device, multiple sets of bolt structures are required for fixation, resulting in a long time for disassembly and installation. And when the hanging basket is suspended, only a single set of steel wire rope can be used for suspension, and the hanging basket is prone to shaking and rotation during suspension, posing a great safety hazard. Summary of the Invention

[0003] The purpose of the present invention is to provide a hanging basket type hoist for engineering construction to solve the problems raised in the above background art.

[0004] To achieve the above purpose, the present invention provides the following technical solution: A hanging basket type hoist for engineering construction, including a main body seat, an elevating motor is installed inside the main body seat, and an adjusting screw rod is arranged at the output end of the elevating motor. An elevating sleeve is arranged outside the adjusting screw rod, and a fixing plate is installed at the top of the elevating sleeve. Four groups of outrigger rods are installed outside the fixing plate, and a stabilizing steel wire is arranged at the bottom of the end of the outrigger rod. A stabilizing reel is arranged at the input end of the stabilizing steel wire. A welding frame is installed at the bottom of the main body seat, and a bidirectional screw rod is arranged inside the welding frame. Two groups of sliding limit brackets are arranged outside the bidirectional screw rod. A pre-embedded seat is arranged at the bottom of the welding frame, and a number of pre-embedded columns are arranged at the top of the pre-embedded seat. A welding plate is installed at the top of the pre-embedded column. The pre-embedded column and the welding plate are located inside the sliding limit bracket. A positioning chassis is installed at the top of the fixing plate, and a rotating frame is arranged outside the positioning chassis. Suspension steel frames are installed on both sides of the rotating frame, and two fixing rings are installed at the bottom of the suspension steel frame. An auxiliary steel wire rope is installed at the bottom of the fixing ring, and an auxiliary reel is arranged at the input end of the auxiliary steel wire rope. A hanging basket is installed on the right side of the auxiliary reel.

[0005] Preferably, a limit frame is arranged outside the elevating sleeve, and a number of main steel frames are installed at the bottom of the limit frame. The main steel frames are located on the top of the main body seat.

[0006] Preferably, an adjusting screw head is installed at the right end of the bidirectional screw. Two groups of buckle grooves are formed on one side of the sliding limit bracket, and the buckle grooves are located outside the embedded column. A positioning plate is installed at the bottom of the welding frame.

[0007] Preferably, a positioning groove is formed in the middle of the embedded seat, and the positioning groove is located outside the positioning plate.

[0008] Preferably, a rotating sleeve is arranged at the end of the outrigger, and the rotating sleeve is located on the top of the stabilizing steel wire. A stabilizing motor is arranged at the input end of the stabilizing winder, and a positioning frame is installed inside the stabilizing winder. The positioning frame is located outside the main steel frame.

[0009] Preferably, a rotating motor is embedded inside the upper end of the rotating frame, and a rotating shaft is arranged at the output end of the rotating motor. A driving gear is arranged on the outer side of the rotating shaft. A transmission gear is arranged at the top inside the rotating frame, and the transmission gear is located on one side of the driving gear. Tooth grooves are formed on the inner wall of the fitting of the positioning chassis, and the tooth grooves are located outside the transmission gear. Guide wheel brackets are installed on both sides of the upper end of the rotating frame and on the outer side of the right end of the suspension steel frame. A counterweight frame is installed at the left end of the suspension steel frame.

[0010] Preferably, a number of counterweight blocks are arranged inside the counterweight frame, and a welding bracket is installed at the top of the counterweight frame. A fixing bracket is installed at the top of the welding bracket, and winding motors are arranged on the front and back of the fixing bracket. A winding roller is arranged at the output end of the winding motor, and a suspension steel wire rope is wound around the outer side of the winding roller. The suspension steel wire rope is located inside the guide wheel bracket.

[0011] Preferably, four groups of connecting steel wires are installed at the top of the hanging basket, and a fixed end is installed at the top of the connecting steel wires. The fixed end is located at the end of the suspension steel wire rope.

[0012] Preferably, an auxiliary motor is arranged in the middle of the left end of the hanging basket, and a rotating rod is arranged at the output end of the auxiliary motor. The rotating rod is located inside the auxiliary winder.

[0013] Preferably, it includes the following steps: S1. First, embed the embedded seat in the concrete, and then splice the welding frame connected to the main seat and the embedded seat. During the splicing process, the positioning plate will be inserted into the inside of the positioning groove. After insertion and fixation, use tools to control the rotation of the adjusting screw head at the right end. During the rotation process, the bidirectional screw at the left end will be controlled to rotate, thereby controlling the two sliding limit brackets to perform horizontal outward adjustment along the inside. During the outward adjustment process, the buckle grooves will be on the outside of the embedded column and the welding plate. Continuing to move can splice and limit to keep the welding frame and the embedded seat in a stable connection state; S2. Then, according to the requirements, use the external control device to control the operation of the lifting motor. The lifting motor will drive the adjusting screw rod to rotate. During the rotation process, the threaded structure will drive the outer lifting sleeve to adjust the height. During the adjustment, the stable winder will be adjusted synchronously. By rotating each group of stable motors to release the stable steel wire, the outrigger can be kept in a horizontal state. During the rising process, the outer stable steel wire will provide tension to prevent the top structure from shaking; S3. Then, use the rotating motor to control the rotation of the rotating shaft. During the rotation process, the driving gear will drive the outer transmission gear to rotate synchronously. During the rotation process, the top rotating frame and the external structure will be driven to rotate along the inner side of the tooth groove. Then, use the winding motor to drive the winding roller to rotate. During the rotation, the suspension steel wire rope will be controlled to be wound and released. During the winding and releasing process, the suspension steel wire rope will be stably wound and released inside the guide wheel bracket, so as to drive the height adjustment of the end basket; S4. Finally, when the basket is adjusted in lifting, in order to maintain balance, the auxiliary motor will control the rotation of the rotating rod. During the rotation, the auxiliary winders at both ends will release the internal auxiliary steel wire ropes to extend. Since the upper fixing ring is connected to the suspension steel frame, the auxiliary steel wire ropes can be effectively used to limit the basket and prevent the basket from shaking and tipping over.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: The present invention is provided with a lifting sleeve and a stable steel wire. The lifting motor can drive the adjusting screw rod at the output end to rotate. During the rotation process, the lifting sleeve can be controlled to expand. After the expansion, the suspension structure at the upper end will be controlled to adjust the height. While the height is being adjusted, the stable motor can release the stable steel wire inside the winder, so as to keep the stable steel wire always providing tension, thus avoiding the problem of shaking of the suspension after the lifting adjustment. With this structure, the height can be adjusted flexibly to meet different requirements; By providing a bidirectional screw rod and a sliding limit bracket, the welding frame can be connected to the main body seat by using the welding frame. The sliding limit bracket can be driven to expand and adjust by using the bidirectional screw rod. During the adjustment process, the buckle groove will be spliced with the embedded column. After the splicing, effective limitation can be achieved. By pre-embedding the embedded seat in advance, the welding frame can be effectively spliced with the embedded seat, so as to realize the quick splicing and installation of the overall lifting device; By providing an auxiliary winder and an auxiliary steel wire rope, the auxiliary steel wire rope can be connected to the auxiliary winder by using the fixing ring. The auxiliary motor can control the rotation of the rotating rod at the output end to adjust. During the rotation process, the two groups of auxiliary winders will be wound and released, and cooperate with the lifting adjustment of the basket. By pulling the two ends of the basket with the two groups of auxiliary steel wire ropes, the problem that the basket rotates along the middle suspension steel wire rope can be avoided, and the stability can be effectively maintained to avoid the problem of shaking and potential safety hazards. Description of the Drawings

[0015] Figure 1 is the structural schematic diagram of the present invention; Figure 2 is the structural schematic diagram of the main body seat of the present invention; Figure 3 is the structural schematic diagram of the guide wheel bracket of the present invention; Figure 4 is the structural schematic diagram of the suspension steel wire rope of the present invention; Figure 5 is the structural schematic diagram of the outrigger of the present invention; Figure 6 is the sectional schematic diagram of the positioning chassis of the present invention; Figure 7 is the structural schematic diagram of the hanging basket of the present invention; Figure 8 is the structural schematic diagram of the sliding limit bracket of the present invention.

[0016] In the figure: 1. Main body seat; 101. Lifting motor; 102. Adjusting screw; 103. Lifting sleeve; 104. Limit frame; 105. Main body steel frame; 2. Sliding limit bracket; 201. Welding frame; 202. Adjusting screw head; 203. Bidirectional screw; 204. Snap groove; 205. Positioning plate; 3. Embedded seat; 301. Positioning groove; 302. Embedded column; 303. Welding plate; 4. Stabilizing steel wire; 401. Fixed plate; 402. Outrigger; 403. Rotating sleeve; 404. Stabilizing winder; 405. Stabilizing motor; 406. Positioning frame; 5. Rotating frame; 501. Positioning chassis; 502. Rotating motor; 503. Rotating shaft; 504. Driving gear; 505. Driven gear; 506. Tooth groove; 507. Guide wheel bracket; 508. Suspension steel frame; 6. Suspension steel wire rope; 601. Counterweight frame; 602. Counterweight block; 603. Welding bracket; 604. Fixed bracket; 605. Winding motor; 606. Winding roller; 7. Hanging basket; 701. Fixed end; 702. Connecting steel wire; 703. Auxiliary motor; 704. Rotating rod; 705. Auxiliary winder; 706. Auxiliary steel wire rope; 707. Fixed ring. Detailed implementation manners

[0017] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the specification of the embodiments of the present application. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. Usually, the components of the embodiments of the present application described and illustrated herein can be arranged and designed in various different configurations.

[0018] Accordingly, the following detailed description of the embodiments of the present application provided in the accompanying drawings is not intended to limit the scope of the claimed present application, but merely represents selected embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative efforts fall within the scope of protection of the present application.

[0019] It should be noted that like reference numerals and letters denote like items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.

[0020] It should be noted that in this document, the term "comprising", "including" or any other variation thereof is intended to cover a non-exclusive inclusion, such that an article or device comprising a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising one..." does not exclude the presence of additional identical elements in the process, method, article or device comprising the element.

[0021] In the description of the present application, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship in which the product of this application is customarily placed during use. It is only for the convenience of describing the present application 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 thus should not be construed as a limitation of the present application.

[0022] In the description of the present application, it should also be noted that unless otherwise clearly specified and limited, the terms "arranged", "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.

[0023] The following will, with reference to the accompanying drawings, elaborate on some embodiments of the present application. Without conflict, the following embodiments and the features in each embodiment can be combined with each other.

[0024] Please refer to Figure 1-8, the present invention provides a technical solution: a hanging basket type hoist for engineering construction, including a main body base 1, an elevating motor 101 is installed inside the main body base 1, and an adjusting screw 102 is arranged at the output end of the elevating motor 101. An elevating sleeve 103 is arranged outside the adjusting screw 102, and a fixing plate 401 is installed at the top of the elevating sleeve 103. Four groups of outrigger rods 402 are installed outside the fixing plate 401, and a stabilizing steel wire 4 is arranged at the bottom of the end of the outrigger rod 402. A stabilizing reel 404 is arranged at the input end of the stabilizing steel wire 4. A welding frame 201 is installed at the bottom of the main body base 1, and a bidirectional screw 203 is arranged inside the welding frame 201. Two groups of sliding limit brackets 2 are arranged outside the bidirectional screw 203. A pre-embedded base 3 is arranged at the bottom of the welding frame 201, and a number of pre-embedded columns 302 are arranged at the top of the pre-embedded base 3. A welding disc 303 is installed at the top of the pre-embedded column 302. The pre-embedded column 302 and the welding disc 303 are located inside the sliding limit bracket 2. A positioning chassis 501 is installed at the top of the fixing plate 401, and a rotating frame 5 is arranged outside the positioning chassis 501. Suspension steel frames 508 are installed on both sides of the rotating frame 5, and two groups of fixing rings 707 are installed at the bottom of the suspension steel frame 508. An auxiliary steel wire rope 706 is installed at the bottom of the fixing ring 707, and an auxiliary reel 705 is arranged at the input end of the auxiliary steel wire rope 706. A hanging basket 7 is installed on the right side of the auxiliary reel 705.

[0025] Through the above technical solution, a lifting sleeve 103 and a stabilizing steel wire 4 are provided. By using the lifting motor 101, the adjusting screw rod 102 at the output end can be driven to rotate. During the rotation process, the lifting sleeve 103 can be controlled to expand outward. After the expansion, the suspension structure at the upper end can be controlled to adjust the height. While adjusting the height, the stabilizing motor 405 can release the stabilizing steel wire 4 inside the winder, so as to keep the stabilizing steel wire 4 always providing tension, thereby avoiding the problem of shaking of the suspension after the lifting adjustment. With this structure, the height can be adjusted flexibly to meet different requirements. By providing a bidirectional screw rod 203 and a sliding limit bracket 2, the welding frame 201 can be connected to the main body seat 1. By using the bidirectional screw rod 203, the sliding limit bracket 2 can be driven to expand and adjust. During the adjustment process, the buckle groove 204 will be spliced with the embedded column 302. After the splicing, effective limitation can be achieved. By pre-embedding the embedded seat 3 in advance, the welding frame 201 can be effectively spliced with the embedded seat 3, so as to realize the rapid splicing and installation of the overall lifting device. By providing an auxiliary winder 705 and an auxiliary steel wire rope 706, the auxiliary steel wire rope 706 can be connected to the auxiliary winder 705 by using the fixing ring 707. The auxiliary motor 703 can control the rotation rod 704 at the output end to rotate and adjust. During the rotation process, the two groups of auxiliary winders 705 will be driven to wind and unwind, and cooperate with the lifting basket 7 to adjust the lifting. By using the two groups of auxiliary steel wire ropes 706 to pull the end of the lifting basket 7, the problem that the lifting basket 7 rotates along the middle suspension steel wire rope 6 can be avoided, effectively maintaining stability and avoiding the problem of shaking and potential safety hazards.

[0026] Further, a limit frame 104 is arranged on the outer side of the lifting sleeve 103, and a plurality of groups of main body steel frames 105 are installed at the bottom of the limit frame 104. The main body steel frames 105 are located on the top of the main body seat 1.

[0027] Through the above technical solution, the limit frame 104 can provide limitation for the inner lifting sleeve 103, and the main body steel frames 105 can provide support for the overall structure at the top.

[0028] Further, an adjusting screw head 202 is installed at the right end of the bidirectional screw rod 203. Two groups of buckle grooves 204 are opened on one side of the sliding limit bracket 2, and the buckle grooves 204 are located on the outer side of the embedded column 302. A positioning plate 205 is installed at the bottom of the welding frame 201.

[0029] Through the above technical solution, the adjusting screw head 202 can drive the bidirectional screw rod 203 to rotate and adjust by cooperating with external tools. The buckle grooves 204 are used to limit the outside of the embedded column 302 and the welding plate 303, and the positioning plate 205 is used to insert into the inner side of the positioning groove 301 to increase stability.

[0030] Further, a positioning groove 301 is formed in the middle of the embedded seat 3, and the positioning groove 301 is located outside the positioning plate 205.

[0031] Through the above technical solution, the positioning groove 301 is used to provide an installation position for the positioning plate 205.

[0032] Further, a rotating sleeve 403 is provided at the end of the abduction rod 402, and the rotating sleeve 403 is located on the top of the stabilizing steel wire 4. A stabilizing motor 405 is provided at the input end of the stabilizing reel 404, and a positioning frame 406 is installed inside the stabilizing reel 404. The positioning frame 406 is located outside the main body steel frame 105.

[0033] Through the above technical solution, the rotating sleeve 403 can assist in flipping to provide the ability to fine-tune the angle for the stabilizing steel wire 4, and the positioning frame 406 can be connected to the main body steel frame 105.

[0034] Further, a rotating motor 502 is embedded inside the upper end of the rotating frame 5, and a rotating shaft 503 is provided at the output end of the rotating motor 502. A driving gear 504 is provided on the outside of the rotating shaft 503. A transmission gear 505 is provided at the top inside the rotating frame 5, and the transmission gear 505 is located on one side of the driving gear 504. Tooth grooves 506 are formed in the inner wall of the fitting of the positioning chassis 501, and the tooth grooves 506 are located outside the transmission gear 505. Guide wheel brackets 507 are installed on both sides of the upper end of the rotating frame 5 and on the outside of the right end of the suspension steel frame 508. A counterweight frame 601 is installed at the left end of the suspension steel frame 508.

[0035] Through the above technical solution, when the rotating motor 502 is powered on, it can drive the rotating shaft 503 to rotate. After rotation, it can drive the driving gear 504 to rotate and adjust, and engage and control the transmission gear 505 to rotate synchronously, so as to control the overall structure to rotate along the inside of the tooth grooves 506, facilitating the steering adjustment of the position of the end hanging basket 7. The guide wheel brackets 507 can provide guidance and support for the suspension steel wire rope 6.

[0036] Further, a number of counterweight blocks 602 are provided inside the counterweight frame 601, and a welding bracket 603 is installed on the top of the counterweight frame 601. A fixing bracket 604 is installed on the top of the welding bracket 603, and a winding motor 605 is provided on the front and back of the fixing bracket 604. A winding roller 606 is provided at the output end of the winding motor 605, and a suspension steel wire rope 6 is wound around the outside of the winding roller 606. The suspension steel wire rope 6 is located inside the guide wheel brackets 507.

[0037] Through the above technical solution, after the counterweight block 602 is inserted, it can provide counterweight to avoid the problem of tilting and tipping over. The welding bracket 603 can provide support for the fixed bracket 604 at the top through welding. The winding motor 605 can drive the inner winding roller 606 to rotate, and when rotating, it will control the retraction and release of the suspension steel wire rope 6 for adjustment.

[0038] Furthermore, four groups of connecting steel wires 702 are installed at the top of the hanging basket 7, and a fixed end 701 is installed at the top of the connecting steel wire 702. The fixed end 701 is located at the end of the suspension steel wire rope 6.

[0039] Through the above technical solution, the connecting steel wire 702 can connect the fixed end 701 and the hanging basket 7, so as to keep the suspension steel wire rope 6 at the top capable of controlling the height adjustment of the hanging basket 7.

[0040] Furthermore, an auxiliary motor 703 is arranged in the middle of the left end of the hanging basket 7, and a rotating rod 704 is arranged at the output end of the auxiliary motor 703. The rotating rod 704 is located inside the auxiliary winder 705.

[0041] Through the above technical solution, the auxiliary motor 703 can control the rotation adjustment of the rotating rod 704. After rotation, it will drive the retraction and release adjustment of the auxiliary steel wire rope 706 inside the auxiliary winder 705.

[0042] Furthermore, it includes the following steps: S1. First, embed the embedded seat 3 in the concrete, and then splice the welding frame 201 connected to the main body seat 1 with the embedded seat 3. During the splicing process, the positioning plate 205 will be inserted into the inner side of the positioning groove 301. After insertion and fixation, use tools to control the adjustment screw head 202 at the right end to rotate. During the rotation process, the bidirectional screw 203 at the left end will be controlled to rotate, so as to control the two groups of sliding limit brackets 2 to perform lateral outward expansion adjustment along the inner side. During the outward expansion process, the buckle groove 204 will be on the outer sides of the embedded column 302 and the welding disc 303. By continuously moving, the splicing can be restricted to keep the welding frame 201 and the embedded seat 3 in a stable connection state; S2. Then, use the external control device to control the operation of the lifting motor 101 according to the needs. The lifting motor 101 will drive the adjustment screw 102 to rotate. During the rotation process, the threaded structure will drive the outer lifting sleeve 103 to adjust the height. During the adjustment, the stable winder 404 will perform synchronous adjustment. By rotating and releasing the stable steel wire 4 through each stable motor 405, the outer expansion rod 402 can be kept in a horizontal state. During the rising process, the outer stable steel wire 4 will provide tension to avoid the shaking of the top structure; S3. Then, use the rotating motor 502 to control the rotation of the rotating shaft 503. During the rotation, the driving gear 504 will drive the outer transmission gear 505 to rotate synchronously. During the rotation, it will drive the top rotating frame 5 and the external structure to rotate along the inner side of the tooth groove 506. Then, use the winding motor 605 to drive the winding roller 606 to rotate. When rotating, it will control the retraction and release adjustment of the suspension steel wire rope 6. During the retraction and release process, the suspension steel wire rope 6 will be stably retracted and released inside the guide wheel bracket 507, thereby driving the height adjustment of the end hanging basket 7; S4. Finally, when the hanging basket 7 is lifted and lowered, in order to maintain balance, the auxiliary motor 703 will control the rotation of the rotating rod 704. When rotating, the auxiliary winding devices 705 at both ends release the internal auxiliary steel wire ropes 706 to extend. Since the upper fixing ring 707 is connected to the suspension steel frame 508, the auxiliary steel wire ropes 706 are effectively used to limit the hanging basket 7 to prevent the hanging basket 7 from shaking and tipping over.

[0043] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A hanging basket type crane for construction engineering, comprising a main body (1), characterized in that: A lifting motor (101) is installed on the inner side of the main body seat (1), and an adjusting screw (102) is arranged at the output end of the lifting motor (101), a lifting sleeve (103) is arranged on the outer side of the adjusting screw (102), and a fixing plate (401) is installed on the top of the lifting sleeve (103), four groups of extension rods (402) are installed on the outer side of the fixing plate (401), and a stabilizing steel wire (4) is arranged at the bottom of the end of the extension rod (402), and a stabilizing reel (404) is arranged at the input end of the stabilizing steel wire (4), a welding frame (201) is installed at the bottom of the main body seat (1), and a bidirectional screw (203) is arranged on the inner side of the welding frame (201), two groups of sliding limit brackets (2) are arranged on the outer side of the bidirectional screw (203), and a welding frame (201) is arranged at the bottom. An embedded seat (3) is provided, and a plurality of groups of embedded columns (302) are arranged on the top of the embedded seat (3), a welding plate (303) is installed on the top of the embedded column (302), the embedded column (302) and the welding plate (303) are located on the inner side of the sliding limit bracket (2), a positioning chassis (501) is installed on the top of the fixed plate (401), and a rotating frame (5) is arranged on the outer side of the positioning chassis (501), a suspension steel frame (508) is installed on both sides of the rotating frame (5), and two groups of fixing rings (707) are installed on the bottom of the suspension steel frame (508), an auxiliary steel wire rope (706) is installed on the bottom of the fixing ring (707), and an auxiliary reel (705) is arranged at the input end of the auxiliary steel wire rope (706), and a hanging basket (7) is installed on the right side of the auxiliary reel (705).

2. A hanging basket type crane for engineering construction according to claim 1, characterized in that: A limit frame (104) is arranged outside the lifting sleeve (103), and a plurality of groups of main steel frames (105) are installed at the bottom of the limit frame (104), wherein the main steel frames (105) are located at the top of the main seat (1).

3. A hanging basket type crane for engineering construction according to claim 1, characterized in that: An adjusting screw head (202) is installed at the right end of the bidirectional screw rod (203), two groups of buckle grooves (204) are opened on one side of the sliding limit bracket (2), and the buckle grooves (204) are located outside the embedded column (302), and a positioning plate (205) is installed at the bottom of the welding frame (201).

4. A hanging basket type crane for engineering construction according to claim 1, characterized in that: A positioning groove (301) is provided in the middle of the embedded seat (3), and the positioning groove (301) is located outside the positioning plate (205).

5. A hanging basket type crane for engineering construction according to claim 1, characterized in that: A rotating sleeve (403) is provided at the end of the extension rod (402), and the rotating sleeve (403) is located at the top of the stabilizing steel wire (4), a stabilizing motor (405) is provided at the input end of the stabilizing reel (404), and a positioning frame (406) is installed on the inner side of the stabilizing reel (404), and the positioning frame (406) is located on the outer side of the main steel frame (105).

6. A hanging basket type crane for engineering construction according to claim 1, characterized in that: A rotating motor (502) is embedded in the inner side of the upper end of the rotating frame (5), and a rotating shaft (503) is provided at the output end of the rotating motor (502), and a driving gear (504) is provided on the outer side of the rotating shaft (503). A transmission gear (505) is provided on the top of the inner side of the rotating frame (5), and the transmission gear (505) is located on one side of the driving gear (504). A tooth groove (506) is provided on the inner wall of the positioning chassis (501), and the tooth groove (506) is located on the outer side of the transmission gear (505). Guide wheel brackets (507) are installed on both sides of the upper end of the rotating frame (5) and on the outer side of the right end of the suspension steel frame (508), and a counterweight frame (601) is installed on the left end of the suspension steel frame (508).

7. A hanging basket type crane for engineering construction according to claim 6, characterized in that: A plurality of groups of counterweight blocks (602) are arranged on the inner side of the counterweight frame (601), and a welding bracket (603) is installed on the top of the counterweight frame (601), a fixed bracket (604) is installed on the top of the welding bracket (603), and a winding motor (605) is arranged on the front and back sides of the fixed bracket (604), a winding roller (606) is arranged at the output end of the winding motor (605), and a suspension steel wire rope (6) is wound around the outer side of the winding roller (606), and the suspension steel wire rope (6) is located on the inner side of the guide wheel bracket (507).

8. The hanging basket type crane for engineering construction according to claim 1, characterized in that: Four groups of connecting steel wires (702) are installed on the top of the hanging basket (7), and a fixed end (701) is installed on the top of the connecting steel wires (702), and the fixed end (701) is located at the end of the suspension steel wire rope (6).

9. A hanging basket type crane for engineering construction according to claim 1, characterized in that: An auxiliary motor (703) is provided in the middle of the left end of the hanging basket (7), and a rotating rod (704) is provided at the output end of the auxiliary motor (703), wherein the rotating rod (704) is located on the inner side of the auxiliary reel (705).

10. A method for using a hanging basket type crane for engineering construction according to any one of claims 1 to 9, characterized in that: The following steps are involved: S1. First, the embedded seat (3) is embedded in the concrete, and then the welding frame (201) connected to the main seat (1) and the embedded seat (3) are spliced. During the splicing process, the positioning plate (205) is inserted into the inner side of the positioning groove (301). After the insertion and fixing, the adjusting screw head (202) at the right end is controlled to rotate by a tool. During the rotation process, the bidirectional screw rod (203) at the left end is controlled to rotate, thereby controlling the two sets of sliding limit brackets (2) to perform lateral extension adjustment along the inner side. During the extension process, the buckle groove (204) is connected to the outer side of the embedded column (302) and the welding plate (303). Continuous movement can be used to limit the splicing and keep the welding frame (201) and the embedded seat (3) in a stable connection state; S2. Then, according to the demand, the lifting motor (101) is controlled by using an external control device to operate. The lifting motor (101) will drive the adjusting screw (102) to rotate. During the rotation, the threaded structure will drive the outer lifting sleeve (103) to adjust the height. During the adjustment, the stabilizing reel (404) will be adjusted synchronously. By rotating and releasing the stabilizing steel wire (4) through each group of stabilizing motors (405), the extension rod (402) can be kept in a horizontal state. During the rising process, the outer stabilizing steel wire (4) will provide tension to prevent the top structure from shaking. S3, the rotating shaft (503) is controlled to rotate by the rotating motor (502), and during the rotation, the driving gear (504) drives the transmission gear (505) on the outside to rotate synchronously, and during the rotation, the rotating frame (5) on the top and the external structure are driven to rotate along the inner side of the tooth groove (506), and the winding motor (605) is used to drive the winding roller (606) to rotate, and during the rotation, the suspension wire rope (6) is controlled to be retracted and released. During the retraction and release, the suspension wire rope (6) is stably retracted and released on the inner side of the guide wheel bracket (507), thereby driving the height of the hanging basket (7) at the end to be adjusted; S4. Finally, when the hanging basket is adjusted in the lifting and lowering, in order to maintain the balance, the auxiliary motor (703) controls the rotating rod (704) to rotate. When rotating, the auxiliary reels (705) at both ends release the auxiliary steel wire rope (706) inside to extend. Since the fixing ring (707) at the upper end is in a connected state with the suspension steel frame (508), the auxiliary steel wire rope (706) is effectively used to restrict the hanging basket (7) to prevent the hanging basket from shaking and turning over.