Building decoration construction hanging basket
By installing pressure and tension sensors on the suspended platform, combined with a counterweight balancing mechanism and lifting components, the safety hazards caused by the failure of the lifting components during construction were solved, thus improving the stability and safety of the suspended platform.
Patent Information
- Application Number
- CN202510965729.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-14
- Publication Date
- 2025-11-07
AI Technical Summary
Traditional suspended platforms lack safety protection structures during construction. When the lifting components of the suspended platform fail, it can easily lead to a sudden drop, causing damage to goods or personal injury.
Pressure and tension sensors are used to monitor the pressure distribution and load tension of the suspended platform in real time. Through the cooperation of the counterweight balancing mechanism and lifting components, the counterweight and pressure distribution of the suspended platform's bottom plate are adjusted to maintain the stability and safety of the suspended platform.
It effectively prevents the suspended platform from falling rapidly, improves safety during construction, and protects the safety of goods and operators.
Smart Images

Figure CN120906332A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of building decoration construction, and particularly relates to a building decoration construction hanging basket. BACKGROUND
[0002] With the continuous expansion of the city scale, more and more buildings are built; among them, building construction refers to the production activities in the implementation stage of engineering construction, including foundation engineering construction, main structure construction, roof engineering construction, decoration engineering construction, building outer facade construction and the like; and construction equipment needs to be used in the building outer facade decoration construction process.
[0003] At present, building outer wall cleaning and decoration lamp operation are mostly completed by operating personnel riding on a hanging basket, and the operating personnel are suspended outside the building wall to work.
[0004] For example, a construction equipment for building outer facade decoration is disclosed in a patent document with the authorized announcement number CN 221972966 U, which comprises a hanging basket body, a chain is hingedly installed on the top of the hanging basket body, the top end of the chain is hingedly installed on the bottom end of a connecting block, a handrail is hingedly installed inside the hanging basket body, a protection assembly is arranged on the hanging basket body, and a rotating shaft is rotatably installed in the inner wall of the right end of the hanging basket body.
[0005] For example, a hanging basket for building construction is disclosed in a patent document with the announcement number CN 222184062 U, which comprises a hanging basket body, a lifting assembly is arranged on the surface of the hanging basket body, the lifting assembly comprises a screw groove and a moving block, the screw groove is formed in the surface of one side of the hanging basket body, a bidirectional screw is inserted into the interior of the screw groove, the two ends of the bidirectional screw are respectively connected with a bearing and the output end of a motor, and two groups of moving blocks are symmetrically arranged on the surface of the bidirectional screw.
[0006] However, the hanging basket of the above-mentioned scheme will drift in an uncertain manner when used, such as in windy weather, and there is a great safety hazard. In the construction process of the traditional hanging basket, the hanging basket is lifted up and down under the driving of the lifting assembly, and lacks a safety protection structure. In the lifting process of the hanging basket, if the lifting assembly of the hanging basket fails, the hanging basket will be sharply lowered, the goods will be damaged, and the personnel will be seriously injured. SUMMARY
[0007] The purpose of the embodiment of the application is to provide a building decoration construction hanging basket, which aims to solve the technical problem that the traditional hanging basket is lifted up and down under the driving of the lifting assembly in the construction process, lacks a safety protection structure, and if the lifting assembly of the hanging basket fails in the lifting process of the hanging basket, the hanging basket will be sharply lowered, the goods will be damaged, and the personnel will be seriously injured.
[0008] To achieve the above object, the application provides the technical scheme as follows.
[0009] A building decoration construction basket comprises:
[0010] The basket is provided with a connecting piece, and a plurality of pressure sensors are arranged in an array on the bottom plate of the basket, the pressure sensors being used to detect pressure distribution data on the bottom plate of the basket, the pressure distribution data including the position of workers on the bottom plate and the position of materials on the bottom plate;
[0011] A counterweight balancing mechanism is arranged at the bottom of the bottom plate of the basket;
[0012] A lifting assembly is used to wind and unwind the connecting ropes, the ends of the connecting ropes being connected to the connecting piece; the lifting assembly is installed on a support plate, the support plate being fixedly installed on a wall body through a mounting frame; a tension sensor is arranged on each connecting rope, the tension sensor being used to detect the load tension of the corresponding connecting rope in real time;
[0013] When the tension detection results of the two tension sensors differ by more than a threshold value, the pressure distribution data detected by the pressure sensors is taken as the input of a counterweight optimization model, and an optimization result for optimizing the counterweight of the bottom plate of the basket is obtained, the counterweight balancing mechanism arranged at the bottom of the basket is adjusted and the pressure distribution data is changed based on the optimization result, until the tension detection results of the two tension sensors differ by no more than the threshold value, and the adjustment of the counterweight balancing mechanism and the pressure distribution data is completed.
[0014] Preferably, the lifting assembly comprises:
[0015] A driving motor is fixedly installed on the support plate, and a driving shaft is coaxially and drivingly connected to the output shaft of the driving motor;
[0016] A lifting wheel is coaxially and fixedly installed on the driving shaft, and one end of the connecting rope is fixedly connected to the lifting wheel; a limiting wheel is also coaxially and fixedly installed on the lifting wheel, and a plurality of limiting grooves are equidistantly arranged on the outer circumferential surface of the limiting wheel;
[0017] A limiting piece matched with the limiting grooves is slidingly arranged on the support plate, and the position of the limiting piece on the support plate is adjusted by an electric push rod.
[0018] Preferably, the end of the limiting groove is in an open structure, and the limiting piece is slid out of the limiting groove by the elongation action of the electric push rod.
[0019] Preferably, the limiting piece comprises a support box, and the support box is slidingly arranged on the support plate.
[0020] The support box is fixedly connected to the telescopic end of the electric push rod.
[0021] Supporting box is supported by supporting sliding block which is slidingly arranged in the supporting box through supporting spring, supporting sliding block is fixedly connected with supporting rod, limit edge block is fixedly arranged at the end of supporting rod, limit edge block extends into limit slot, under the elastic supporting action of supporting spring, limit edge block abuts against limit slot.
[0022] Preferably, the mounting frame further comprises a support arm, the support plate is fixedly mounted at the top end of the support arm, and the support arm and the support plate are connected and fixed through a reinforcing rod.
[0023] Preferably, the mounting frame further comprises a connecting frame.
[0024] The mounting frame further comprises a plurality of mounting discs, each of which is fixedly connected with an expansion screw fixed to the wall body.
[0025] Preferably, a support rotating shaft is rotatably arranged on the support plate, and a guide pulley is arranged on the support rotating shaft.
[0026] Preferably, the bottom of the hanging basket is provided with a base, and supporting legs are arranged at the four corners of the base.
[0027] The bottom of the base has a bottom cavity, and the counterweight balancing mechanism is arranged in the bottom cavity.
[0028] Preferably, the counterweight balancing mechanism comprises a counterweight module A and a counterweight module B.
[0029] The counterweight module A and the counterweight module B are the same in structure.
[0030] The counterweight module A comprises an adjusting screw rod rotatably arranged in the bottom cavity, and further comprises a counterweight block, which is detachably fixedly sleeved on a moving screw sleeve.
[0031] The moving screw sleeve is sleeved on the adjusting screw rod through a threaded connection mode; in addition, the counterweight module A further comprises a forward-reverse servo motor for driving the adjusting screw rod to rotate.
[0032] Preferably, one side of the hanging basket is a front guardrail, and the other side of the hanging basket is a rear guardrail.
[0033] The rear guardrail is further provided with a buffer member.
[0034] The buffer member comprises a rubber suction cup, which is mounted at the end of an adjusting screw rod, the adjusting screw rod is coaxially penetrated in a supporting screw sleeve through a threaded connection mode, and the supporting screw sleeve is fixedly mounted on the rear guardrail.
[0035] Compared with the prior art, the building decoration construction hanging basket has the following beneficial effects:
[0036] Firstly, the lifting assembly is used for winding or unwinding the connecting ropes to lift the hanging basket, so as to lift the materials; when the inclined surface of the limiting ridge block is opposite to the rotating direction of the limiting wheel, the limiting ridge block in the limiting groove does not affect the rotation of the limiting wheel, and vice versa, because the limiting ridge block is in the limiting groove, the limiting wheel cannot rotate reversely, so after the hanging basket is lifted in the air, the limiting member is arranged, so that the lifting wheel cannot rotate reversely, and the protection of the hanging basket is realized; when the lifting wheel needs to rotate reversely, the extension action of the electric push rod is used to make the limiting ridge block slide out of the limiting groove, so that the limiting member no longer limits the rotation of the limiting wheel.
[0037] Secondly, in the hanging basket, the tension sensor is arranged on each connecting rope, the tension sensor is used for real-time detection of the load tension of the corresponding connecting rope, when the load tension detection results of the two tension sensors are different by more than a threshold value, the pressure distribution data detected by the pressure sensor is used as the input of the counterweight optimization model, the optimization result for optimizing the counterweight of the hanging basket bottom plate is obtained, the counterweight balancing mechanism arranged at the bottom of the hanging basket is adjusted based on the optimization result, and the pressure distribution data is changed, until the load tension detection results of the two tension sensors are different by not more than a threshold value, the adjustment of the counterweight balancing mechanism and the pressure distribution data is completed, so as to adjust the gravity center distribution of the whole hanging basket, and the stability of the hanging basket when hanging in the air is maintained. BRIEF DESCRIPTION OF DRAWINGS
[0038] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application.
[0039] Figure 1 It is a three-dimensional structure diagram of a building decoration construction hanging basket according to the embodiment 1 of the present application.
[0040] Figure 2 It is a left view of a building decoration construction hanging basket according to the embodiment 1 of the present application.
[0041] Figure 3 It is a top view of a building decoration construction hanging basket according to the embodiment 1 of the present application.
[0042] Figure 4 It is another perspective view of a building decoration construction hanging basket according to the embodiment 1 of the present application.
[0043] Figure 5 It is a partial schematic view of a lifting assembly in a hanging basket provided by the embodiment 1 of the present application.
[0044] Figure 6 It is a schematic view of the cooperation between the limiting member and the lifting wheel in the lifting assembly provided by the embodiment 1 of the present application.
[0045] Figure 7 Partial front view of the lifting assembly of the embodiment 1 of the present application;
[0046] Figure 8 Schematic perspective view of the hanging basket provided by the embodiment 2 of the present application;
[0047] Figure 9 Schematic perspective view of the hanging basket provided by the embodiment 2 of the present application; Figure 8 Enlarged schematic view at a in the middle;
[0048] Figure 10 Front view of the hanging basket provided by the embodiment 2 of the present application;
[0049] Figure 11 Schematic perspective view of the hanging basket provided by the embodiment 2 of the present application from another angle.
[0050] The reference signs are as follows:
[0051] 100, wall body;
[0052] 200, mounting frame; 201, support arm; 202, reinforcing rod; 203, mounting disc; 204, connecting frame;
[0053] 300, support plate; 301, support rotating shaft; 302, guide pulley; 303, limiting piece; 3031, support box; 3032, support rod; 3033, limiting edge block; 3034, support sliding block; 3035, support spring;
[0054] 304, drive shaft; 305, lifting wheel; 306, limiting wheel; 3061, limiting groove; 307, electric push rod;
[0055] 400, drive motor;
[0056] 500, hanging basket; 501, connecting piece; 502, base; 5021, bottom cavity; 503, front guardrail; 504, rear guardrail; 505, pressure sensor; 506, counterweight module A; 5061, forward and reverse servo motor; 5062, adjusting screw rod; 5063, moving screw sleeve; 5064, counterweight block; 507, counterweight module B; 508, buffer piece; 5081, rubber suction cup; 5082, support screw sleeve; 5083, adjusting threaded rod;
[0057] 600, connecting rope; 601, tension sensor. DETAILED DESCRIPTION
[0058] In order to make the objectives, technical solutions and advantages of the present application clearer, the present application will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and do not limit the present application.
[0059] The specific implementation of the present invention will be described in detail below with reference to specific embodiments.
[0060] Example 1
[0061] like Figures 1-4 As shown, in one embodiment of the present invention, a construction decoration scaffold is provided for lifting materials during building construction; wherein, the construction decoration scaffold includes a scaffold 500, and a connector 501 is installed on the scaffold 500;
[0062] Several pressure sensors 505 are arranged in an array on the bottom plate of the suspended platform 500. The pressure sensors 505 are used to detect the pressure distribution data on the bottom plate of the suspended platform 500. The pressure distribution data includes the position of the worker on the bottom plate and the position of the material on the bottom plate.
[0063] Regarding the worker's position on the base plate, since the pressure sensor 505 can only identify the presence of heavy objects, but it is unclear whether they are workers or materials; in this embodiment, a camera installed on the suspended platform can be used to acquire images of the suspended platform 500, and the position of the worker in the image can be detected based on image recognition technology. For example, the YOLOv8 target detection algorithm commonly used in image recognition can be used to distinguish between workers and materials.
[0064] Furthermore, the construction scaffolding provided in this embodiment of the invention also includes a lifting component, which is used to wind up and unwind the connecting rope 600, and the end of the connecting rope 600 is connected to the connector 501.
[0065] Each connecting rope 600 is equipped with a tension sensor 601 connected in series. The tension sensor 601 is used to detect the load tension of the corresponding connecting rope 600 in real time.
[0066] When the difference between the tension detection results of the two tension sensors 601 is greater than the threshold, the pressure distribution data detected by the pressure sensor 505 is used as the input of the counterweight optimization model to obtain the optimization result for optimizing the counterweight of the bottom plate of the suspended platform 500. Based on the optimization result, the counterweight balancing mechanism set at the bottom of the suspended platform 500 is adjusted and the pressure distribution data is changed until the difference between the tension detection results of the two tension sensors 601 is no greater than the threshold, thus completing the adjustment of the counterweight balancing mechanism and the pressure distribution data.
[0067] In the counterweight optimization model provided in this embodiment of the invention, a force balance equation for the suspended platform is established, taking into account the worker's position on the platform, material distribution, and the tension factor of the tension sensor on the connecting rope, and calculating the relationship between the tension difference at both ends of the suspended platform and the pressure distribution:
[0068] ΔT = T1 - T2 = f(P(x,y))
[0069] In the formula, P(x, y) represents a pressure distribution function, and T1 and T2 represent the tension of the two connecting ropes;
[0070] In the counterweight optimization model, the optimization target is to minimize the tension difference, min|ΔT|; the constraint conditions are: the artificial position adjustment range, the material weight limit; in the solving method of the optimization target, the gradient descent method is used to iteratively solve the optimal counterweight distribution and the worker station position.
[0071] The lifting assembly is used to wind or unwind the connecting rope 600 to lift the hanging basket 500, thereby lifting the material.
[0072] Further, in the embodiment of the present application, the lifting assembly is installed on the support plate 300, and the support plate 300 is fixedly installed on the wall 100 through the mounting frame 200.
[0073] Specifically, as shown in the drawings, Figures 4-7 In the embodiment of the present application, the lifting assembly includes a driving motor 400 fixedly installed on the support plate 300, a driving shaft 304 coaxially driven connected to the output shaft of the driving motor 400, and a lifting wheel 305 coaxially fixedly installed on the driving shaft 304. One end of the connecting rope 600 is fixedly connected to the lifting wheel 305. Therefore, the driving motor 400 is used to drive the driving shaft 304 to rotate, thereby driving the lifting wheel 305 to rotate, so that the connecting rope 600 is wound or unwound according to the rotation direction of the lifting wheel 305, to adjust the height of the hanging basket 500. When the material needed for building decoration construction is put into the hanging basket 500, the material can be lifted and transported to a specified height.
[0074] Further, in the embodiment of the present application, a limiting wheel 306 is also coaxially fixedly installed on the lifting wheel 305, and a plurality of limiting grooves 3061 are equidistantly formed on the outer circumferential surface of the limiting wheel 306. A limiting piece 303 matched with the limiting grooves 3061 is also slidably arranged on the support plate 300, and the position of the limiting piece 303 on the support plate 300 is adjusted by an electric push rod 307.
[0075] As a preferred, the end of the limiting groove 3061 is in an open structure, so that the limiting piece 303 can be slid out of the limiting groove 3061 by the elongation action of the electric push rod 307.
[0076] As shown in the drawings, Figure 6 and Figure 7 In the embodiment of the present application, the limiting piece 303 includes a support box 3031 slidably arranged on the support plate 300, and the support box 3031 is fixedly connected with the telescopic end of the electric push rod 307.
[0077] The support box 3031 is supported by a support spring 3035, a support sliding block 3034 is slidingly arranged in the support box 3031, a support rod 3032 is fixedly connected to the support sliding block 3034, a limiting edge block 3033 is fixedly arranged at an end of the support rod 3032, and the limiting edge block 3033 extends into the limiting groove 3061;
[0078] Under the elastic support of the support spring 3035, the limiting edge block 3033 abuts against the limiting groove 3061, and when the inclined surface of the limiting edge block 3033 is opposite to the rotating direction of the limiting wheel 306, the limiting edge block 3033 abutting against the limiting groove 3061 does not affect the rotation of the limiting wheel 306; on the contrary, the limiting wheel 306 cannot rotate reversely because the limiting edge block 3033 abuts against the limiting groove 3061, so that the lifting wheel 305 cannot rotate reversely after the hanging basket 500 is lifted to the air, and the protection of the hanging basket 500 is realized.
[0079] Correspondingly, when the lifting wheel 305 needs to rotate reversely, the extension action of the electric push rod 307 is used to make the limiting edge block 3033 slide out of the limiting groove 3061, and the limiting member 303 no longer limits the rotation of the limiting wheel 306.
[0080] Please continue to refer to Figures 1-4 In the embodiment of the application, the mounting frame 200 further comprises a support arm 201, the support plate 300 is fixedly installed at the top end of the support arm 201, and the support arm 201 and the support plate 300 are further connected and fixed by a reinforcing rod 202 to improve the stability of the support plate 300 installed at the top end of the support arm 201.
[0081] Further, the mounting frame 200 further comprises a connecting frame 204 to improve the stability of the mounting frame 200, and the mounting frame 200 further comprises a plurality of mounting discs 203, each of which is fixedly connected with an expansion screw fixed on the wall body 100, so as to realize the effect of fixing the mounting frame 200 on the wall body 100.
[0082] Further, the support plate 300 further supports a support rotating shaft 301 rotatingly arranged thereon, and the support rotating shaft 301 is provided with a guide pulley 302 for guiding the connecting rope 600.
[0083] The embodiment of the present application provides another implementation manner of the hanging basket 500, please refer to Figure 8 The two ends of the top of the hanging basket 500 provided by the embodiment of the present application are provided with connecting members 501, and the two connecting members 501 are connected with the bottom ends of the two connecting ropes 600 respectively.
[0084] Preferably, the tensile force sensor 601 is arranged in series on each connecting rope 600, and the tensile force sensor 601 is arranged to detect the load tension of the corresponding connecting rope 600 in real time. When the load tension detection results of the two tensile force sensors 601 differ by less than a threshold value, the surface hanging basket 500 is in a relatively stable state.
[0085] Correspondingly, when the load tension detection results of the two tensile force sensors 601 differ by more than a threshold value, the counterweight balancing mechanism arranged at the bottom of the hanging basket 500 is adjusted.
[0086] As shown in Figure 8 , Figure 10 and Figure 11 , in the embodiment of the present disclosure, the bottom of the hanging basket 500 is provided with a base 502, and the four corners of the base 502 are provided with supporting legs, which support the hanging basket when the hanging basket is placed on the ground.
[0087] Further, the bottom of the base 502 has a bottom cavity 5021, and the counterweight balancing mechanism is arranged in the bottom cavity 5021.
[0088] In one implementation, the counterweight balancing mechanism includes a counterweight module A 506 and a counterweight module B 507, and the counterweight module A 506 and the counterweight module B 507 are the same structure. The structure of the counterweight module A 506 will be described in detail below.
[0089] As shown in Figure 11 , in the embodiment of the present disclosure, the counterweight module A 506 includes an adjusting screw rod 5062 rotatably arranged in the bottom cavity 5021, and the counterweight module A 506 further includes a counterweight block 5064 detachably fixedly sleeved on a moving screw sleeve 5063. The moving screw sleeve 5063 is sleeved on the adjusting screw rod 5062 by a threaded connection. In addition, the counterweight module A 506 further includes a forward and reverse servo motor 5061 for driving the adjusting screw rod 5062 to rotate. In specific implementation, the forward and reverse servo motor 5061 is used to drive the adjusting screw rod 5062 to rotate. Based on the rotation direction of the adjusting screw rod 5062, the axial position of the moving screw sleeve 5063 along the adjusting screw rod 5062 is adjusted, and then the position of the counterweight block 5064 in the bottom cavity 5021 is adjusted, that is, the distribution position of the counterweight block 5064 on the base 502 is adjusted, so as to adjust the gravity distribution of the entire hanging basket 500, so as to maintain the stability of the hanging basket 500 when it is suspended.
[0090] Further, in the embodiment of the present disclosure, a plurality of pressure sensors 505 are arranged in an array on the bottom plate of the hanging basket 500. The pressure sensor 505 is used to detect the standing position of the worker on the hanging basket 500, so as to obtain the standing position of the worker on the hanging basket 500 in real time, and cooperate with the position adjustment of the counterweight block 5064 to maintain the balance of the hanging basket 500.
[0091] Please continue to refer to Figure 8 and Figure 9 In this embodiment of the invention, one side of the suspended basket 500 is a front guardrail 503 and the other side of the suspended basket 500 is a rear guardrail 504. The front guardrail 503 and the rear guardrail 504 provide protection for workers standing on the suspended basket 500.
[0092] Furthermore, a buffer 508 is also provided on the rear guardrail 504. The buffer 508 is used to support the wall 100 after the height of the suspended basket 500 is adjusted, so as to avoid the suspended basket 500 hitting the wall 100 and causing damage to the wall 100.
[0093] Preferred, such as Figure 9 As shown, the buffer 508 includes a rubber suction cup 5081, which is installed at the end of an adjusting threaded rod 5083. The adjusting threaded rod 5083 is coaxially connected to a support sleeve 5082 via a threaded connection. The support sleeve 5082 is fixedly installed on the rear guardrail 504. Workers can manually rotate the adjusting threaded rod 5083 to adjust its movement relative to the support sleeve 5082 based on the rotation direction of the adjusting threaded rod 5083, so that the rubber suction cup 5081 presses against the wall 100. When the wall 100 is a smooth surface (such as ceramic tile, aluminum plate, glass, etc.), the rubber suction cup 5081 can be used for adsorption, improving the stability of the suspended platform 500. When the wall 100 is a non-smooth surface (such as concrete, etc.), the rubber suction cup 5081 provides a certain buffering and support effect.
[0094] The above solutions are merely illustrative examples of preferred embodiments and are not intended to limit the scope of the invention. Appropriate substitutions and / or modifications can be made according to user needs when implementing this invention.
[0095] The number of devices and processing scale described herein are for the purpose of simplifying the description of the invention. Applications, modifications, and variations of the invention will be readily apparent to those skilled in the art.
[0096] Although embodiments of the present invention have been disclosed above, they are not limited to the applications listed in the specification and embodiments. It can be applied to various fields suitable for the present invention. Other modifications can be readily made by those skilled in the art. Therefore, without departing from the general concept defined by the claims and their equivalents, the present invention is not limited to the specific details and examples shown and described herein.
Claims
1. A construction decoration work basket characterized by, The application relates to a lifting device for a construction site, which comprises the following components: a hanging basket (500) provided with a connecting piece (501), a plurality of pressure sensors (505) arranged in an array on the bottom plate of the hanging basket (500), the pressure sensors (505) being used for detecting pressure distribution data on the bottom plate of the hanging basket (500), the pressure distribution data including the position of a worker on the bottom plate and the position of materials on the bottom plate; a counterweight balancing mechanism arranged at the bottom of the bottom plate of the hanging basket (500); a lifting assembly used for winding and unwinding a connecting rope (600), the end of the connecting rope (600) being connected with the connecting piece (501); the lifting assembly is installed on a support plate (300) which is fixedly installed on a wall (100) through a mounting frame (200); a tension sensor (601) is arranged on each connecting rope (600) in series, and the tension sensor (601) is used for detecting the load tension of the corresponding connecting rope (600) in real time; when the tension detection results of the two tension sensors (601) differ by more than a threshold value, the pressure distribution data detected by the pressure sensors (505) are taken as the input of a counterweight optimization model, an optimization result for optimizing the counterweight of the bottom plate of the hanging basket (500) is obtained, the counterweight balancing mechanism arranged at the bottom of the hanging basket (500) is adjusted and the pressure distribution data is changed based on the optimization result, until the tension detection results of the two tension sensors (601) differ by not more than the threshold value, and the adjustment of the counterweight balancing mechanism and the pressure distribution data is completed.
2. The architectural finishing work basket of claim 1, wherein, The lifting assembly comprises: a driving motor (400) fixedly installed on the support plate (300), a driving shaft (304) coaxially and drivingly connected to the output shaft of the driving motor (400); a lifting wheel (305) coaxially and fixedly installed on the driving shaft (304), one end of the connecting rope (600) being fixedly connected to the lifting wheel (305) in a winding mode; a limiting wheel (306) is also coaxially and fixedly installed on the lifting wheel (305), a plurality of limiting grooves (3061) being equidistantly arranged on the outer circumferential surface of the limiting wheel (306); a limiting piece (303) matched with the limiting grooves (3061), the limiting piece (303) being slidingly arranged on the support plate (300), and the position of the limiting piece (303) on the support plate (300) being adjusted through an electric push rod (307).
3. The architectural finishing work basket of claim 2, wherein, The end of the limiting groove (3061) is in an open structure, and the limiting piece (303) is slid out of the limiting groove (3061) through the elongation action of the electric push rod (307).
4. The architectural finishing work basket of claim 3, wherein, The limiting piece (303) comprises a supporting box (3031) slidingly arranged on the support plate (300); the supporting box (3031) is fixedly connected with the telescopic end of the electric push rod (307). Supporting box (3031) is supported by supporting spring (3035) and slidingly provided with supporting slider (3034), supporting slider (3034) is fixedly connected with supporting rod (3032), limiting edge block (3033) is fixedly arranged at the end of supporting rod (3032), limiting edge block (3033) extends into limiting groove (3061), and under the elastic supporting action of supporting spring (3035), limiting edge block (3033) abuts against limiting groove (3061).
5. The architectural finishing work basket of claim 4, wherein, The mounting frame (200) further comprises a support arm (201), and the support plate (300) is fixedly installed at the top end of the support arm (201).
6. The architectural finishing work basket of claim 5, wherein, The mounting frame (200) further comprises a connecting frame (204). The mounting frame (200) further comprises a plurality of mounting discs (203), and each mounting disc (203) is fixedly connected with an expansion screw fixedly installed on the wall body (100).
7. The architectural finishing work basket of claim 6, wherein, The support plate (300) is rotatably provided with a support rotating shaft (301), and the support rotating shaft (301) is provided with a guide pulley (302).
8. The architectural finishing work basket of claim 7, wherein, The bottom of the hanging basket (500) is provided with a base (502), and the four corners of the base (502) are provided with supporting legs. The bottom of the base (502) has a bottom cavity (5021), and the counterweight balancing mechanism is arranged in the bottom cavity (5021).
9. The architectural finishing work basket of claim 8, wherein, The counterweight balancing mechanism comprises a counterweight module A (506) and a counterweight module B (507). The counterweight module A (506) and the counterweight module B (507) are the same in structure. The counterweight module A (506) comprises an adjusting screw rod (502) rotatably arranged in the bottom cavity (5021), and further comprises a counterweight block (5064), which is detachably fixedly sleeved on a moving screw sleeve (5063). The moving screw sleeve (5063) is coaxially connected with the adjusting screw rod (5062) through a threaded connection mode, and the counterweight module A (506) further comprises a forward-reverse servo motor (5061) for driving the adjusting screw rod (5062) to rotate.
10. The architectural finishing work basket of claim 9, wherein, One side of the hanging basket (500) is a front guardrail (503), and the other side of the hanging basket (500) is a rear guardrail (504). The rear guardrail (504) is further provided with a buffer (508). The buffer (508) comprises a rubber suction cup (5081), the rubber suction cup (5081) is installed at the end of an adjusting screw rod (5083), the adjusting screw rod (5083) is coaxially penetrated in a supporting screw sleeve (5082) through a threaded connection mode, and the supporting screw sleeve (5082) is fixedly installed on the rear guardrail (504).
Citation Information
Patent Citations
Construction equipment for building facade decoration
CN221972966U
Hanging basket for building construction
CN222184062U