Integrated intelligent jacking platform dynamic teaching model
By using an integrated intelligent lifting platform dynamic teaching model to simulate the operation of various devices, the problem of students having difficulty understanding their structure and operation was solved, and students were able to understand the interaction between their internal devices.
Patent Information
- Application Number
- CN202511250499.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-03
- Publication Date
- 2025-10-17
AI Technical Summary
It is difficult for students to understand the structure and operation of the integrated intelligent jacking platform.
Provides a dynamic teaching model of an integrated intelligent jacking platform, including components such as the base, jacking mechanism, support frame, protective net, steel platform system, tower crane and ceiling. The operation of each component is remotely controlled by a control computer to simulate the construction process.
Students can use the model to understand the structure and operation of the integrated intelligent jacking platform, and realize how various devices cooperate to complete construction.
Smart Images

Figure CN120808670A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent jacking platform models, and particularly relates to an integrated intelligent jacking platform dynamic teaching model. BACKGROUND
[0002] The integrated intelligent jacking platform is an advanced engineering technology used in the fields of building construction, equipment installation and large structure lifting, and is also called "air building machine". The platform changes traditional high-altitude open-air operation into safe closed space operation through modular design and intelligent control technology, has a construction efficiency of building a floor in the fastest 4 days, and has a whole jacking speed of 50 minutes per floor, and is successfully applied in many projects in China.
[0003] The integrated intelligent jacking platform represents one of important progress directions of modern building engineering technology, greatly improves the execution efficiency of engineering projects, and guarantees higher safety standards and technical requirements. With the development of technology, the application range of the platform will be further expanded in the future.
[0004] As high-end technology in the field of building, the integrated intelligent jacking platform is difficult for most students to access, and the integrated intelligent jacking platform is large in size and complex in structure, so even if the students access the platform, it is difficult for them to understand the structure and operation mode of the platform.
[0005] Therefore, the present application provides an integrated intelligent jacking platform dynamic teaching model to overcome the defects of the prior art. SUMMARY
[0006] The purpose of the present application is to solve the problem that students have difficulty in understanding the structure and operation mode of the integrated intelligent jacking platform.
[0007] The technical scheme of the present application provides an integrated intelligent jacking platform dynamic teaching model, which comprises a base station, characterized in that: the base station is detachably provided with a front panel, the base station is internally provided with a jacking mechanism, the base station is fixedly provided with a building body at the top, the building body is provided with a support frame around, the support frame is connected with a steel platform system at the top, the steel platform system is externally connected with a protective frame around, the protective frame is externally provided with a protective net, and the model further comprises a tower crane, which is arranged in the building body.
[0008] As a preferred technical scheme, the base station is provided with a material stacking area and a water pool at the top, the water pool is communicated with a fire-fighting water pipe, a spraying water pipe and a curing water pipe, and the material stacking area and the water pool are arranged on one side of the building body.
[0009] As a preferred technical scheme, the building body is a three-story building body, each surface of each story is marked with a story mark, and the steel platform system is provided with a tool and control room and a toilet.
[0010] As a preferred technical scheme, the steel platform system comprises longitudinal beams and cross beams, the bottom of the longitudinal beam is connected with the support frame, the longitudinal beam is arranged below the cross beam, the longitudinal beam and the cross beam are connected with the protective frame, the top of the cross beam is provided with a roof, and the bottom of the cross beam is provided with a lamp strip for simulating a temporary lighting system.
[0011] As a preferred technical scheme, the longitudinal beam is fixed below the cross beam, the bottom of the cross beam is connected with a crane, the bottom of the cross beam is fixed with a longitudinal connecting rod, and the bottom of the connecting rod is provided with a hanging type distributing machine.
[0012] As a preferred technical scheme, at least one of the support frames is detachably connected with the cross beam, the remaining support frames are fixedly connected with the longitudinal beam, the protective net is provided with four sides, and the protective net is fixedly connected or detachably connected with the protective frame.
[0013] As a preferred technical scheme, the tower crane is an inner climbing type tower crane or a floor type tower crane, the bottom of the tower crane supporting arm is provided with two monitors, the tower crane can receive signals and make actions such as lifting and rotating according to the signal instructions, the tower crane is provided with monitors and signboards.
[0014] As a preferred technical scheme, the roof comprises a first connecting plate, the first connecting plate is in the shape of a Chinese character, the top of the first connecting plate is provided with two oppositely arranged second connecting plates, four third connecting plates are arranged between the two second connecting plates, a plurality of top rods similar to arches are arranged on two adjacent third connecting plates, a tent is arranged on the top rod, and an arm type distributing machine is arranged on the top of the first connecting plate.
[0015] As a preferred technical scheme, the jacking mechanism comprises a linear motor and a rigid rod, the linear motor is arranged in the base, the output end of the linear motor is in transmission connection with the rigid rod, the rigid rod penetrates through the top of the base and the building, an elevation axis guide device is arranged on the rigid rod, the elevation axis guide device is arranged in the building, the top of the rigid rod is fixedly connected with the steel platform system, the jacking mechanism can receive external signals, drive the steel platform system and the structure connected with the steel platform system to move up and down according to the signals, and the moving distance is the height of one floor.
[0016] As a preferred technical scheme, a plurality of walkway plates are arranged between the support frames, the heights between the walkway plates are different, the walkway plates are used for simulating the passages between floors during construction, and stairs are arranged between the walkway plates; an elevator is further arranged between two adjacent support frames; and an inclination monitoring mechanism is arranged between two adjacent support frames and on the support frame, and the inclination monitoring mechanism is used for monitoring the perpendicularity of the equipment.
[0017] The integrated intelligent jacking platform dynamic teaching model has the beneficial effects that: The jacking mechanism, the support frame, the protective net, the steel platform system, the tower crane and the ceiling are arranged, the operation of each component is remotely controlled through the control computer, students can understand the structure and operation mode of the integrated intelligent jacking platform through the model, and realize that how the internal equipment of the integrated intelligent jacking platform cooperates and operates to complete the building construction. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a perspective view of the embodiment of the present application; Figure 2 It is a front view of the embodiment of the present application; Figure 3 It is a top view of the embodiment of the present application; Figure 4 It is a perspective view of part of the structure of the embodiment of the present application; Figure 5 It is a front view of part of the structure of the embodiment of the present application; Figure 6 It is a perspective view of another part of the structure of the embodiment of the present application; Figure 7 It is a schematic view of the steel platform system of the embodiment of the present application; Figure 8 It is a front view of the steel platform system of the embodiment of the present application.
[0019] Wherein, 1, base; 101, material stacking area; 102, water pool; 103, fire water pipe; 104, spray water pipe; 105, maintenance water pipe; 106, front panel; 2, jacking mechanism; 201, linear motor; 202, rigid rod; 3, building body; 4, support frame; 5, steel platform system; 6, longitudinal beam; 7, cross beam; 8, boom; 801, crane; 9, connecting rod; 901, underhung spreader; 10, tower crane; 1001, monitoring; 1002, signboard; 11, ceiling; 1101, first connecting plate; 1102, second connecting plate; 1103, third connecting plate; 1104, top rod; 1105, sky curtain; 12, arm spreader; 13, protective frame; 14, protective net; 15, walkway plate; 16, staircase; 17, elevator; 18, inclination monitoring mechanism; 19, elevation axis guide device; 20, tool and control room and toilet. DETAILED DESCRIPTION
[0020] In order to make the technical means, technical features, invention objectives and technical effects achieved by the present invention easy to understand, the present invention is further explained below with reference to specific diagrams; it is obvious that the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments; based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work should fall within the scope of protection of the present invention.
[0021] Example As attached Figure 1 To the attached Figure 8 As shown: a dynamic teaching model of an integrated intelligent jacking platform, including a base 1, the top of the base 1 is slightly concave, a building body 3 is fixed on the top, support frames 4 are provided around the building body 3, the top of the support frame 4 is connected to a longitudinal beam 6, a cross beam 7 is fixed above the longitudinal beam 6, a boom 8 is fixed to the bottom of the longitudinal beam 6, the bottom of the boom 8 is slidably connected to a crane 801, a roof 11 is provided on the top of the cross beam 7, and a tower crane 10 is also included. The tower crane 10 is arranged in the building body 3, and a protective frame 13 is connected to the longitudinal beam 6 and the cross beam 7. A protective net 14 is provided on the outside of the protective frame 13, and the protective net 14 has four sides.
[0022] As attached Figure 1 To the attached Figure 6 As shown: a material storage area 101 and a water pool 102 are provided on the top of the base 1. The water pool 102 is connected to a fire water pipe 103, a sprinkler water pipe 104 and a maintenance water pipe 105. The fire water pipe 103 is used for fire fighting engineering, the sprinkler water pipe 104 is used to automatically start and extinguish fire in the early stage of a fire, and the maintenance water pipe 105 is used to maintain concrete. The material storage area 101 and the water pool 102 are both arranged on one side of the building body 3. The base 1 is detachably connected to a front panel 106. The front panel 106 and the base 1 can be detachably connected by bolts. The front panel 106 can be removed. The base 1 is hollow and is provided with a jacking mechanism 2 inside.
[0023] In this device, the building body 3 is a three-story building, and floor markings are made on the surface of each floor.
[0024] As attached Figure 1 To the attached Figure 8 As shown: the longitudinal beams 6, cross beams 7 and booms 8 and other components together constitute a steel platform system 5, which can simulate the stacking of large loads, release the tower crane 10 for operation, and improve construction efficiency. The steel platform system 5 is provided with a tool and control room and a toilet 20. The tool and control room and the toilet 20 are fixedly connected to the cross beam 7, and of course can also be connected to the longitudinal beam 6.
[0025] At least one support frame 4 is detachably connected with the longitudinal beam 6, and the rest of the support frames 4 are fixedly connected with the longitudinal beam 6. In the device, one support frame 4 is detachably connected with the longitudinal beam 6, which can be taken off to enable people to more intuitively view the structure of the support frame 4.
[0026] The protective nets 14 and the protective frames 13 can be all fixedly connected, all detachably connected, or partially detachably connected.
[0027] In the device, one protective net 14 is detachably connected with the protective frame 13, for example, through a rope joint, through a buckle detachable joint, and the like, and the rest of the protective nets 14 are fixedly connected with the protective frames 13. The detachable support frame 4 and the detachable protective net 14 are arranged on one side of the building 3.
[0028] In the device, the longitudinal beam 6 and the transverse beam 7 are each provided with three, and the bottom of the middle transverse beam 7 is fixedly connected with at least one lamp strip, which is used to simulate a temporary lighting system. The bottom of the boom 8 is provided with an electric rail car, the bottom of the electric rail car is connected with a crane 801, the crane 801 simulates a bridge crane 801, and the hook on the crane 801 can complete the actions of lowering, folding and hovering according to the received signals. In the device, a plurality of cranes 801 are arranged, at least one of which can move a certain distance at the bottom of the boom 8. In addition, a hydraulic cylinder or an air cylinder can also be used to drive the crane 801 to move.
[0029] The bottom of the boom 8 is fixedly connected with a connecting rod 9, and the bottom of the connecting rod 9 is provided with a lower hanging type distributing machine 901, which can move according to instructions and is used to simulate a concrete pouring process.
[0030] The tower crane 10 is an inner climbing type tower crane 10 or a floor type tower crane 10, and the bottom of the tower crane 10 is provided with at least one monitoring device 1001. Specifically, in the device, two monitoring devices 1001 are arranged. The tower crane 10 can receive signals and make actions of lifting and rotating according to the signal instructions. An identification board 1002 is installed on the tower crane 10.
[0031] As shown in the accompanying drawings Figure 1 to the accompanying drawings Figure 8As shown: the roof 11 includes a first connecting plate 1101, the first connecting plate 1101 is in the shape of "days", the top of the first connecting plate 1101 is provided with two oppositely arranged second connecting plates 1102, four third connecting plates 1103 are arranged between the two second connecting plates 1102, two third connecting plates 1103 are arranged above the middle beam 7, and the remaining two third connecting plates 1103 are arranged above the other two beams 7, wherein a plurality of top rods 1104 similar to arches are arranged on two adjacent third connecting plates 1103, a canopy 1105 is arranged on the top rod 1104, and the canopy 1105 is used to simulate shading, rain protection and the like.
[0032] The first connecting plate 1101 is also provided with an arm type distributing machine 12, which is used to simulate the concrete pouring process together with the lower hanging type distributing machine 901.
[0033] The base 1 is hollow, and the inside is provided with a jacking mechanism 2, the jacking mechanism 2 includes a linear motor 201 and a rigid rod 202, the output end of the linear motor 201 is in transmission connection with the rigid rod 202, the rigid rod 202 penetrates through the top of the base 1 and the building body 3, and the top of the rigid rod 202 is fixedly connected with the longitudinal beam 6. In the device, the rigid rod 202 is a stainless steel rod, the jacking mechanism 2 can receive external signals, drive the steel platform system 5 and the structure connected therewith to move up and down according to the signals, and the moving distance is the height of a floor. Meanwhile, an elevation axis guide measuring device 19 is also provided, which is fixedly connected with the rigid rod 202 and arranged in the building body 3. In the device, a pneumatic cylinder, a hydraulic cylinder or an electric cylinder can also be used to drive the rigid rod 202 to rise and fall.
[0034] In the device, a plurality of walkway plates 15 are arranged between the protective frames 13, the heights between the walkway plates 15 of different floors are different, which are used to simulate the passages between different floors during construction, and a staircase 16 is arranged between the walkway plates 15, which can be used to enter the walkway plates 15 of different heights.
[0035] The device also has an elevator 17, which is arranged between two adjacent support frames 4 and is connected with the building body 3.
[0036] The device also includes an inclination monitoring mechanism 18, which is arranged between two adjacent support frames 4 or in the support frame 4. The inclination monitoring mechanism 18 is used to monitor the perpendicularity of the equipment and send the perpendicularity to the control computer. When the inclination occurs, a warning can be sent in time to remind the staff.
[0037] Working mode: connect the device with external power supply, first, start the jacking mechanism 2, the jacking mechanism 2 will steel platform system 5 and the components connected thereto jacked up a floor height, start the tower crane 10, the tower crane 10 is lifted, rotates, then stop, open the light belt, remove a protective net 14 and a support frame 4, so that the students can clearly watch the internal structure and operation, start the boom 8 bottom cylinder, the cylinder drives the crane 801 to move, start the crane 801, so that the crane 801 completes the hook down, hovering and collection instructions, control the downward hanging type distributor 901 to move, simulate the concrete pouring process, after the explanation, start the jacking mechanism 2 again, the jacking mechanism 2 will steel platform system 5 and the components connected thereto down a floor height, restore to the initial position, reinstall the removed protective net 14 and support frame 4, finally cut off the power supply.
[0038] To sum up, only the preferred embodiments of the present application, not to limit the scope of the present application, namely, all equivalent changes and modifications made in accordance with the scope of the present application patent application content, should belong to the technical scope of the present application.
Claims
1. An integrated intelligent lifting platform dynamic teaching model, comprising a base (1), characterized in that: The base station (1) is detachably provided with a front panel (106). An顶升机构 (2) is provided inside the base station (1). A building body (3) is fixed on the top of the base station (1). Support frames (4) are arranged around the building body (3). The top of the support frames (4) is connected to a steel platform system (5). The periphery of the steel platform system (5) is externally connected to a protective frame (13). A protective net (14) is arranged outside the protective frame (13). A tower crane (10) is also included, and the tower crane (10) is arranged in the building body (3).
2. The integrated intelligent lifting platform dynamic teaching model according to claim 1 is characterized by: A material stacking area (101) and a water pool (102) are arranged on the top of the base station (1). The water pool (102) is connected to a fire water pipe (103), a spray water pipe (104), and a maintenance water pipe (105). Both the material stacking area (101) and the water pool (102) are arranged on one side of the building body (3).
3. The integrated intelligent lifting platform dynamic teaching model according to claim 1 is characterized by: The building body (3) is a three-story building body, and floor signs are made on the surface of each floor. A tool and control room and a toilet (20) are arranged in the steel platform system (5).
4. The integrated intelligent lifting platform dynamic teaching model according to claim 1 is characterized by: The steel platform system (5) includes longitudinal beams (6) and cross beams (7). The bottom of the longitudinal beams (6) is connected to the support frames (4). The longitudinal beams (6) are arranged below the cross beams (7). The longitudinal beams (6), cross beams (7) are connected to the protective frame (13). A ceiling (11) is arranged on the top of the cross beams (7). A light belt is arranged at the bottom of the cross beams (7), and the light belt is used to simulate a temporary lighting system.
5. The integrated intelligent lifting platform dynamic teaching model according to claim 4 is characterized by: Transversely arranged suspension rods (8) are fixed below the longitudinal beams (6). A crane (801) is connected to the bottom of the suspension rods (8). Longitudinally arranged connecting rods (9) are fixed to the bottom of the suspension rods (8). A suspended placer (901) is arranged at the bottom of the connecting rods (9).
6. The integrated intelligent lifting platform dynamic teaching model according to claim 4 is characterized by: At least one of the support frames (4) is detachably connected to the cross beam (7), and the remaining support frames (4) are fixedly connected to the longitudinal beam (6). The protective net (14) has a total of four sides, and the protective net (14) is fixedly connected or detachably connected to the protective frame (13).
7. The integrated intelligent lifting platform dynamic teaching model according to claim 4 is characterized by: The tower crane (10) is an internal climbing tower crane (10) or a ground-mounted tower crane (10). The tower crane (10) can receive signals and perform actions such as lifting and rotating according to signal instructions. A monitor (1001) is arranged at the bottom of the boom of the tower crane (10), and a signboard (1002) is arranged on the tower crane (10).
8. The integrated intelligent lifting platform dynamic teaching model according to claim 4 is characterized by: The ceiling (11) includes a first connecting plate (1101). The first connecting plate (1101) is in a shape like the Chinese character '曰'. Two relatively arranged second connecting plates (1102) are arranged on the top of the first connecting plate (1101). Four third connecting plates (1103) are arranged between the two second connecting plates (1102). A plurality of arch-like top rods (1104) are arranged on two adjacent third connecting plates (1103). A sky curtain (1105) is arranged on the top rods (1104). An articulated placer (12) is also arranged on the top of the first connecting plate (1101).
9. The integrated intelligent lifting platform dynamic teaching model according to claim 4 is characterized by: The lifting mechanism (2) comprises a linear motor (201) and a rigid rod (202), wherein the linear motor (201) is arranged inside the base (1), and the output end of the linear motor (201) is transmission-connected to the rigid rod (202), and the rigid rod (202) passes through the top of the base (1) and the building body (3), and an elevation axis guide device (19) is provided on the rigid rod (202), and the elevation axis guide device (19) is arranged inside the building body (3). The top of the rigid rod (202) is fixedly connected to the steel platform system (5), and the lifting mechanism (2) can receive external signals and drive the steel platform system (5) and the structure connected thereto to move up and down according to the signals, and the moving distance is the height of one floor.
10. The integrated intelligent lifting platform dynamic teaching model according to claim 4 is characterized in that: Multiple layers of walkway panels (15) are provided between the support frames (4), and the heights of the walkway panels (15) are different, so as to simulate passages between floors during construction. Stairs (16) are provided between the multiple layers of walkway panels (15); It also includes an elevator (17), which is arranged between two adjacent support frames (4); It also includes a tilt monitoring mechanism (18), which is arranged between two adjacent support frames (4) and on the support frames (4). The tilt monitoring mechanism (18) is used to monitor the verticality of the equipment.