Mobile house hoisting device
By designing an automated parent and child anchor hoisting device, and using a power unit to drive the pins to achieve automatic engagement and disengagement of the anchor points, the problem of cumbersome and dangerous anchor point operation in the existing technology is solved, thereby improving hoisting efficiency and safety.
Patent Information
- Application Number
- CN202520016251.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2035-01-06
AI Technical Summary
In the current process of hoisting mobile homes, the fixing and dismantling of anchor points is cumbersome and dangerous, requiring workers to climb onto the roof to perform the operations, which poses a safety hazard.
A hoisting device comprising a parent anchor and a child anchor was designed. A power unit drives the pins to automatically engage and disengage from the anchor points, forming a stable hoisting assembly. The anchor points are fixed and disassembled by controlling the crane, thus avoiding manual operation.
It enables anchor point connection and disassembly without manual operation by workers, improving hoisting efficiency, eliminating safety hazards, and ensuring the safety and stability of the hoisting process.
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Figure CN223561084U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to hoisting device technical field, concretely relates to a mobile house hoisting device. BACKGROUND
[0002] Mobile house, also called container house, also called container residence or container building, is used for temporary accommodation of construction personnel, also used as rental house, and can be used as office, warehouse, shop, school, medical facility, etc., which is more and more recognized by market because of its firmness, durability and convenience. Container house is produced by factory, then hoisted by crane, transported, hoisted by crane to the placing position of container house. Before hoisting by crane, workers need to climb to the roof of container house, fix the rope to the anchor point of container house, and after hoisting, workers need to disassemble the rope of anchor point, which is very complicated, and in some hoisting sites, in order to improve work efficiency, workers often stand on the roof to complete hoisting with container house after fixing the rope to the anchor of container house, which is very dangerous. SUMMARY
[0003] The utility model aims at providing a mobile house hoisting device to solve the problems in the background.
[0004] In order to achieve the above-mentioned purpose, the utility model provides the following technical scheme: a mobile house hoisting device, comprising a parent anchor and a child anchor, the bottom of the parent anchor and the child anchor is provided with a steel shell, the top of the parent anchor is provided with a main lifting lug, the side of the parent anchor and the child anchor is provided with a vice lifting lug, the top of the child anchor is provided with a sleeve, the side of the sleeve is provided with a fixing hole, the side of the steel shell is provided with a sliding hole, the steel shell is fixedly installed with an assembly seat in the inside, the assembly seat is provided with an extension body, the extension body is fixedly connected with a power device through a fixing frame, the power device is drivingly connected with a flywheel, the assembly seat is provided with a sliding groove, the sliding groove is movably installed with a bolt, and the flywheel is drivingly connected with the bolt through a pull rod.
[0005] Preferably, the power device comprises a driving motor and a speed reducer, the driving motor is drivingly connected with the speed reducer, and the output shaft of the speed reducer is drivingly connected with the flywheel.
[0006] Preferably, the bottom of the assembly seat is provided with a camera hole, a camera is fixedly installed in the inside of the camera hole, and a tempered glass is sealingly connected to the bottom of the camera hole.
[0007] Preferably, the bottom of the assembly seat is provided with a lamp hole, a lamp bead is fixedly installed in the inside of the lamp hole, and the bottom of the lamp hole is trumpet-shaped.
[0008] Preferably, a circuit board is fixedly installed above the fixing frame, and the circuit board is fixedly installed with a battery.
[0009] Compared with the prior art, the utility model has the beneficial effects that:
[0010] The parent anchor and the child anchor are provided with auxiliary lifting lugs, the auxiliary lifting lug of the child anchor is connected with the auxiliary lifting lug of the parent anchor through a steel cable, the parent anchor is further provided with a main lifting lug, the main lifting lug of the parent anchor is connected with a crane through a steel cable, and a complete hoisting system is formed, before hoisting, the steel shell of the parent anchor is inserted into the sleeve of the child anchor, the two are fixed through the latch of the parent anchor, the steel shell of the upper child anchor is also inserted into the sleeve of the lower child anchor between the plurality of child anchors, and the two are fixed through the latch of the upper child anchor, so that the parent anchor and the plurality of child anchors form a hoisting combination, the hoisting combination is moved to the anchor point of the container house through the crane, the steel shell of the bottom child anchor is inserted into the anchor point through the crane, the latch is driven to extend through the power device, the child anchor is clamped on the anchor point, the crane is continuously controlled to clamp and fix the other child anchors on the anchor points of the container house, after the child anchors are clamped and fixed on the anchor points of the container house, the crane is lifted to hoist the container house, after the hoisting task is completed, the latch is driven to retract through the power device, the child anchors are separated from the anchor points of the container house, the hoisting task is completed, the anchor points are connected and detached without manual operation of workers, the child anchors are automatically clamped or fixed on the anchor points of the container house, the hoisting operation of the container house is completed, workers do not need to climb to the top of the container house to operate the anchor points, the safety hidden danger during the hoisting operation is eliminated, and the work efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 is the use state view of the application.
[0012] Figure 2 is the combination state structure view between the parent anchor and the child anchor in the non-working state of the application. Figure 1 is the enlarged structure view of the mark point A.
[0013] Figure 3 is the combination state structure view between the parent anchor and the child anchor in the non-working state of the application.
[0014] Figure 4 is the separation state structure view of the parent anchor and the child anchor of the application.
[0015] Figure 5 is the first structure view of the parent anchor inside the application.
[0016] Figure 6 is the second structure view of the parent anchor inside the application.
[0017] Figure 7 is the first structure view of the child anchor inside the application.
[0018] Figure 8 is the second structure view of the child anchor inside the application.
[0019] Figure 9 This is an exploded structural view of the assembly base of the present invention.
[0020] Figure 10 This is a structural view of the power unit of the present invention.
[0021] Figure 11 This is a bottom structural view of the assembly base of the present invention.
[0022] The diagram is labeled as follows: Parent anchor 1, Child anchor 2, Steel shell 3, Main lifting lug 4, Secondary lifting lug 5, Kit 6, Fixing hole 7, Sliding hole 8, Mounting seat 9, Extension body 10, Fixing frame 11, Power unit 12, Flywheel 13, Slide groove 14, Pin 15, Pull rod 16, Drive motor 17, Gearbox 18, Camera hole 19, Camera 20, Tempered glass 21, Lamp hole 22, Lamp bead 23, Circuit board 24, Battery 25. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0024] Example 1:
[0025] like Figures 1-11 As shown, the present invention provides a mobile home hoisting device, including a parent anchor 1 and a child anchor 2. Both the parent anchor 1 and the child anchor 2 have a steel shell 3 at their bottom. The parent anchor 1 has a main lifting lug 4 at its top, and both the parent anchor 1 and the child anchor 2 have auxiliary lifting lugs 5 on their sides. The child anchor 2 has a kit 6 at its top, and the kit 6 has a fixing hole 7 on its side. The steel shell 3 has a sliding hole 8 on its side. An assembly base 9 is fixedly installed inside the steel shell 3. The assembly base 9 has an extension body 10, which is fixedly connected to a power unit 12 via a fixing frame 11. The power unit 12 drives a flywheel 13. The assembly base 9 has a sliding groove 14, and a pin 15 is movably installed in the sliding groove 14. The flywheel 13 is driven and connected to the pin 15 via a pull rod 16. The power unit 12 includes a drive motor 17 and a reduction gearbox 18. The drive motor 17 drives and connects to the reduction gearbox 18, and the output shaft of the reduction gearbox 18 drives and connects to the flywheel 13. The mounting base 9 has a camera hole 19 at its bottom, and a camera 20 is fixedly installed inside the camera hole 19. A tempered glass 21 is sealed to the bottom of the camera hole 19. The mounting base 9 also has a lamp hole 22 at its bottom, and an LED 23 is fixedly installed inside the lamp hole 22. The bottom of the lamp hole 22 is horn-shaped. A circuit board 24 is fixedly installed above the mounting bracket 11, and a battery 25 is fixedly installed on the circuit board 24.
[0026] Through the above technical solutions
[0027] The parent anchor 1 and the child anchor 2 of the present application are both provided with auxiliary lifting lugs 5, the auxiliary lifting lug 5 of the child anchor 2 is connected with the auxiliary lifting lug 5 of the parent anchor 1 through a steel cable, the parent anchor 1 is further provided with a main lifting lug 4, the main lifting lug 4 of the parent anchor 1 is connected with a crane through a steel cable, forming a complete hoisting system, before hoisting, the steel shell 3 of the parent anchor 1 is inserted into the sleeve 6 of the child anchor 2, and the two are fixed through the latch 15 of the parent anchor 1, the steel shell 3 of the upper child anchor 2 is also inserted into the sleeve 6 of the lower child anchor 2, and the two are fixed through the latch 15 of the upper child anchor 2, so that the parent anchor 1 and the multiple child anchors 2 form a hoisting combination, and then the hoisting combination is moved to the anchor point of the container house through the crane, the steel shell 3 of the lowest child anchor 2 is inserted into the anchor point through the lowering of the crane, the power device 12 is started to drive the latch 15 to extend, so that the child anchor 2 is clamped on the anchor point, the crane is continuously controlled to complete the clamping and fixing of the other child anchors 2 and the anchor points of the container house, after the clamping and fixing of the child anchors 2 and the anchor points of the container house are completed, the crane is raised to hoist the container house, after the hoisting task is completed, the power device 12 of the latch 15 is started to drive the latch 15 to retract, so that the child anchor 2 is separated from the anchor point of the container house, the hoisting task is completed, the present application does not need manual operation of workers in connecting and dismounting the anchor point, the child anchor 2 is automatically clamped or fixed with the anchor point of the container house, the hoisting operation of the container house is completed, workers do not need to climb to the top of the container house to operate the anchor point connection, the safety hidden danger in the hoisting operation is eliminated, and the work efficiency is improved.
[0028] Example two:
[0029] As Figures 1-11To solve the problems in the background art, the mobile house hoisting device is provided, and the design focuses on the simplicity and safety of the operation. The device is composed of a parent anchor 1 and a child anchor 2. The parent anchor 1 is the core hub of the entire system, responsible for connecting the crane and the child anchor 2. In actual operation, the crane is connected to the parent anchor 1 through a steel cable, and the parent anchor 1 is connected to multiple child anchors 2 through additional steel cables, establishing a stable hoisting system. The design not only greatly improves the stability of the device, but also makes the entire device more flexible, able to adapt to different working environments and different hoisting needs. The bottom of the parent anchor 1 and the child anchor 2 is provided with a steel shell 3, which not only serves as physical installation and structural support, but also accommodates and protects the internal circuit board 24, drive system and other key components. These components play a crucial role in the hoisting process, and the presence of the steel shell 3 can effectively prevent the influence of the external environment on the internal components, thereby prolonging their service life and ensuring the stability and accuracy of operation. The top of the parent anchor 1 is provided with a main lifting lug 4, which is an important structure for connecting the crane. One end of the steel cable is fixed to the parent anchor 1 through the main lifting lug 4, and the other end is fixed to the crane. This design allows the crane to easily control the entire hoisting device, simplifying the operation process and ensuring the safety of the hoisting process. The side of the parent anchor 1 and the child anchor 2 is provided with a vice lifting lug 5, and the vice lifting lug 5 of the parent anchor 1 is connected to the vice lifting lug 5 of the child anchor 2 through a steel cable, further enhancing the stability and durability of the system. The top of the child anchor 2 is provided with a sleeve 6, and the side of the sleeve 6 is provided with a fixing hole 7. The design provides a temporary fixing function in the non-working state. When the hoisting device is not working, the steel shell 3 of the parent anchor 1 can be inserted into the sleeve 6 of the child anchor 2, and the latch 15 in the steel shell 3 will extend and insert into the fixing hole 7, temporarily fixing the child anchor 2 on the parent anchor 1. Similarly, the child anchors 2 can also be fixed to each other in this way. This design not only facilitates the storage and transportation of the hoisting device, but also ensures the neatness and stability of the device in the non-working state, avoiding damage caused by random placement. The side of the steel shell 3 is provided with a sliding hole 8, which allows the latch 15 in the steel shell 3 to smoothly extend. Inside the steel shell 3, a mounting seat 9 is fixedly installed, and an extension body 10 is provided on the mounting seat 9. The extension body 10 is connected to the power device 12 through the fixing frame 11. The power device 12 is the core component that provides driving force, which drives the flywheel 13, and then drives the latch 15 to extend and retract through the pull rod 16. The mounting seat 9 is provided with a sliding groove 14, and the latch 15 is movably installed in the sliding groove 14. The flywheel 13 drives the latch 15 through the pull rod 16, and the latch 15 can move freely in the sliding groove 14. The latch 15 can be connected to the anchor point of the container house, ensuring that the crane is connected to the container house firmly and reliably during hoisting. The power device 12 drives the flywheel 13 to rotate, drives the pull rod 16, and then drives the latch 15 to move, so that the latch 15 can smoothly complete the connection and release of the anchor point.This process can be controlled by the controller to control the positive and negative movement of the power device 12, thereby achieving the reciprocating movement of the pin 15, ensuring that the connection parts complete the installation and disassembly quickly and safely.
[0030] The power device 12 of the device of the present application includes two key components: the drive motor 17 and the reduction box 18, which work together to ensure the efficient and stable operation of the entire lifting device. The drive motor 17 is the core component of the entire power device 12, which provides the basic power required for the operation of the device. The drive motor 17 converts electrical energy into mechanical energy to produce rotary motion. Then, this rotary motion is transmitted to the reduction box 18 through the connection between the drive motor 17 and the reduction box 18, which is very stable, ensuring efficient power transmission and avoiding energy loss during power transmission. The reduction box 18 plays an important role in regulating the entire power device 12. Although the drive motor 17 can produce high-speed rotary motion, the input torque is increased through the reduction box 18, and a lower-speed but high-torque output is output. This low-speed high-torque output is very suitable for the needs of the lifting device, as it can ensure the stability and accuracy of the movement of the pin 15. The output shaft of the reduction box 18 directly drives the flywheel 13, which rotates to drive the pin 15 to move. In summary, this power device 12 including the drive motor 17 and the reduction box 18 provides strong power support and precise control ability for the mobile house lifting device. Through the design, not only the overall performance and reliability of the lifting device are improved, but also the safety and efficiency of the operation are greatly improved. This makes the lifting device be able to efficiently and safely complete the lifting task in various complex environments, providing strong technical support for the application of container houses.
[0031] The power device 12 of the device of the present application comprises two key components: the driving motor 17 and the reduction box 18, which work together to ensure the efficient and stable operation of the entire lifting device. The driving motor 17 is the core component of the entire power device 12, which provides the basic power required for the operation of the device. The driving motor 17 converts electrical energy into mechanical energy to produce rotary motion. Then, this rotary motion is transmitted to the reduction box 18 through the connection between the driving motor 17 and the reduction box 18, which is very stable, ensuring the effective transmission of power and avoiding energy loss during power transmission. The reduction box 18 plays an important role in regulating the entire power device 12. Although the driving motor 17 can produce high-speed rotary motion, the input torque is increased through the reduction box 18, and a lower-speed but high-torque output is obtained. This low-speed high-torque output is very suitable for the needs of the lifting device, as it can ensure the stability and accuracy of the movement of the pin 15. The output shaft of the reduction box 18 directly drives the flywheel 13, which rotates to drive the pin 15 to move. In summary, this power device 12 including the driving motor 17 and the reduction box 18 provides strong power support and precise control ability for the mobile house lifting device. Through the design, not only the overall performance and reliability of the lifting device are improved, but also the safety and efficiency of the operation are greatly improved. This makes the lifting device able to efficiently and safely complete the lifting task in various complex environments, providing strong technical support for the application of container houses.
[0032] The bottom of the assembly seat 9 is provided with a lamp hole 22, and a lamp bead 23 is fixedly installed in the lamp hole 22. The bottom of the lamp hole 22 is designed in a horn shape. The lighting device provides light for the camera 20, which significantly improves the working effect of the camera 20 and the operation convenience of the whole device. The lamp hole 22 provided at the bottom of the assembly seat 9 mainly provides sufficient illumination for the camera 20 in the case of insufficient light. The lamp bead 23 is fixedly installed in the lamp hole 22. The lamp bead 23 is a high-brightness LED lamp bead, which can emit strong and uniform light. The light passes through the lamp hole 22 and irradiates the area shot by the camera 20, ensuring that the camera 20 can capture clear images both in the daytime and at night. The bottom of the lamp hole 22 is designed in a horn shape, which is a very targeted design. The horn-shaped design can effectively diffuse light, making the light cover a wider and more uniform range, reducing the concentration of light, and avoiding the influence of reflected glare on the shooting effect of the camera 20. At the same time, this design also improves the use efficiency of light, ensuring that the light emitted by the lamp bead 23 can be used to the maximum extent. In the actual working environment, especially at night or in the case of insufficient light, the lamp bead 23 in the lamp hole 22 can provide good light protection for the camera 20. Through sufficient and uniform illumination, the camera 20 can clearly capture every detail of the hoisting site, including the anchor points of the container, the connection of the steel cable, and other potential safety hazards. The operator can make more accurate judgments and operations by observing the monitoring picture, ensuring the safety and efficiency of the whole hoisting process. The lamp bead 23 as the lighting light source often adopts a high-brightness LED light source. The LED lamp bead 23 has the advantages of high brightness, low energy consumption, long service life, etc., which can reduce energy consumption and maintenance frequency while maintaining strong light output, improving the overall service life and economy of the hoisting device.
[0033] A circuit board 24 is fixedly installed above the fixed frame 11, and a battery 25 is fixedly installed on the circuit board 24. The design of this system focuses on the independence of power supply and the convenience of remote control, thereby improving the operation efficiency and safety performance of the entire hoisting device. The circuit board 24 is arranged to integrate and manage various electrical and electronic components, so that the system can operate more efficiently. The circuit board 24 is not only a mounting platform for various sensors, driving devices and other electrical components. The fixed installation of the battery 25 improves the mobility and independence of the system. As the core of power supply, the battery 25 can provide continuous and reliable power supply for the circuit board 24 and related electronic components. The circuit board 24 is also configured with a wireless module, which enables the entire hoisting device to be connected with the control room through wireless signals. The application of the wireless module greatly expands the operation range of the device. The operator does not have to operate close to the equipment, but can remotely control the hoisting device in the control room away from the scene through wireless signals. This not only improves the convenience of operation, but also greatly improves the safety of operation. Especially in some high-risk or harsh environments, remote control can effectively avoid the safety risks of operators. Real-time data transmission is realized through the wireless module, and the operator can monitor the various working parameters on site in time through the display screen in the control room. Wireless signal transmission can use various wireless communication technologies such as Wi-Fi, Zigbee, LoRa, etc. The specific selection can be determined according to the actual use environment and requirements. In order to ensure the stability and anti-interference ability of the wireless signal, the system can also set multiple channels, and can automatically switch to the optimal channel according to the signal strength.
[0034] It should be noted that, in this text, relational terms such as first and second are used only to distinguish one entity or operation from another, and do not necessarily require or imply that there is any such actual relationship or order between these entities or operations. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment. Without more limitations, the element defined by the statement "including a" does not exclude the presence of additional identical elements in the process, method, article or equipment including the element.
[0035] The above description is only used to illustrate the technical scheme of the utility model and not to limit it. Other modifications or equivalent replacements of the technical scheme of the utility model made by those skilled in the art should be covered in the scope of the claims of the utility model, as long as they do not deviate from the spirit and scope of the technical scheme of the utility model.
Claims
1. A mobile home hoisting device comprising a parent anchor and a child anchor, characterized in that, The bottom of the parent anchor and the child anchor is provided with a steel shell, the top of the parent anchor is provided with a main lifting lug, the side of the parent anchor and the child anchor is provided with an auxiliary lifting lug, the top of the child anchor is provided with a sleeve, the side of the sleeve is provided with a fixing hole, the side of the steel shell is provided with a sliding hole, the steel shell is fixedly installed with an assembly seat, the assembly seat is provided with an extension body, the extension body is fixedly connected with a power device through a fixing frame, the power device is drivingly connected with a flywheel, the assembly seat is provided with a sliding groove, the sliding groove is movably installed with a bolt, and the flywheel is drivingly connected with the bolt through a pull rod.
2. A mobile home hoisting apparatus according to claim 1, wherein The power device comprises a driving motor and a speed reducer, the driving motor is drivingly connected with the speed reducer, and the output shaft of the speed reducer is drivingly connected with the flywheel.
3. A mobile home hoisting apparatus according to claim 1, wherein The bottom of the assembly seat is provided with a camera hole, the camera hole is fixedly installed with a camera inside, and the bottom of the camera hole is sealingly connected with tempered glass.
4. The mobile home hoisting apparatus of claim 1, wherein The bottom of the assembly seat is provided with a lamp hole, the lamp hole is fixedly installed with a lamp bead inside, and the bottom of the lamp hole is trumpet-shaped.
5. The mobile home hoisting apparatus of claim 1, wherein A circuit board is fixedly installed above the fixing frame, and the circuit board is fixedly installed with a battery.
Citation Information
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