Steel structure composite assembly type building outer wall safety protection facility
Through the modular design and intelligent monitoring system of steel composite prefabricated building exterior wall safety protection facilities, the existing facilities are solved by complex installation, poor stability and high maintenance costs, and the application of rapid installation, real-time monitoring and environmentally friendly materials are realized, and construction efficiency and safety are improved.
Patent Information
- Application Number
- CN202510529731.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2025-07-29
AI Technical Summary
The existing steel composite prefabricated exterior wall safety protection facilities are complex to install, have high labor costs, poor stability, large space occupies, high maintenance costs and are difficult to clean, making it difficult to adapt to different construction needs and environmental changes.
It adopts a modularly designed high-strength synthetic fiber protective mesh, folding protective railing, intelligent monitoring system and environmentally friendly materials, combined with self-cleaning coating, to achieve rapid installation, disassembly and adjustment, to monitor the stability of the facility in real time, and reduce accident risks and maintenance work.
It improves the installation convenience, stability and adaptability of facilities, reduces labor and maintenance costs, improves construction efficiency and safety, complies with green building standards, and reduces resource waste.
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of building safety protection, and in particular to a safety protection facility for the exterior wall of a steel structure composite assembled building. Background Art
[0002] Steel-structured composite prefabricated building exterior wall safety protection facilities are a protective system designed specifically for exterior wall construction safety at construction sites. Through a modular design, combining steel structures with composite materials, this system provides a high-strength protective barrier that effectively prevents accidents such as falling objects and injuries. It typically includes modules such as guardrails, netting, fencing, and material racks, allowing for rapid assembly and disassembly to adapt to the construction needs of various buildings. Furthermore, the system can integrate intelligent monitoring systems for real-time monitoring of wind speed, load, vibration, and other parameters, enhancing safety assurance capabilities. The use of environmentally friendly and durable materials reduces maintenance costs and extends service life.
[0003] Existing safety and protection systems for the exterior walls of prefabricated steel-structured buildings often suffer from the following shortcomings: installation is complex and labor-intensive; the protective nets are unstable and easily loosened or damaged by wind and vibration; they occupy a large area of construction space, hindering efficiency; maintenance costs are high and cleaning is difficult; and the equipment lacks flexibility, making it difficult to adapt to varying construction needs and environmental changes. To address these issues, a new type of safety and protection system is needed that offers greater ease of installation, stability, adaptability, and maintainability.
[0004] To this end, we propose a steel structure composite prefabricated building exterior wall safety protection facility. Summary of the Invention
[0005] To achieve the above objectives, the present invention provides a steel-structured composite prefabricated building exterior wall safety and protection facility. This facility significantly improves safety, flexibility, and cost-effectiveness through modular design, an intelligent monitoring system, and the use of new environmentally friendly materials. The present invention provides the following technical solution: a steel-structured composite prefabricated building exterior wall safety and protection facility comprising a plurality of adjustable modular protection units, each comprising a guardrail, a protective net, a material rack, and a fence. These units utilize a standardized design, are adaptable to different building types, and can be quickly assembled and disassembled according to actual needs.
[0006] Preferably, the protective net is made of a new type of high-strength synthetic fiber material, which has the characteristics of UV resistance, corrosion resistance, and strong wind resistance. It can be used for a long time in harsh environments and is not easily damaged or loosened by external forces such as wind and vibration.
[0007] Preferably, the guardrail adopts a foldable design, which can be flexibly adjusted according to the construction progress after installation. After folding, it saves construction space and is convenient for later disassembly and cleaning.
[0008] Preferably, the protective facility integrates an intelligent monitoring system, which includes a wind speed sensor, a load sensor, a vibration sensor, etc., and is used to monitor the stability of the protective facility in real time, and can automatically record data and send it to the management platform. When the equipment is abnormal, the system can automatically send out a warning signal.
[0009] Preferably, all components of the facility are made of environmentally friendly materials, such as recyclable aluminum alloy, durable plastic, etc., reducing resource waste and meeting the green building standards.
[0010] Preferably, the installation and disassembly of the protective facility both adopt convenient connectors, which can be quickly fixed and removed, reducing the installation and disassembly time and improving the construction efficiency.
[0011] Preferably, the surface of the protective facility is coated with a self-cleaning coating, which can automatically remove dust and stains, reducing the later cleaning workload and lowering the maintenance cost.
[0012] Preferably, the facility is designed with good flexibility and adaptability, and can be quickly adjusted and customized according to different construction stages, different building structures and climate conditions.
[0013] Compared with the prior art, the present invention provides a safety protection facility for the outer wall of a steel structure composite prefabricated building, which has the following beneficial effects:
[0014] 1. The safety protection facility for the outer wall of the steel structure composite prefabricated building, by adopting a high-strength synthetic fiber protective net and an intelligent monitoring system, can effectively reduce the risk of accidents and monitor the stability of the protective facility in real time, ensuring the safety of personnel at the construction site. The modular design and foldable guardrails make the installation and disassembly more convenient. The construction unit can quickly assemble or disassemble according to actual needs, saving a lot of time and labor costs.
[0015] 2. The safety protection facility for the outer wall of the steel structure composite prefabricated building, through the foldable railing design and the use of modular components, makes the protective facility occupy less space. Especially in the case of limited construction space, it can improve the construction efficiency and create more working space. At the same time, the new durable materials and self-cleaning coating reduce the wear and cleaning requirements of the facility, and the intelligent monitoring system can detect problems in advance, reducing the complexity and frequency of maintenance work.
[0016] 3. The safety protection facility for the outer wall of the steel structure composite prefabricated building, by using environmentally friendly materials to make the protective facility, meets the requirements of green buildings, reduces construction waste and resource waste, promotes the sustainable development of the construction industry, adapts to the needs of different building types and construction stages, and improves the overall construction adaptability and safety. Detailed implementation manner
[0017] The technical solutions in the embodiments of the present invention will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0018] Embodiment
[0019] An embodiment of a safety protection facility for the exterior wall of a steel structure composite prefabricated building
[0020] A safety protection facility for the exterior wall of a steel structure composite prefabricated building, which includes a number of adjustable modular protection units. The protection unit includes a guardrail, a protective net, a material bracket and a fence. The protection unit is designed in a standardized manner, applicable to different building types, and can be quickly assembled and disassembled according to actual needs.
[0021] Specifically, the protective net is made of a new type of high-strength synthetic fiber material, with the characteristics of anti-ultraviolet, corrosion-resistant and strong wind resistance. It can be used for a long time in harsh environments and is not easily damaged or loosened by external forces such as wind and vibration.
[0022] Specifically, the guardrail is designed in a foldable manner and can be flexibly adjusted according to the construction progress after installation. After folding, it saves construction space and is convenient for later disassembly and cleaning.
[0023] Specifically, the protection facility integrates an intelligent monitoring system, which includes a wind speed sensor, a load sensor, a vibration sensor, etc., for real-time monitoring of the stability of the protection facility, and can automatically record data and send it to the management platform. When the equipment is abnormal, the system can automatically send out a warning signal.
[0024] Specifically, all components of the facility are made of environmentally friendly materials, such as recyclable aluminum alloy, durable plastic, etc., reducing resource waste and meeting the green building standards.
[0025] Specifically, the installation and disassembly of the protection facility both use convenient connectors, which can be quickly fixed and removed, reducing the installation and disassembly time and improving the construction efficiency.
[0026] Specifically, the surface of the protection facility is coated with a self-cleaning coating, which can automatically remove dust and stains, reducing the later cleaning workload and lowering the maintenance cost.
[0027] Specifically, the facility design has good flexibility and adaptability, and can be quickly adjusted and customized according to different construction stages, different building structures and climate conditions.
[0028] Through the above technical solutions, in the present invention, by adopting a high-strength synthetic fiber protective net and an intelligent monitoring system, the risk of accidents can be effectively reduced, and the stability of the protective facilities can be monitored in real time to ensure the safety of personnel at the construction site. The modular design and foldable guardrails make the installation and disassembly more convenient. The construction unit can quickly assemble or disassemble according to actual needs, saving a large amount of time and labor costs. The foldable railing design and the use of modular components make the protective facilities occupy less space. Especially in the case of limited construction space, it can improve construction efficiency and create more working space. At the same time, the new durable materials and self-cleaning coatings reduce the wear and cleaning requirements of the facilities. Meanwhile, the intelligent monitoring system can detect problems in advance, reducing the complexity and frequency of maintenance work. By using environmentally friendly materials to make the protective facilities, it meets the requirements of green buildings, reduces construction waste and resource waste, promotes the sustainable development of the construction industry, adapts to the needs of different building types and construction stages, and improves the overall construction adaptability and safety.
[0029] Implementation steps:
[0030] S1 Design and planning stage
[0031] S1.1, Scheme refinement and design confirmation:
[0032] The design team refines the overall design scheme of the protective facilities according to the project requirements and building characteristics, and clarifies the functions, dimensions, material selection, connection methods, etc. of each module.
[0033] Determine the modular design of the protection unit to ensure that it can be quickly assembled, disassembled, and applied to different construction scenarios.
[0034] S1.2, Structure and function analysis:
[0035] Conduct structural strength and stability analysis on modules such as guardrails, protective nets, and material carriers to ensure that they can effectively prevent objects from falling and guarantee the safety of operators during the construction process.
[0036] Design an intelligent monitoring system (such as wind speed sensors, load sensors, vibration sensors, etc.) and evaluate its real-time monitoring effect on the stability of the facilities.
[0037] S1.3, Material selection and supplier selection:
[0038] Determine the use of new materials such as high-strength synthetic fiber materials, recyclable environmental protection materials, and corrosion-resistant coatings.
[0039] Confirm with the supplier the quality standards, delivery time, and price of the materials to ensure that the materials meet the design requirements.
[0040] S2 Sample production and testing stage
[0041] Objective: To produce samples and conduct on-site tests to verify the practicability, stability of the design scheme and the performance of the intelligent monitoring system.
[0042] Implementation steps:
[0043] S2.1. Sample production and manufacturing:
[0044] According to the design drawings, produce small batches of protective facility samples, including modules such as guardrails, material brackets, protective nets, enclosures, etc.
[0045] Conduct surface coating treatment on the samples to ensure they have functions of anti-ultraviolet, anti-corrosion and self-cleaning.
[0046] S2.2. Experimental testing and analysis:
[0047] Conduct comprehensive tests in the construction simulation environment, including the stability tests of protective facilities under actual conditions such as wind force, vibration, load, etc.
[0048] Test the functions of the intelligent monitoring system to ensure that the sensors can accurately sense data such as wind speed, load, vibration, etc., and can feedback to the management platform in real time to trigger the warning mechanism.
[0049] S2.3. Optimization and adjustment:
[0050] According to the experimental results, adjust the parameters of the intelligent monitoring system and optimize the design of the protective facilities, such as improving the wind resistance of the protective net material and enhancing the stability of the railing.
[0051] Ensure that after all tests are passed, the product can operate stably under different construction conditions.
[0052] S3 Production and mass manufacturing stage
[0053] Objective: Mass-produce each protective unit according to the design scheme to ensure production quality and schedule.
[0054] Implementation steps:
[0055] S3.1. Production preparation and scheduling:
[0056] According to the requirements of the construction site, formulate a production plan, clarify production tasks and delivery times to ensure the facilities are produced on schedule.
[0057] During the production process, conduct quality control to ensure that the quality of each module meets the design standards and make timely adjustments to any quality problems that occur during the production process.
[0058] S3.2. Facility module manufacturing:
[0059] Start mass-producing modules such as guardrails, material brackets, enclosures, and safety nets. Each module is produced according to standardized designs to ensure the unity of its dimensions, connection methods, and functions.
[0060] Manufacture using environmentally friendly materials (such as recyclable aluminum alloy, corrosion-resistant alloy steel, etc.), and ensure the self-cleaning function and weather resistance of the coating.
[0061] S3.3 Quality Control and Inspection:
[0062] Conduct strict quality inspections during the production process, inspect each module to ensure no defects or damages and compliance with technical requirements.
[0063] Conduct special inspections on the adhesion, corrosion resistance, and durability of the coating to ensure its long-term service performance.
[0064] S4 On-site Installation and Assembly Phase
[0065] Goal: Install facilities and integrate the intelligent monitoring system at the construction site to ensure the stability and safety of the facilities.
[0066] Implementation Steps:
[0067] S4.1 Site Preparation and Arrangement of Protective Facilities:
[0068] According to the actual layout of the construction site, plan the installation locations of the protective facilities to ensure that the protection units can cover all areas where high-altitude operations may occur.
[0069] Determine the installation sequence of each module, especially the reasonable positions of the guardrails and material brackets, to avoid affecting construction operations.
[0070] S4.2 Modular Assembly and Installation:
[0071] Use standardized connectors and quick installation tools to assemble the protective facilities to ensure an efficient and stable installation process.
[0072] The installation of the folding railing module should ensure its stability after folding to prevent the guardrail from loosening or shifting due to changes in the construction environment.
[0073] S4.3 Installation of Intelligent Monitoring System:
[0074] Install sensors and monitoring devices on each protection unit to ensure that sensors such as wind speed, load, and vibration can accurately monitor the stability of the protective facilities.
[0075] Connect all monitoring devices to the management platform for data synchronization and remote monitoring to ensure that any abnormal situations can be promptly reported and processed.
[0076] S4.4, Debugging and Detection:
[0077] After installation, conduct comprehensive debugging to ensure the normal operation of each module, sensor, and intelligent monitoring system. Especially for the intelligent monitoring system, ensure accurate data transmission and timely alarm in case of abnormalities.
[0078] S5 Debugging and Optimization Phase
[0079] Objective: Conduct comprehensive debugging in the actual construction environment to ensure the stable operation of the system and make necessary optimizations based on feedback.
[0080] Implementation Steps:
[0081] S5.1, On-site Operation Test:
[0082] Conduct on-site load tests, wind tests, etc. to ensure the stability of the protection facilities in different construction environments. For example, in an environment with strong winds, test the wind resistance of the protection net and the firmness of the railing.
[0083] Conduct actual tests on the intelligent monitoring system to ensure that the sensors can accurately detect abnormal situations, and the system can alarm in time and push relevant information.
[0084] S5.2, System Optimization and Adjustment:
[0085] According to the test results, optimize the response speed and data acquisition accuracy of the intelligent monitoring system. For example, adjust the alarm threshold of the wind speed sensor to ensure the stable operation of the system in extreme weather.
[0086] Make necessary adjustments to the protection facilities, such as strengthening the tension of the protection net and adjusting the fixed position of the folding railing, etc.
[0087] S5.3, Final Acceptance and Project Delivery:
[0088] After completing the debugging and ensuring the stability and safety of all facilities, conduct project acceptance. The acceptance content includes the safety of the facilities, the responsiveness of the intelligent monitoring system, the durability of the facilities, etc.
[0089] Complete the training of construction personnel in the later stage to ensure that the staff can operate and maintain the facilities proficiently and ensure safety during long-term use.
[0090] S6 Post-maintenance and Technical Support
[0091] Objective: Ensure the long-term stable operation of the facilities and provide necessary technical support and maintenance services.
[0092] Implementation Steps:
[0093] S6.1, Facility Maintenance and Upkeep:
[0094] Regularly inspect the protective facilities, especially the wear condition of the coating, the stability of the sensors, and the firmness of the connectors.
[0095] Regularly clean the self-cleaning coating to ensure the appearance of the protective facilities is clean and the functions are good.
[0096] S6.2, Technical Support and Emergency Services:
[0097] Provide remote technical support to ensure quick response and problem-solving in case of facility failures.
[0098] According to the feedback from the construction site, promptly optimize and adjust the facilities to ensure that the protective facilities are always in the best working condition.
[0099] 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 safety protection facility for the exterior wall of a steel structure composite prefabricated building, characterized in that: The facility includes several adjustable modular protection units, which include guardrails, protective nets, material brackets and enclosures. The protection units are designed in a standardized manner, applicable to different building types, and can be quickly assembled and disassembled according to actual needs.
2. The safety protection facility for the exterior wall of a steel structure composite prefabricated building according to claim 1, characterized in that: The protective net is made of a new type of high-strength synthetic fiber material, with the characteristics of anti-ultraviolet, corrosion-resistant and strong wind resistance. It can be used for a long time in harsh environments and is not easily damaged or loosened by external forces such as wind and vibration.
3. The safety protection facility for the exterior wall of a steel structure composite prefabricated building according to claim 1, characterized in that: The guardrail adopts a folding design and can be flexibly adjusted according to the construction progress after installation. After folding, it saves construction space and is convenient for later disassembly and cleaning.
4. The safety protection facility for the outer wall of a steel structure composite prefabricated building according to claim 1, characterized in that: The protection facility integrates an intelligent monitoring system, which includes a wind speed sensor, a load sensor, a vibration sensor, etc., for real-time monitoring of the stability of the protection facility, and can automatically record data and send it to the management platform. When the equipment is abnormal, the system can automatically send out a warning signal.
5. The safety protection facility for the exterior wall of a steel structure composite prefabricated building according to claim 1, characterized in that: All components of the facility are made of environmentally friendly materials, such as recyclable aluminum alloy, durable plastic, etc., reducing resource waste and meeting the green building standards.
6. The safety protection facility for the outer wall of a steel structure composite prefabricated building according to claim 1, wherein: The installation and disassembly of the protection facility both adopt convenient connectors, which can be quickly fixed and removed, reducing the installation and disassembly time and improving the construction efficiency.
7. The steel structure composite assembled building exterior wall safety protection facility according to claim 1, characterized in that: The surface of the protection facility is coated with a self-cleaning coating, which can automatically remove dust and stains, reducing the later cleaning workload and lowering the maintenance cost.
8. The steel structure composite assembled building exterior wall safety protection facility according to claim 1, characterized in that: The facility is designed with good flexibility and adaptability, and can be quickly adjusted and customized according to different construction stages, different building structures and climatic conditions.