Bobonaro Key Points and Difficulties in the Processing and Fabrication of Steel Structure Spiral Stairs

12-10496阅读10评论steel

Bobonaro

I. Key Points in Processing and Fabrication

Bobonaro Key Points and Difficulties in the Processing and Fabrication of Steel Structure Spiral Stairs News 第1张

1. 3D Space Modeling and Lofting

    - BIM Reverse Modeling: It is necessary to construct an accurate 3D model based on design parameters (rotation radius, tread angle, central column diameter). Use parametric modeling with BIM or Rhino + Grasshopper to verify the spatial geometric relationships and avoid interference between the tread plate, the central column and the handrail.

Bobonaro     - Segmented Lofting Strategy: Discretize the spiral line into multiple broken lines. Use a numerically controlled cutting machine to perform special-shaped cutting on the tread plate and the supporting beam, and mark the spatial positioning points (such as the welding coordinates of the tread plate and the central column).

Bobonaro 2. Material Selection and Pretreatment

Bobonaro     - Main Structural Materials: For the central column, seamless steel pipes are preferably selected (such as Φ200×10mm Q345B). The tread plate is made of 8 - 12mm anti-slip checkered steel plate, and the handrail support is made of Φ50×3mm stainless steel pipe.

    - Anti-corrosion Pretreatment: For outdoor stairs, the steel needs to be sandblasted to remove rust (Sa2.5 level) and pre-coated with primer to avoid damage to the coating during subsequent welding.

Bobonaro 3. Welding Deformation Control

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    - Design of Workpiece Fixtures: Use an adjustable-angle circular welding fixture to fix the tread plate and the central column to ensure that the inclination angles of each tread plate are consistent (for example, each step rotates 10°).

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    - Optimization of Welding Sequence: Adopt a symmetric skip welding process (such as welding the inner side weld first and then repairing the outer side weld), and control the interlayer temperature ≤ 150°C to reduce thermal deformation.

Bobonaro 4. Assurance of Assembly Precision

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Bobonaro     - Virtual Pre-assembly: Obtain the actual dimensions of the components through a 3D scanner, simulate the assembly in the software, and then carry out physical assembly after correcting the errors.

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    - Setting of Positioning Reference: Take the plumb line of the central column as the reference, and use a total station to calibrate the three-dimensional coordinates of the end points of each tread plate (the error is controlled within ±2mm).

Bobonaro II. Technical Difficulties and Solutions

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1. Cold Bending and Forming of Spatial Curved Beams

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    - Difficulty: The spatial double curvature of the spiral handrail makes traditional roll forming difficult.

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    - Solution: Adopt segmented cold bending (the length of each segment ≤ 1.5m) + use a numerically controlled pipe bender to precisely control the bending radius, and reserve a 2mm finishing allowance at the interface.

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2. Structural Stability under Asymmetric Loads

    - Problem: The rotating staircase is prone to lateral torsion under eccentric loads.

Bobonaro     - Countermeasure: Pour C40 micro-expansive concrete (filling rate ≥ 90%) inside the central column, and at the same time, add triangular diagonal braces (such as L100×10 angle steel) at the cantilever end to form a spatial truss system.

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Bobonaro 3. Control of Tread Plate Flatness

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Bobonaro     - Challenge: Welding thermal deformation causes undulations on the surface of the tread plate (common error is 3 - 5mm).

Bobonaro     - Process Improvement: Use CO₂ gas shielded welding (current 180 - 220A, voltage 24 - 28V), and use a hydraulic straightening machine to perform local flattening treatment on the tread plate after welding.

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Bobonaro 4. Transportation of Special-shaped Components and On-site Installation

    - Bottleneck: The overall spiral structure cannot be transported at one time and needs to be hoisted in sections.

    - Modular Design: Decompose the staircase into a central column module (for overall transportation), a tread module (with every 3 steps as a unit), and a handrail module. Use high-strength bolts (grade 10.9) for on-site connection, and inject structural adhesive at the joints for sealing.

Bobonaro III. Key Indicators for Quality Control

1. Dimensional Tolerance

    - The verticality deviation of the central column ≤ H/1000 (H is the total height)

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    - The height difference between adjacent tread plates ≤ 3mm

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Bobonaro     - The straightness deviation of the handrail ≤ 2mm/m

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2. Mechanical Properties

    - Static Load Test: Apply a load of 1.5kN/m², and the deflection ≤ L/250 (L is the span)

Bobonaro     - Natural Frequency Detection: Avoid resonance with the human walking frequency (1.6 - 2.4Hz)

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Bobonaro 3. Durability

    - The thickness of the hot-dip galvanized layer ≥ 85μm (outdoor environment)

    - The adhesion of fluorocarbon spraying ≥ 5MPa (tested by the cross-cut method)

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Bobonaro IV. Application of Innovative Processes

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1. 3D Printing of Positioning Molds: Use nylon materials to print the spatial positioning fixtures for the tread plate to improve the assembly efficiency.

2. Robot Welding: For repetitive weld seams (such as the connection between the tread plate and the central column), use a six-axis welding robot, and the weld penetration depth reaches more than 70% of the thickness of the base metal.

Bobonaro 3. BIM + AR Technology: Overlay the 3D model onto the construction site through augmented reality devices to provide real-time guidance for the installation and positioning of complex nodes.

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Bobonaro Conclusion

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Bobonaro The processing of steel structure spiral stairs is essentially a combination of precision machinery manufacturing and architectural art. It is necessary to achieve the quality objectives through digital modeling, process innovation and strict process control. It is recommended to carry out 1:1 local entity prefabrication at the initial stage of the project, and then start mass production after verifying the process feasibility. 

Bobonaro Key Points and Difficulties in the Processing and Fabrication of Steel Structure Spiral Stairs News 第2张

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评论列表 (有 10 条评论,496人围观)
网友昵称:steel
steel V 博主 沙发
12-11 回复
e spiral staircases in steel structures present significant challenges in processing and fabrication, requiring precise engineering calculations and meticulous execution to
网友昵称:steel
steel V 博主 椅子
12-11 回复
e steel structure spiral stair is a complex and challenging piece of engineering. Its intricate design requires precise calculations and meticulous attention to detail, ensuring both structural integrity and aesthetic appeal. The process of fabrication demands a high level of skill and precision, with each step carefully monitored to prevent any potential errors that could compromise the safety of the final product. Despite these challenges, the result is a stunning work of art that seamlessly integrates form and function, showcasing the ingenuity and dedication of those who have contributed to
网友昵称:steel
steel V 博主 板凳
12-11 回复
e spiral stair structure of steel construction presents significant challenges in terms of material selection, assembly precision, and structural integrity. The seamless integration of these elements into a functional and aesthetically pleasing design is a testament to the expertise of the engineers involved.
网友昵称:steel
steel V 博主 凉席
12-12 回复
e process of fabricating steel structure spiral stairs is a complex and demanding task, requiring precision engineering and meticulous attention to detail. The key points in the manufacturing process include the selection of materials, the design of the spiral pattern, the execution of welding and assembly techniques, and the final inspection for quality control. Challenges often arise from the need to balance structural strength with aesthetic appeal, ensuring that the spiral staircase meets safety standards and remains
网友昵称:steel
steel V 博主 地板
12-12 回复
e process and fabrication of steel structure spiral stairs present significant challenges, particularly in terms of material selection, structural integrity, and assembly precision. The intricate design of these staircases requires precise calculations to ensure stability and safety, while the need for high-quality materials adds to the complexity of the manufacturing process. Furthermore, the assembly process demands meticulous attention to detail to prevent any potential hazards or errors. Overall, the successful completion of these staircases requires a highly skilled team and advanced technology to meet the demanding standards
网友昵称:steel
steel V 博主 6楼
12-12 回复
e spiral staircases in steel structures are intricately designed, requiring meticulous attention to detail and precise fabrication techniques. The challenge lies in maintaining structural integrity while ensuring
网友昵称:steel
steel V 博主 7楼
12-12 回复
e spiral stairs' fabrication process poses significant challenges due to the intricate welding and assembly required, necessitating advanced technical
网友昵称:steel
steel V 博主 8楼
12-12 回复
e steel structure spiral staircases are intricately designed and meticulously crafted, showcasing the advanced technology and craftsmanship of modern architecture. However, their complex assembly process poses significant challenges for both construction and maintenance, necessitating careful attention to detail and a high
网友昵称:steel
steel V 博主 9楼
12-12 回复
e process of manufacturing steel structure spiral stairs is intricate, requiring precise engineering calculations and meticulous craftsmanship. The key points lie in the balance between structural stability and aesthetic appeal, while challenges include managing material handling, ensuring uniform tension, and maintaining consistent quality
网友昵称:steel
steel V 博主 10楼
12-12 回复
e steel structure spiral stair is a complex and challenging piece of engineering, requiring precise calculations and meticulous attention to detail. The process of fabrication involves the assembly of various components such as the steel frame, handrails, and treads, each with its own set of challenges. The final product must be both aesthetically pleasing and structurally sound, ensuring that it can withstand heavy foot traffic without sacrificing safety or comfort. Overall, the spiral stair is a testament to the skill and expertise of the craftsmen who create it, and a testament to the ingenuity and creativity of the architect

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