Building structure and assembly method of electric power material storage and inspection corridor
By using a corridor building structure with tempered glass and modern prefabricated steel structures in the air visit center library, the problem of air corridor structure design is solved, and the meeting of mechanical requirements and the reduction of intersection of human flow and logistics is achieved.
Patent Information
- Application Number
- CN202211179577.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-27
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2042-09-27
AI Technical Summary
It is difficult for the prior art to design a suitable corridor structure in the aerial visit center library, which not only meets the mechanical requirements but also avoids cross-contact with ground flow logistics.
Tempered glass is used to match modern prefabricated steel structures to design a corridor building structure including glass corridors, beams, arch ribs, chains, bridge piers and other components, and quickly assemble unit sections through tower machines to realize the construction and assembly of glass corridors.
The corridor structure of the central library is realized through the air visit, meeting mechanical requirements, reducing cross-contact with ground traffic logistics, and optimizing the structure of windproof and drainage, improving personnel safety.
Smart Images

Figure CN115341649B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to an electric power material storage and inspection corridor building structure and an assembly method, belonging to the technical field of building construction. Background Art
[0002] With the further development of tempered glass, existing buildings and factories are using tempered glass on their facades. Even the plank roads in some scenic spots use tempered glass, and the strength of tempered glass fully meets the requirements of visitors walking on it. A platform for aerial visits to the central warehouse is built between the two buildings, and the platform is protected by tempered glass to prevent rain and wind, and avoid the intersection of human and material flows caused by people walking on the ground in the central warehouse. Therefore, a corridor structure suitable for the construction of central warehouse factories is needed. Summary of the invention
[0003] In view of the above-mentioned defects in the prior art, the present invention proposes an electric power material storage and inspection corridor building structure and an assembly method.
[0004] The electric power material storage and inspection corridor building structure of the present invention comprises the following parts:
[0005] The glass corridor is built upward from the central warehouse where power materials are stored and inspected, overlooking the entire central warehouse;
[0006] The crossbeam is set along the laying direction of the glass corridor, and both ends of the crossbeam are built on the central warehouse for storage and inspection of power materials;
[0007] The arch ribs extend from the sides of the glass corridor to the crossbeam in the middle, and the arch ribs on the same side of the crossbeam are arranged in a wave shape;
[0008] Chains: Several chains are set under each arch rib, and the chains are fixed at equal intervals on the sides of the glass corridor;
[0009] The bridge piers are separated on the surface of the glass corridor, and the top of the bridge piers supports the entire beam and the arch ribs built on the beam;
[0010] Among them: the glass corridor is a steel frame and steel enclosure embedded with tempered glass, the steel frame is equipped with drainage holes; a safety rope is connected between the steel enclosure and the waist of the visitors.
[0011] Preferably, the same ends of the arch ribs are fixedly connected by cross beams, and the arch ribs on both sides of the cross beam are symmetrically distributed.
[0012] Preferably, the arch rib and the chain are both located on the same inclined plane, and the left and right inclined planes are symmetrically distributed on both sides of the crossbeam, and the cross section is an isosceles triangle.
[0013] Preferably, the cross beams and arch ribs are both made of steel pipes, and the arch ribs are bent into an arch shape and are made of I-beams.
[0014] Preferably, the surface of the steel base frame where the glass corridor is located is provided with an anti-slip layer, drainage holes are arranged at intervals on the steel base frame, and drainage pipes are installed below the drainage holes.
[0015] Preferably, the tempered glass on the glass corridor occupies at least two-thirds of the entire glass corridor area.
[0016] Preferably, the area between the steel enclosure and the bridge pier is a safety area, and a steel base frame is located below the safety area.
[0017] Preferably, the steel enclosure is built along the bridge pier at a short distance, and the length of the safety rope is less than half the width of the glass corridor.
[0018] The assembly method of the electric power material storage and inspection corridor building structure of the present invention comprises the following steps:
[0019] S1: First, attach to the existing central warehouse for power material storage and inspection, stabilize the tower crane with steel wire ropes, use the tower crane suspension arm to lift the steel frame unit section, build scaffolding under the steel frame unit section, and assemble the bridge pier upwards;
[0020] S2: Build beams on the tops of two adjacent piers and start to build arch rib unit sections; after the arch rib unit sections are built, the chains are constructed synchronously;
[0021] S3: After the steel chassis is built from the central warehouse for power material storage and inspection on one side to the central warehouse for power material storage and inspection on the other side, tempered glass is laid on the steel chassis, and drainage pipes are installed on the steel chassis;
[0022] S4: Steel fences are installed along both sides of the piers, and safety ropes are installed on the steel fences.
[0023] The beneficial effect of the structure of the present invention is as follows: the present invention provides a corridor building structure suitable for visiting the central warehouse in the air, and uses tempered glass and modern prefabricated steel structure to form a corridor structure that meets mechanical requirements. People visit the central warehouse by walking in the air. On the basis of ensuring the safety of personnel, the wind-proof and drainage structure is optimized to reduce cross-contact with ground human and logistics flows. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a structural diagram of the glass corridor.
[0025] Figure 2 It is a structural diagram of tower crane assembly.
[0026] In the picture: 1. Glass corridor; 2. Cross beam; 3. Arch rib; 4. Pier; 5. Chain; 6. Central warehouse; 7. Tower crane. DETAILED DESCRIPTION
[0027] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the accompanying drawings in the embodiments of the present invention.
[0028] Embodiment 1:
[0029] The present invention provides a corridor building structure suitable for visiting a central warehouse in the air. The corridor structure that meets the mechanical requirements is formed by combining tempered glass with a modern prefabricated steel structure. People visit the central warehouse in a way of walking in the air. On the basis of ensuring the safety of people, the wind-proof and drainage structure is optimized to reduce cross-contact with ground human and material flows.
[0030] like Figure 1 As shown, the electric power material storage and inspection corridor building structure and assembly method of the present invention include:
[0031] The glass corridor 1 is built upward from the central warehouse 6 for storage and inspection of power materials, overlooking the entire central warehouse;
[0032] The crossbeam 2 is arranged along the laying direction of the glass corridor 1, and both ends of the crossbeam 2 are built on the central warehouse 6 for storage and inspection of power materials;
[0033] The arch ribs 3 extend from the side of the glass corridor 1 to the cross beam 2 in the middle, and the arch ribs 3 on the same side of the cross beam 2 are arranged in a wave shape;
[0034] Chains 5, a plurality of chains 5 are arranged under each arch rib 3, and the chains 5 are fixed at equal intervals on the side of the glass corridor 1;
[0035] The bridge pier 4 is separated on the surface of the glass corridor 1, and the top of the bridge pier 4 supports the entire cross beam 2 and the arch rib 3 built on the cross beam 2;
[0036] Among them: Glass corridor 1 is a steel frame and steel enclosure embedded with tempered glass, and the steel frame is equipped with drainage holes; a safety rope is connected between the steel enclosure and the waist of the visitor.
[0037] The glass corridor 1 provided by the present invention is a prefabricated part, which is quickly connected and reinforced by assembling unit sections. The safety rope can prevent people from accidentally slipping and falling, and can also restrict the walking range of people.
[0038] Preferably, the same ends of the arch ribs 3 are fixedly connected by cross beams 2 , and the arch ribs 3 on both sides of the cross beam 2 are symmetrically distributed.
[0039] Symmetrical distribution is not only conducive to the combination of unit nodes, but also can form a more perfect aesthetic structure.
[0040] Preferably, the arch rib 3 and the chain 5 are both located on the same inclined plane, and the left and right inclined planes are symmetrically distributed on both sides of the crossbeam 2, and the cross section is an isosceles triangle.
[0041] Taking advantage of the principle that a triangle is more stable and has a certain optimization function for wind resistance, the arch rib 3 is structurally improved to achieve the above-mentioned inclined surface setting.
[0042] Preferably, the cross beam 2 and the arch rib 3 are both made of steel pipes, and the arch rib 3 is bent into an arch shape and is made of I-beams.
[0043] Preferably, the surface of the steel base frame where the glass corridor 1 is located is provided with an anti-slip layer, drainage holes are arranged at intervals on the steel base frame, and drainage pipes are installed below the drainage holes.
[0044] Preferably, the tempered glass on the glass corridor 1 accounts for at least two-thirds of the area of the entire glass corridor 1 .
[0045] The design of the tempered glass meets the requirements of aerial visits. At the same time, the other one-third is equipped with a non-slip steel frame to provide a safe area for personnel to feel more secure.
[0046] Preferably, the area between the steel enclosure and the bridge pier 4 is a safe area, and a steel underframe is provided below the safe area.
[0047] In the safety area of the central area, the steel enclosure is built-in instead of external, taking advantage of the fact that people tend to retreat when frightened. After retreating, the safety rope and steel enclosure are used for double protection. The chain 5 is set on the outside, which has already taken on part of the work of the enclosure.
[0048] Preferably, the steel enclosure is built along the bridge pier 4 for a short distance, and the length of the safety rope is less than half the width of the glass corridor 1. In order to prevent people from walking out of the glass corridor, the length of the safety rope is reduced to half the width, so that people can only walk to the inside of the glass corridor 1.
[0049] Embodiment 2:
[0050] like Figure 2 As shown, the assembly method of the electric power material storage and inspection corridor building structure of the present invention comprises the following steps:
[0051] S1: First, attach to the existing central warehouse 6 for power material storage and inspection, stabilize the tower crane 7 with steel wire ropes, use the suspension arm of the tower crane 7 to lift the steel frame unit section, build a scaffolding under the steel frame unit section, and assemble the bridge pier 4 upwards;
[0052] S2: Build the crossbeam 2 on the top of two adjacent piers 4, and start to build the arch rib 3 unit section; after the arch rib 3 unit section is built, the chain 5 is constructed synchronously;
[0053] S3: After the steel chassis is built from the central warehouse 6 for power material storage and inspection on one side to the central warehouse 6 for power material storage and inspection on the other side, tempered glass is laid on the steel chassis, and drainage pipes are installed on the steel chassis;
[0054] S4: Steel fences are installed along both sides of pier 4, and safety ropes are installed on the steel fences.
[0055] The assembly method of the electric power material storage and inspection corridor building structure described in the present invention quickly assembles the unit sections at the central warehouse 6 for electric power material storage and inspection through a tower crane 7, and optimizes the entire lifting process, while reinforcing during construction, to quickly realize the construction and assembly of the glass corridor between the central warehouses 6 for electric power material storage and inspection on both sides.
[0056] The invention can be widely used in building construction occasions.
Claims
1. A building structure of a power material storage and inspection corridor, characterized in that: Includes the following parts: A glass corridor (1) is built upward from the central warehouse (6) for storing and inspecting power materials, overlooking the entire central warehouse; A crossbeam (2) is arranged along the laying direction of the glass corridor (1), and both ends of the crossbeam (2) are built on a central warehouse (6) for storing and inspecting power materials; The arch ribs (3) extend from the side of the glass corridor (1) to the cross beam (2) in the middle, and the arch ribs (3) on the same side of the cross beam (2) are arranged in a wave shape; Chains (5), a plurality of chains (5) are arranged under each arch rib (3), and the chains (5) are fixed at equal intervals on the side of the glass corridor (1); The bridge pier (4) is separated on the surface of the glass corridor (1), and the top of the bridge pier (4) supports the entire cross beam (2) and the arch rib (3) built on the cross beam (2); Wherein: the glass corridor (1) is a steel frame and steel enclosure embedded with tempered glass, the steel frame is provided with drainage holes; a safety rope is connected between the steel enclosure and the waist of the visitor; The same ends of the arch ribs (3) are respectively fixedly connected by cross beams (2), and the arch ribs (3) on both sides of the cross beam (2) are symmetrically distributed; The arch rib (3) and the chain (5) are both located on the same inclined plane, and the left and right inclined planes are symmetrically distributed on both sides of the crossbeam (2), and the cross section is an isosceles triangle; The cross beam (2) and the arch rib (3) are both made of steel pipes, and the arch rib (3) is bent into an arch shape and is made of I-beams; The surface of the steel base frame where the glass corridor (1) is located is provided with an anti-slip layer, drainage holes are arranged at intervals on the steel base frame, and drainage pipes are installed below the drainage holes; The tempered glass on the glass corridor (1) occupies at least two thirds of the area of the entire glass corridor (1); The area between the steel enclosure and the bridge pier (4) is a safe area, and the lower part of the safe area is a steel underframe; The steel enclosure is built along the bridge pier (4) at a short distance, and the length of the safety rope is less than half the width of the glass corridor (1).
2. An assembly method for the electric power material storage and inspection corridor building structure according to claim 1, characterized in that: The steps include: S1: First, attach to the existing central warehouse (6) for power material storage and inspection, stabilize the tower crane (7) with steel wire ropes, use the suspension arm of the tower crane (7) to lift the steel frame unit section, build a scaffolding under the steel frame unit section, and assemble the bridge pier (4) upwards; S2: Build the crossbeam (2) on the top of two adjacent bridge piers (4), and start to build the arch rib (3) unit section; after the arch rib (3) unit section is built, the chain (5) is constructed synchronously; S3: After the steel frame is built from the central warehouse (6) for power material storage and inspection on one side to the central warehouse (6) for power material storage and inspection on the other side, tempered glass is laid on the steel frame, and drainage pipes are installed on the steel frame; S4: Steel fences are installed along both sides of pier 4, and safety ropes are installed on the steel fences.
Citation Information
Patent Citations
Novel covered bridge combined with steel structure and construction method
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