Corridor roof for organized drainage of existing building additionally provided with elevator

Through the design of prefabricated corridor metal roof, it is processed and formed in one piece in the factory and hoisted as a whole on site, which solves the problems of difficult construction and low efficiency, and achieves efficient and safe construction and good waterproof and thermal insulation effects.

CN223434115UActive Publication Date: 2025-10-14SHANDONG FUJI ZHIYU ELEVATOR
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Patent Information

Application Number
CN202421371443.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-16
Publication Date
2025-10-14
Estimated Expiration
2034-06-16

AI Technical Summary

Technical Problem

The existing corridor roof construction for installing elevators is difficult, inefficient, and has a high construction risk factor, and has poor waterproof and thermal insulation performance.

Method used

The assembled corridor metal roof is formed in one piece in the factory and hoisted on site as a whole. It uses frame welded parts and hoisting brackets, combined with glass fiber insulation cotton, to form a waterproof structure and water guide trough to achieve centralized drainage.

Benefits of technology

It improves construction efficiency, reduces construction risk, enhances waterproof and thermal insulation performance, and saves labor costs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223434115U_ABST
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Abstract

The utility model relates to a corridor roof for organized drainage of an elevator added to an existing building, and belongs to the technical field of elevator equipment. Comprising frame welding, front and rear wrapping plates, a bottom plate, a lower wrapping edge, a small seal, a hoisting support, side wrapping plates, a middle wrapping plate, glass fiber heat preservation cotton, water receiving tank side wrapping plates and a water receiving tank lower wrapping plate. The technical characteristics are as follows: a frame welding part consists of a vertical keel, a transverse keel, a supporting keel, a hoisting bracket mounting part and a water retaining welding part, a frame is connected with a bottom plate and a wrapping plate through drilling tail screws, a gap is sealed by weather-proof sealant, heat-insulating cotton is filled in the weather-proof sealant, and a hoisting bracket is fixed through a bolt. And particularly, the support keel is welded with the corridor cross beam, so that the roof is inclined and the hoisting bracket is convenient to disassemble indoors. Compared with the prior art, organized centralized drainage is achieved, and the manufacturing cost and the long-term maintenance cost are reduced.
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Description

Technical Field

[0001] The present invention belongs to the technical field of elevator equipment, and in particular is a roof with an organized drainage corridor installed on an existing building. Background Art

[0002] As living standards continue to improve, people's requirements for living environments and safe, convenient transportation are becoming increasingly demanding. my country has entered a phase of aging population, and addressing the mobility issues faced by elderly residents in high-rise buildings is crucial to the well-being of every family. Providing mobility convenience for every elderly resident is a city's social responsibility, and installing elevators has become a key solution to these challenges.

[0003] At present, most of the existing corridor roofs where elevators are installed are made of steel frame lightweight plate materials, and most of them are made on-site. Although the project volume is small, the construction time is long and the construction is difficult, the efficiency is low, the construction risk factor is high, and the waterproof and thermal insulation performance is poor.

[0004] The utility model designs a roof with organized drainage corridor for installing an elevator in an existing building. The roof and the lifting bracket are processed and formed as one piece in the factory. They are hoisted as a whole during on-site installation, and the lifting bracket is disassembled indoors, which improves construction efficiency, reduces construction risk factors, and realizes centralized drainage of the roof. Utility Model Content

[0005] The utility model aims to solve the problems of difficult and low efficiency in corridor roof construction and proposes an assembled corridor metal roof. The utility model can reduce the construction difficulty, improve the construction efficiency, save labor costs and construction risk factors through integrated hoisting and indoor disassembly of the hoisting seat.

[0006] To achieve the above purpose, the present invention is implemented through the following technical solutions:

[0007] A roof system for an elevator and organized drainage corridor installed in an existing building. It includes welded frame components, front and rear cladding panels, a bottom plate, a lower cladding, a small end cap, a hoisting bracket, side cladding panels, a middle cladding panel, fiberglass insulation, side cladding panels for a water trough, and a lower cladding panel for a water trough.

[0008] The features include: the frame welded parts are welded together by vertical keels, transverse keels, support keels, hoisting bracket mounting parts, and water retaining plates. The support keels create a slope on the roof, allowing water to drain out as quickly as possible. Furthermore, the frame welded parts are connected to the base plate using drill screws. The front and rear cladding plates, lower cladding, small head, side cladding plates, middle cladding plates, water trough side cladding plates, and water trough lower cladding plates are connected to the frame welded parts using drill screws. Weather-resistant glue is used to fill gaps, and the internal cavity is filled with glass fiber insulation cotton, which can effectively isolate and insulate the air. The hoisting bracket is connected to the hoisting bracket mounting parts using bolts.

[0009] The utility model is suitable for roof of existing building installing elevator straight corridor, the roof is integrally processed in the factory, is integrally hoisted through hoisting support on site, support keel is welded with corridor crossbeam, guarantees roof inclination, guarantees that hoisting support can be dismantled in the room after hoisting is completed, mutual buckling of front and rear cladding and intermediate cladding forms waterproof structure, guarantees the waterproofness of roof whole, water collecting groove side cladding and water collecting groove lower cladding combination into water guide groove, realizes concentrated drainage. BRIEF DESCRIPTION OF DRAWINGS

[0010] Figure 1 It is the explosion view of the utility model

[0011] Figure 2 It is the isometric view of the utility model

[0012] Figure 3 It is the structure diagram of water collecting groove lower cladding

[0013] Figure 4 It is the structure diagram of water collecting groove side cladding

[0014] Figure 5 It is the structure diagram of frame welding spare

[0015] In the drawing: 1. frame welding spare, 2. front and rear cladding, 3. bottom plate, 4. lower cladding, 5. small end, 6. hoisting support, 7. side cladding, 8. intermediate cladding, 9. glass fiber thermal insulation cotton, 10. water collecting groove side cladding,

[0016] 11. water collecting groove lower cladding, 101. vertical keel, 102 horizontal keel, 103. support keel, 104. hoisting support mounting spare, 105. water baffle DETAILED DESCRIPTION

[0017] Combination drawing describes: an organized drainage corridor roof for existing building installed elevator, comprising frame welding piece (1), front and back cladding (2), bottom plate (3), lower cladding (4), small end cap (5), hoisting support (6), side cladding (7), middle cladding (8), glass fiber insulation cotton (9), water collecting tank side cladding (10), water collecting tank lower cladding (11). Its characterized in that: frame welding piece (1) is welded by vertical keel (101), horizontal keel (102), support keel (103), hoisting support mounting piece (104), water baffle (105), frame welding piece (1) is connected with bottom plate (3) by using drill tail wire, front and back cladding (2), lower cladding (4), small end cap (5), side cladding (7), middle cladding (8), water collecting tank side cladding (10), water collecting tank lower cladding (11) are connected with frame welding piece (1) by using drill tail wire, and gap is filled with weatherproof adhesive, internal cavity is filled with glass fiber insulation cotton (9), hoisting support (6) is connected with hoisting support mounting piece (15) by using bolt. The utility model is suitable for existing building installed elevator straight corridor roof, roof is integrally processed in factory, is integrally hoisted through hoisting support (6) on site, support keel (14) is welded with corridor crossbeam, inclination of roof is guaranteed, hoisting support (6) can be disassembled in room after hoisting is completed, front and back cladding (2) and middle cladding (8) are mutually buckled, form waterproof structure, the integrality of roof waterproofness is guaranteed, water collecting tank side cladding (10) and water collecting tank lower cladding (11) are combined into water guide groove, concentrated drainage is realized.

Claims

1. A roof for an organized drainage corridor for installing an elevator in an existing building, comprising a frame weldment (1), front and rear wrapping plates (2), a bottom plate (3), a lower wrapping edge (4), a small head (5), a hanging bracket (6), a side wrapping plate (7), an intermediate wrapping plate (8), glass fiber insulation cotton (9), a water trough side wrapping plate (10), and a water trough lower wrapping plate (11), characterized in that: The frame welded component (1) is welded by a vertical keel (101), a transverse keel (102), a supporting keel (103), a hanging bracket mounting component (104), and a water retaining plate (105). The frame welded component (1) is connected to the bottom plate (3) by using drill screws. The front and rear wrapping plates (2), the lower wrapping edge (4), the small head (5), the side wrapping plates (7), the middle wrapping plate (8), the water trough side wrapping plates (10), and the water trough lower wrapping plate (11) are connected to the frame welded component (1) by using drill screws, and the gaps are filled with weather-resistant glue. The internal cavity is filled with glass fiber thermal insulation cotton (9). The hanging bracket (6) is connected to the hanging bracket mounting component (104) by using bolts.

2. The roof of an existing building equipped with an elevator and an organized drainage corridor according to claim 1 is characterized by: The front and rear cover plates (2) and the middle cover plate (8) adopt a waterproof structure that is buckled with each other, and the supporting keel (103) and the building corridor beam are fixed by welding.