Combined metal ridge of pseudo-classic architecture

By using a combination of modular metal ridge design, including conical columns, round pins, and reinforcing columns, the problem of inconvenient installation of stainless steel ridges is solved, enabling rapid assembly and disassembly and improving installation efficiency and strength.

CN223548827UActive Publication Date: 2025-11-14ZHEJIANG YUTONGFU DECORATION PROD CO LTD
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Patent Information

Application Number
CN202423162957.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-14
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

The installation of existing stainless steel roof ridges, which relies on screw fixing, is inconvenient and reduces installation efficiency.

Method used

The design employs a modular metal ridge structure, utilizing a combination of conical columns, round-headed pins, and reinforcing columns to achieve quick connection and disassembly. A spring drives the round-headed pin to insert into the locking hole for locking, and a pin is used for offset unlocking. The reinforcing columns enhance strength.

Benefits of technology

It enables rapid assembly and disassembly of metal roof ridges, improving installation efficiency, and enhances the reliability and strength of the assembled structure through reinforced columns.

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Abstract

The utility model relates to the technical field of pseudo-classic buildings, in particular to a combined metal ridge of a pseudo-classic building. The combined metal ridge of the pseudo-classic architecture comprises a first metal ridge and a second metal ridge, a conical head column below a second metal ridge is inserted into a butt joint hole below a first metal ridge, a round head plug pin is driven by a spring to be inserted into a locking hole, and therefore combined locking of the first metal ridge and the second metal ridge is rapidly completed. The second metal ridge moves rightwards at the moment, so that the locking hole and the round-head plug pin are partially staggered, and then after the ejector pin is pulled downwards and pulled out, the second metal ridge can be moved rightwards continuously, so that the conical-head column is pulled out of the butt joint hole, and the conical-head column is pulled out of the butt joint hole. In this way, the disassembly work after the first metal ridge and the second metal ridge are combined is rapidly completed, and the rapid combination and disassembly effects of the metal ridges are achieved.
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Description

Technical Field

[0001] This utility model relates to the field of antique building technology, specifically to a composite metal roof ridge for antique buildings. Background Technology

[0002] Antique-style buildings refer to buildings specifically designed to imitate and replace ancient architecture, traditional religious temples and monasteries, traditional landscaping, historical buildings, cultural relics, and ancient village clusters, restoring their historical appearance. To extend the lifespan of these buildings, stainless steel roof ridges are required. However, installing two adjacent stainless steel roof ridges often involves screws, which are inconvenient for users, wasting considerable time and reducing installation efficiency. To address these issues, this paper proposes technological innovations based on existing modular metal roof ridges for antique-style buildings. Utility Model Content

[0003] The purpose of this utility model is to provide a modular metal roof ridge for antique-style buildings to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a composite metal roof ridge for antique-style buildings, comprising:

[0005] A first metal ridge and a second metal ridge, the second metal ridge being located to the right of the first metal ridge, a set of mating blocks being provided on the bottom left side of both the first and second metal ridges, and a set of connecting frames being provided on the bottom right side of both the first and second metal ridges, with assembly components placed inside the connecting frames.

[0006] Preferably, the top right side of the connecting frame at the bottom of the first metal ridge is attached to the bottom left side of the second metal ridge, and the right side of the connecting frame at the bottom of the first metal ridge is attached to the left side of the mating block at the bottom of the second metal ridge.

[0007] Preferably, the assembly includes a conical column, the top of which has a through-hole for locking, a round-headed pin is provided in the locking hole, and a spring is provided on the top of the round-headed pin.

[0008] Preferably, two sets of docking holes are evenly provided on the right side of the connecting frame, an insertion hole is provided through the bottom of the docking hole, and an installation hole is provided on the top of the inner side wall of the docking hole.

[0009] Preferably, the cone-shaped columns are evenly distributed on the left side of the docking block, and the cone-shaped columns on the left side of the bottom docking block of the second metal ridge are inserted into the docking holes of the bottom connecting frame of the first metal ridge.

[0010] Preferably, reinforcing columns are evenly arranged between the bottom connecting frame and the docking block of the first metal ridge, and between the bottom connecting frame and the docking block of the second metal ridge.

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0012] This invention involves inserting the conical column below the second metal ridge into the mating hole below the first metal ridge. A spring drives a round-headed pin into a locking hole, thus quickly completing the mating and locking of the first and second metal ridges. An external ejector pin is inserted into the insertion hole below the first metal ridge and pushes against the round-headed pin, moving it upward out of the locking hole. At this point, the second metal ridge is moved to the right, causing a partial misalignment between the locking hole and the round-headed pin. After pulling the ejector pin out, the second metal ridge can continue to be moved to the right, thus removing the conical column from the mating hole. This quickly completes the disassembly of the first and second metal ridges, achieving rapid assembly and disassembly of the metal ridges.

[0013] Strengthening the columns can improve the strength of the first and second metal ridges, thereby increasing the reliability of the combined first and second metal ridges. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the combined metal roof ridge of the antique-style building according to this utility model;

[0015] Figure 2 This is a front sectional view of the combined metal roof ridge of the antique-style building according to this utility model;

[0016] Figure 3 This utility model Figure 2 Enlarged view of part A.

[0017] In the diagram: 1. First metal ridge; 2. Second metal ridge; 3. Connecting frame; 31. Connecting block; 32. Reinforcing column; 33. Conical column; 34. Spring; 35. Round pin; 4. Connecting hole; 41. Locking hole; 42. Insertion hole. Detailed Implementation

[0018] 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.

[0019] Please see Figures 1-3The composite metal roof ridge of the antique-style building includes a first metal roof ridge 1 and a second metal roof ridge 2. The second metal roof ridge 2 is located to the right of the first metal roof ridge 1. A set of connecting blocks 31 are fixedly installed on the bottom left side of both the first metal roof ridge 1 and the second metal roof ridge 2. A set of connecting frames 3 are fixedly installed on the bottom right side of both the first metal roof ridge 1 and the second metal roof ridge 2. The connecting frames 3 contain composite components. The top right side of the connecting frame 3 at the bottom of the first metal roof ridge 1 is attached to the bottom left side of the second metal roof ridge 2. The right side of the connecting frame 3 at the bottom of the first metal roof ridge 1 is attached to the left side of the connecting block 31 at the bottom of the second metal roof ridge 2.

[0020] The assembly includes a conical column 33, with a locking hole 41 extending through the top of the conical column 33. A round-headed pin 35 is slidably disposed within the locking hole 41, and a spring 34 is fixedly disposed on the top of the round-headed pin 35. Two sets of docking holes 4 are evenly distributed on the right side of the connecting frame 3, with an insertion hole 42 extending through the bottom of the docking hole 4. An installation hole is provided on the top of the inner sidewall of the docking hole 4. The conical column 33 is evenly fixedly disposed on the left side of the docking block 31. The conical column 33 on the left side of the docking block 31 at the bottom of the second metal ridge 2 is inserted into the docking hole 4 of the connecting frame 3 at the bottom of the first metal ridge 1. Reinforcing columns 32 are evenly fixedly disposed between the connecting frame 3 at the bottom of the first metal ridge 1 and the docking block 31, and between the connecting frame 3 at the bottom of the second metal ridge 2 and the docking block 31, respectively. The reinforcing columns 32 can improve the strength of the first metal ridge 1 and the second metal ridge 2, thereby improving the reliability of the combined first metal ridge 1 and the second metal ridge 2.

[0021] Working principle: The conical column 33 below the second metal ridge 2 is inserted into the mating hole 4 below the first metal ridge 1. The spring 34 below the first metal ridge 1 drives the round-headed pin 35 to insert into the locking hole 41 of the conical column 33, thereby locking the conical column 33 in the mating hole 4. This quickly completes the mating and locking of the first metal ridge 1 and the second metal ridge 2. An external pin is inserted into the insertion hole 42 below the first metal ridge 1 and pushes against the round-headed pin 35 to move upward out of the locking hole 41. At this point, the second metal ridge 2 is moved to the right, causing the locking hole 41 and the round-headed pin 35 to partially misalign. After pulling the ejector pin out, the second metal ridge 2 can continue to be moved to the right, thereby pulling the conical column 33 out of the docking hole 4. This quickly completes the disassembly of the first metal ridge 1 and the second metal ridge 2. The strength of the first metal ridge 1 and the second metal ridge 2 can be improved by the reinforcing column 32, thereby improving the reliability of the first metal ridge 1 and the second metal ridge 2 after assembly.

Claims

1. A composite metal roof ridge in the style of ancient architecture, characterized in that: include: A first metal ridge (1) and a second metal ridge (2), the second metal ridge (2) being located to the right of the first metal ridge (1), a set of connecting blocks (31) being provided on the bottom left side of both the first metal ridge (1) and the second metal ridge (2), and a set of connecting frames (3) being provided on the bottom right side of both the first metal ridge (1) and the second metal ridge (2), with assembly components placed inside the connecting frames (3).

2. The composite metal roof ridge of the antique-style building according to claim 1, characterized in that: The top right side of the connecting frame (3) at the bottom of the first metal ridge (1) is attached to the bottom left side of the second metal ridge (2), and the right side of the connecting frame (3) at the bottom of the first metal ridge (1) is attached to the left side of the docking block (31) at the bottom of the second metal ridge (2).

3. The composite metal roof ridge of the antique-style building according to claim 2, characterized in that: The assembly includes a conical column (33), with a locking hole (41) extending through the top of the conical column (33). A round-headed pin (35) is provided inside the locking hole (41), and a spring (34) is provided on the top of the round-headed pin (35).

4. The composite metal roof ridge of the antique-style building according to claim 3, characterized in that: Two sets of docking holes (4) are evenly provided on the right side of the connecting frame (3). An insertion hole (42) is provided through the bottom of the docking hole (4). An installation hole is provided on the top of the inner side wall of the docking hole (4).

5. The composite metal roof ridge of the antique-style building according to claim 4, characterized in that: The cone-shaped columns (33) are evenly arranged on the left side of the docking block (31), and the cone-shaped columns (33) on the left side of the docking block (31) at the bottom of the second metal ridge (2) are inserted into the docking holes (4) of the bottom connecting frame (3) of the first metal ridge (1).

6. The composite metal roof ridge of the antique-style building according to claim 5, characterized in that: Reinforcing columns (32) are evenly arranged between the bottom connecting frame (3) and the docking block (31) of the first metal ridge (1) and between the bottom connecting frame (3) and the docking block (31) of the second metal ridge (2).