一种轻量化非金属高强纤维防火板预制舱

The design of stabilizing mechanisms and buffer devices solves the problem of insufficient strength between prefabricated cabin roof slabs, improves the impact resistance and stability of the roof slabs, and prevents roof slab collapse.

CN224514839UActive Publication Date: 2026-07-17CANGZHOU WANKONG ELECTRICAL EQUIP CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CANGZHOU WANKONG ELECTRICAL EQUIP CO LTD
Filing Date
2025-06-19
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing prefabricated cabins have insufficient strength between their top slabs when subjected to impact, making them prone to collapse.

Method used

The system employs a stabilizing mechanism and a buffer device. The stabilizing mechanism reinforces the top plate connection through components such as fixing nuts, fixing screws, slot blocks, and adjusting plates. The buffer device reduces impact force and improves the top plate's impact resistance and buffering performance through components such as buffer plates and elastic friction blocks.

Benefits of technology

It improves the impact resistance and stability of the roof, enhances its protective ability when subjected to impact, and prevents collapse.

✦ Generated by Eureka AI based on patent content.

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Abstract

本公开涉及预制舱技术领域,提出了一种轻量化非金属高强纤维防火板预制舱,包括预制舱本体,所述预制舱本体的顶部设置有顶板,所述预制舱本体侧面转动连接有舱门,所述顶板的底部设置有稳固机构;所述稳固机构包括两个固定螺帽和固定螺钉,所述固定螺帽固定连接在顶板的底部,两个所述固定螺帽之间通过固定螺钉螺栓连接。本公开中通过稳固机构内部的调节板、插槽块等组件相互配合,实现了工作人员可以在两个固定螺帽之间插入固定螺钉,将两个顶板之间进行加固,同时,将适应型卡板卡入其中一个顶板的底部,再通过转动插块将插块插入插槽块的内部,将适应型卡板与连接板之间通过调节板进行焊接在一起的作用,加强了焊接效果。
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Claims

1. A lightweight non-metal high-strength fiber fireproof board prefabricated cabin, characterized in that, Includes a prefabricated cabin body (1), the top of the prefabricated cabin body (1) is provided with a top plate (2), the side of the prefabricated cabin body (1) is rotatably connected with a cabin door (3), and the bottom of the top plate (2) is provided with a stabilizing mechanism. The stabilizing mechanism includes two fixing nuts (41) and one fixing screw (42). The fixing nuts (41) are fixedly connected to the bottom of the top plate (2). The two fixing nuts (41) are bolted together by the fixing screw (42). A connecting plate (43) is fixedly connected to the bottom of one of the top plates (2). A rectangular groove (44) is provided on the side of the connecting plate (43). A fixing shaft (45) is rotatably connected inside the rectangular groove (44). An adjusting plate (46) is fixedly connected to the circumferential surface of the fixing shaft (45). An adaptive clamping plate (47) is fixedly connected to the bottom of the other top plate (2). A slot block (48) is fixedly connected to the bottom of the adaptive clamping plate (47). A plug block (49) is rotatably connected to the bottom of the adaptive clamping plate (47).

2. The lightweight non-metallic high-strength fiber fireproof panel prefabricated cabin according to claim 1, characterized in that, The surface of the slot block (48) is provided with a slot, which is located on the displacement trajectory of the insert block (49).

3. The lightweight non-metallic high-strength fiber fireproof panel prefabricated cabin according to claim 2, characterized in that, The top plate (2) is provided with six, and the stabilizing mechanism is provided with three sets, with each set of stabilizing mechanism corresponding to the bottom of two top plates (2).

4. The lightweight non-metallic high-strength fiber fireproof panel prefabricated cabin according to claim 3, characterized in that, The adaptive card plate (47) has a card slot (410) on its side, and one end of the adjustment plate (46) is located inside the card slot (410).

5. The lightweight non-metallic high-strength fiber fireproof panel prefabricated cabin according to claim 4, characterized in that, The end of the adjusting plate (46) near the slot (410) is fixedly connected to the side of the adaptive plate (47).

6. The lightweight non-metallic high-strength fiber fireproof panel prefabricated cabin according to claim 5, characterized in that, A buffer device (7) is provided at the bottom of the top plate (2). The buffer device (7) includes a support rod (71). One end of the support rod (71) is fixedly connected to the bottom of the top plate (2). The other end of the support rod (71) is fixedly connected to a buffer plate (72). A buffer spring (73) is fixedly connected to the bottom of the buffer plate (72). One end of the buffer spring (73) is fixedly connected to the bottom of the inner wall of the prefabricated cabin body (1).

7. The lightweight non-metallic high-strength fiber fireproof panel prefabricated cabin according to claim 6, characterized in that, The buffer plate (72) is fixedly connected to a telescopic rod (74) on its side. The telescopic end of the telescopic rod (74) is fixedly connected to an extension rod (75). One end of the extension rod (75) is slidably connected to an elastic friction block (76). The bottom of the inner wall of the prefabricated cabin body (1) is fixedly connected to an adapter rod (77). The side of the adapter rod (77) is fixedly connected to an adapter friction block (78).

8. A lightweight non-metallic high-strength fiber fireproof prefabricated cabin according to claim 7, characterized in that, The side of the elastic friction block (76) is provided with an arc surface, and the side of the adapter friction block (78) is provided with an arc surface. The arc surface of the elastic friction block (76) is adapted to the arc surface of the adapter friction block (78).

9. The lightweight non-metallic high-strength fiber fireproof panel prefabricated cabin according to claim 8, characterized in that, Multiple adapter friction blocks (78) are provided and arranged in a linear array on the side of the adapter rod (77), and multiple buffer springs (73) are provided and arranged in a linear array at the bottom of the buffer plate (72).

10. The lightweight non-metallic high-strength fiber fireproof panel prefabricated cabin according to claim 9, characterized in that, The arc surface of the adapter friction block (78) is located on the displacement trajectory of the elastic friction block (76).