Support frame for placing gas cylinder during construction of pitched roof

By designing an adjustable support frame and combined structure with adjustable tilt, the problem of unstable support for gas tanks on sloping roofs was solved, and the gas tanks were able to stand stably on roofs with different slopes.

CN224315930UActive Publication Date: 2026-06-02NO 1 CONSTR ENG CO LTD OF GUIZHOU CONSTR & ENG GRP

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NO 1 CONSTR ENG CO LTD OF GUIZHOU CONSTR & ENG GRP
Filing Date
2025-05-28
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

The existing sloping roof support frame cannot be adjusted to support gas cylinders on sloping roofs with different inclinations, resulting in unstable support.

Method used

An adjustable tilt support frame was designed. By combining the contact base plate with the rotating force rod, the upright rod and the sleeve, the gas tank can be vertically erected on the sloping roof. The adjustment is made by using clamping nuts and a sliding groove structure.

Benefits of technology

It enables gas tanks to stand stably on sloping roofs with different inclinations, solving the problem of unstable support and adapting to various sloping roof environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a support frame for placing a gas tank on a sloping roof, which comprises an adjustable support frame with adjustable inclination, and a gas tank supported on the adjustable support frame. A contact bottom plate is in contact with the sloping roof surface, and the bottom of the gas tank is penetrated and clamped on the adjustable support frame. By adjusting the inclination of the adjustable support frame, the adjustable support frame is rotated on the rotating force receiving rod in a sleeve pipe mode, so that the gas tank can be vertically erected on the sloping roof with different inclination gradients. The problem that the support feet with different fixed heights cannot be adjusted to support the tank body to the vertical state is solved.
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Description

Technical Field

[0001] This utility model relates to a support frame for placing gas cylinders during construction on a sloping roof, belonging to the technical field of auxiliary support frames for building construction. Background Technology

[0002] When applying waterproof membrane to a sloping roof, it must be bonded using high-temperature flame combustion. When using gas as a combustion source, the gas cylinder must be erected on the sloping roof. Due to the slope of the roof, a support frame is necessary to hold the gas cylinder upright.

[0003] Existing inclined roof support technology uses support legs of different fixed heights (see Chinese Patent Publication No. CN119102156A). However, in inclined roof environments with different slopes, these legs cannot be adjusted to support the tank in an upright position. Utility Model Content

[0004] To solve the above-mentioned technical problems, this utility model provides a support frame for placing gas cylinders during construction on a sloping roof.

[0005] This utility model is achieved through the following technical solution.

[0006] This utility model provides a support frame for placing gas cylinders during construction on a sloping roof, comprising:

[0007] An adjustable tilt support frame, on which an air tank is supported.

[0008] It also includes a contact base plate, which consists of two parallel pieces that make contact with the sloping roof surface; the contact base plate is a steel plate.

[0009] The contact base plate located at the top of the sloping roof surface is fixedly connected by a rotating force rod, with both ends of the rotating force rod fixed to the two contact base plates.

[0010] Vertical poles are fixed at the four corners of both ends of the contact base plate, and the tops of the four vertical poles are fixedly connected by the top frame.

[0011] The top frame is rectangular, and its four corners are welded and fixed to the tops of the four vertical poles.

[0012] A sleeve is rotatably mounted on the rotating force rod. An adjustment support frame is fixedly connected to the sleeve. The adjustment support frame has a placement hole that is larger than the bottom of the gas tank and smaller than the top of the gas tank. The bottom of the gas tank is inserted through and locked into the placement hole of the adjustment support frame.

[0013] The adjustment support frame has two force-bearing arms, each with a groove that allows it to slide on two vertical poles located at the lower part of the sloping roof surface. The two vertical poles located at the lower part of the sloping roof surface are connected to clamping nuts via threaded joints, and the force-bearing arms are clamped to the vertical poles by the clamping nuts for adjustment.

[0014] The beneficial effects of this utility model are as follows: the contact base plate contacts the sloping roof surface, and the bottom of the gas tank is inserted and locked onto the adjustment support frame. By adjusting the inclination of the support frame, the support frame rotates on the rotating force rod with the sleeve during adjustment, so that the gas tank can be vertically erected in sloping roof environments with different inclination slopes. This solves the problem that the support feet with different fixed heights cannot be adjusted to support the tank to an upright state. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model in use;

[0016] Figure 2 This is a schematic diagram of the structure of this utility model;

[0017] In the diagram: 1-Contact base plate; 2-Sloping roof surface; 3-Rotating force-bearing rod; 4-Vertical rod; 5-Top frame; 6-Sleeve; 7-Adjusting support frame; 71-Force arm; 72-Clamping nut; 8-Gas tank. Detailed Implementation

[0018] The technical solution of this utility model is further described below, but the scope of protection is not limited to what is described.

[0019] like Figures 1 to 2 As shown.

[0020] This application discloses a support frame for placing gas cylinders during construction on a sloping roof, comprising:

[0021] The contact base plate 1 is made of steel plate, and the contact base plate 1 consists of two parallel plates that contact the sloping roof surface 2.

[0022] The contact base plate 1, located at the height of the sloping roof surface 2, is fixedly connected by a rotating force rod 3, with both ends of the rotating force rod 3 welded and fixed to the two contact base plates 1.

[0023] Vertical poles 4 are welded and fixed at the four corners of both ends of the contact base plate 1. The tops of the four vertical poles 4 are fixedly connected by a top frame 5. The four corners of the rectangular top frame 5 are welded and fixedly connected to the tops of the four vertical poles 4.

[0024] A sleeve 6 is rotatably installed on the rotating force rod 3. An adjustment support frame 7 is welded and fixedly connected to the sleeve 6. The adjustment support frame 7 has a placement hole that is larger than the bottom of the gas tank 8 and smaller than the top of the gas tank 8. The bottom of the gas tank 8 is inserted and locked into the placement hole of the adjustment support frame 7.

[0025] The adjustment support frame 7 is provided with two force arms 71. The force arms 71 are provided with sliding grooves and can slide on two vertical rods 4 located at the lower part of the sloping roof surface 2. The two vertical rods 4 located at the lower part of the sloping roof surface 2 are screwed with clamping nuts 72 through threaded pairs. The force arms 71 are clamped on the vertical rods 4 by the clamping nuts and can be adjusted.

[0026] The contact base plate 1 contacts the sloping roof surface 2, and the bottom of the gas tank 8 is inserted and secured to the adjustment support frame 7. By adjusting the inclination of the support frame 7, the adjustment support frame 7 rotates on the rotating force rod 3 via the sleeve 6, so that the gas tank 8 can be vertically erected in sloping roof environments with different inclination slopes. This solves the problem that the support feet with different fixed heights cannot be adjusted to support the tank to an upright state.

Claims

1. A support frame for placing gas cylinders during construction on a sloping roof, characterized in that, include: An adjustable tilt support frame (7) is provided, and an air tank (8) is supported on the adjustable support frame (7); It also includes a contact base plate (1), which consists of two parallel plates that are in contact with the sloping roof surface (2); the contact base plate (1) is a steel plate; The contact base plate (1) located at the height of the sloping roof surface (2) is fixedly connected by a rotating force rod (3), and the two ends of the rotating force rod (3) are fixed to the two contact base plates (1); The contact base plate (1) has four vertical poles (4) fixed at both ends and four corners, and the tops of the four vertical poles (4) are fixedly connected by the top frame (5); The top frame (5) is rectangular, and the four corners of the top frame (5) are welded and fixed to the top of the four vertical poles (4); A sleeve (6) is rotatably installed on the rotating force rod (3). An adjustment support frame (7) is fixedly connected to the sleeve (6). The adjustment support frame (7) has a placement hole that is larger than the bottom of the gas tank (8) and smaller than the top of the gas tank (8). The bottom of the gas tank (8) is inserted through and locked into the placement hole of the adjustment support frame (7). The adjustment support frame (7) is provided with two force arms (71). The force arms (71) are provided with grooves and can slide on the two vertical rods (4) located at the lower part of the sloping roof surface (2). The two vertical rods (4) located at the lower part of the sloping roof surface (2) are screwed with clamping nuts (72) through threaded pairs. The force arms (71) are clamped on the vertical rods (4) by the clamping nuts and can be adjusted.