Tool room with window capable of being opened upwards

By designing upward-flipping windows and installing baffles between the window frame and the window body, the problem of rainwater entering the tool shed was solved, achieving better waterproofing and convenient installation.

CN224173795UActive Publication Date: 2026-04-28NINGBO HUIJIN HANDICRAFT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGBO HUIJIN HANDICRAFT CO LTD
Filing Date
2025-05-16
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

The existing tool room windows are easily opened on rainy days, causing rainwater to enter the tool room, and the installation gap between the window frame and the window body cannot effectively block it.

Method used

Design a tool shed with windows that can be opened upwards. A hinge mechanism is used to allow the window to be flipped upwards, and a baffle is set between the window frame and the window body to cover the installation gap. The window frame is fixed in the installation opening by a frame piece.

Benefits of technology

It effectively prevents or reduces rainwater from entering the tool shed through the window frame, enhances waterproof performance, and the window frame is easy to install and fix.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224173795U_ABST
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Abstract

The utility model discloses a tool room with windows capable of being opened upwards, which comprises a room body formed by splicing metal plates, at least one rectangular mounting port is arranged on the wall surface of the room body, and a window component is mounted in each rectangular mounting port; the window assembly comprises a window frame and a window body installed in the window frame, the upper end of the window body is connected with the upper end of the window frame through a hinge mechanism, the hinge mechanism can lock the window in an upward turning open state, and a blocking strip used for blocking an installation gap is arranged on the inner side, corresponding to the window body, of the upper edge of a window opening of the window frame. The window body is opened in an upward overturning mode, so that the shielding effect can be achieved to effectively reduce or prevent rainwater from entering the tool room through the window frame, and meanwhile the installation gap between the window body and the window frame is shielded through the blocking strip so that the rainwater can be prevented from entering the tool room through the installation gap.
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Description

Technical Field

[0001] This utility model relates to the field of outdoor tool shed technology, and in particular to a tool shed with windows that can be opened upwards. Background Technology

[0002] Tool sheds are typically located in outdoor areas such as gardens, primarily for storing tools such as shovels, hoes, and lawnmowers. Existing tool sheds are generally assembled from sheet metal, with windows installed on the walls. For example, a previously filed Chinese patent (CN202321853349.0) discloses a horizontally opening window, which allows rainwater to easily enter the tool shed through the unclosed window during rainy days, indicating room for improvement. Utility Model Content

[0003] The present invention aims to overcome the defects in the prior art by providing a tool room with an upward-opening window. The upward-opening window can effectively prevent or reduce rainwater from entering the tool room through the window frame. At the same time, the installation gap between the window and the window frame is blocked by a baffle strip, which can further prevent rainwater from entering the tool room through the installation gap.

[0004] To achieve the above objectives, this utility model provides a tool room with windows that can be opened upwards, comprising a room body made of metal sheets, wherein at least one rectangular mounting opening is provided on the wall of the room body and a window assembly is installed in each rectangular mounting opening;

[0005] The window assembly includes a window frame and a window body installed within the window frame. The upper end of the window body is connected to the upper end of the window frame via a hinge mechanism, which can lock the window body in an upward-flipped open state. A stop strip is provided on the upper side of the window of the window frame corresponding to the inner side of the window body to cover the installation gap.

[0006] A further feature is provided: the four sides of the window frame corresponding to the inner side of the window body are provided with a baffle strip for covering the installation gap.

[0007] Further configured as follows: the window frame includes four frame members for splicing into a rectangular frame, each frame member including an inner side plate and an outer side plate arranged at parallel intervals, and a connecting plate connecting the inner edge of the inner side plate and the inner edge of the outer side plate, wherein the length of the inner side plate and the outer side plate is greater than the length of the connecting plate so that notches are formed at both ends for relative insertion between adjacent frame members.

[0008] The inner edge of the inner side plate is located inside the inner edge of the outer side plate. The cross-section of the connecting plate is a horizontally mirrored L-shaped structure. The connecting plate includes a first connecting part that is connected to the inner side plate and stacked on the inner side plate, and a second connecting part that connects the first connecting part and the outer side plate.

[0009] The outer side plate is further configured such that its length is greater than that of the inner side plate and the ends of the outer side plates protrude beyond the ends of the inner side plates.

[0010] The frame component is further configured such that it is formed by integrally bending a metal sheet.

[0011] The inner side plate is further configured to have a first folded edge on its outer edge and / or the outer side plate is configured to have a second folded edge on its outer edge.

[0012] The hinge mechanism is further configured as a frog hinge with a buffer function.

[0013] The wall of the building is further configured such that it is composed of several wall panels spliced ​​together, and the wall panels are corrugated panels with ridges and grooves.

[0014] A further provision is provided: a locking pin assembly is provided between the lower inner side of the window and the window frame.

[0015] Compared with the prior art, the window of this utility model adopts an upward flip-open structure. When the window opens upward, it can effectively block rainwater from entering the tool room through the window frame. At the same time, the baffle strip can further prevent rainwater from entering the tool room through the installation gap between the window frame and the window body. Furthermore, the window frame can be easily fitted and fixed in the installation opening of the tool room through the frame fittings. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of a tool room with windows that can be opened upwards, according to this utility model.

[0017] Figure 2 yes Figure 1 A magnified structural diagram of part A;

[0018] Figure 3 This is a structural diagram of the frame component. Figure 1 ;

[0019] Figure 4 This is a structural diagram of the frame component. Figure 2 .

[0020] The following reference numerals are marked on the accompanying drawings:

[0021] 1. Building body; 11. Wall; 111. Ridge; 112. Groove; 2. Window assembly; 20. Window frame; 21. Frame piece; 210. Backing strip; 211. Inner side panel; 212. Outer side panel; 213. Connecting plate; 2131. First connecting part; 2132. Second connecting part; 214. Notch; 215. First folded edge; 216. Second folded edge; 30. Window body; 31. Light-transmitting panel; 40. Hinge mechanism. Detailed Implementation

[0022] The following describes a specific embodiment of the present invention in detail with reference to the accompanying drawings. However, it should be understood that the scope of protection of the present invention is not limited to the specific embodiment.

[0023] This utility model relates to a tool room with windows that can be opened upwards, such as... Figure 1 and Figure 2 As shown, the room includes a body 1 made of metal sheets. The wall 11 of the body 1 has at least one rectangular mounting opening, and a window assembly 2 is installed in each rectangular mounting opening. The wall 11 of the body 1 is made of several wall panels. The wall panels are corrugated panels with ridges 111 and grooves 112. This not only effectively improves the overall strength of the body 1, but also allows rainwater to flow through the grooves 112 of the wall panels.

[0024] In this embodiment, as Figure 2 As shown, the window assembly 2 includes a window frame 20 and a window body 30 installed within the window frame 20. The upper end of the window body 30 is connected to the upper end of the window frame 20 via a hinge mechanism 40, which locks the window body 30 in an upward-flipped open state. The hinge mechanism 40 is preferably a frog hinge with a buffer function, and its opening angle is preferably 90°. This type of frog hinge is an existing component that can be purchased in bulk on the market, and its specific structure will not be described in detail here. In this way, on rainy days, the upward-opening window body 30 can play a blocking role to effectively reduce or prevent rainwater from entering the tool room through the window frame 20. At the same time, a latch assembly (not shown in the figure) is provided between the lower inner side of the window body 30 and the window frame 20, so that the window body 30 can be stably locked in a closed state by the latch assembly (not shown in the figure).

[0025] In this embodiment, the interior of the window 30 has a light-transmitting plate 31, which is a glass plate or a light-transmitting plastic plate.

[0026] In this embodiment, as Figure 2As shown, the upper edge of the window frame 20 is provided with a downward-extending baffle strip corresponding to the inner side of the window body 30 to cover the installation gap between the window frame 20 and the window body 30. In this way, the baffle strip can prevent rainwater from entering the tool room through the installation gap. Preferably, baffle strips are provided on all four sides of the window of the window frame 20, so that the window body 30 can be directly embedded in the window frame 20, which facilitates the installation of the two.

[0027] In the above scheme, such as Figure 2 , Figure 3 and Figure 4 As shown, the window frame 20 includes four frame members 210 for splicing into a rectangular frame. Each frame member 210 includes an inner side plate 211 and an outer side plate 212 arranged in parallel, and a connecting plate 213 connecting the inner edge of the inner side plate 211 and the inner edge of the outer side plate 212. The lengths of the inner side plate 211 and the outer side plate 212 are both greater than the length of the connecting plate 213. The connecting plate 213 is connected to the middle of the inner edge of the inner side plate 211 and the outer side plate 212 so that the frame member 210 has notches 214 at both ends for adjacent frame members 210 to be inserted into each other. Thus, two adjacent frame members 210 are inserted into each other through the notches 214 and fixed with screws. Preferably, the length of the outer side plate 212 is greater than that of the inner side plate 211 and the outer side plate 212. The length of the outer side plate 212 and the end of the outer side plate 212 both protrude beyond the end of the inner side plate 211, so that the inner side plate 211 of the two interlocking notches 214 and the outer side plate 212 can be connected by screws with staggered alignment; the frame member 210 has a structure that is closed on the inside by the connecting plate 213 and open on the outside. Preferably, the distance between the inner side plate 211 and the outer side plate 212 is equal to or slightly greater than the distance between the ridge 111 and the groove 112 of the wall panel, so that the window frame 20 can be sleeved on the wall panel by the outer opening of the frame member 210 and fixed by screws; more preferably, the outer edge of the inner side plate 211 and the outer edge of the outer side plate 212 are staggered to be connected to the ridge 111 and the groove 112 of the wall panel by screws respectively.

[0028] In the above scheme, such as Figure 3 and Figure 4 As shown, the inner edge of the inner side plate 211 is located inside the inner edge of the outer side plate 212. The cross-section of the connecting plate 213 is a horizontally mirrored L-shaped structure. The connecting plate 213 includes a first connecting part 2131 connected to the inner side plate 211 and stacked on the inner side plate 211, and a second connecting part 2132 connected between the first connecting part 2131 and the outer side plate 212. The first connecting part 2131 stacked in this way cooperates with the corresponding inner side plate 211 part to form a baffle.

[0029] In the above solution, the outer edge of the inner side plate 211 is bent with a first fold 215 and the bend is rounded, and / or the outer edge of the outer side plate 212 is bent with a second fold 216 and the bend is rounded. This not only increases the outer edge strength of the inner side plate 211 and the outer side plate 212, but also avoids damage to the operator from the edge when the frame piece 210 is assembled.

[0030] In this embodiment, the frame member 210 of the window frame 20 is formed by integrally bending a metal sheet.

[0031] Compared with the prior art, the window of this utility model adopts an upward flip-open structure. When the window opens upward, it can effectively block rainwater from entering the tool room through the window frame. At the same time, the baffle strip can further prevent rainwater from entering the tool room through the installation gap between the window frame and the window body. Furthermore, the window frame can be easily fitted and fixed in the installation opening of the tool room through the frame fittings.

[0032] The above-disclosed embodiments are merely examples of the present utility model. However, the present utility model is not limited thereto, and any variations that can be conceived by those skilled in the art should fall within the protection scope of the present utility model.

Claims

1. A tool shed with windows that can be opened upwards, characterized in that, The room includes a building body made of metal sheets, and the walls of the building body are provided with at least one rectangular mounting opening, and each rectangular mounting opening is equipped with a window assembly. The window assembly includes a window frame and a window body installed within the window frame. The upper end of the window body is connected to the upper end of the window frame via a hinge mechanism, which can lock the window body in an upward-flipped open state. A stop strip is provided on the upper side of the window of the window frame corresponding to the inner side of the window body to cover the installation gap.

2. A tool shed with upward-opening windows according to claim 1, characterized in that, The window frame has baffles on all four sides of the window corresponding to the inner side of the window body to cover the installation gaps.

3. A tool shed with windows that can be opened upwards according to claim 2, characterized in that, The window frame includes four frame members for splicing into a rectangular frame. Each frame member includes an inner side plate and an outer side plate arranged at parallel intervals, and a connecting plate connecting the inner edge of the inner side plate and the inner edge of the outer side plate. The length of the inner side plate and the outer side plate is greater than the length of the connecting plate so that notches are formed at both ends for relative insertion between adjacent frame members. The inner edge of the inner side plate is located inside the inner edge of the outer side plate. The cross-section of the connecting plate is a horizontally mirrored L-shaped structure. The connecting plate includes a first connecting part that is connected to the inner side plate and stacked on the inner side plate, and a second connecting part that connects the first connecting part and the outer side plate.

4. A tool shed with windows that can be opened upwards according to claim 3, characterized in that, The length of the outer side plate is greater than the length of the inner side plate, and the ends of the outer side plates all protrude beyond the ends of the inner side plates.

5. A tool shed with upward-opening windows according to claim 3, characterized in that, The frame component is formed by integrally bending a metal sheet.

6. A tool shed with upward-opening windows according to claim 3, characterized in that, The outer edge of the inner side plate is provided with a first folded edge and / or the outer edge of the outer side plate is provided with a second folded edge.

7. A tool shed with windows that can be opened upwards according to claim 1, characterized in that, The hinge mechanism is a frog hinge with a buffer function.

8. A tool shed with windows that can be opened upwards according to claim 1, characterized in that, The walls of the building are made up of several wall panels, which are corrugated panels with ridges and grooves.

9. A tool shed with windows that can be opened upwards according to claim 1, characterized in that, A locking latch assembly is provided between the lower inner side of the window and the window frame.

Citation Information

Patent Citations

  • Window and tool room

    CN220395498U