Correcting frame for double-door structure
By designing a calibration frame containing limiting components and adjustment mechanisms, the problem of low correction efficiency of the axial door of the heaven and earth is solved, and stable correction and efficient fixation of the heaven and earth hinges at different installation positions is achieved.
Patent Information
- Application Number
- CN202420931172.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-30
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-04-30
AI Technical Summary
During the existing correction process of the axial door of the world, different fixtures are required due to the different installation positions of the world hinges, resulting in inefficient calibration efficiency.
A correction frame for double-open door structure is designed, including a fixing mechanism and an adjustment mechanism. The limiting assembly includes a cross-branch and a fixed shaft. The spacing between the fixed shaft and the cross-branch is changed through the adjustment member, and connected to the bracket and the sliding assembly through a connecting screw to adapt to the world hinge at different installation positions.
It improves the suitability of the limiting assembly and can stably correct the world axle doors at different installation positions to ensure the stability and calibration efficiency of the door.
Smart Images

Figure CN223084543U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of correction frames, in particular to a correction frame for a double-door structure. Background Technique
[0002] A floor and ceiling shaft door is a type of door body opened by floor and ceiling hinges. Floor and ceiling hinges are a type of hinge, different from traditional hinges. They can open the door to 180 degrees, use lubricating sheets made of special materials, cause no wear to metal shafts, and make no sound when opening and closing. The hinges are reasonably stressed and only bear downward pressure.
[0003] When a floor and ceiling shaft door is processed, a correction frame is needed to correct the sliding door. The qualified floor and ceiling shaft doors are sold and used. When correcting the floor and ceiling shaft door, since the floor and ceiling hinges of the floor and ceiling shaft door are not installed at the same position as the floor and ceiling shaft door, different fixtures are required for floor and ceiling shaft doors with different installation positions of floor and ceiling hinges during correction, resulting in low correction efficiency of the floor and ceiling shaft door. Summary of the Utility Model
[0004] In order to overcome the existing problems, the embodiment of the present application provides a correction frame for a double-door structure. A limiting component is arranged inside the bracket and the sliding component. The limiting component includes a cross brace and a fixed shaft. An adjusting part is arranged at the intersection of the fixed shaft and the cross brace. By setting the adjusting part, the distance between the fixed shaft and the cross brace can be changed, which is used to fix the floor and ceiling shaft doors at different installation positions of the floor and ceiling hinges, enhancing the applicability of the limiting component. Moreover, it also includes a connecting screw rod arranged inside the fixed seat. The fixed seat is connected to the bracket and the sliding component through the connecting screw rod. In this way, the installation position of the limiting component and the sliding component and the bracket can be changed through the connecting screw rod.
[0005] The technical solution adopted by the embodiment of the present application to solve its technical problems is:
[0006] A correction frame for a double-door structure includes a fixing mechanism and an adjusting mechanism. The fixing mechanism includes a base and a bracket, and the base and the bracket are fixedly connected;
[0007] Among them, the adjusting mechanism includes a limiting component and a sliding component connected to the bracket. The sliding component slides inside the base to determine the width of the floor and ceiling shaft door. The limiting component is used to contact the floor and ceiling shaft door for limiting. A limiting component is arranged inside the bracket and the sliding component. The limiting component includes a cross brace and a fixed shaft. An adjusting part is arranged at the intersection of the fixed shaft and the cross brace. By setting the adjusting part, the distance between the fixed shaft and the cross brace can be changed, which is used to fix the floor and ceiling shaft doors at different installation positions of the floor and ceiling hinges, enhancing the applicability of the limiting component.
[0008] Preferably, the limiting component includes a fixed seat connected to the sliding component. A connecting screw is rotatably connected inside the fixed seat. The limiting component is connected to the sliding component through the connecting screw. There is also a connecting screw arranged inside the fixed seat. The fixed seat is interconnected with the bracket and the sliding component through the connecting screw. By changing the positions of the connecting screw, the sliding component, and the bracket, the installation positions of the limiting component, the sliding component, and the bracket can be changed through the connecting screw. One end of the fixed seat is provided with a cross brace, and the other end of the cross brace is provided with a fixed shaft. An adjusting member is provided at the intersection of the fixed shaft and the cross brace. Align the top hinge of the floor and ceiling shaft door with the fixed shaft. Then, when the floor and ceiling shaft door is opened, the hinge is connected to the fixed shaft, which can correct the stability of the floor and ceiling shaft door to ensure compliance.
[0009] Preferably, a number of connecting holes are provided at the intersection of the sliding component and the limiting component, and the size of the connecting holes matches that of the connecting screw. Remove the limiting component and connect the connecting screw inside the limiting component to the connecting holes inside the sliding component.
[0010] Preferably, a slide rail fixing bracket is provided at the bottom end of the bracket. The slide rail fixing bracket is slidably connected to the sliding component. A pulley plate is provided at the intersection of the base and the sliding component to drive the sliding component to move. The sliding component slides through the pulley plate at the bottom end, and the sliding component can be limited by the slide rail fixing bracket above, avoiding the problem of sliding deviation of the sliding component. Moreover, during the sliding process of the sliding component, floor and ceiling shaft doors of different sizes can be fixed.
[0011] Preferably, a receiving seat is provided at the position corresponding to the limiting component above the base. The receiving seat is in contact with the bottom end of the floor and ceiling shaft door to support the floor and ceiling shaft door.
[0012] Preferably, there are two brackets in total. Through holes are provided on one side of the sliding component where the two brackets are located for connecting with the connecting screw. Remove the limiting component and connect the connecting screw inside the limiting component to the through holes inside the brackets.
[0013] The advantages of the embodiments of this application are:
[0014] A limiting component is provided inside the bracket and the sliding component. The limiting component includes a cross brace and a fixed shaft. An adjusting member is provided at the intersection of the fixed shaft and the cross brace. By setting the adjusting member, the distance between the fixed shaft and the cross brace can be changed, which is used to fix the floor hinge doors at different installation positions of the floor hinge, enhancing the applicability of the limiting component. Moreover, it also includes a connecting screw provided inside the fixed seat. The fixed seat is interconnected with the bracket and the sliding component through the connecting screw. In this way, the installation positions of the limiting component, the sliding component and the bracket can be changed through the connecting screw. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The present utility model will be further described below with reference to the drawings and embodiments.
[0016] Figure 1 It is a front view structural schematic diagram of the correction frame for the double - door structure of the present utility model;
[0017] Figure 2 It is a top view structural schematic diagram of the correction frame for the double - door structure of the present utility model;
[0018] Figure 3 It is a top view structural schematic diagram of the limiting component in the correction frame for the double - door structure of the present utility model.
[0019] Main reference numeral descriptions:
[0020] 1. Base; 2. Bracket; 3. Slide rail fixing frame; 4. Sliding component; 5. Pulley plate; 6. Bearing seat; 7. Limiting component; 71. Fixed shaft; 72. Adjusting member; 73. Cross brace; 74. Fixed seat; 75. Connecting screw. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] In this application embodiment, a correction frame for a double - door structure is provided to solve the problems in the prior art. A limiting component is provided inside the bracket and the sliding component. The limiting component includes a cross brace and a fixed shaft. An adjusting member is provided at the intersection of the fixed shaft and the cross brace. By setting the adjusting member, the distance between the fixed shaft and the cross brace can be changed, which is used to fix the floor hinge doors at different installation positions of the floor hinge, enhancing the applicability of the limiting component. Moreover, it also includes a connecting screw provided inside the fixed seat. The fixed seat is interconnected with the bracket and the sliding component through the connecting screw. In this way, the installation positions of the limiting component, the sliding component and the bracket can be changed through the connecting screw.
[0022] The technical solution in this application embodiment for solving the above problems has the following general idea:
[0023] Embodiment 1:
[0024] This embodiment gives the specific structure of a correction frame for a double - door structure, as Figures 1-3As shown, it includes a fixing mechanism and an adjusting mechanism. The fixing mechanism includes a base 1 and a bracket 2, and the base 1 and the bracket 2 are fixedly connected;
[0025] Among them, the adjusting mechanism includes a limiting component 7 and a sliding component 4 connected to the bracket 2. The sliding component 4 slides inside the base 1 and is used to determine the width of the floor hinge door. The limiting component 7 is used to contact the floor hinge door for limiting. A limiting component 7 is provided inside the bracket 2 and the sliding component 4. The limiting component 7 includes a cross brace 73 and a fixed shaft 71. An adjusting member 72 is provided at the intersection of the fixed shaft 71 and the cross brace 73. By setting the adjusting member 72, the distance between the fixed shaft 71 and the cross brace 73 can be changed, which is used to fix the floor hinge doors at different installation positions of the floor hinge, enhancing the applicability of the limiting component 7.
[0026] The limiting component 7 includes a fixed seat 74 connected to the sliding component 4. A connecting screw 75 is rotatably connected inside the fixed seat 74. The limiting component 7 is connected to the sliding component 4 through the connecting screw 75. It also includes the connecting screw 75 provided inside the fixed seat 74. The fixed seat 74 is connected to the bracket 2 and the sliding component 4 through the connecting screw 75. By changing the positions of the connecting screw 75, the sliding component 4 and the bracket 2, the installation position of the limiting component 7 with respect to the sliding component 4 and the bracket 2 can be changed in this way. One end of the fixed seat 74 is provided with a cross brace 73, and the other end of the cross brace 73 is provided with a fixed shaft 71. An adjusting member 72 is provided at the intersection of the fixed shaft 71 and the cross brace 73. The floor hinge at the top of the floor hinge door is aligned with the fixed shaft 71. Then when the floor hinge door is opened, the floor hinge is connected to the fixed shaft 71, which can correct the stability of the floor hinge door to ensure compliance.
[0027] By adopting the above technical solutions:
[0028] A limiting component 7 is provided inside the bracket 2 and the sliding component 4. The limiting component 7 includes a cross brace 73 and a fixed shaft 71. An adjusting member 72 is provided at the intersection of the fixed shaft 71 and the cross brace 73. By setting the adjusting member 72, the distance between the fixed shaft 71 and the cross brace 73 can be changed, which is used to fix the floor hinge doors at different installation positions of the floor hinge, enhancing the applicability of the limiting component 7.
[0029] Embodiment 2:
[0030] This embodiment provides a specific structure of a correction frame for a double-door structure, as Figures 1-3 shown. A plurality of connection holes are provided at the intersection of the sliding component 4 and the limiting component 7, and the size of the connection holes matches that of the connecting screw 75. The limiting component 7 is taken out, and the connecting screw 75 inside the limiting component 7 is connected to the connection holes inside the sliding component 4.
[0031] The bottom end of the bracket 2 is provided with a slide rail fixing bracket 3. The slide rail fixing bracket 3 is slidably connected to the sliding assembly 4. At the intersection of the sliding assembly 4, the base 1 is provided with a pulley plate 5 for driving the sliding assembly 4 to move. The sliding assembly 4 slides through the pulley plate 5 at the bottom end, and the sliding assembly 4 can be limited by the slide rail fixing bracket 3 above, avoiding the problem of sliding deviation of the sliding assembly 4. Moreover, during the sliding process of the sliding assembly 4, French doors of different sizes can be fixed.
[0032] At the corresponding position above the base 1 and corresponding to the limiting assembly 7, there is a receiving seat 6. The receiving seat 6 is in contact with the bottom end of the French door, serving to support the French door.
[0033] There are two brackets 2 in total. On one side of the sliding assembly 4, the two brackets 2 are provided with through holes for connecting with the connecting screw 75. Take out the limiting assembly 7 and connect the connecting screw 75 inside the limiting assembly 7 with the through holes inside the brackets 2.
[0034] By adopting the above technical solutions:
[0035] The slide rail fixing bracket 3 is slidably connected to the sliding assembly 4. At the intersection of the sliding assembly 4, the base 1 is provided with a pulley plate 5 for driving the sliding assembly 4 to move. The sliding assembly 4 slides through the pulley plate 5 at the bottom end, and the sliding assembly 4 can be limited by the slide rail fixing bracket 3 above, avoiding the problem of sliding deviation of the sliding assembly 4. Moreover, during the sliding process of the sliding assembly 4, French doors of different sizes can be fixed.
[0036] Working principle: Take out the French door to be corrected and place the bottom end of the French door on the top of the receiving seat 6. Then push the sliding assembly 4. The sliding assembly 4 slides through the pulley plate 5 at the bottom end, and the sliding assembly 4 can be limited by the slide rail fixing bracket 3 above, avoiding the problem of sliding deviation of the sliding assembly 4. Moreover, during the sliding process of the sliding assembly 4, French doors of different sizes can be fixed.
[0037] Then take out the limiting assembly 7. The fixing seat 74 is connected to the bracket 2 and the sliding assembly 4 through the connecting screw 75. Change the positions of the connecting screw 75, the sliding assembly 4 and the bracket 2. In this way, the installation positions of the limiting assembly 7, the sliding assembly 4 and the bracket 2 can be changed through the connecting screw 75 to make the fixed shaft 71 contact the door hinge.
[0038] A limiting component 7 is provided inside the bracket 2 and the sliding component 4. The limiting component 7 includes a cross brace 73 and a fixed shaft 71. An adjusting member 72 is provided at the intersection of the fixed shaft 71 and the cross brace 73. By setting the adjusting member 72, the distance between the fixed shaft 71 and the cross brace 73 can be changed, which is used to fix the top and bottom hinge doors at different installation positions, enhancing the applicability of the limiting component 7.
[0039] Finally, it should be noted that: Obviously, the above embodiments are merely examples for clearly illustrating the present invention, rather than limitations on the implementation manners. For those of ordinary skill in the art, other different forms of changes or variations can be made based on the above description. It is not necessary and impossible to enumerate all the implementation manners here. And the obvious changes or variations derived therefrom are still within the protection scope of the present invention.
Claims
1. A correction frame for a double-door structure, characterized in that, It includes a fixing mechanism and an adjusting mechanism. The fixing mechanism includes a base (1) and a bracket (2), and the base (1) and the bracket (2) are fixedly connected; Among them, the adjusting mechanism includes a limiting component (7) and a sliding component (4) connected to the bracket (2). The sliding component (4) slides inside the base (1) and is used to determine the width of the floor and ceiling pivot door. The limiting component (7) is used to contact the floor and ceiling pivot door for limiting.
2. The alignment bracket for a double-door structure according to claim 1, characterized in that, The limiting component (7) includes a fixed seat (74) connected to the sliding component (4). One end of the fixed seat (74) is provided with a cross brace (73), and the other end of the cross brace (73) is provided with a fixed shaft (71). An adjusting part (72) is provided at the intersection of the fixed shaft (71) and the cross brace (73).
3. The alignment bracket for a double-door structure according to claim 2, wherein, A connecting screw (75) is rotatably connected inside the fixed seat (74), and the limiting component (7) is connected to the sliding component (4) through the connecting screw (75).
4. The alignment bracket for a double-door structure according to claim 3, wherein, A number of connecting holes are opened at the intersection of the sliding component (4) and the limiting component (7), and the size of the connecting holes matches that of the connecting screw (75).
5. The alignment bracket for a double-door structure according to claim 1, wherein A slide rail fixing bracket (3) is provided at the bottom end of the bracket (2), and the slide rail fixing bracket (3) is slidably connected to the sliding component (4).
6. The alignment bracket for a double-door structure according to claim 1, wherein, A pulley plate (5) is provided at the intersection of the base (1) where the sliding component (4) is located, and is used to drive the sliding component (4) to move.
7. The alignment bracket for a double-door structure according to claim 1, characterized in that, A receiving seat (6) is provided at the position corresponding to the limiting component (7) above the base (1).
8. The alignment frame for a double-door structure according to claim 3, wherein There are two brackets (2) in total. Two through holes are opened on one side of the sliding component (4) of the two brackets (2) and are used to connect with the connecting screw (75).