Correcting frame for sliding door structure

By designing limiting components and sliding components on the sliding components on the sliding door correction frame, the problem of inefficient calibration of sliding doors of different sizes is solved, and the effect of adapting to sliding doors of different sizes is achieved and the effect of reducing friction is achieved.

CN222924372UActive Publication Date: 2025-05-30HEFEI LITENG IRON DECORATION CO LTD
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Patent Information

Application Number
CN202420772766.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-15
Publication Date
2025-05-30
Estimated Expiration
2034-04-15

AI Technical Summary

Technical Problem

When existing sliding door correction racks are used on sliding doors of different sizes, different fixtures need to be replaced, resulting in inefficient calibration.

Method used

A limiting assembly including a limiting frame, a limiting seat and a limiting member is designed. The positional relationship between the limiting seat and the limiting frame is changed through the limiting member, adapt to the sliding doors of different sizes, and a sliding assembly is provided on the correction frame to reduce friction.

Benefits of technology

Through the design of the limiting component, it can adapt to different sizes of sliding doors to improve calibration efficiency; the use of sliding components reduces the friction of the sliding doors during calibration, and improves the accuracy and efficiency of calibration.

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Abstract

The utility model provides a correcting frame for a sliding door structure, and relates to the technical field of correcting frames, the correcting frame comprises a correcting mechanism and a sliding door main body, and the sliding door main body is installed on the surface wall of the correcting mechanism; the correcting mechanism comprises a frame main body used for fixing a sliding door main body and further comprises a limiting assembly and a sliding assembly which are connected with the frame main body, a sliding rail is arranged at the bottom end of the frame main body, the sliding door main body is placed on the surface walls of the limiting assembly and the sliding assembly and used for limiting the sliding door main body, and the limiting assembly is arranged. The limiting device comprises a limiting frame, a limiting seat and a limiting piece, the limiting seat is connected with the limiting frame through the limiting piece, when sliding door bodies of different sizes are corrected, the position relation between the limiting seat and the limiting frame can be changed through the limiting piece, and therefore the practicability of the whole structure can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of calibration frames, and particularly to a calibration frame for a sliding door structure. Background Art

[0002] Most sliding doors are electric sliding doors, which have the characteristics of multiple functions and are suitable for installation on various factory building structures. Such door leaves can be manually and electrically switched, and the controllable door leaves are generally single-track, divided into two types: lower load-bearing and upper load-bearing.

[0003] When processing sliding doors, a calibration frame is required to calibrate the sliding doors. The calibrated sliding doors are sold and used. When calibrating the sliding doors, due to the different sizes of the sliding doors, different fixtures are required for sliding doors of different sizes during calibration, resulting in low calibration efficiency. Summary of the Utility Model

[0004] In order to overcome the existing problems, the embodiment of the present application provides a calibration frame for a sliding door structure, which is provided with a limiting component, including a limiting frame, a limiting seat and a limiting member. The limiting seat is connected to the limiting frame through the limiting member. When calibrating sliding door bodies of different sizes, the positional relationship between the limiting seat and the limiting frame can be changed through the limiting member, thereby improving the practicability of the overall structure.

[0005] The technical solution adopted by the embodiment of the present application to solve its technical problems is as follows:

[0006] A calibration frame for a sliding door structure includes a calibration mechanism and a sliding door body. A pulley is provided at the bottom end of the sliding door body, and the pulley is slidably connected to the sliding rail. The sliding door body is installed on the surface of the calibration mechanism.

[0007] Among them, the calibration mechanism includes a frame body for fixing the sliding door body, and also includes a limiting component and a sliding component connected to the frame body. A sliding rail is provided at the bottom end of the frame body. The sliding door body is placed on the surfaces of the limiting component and the sliding component for limiting the sliding door body. A limiting component and a sliding component are provided on the surface of the bracket. The sliding component is installed at the bottom end of the limiting component. The sliding door body is limited by the limiting component. The side wall of the sliding door body is in contact with the sliding component. Moreover, a sliding rail is provided at the bottom end of the sliding door body. Through the arrangement of the sliding rail and the sliding component, the friction force received by the sliding door body during calibration is reduced.

[0008] Preferably, the limiting component includes a limiting frame connected to the frame body. A limiting seat is provided at the bottom end of the limiting frame, and a limiting member is provided at the intersection of the limiting frame and the limiting seat. The position relationship between the limiting seat and the limiting frame can be changed through the limiting member. The limiting seat is connected to the limiting frame through the limiting member. When calibrating translation door bodies of different sizes, the position relationship between the limiting seat and the limiting frame can be changed through the limiting member, thereby improving the practicability of the overall structure.

[0009] Preferably, the sliding component includes a connecting frame connected to the frame body. A roller is provided on one side of the connecting frame, and the side wall of the roller is located at one end of the connecting frame. In this way, the side wall of the translation door body contacts the side wall of the roller, and the rotation of the roller reduces the friction during the movement of the translation door body.

[0010] Preferably, the frame body includes a base. A pulley plate is provided at the intersection of the base and the sliding frame. The pulley plate drives the sliding frame to move when moving. A receiving seat is provided on one side of the base where the pulley plate is located. A bracket is provided above the base, and a slide rail fixing frame is provided at the top end of the bracket. A sliding frame is provided on the surface of the slide rail fixing frame. During the movement of the sliding frame, the problem of deviation is avoided under the limitation of the slide rail fixing frame. The sliding frame is slidably connected to the slide rail fixing frame, and the bracket is fixedly connected to the base.

[0011] The advantages of the embodiments of the present application are:

[0012] 1. A limiting component is provided, which includes a limiting frame, a limiting seat and a limiting member. The limiting seat is connected to the limiting frame through the limiting member. When calibrating translation door bodies of different sizes, the position relationship between the limiting seat and the limiting frame can be changed through the limiting member, thereby improving the practicability of the overall structure.

[0013] 2. A limiting component and a sliding component are provided on the surface of the bracket. The sliding component is installed at the bottom end of the limiting component. The translation door body is limited by the limiting component, and the side wall of the translation door body contacts the sliding component. Moreover, a slide rail is provided at the bottom end of the translation door body. Through the setting of the slide rail and the sliding component, the friction received by the translation door body during calibration is reduced. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] The present utility model will be further described below with reference to the drawings and embodiments.

[0015] Figure 1 It is a front view structural schematic diagram of a calibration frame for a translation door structure of the present utility model;

[0016] Figure 2 It is a top view structural schematic diagram of a calibration frame for a translation door structure of the present utility model;

[0017] Figure 3 This is a partially enlarged structural schematic diagram of the sliding door main body in the alignment frame for the sliding door structure of the present utility model;

[0018] Figure 4 This is a side structural schematic diagram of the limit component in the alignment frame for the sliding door structure of the present utility model;

[0019] Figure 5 This is a side schematic diagram of the sliding component in the alignment frame for the sliding door structure of the present utility model.

[0020] Main reference numeral description:

[0021] 1. Bracket; 2. Slide rail fixing frame; 3. Sliding frame; 4. Limit component; 41. Limit frame; 42. Limit seat; 43. Limiting member; 5. Sliding component; 51. Connecting frame; 52. Roller; 6. Bearing seat; 7. Base; 8. Pulley plate; 9. Slide rail; 10. Sliding door main body; 11. Pulley. Specific implementation manner

[0022] In the embodiment of the present application, by providing an alignment frame for a sliding door structure to solve the problems in the prior art, a limit component is provided, which includes a limit frame, a limit seat and a limiting member. The limit seat is connected to the limit frame through the limiting member. When aligning sliding door main bodies of different sizes, the positional relationship between the limit seat and the limit frame can be changed through the limiting member, thereby improving the practicability of the overall structure; a limit component and a sliding component are provided on the surface of the bracket, and the sliding component is installed at the bottom end of the limit component. The sliding door main body is limited by the limit component, and the side wall of the sliding door main body is in contact with the sliding component. Moreover, a slide rail is provided at the bottom end of the sliding door main body. Through the setting of the slide rail and the sliding component, the friction force received by the sliding door main body during alignment is reduced.

[0023] The technical solution in the embodiment of the present application is to solve the above problems, and the general idea is as follows:

[0024] Embodiment

[0025] This embodiment gives the specific structure of an alignment frame for a sliding door structure, as Figures 1-5 shown, including an alignment mechanism and a sliding door main body 10. A pulley 11 is provided at the bottom end of the sliding door main body 10, and the pulley 11 is slidably connected to the slide rail 9. The sliding door main body 10 is installed on the surface of the alignment mechanism;

[0026] Among them, the calibration mechanism includes a frame body for fixing the sliding door body 10, and also includes a limit component 4 and a sliding component 5 connected to the frame body. A slide rail 9 is provided at the bottom end of the frame body. The sliding door body 10 is placed on the surfaces of the limit component 4 and the sliding component 5 to limit the sliding door body 10. The limit component 4 and the sliding component 5 are provided on the surface of the bracket 1. The sliding component 5 is installed at the bottom end of the limit component 4. The sliding door body 10 is limited by the limit component 4. The side wall of the sliding door body 10 is in contact with the sliding component 5. Moreover, a slide rail 9 is provided at the bottom end of the sliding door body 10. Through the settings of the slide rail 9 and the sliding component 5, the friction force received by the sliding door body 10 during calibration is reduced.

[0027] The limit component 4 includes a limit frame 41 connected to the frame body. A limit seat 42 is provided at the bottom end of the limit frame 41. A limiting member 43 is provided at the intersection of the limit frame 41 and the limit seat 42. The position relationship between the limit seat 42 and the limit frame 41 can be changed through the limiting member 43. The limit seat 42 is connected to the limit frame 41 through the limiting member 43. When calibrating sliding door bodies 10 of different sizes, the position relationship between the limit seat 42 and the limit frame 41 can be changed through the limiting member 43, thereby improving the practicability of the overall structure.

[0028] In some embodiments: A limiting member 43 is provided at the intersection of the limit frame 41 and the limit seat 42. The position relationship between the limit seat 42 and the limit frame 41 can be changed through the limiting member 43. The limit seat 42 is connected to the limit frame 41 through the limiting member 43. When calibrating sliding door bodies 10 of different sizes, the position relationship between the limit seat 42 and the limit frame 41 can be changed through the limiting member 43.

[0029] The sliding component 5 includes a connecting frame 51 connected to the frame body. A roller 52 is provided on one side of the connecting frame 51. The side wall of the roller 52 is located at one end of the connecting frame 51. In this way, the side wall of the sliding door body 10 is in contact with the side wall of the roller 52. The rotation of the roller 52 reduces the friction force during the movement of the sliding door body 10.

[0030] In some embodiments: The side wall of the roller 52 is located at one end of the connecting frame 51. In this way, the side wall of the sliding door body 10 is in contact with the side wall of the roller 52. The rotation of the roller 52 reduces the friction force during the movement of the sliding door body 10.

[0031] The frame body includes a base 7. At the intersection of the base 7 and the sliding frame 3, there is a pulley plate 8. When the pulley plate 8 moves, it drives the sliding frame 3 to move. On one side of the pulley plate 8, there is a receiving seat 6. Above the base 7, there is a support 1. At the top of the support 1, there is a slide rail fixing frame 2. On the surface of the slide rail fixing frame 2, there is a sliding frame 3. During the movement of the sliding frame 3, under the limitation of the slide rail fixing frame 2, the problem of deviation is avoided. The sliding frame 3 is slidably connected to the slide rail fixing frame 2, and the support 1 is fixedly connected to the base 7.

[0032] By adopting the above technical solutions:

[0033] At the bottom end of the frame body, there is a slide rail 9. The translation door body 10 is placed on the surfaces of the limit component 4 and the sliding component 5 for limiting the translation door body 10. On the surface of the support 1, there are a limit component 4 and a sliding component 5. The sliding component 5 is installed at the bottom end of the limit component 4. The translation door body 10 is limited by the limit component 4. The side wall of the translation door body 10 is in contact with the sliding component 5. Moreover, at the bottom end of the translation door body 10, there is a slide rail 9. Through the arrangement of the slide rail 9 and the sliding component 5, the friction force received by the translation door body 10 during calibration is reduced.

[0034] Working principle: When in use, take out the translation door body 10 to be detected, connect the pulley 11 at the bottom end of the translation door body 10 with the slide rail 9. Then take out the limit component 4, make the top end of the translation door body 10 contact with the limit seat 42 inside the limit component 4. Then loosen the limit piece 43 to change the positional relationship between the limit seat 42 and the limit frame 41. Then connect the limit frame 41 with the support 2. Then tighten the limit piece 43 to make the limit seat 42 and the limit frame 41 fixed tightly. Then fix the limit component 4 tightly to the support 2 through the limit frame 41. Then push the translation door body 10. As the translation door body 10 is pushed, the pulley 11 at the bottom end rotates with the slide rail 9. During the movement of the translation door body 10, the translation door body 10 can be detected through the sliding component 5.

[0035] Finally, it should be noted that: Obviously, the above embodiments are only examples given for clearly explaining the present invention, and are not limitations on the implementation manners. For those of ordinary skill in the art, based on the above description, other different forms of changes or variations can be made. It is not necessary and impossible to list 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 sliding door structure, characterized in that: It comprises a correction mechanism and a sliding door body (10), wherein the sliding door body (10) is installed on the surface wall of the correction mechanism; The correction mechanism comprises a frame body for fixing the sliding door body (10), and also comprises a limit assembly (4) and a sliding assembly (5) connected to the frame body. A slide rail (9) is provided at the bottom end of the frame body, and the sliding door body (10) is placed on the surface wall of the limit assembly (4) and the sliding assembly (5) to limit the sliding door body (10).

2. A correction frame for a sliding door structure as claimed in claim 1, characterized in that: The limiting assembly (4) comprises a limiting frame (41) connected to the frame body, a limiting seat (42) is provided at the bottom end of the limiting frame (41), and a limiting member (43) is provided at the intersection of the limiting frame (41) and the limiting seat (42), and the positional relationship between the limiting seat (42) and the limiting frame (41) can be changed by the limiting member (43).

3. The correction frame for a sliding door structure as claimed in claim 1, characterized in that: The sliding assembly (5) comprises a connecting frame (51) connected to the frame body, and a roller (52) is provided on one side of the connecting frame (51).

4. The correction frame for a sliding door structure as claimed in claim 1, characterized in that: The frame body comprises a base (7), a bracket (1) is provided above the base (7), and the bracket (1) is fixedly connected to the base (7).

5. A correction frame for a sliding door structure as claimed in claim 4, characterized in that: A slide rail fixing frame (2) is provided at the top end of the bracket (1), a sliding frame (3) is provided on the surface wall of the slide rail fixing frame (2), and the sliding frame (3) is slidably connected to the slide rail fixing frame (2).

6. A correction frame for a sliding door structure as claimed in claim 5, characterized in that: A pulley plate (8) is provided at the intersection of the base (7) and the sliding frame (3), and a receiving seat (6) is provided on one side of the base (7) located on the pulley plate (8).

7. The correction frame for a sliding door structure as claimed in claim 1, characterized in that: A pulley (11) is provided at the bottom end of the sliding door body (10), and the pulley (11) is slidably connected to the slide rail (9).

8. The correction frame for a sliding door structure as claimed in claim 3, characterized in that: The side wall of the roller (52) is located at one end of the connecting frame (51).