Multi-side magnetic sealing aluminum-clad wood lifting sliding door

By adopting a multi-sided magnetic sealing structure on aluminum-clad wood sliding doors, and utilizing the mutual attraction and mobility of the magnetic sealing strips, the problems of reduced sealing performance and gap adaptability caused by the shrinkage of the sealing strips are solved, resulting in better sealing effect and longer service life.

CN223881022UActive Publication Date: 2026-02-06HARBIN GEYUN WINDOW IND CO LTD
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Patent Information

Application Number
CN202520116506.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2026-02-06
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Existing aluminum-clad wood sliding doors tend to have shrinking sealing strips after prolonged use, leading to decreased sealing performance and air and water leaks. Furthermore, the sealing strips cannot adapt to changes in the gap between the sliding door and the fixed support frame, making operation complex and lifespan short.

Method used

It adopts a multi-sided magnetic sealing structure, including an upper magnetic sealing body, a lower magnetic sealing body and a side magnetic sealing body. It utilizes the mutual attraction between magnetic sealing strip one and magnetic sealing strip two to achieve multi-position magnetic adsorption sealing. Magnetic sealing strip two can move within the inner frame profile to adapt to the sealing requirements of different gaps.

Benefits of technology

It improves the sealing performance of sliding doors, maintaining good sealing even when the sealing strip shrinks, adapting to sealing requirements of different gaps, and extending the service life of the sealing strip.

✦ Generated by Eureka AI based on patent content.

Smart Images

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    Figure CN223881022U_ABST
Patent Text Reader

Abstract

The utility model discloses a multi-side magnetic sealing aluminum-clad wood lifting sliding door, and relates to the technical field of doors and windows. The sliding lifting door body is arranged in a rail in the fixed supporting frame, an upper magnetic sealing body, a lower magnetic sealing body and a side magnetic sealing body are installed on the upper side, the lower side and the side face of the sealing position of the outer side wall of the sliding lifting door body and the sealing position of the fixed supporting frame correspondingly, a first magnetic sealing strip is installed in the outer frame profile, and a second magnetic sealing strip is installed in the inner frame profile. The first magnetic sealing strip and the second magnetic sealing strip are attracted and sealed; magnetic adsorption type sealing is achieved, the sealing performance can be improved, meanwhile, movable sealing is adopted on one side, and the sealing device can be suitable for sealing of different gaps; the first magnetic sealing strip and the second magnetic sealing strip are adopted for achieving magnetic adsorption type sealing, the sealing performance can be improved, and meanwhile sealing can be achieved when the sealing strips contract; the second magnetic sealing strip and the first magnetic sealing strip are sealed in a movable sealing mode, and the sealing device can be suitable for sealing of different gaps.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of building doors and windows, and particularly relates to a multi-side magnetic sealing aluminum-clad wood lifting sliding door. BACKGROUND

[0002] Doors and windows are divided into envelope components or partition components according to their positions, have different design requirements, and have functions such as heat preservation, heat insulation, sound insulation, waterproofing, fireproofing, and new requirements for energy saving. In cold regions, heat loss through door and window gaps accounts for about 25% of total heating heat consumption. The requirement for the airtightness of doors and windows is an important content in energy-saving design. Doors and windows are important components of building envelope systems. Function two: doors and windows are also important components of building modeling (virtual-real contrast, rhythm art effect, playing an important role) Therefore, their shape, size, proportion, arrangement, color, modeling, etc. have a great influence on the overall modeling of the building.

[0003] The existing aluminum-clad wood lifting sliding door seals by installing a sealing strip on the profile during sealing, but the sealing strip will have the following problems after long-term use:

[0004] 1. The sealing strip will shrink after long-term use, resulting in poor sealing performance of the sealing strip and causing air leakage and rain leakage.

[0005] 2. When the gap between the sliding lifting door body and the fixed support frame is inconsistent or inconsistent, the sealing strip cannot achieve sealing, and the gap between the sliding lifting door body and the fixed support frame needs to be adjusted. However, some sliding lifting door bodies cannot be adjusted, so the sealing strip needs to be replaced to match the gap. The operation is complex, and the service life of the sealing strip is short. INVENTION CONTENTS

[0006] To solve the problems mentioned in the background art, the purpose of the utility model is to provide a multi-side magnetic sealing aluminum-clad wood lifting sliding door.

[0007] The multi-side magnetic sealing aluminum-clad wood lifting sliding door of the utility model comprises a sliding lifting door body, a fixed support frame, an upper magnetic sealing body, a lower magnetic sealing body, and a side magnetic sealing body. The sliding lifting door body is arranged in the track in the fixed support frame. The upper and lower sides and the side of the sealing place of the outer side wall of the sliding lifting door body and the sealing place of the fixed support frame are respectively provided with the upper magnetic sealing body, the lower magnetic sealing body, and the side magnetic sealing body. The upper magnetic sealing body, the lower magnetic sealing body, and the side magnetic sealing body have the same structure and comprise an outer frame profile, a magnetic sealing strip one, an inner frame profile, and a magnetic sealing strip two. The magnetic sealing strip one is arranged in the outer frame profile, and the magnetic sealing strip two is arranged in the inner frame profile. The magnetic sealing strip one and the magnetic sealing strip two are attracted and sealed.

[0008] As preferred, the outer frame section is installed on the fixed support frame, a T-shaped sealing installation groove is formed on the inner side wall of the outer frame section, a fixed hole one is formed on the bottom of the T-shaped sealing installation groove, and a counterbore one is connected to the outer side of the fixed hole one.

[0009] As preferred, the magnetic sealing strip one comprises a sealing strip body one and a magnetic strip one, and the magnetic strip one is arranged inside the sealing strip body one.

[0010] As preferred, the sealing strip body one is a T-shaped sealing strip.

[0011] As preferred, the inner frame section is installed on the sliding lifting door body, a sealing movable groove is formed on the outer side wall of the inner frame section, an opening is connected to the outer side of the sealing movable groove, the sealing movable groove and the opening form a T-shaped movable groove, a fixed hole two is formed on the bottom of the sealing movable groove, and a counterbore two is connected to the outer side of the fixed hole two.

[0012] As preferred, the magnetic sealing strip two comprises a sealing strip body two and a magnetic strip two, and the magnetic strip two is arranged inside the sealing strip body two.

[0013] As preferred, the sealing strip body two comprises a movable sealing end and an attraction sealing end, the attraction sealing end is integrally connected to the front end of the movable sealing end, and the movable sealing end and the attraction sealing end form a T-shaped sealing strip.

[0014] As preferred, the thickness b of the movable sealing end is smaller than 2-10 cm of the depth a of the sealing movable groove, and the thickness d of the sealing strip body two is smaller than 1-3 cm of the depth c of the T-shaped movable groove.

[0015] Compared with the prior art, the utility model has the advantages that the mutual cooperation of the sliding lifting door body, the fixed support frame, the upper magnetic sealing body, the lower magnetic sealing body and the side magnetic sealing body realizes the magnetic adsorption type sealing connection process of multiple sides and multiple positions, the sealing performance of the character-shaped connection position after the sliding lifting door body is closed is improved, one side adopts the movable sealing, and the movable sealing is suitable for sealing of different gaps.

[0016] I. The magnetic sealing strip one and the magnetic sealing strip two are adopted to realize the magnetic adsorption type sealing, the sealing performance is improved, and the sealing is realized when the sealing strip shrinks, so that the diversified sealing mode under different use periods is formed.

[0017] II. The magnetic sealing strip two adopts the movable sealing mode to realize the sealing with the magnetic sealing strip one, the movable sealing is suitable for sealing of different gaps, is suitable for different sealing positions and sealing requirements, and has a wide adaptation range. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to facilitate the description, the utility model is described in detail by the following specific embodiments and drawings.

[0019] Figure 1 This is a schematic diagram of the structure of this utility model. The arrows in the diagram indicate the pushing and pulling direction of the sliding lifting door body.

[0020] Figure 2 This is a schematic diagram of the upper magnetic sealing body in this utility model. The arrows in the diagram indicate the direction of movement of the upper magnetic sealing body.

[0021] Figure 3 This is a schematic diagram of the outer frame profile in this utility model;

[0022] Figure 4 This is a schematic diagram of the structure of the magnetic sealing strip in this utility model;

[0023] Figure 5 This is a structural schematic diagram of the inner frame profile in this utility model;

[0024] Figure 6 This is a structural schematic diagram of the inner frame profile in this utility model;

[0025] Figure 7 This is a schematic diagram of the structure of the magnetic sealing strip II in this utility model;

[0026] Figure 8 This is a horizontal node diagram of the present invention. In the diagram, the sliding lifting door body is in a closed state, and... Figure 1 The status displayed is consistent with the status shown in the image;

[0027] Figure 9 This is a longitudinal node diagram of the present invention. In the diagram, the sliding lifting door body is in a closed state, and... Figure 1 The status displayed is consistent with the status shown in the image;

[0028] Figure 10 This is a structural schematic diagram of the second specific embodiment. The arrows in the diagram all indicate the direction of movement of the magnetic sealing strip 2.

[0029] Figure 11 This is a structural schematic diagram of the third specific embodiment. The arrows in the diagram all indicate the direction of movement of the magnetic sealing strip two.

[0030] Figure 12 for Figure 9 A magnified structural diagram at point C.

[0031] In the diagram: 1- Sliding lifting door body; 2- Fixed support frame; 3- Upper magnetic seal; 4- Lower magnetic seal; 5- Side magnetic seal; 6- Outer frame profile; 7- Magnetic sealing strip one; 8- Inner frame profile; 9- Magnetic sealing strip two; 10- Fixed window sash;

[0032] 6-1-T-type sealing mounting groove; 6-2-Fixing hole one; 6-3-Counterhead hole one;

[0033] 7-1-sealing strip one; 7-2-magnetic strip one; 7-3-arc-shaped sealing surface two; 7-4-cavity two;

[0034] 8-1-sealing movable groove; 8-2-opening; 8-3-fixed hole two; 8-4-boss hole two;

[0035] 9-1-sealing strip two; 9-2-magnetic strip two; 9-3-arc-shaped sealing surface one; 9-4-cavity one;

[0036] 9-11-movable sealing end; 9-12-attracted sealing end. DETAILED DESCRIPTION

[0037] To make the purpose, technical scheme and advantages of the utility model more clear and obvious, the following will describe the utility model through specific embodiments shown in the drawings. However, it should be understood that these descriptions are only exemplary, and not to limit the scope of the utility model. The structure, proportion, size etc. shown in the drawings of the specification are only used to cooperate with the content disclosed in the specification, to be understood and read by the person skilled in the art, and not to limit the limiting conditions that the utility model can be implemented, so it does not have the substantial meaning of technology, any modification of structure, change of proportion relationship or adjustment of size, as long as it does not affect the effect and purpose that the utility model can produce, should still fall within the range covered by the technical content disclosed by the utility model. In addition, in the following description, the description of the known structure and technology is omitted to avoid unnecessary confusion of the concept of the utility model.

[0038] Here, it also needs to be explained that, in order to avoid the utility model from being obscured by unnecessary details, only the structures and / or processing steps closely related to the scheme according to the utility model are shown in the drawings, and other details not closely related to the utility model are omitted.

[0039] DETAILED DESCRIPTION Figures 1 to 12 As shown, the present embodiment adopts a movable magnetic seal, which can be applied to sealing of different gaps, and improves the sealing performance. The following technical scheme is adopted: a sliding door body 1, a fixed support frame 2, an upper magnetic seal body 3, a lower magnetic seal body 4 and a side magnetic seal body 5 are provided, and a Chinese character square sealing cooperation structure is formed between the upper magnetic seal body 3, the lower magnetic seal body 4 and the side magnetic seal body 5; the sliding door body 1 is arranged in the track in the fixed support frame 2, and the upper magnetic seal body 3, the lower magnetic seal body 4 and the side magnetic seal body 5 are respectively arranged on the upper side and the lower side and the side of the sealing position of the outer side wall of the sliding door body 1 and the sealing position of the fixed support frame 2, and the upper magnetic seal body 3, the lower magnetic seal body 4 and the side magnetic seal body 5 have the same structure. Figure 2As shown, each of the two sealing structures comprises an outer frame profile 6, a magnetic sealing strip one 7, an inner frame profile 8, and a magnetic sealing strip two 9. The magnetic sealing strip one 7 is installed in the outer frame profile 6, and the magnetic sealing strip two 9 is installed in the inner frame profile 8. The magnetic sealing strip one 7 and the magnetic sealing strip two 9 are attracted to each other to seal. The magnetic sealing strip two 9 can move in the inner frame profile 8 to improve the sealing performance.

[0040] The fixed sash 10 is arranged in the fixed support frame 2 in the embodiment, and the connection relationship between the fixed sash 10 and the fixed support frame 2 is the same as the connection relationship between the existing fixed sash and the fixed support frame. The structure of the sliding and lifting door body 1 is the same as the structure of the existing sliding and lifting door.

[0041] In combination Figures 3 to 7 As shown, the magnetic sealing strip one 7 and the magnetic sealing strip two 9 are attracted to each other to seal in the embodiment, which can improve the sealing performance. The magnetic sealing strip two 9 can move in the inner frame profile 8 to seal different gaps. The specific structure is that the outer frame profile 6 is installed on the fixed support frame 2. A T-shaped sealing installation groove 6-1 is formed in the inner side wall of the outer frame profile 6. A fixed hole one 6-2 is formed in the bottom of the T-shaped sealing installation groove 6-1. A counterbore one 6-3 is connected to the outer side of the fixed hole one 6-2. The fixed hole one 6-2 can be used to install the outer frame profile 6. The magnetic sealing strip one 7 is installed in the T-shaped sealing installation groove 6-1, which facilitates the installation of the magnetic sealing strip one 7. In combination Figure 4 As shown, the magnetic sealing strip one 7 comprises a sealing strip body one 7-1 and a magnetic strip one 7-2. The magnetic strip one 7-2 is arranged in the sealing strip body one 7-1. The sealing strip body one 7-1 is a T-shaped sealing strip. The sealing strip body one 7-1 can be installed in the T-shaped sealing installation groove 6-1. In combination Figure 5 As shown, the inner frame profile 8 is installed on the sliding and lifting door body 1. A sealing movable groove 8-1 is formed in the outer side wall of the inner frame profile 8. An opening 8-2 is connected to the outer side of the sealing movable groove 8-1. The sealing movable groove 8-1 and the opening 8-2 form a T-shaped movable groove. The T-shaped movable groove can be used to install the magnetic sealing strip two 9. The magnetic sealing strip two 9 can move in the T-shaped movable groove to seal. A fixed hole two 8-3 is formed in the bottom of the sealing movable groove 8-1. The fixed hole two 8-3 can be used to fix the inner frame profile 8. A counterbore two 8-4 is connected to the outer side of the fixed hole two 8-3. Figure 7 As shown, the magnetic sealing strip two 9 comprises a sealing strip body two 9-1 and a magnetic strip two 9-2. The magnetic strip two 9-2 is arranged in the sealing strip body two 9-1. The sealing strip body two 9-1 can be installed in the T-shaped movable groove.

[0042] As described above, in this specific embodiment, the sealing strip body 9-1 is a movable seal, and its specific structure is as follows: the sealing strip body 9-1 includes a movable sealing end 9-11 and a suction sealing end 9-12; the front end of the movable sealing end 9-11 is integrally connected to the suction sealing end 9-12, and the movable sealing end 9-11 and the suction sealing end 9-12 form a T-shaped sealing strip. The movable sealing end 9-11 can move within the T-shaped movable groove, and the suction sealing end 9-12 can be suction-sealed by the magnetic strip 9-2 and the magnetic sealing strip 7; combined with Figure 6 , Figure 7 As shown, the thickness b of the movable sealing end 9-11 is less than 2-10 cm of the depth a of the movable sealing groove 8-1, and the movable sealing end 9-11 can move within the movable sealing groove 8-1. The thickness d of the sealing strip 9-1 is less than 1-3 cm of the depth c of the T-shaped movable groove.

[0043] The working principle of this specific embodiment is as follows: sealing is achieved through a movable magnetic seal. During use, when the sliding door body 1 needs to be closed, the sliding door body 1 moves, which drives the magnetic sealing strip 2 9 in the inner frame profile 8 to move as well. When the sliding door body 1 is closed, the magnetic sealing strip 2 9 seals with the magnetic sealing strip 1 7 installed in the outer frame profile 6, thus achieving the sealing of the sliding door body 1. When there is a gap between the sliding door body 1 and the fixed support frame 2, the magnetic sealing strip 1 7 remains stationary, while the magnetic sealing strip 2 9 moves in the T-shaped movable groove and moves towards and attracts the magnetic sealing strip 1 7. This can be applied to sealing different gaps, thus improving the sealing performance.

[0044] Specific Implementation Method Two: Combining Figure 10 As shown, this specific embodiment is a further optimization of specific embodiment one. The difference lies in that: both the upper and lower sides of the outer end face of the sealing strip body two 9-1 are provided with protruding arc-shaped sealing surfaces one 9-3, and the interior of the arc-shaped sealing surface one 9-3 is provided with a cavity one 9-4. The protruding arc-shaped sealing surface one 9-3 improves the sealing performance. When the seal is closed, the cavity one 9-4 is compressed, and at this time the arc-shaped sealing surface one 9-3 seals with the magnetic sealing strip one 7. Other unmentioned structures and connection relationships are the same as in specific embodiment one.

[0045] Specific implementation method three: Combining Figure 11As shown, the present embodiment is a further optimization of embodiment one, and differs in that: the outer end surface of the sealing strip 7-1 is provided with protruding arc-shaped sealing surface two 7-3 on the upper and lower sides, and the inner part of the arc-shaped sealing surface two 7-3 is provided with cavity two 7-4, and the sealing performance is improved by the protruding arc-shaped sealing surface two 7-3, and when the suction seal is sealed, the cavity two 7-4 will be extruded, at which time the arc-shaped sealing surface two 7-3 is sealed with the sealing strip two 9-1, and the sealing performance is improved. The structures and connection relationships not mentioned are the same as those of embodiment one.

[0046] Embodiment four: the present embodiment is a combination of embodiment two and embodiment three, which can improve the sealing strength.

[0047] In the specific use process of the utility model, the cooperation of the upper magnetic sealing body 3, the lower magnetic sealing body 4 and the side magnetic sealing body 5 improves the sealing strength of the sliding and lifting door body 1 in the closed state and the sealing connection performance between the three side positions of the sliding and lifting door body 1 and the fixed support frame 2. The sealing connection structure form will not be invalid due to the repeated opening of the sliding and lifting door body 1. It can not only ensure the basic use performance of the lifting door body 1, but also improve the stable sealing effect of the sliding and lifting door body 1 under the dynamic and static switching. It can switch the opening and closing state as needed, realize the uniform sealing connection of the three sides in the circumferential direction from the opening state to the closed state, and the sealing connection relationship in the utility model can also be used in other door and window products with repeated opening and closing.

Claims

1. A multi-sided magnetic sealed aluminum clad wood lift and slide door characterized by: The application relates to a push-pull lifting door body (1), a fixed supporting frame (2), an upper magnetic sealing body (3), a lower magnetic sealing body (4) and a side magnetic sealing body (5). The push-pull lifting door body (1) is arranged in a track in the fixed supporting frame (2), upper and lower sides and a side of a sealing position of an outer wall of the push-pull lifting door body (1) and a sealing position of the fixed supporting frame (2) are respectively provided with the upper magnetic sealing body (3), the lower magnetic sealing body (4) and the side magnetic sealing body (5), the upper magnetic sealing body (3), the lower magnetic sealing body (4) and the side magnetic sealing body (5) are the same in structure and respectively comprise an outer frame profile (6), a magnetic sealing strip one (7), an inner frame profile (8) and a magnetic sealing strip two (9). The magnetic sealing strip one (7) is arranged in the outer frame profile (6), the magnetic sealing strip two (9) is arranged in the inner frame profile (8), and the magnetic sealing strip one (7) and the magnetic sealing strip two (9) are attracted and sealed.

2. A multi-sided magnetically sealed aluminum clad wood lift and slide door according to claim 1, characterized in that: The outer frame profile (6) is arranged on the fixed supporting frame (2), a T-shaped sealing installation groove (6-1) is formed in an inner wall of the outer frame profile (6), a first fixing hole (6-2) is formed in a bottom of the T-shaped sealing installation groove (6-1), and a first counterbore (6-3) is connected to an outer side of the first fixing hole (6-2).

3. A multi-sided magnetic sealed wood-clad aluminum lift and slide door according to claim 1, characterized in that: The magnetic sealing strip one (7) comprises a sealing strip body one (7-1) and a magnetic strip one (7-2), and the magnetic strip one (7-2) is arranged in the sealing strip body one (7-1).

4. A multi-sided magnetically sealed aluminum clad wood lift and slide door according to claim 3, characterized in that: The sealing strip body one (7-1) is a T-shaped sealing strip.

5. A multi-sided magnetically sealed aluminum clad wood lift and slide door according to claim 1, characterized in that: The inner frame profile (8) is arranged on the push-pull lifting door body (1), a sealing movable groove (8-1) is formed in an outer wall of the inner frame profile (8), an opening (8-2) is connected to an outer side of the sealing movable groove (8-1), the sealing movable groove (8-1) and the opening (8-2) form a T-shaped movable groove, a second fixing hole (8-3) is formed in a bottom of the sealing movable groove (8-1), and a second counterbore (8-4) is connected to an outer side of the second fixing hole (8-3).

6. A multi-sided magnetically sealed aluminum clad wood lift and slide door according to claim 1, characterized in that: The magnetic sealing strip two (9) comprises a sealing strip body two (9-1) and a magnetic strip two (9-2), and the magnetic strip two (9-2) is arranged in the sealing strip body two (9-1).

7. A multi-sided magnetically sealed aluminum clad wood lift and slide door according to claim 6, characterized in that: The sealing strip body two (9-1) comprises a movable sealing end (9-11) and an attraction sealing end (9-12), the attraction sealing end (9-12) is integrally connected to a front end of the movable sealing end (9-11), and the movable sealing end (9-11) and the attraction sealing end (9-12) form a T-shaped sealing strip.

8. A multi-sided magnetically sealed aluminum clad wood lift and slide door according to claim 7, characterized in that: The thickness b of the movable sealing end (9-11) is smaller than 2-10 cm of the depth a of the sealing movable groove (8-1), and the thickness d of the sealing strip body two (9-1) is smaller than 1-3 cm of the depth c of the T-shaped movable groove.

9. A multi-sided magnetically sealed aluminum clad wood lift and slide door according to claim 7, characterized in that: Protruding arc-shaped sealing surfaces one (9-3) are arranged on upper and lower sides of an outer end surface of the sealing strip body two (9-1), and cavities one (9-4) are arranged in the arc-shaped sealing surfaces one (9-3).

10. A multi-sided magnetically sealed aluminum clad wood lift and slide door according to claim 3, characterized in that: Protruding arc-shaped sealing surfaces two (7-3) are arranged on upper and lower sides of an outer end surface of the sealing strip body one (7-1), and cavities two (7-4) are arranged in the arc-shaped sealing surfaces two (7-3).