Row type passive window connecting structure

By combining a multi-layered glass window structure with a buffered window frame, the problem of poor sound insulation performance of row-type passive windows is solved, achieving convenient installation and effective buffering of vibration noise, thus improving the sound insulation effect.

CN223689565UActive Publication Date: 2025-12-19CHINA CONSTR EIGHTH BUREAU CONSTR TECH (SHANDONG) CO LTD
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Patent Information

Application Number
CN202422935544.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-12-19
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

The existing row of passive windows uses an integrated aluminum alloy frame structure, which has poor sound insulation performance.

Method used

By combining multi-layered glass window structures, connectors, profile frames, and composite glass, and employing a combined buffer structure consisting of a first aluminum alloy profile, a second aluminum alloy profile, rubber connecting blocks, a first spacer profile, a first buffer block, a rubber buffer block, a second spacer profile, and a second buffer block, the design of the buffer window frame improves sound insulation performance.

Benefits of technology

It enables convenient installation of row-type passive windows, and through the combination of rubber connecting blocks and rubber buffer blocks, it effectively reduces vibration noise and improves sound insulation performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

A row type passive window connecting structure comprises a row type passive window body, the row type passive window body comprises a plurality of multi-layer glass window structures and row devices, the combination of the multi-layer glass window structures, the row devices, section bar frames, combined glass and the like is added, on one hand, the row type passive window can be conveniently installed, and on the other hand, the row type passive window can be conveniently installed. According to the buffering window frame, a first aluminum alloy profile, a second aluminum alloy profile, a rubber connecting block, a first interval profile, a first buffering block, a rubber buffering block, a second interval profile, a second buffering block and the like are combined, so that a combined buffering structure of the rubber connecting block and the rubber buffering block can be arranged between the first aluminum alloy profile and the second aluminum alloy profile; therefore, vibration can be buffered, and the sound insulation performance of the device is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a passive window connecting structure, more exactly is a row passive window connecting structure. BACKGROUND

[0002] At present, there is no better solution for the row passive window, and the present application mainly solves the installation and fixing problems of the row passive window. The window frame of the existing row passive window adopts an integrated aluminum alloy profile structure, and the sound insulation performance is poor. SUMMARY

[0003] The utility model discloses a kind of row passive window connecting structures, can be combined by multi-layer glass window structure, row device, profile frame, combined glass etc., on the one hand, it can facilitate the installation of row passive window, on the other hand, buffer window frame is combined by first aluminum alloy profile, second aluminum alloy profile, rubber link block, first spacing profile, first buffer block, rubber buffer block, second spacing profile, second buffer block etc., so that first aluminum alloy profile and second aluminum alloy profile can have the combined buffer structure of rubber link block and rubber buffer block, so as to buffer vibration, thereby improve the sound insulation performance of the device.

[0004] To achieve the above object, the following technical solutions are used in the utility model:

[0005] A kind of row passive window connecting structure, including row passive window body, row passive window body includes several multi-layer glass window structures and row device, the multi-layer glass window structure includes combined glass and buffer window frame, the buffer window frame includes two sets of profile frames, the profile frame includes first aluminum alloy profile and second aluminum alloy profile, the side of second aluminum alloy profile cooperates with the side of first aluminum alloy profile, first spacing profile, second spacing profile are installed between two profile frames, L-shaped profile is arranged between two profile frames, the side of first aluminum alloy profile is connected with first rubber pad, combined glass is installed between the first rubber pad of two first aluminum alloy profiles, first rubber pad of two first aluminum alloy profiles cooperates and clamps combined glass, row device is installed between adjacent two multi-layer glass window structures, first through hole is formed in the side of second aluminum alloy profile, first self-tapping screw is installed in the inside of first through hole, the head of first self-tapping screw cannot pass through first through hole, and the screw rod of first self-tapping screw can be connected with fixed block screw thread.

[0006] To further achieve the object of the utility model, the following technical solutions can also be used: the side of second aluminum alloy profile is connected with rubber link block, and the side of rubber link block is connected with first aluminum alloy profile.

[0007] Two first spacing profiles are installed between the two first aluminum alloy profiles, a first buffer block is installed between the two first spacing profiles, two first dovetail blocks are connected to two sides of the first spacing profile, a first dovetail groove is formed on one side of the first aluminum alloy profile, the two first dovetail blocks on the two sides of the first spacing profile can be matched with the first dovetail grooves of the two first aluminum alloy profiles, and a cavity is formed in the middle of the first spacing profile.

[0008] Two second spacing profiles are installed between the two second aluminum alloy profiles, a second buffer block is installed between the two second spacing profiles, a third dovetail block is connected to each side of the second spacing profile, a third dovetail groove is formed on one side of the second aluminum alloy profile, and the two third dovetail blocks on the two sides of the second spacing profile are respectively inserted into the third dovetail grooves of the two second aluminum alloy profiles, one side of the second spacing profile is connected with a rubber buffer block, and one side of the rubber buffer block is matched with the first spacing profile.

[0009] The row type passive window body is installed on the combined keel, the combined keel is installed on the outside of the window of the wall body, the combined keel comprises two first L-shaped plates, a second through hole is formed in the first L-shaped plate, an expansion bolt is installed in the second through hole, the head of the expansion bolt cannot pass through the second through hole, the expansion bolt is anchored on the wall body, a third through hole is formed in the first L-shaped plate, a second self-tapping screw is installed in the third through hole, the head of the second self-tapping screw cannot pass through the third through hole, the second self-tapping screw is threadedly connected with the row type passive window body, a protective plate is connected to one side of the first L-shaped plate, weather-resistant glue is arranged between the first L-shaped plate and the protective plate, and a thermal insulation layer is connected to the outside of the first L-shaped plate.

[0010] The utility model discloses a structure that is combined by multilayer glass window structure, row device, sectional material frame and combined glass, which can facilitate the installation of the row type passive window, and the buffer window frame is combined by first aluminum alloy profile, second aluminum alloy profile, rubber link block, first spacing profile, first buffer block, rubber buffer block, second spacing profile and second buffer block, so that the first aluminum alloy profile and the second aluminum alloy profile can have the combined buffer structure of the rubber link block and the rubber buffer block, thereby buffering the vibration and improving the sound insulation performance of the device. BRIEF DESCRIPTION OF DRAWINGS

[0011] The drawings are used to provide further understanding of the utility model and constitute a part of the specification, are used to explain the utility model together with the embodiments of the utility model and do not constitute the limitation to the utility model. In the drawings:

[0012] Fig. 1 It is the structural schematic diagram of the utility model;

[0013] Fig. 2 It is the installation structure schematic diagram of the utility model

[0014] Labeling components: 1 first aluminum alloy profile 2 L-shaped profile 3 first rubber pad 4 glass plate 5 spacer rubber pad 6 second rubber pad 7 first spacer profile 8 first dovetail block 9 first dovetail groove 10 cavity 11 first buffer block 12 rubber adapter block 13 rubber buffer block 14 second dovetail groove 15 second dovetail block 16 second spacer profile 17 second buffer block 18 third dovetail block 19 third dovetail groove 20 fixing block 21 first self-tapping screw 22 first through hole 23 window 24 first L-shaped plate 25 second through hole 26 expansion bolt 27 third through hole 28 second self-tapping screw 29 row passive window body 30 protective plate 31 weather-resistant glue 32 second aluminum alloy profile 33 thermal insulation layer 34 wall body. DETAILED DESCRIPTION

[0015] The preferred embodiments of the utility model are described below in combination with the drawings. Embodiment 1:

[0016] A row passive window connecting structure, as shown in Figs. 1-2 , comprising a row passive window body 29, the row passive window body 29 comprises a plurality of multi-layer glass window structures and a row spacer, the multi-layer glass window structure comprises combined glass and a buffer window frame, the buffer window frame comprises two sets of profile frames, the profile frame comprises a first aluminum alloy profile 1 and a second aluminum alloy profile 32, one side of the second aluminum alloy profile 32 is matched with one side of the first aluminum alloy profile 1, a first spacer profile 7 and a second spacer profile 16 are installed between the two profile frames, an L-shaped profile 2 is arranged between the two profile frames, one side of the first aluminum alloy profile 1 is connected with a first rubber pad 3, combined glass is installed between the first rubber pads 3 of the two first aluminum alloy profiles 1, the first rubber pads 3 of the two first aluminum alloy profiles 1 clamp the combined glass, a row spacer is installed between adjacent two multi-layer glass window structures, a first through hole 22 is formed in one side of the second aluminum alloy profile 32, a first self-tapping screw 21 is installed in the inside of the first through hole 22, the head of the first self-tapping screw 21 cannot pass through the first through hole 22, and the screw rod of the first self-tapping screw 21 can be threadedly connected with a fixing block 20.

[0017] The utility model increases the combination of multi-layer glass window structure, row spacer, profile frame, combined glass and the like, on the one hand, the installation of the row passive window can be facilitated, on the other hand, the buffer window frame is combined by the first aluminum alloy profile 1, the second aluminum alloy profile 32, the rubber adapter block 12, the first spacer profile 7, the first buffer block 11, the rubber buffer block 13, the second spacer profile 16, the second buffer block 17 and the like, so that the first aluminum alloy profile 1 and the second aluminum alloy profile 32 can have the combined buffer structure of the rubber adapter block 12 and the rubber buffer block 13, thereby the vibration can be buffered, and the sound insulation performance of the device is improved.

[0018] The actual sample is made according to the proportions and matching modes of the components in the drawings, and the connection is a common connection mode such as strong adhesive connection, welding, riveting, flange connection, and integral forming type connection, and in actual production, the corresponding connection mode, the thickness and strength of the connection point can be selected without creativity according to the actual connection strength requirement. The thermal insulation layer 33 of the utility model is made of glass fiber polyurethane material, which has heat insulation performance and strength. The both ends of the utility model are fixed by expansion bolts, and the fixation is reliable.

[0019] Example 2

[0020] A row type passive window connecting structure, as shown in Figs. 1-2 The row type passive window body 29 includes a plurality of multi-layer glass window structures and a row connector, the multi-layer glass window structure includes a combination glass and a buffer window frame, the buffer window frame includes two profile frames, the profile frame includes a first aluminum alloy profile 1 and a second aluminum alloy profile 32, one side of the second aluminum alloy profile 32 is matched with one side of the first aluminum alloy profile 1, a first spacing profile 7 and a second spacing profile 16 are installed between the two profile frames, an L-shaped profile 2 is arranged between the two profile frames, a first rubber pad 3 is connected to one side of the first aluminum alloy profile 1, a combination glass is installed between the first rubber pads 3 of the two first aluminum alloy profiles 1, and the first rubber pads 3 of the two first aluminum alloy profiles 1 are matched to clamp the combination glass, a row connector is installed between adjacent two multi-layer glass window structures, a first through hole 22 is formed in one side of the second aluminum alloy profile 32, a first self-tapping screw 21 is installed in the first through hole 22, the head of the first self-tapping screw 21 cannot pass through the first through hole 22, and the screw rod of the first self-tapping screw 21 can be threadedly connected with the fixing block 20. One side of the second aluminum alloy profile 32 is connected with a rubber connecting block 12, one side of the rubber connecting block 12 is connected with the first aluminum alloy profile 1.

[0021] The rubber connecting block 12 of the utility model can avoid the conduction of vibration between the first aluminum alloy profile 1 and the second aluminum alloy profile 32, so as to reduce the noise generated in the use process of the device.

[0022] Example 3

[0023] A row type passive window connecting structure, as shown in Figs. 1-2As shown, including the row passive window body 29, the row passive window body 29 includes several multi-layer glass window structures and the row, the multi-layer glass window structure includes a combination of glass and buffer window frame, the buffer window frame includes two sets of profile frames, the profile frame includes the first aluminum alloy profile 1 and the second aluminum alloy profile 32, one side of the second aluminum alloy profile 32 is matched with one side of the first aluminum alloy profile 1, the first spacing profile 7 and the second spacing profile 16 are installed between the two profile frames, the L-shaped profile 2 is arranged between the two profile frames, the first rubber pad 3 is connected to one side of the first aluminum alloy profile 1, the combination glass is installed between the first rubber pad 3 of the two first aluminum alloy profiles 1, and the combination glass is clamped by the first rubber pad 3 of the two first aluminum alloy profiles 1, the row is installed between the adjacent two multi-layer glass window structures, the first through hole 22 is formed in one side of the second aluminum alloy profile 32, the first self-tapping screw 21 is installed in the first through hole 22, the head of the first self-tapping screw 21 cannot pass through the first through hole 22, and the screw rod of the first self-tapping screw 21 can be threadedly connected with the fixed block 20. The two first spacing profiles 7 are installed between the two first aluminum alloy profiles 1, the first buffer block 11 is installed between the two first spacing profiles 7, one first dovetail block 8 is connected to each side of the first spacing profile 7, the first dovetail groove 9 is formed in one side of the first aluminum alloy profile 1, the first dovetail blocks 8 on the two sides of the first spacing profile 7 can be matched with the first dovetail grooves 9 of the two first aluminum alloy profiles 1 respectively, and the cavity 10 is formed in the middle of the first spacing profile 7.

[0024] The first spacing profile 7 of the utility model is combined with the first buffer block 11, two first spacing profiles 7 are formed to clamp the first buffer block 11 with a certain pressure, so that the vibration of the row passive window body 29 can be buffered, and the sound insulation performance of the device is improved.

[0025] Embodiment 4:

[0026] A row passive window connecting structure, as Figs. 1-2As shown, including the row passive window body 29, the row passive window body 29 includes several multi-layer glass window structures and the row spacer, the multi-layer glass window structure includes the combined glass and the buffer window frame, the buffer window frame includes two sets of profile frames, the profile frame includes the first aluminum alloy profile 1 and the second aluminum alloy profile 32, one side of the second aluminum alloy profile 32 is matched with one side of the first aluminum alloy profile 1, the first spacing profile 7 and the second spacing profile 16 are installed between the two profile frames, the L-shaped profile 2 is arranged between the two profile frames, the first rubber pad 3 is connected to one side of the first aluminum alloy profile 1, the combined glass is installed between the first rubber pad 3 of the two first aluminum alloy profiles 1, and the first rubber pad 3 of the two first aluminum alloy profiles 1 clamps the combined glass, the row spacer is installed between the adjacent two multi-layer glass window structures, the first through hole 22 is formed in one side of the second aluminum alloy profile 32, the first self-tapping screw 21 is installed in the first through hole 22, the head of the first self-tapping screw 21 cannot pass through the first through hole 22, and the screw rod of the first self-tapping screw 21 can be threadedly connected with the fixed block 20.

[0027] The second spacing profile 16 and the second buffer block 17 are combined, two second spacing profiles 16 form a structure for clamping a second buffer block 17 with a certain pressure, thereby buffering the vibration of the row passive window body 29 and improving the sound insulation performance of the device.

[0028] Embodiment 5:

[0029] A row passive window connecting structure, as Figs. 1-2As shown, it comprises a row passive window body 29, the row passive window body 29 comprises a plurality of multi-layer glass window structures and a row device, the multi-layer glass window structure comprises a combined glass and a buffer window frame, the buffer window frame comprises two profile frames, the profile frame comprises a first aluminum alloy profile 1 and a second aluminum alloy profile 32, one side of the second aluminum alloy profile 32 is matched with one side of the first aluminum alloy profile 1, a first spacing profile 7 and a second spacing profile 16 are arranged between the two profile frames, an L-shaped profile 2 is arranged between the two profile frames, a first rubber pad 3 is connected to one side of the first aluminum alloy profile 1, a combined glass is arranged between the first rubber pads 3 of the two first aluminum alloy profiles 1, and the first rubber pads 3 of the two first aluminum alloy profiles 1 clamp the combined glass, a row device is arranged between adjacent two multi-layer glass window structures, a first through hole 22 is formed in one side of the second aluminum alloy profile 32, a first self-tapping screw 21 is arranged in the first through hole 22, the head of the first self-tapping screw 21 cannot pass through the first through hole 22, and the screw rod of the first self-tapping screw 21 can be threadedly connected with the fixed block 20. The row passive window body 29 is arranged on a combined batten, the combined batten is arranged outside a window 23 of a wall body 34, the combined batten comprises two first L-shaped plates 24, a second through hole 25 is formed in the first L-shaped plate 24, an expansion bolt 26 is arranged in the second through hole 25, the head of the expansion bolt 26 cannot pass through the second through hole 25, the expansion bolt 26 is anchored on the wall body 34, a third through hole 27 is formed in the first L-shaped plate 24, a second self-tapping screw 28 is arranged in the third through hole 27, the head of the second self-tapping screw 28 cannot pass through the third through hole 27, and the second self-tapping screw 28 is threadedly connected with the row passive window body 29, a protective plate 30 is connected to one side of the first L-shaped plate 24, weather-resistant glue 31 is arranged between the first L-shaped plate 24 and the protective plate 30, and a thermal insulation layer 33 is connected to the outside of the first L-shaped plate 24.

[0030] The combined batten can conveniently fix the row passive window body 29. The protective plate 30 and the weather-resistant glue 31 can improve the waterproof performance of the device.

[0031] The preferred embodiments of the present application are described above, but the present application is not limited to the above.

Claims

1. A connecting structure for a series of passive windows, characterized by: The application relates to a row of passive window bodies (29) comprising a plurality of multi-layer glass window structures and a row spacer, the multi-layer glass window structure comprises combined glass and a buffer window frame, the buffer window frame comprises two sets of profile frames, the profile frames comprise a first aluminum alloy profile (1) and a second aluminum alloy profile (32), one side of the second aluminum alloy profile (32) is matched with one side of the first aluminum alloy profile (1), a first spacing profile (7) and a second spacing profile (16) are arranged between the two profile frames, an L-shaped profile (2) is arranged between the two profile frames, one side of the first aluminum alloy profile (1) is connected with a first rubber pad (3), the combined glass is arranged between the first rubber pads (3) of the two first aluminum alloy profiles (1), the first rubber pads (3) of the two first aluminum alloy profiles (1) match to clamp the combined glass, the row spacer is arranged between the adjacent two multi-layer glass window structures, a first through hole (22) is formed in one side of the second aluminum alloy profile (32), a first self-tapping screw (21) is arranged in the first through hole (22), the head of the first self-tapping screw (21) cannot pass through the first through hole (22), and the screw rod of the first self-tapping screw (21) can be threadedly connected with a fixing block (20).

2. A connected pair of passive window connection structure according to claim 1, characterized in that: One side of the second aluminum alloy profile (32) is connected with a rubber connecting block (12), and one side of the rubber connecting block (12) is connected with the first aluminum alloy profile (1).

3. A connected pair of passive window connection structure according to claim 1, characterized in that: Two first spacing profiles (7) are arranged between the two first aluminum alloy profiles (1), a first buffer block (11) is arranged between the two first spacing profiles (7), one first dovetail block (8) is connected to each side of the first spacing profile (7), a first dovetail groove (9) is formed in one side of the first aluminum alloy profile (1), the first dovetail blocks (8) on the two sides of the first spacing profile (7) can be matched with the first dovetail grooves (9) of the two first aluminum alloy profiles (1) respectively, and a cavity (10) is formed in the middle of the first spacing profile (7).

4. The connected pair of passive windows of claim 1, wherein: Two second spacing profiles (16) are arranged between the two second aluminum alloy profiles (32), a second buffer block (17) is arranged between the two second spacing profiles (16), one third dovetail block (18) is connected to each side of the second spacing profile (16), a third dovetail groove (19) is formed in one side of the second aluminum alloy profile (32), the two third dovetail blocks (18) on the two sides of the second spacing profile (16) are respectively inserted into the third dovetail grooves (19) of the two second aluminum alloy profiles (32) in a matched mode, a rubber buffer block (13) is connected to one side of the second spacing profile (16), and one side of the rubber buffer block (13) is matched with the first spacing profile (7).

5. A connected pair of passive window connection structure according to claim 1, wherein: The said row passive window body (29) is installed on the combined keel, the combined keel is installed on the window (23) outside of the wall body (34), the combined keel includes two first L-shaped plates (24), the second through hole (25) is set up on the first L-shaped plate (24), the inside of the second through hole (25) is installed expansion bolt (26), the head of expansion bolt (26) cannot pass through the second through hole (25), expansion bolt (26) is anchored on the wall body (34), the third through hole (27) is set up on the first L-shaped plate (24), the inside of the third through hole (27) is installed second self tapping screw (28), the head of second self tapping screw (28) cannot pass through the third through hole (27), second self tapping screw (28) is threadedly connected row passive window body (29), one side of first L-shaped plate (24) is connected with the protective plate (30), weatherproof adhesive (31) is arranged between first L-shaped plate (24) and protective plate (30), the outside of first L-shaped plate (24) is connected with the thermal insulation layer (33).