Aluminum alloy ultra-low energy passive window

CN224621397UActive Publication Date: 2026-08-11WUHU CONCH PROFILES AND SCIENCE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-24
Publication Date
2026-08-11

AI Technical Summary

Benefits of technology

[0020]本实用新型将上窗框、窗梃、窗扇和下窗框尺寸加宽,并选用 64mm 的进口高强度尼龙隔热条复合,提升型材保温性能;上窗框、窗梃、窗扇和下窗框的隔热条之间填充高密度聚乙烯保温隔热块,压条内侧和玻璃四周分别添加高密度聚乙烯保温隔热块,提升整窗保温性能;中间等压胶条采用汽车级 EPDM 微发泡胶条,提高保温密封性能,玻璃两侧的侧胶条采用加长型胶条,增加保温密封性能;相比传统铝合金门窗,超低能耗被动窗拥有更好的保温节能效果,满足被动式建筑要求,达到减碳降碳的目的。

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Abstract

This utility model relates to the field of window technology, specifically to an aluminum alloy ultra-low energy consumption passive window, comprising an upper window frame, a stile, a window sash, and a lower window frame; a first glass pane is provided between the upper window frame and the stile; the stile is connected to the window sash; a second glass pane is provided on the window sash; the window sash is connected to the lower window frame; a first thermal insulation structure is provided on the upper window frame; a second thermal insulation structure is provided between the stile and the window sash; and a third thermal insulation structure is provided between the window sash and the lower window frame. This utility model widens the dimensions of the upper window frame, stile, window sash, and lower window frame, and uses 64mm imported high-strength nylon thermal insulation strips to improve the thermal insulation performance of the profiles; high-density polyethylene thermal insulation blocks are filled between the thermal insulation strips of the upper window frame, stile, window sash, and lower window frame, and high-density polyethylene thermal insulation blocks are added to the inside of the strips and around the glass to improve the overall window insulation performance.
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Description

Technical Field

[0001] This utility model relates to the field of window technology, specifically to an aluminum alloy ultra-low energy consumption passive window. Background Technology

[0002] Most existing aluminum alloy doors and windows have poor thermal insulation performance and cannot meet the application requirements of ultra-low energy passive building projects.

[0003] The applicant discovered through a search that Chinese patent document with application number 201710030917.X, published on May 10, 2017, discloses a novel window, including a window frame, a movable window, and a rainproof window. The lower frame of the window frame contains a motor, a worm gear, and two bearings. The two ends of the worm gear are fixed to the inner rings of the bearings, and a driven gear is located in the middle of the worm gear. The driving gear is fixed to the drive shaft of the motor. A motor control switch is located on the lower frame of the window frame. The movable window consists of two hinged window panels that can fold along the central hinge. A protrusion is fixed at the top of the hinge. Lower sliders are located at both ends of the lower frame of the movable window, rotatably connected to the movable window. A threaded groove is located below the lower slider to engage with the worm gear. The rainproof window is located on the outer side of the upper frame of the window frame and hinged to the window frame. A vertical groove is located in the middle of the lower part of the rainproof window, and a protrusion engages with the groove. This device also fails to solve the aforementioned technical problem.

[0004] Therefore, in order to improve or solve at least one of the above problems, it is necessary to provide an aluminum alloy ultra-low energy consumption passive window that can improve thermal insulation performance. Utility Model Content

[0005] The purpose of this invention is to provide an aluminum alloy ultra-low energy consumption passive window that can improve thermal insulation performance.

[0006] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: an aluminum alloy ultra-low energy consumption passive window, including an upper window frame, a window stile, a window sash, and a lower window frame; a first glass is provided between the upper window frame and the window stile; the window stile is connected to the window sash; a second glass is provided on the window sash; the window sash is connected to the lower window frame; a first thermal insulation structure is provided on the upper window frame; a second thermal insulation structure is provided between the window stile and the window sash; and a third thermal insulation structure is provided between the window sash and the lower window frame.

[0007] The upper window frame is provided with an upper window frame insulation cavity; the upper window frame insulation cavity is provided with a first upper window frame heat insulation strip and a second upper window frame heat insulation strip; the first insulation structure includes a first upper window frame heat insulation filling block; the first upper window frame heat insulation filling block is disposed between the first upper window frame heat insulation strip and the second upper window frame heat insulation strip.

[0008] The second upper window frame insulation strip is provided on the side away from the first upper window frame insulation filling block. The end of the first glass abuts against the second upper window frame insulation filling block. The upper window frame is provided with a first pressure strip. A first glass side adhesive strip is provided between the first pressure strip and the first glass. A second glass side adhesive strip is provided between the first glass and the upper window frame.

[0009] The window stile is provided with a window stile insulation cavity; the window stile insulation cavity is provided with a first window stile thermal insulation strip and a second window stile thermal insulation strip; the window sash includes an upper window stile profile; the upper window stile profile is provided with an upper window stile insulation cavity; the upper window stile insulation cavity is provided with a first upper window stile thermal insulation strip and a second upper window stile thermal insulation strip; the second insulation structure includes a first window stile insulation filling block and a first upper window stile insulation filling block; the first window stile insulation filling block is located between the first window stile thermal insulation strip and the second window stile thermal insulation strip; the first upper window stile insulation filling block is located between the first upper window stile thermal insulation strip and the second upper window stile thermal insulation strip;

[0010] The second window sash thermal insulation strip has an upper window sash pressure-equalizing adhesive strip on one side; the upper window sash pressure-equalizing adhesive strip overlaps with the first upper window sash thermal insulation strip.

[0011] A second window stile insulation block is provided on the side of the first window stile insulation strip away from the first window stile insulation block; the first glass is pressed against the second window stile insulation block; a second pressure strip is provided on the window stile; a third glass side adhesive strip is provided between the second pressure strip and the first glass; and a fourth glass side adhesive strip is provided between the first glass and the window stile.

[0012] The second upper window sash thermal insulation strip is provided on the side away from the first upper window sash thermal insulation filling block; the second glass is pressed against the second upper window sash thermal insulation filling block; the upper window sash profile is provided with a third pressure strip; the third pressure strip is provided with a first glass thermal insulation filling block; a first window sash side adhesive strip is provided between the third pressure strip and the second glass; a second window sash side adhesive strip is provided between the second glass and the upper window sash profile.

[0013] The window sash includes a lower window sash profile; the lower window sash profile has a lower window sash insulation cavity; the lower window sash insulation cavity has a first lower window sash thermal insulation strip and a second lower window sash thermal insulation strip; the lower window frame has a lower window frame insulation cavity; the lower window frame insulation cavity has a first lower window frame thermal insulation strip and a second lower window frame thermal insulation strip; the third insulation structure includes a first lower window sash insulation filler block and a lower window frame insulation filler block; the first lower window sash insulation filler block is disposed between the first lower window sash thermal insulation strip and the second lower window sash thermal insulation strip; the lower window frame insulation filler block is disposed between the first lower window frame thermal insulation strip and the second lower window frame thermal insulation strip;

[0014] The first lower window frame thermal insulation strip is provided with a lower window equal pressure strip on one side; the lower window equal pressure strip is pressed against the second lower window sash thermal insulation strip.

[0015] A second lower window sash insulation block is provided on the side of the first lower window sash insulation strip away from the first lower window sash insulation block; the second glass abuts against the second lower window sash insulation block; a fourth pressure strip is provided on the lower window sash profile; a second glass insulation block is provided in the fourth pressure strip; a third window sash side adhesive strip is provided between the fourth pressure strip and the second glass; and a fourth window sash side adhesive strip is provided between the second glass and the lower window sash profile.

[0016] The first upper window frame thermal insulation strip, the second upper window frame thermal insulation strip, the first window stile thermal insulation strip, the second window stile thermal insulation strip, the first upper window sash thermal insulation strip, the second upper window sash thermal insulation strip, the first lower window sash thermal insulation strip, the second lower window sash thermal insulation strip, the first lower window frame thermal insulation strip, and the second lower window frame thermal insulation strip are all high-strength nylon thermal insulation strips; the first upper window frame thermal insulation filling block, the second upper window frame thermal insulation filling block, the first window stile thermal insulation filling block, the second window stile thermal insulation filling block, the first glass thermal insulation filling block, the first lower window sash thermal insulation filling block, the second lower window sash thermal insulation filling block, the second glass thermal insulation filling block, the lower window frame thermal insulation filling block, and the lower window sash heat-sealing strip are all high-density polyethylene thermal insulation blocks;

[0017] The first glass side sealing strip, the second glass side sealing strip, the third glass side sealing strip, the fourth glass side sealing strip, the first window sash side sealing strip, the second window sash side sealing strip, the third window sash side sealing strip and the fourth window sash side sealing strip are all extended sealing strips;

[0018] Both the upper and lower window sash pressure strips are EPDM micro-foamed strips.

[0019] The beneficial effects of this utility model are as follows:

[0020] This utility model widens the dimensions of the upper window frame, stile, sash, and lower window frame, and uses imported high-strength nylon thermal insulation strips (64mm) to improve the thermal insulation performance of the profile. High-density polyethylene thermal insulation blocks are filled between the thermal insulation strips of the upper window frame, stile, sash, and lower window frame. High-density polyethylene thermal insulation blocks are also added to the inside of the pressure strips and around the glass to improve the overall window insulation performance. The intermediate pressure-equalizing sealing strip uses automotive-grade EPDM micro-foamed sealing strips to improve thermal insulation and sealing performance. Extended sealing strips are used on both sides of the glass to further enhance thermal insulation and sealing performance. Compared to traditional aluminum alloy doors and windows, the ultra-low energy passive window has better thermal insulation and energy-saving effects, meeting the requirements of passive buildings and achieving the goal of carbon reduction. Attached Figure Description

[0021] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, wherein:

[0022] Figure 1 is a schematic diagram of the structure of this utility model;

[0023] Figure 2 is a magnified view of part A in Figure 1;

[0024] Figure 3 is a magnified view of part B in Figure 1;

[0025] Figure 4 is a magnified view of part C in Figure 1;

[0026] The markings in the above figures are all:

[0027] 1. Upper window frame,

[0028] 2. Window stiles,

[0029] 3. Window sash,

[0030] 4. Lower window frame,

[0031] 5. First glass,

[0032] 6. Second glass,

[0033] 7. Upper window frame insulation cavity; 701. First upper window frame thermal insulation strip; 702. Second upper window frame thermal insulation strip; 703. First upper window frame insulation filler block; 704. Second upper window frame insulation filler block; 705. First pressure strip; 706. First glass side sealing strip; 707. Second glass side sealing strip.

[0034] 8. Window stile insulation cavity; 801. First window stile thermal insulation strip; 802. Second window stile thermal insulation strip; 803. First window stile insulation filler block; 804. Upper window sash sealing strip; 805. Second window stile insulation filler block; 806. Second sealing strip; 807. Third glass side sealing strip; 808. Fourth glass side sealing strip.

[0035] 9. Upper window sash profile; 901. Upper window sash insulation cavity; 902. First upper window sash thermal break strip; 903. Second upper window sash thermal break strip; 904. First upper window sash insulation filler block; 905. Second upper window sash insulation filler block; 906. Third pressure strip; 907. First glass insulation filler block; 908. First window sash side sealing strip; 909. Second window sash side sealing strip.

[0036] 10. Lower window sash profile; 101. Lower window sash insulation cavity; 102. First lower window sash thermal break strip; 103. Second lower window sash thermal break strip; 104. First lower window sash insulation filler block; 105. Second lower window sash insulation filler block; 106. Fourth pressure strip; 107. Second glass insulation filler block; 108. Third window sash side sealing strip; 109. Fourth window sash side sealing strip.

[0037] 11. Lower window frame insulation cavity; 111. First lower window frame thermal insulation strip; 112. Second lower window frame thermal insulation strip; 113. Lower window frame insulation filler block; 114. Lower sash window sealant strip. Detailed Implementation

[0038] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings. The purpose is to help those skilled in the art to have a more complete, accurate and in-depth understanding of the inventive concept and technical solution of this utility model, and to facilitate its implementation.

[0039] The aluminum alloy ultra-low energy passive window shown in Figure 1-4 includes an upper window frame 1, a stile 2, a window sash 3, and a lower window frame 4; a first glass 5 is provided between the upper window frame 1 and the stile 2; the stile 2 is connected to the window sash 3; a second glass 6 is provided on the window sash 3; the window sash 3 is connected to the lower window frame 4; a first thermal insulation structure is provided on the upper window frame 1; a second thermal insulation structure is provided between the stile 2 and the window sash 3; and a third thermal insulation structure is provided between the window sash 3 and the lower window frame 4.

[0040] This utility model widens the dimensions of the upper window frame 1, window stile 2, window sash 3, and lower window frame 4, and uses 64mm imported high-strength nylon thermal insulation strips to improve the thermal insulation performance of the profile. High-density polyethylene thermal insulation blocks are filled between the thermal insulation strips of the upper window frame 1, window stile 2, window sash 3, and lower window frame 4. High-density polyethylene thermal insulation blocks are added to the inside of the pressure strip and around the glass to improve the overall thermal insulation performance of the window. The middle equal pressure sealing strip uses automotive-grade EPDM (Ethylene-Propylene-Diene Monomer) micro-foamed sealing strips to improve thermal insulation and sealing performance. The side sealing strips on both sides of the glass use extended sealing strips to increase thermal insulation and sealing performance. Compared with traditional aluminum alloy doors and windows, ultra-low energy passive windows have better thermal insulation and energy-saving effects, meet the requirements of passive buildings, and achieve the goal of carbon reduction.

[0041] The upper window frame 1 is provided with an upper window frame insulation cavity 7; the upper window frame insulation cavity 7 is provided with a first upper window frame insulation strip 701 and a second upper window frame insulation strip 702; the first insulation structure includes a first upper window frame insulation filling block 703; the first upper window frame insulation filling block 703 is located between the first upper window frame insulation strip 701 and the second upper window frame insulation strip 702.

[0042] The upper window frame insulation cavity 7 set in the upper window frame 1 effectively reduces heat conduction and improves the overall insulation performance by forming a sealed space; the first upper window frame insulation strip 701 and the second upper window frame insulation strip 702 block the thermal bridging effect of the upper window frame 1, reduce heat transfer, and play an excellent role in heat insulation; the first upper window frame insulation filling block 703 fills between the first upper window frame insulation strip 701 and the second upper window frame insulation strip 702, further enhancing the heat insulation effect of the upper window frame insulation cavity 7.

[0043] The second upper window frame insulation strip 702 is provided with a second upper window frame insulation filling block 704 on the side away from the first upper window frame insulation filling block 703; the end of the first glass 5 is pressed against the second upper window frame insulation filling block 704; a first pressure strip 705 is provided on the upper window frame 1; a first glass side adhesive strip 706 is provided between the first pressure strip 705 and the first glass 5; a second glass side adhesive strip 707 is provided between the first glass 5 and the upper window frame 1.

[0044] The second upper window frame insulation filler block 704 is located on the side of the second upper window frame insulation strip 702 away from the first upper window frame insulation filler block 703, further enhancing the insulation performance, filling gaps to reduce heat loss, and providing buffer support for the first glass 5. The end of the first glass 5 is pressed against the second upper window frame insulation filler block 704, making the first glass 5 installed firmly and sealed, reducing heat conduction. The first pressure strip 705 fixes the first glass 5 to the upper window frame 1 through a fastening action, ensuring the reliability of the glass installation. The first glass side sealing strip 706 is located between the first pressure strip 705 and the first glass 5, which can improve the thermal insulation performance of the profile. The second glass side sealing strip 707 is located between the first glass 5 and the upper window frame 1, further improving the sealing performance, reducing air infiltration, enhancing the overall thermal insulation and sound insulation effect of the window, and relieving the stress between the first glass 5 and the upper window frame 1, extending the service life.

[0045] The window stile 2 is provided with a window stile insulation cavity 8; the window stile insulation cavity 8 is provided with a first window stile thermal insulation strip 801 and a second window stile thermal insulation strip 802; the window sash 3 includes an upper window sash profile 9; the upper window sash profile 9 is provided with an upper window sash insulation cavity 901; the upper window sash insulation cavity 901 is provided with a first upper window sash thermal insulation strip 902 and a second upper window sash thermal insulation strip 903; the second insulation structure includes a first window stile insulation filling block 803 and a first upper window sash insulation filling block 904; the first window stile insulation filling block 803 is located between the first window stile thermal insulation strip 801 and the second window stile thermal insulation strip 802;

[0046] The first upper window sash insulation filler block 904 is located between the first upper window sash insulation strip 902 and the second upper window sash insulation strip 903;

[0047] The second window sash thermal insulation strip 802 has an upper window sash pressure-equalizing adhesive strip 804 on one side; the upper window sash pressure-equalizing adhesive strip 804 overlaps with the first upper window sash thermal insulation strip 902.

[0048] The insulation cavity 8 of the mullion and the insulation cavity 901 of the upper window sash of the upper window sash profile 9 form a closed space to reduce air convection and heat transfer. The first mullion thermal insulation strip 801, the second mullion thermal insulation strip 802, the first upper window sash thermal insulation strip 902, and the second upper window sash thermal insulation strip 903 effectively block the thermal bridge formed by the mullion 2 and the upper window sash profile 9, significantly improving the thermal insulation performance. The first mullion insulation filling block 803 and the first upper window sash insulation filling block 904 are respectively filled between the thermal insulation strips to further enhance the thermal insulation effect and improve the structural stability. The pressure-equalizing adhesive strip 804 on one side of the second mullion thermal insulation strip 802 overlaps with the first upper window sash thermal insulation strip 902, which can not only balance the internal and external pressure and prevent rainwater backflow, but also effectively seal the gaps, reduce air infiltration, improve the thermal insulation effect, and play multiple roles of sound insulation, dust prevention, and waterproofing, ensuring that the window achieves the goal of ultra-low energy consumption.

[0049] A second window stile insulation block 805 is provided on the side of the first window stile insulation block 803 away from the first window stile insulation block 803; the first glass 5 is pressed against the second window stile insulation block 805; a second pressure strip 806 is provided on the window stile 2; a third glass side sealing strip 807 is provided between the second pressure strip 806 and the first glass 5; a fourth glass side sealing strip 808 is provided between the first glass 5 and the window stile 2.

[0050] The second mullion insulation filler block 805 is located on the side of the first mullion insulation strip 801 away from the first mullion insulation filler block 803, further filling the gaps, reducing heat loss, and enhancing the insulation performance of the mullion 2, while providing cushioning and support for the first glass 5; the first glass 5 is pressed against the second mullion insulation filler block 805, making the glass installation stable and ensuring airtightness; the second pressure strip 806 firmly fixes the first glass 5 to the mullion 2, improving the reliability of the glass installation; the third glass side sealing strip 807 is located between the second pressure strip 806 and the first glass 5, which can effectively improve the insulation effect and prevent external moisture and dust from entering; the fourth glass side sealing strip 808...

[0051] Located between the first glass 5 and the window stile 2, it further enhances the sealing effect, reduces air infiltration, and improves the window's thermal insulation and sound insulation performance. At the same time, it relieves the stress between the glass and the window stile 2 and extends the window's service life.

[0052] The second upper window sash thermal insulation strip 903 is located away from the first upper window sash thermal insulation filling block 904 and has a second upper window sash thermal insulation filling block 905; the second glass 6 is pressed against the second upper window sash thermal insulation filling block 905; the upper window sash profile 9 is provided with a third pressure strip 906; the third pressure strip 906 contains a first glass thermal insulation filling block 907; the third pressure strip 906 and the second glass 6 are provided with a first window sash side sealing strip 908; the second glass 6 and the upper window sash profile 909 are provided with a second window sash side sealing strip 909.

[0053] The second upper window sash insulation filler block 905 is located on the side of the second upper window sash insulation strip 903 away from the first upper window sash insulation filler block 904, further filling the gaps, effectively reducing heat transfer, improving the insulation performance of the window sash 3, and providing stable support and cushioning for the second glass 6; the second glass 6 is pressed against the second upper window sash insulation filler block 905 to ensure stable glass installation and good sealing; the third pressure strip 906 firmly fixes the second glass 6 to the upper window sash profile 9, enhancing the overall structural reliability; the first glass insulation filler block 907 is placed in the third pressure strip 906 to further enhance the insulation effect; the first window sash side sealing strip 908 is located between the third pressure strip 906 and the second glass 6, effectively improving the insulation performance; the second window sash side sealing strip 909 is located between the second glass 6 and the upper window sash profile 9, further strengthening the sealing performance, reducing air infiltration, improving the window's thermal insulation and sound insulation effects, while relieving stress between the glass and the window sash 3, and extending the window's service life.

[0054] Window sash 3 includes a lower window sash profile 10; the lower window sash profile 10 has a lower window sash insulation cavity 101; the lower window sash insulation cavity 101 has a first lower window sash thermal insulation strip 102 and a second lower window sash thermal insulation strip 103; the lower window frame 4 has a lower window frame insulation cavity 11; the lower window frame insulation cavity 11 has a first lower window frame thermal insulation strip 111 and a second lower window frame thermal insulation strip 112; the third insulation structure includes a first lower window sash insulation filling block 104 and a lower window frame insulation filling block 113; the first lower window sash insulation filling block 104 is located between the first lower window sash thermal insulation strip 102 and the second lower window sash thermal insulation strip 103; the lower window frame insulation filling block 113 is located between the first lower window frame thermal insulation strip 111 and the second lower window frame thermal insulation strip 112.

[0055] The first lower window frame thermal insulation strip 111 has a lower sash window equal pressure sealing strip 114 on one side; the lower sash window equal pressure sealing strip 114 is pressed against the second lower window sash thermal insulation strip 103.

[0056] The lower window sash insulation cavity 101 of the lower window sash profile 10 and the lower window frame insulation cavity 11 of the lower window frame 4 reduce air convection and significantly reduce heat transfer by enclosing the space. The first lower window sash thermal insulation strip 102, the second lower window sash thermal insulation strip 103, the first lower window frame thermal insulation strip 111, and the second lower window frame thermal insulation strip 112 effectively block metal thermal bridges and greatly improve thermal insulation performance. The first lower window sash insulation filling block 104 and the lower window frame insulation filling block 113 are respectively filled between the corresponding thermal insulation strips to further enhance the thermal insulation effect and improve structural stability. The lower window sash pressure equalization strip 114 on one side of the first lower window frame thermal insulation strip 111 is pressed against the second lower window sash thermal insulation strip 103, which can not only balance the internal and external pressure and prevent rainwater backflow, but also effectively seal the gaps, reduce air infiltration, and achieve multiple functions such as sound insulation, dust prevention, and waterproofing.

[0057] A second lower window sash insulation filler block 105 is provided on the side of the first lower window sash insulation filler block 104 away from the first lower window sash insulation filler block 104; the second glass 6 is pressed against the second lower window sash insulation filler block 105; a fourth pressure strip 106 is provided on the lower window sash profile 10; a second glass insulation filler block 107 is provided in the fourth pressure strip 106; a third window sash side sealing strip 108 is provided between the fourth pressure strip 106 and the second glass 6; a fourth window sash side sealing strip 109 is provided between the second glass 6 and the lower window sash profile 10.

[0058] The second lower window sash insulation filler block 105 is located on the side of the first lower window sash insulation strip 102 away from the first lower window sash insulation filler block 104, further filling the space, effectively reducing heat conduction, enhancing the insulation performance of the bottom of the window sash 3, and providing buffer support for the second glass 6 to prevent direct damage to the glass; the second glass 6 is pressed against the second lower window sash insulation filler block 105 to ensure that the glass is installed firmly and has good sealing performance, preventing heat loss through gaps; the fourth pressure strip 106 firmly fixes the second glass 6 to the lower window sash profile 10, enhancing the overall structural strength and stability of the window; the second glass insulation filler block 107 is placed in the fourth pressure strip 106 to further improve the insulation effect and reduce heat transfer; the third window sash side sealing strip 108 is located between the fourth pressure strip 106 and the second glass 6, playing a role in sealing and waterproofing, shock absorption and noise reduction, and isolating external rainwater, dust and noise; the fourth window sash side sealing strip 109 is located between the second glass 6 and the lower window sash profile 10. The sealing performance is further enhanced, air infiltration is reduced, the heat insulation and sound insulation of the window are improved, and the stress between the glass and the window sash is relieved, thus extending the service life of the window.

[0059] The first upper window frame thermal insulation strip 701, the second upper window frame thermal insulation strip 702, the first window stile thermal insulation strip 801, the second window stile thermal insulation strip 802, the first upper window sash thermal insulation strip 902, the second upper window sash thermal insulation strip 903, the first lower window sash thermal insulation strip 102, the second lower window sash thermal insulation strip 103, the first lower window frame thermal insulation strip 111, and the second lower window frame thermal insulation strip 112 are all high-strength nylon thermal insulation strips;

[0060] The first upper window frame insulation filling block 703, the second upper window frame insulation filling block 704, the first window stile insulation filling block 803, the second window stile insulation filling block 805, the first upper window sash insulation filling block 904, the second upper window sash insulation filling block 905, the first glass insulation filling block 907, the first lower window sash insulation filling block 104, the second lower window sash insulation filling block 105, the second glass insulation filling block 107, the lower window frame insulation filling block 113, and the lower window sash pressure strip 114 are all high-density polyethylene thermal insulation blocks;

[0061] The first glass side sealing strip 706, the second glass side sealing strip 707, the third glass side sealing strip 807, the fourth glass side sealing strip 808, the first window sash side sealing strip 908, the second window sash side sealing strip 909, the third window sash side sealing strip 108 and the fourth window sash side sealing strip 109 are all extended sealing strips;

[0062] The pressure-equalizing sealing strips 804 for the upper window sash and 114 for the lower window sash are both EPDM micro-foamed sealing strips.

[0063] The specific workflow of this utility model is as follows:

[0064] This utility model widens the dimensions of the upper window frame 1, window stile 2, window sash 3, and lower window frame 4, and uses imported high-strength nylon thermal insulation strips of 64mm to improve the thermal insulation performance of the profile. High-density polyethylene thermal insulation blocks are filled between the thermal insulation strips of the upper window frame 1, window stile 2, window sash 3, and lower window frame 4. High-density polyethylene thermal insulation blocks are added to the inside of the pressure strip and around the glass to improve the overall thermal insulation performance of the window. The middle equal pressure sealing strip uses automotive-grade EPDM micro-foamed sealing strips to improve thermal insulation and sealing performance. The side sealing strips on both sides of the glass use extended sealing strips to increase thermal insulation and sealing performance. Compared with traditional aluminum alloy doors and windows, ultra-low energy passive windows have better thermal insulation and energy-saving effects, meet the requirements of passive buildings, and achieve the goal of carbon reduction.

[0065] The present invention has been described above by way of example with reference to the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described manner. Any non-substantial improvements made using the inventive concept and technical solution of the present invention; or the direct application of the inventive concept and technical solution to other situations without modification, are all within the protection scope of the present invention.

Claims

1. A passive aluminum alloy window with ultra-low energy consumption, characterized in that: It includes an upper window frame (1), a window stile (2), a window sash (3), and a lower window frame (4); a first glass (5) is provided between the upper window frame (1) and the window stile (2); the window stile (2) is connected to the window sash (3); a second glass (6) is provided on the window sash (3); the window sash (3) is connected to the lower window frame (4); a first thermal insulation structure is provided on the upper window frame (1); a second thermal insulation structure is provided between the window stile (2) and the window sash (3); and a third thermal insulation structure is provided between the window sash (3) and the lower window frame (4).

2. The aluminum alloy ultra-low energy consumption passive window according to claim 1, characterized in that: The upper window frame (1) is provided with an upper window frame insulation cavity (7); the upper window frame insulation cavity (7) is provided with a first upper window frame insulation strip (701) and a second upper window frame insulation strip (702); the first insulation structure includes a first upper window frame insulation filling block (703); the first upper window frame insulation filling block (703) is located between the first upper window frame insulation strip (701) and the second upper window frame insulation strip (702).

3. The aluminum alloy ultra-low energy consumption passive window according to claim 2, characterized in that: The second upper window frame insulation strip (702) is provided with a second upper window frame insulation filling block (704) on the side away from the first upper window frame insulation filling block (703); the end of the first glass (5) is pressed against the second upper window frame insulation filling block (704); a first pressure strip (705) is provided on the upper window frame (1); a first glass side adhesive strip (706) is provided between the first pressure strip (705) and the first glass (5); a second glass side adhesive strip (707) is provided between the first glass (5) and the upper window frame (1).

4. The aluminum alloy ultra-low energy consumption passive window according to claim 3, characterized in that: The window stile (2) is provided with a window stile insulation cavity (8); the window stile insulation cavity (8) is provided with a first window stile insulation strip (801) and a second window stile insulation strip (802); the window sash (3) includes an upper window sash profile (9); the upper window sash profile (9) is provided with an upper window sash insulation cavity (901); the upper window sash insulation cavity (901) is provided with a first upper window sash insulation strip (902) and a second upper window sash insulation strip (902) 3); The second thermal insulation structure includes a first window stile thermal insulation filling block (803) and a first upper window sash thermal insulation filling block (904); the first window stile thermal insulation filling block (803) is disposed between the first window stile thermal insulation strip (801) and the second window stile thermal insulation strip (802); the first upper window sash thermal insulation filling block (904) is disposed between the first upper window sash thermal insulation strip (902) and the second upper window sash thermal insulation strip (903); The second window sash thermal insulation strip (802) has an upper window sash pressure equalization strip (804) on one side; the upper window sash pressure equalization strip (804) overlaps with the first upper window sash thermal insulation strip (902).

5. The aluminum alloy ultra-low energy consumption passive window according to claim 4, characterized in that: A second window stile insulation block (805) is provided on the side of the first window stile insulation filling block (803) away from the first window stile insulation filling block (803); the first glass (5) is pressed against the second window stile insulation filling block (805); a second pressure strip (806) is provided on the window stile (2); a third glass side adhesive strip (807) is provided between the second pressure strip (806) and the first glass (5); a fourth glass side adhesive strip (808) is provided between the first glass (5) and the window stile (2).

6. The aluminum alloy ultra-low energy consumption passive window according to claim 5, characterized in that: The second upper window sash insulation strip (903) is provided with a second upper window sash insulation filling block (905) on the side away from the first upper window sash insulation filling block (904); the second glass (6) is pressed against the second upper window sash insulation filling block (905); the upper window sash profile (9) is provided with a third pressure strip (906); the third pressure strip (906) is provided with a first glass insulation filling block (907); the third pressure strip (906) and the second glass (6) are provided with a first window sash side adhesive strip (908); the second glass (6) and the upper window sash profile (9) are provided with a second window sash side adhesive strip (909).

7. The aluminum alloy ultra-low energy consumption passive window according to claim 6, characterized in that: The window sash (3) includes a lower window sash profile (10); the lower window sash profile (10) is provided with a lower window sash insulation cavity (101); the lower window sash insulation cavity (101) is provided with a first lower window sash thermal insulation strip (102) and a second lower window sash thermal insulation strip (103); the lower window frame (4) is provided with a lower window frame insulation cavity (11); the lower window frame insulation cavity (11) is provided with a first lower window frame thermal insulation strip (111) and a second lower window frame thermal insulation strip. The third thermal insulation structure includes a first lower window sash thermal insulation filler block (104) and a lower window frame thermal insulation filler block (113); the first lower window sash thermal insulation filler block (104) is disposed between the first lower window sash thermal insulation strip (102) and the second lower window sash thermal insulation strip (103); the lower window frame thermal insulation filler block (113) is disposed between the first lower window frame thermal insulation strip (111) and the second lower window frame thermal insulation strip (112); The first lower window frame heat insulation strip (111) is provided with a lower window equal pressure strip (114) on one side; the lower window equal pressure strip (114) abuts against the second lower window heat insulation strip (103).

8. The aluminum alloy ultra-low energy consumption passive window according to claim 7, characterized in that: A second lower window sash insulation filler block (105) is provided on the side of the first lower window sash insulation filler block (104) away from the first lower window sash insulation filler block (104); the second glass (6) is pressed against the second lower window sash insulation filler block (105); a fourth pressure strip (106) is provided on the lower window sash profile (10); a second glass insulation filler block (107) is provided in the fourth pressure strip (106); a third window sash side adhesive strip (108) is provided between the fourth pressure strip (106) and the second glass (6); a fourth window sash side adhesive strip (109) is provided between the second glass (6) and the lower window sash profile (10).

9. The aluminum alloy ultra-low energy consumption passive window according to claim 8, characterized in that: The first upper window frame thermal insulation strip (701), the second upper window frame thermal insulation strip (702), the first window stile thermal insulation strip (801), the second window stile thermal insulation strip (802), the first upper window sash thermal insulation strip (902), the second upper window sash thermal insulation strip (903), the first lower window sash thermal insulation strip (102), the second lower window sash thermal insulation strip (103), the first lower window frame thermal insulation strip (111), and the second lower window frame thermal insulation strip (112) are all high-strength nylon thermal insulation strips; The first upper window frame insulation filling block (703), the second upper window frame insulation filling block (704), the first window stile insulation filling block (803), the second window stile insulation filling block (805), the first upper window sash insulation filling block (904), the second upper window sash insulation filling block (905), the first glass insulation filling block (907), the first lower window sash insulation filling block (104), the second lower window sash insulation filling block (105), the second glass insulation filling block (107), the lower window frame insulation filling block (113), and the lower window sash pressure strip (114) are all high-density polyethylene insulation blocks; The first glass side sealing strip (706), the second glass side sealing strip (707), the third glass side sealing strip (807), the fourth glass side sealing strip (808), the first window sash side sealing strip (908), the second window sash side sealing strip (909), the third window sash side sealing strip (108) and the fourth window sash side sealing strip (109) are all extended sealing strips; The pressure-equalizing strips (804) for the upper window sash and (114) for the lower window sash are both EPDM micro-foamed strips.

Citation Information

Patent Citations

  • Novel window and method for installing window

    CN106639785A