CN111119666A - A broken bridge aluminum energy-saving window - Google Patents

A broken bridge aluminum energy-saving window Download PDF

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Publication number
CN111119666A
CN111119666A CN202010052860.5A CN202010052860A CN111119666A CN 111119666 A CN111119666 A CN 111119666A CN 202010052860 A CN202010052860 A CN 202010052860A CN 111119666 A CN111119666 A CN 111119666A
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Prior art keywords
profile
heat insulation
insulation strip
strip
glass
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CN202010052860.5A
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Chinese (zh)
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邓敏
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Chongqing Ming And De Doors And Windows Co Ltd
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Chongqing Ming And De Doors And Windows Co Ltd
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Priority to CN202010052860.5A priority Critical patent/CN111119666A/en
Publication of CN111119666A publication Critical patent/CN111119666A/en
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    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/04Wing frames not characterised by the manner of movement
    • E06B3/263Frames with special provision for insulation
    • E06B3/26301Frames with special provision for insulation with prefabricated insulating strips between two metal section members
    • E06B3/26303Frames with special provision for insulation with prefabricated insulating strips between two metal section members with thin strips, e.g. defining a hollow space between the metal section members

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  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Securing Of Glass Panes Or The Like (AREA)

Abstract

本发明涉及门窗结构的技术领域,尤其是涉及一种断桥铝制节能窗,包括第一型材、第二型材、隔热结构和玻璃,隔热结构位于第一型材和第二型材之间,隔热结构包括至少两条第一隔热条,第一隔热条的两端呈端部较宽的三角形或者T型,第一型材和第二型材上开设有与第一隔热条端部互相卡接配合的卡槽,玻璃的边缘部位安装在第一型材与第二型材之间,两个第一隔热条之间设置有第二隔热条,第二隔热条的两端呈端部较宽的三角形或者T型,第一隔热条的内侧开设有与第二隔热条端部互相卡接配合的第二卡槽。利用第二隔热条与第一隔热条卡接配合,能够提升第一隔热条的抗弯折强度,提升第一型材和第二型材之间连接的稳定性,最终达到提升窗框结构强度的效果。

Figure 202010052860

The invention relates to the technical field of door and window structures, in particular to a broken bridge aluminum energy-saving window, comprising a first profile, a second profile, a thermal insulation structure and glass, and the thermal insulation structure is located between the first profile and the second profile, The thermal insulation structure includes at least two first thermal insulation strips, the two ends of the first thermal insulation strip are in the shape of a triangle or T-shape with wider ends, and the first profile and the second profile are provided with ends of the first thermal insulation strip. The card slots are snap-fitted to each other, the edge of the glass is installed between the first profile and the second profile, a second heat insulation strip is arranged between the two first heat insulation strips, and both ends of the second heat insulation strip are In the triangle or T-shape with wider ends, the inner side of the first heat insulation strip is provided with a second clamping groove which is mutually clamped and matched with the end of the second heat insulation strip. By using the second heat insulation strip to engage with the first heat insulation strip, the bending strength of the first heat insulation strip can be improved, the stability of the connection between the first profile and the second profile can be improved, and finally the structure of the window frame can be improved. strength effect.

Figure 202010052860

Description

Bridge cut-off aluminium system energy-conserving window
Technical Field
The invention relates to the technical field of door and window structures, in particular to a bridge cut-off aluminum energy-saving window.
Background
In the manufacturing process of the door and window, the frame of the window is generally made of aluminum, and the frame can be formed into sections of various shapes through extrusion molding. Along with the improvement of the life quality of people, the requirement on the indoor and outdoor temperature isolation is strict, and the indoor temperature isolation method is favorable for keeping the indoor temperature at a proper temperature.
The window frame structure at the present stage usually adopts a bridge cut-off structure, so that the effect of reducing the transmission speed of the temperature inside and outside the window frame is achieved, and the heat insulation performance is improved. Current bridge cut-off aluminium matter structure includes first section bar, second section bar and heat insulating strip, and heat insulating strip is located between first section bar and the second section bar, and heat insulating strip is fixed with first section bar and second section bar joint respectively, realizes the stability of first section bar and second section bar, and heat insulating strip is the stereoplasm plastics that heat conductivility is lower, can adopt high density polyurethane to make generally, and glass's marginal position is installed between first section bar and the second section bar and with the outside laminating of heat insulating strip. Utilize the heat insulating strip to separate first section bar and second section bar each other, make both contactless totally, greatly reduced window frame structure's thermal conductivity to promote the heat-proof quality of window frame.
The above prior art has a disadvantage in that the support between the first profile and the second profile is completely dependent on the heat insulating strip, which easily causes the position displacement between the first profile and the second profile in the window frame when the heat insulating strip is deformed due to insufficient strength, thereby deforming the window frame.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide a bridge-cut-off aluminum energy-saving window, which improves the connection stability between a first profile and a second profile.
The above object of the present invention is achieved by the following technical solutions:
the utility model provides an energy-conserving window of bridge cut-off aluminium system, including first section bar, the second section bar, thermal-insulated structure and glass, thermal-insulated structure is located between first section bar and the second section bar, thermal-insulated structure includes two at least first heat insulating strips, the both ends of first heat insulating strip are triangle-shaped or the T type of tip broad, seted up on first section bar and the second section bar with first heat insulating strip tip joint complex draw-in groove of each other, glass's marginal part is installed between first section bar and second section bar, be provided with the second heat insulating strip between two first heat insulating strips, the both ends of second heat insulating strip are triangle-shaped or the T type of tip broad, the inboard of first heat insulating strip is seted up with the second heat insulating strip tip joint complex second draw-in groove of each other.
Through adopting above-mentioned technical scheme, utilize the cooperation of second heat insulating strip and first heat insulating strip joint, can promote the anti intensity of buckling of first heat insulating strip to promote the stability of being connected between first section bar and the second section bar, finally reach the effect that promotes window frame structural strength.
The present invention in a preferred example may be further configured to: the second heat insulation strip is in a herringbone shape.
Through adopting above-mentioned technical scheme, can promote the structural strength of second heat insulating strip self to further promote the reliability that the second heat insulating strip supported first heat insulating strip structural strength, further promote the intensity of window frame.
The present invention in a preferred example may be further configured to: the utility model discloses a heat insulation bar, including first section bar and second section bar, be connected with the auxiliary stay strip on the both sides of second heat insulation bar, the auxiliary stay strip of second heat insulation bar both sides's both sides is the inside wall butt of first section bar and second section bar respectively, and the auxiliary stay strip is in elastic bending deformation state.
Through adopting above-mentioned technical scheme, the auxiliary stay strip can provide the elastic force that forces keeping away from each other between first section bar and the second section bar, can offset partly effort when first section bar and second section bar pressurized, also can guarantee when ordinary use that first heat insulating strip is in the state of straightening.
The present invention in a preferred example may be further configured to: the middle part of the end part of the first heat insulation strip is provided with a deformation groove.
Through adopting above-mentioned technical scheme, at the in-process of the first heat insulating strip of installation, can extrude the tip of first heat insulating strip, make the deformation groove extrusion deformation to reduce the width of first heat insulating strip tip, conveniently enter into the draw-in groove with the tip installation of first heat insulating strip.
The present invention in a preferred example may be further configured to: the middle part of the first heat insulation strip arches outwards to form a trapezoid, and the outer side face of the first heat insulation strip protruding outwards is flush with the outer side faces of the first section bars and the second section bars.
Through adopting above-mentioned technical scheme, can guarantee the lateral surface parallel and level of the first heat insulating strip of first heat insulating strip and first section bar and second section bar installation to reduce the accumulational possibility of dust at the lateral surface of first heat insulating strip, the clearance of being convenient for.
The present invention in a preferred example may be further configured to: a first waterproof part is fixedly arranged on the first section bar and is in contact sealing with the outer surface of the glass; the second section bar is detachably and fixedly connected with a pressing plate, one side of the pressing plate, which is close to the glass, is fixedly provided with a second waterproof part, and the second waterproof part is in contact sealing with the glass.
Through adopting above-mentioned technical scheme, at the in-process of installation glass, at first with the first waterproof portion of glass laminating, later install the clamp plate on the second section bar, the in-process of fixed clamp plate and second section bar gradually drives the second waterproof portion and is close to glass gradually and compresses tightly sealed with glass.
The present invention in a preferred example may be further configured to: a containing groove used for containing glass is formed among the first sectional material, the second sectional material and the first heat insulation strips, a heat insulation sealing gasket is arranged at the bottom of the containing groove, and the bottom of the heat insulation sealing gasket is overlapped above the first heat insulation strips, the first sectional material and the second sectional material.
Through adopting above-mentioned technical scheme, after setting up the storage tank, be convenient for enter into the storage tank with the glass installation to thermal-insulated sealed pad's setting can share glass to the pressure of first heat insulating strip to first section bar and second section bar on, and can promote the thermal-insulated effect between first section bar and the second section bar.
In summary, the present invention has the following technical effects:
1. the effect of improving the structural strength of the energy-saving window is achieved by arranging the second heat insulation strips;
2. through setting up the auxiliary stay strip, reached the effect that further promotes energy-conserving window structural strength.
Drawings
FIG. 1 is a schematic sectional view of the present embodiment;
fig. 2 is an enlarged view of a portion a in fig. 1.
In the figure, 1, a first section bar; 11. a first waterproof section; 2. a second profile; 21. a second waterproof section; 22. pressing a plate; 3. a thermally insulating structure; 31. a first insulating strip; 311. a second card slot; 312. a deformation groove; 32. a second insulating strip; 321. auxiliary supporting bars; 4. glass; 41. a containing groove; 42. a heat insulating gasket; 5. a clamping groove.
Detailed Description
As shown in fig. 1, the present embodiment describes a bridge-cut aluminum energy-saving window, which includes a first profile 1, a second profile 2, a heat insulation structure 3 and a glass 4, wherein the heat insulation structure 3 is located between the first profile 1 and the second profile 2, the heat insulation structure 3 is used to connect and stabilize the first profile 1 and the second profile 2, and a frame of the glass 4 is located between the first profile 1 and the second profile 2. The heat transfer between the first profile 1 and the second profile 2 is interrupted via the heat insulation 3, whereby the heat insulation is achieved because the heat transfer of the heat insulation 3 is slow.
As shown in fig. 1, the heat insulation structure 3 includes a first heat insulation strip 31 and a second heat insulation strip 32, the first heat insulation strip 31 includes at least two strips, the first heat insulation strip 31 is located between the first section bar 1 and the second section bar 2, the second heat insulation strip 32 is located between the first heat insulation strip 31, the ends of the first heat insulation strip 31 and the second heat insulation strip 32 are in a triangular shape or a T shape with a wider width, the first section bar 1 and the second section bar 2 are provided with a clamping groove 5 mutually clamped and matched with the end of the first heat insulation strip 31, and the inner side of the first heat insulation strip 31 is provided with a second clamping groove 311 mutually clamped and matched with the end of the second heat insulation strip 32. After setting up like this, utilize the cooperation of second heat insulating strip 32 and first heat insulating strip 31 joint, when first section bar 1 and second section bar 2 received the extrusion force, first heat insulating strip 31 can receive the extrusion force, and second heat insulating strip 32 can promote the anti bending strength of first heat insulating strip 31, thereby promote the stability of connecting between first section bar 1 and the second section bar 2, finally reach the effect that promotes window frame structural strength, heat insulating structure 3 is more not fragile in the in-process of transportation or installation. In addition, the second heat insulating strips 32 can also divide the space between the first heat insulating strips 31 into more spaces, thereby improving the heat insulating effect.
As shown in fig. 1, the second insulating strips 32 may also be arranged in a shape of "herringbone", so that the structural strength of the second insulating strips 32 is stronger, and the strength of the first insulating strips 31 can be further improved, thereby improving the reliability of the second insulating strips 32 in supporting the structural strength of the first insulating strips 31, and finally improving the strength of the window frame.
As shown in fig. 1, auxiliary supporting bars 321 may be further disposed on two sides of the second heat insulation bar 32, the auxiliary supporting bars 321 are integrally connected with the second heat insulation bar 32, free ends of the auxiliary supporting bars 321 on two sides of the second heat insulation bar 32 are respectively abutted to inner sidewalls of the first profile 1 and the second profile 2, and the auxiliary supporting bars 321 are in an elastic bending deformation state. At this time, the auxiliary supporting bars 321 can provide an elastic force for forcing the first profile 1 and the second profile 2 to be away from each other, and can offset a part of the acting force when the first profile 1 and the second profile 2 are compressed, and can ensure that the first heat insulation strip 31 is in a stretched state in normal use.
Because first heat insulating strip 31 need with first section bar 1 and second section bar 2 joint, consequently draw-in groove 5 has the lateral wall, leads to can form a recess between draw-in groove 5 and the first heat insulating strip 31 on first section bar 1 and the second section bar 2, and easy deposition is difficult to the clearance. As shown in fig. 1, in order to solve the above problem, the middle portion of the first heat insulating strip 31 may be arched outward to form a trapezoid, and the outward convex outer side surface of the first heat insulating strip 31 is flush with the outer side surfaces of the first heat insulating strips 31 mounted on the first profile 1 and the second profile 2, that is, the outward convex outer side surface of the first heat insulating strip 31 is flush with the outer surfaces of the side walls of the clamping groove 5, so that the situation that sundries deposited on the first heat insulating strip 31 are difficult to clean can be alleviated.
As shown in fig. 2, in order to install the end of the first heat insulating strip 31 in the clamping groove 5, the deformation groove 312 may be formed in the middle of the end of the first heat insulating strip 31, and in the process of installing the first heat insulating strip 31, the end of the first heat insulating strip 31 may be extruded to deform the deformation groove 312 by extrusion, so as to reduce the width of the end of the first heat insulating strip 31, and facilitate the installation of the end of the first heat insulating strip 31 into the clamping groove 5, and after the installation and the entering, the end of the first heat insulating strip 31 is slowly reset to realize stable clamping.
As shown in fig. 1, a containing groove 41 for containing the glass 4 is formed between the first profile 1, the second profile 2 and the first heat insulating strip 31, a heat insulating gasket 42 is arranged at the bottom of the containing groove 41, and the bottom of the heat insulating gasket 42 is overlapped above the first heat insulating strip 31, the first profile 1 and the second profile 2. Like this at the in-process of installing glass 4, be convenient for enter into containing groove 41 with glass 4 installation to the setting of insulating sealing gasket 42 can share glass 4 to the pressure of first insulating strip 31 to on first section bar 1 and the second section bar 2, and can promote the thermal-insulated effect between first section bar 1 and the second section bar 2.
As shown in fig. 1, a first waterproof part 11 is fixedly arranged on the first section bar 1, and the first waterproof part 11 is in contact sealing with the outer surface of the glass 4; the second section bar 2 is detachably and fixedly connected with a pressing plate 22, one side of the pressing plate 22 close to the glass 4 is fixedly provided with a second waterproof part 21, and the second waterproof part 21 is in contact sealing with the glass 4. In the process of installing the glass 4, firstly, the glass 4 is attached to the first waterproof part 11, then the pressing plate 22 is installed on the second section bar 2, and in the process of gradually fixing the pressing plate 22 and the second section bar 2, the second waterproof part 21 is driven to gradually approach the glass 4 and the glass 4 is pressed and sealed.
The working principle of the embodiment is as follows:
when the window frame received the extrusion in the in-process of transportation or installation, can be close to each other between first section bar 1 and the second section bar 2, at first auxiliary stay 321 can offset the pressure that partly first section bar 1 and second section bar 2 received, later most atress can transmit on first heat insulating strip 31, because the supporting role of second heat insulating strip 32, make second heat insulating strip 31 be difficult for taking place buckling deformation when the pressurized more, thereby promote the stability of connecting between first section bar 1 and the second section bar 2, finally reach the effect that promotes window frame structural strength.
The embodiments of the present invention are preferred embodiments of the present invention, and the scope of the present invention is not limited by these embodiments, so: all equivalent changes made according to the structure, shape and principle of the invention are covered by the protection scope of the invention.

Claims (7)

1.一种断桥铝制节能窗,包括第一型材(1)、第二型材(2)、隔热结构(3)和玻璃(4),隔热结构(3)位于第一型材(1)和第二型材(2)之间,隔热结构(3)包括至少两条第一隔热条(31),第一隔热条(31)的两端呈端部较宽的三角形或者T型,第一型材(1)和第二型材(2)上开设有与第一隔热条(31)端部互相卡接配合的卡槽(5),玻璃(4)的边缘部位安装在第一型材(1)与第二型材(2)之间,其特征在于,两个第一隔热条(31)之间设置有第二隔热条(32),第二隔热条(32)的两端呈端部较宽的三角形或者T型,第一隔热条(31)的内侧开设有与第二隔热条(32)端部互相卡接配合的第二卡槽(311)。1. An energy-saving aluminum window with a broken bridge, comprising a first profile (1), a second profile (2), a heat insulation structure (3) and glass (4), wherein the heat insulation structure (3) is located in the first profile (1) ) and the second profile (2), the thermal insulation structure (3) includes at least two first thermal insulation strips (31), and both ends of the first thermal insulation strips (31) are in the shape of a triangle with wider ends or T The first profile (1) and the second profile (2) are provided with a card slot (5) that is snap-fitted with the end of the first heat insulation strip (31), and the edge of the glass (4) is installed on the first heat insulation strip (31). Between a profile (1) and a second profile (2), characterized in that a second thermal insulation strip (32) is arranged between the two first thermal insulation strips (31), and the second thermal insulation strip (32) Both ends of the heat insulation strip (31) are triangular or T-shaped with wider ends, and the inner side of the first heat insulation strip (31) is provided with a second clamping slot (311) which is engaged with the end of the second heat insulation strip (32). 2.根据权利要求1所述的断桥铝制节能窗,其特征在于,所述第二隔热条(32)呈“人”字形。2 . The broken bridge aluminum energy-saving window according to claim 1 , wherein the second heat insulation strip ( 32 ) is in the shape of a "herringbone". 3 . 3.根据权利要求1所述的断桥铝制节能窗,其特征在于,所述第二隔热条(32)的两侧上一体连接有辅助支撑条(321),第二隔热条(32)两侧的辅助支撑条(321)的自由端分别与第一型材(1)和第二型材(2)的内侧壁抵接,辅助支撑条(321)处于弹性弯曲变形状态。3 . The bridge-breaking aluminum energy-saving window according to claim 1 , wherein auxiliary support bars ( 321 ) are integrally connected on both sides of the second heat insulation strip ( 32 ), and the second heat insulation strip ( 32) The free ends of the auxiliary support bars (321) on both sides are respectively abutted against the inner side walls of the first profile (1) and the second profile (2), and the auxiliary support bars (321) are in an elastically bent and deformed state. 4.根据权利要求1所述的断桥铝制节能窗,其特征在于,第一隔热条(31)端部的中间部位开设有变形槽(312)。4 . The bridge-breaking aluminum energy-saving window according to claim 1 , wherein a deformation groove ( 312 ) is formed in the middle part of the end of the first heat insulation strip ( 31 ). 5 . 5.根据权利要求1所述的断桥铝制节能窗,其特征在于,第一隔热条(31)的中间部位向外侧拱起形成梯形,第一隔热条(31)向外凸起的外侧面与第一型材(1)和第二型材(2)安装第一隔热条(31)的外侧面平齐。5 . The bridge-breaking aluminum energy-saving window according to claim 1 , wherein the middle part of the first heat insulation strip ( 31 ) is arched to the outside to form a trapezoid, and the first heat insulation strip ( 31 ) protrudes outward. 6 . The outer side of the first profile (1) and the second profile (2) are flush with the outer side of the first heat insulation strip (31). 6.根据权利要求1所述的断桥铝制节能窗,其特征在于,第一型材(1)上固定设置有第一防水部(11),第一防水部(11)与玻璃(4)的外表面接触密封;第二型材(2)上可拆卸固定连接有压板(22),压板(22)靠近玻璃(4)的一侧固定设置有第二防水部(21),第二防水部(21)与玻璃(4)接触密封。6. The broken bridge aluminum energy-saving window according to claim 1, characterized in that a first waterproof part (11) is fixedly arranged on the first profile (1), and the first waterproof part (11) is connected to the glass (4) The outer surface of the second profile (2) is detachably and fixedly connected with a pressure plate (22), and the side of the pressure plate (22) close to the glass (4) is fixedly provided with a second waterproof part (21), the second waterproof part (21) is sealed in contact with the glass (4). 7.根据权利要求6所述的断桥铝制节能窗,其特征在于,第一型材(1)、第二型材(2)和第一隔热条(31)之间形成用于容置玻璃(4)的容置槽(41),容置槽(41)的底部设置有隔热密封垫(42),所述隔热密封垫(42)的底部搭接在第一隔热条(31)、第一型材(1)和第二型材(2)的上方。7 . The bridge-breaking aluminum energy-saving window according to claim 6 , wherein the first section material ( 1 ), the second section material ( 2 ) and the first heat insulation strip ( 31 ) are formed for accommodating glass. 8 . (4) The accommodating groove (41), the bottom of the accommodating groove (41) is provided with a thermal insulation gasket (42), and the bottom of the thermal insulation gasket (42) overlaps with the first thermal insulation strip (31) ), above the first profile (1) and the second profile (2).
CN202010052860.5A 2020-01-17 2020-01-17 A broken bridge aluminum energy-saving window Pending CN111119666A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113389466A (en) * 2021-06-11 2021-09-14 佛山市研能高新材料有限公司 Integrated heat insulation strip, split type heat insulation strip and bridge cut-off aluminum door and window
CN115637909A (en) * 2022-09-27 2023-01-24 江苏鼎盛铝业股份有限公司 Bridge-cut-off aluminum profile with stable structure

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4325972C1 (en) * 1993-08-03 1994-11-03 Ekonal Bausysteme Gmbh & Co Kg Heat-insulated composite profile
EP0764756A1 (en) * 1995-08-25 1997-03-26 Syntax Rackwitz Systemtechnik GmbH Compound section member and its manufacturing method
CN205047064U (en) * 2015-09-12 2016-02-24 山东建筑大学 Four sealing sections can al -alloy door & window
CN207920384U (en) * 2018-03-14 2018-09-28 黑龙江悦品装饰工程有限公司 A kind of high-strength connection structure for aluminous plastic compound door & window medial and lateral proximate matter
CN211950120U (en) * 2020-01-17 2020-11-17 重庆明德门窗有限公司 A broken bridge aluminum energy-saving window

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4325972C1 (en) * 1993-08-03 1994-11-03 Ekonal Bausysteme Gmbh & Co Kg Heat-insulated composite profile
EP0764756A1 (en) * 1995-08-25 1997-03-26 Syntax Rackwitz Systemtechnik GmbH Compound section member and its manufacturing method
CN205047064U (en) * 2015-09-12 2016-02-24 山东建筑大学 Four sealing sections can al -alloy door & window
CN207920384U (en) * 2018-03-14 2018-09-28 黑龙江悦品装饰工程有限公司 A kind of high-strength connection structure for aluminous plastic compound door & window medial and lateral proximate matter
CN211950120U (en) * 2020-01-17 2020-11-17 重庆明德门窗有限公司 A broken bridge aluminum energy-saving window

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113389466A (en) * 2021-06-11 2021-09-14 佛山市研能高新材料有限公司 Integrated heat insulation strip, split type heat insulation strip and bridge cut-off aluminum door and window
CN115637909A (en) * 2022-09-27 2023-01-24 江苏鼎盛铝业股份有限公司 Bridge-cut-off aluminum profile with stable structure
CN115637909B (en) * 2022-09-27 2023-09-22 江苏鼎盛铝业股份有限公司 Bridge cut-off aluminium alloy of stable in structure

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