CN214943595U - Main structure of door frame for open window - Google Patents

Main structure of door frame for open window Download PDF

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Publication number
CN214943595U
CN214943595U CN202121609403.8U CN202121609403U CN214943595U CN 214943595 U CN214943595 U CN 214943595U CN 202121609403 U CN202121609403 U CN 202121609403U CN 214943595 U CN214943595 U CN 214943595U
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carrier
groove
door frame
functional
cavity
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CN202121609403.8U
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Chinese (zh)
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杨源德
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Yun'nan Sanyuandelong Aluminum Industry Co ltd
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Yun'nan Sanyuandelong Aluminum Industry Co ltd
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Abstract

本实用新型公开了一种用于开平窗的门框主体结构,包括内载体和外载体,上述内载体用于安装纱窗,上述外载体用于安装玻璃扇,上述内载体上端高于外载体上端,上述内载体上端设有隔板,上述隔板侧壁设有设有防撞插口,上述防撞插口用于安装防撞条,上述内载体上端设有第一胶条槽,上述外载体上端设有第二胶条槽,上述第一胶条槽和第二胶条槽用于安装胶条,以期望优化现有平开窗的门窗结构容易使雨水可能沿着玻璃扇渗入房间,且在玻璃扇闭合时可能出现较大的振动的问题。

Figure 202121609403

The utility model discloses a main body structure of a door frame for opening a flat window, comprising an inner carrier and an outer carrier, the inner carrier is used for installing screen windows, the outer carrier is used for installing a glass fan, and the upper end of the inner carrier is higher than the upper end of the outer carrier, The upper end of the inner carrier is provided with a partition plate, the side wall of the partition plate is provided with an anti-collision socket, the above-mentioned anti-collision socket is used to install the anti-collision strip, the upper end of the inner carrier is provided with a first rubber strip groove, and the upper end of the outer carrier is provided with an anti-collision socket. There is a second rubber strip groove, and the above-mentioned first rubber strip groove and second rubber strip groove are used to install the rubber strip, in order to optimize the door and window structure of the existing casement window, so that the rainwater may penetrate into the room along the glass fan, and the glass can be damaged. Larger vibration problems may occur when the fan is closed.

Figure 202121609403

Description

Door frame main body structure for casement window
Technical Field
The utility model relates to a flat window structure, concretely relates to door frame major structure for opening flat window.
Background
The casement window refers to a door and window structure with a sash moving along a certain horizontal direction, wherein the casement window is divided into a push-pull type and an upward-suspension type. Compared with a door window on one side, the casement window has the advantages of large opening and closing area, good ventilation of the opened and closed door window, easy sealing and convenient inward opening window cleaning; it is noted that casement windows are generally divided into an inner carrier on which screen windows are mounted by hinges and an outer carrier on which glass panes are mounted by hinges.
When the casement window is closed, the window is pushed outwards, a gap between the door frame and the glass sash is opened, and the opened part of the glass sash is suspended in the air, so that the casement window has good ventilation performance, but the glass sash of the casement window is easy to contact with the front of the wind, if the casement window is opened in rainy days, the glass sash is opened, and the glass sash is in an inclined state, so that rainwater can penetrate into a room along the glass sash more easily; meanwhile, the screen window and the glass sash of the casement window are greatly affected by manpower in the opening and closing processes, and a large vibration condition may occur, so that the integral shaking of the screen window or the glass sash is caused. Therefore, how to optimize the door and window structure of the casement window is worthy of study.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a door frame major structure for opening casement window to it makes the rainwater probably along glass fan infiltration room easily to expect to optimize the door and window structure of current flat-open window, and the problem of great vibration probably appears when glass fan is closed.
In order to solve the technical problem, the utility model adopts the following technical scheme:
the utility model provides a door frame major structure for opening flat window, includes interior carrier and outer carrier, and above-mentioned interior carrier is used for installing the screen window, and above-mentioned outer carrier is used for installing the glass fan, and above-mentioned interior carrier upper end is higher than outer carrier upper end, and above-mentioned interior carrier upper end is equipped with the baffle, and above-mentioned baffle lateral wall is equipped with anticollision socket, and above-mentioned anticollision socket is used for installing the anticollision strip, and above-mentioned interior carrier upper end is equipped with first adhesive tape groove, and above-mentioned outer carrier upper end is equipped with second adhesive tape groove, and above-mentioned first adhesive tape groove and second adhesive tape groove are used for installing the adhesive tape.
As preferred, the inner carrier cavity is equipped with first function chamber in the aforesaid, and above-mentioned outer carrier cavity is equipped with the second function chamber, and the function block is filled in above-mentioned first function chamber and the second function chamber, is equipped with the mounting groove on above-mentioned first function chamber and the second function chamber, and above-mentioned mounting groove is used for fixed function block.
The further technical scheme is that the functional block comprises a bearing block, the bearing block is arranged in the second functional cavity, and the bearing block is used for abutting against the inner wall of the second functional cavity.
The technical scheme is that the function block comprises a sound insulation sponge, an installation part corresponding to the installation groove is arranged on the sound insulation sponge, a hollow groove is formed in the sound insulation sponge, and a support rod is installed in the hollow groove.
A further technical scheme is that the external contour of the support rod is matched with the internal contour of the hollow groove, the support rod comprises a support rod, the support rod penetrates through the hollow groove, support planes are arranged at the upper end and the lower end of the support rod, and the support planes are used for abutting against the inner walls of the first functional cavity and the second functional cavity.
Preferably, the inner and outer carriers have a docking port at a lower end thereof, and the docking port is used to connect a sub-body frame fixed to a door frame.
Preferably, the first adhesive tape groove and the second adhesive tape groove are provided with a recess, the recess is V-shaped, and the recess is used for abutting against the bottom of the adhesive tape.
Preferably, the side walls of the inner and outer carriers are provided with heat insulation grooves, and the heat insulation grooves of the inner carrier and the heat insulation grooves of the outer carrier have a gap therebetween, and the heat insulation grooves of the inner carrier and the heat insulation grooves of the outer carrier correspond to each other, and the heat insulation bars are inserted into the heat insulation grooves.
Compared with the prior art, the beneficial effects of the utility model are one of following at least:
the utility model discloses an installation form that adopts interior carrier and outer carrier easily organizes the angle to the door frame, can block the glass fan through setting up the baffle to the accident of the glass fan accidental collision screen window that probably appears when avoiding the hinge wearing and tearing, be convenient for install the anticollision strip through crashproof socket, through crashproof strip contact glass fan, thereby can reduce the glass fan and close the striking of process to the door frame, and then the production of noise abatement.
The utility model discloses a first function chamber and second function chamber can reduce the material for production, can improve the bearing capacity in first function chamber and second function chamber according to the demand through the setting of function block, can also fill first function chamber and second function chamber through the sponge that gives sound insulation simultaneously to the transmission of noise abatement helps cooperating the anticollision strip and further falls and make an uproar.
The sound insulation sponge of the utility model is provided with the supporting rod through the hollow groove, thereby satisfying the noise reduction requirement and simultaneously improving the bearing load through the supporting plate, and arranging the supporting plane through the two ends of the supporting rod, thereby ensuring the uniform transmission of the load; it is also possible to facilitate connection of the sub-body frame through the docking port to accomplish external assembly.
The utility model discloses a sunken stability that improves the adhesive tape installation, appear obviously rocking after avoiding the adhesive tape part to come unstuck. Meanwhile, the heat insulation strips are installed through the heat insulation grooves, so that the broken-bridge type installation can be carried out, and the heat transfer of the inner carrier and the outer carrier is effectively reduced.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is the functional block installation schematic diagram of the present invention.
Fig. 3 is a schematic view of the structure of the sound-proof sponge.
Fig. 4 is a schematic view of support rod installation.
Fig. 5 is a schematic view of the sunken structure of the present invention.
Fig. 6 is an assembly diagram of the present invention.
Description of reference numerals:
1-inner carrier, 2-outer carrier, 3-partition board, 4-bearing block, 5-mounting groove, 6-sound insulation sponge, 7-support rod, 8-butt joint, 9-recess, 10-heat insulation groove, 11-heat insulation strip, 101-first adhesive tape groove, 102-first function cavity, 201-second adhesive tape groove, 202-second function cavity, 301-anti-collision socket, 601-mounting part, 602-hollow groove, 701-support rod and 702-support plane.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1 and 2, an embodiment of the present invention is a door frame main body structure for a casement window, including an inner carrier 1 and an outer carrier 2, wherein the inner carrier 1 and the outer carrier 2 are both made of aluminum alloy frames, and the surfaces of the inner carrier 1 and the outer carrier 2 are both sprayed with electrostatic powder, so as to ensure corrosion resistance, frost resistance and crack resistance of the inner carrier 1 and the outer carrier 2.
The inner carrier 1 is used for mounting a screen window, the outer carrier 2 is used for mounting a glass sash, wherein the inner carrier 1 and the outer carrier 2 are in opposite positions, so that the screen window is mounted on the indoor side, and the glass sash is mounted on the outdoor side; the upper end of the inner carrier 1 is higher than the upper end of the outer carrier 2, and the inner carrier 1 and the outer carrier 2 adopt a stepped arrangement form, so that the hidden frame effect of the outer carrier 2 can be achieved to a certain extent. Meanwhile, the outer carrier 2 and the upper end of the inner carrier 1 form a height difference, which helps to prevent rainwater from flowing from the outer carrier 2 to the inner carrier 1.
The partition board 3 is arranged at the upper end of the inner carrier 1, and the partition board 3 is used for separating the inner carrier 1 from the outer carrier 2, so that the contact between the screen window of the inner carrier 1 and the glass sash of the outer carrier 2 is effectively avoided, and the packaged glass sash and the screen window have good use gaps.
In order to further reduce the possibility of impact of the glass sash on the inner carrier 1 in the closing process, the side wall of the partition plate 3 is provided with an anti-collision socket 301, the anti-collision socket 301 is used for installing an anti-collision strip, and when the glass sash of the outer carrier 2 is closed through the installation of the anti-collision strip, the impact force of the glass sash on the inner carrier 1 can be reduced, so that the noise is reduced.
The upper end of the inner carrier 1 is provided with a first adhesive tape groove 101, the upper end of the outer carrier 2 is provided with a second adhesive tape groove 201, and the first adhesive tape groove 101 and the second adhesive tape groove 201 are used for installing adhesive tapes. The adhesive tape is a sealing adhesive tape, and the adhesive tape can be made of PVC, modified PVC, ethylene propylene diene monomer, silica gel and has an elastic sealing body.
The adhesive tape is installed through the first adhesive tape groove 101 and the second adhesive tape groove 201, so that the inner carrier 1 and the outer carrier 2 are guaranteed to have basic dustproof, insect-proof, waterproof and sound-proof effects, and meanwhile, the sealing performance after installation is guaranteed through the adhesive tape sealing glass sash and the screen window.
Based on the above embodiment, referring to fig. 1 and fig. 2 again, another embodiment of the present invention is that the inner cavity of the inner carrier 1 is provided with a first functional cavity 102, and the inner cavity of the outer carrier 2 is provided with a second functional cavity 202, wherein the first functional cavity 102 is a cavity of the inner carrier 1, and the consumable of the inner carrier 1 is reduced through the first functional cavity 102. Similarly, the second functional cavity 202 is a cavity of the outer carrier 2. Through the design of the first functional cavity 102 and the second cavity 202, the whole material of the door frame can be reduced, the portability of the door frame is ensured, and the door frame is convenient to mount and carry.
The first functional cavity 102 and the second functional cavity 202 are filled with functional blocks, the first functional cavity 102 and the second functional cavity 202 are provided with mounting grooves 5, and the mounting grooves 5 are used for fixing the functional blocks. Wherein the functional blocks are solid structures installed in the first functional cavity 102 and the second functional cavity 202, and the functional blocks are inserted into the first functional cavity 102 and the second functional cavity 202 in the door frame installation process, so as to improve the physical properties of the inner carrier 1 and the outer carrier 2. Through the setting of mounting groove 5, the fixed function piece of being convenient for. It is noted that if the functional block is installed in the first functional cavity 102, the outer contour of the functional block corresponds to the inner contour of the first functional cavity 102, and similarly, if the functional block is installed in the second functional cavity 202, the functional block corresponds to the inner contour of the second functional cavity 202.
Further, referring to fig. 2 and 3, the functional block includes a bearing block 4, the bearing block 4 is installed in the second functional cavity 202, and the bearing block 4 is configured to abut against an inner wall of the second functional cavity 202. The functional block can be a bearing block 4, the bearing block 4 is a rigid component, and the bearing block 4 is filled into the second functional cavity 202 to increase the bearing load of the outer carrier 2.
It is noted that since the screen window generally carried by the inner carrier 1 has a weight much lower than that of the glass sash, the first functional cavity 102 of the inner carrier 1 is usually not provided with the carrying block 4, and if necessary, the carrying block 4 can be arranged in the first functional cavity 102.
Further, referring to fig. 3 and 4, in order to optimize the collision noise that may occur to the inner carrier 1, the functional block includes a sound-insulating sponge 6, and an installation portion 601 corresponding to the installation groove 5 is provided on the sound-insulating sponge 6, and the installation portion 601 is abutted against the installation groove 5 by corresponding the outer contour of the sound-insulating sponge 6 to the inner contour of the first functional cavity 102, so that the sound-insulating sponge 6 is fixed in the first functional cavity 102. The sound returning wave in the first functional chamber 102 is reduced by the soundproof sponge 6, thereby reducing the noise occurring after the collision with the inner carrier 1.
It is noted that the sound-insulating sponge 6 is also applicable to the second functional chamber 202.
In order to improve the bearing load of the inner carrier 1 under the premise of reducing noise, a hollow groove 602 is arranged in the sound insulation sponge 6, and a support rod 7 is arranged in the hollow groove 602. The inner support 1 bears high load by the support rods 7 abutting against the inner wall of the first functional cavity 102.
Furthermore, in order to ensure the stability of the support rod 7 in the inner carrier 1, the outer contour of the support rod 7 matches the inner contour of the hollow groove 602, the support rod 7 includes a support rod 701, the support rod 701 passes through the hollow groove 602, the upper and lower ends of the support rod 701 are provided with support planes 702, and the support planes 702 are used for abutting against the inner walls of the first functional cavity 102 and the second functional cavity 202.
Through the inner wall of the first function chamber 102 of supporting plane 702 contact and second function chamber 202, bear the load and act on the supporting plane 702 of upper end when first function chamber 102 and second function chamber 202, the supporting plane 702 of upper end passes through the bracing piece 701 and transmits the load that bears for the supporting plane 702 of lower extreme, transmits by the supporting plane 702 of lower extreme to improve the stability behind the filling sound insulation sponge 6 in first function chamber 102 or the second function chamber 202.
Based on the above embodiment, referring to fig. 1, fig. 2 and fig. 6, another embodiment of the present invention is that the lower ends of the inner carrier 1 and the outer carrier 2 are provided with a butt joint port 8, and the butt joint port 8 is used for connecting a sub frame fixed on a door frame. The inner carrier 1 and the outer carrier 2 form a main body frame, the main body frame needs to be matched with an auxiliary body frame, and the auxiliary body frame is fixed on the wall surface of a door or a window, so that the load of the main body frame can act on the wall body through the auxiliary body frame.
Based on the above embodiment, the utility model discloses another embodiment is, be equipped with sunken 9 on above-mentioned first adhesive tape groove 101 and the second adhesive tape groove 201, above-mentioned sunken 9 is the V-arrangement, and above-mentioned sunken 9 is used for contradicting the adhesive tape bottom. Wherein first adhesive tape groove 101 corresponds with the adhesive tape, blocks the gap of first adhesive tape groove 101 and screen window through the adhesive tape, and the adhesive tape in the second adhesive tape groove 201 blocks the clearance of glass window and outer carrier 2 contact with the same reason. The sealing performance of the closed glass window is ensured.
Based on above-mentioned embodiment, refer to fig. 1 the utility model discloses an another embodiment is, the major structure lateral wall of door and window installation can not do alone generally and keep warm, and indoor hot-air acts on interior carrier 1, and the cold air outside the window acts on outer carrier 2, meets the cold air and appears the dewfall phenomenon easily when hot-air, and in the winter, the dewfall phenomenon appears the position and probably grows the fungus and go mouldy easily, and very big influence user uses the sense organ.
In order to avoid the influence of heat transfer between the outside and the inside, heat insulating grooves 10 are formed in the side walls of the inner carrier 1 and the outer carrier 2, and the heat insulating grooves 10 of the inner carrier 1 and the heat insulating grooves 10 of the outer carrier 2 have a gap therebetween, and the heat insulating grooves 10 of the inner carrier 1 and the heat insulating grooves 10 of the outer carrier 2 correspond to each other, and heat insulating strips 11 are inserted into the heat insulating grooves 10.
Interior carrier 1 and outer carrier 2 are the aluminum alloy material, in aluminum alloy heat conduction transfer process, generally by high temperature to the heat dissipation capacity that expands of low temperature direction, and interior carrier 1 is the weak position of heat preservation heat insulating ability with outer carrier 2's contact site, in order to avoid the heat to pass through the junction, so interior carrier 1 all is equipped with heat-insulating groove 10 with outer carrier 2 lateral wall, be convenient for install heat insulating strip 11 through heat-insulating groove 10, wherein heat insulating strip 11 is thermal-insulated rubber material, thereby form the bridge cut-off structure that has the certain intensity of physics between interior carrier 1 and outer carrier 2, and reduce the heat transfer, avoid interior carrier 1 and outer carrier 2 handing-over department to appear the dewfall phenomenon.
Reference throughout this specification to "one embodiment," "another embodiment," "an embodiment," "a preferred embodiment," or the like, means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment described generally in this application. The appearances of the same phrase in various places in the specification are not necessarily all referring to the same embodiment. Further, when a particular feature, structure, or characteristic is described in connection with any embodiment, it is submitted that it is within the scope of the invention to effect such feature, structure, or characteristic in connection with other embodiments.
Although the invention has been described herein with reference to a number of illustrative embodiments thereof, it should be understood that numerous other modifications and embodiments can be devised by those skilled in the art that will fall within the spirit and scope of the principles of this invention. More specifically, various variations and modifications are possible in the component parts and/or arrangements of the subject combination arrangement within the scope of the disclosure, the drawings and the appended claims. In addition to variations and modifications in the component parts and/or arrangements, other uses will also be apparent to those skilled in the art.

Claims (8)

1.一种用于开平窗的门框主体结构,包括内载体(1)和外载体(2),所述内载体(1)用于安装纱窗,所述外载体(2)用于安装玻璃扇,其特征在于:所述内载体(1)上端高于外载体(2)上端,所述内载体(1)上端设有隔板(3),所述隔板(3)侧壁设有设有防撞插口(301),所述防撞插口(301)用于安装防撞条,所述内载体(1)上端设有第一胶条槽(101),所述外载体(2)上端设有第二胶条槽(201),所述第一胶条槽(101)和第二胶条槽(201)用于安装胶条。1. A main body structure of a door frame for a flat window, comprising an inner carrier (1) and an outer carrier (2), the inner carrier (1) is used for installing a screen window, and the outer carrier (2) is used for installing a glass fan , characterized in that: the upper end of the inner carrier (1) is higher than the upper end of the outer carrier (2), the upper end of the inner carrier (1) is provided with a partition (3), and the side wall of the partition (3) is provided with a partition There is an anti-collision socket (301), the anti-collision socket (301) is used for installing the anti-collision strip, the upper end of the inner carrier (1) is provided with a first rubber strip groove (101), and the upper end of the outer carrier (2) A second glue strip groove (201) is provided, and the first glue strip groove (101) and the second glue strip groove (201) are used for installing glue strips. 2.根据权利要求1所述的用于开平窗的门框主体结构,其特征在于:所述内载体(1)内腔设有第一功能腔(102),所述外载体(2)内腔设有第二功能腔(202),所述第一功能腔(102)和第二功能腔(202)中填充功能块,所述第一功能腔(102)和第二功能腔(202)上设有安装槽(5),所述安装槽(5)用于固定功能块。2 . The main structure of the door frame for a flat window according to claim 1 , wherein: the inner cavity of the inner carrier ( 1 ) is provided with a first functional cavity ( 102 ), and the inner cavity of the outer carrier ( 2 ) is provided with a first functional cavity ( 102 ). A second functional cavity (202) is provided, the first functional cavity (102) and the second functional cavity (202) are filled with functional blocks, and the first functional cavity (102) and the second functional cavity (202) are An installation groove (5) is provided, and the installation groove (5) is used for fixing the functional block. 3.根据权利要求2所述的用于开平窗的门框主体结构,其特征在于:所述功能块包括承载块(4),所述承载块(4)安装在第二功能腔(202)中,所述承载块(4)用于抵触第二功能腔(202)内壁。3. The main structure of the door frame for a flat window according to claim 2, characterized in that: the functional block comprises a bearing block (4), and the bearing block (4) is installed in the second functional cavity (202) , the bearing block (4) is used to abut against the inner wall of the second functional cavity (202). 4.根据权利要求2所述的用于开平窗的门框主体结构,其特征在于:所述功能块包括隔音海绵(6),所述隔音海绵(6)上设有与安装槽(5)对应的安装部(601),所述隔音海绵(6)中设有中空槽(602),所述中空槽(602)中安装支撑棒(7)。4 . The main structure of the door frame for opening a flat window according to claim 2 , wherein the functional block comprises a sound insulation sponge ( 6 ), and the sound insulation sponge ( 6 ) is provided with a corresponding installation groove ( 5 ). 5 . The installation part (601) of the sound insulation sponge (6) is provided with a hollow groove (602), and a support rod (7) is installed in the hollow groove (602). 5.根据权利要求4所述的用于开平窗的门框主体结构,其特征在于:所述支撑棒(7)外部轮廓与中空槽(602)内部轮廓相吻合,所述支撑棒(7)包括支撑杆(701),所述支撑杆(701)穿过中空槽(602),所述支撑杆(701)上下两端设有支撑平面(702),所述支撑平面(702)用于抵触第一功能腔(102)和第二功能腔(202)的内壁。5. The main structure of the door frame for opening a casement window according to claim 4, characterized in that: the outer contour of the support rod (7) matches the inner contour of the hollow groove (602), and the support rod (7) comprises A support rod (701), the support rod (701) passes through the hollow groove (602), and support planes (702) are provided at the upper and lower ends of the support rod (701), and the support planes (702) are used to interfere with the first The inner walls of a functional cavity (102) and a second functional cavity (202). 6.根据权利要求1所述的用于开平窗的门框主体结构,其特征在于:所述内载体(1)和外载体(2)下端设有对接口(8),所述对接口(8)用于连接固定在门框上的副体框架。6. The main structure of the door frame for opening a casement window according to claim 1, characterized in that: the lower ends of the inner carrier (1) and the outer carrier (2) are provided with a docking port (8), and the docking port (8) ) is used to connect the secondary body frame fixed to the door frame. 7.根据权利要求1所述的用于开平窗的门框主体结构,其特征在于:所述第一胶条槽(101)和第二胶条槽(201)上设有凹陷(9),所述凹陷(9)呈V形,所述凹陷(9)用于抵触胶条底部。7. The main structure of the door frame for opening a flat window according to claim 1, characterized in that: the first rubber strip groove (101) and the second rubber strip groove (201) are provided with depressions (9), so The depression (9) is V-shaped, and the depression (9) is used to abut against the bottom of the rubber strip. 8.根据权利要求1所述的用于开平窗的门框主体结构,其特征在于:所述内载体(1)和外载体(2)侧壁均设有隔热槽(10),且内载体(1)的隔热槽(10)与外载体(2)的隔热槽(10)具有间隙,所述内载体(1)的隔热槽(10)与外载体(2)的隔热槽(10)相互对应,所述隔热槽(10)中插入隔热条(11)。8. The main structure of the door frame for a flat window according to claim 1, wherein the inner carrier (1) and the side wall of the outer carrier (2) are provided with heat insulation grooves (10), and the inner carrier The heat insulating groove (10) of (1) and the heat insulating groove (10) of the outer carrier (2) have a gap, and the heat insulating groove (10) of the inner carrier (1) and the heat insulating groove of the outer carrier (2) (10) correspond to each other, and heat insulating strips (11) are inserted into the heat insulating grooves (10).
CN202121609403.8U 2021-07-15 2021-07-15 Main structure of door frame for open window Expired - Fee Related CN214943595U (en)

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CN202121609403.8U CN214943595U (en) 2021-07-15 2021-07-15 Main structure of door frame for open window

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Application Number Priority Date Filing Date Title
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CN214943595U true CN214943595U (en) 2021-11-30

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