Residential unit window system

The modular residential unit window system, utilizing rotation and plug-in connections, solves the installation and adjustment challenges of unit windows between floor slabs and structural elevations, enabling a quick and easy installation process and efficient positioning.

CN223707436UActive Publication Date: 2025-12-23GUANGZHOU JANGHO CURTAIN WALL SYST ENG +2
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Patent Information

Application Number
CN202422897576.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-12-23
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

In existing technologies, the installation process of residential unit windows requires a large amount of installation space, resulting in a low error tolerance rate and easy positional deviation, making it difficult to achieve quick and easy installation and adjustment between the building elevation and the structural elevation of the floor slab.

Method used

The residential unit window system with a split structure includes a top beam, a bottom beam, a bottom support unit, a top steel component, and a top cover unit. The top beam is positioned and fixed by rotation and plug-in connection, simplifying the installation process.

Benefits of technology

It effectively saves installation space, enables quick and easy installation of unit windows, solves the installation and adjustment problems between the building elevation and the structural elevation of the floor slab, and improves the error tolerance and positional accuracy of the installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a residential unit window system, and relates to the technical field of building curtain walls. The residential unit window system comprises a main body unit which comprises a frame-shaped structure formed by connecting a top cross beam, a first stand column, a bottom cross beam and a second stand column end to end, and window glass is connected into the frame-shaped structure; the bottom material lifting unit is connected to the indoor ground, and the bottom material lifting unit is rotatably connected with the bottom cross beam in an inserted mode; the top steel part is connected with a main body structure steel beam at the indoor top; the first cover material jacking unit is connected with the top steel part, and a containing cavity used for containing the top cross beam is formed in the bottom of the first cover material jacking unit; the second cover material ejecting unit abuts against the first cover material ejecting unit, and the second cover material ejecting unit abuts against the top cross beam so as to limit and fix the top cross beam in the containing cavity. According to the scheme, the technical problem of installation and adjustment of a limited space between the building elevation and the structural elevation of the floor plate is solved through the split design of the material covering and ejecting unit.
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Description

TECHNICAL FIELD

[0001] The utility model relates to building curtain wall technical field, especially point to a kind of residential unit window system. BACKGROUND

[0002] Unit window is the window body with decorative effect commonly used in modern large and high-rise building, and the installation and adjustment problem of limited space between building elevation and structural elevation is inevitable in the installation process of large size unit window, under the premise of guaranteeing quality, effect and safety, installation operation needs to be carried out in a more rapid and simple way.

[0003] In prior art, the installation of unit window needs to reserve larger installation space, and after being installed to specified position at upper end and lower end, hardware components are installed to carry out sealing operation, so that on the one hand, the fault tolerance rate of installation process is reduced, and on the other hand, position deviation is prone to occur, so a residential unit window system is urgently needed to realize rapid and simple installation and solve the installation and adjustment problem of limited space between building elevation and structural elevation. UTILITY MODEL CONTENT

[0004] The utility model provides a kind of residential unit window system, to solve the technical problem of installation and adjustment of limited space between building elevation and structural elevation.

[0005] To solve the above technical problems, the technical scheme of the present application is as follows:

[0006] The utility model provides a kind of residential unit window system, comprising: main unit, the main unit includes top crossbeam, first stand, bottom crossbeam and the frame type structure formed by the tail connection of second stand, the frame type structure is connected with window glass in the inside;

[0007] Base material unit, the base material unit is connected in indoor ground, the base material unit is rotatably inserted with the bottom crossbeam;

[0008] Top steel piece, the top steel piece is connected with the main structure steel beam of indoor top;

[0009] First cover top material unit, the first cover top material unit is connected with the top steel piece, and the first cover top material unit bottom is provided with the accommodating cavity for accommodating the top crossbeam;

[0010] Second cover top material unit, the second cover top material unit is connected with the first cover top material unit, and the second cover top material unit is abutted with the top crossbeam, to limit the top crossbeam in the accommodating cavity.

[0011] Optionally, the top steel piece comprises:

[0012] A first top connecting plate in an inverted L-shaped structure, a horizontal part of the first top connecting plate being welded to the main body structure steel beam;

[0013] A second top connecting plate in an L-shaped structure, a vertical part of the second top connecting plate being welded to the vertical part of the first top connecting plate.

[0014] Optionally, the first cover top material unit comprises:

[0015] A first cover top cross beam, a first cover top plate and a rotation limiting part being formed on a side close to the indoor side of the first cover top cross beam; the first cover top plate and the first cover top cross beam form the accommodating cavity, and the rotation limiting part abuts against a side close to the outdoor side of the top cross beam;

[0016] A wind pressure code front aluminum material in an inverted L-shaped structure, a vertical part of the wind pressure code front aluminum material abutting against the first cover top cross beam, a horizontal part of the wind pressure code front aluminum material abutting against the first cover top plate, and the horizontal part of the wind pressure code front aluminum material and the first cover top plate being connected to the horizontal part of the second top connecting plate through a connecting bolt set.

[0017] Optionally, the second cover top material unit comprises:

[0018] A second cover top cross beam in an L-shaped structure;

[0019] A second connecting plate formed at an end of a vertical part of the second cover top cross beam, the second connecting plate being connected to a first connecting plate at an end of the first cover top plate through a first bolt;

[0020] An abutting part formed at an end of a horizontal part of the second cover top cross beam, the abutting part abutting against a side close to the indoor side of the top cross beam;

[0021] A connecting clamping groove formed in an inner wall of the vertical part of the second cover top cross beam, the connecting clamping groove being insertedly matched with a connecting clamping part at an end of the first cover top plate;

[0022] A wind pressure code rear aluminum material, a bottom end of the wind pressure code rear aluminum material being insertedly matched with the abutting part;

[0023] A butt joint part formed at an upper end of the wind pressure code rear aluminum material, the butt joint part being insertedly matched with a butt joint clamping groove at an end of the horizontal part of the wind pressure code front aluminum material;

[0024] A second connecting part formed at the upper end of the wind pressure code rear aluminum material, the second connecting part being connected to a first connecting part at the end of the horizontal part of the wind pressure code front aluminum material through a second bolt.

[0025] Optionally, the bottom starting material unit comprises:

[0026] The base material positioning code in U-shaped structure is connected to the indoor ground through pre-buried bolt groups;

[0027] The base beam in door-shaped structure is connected to the inner cavity of the base material positioning code through the third bolt;

[0028] The arc-shaped plug-in part formed on the upper surface of the base beam is plug-in matched with the arc-shaped plug-in cavity on the bottom surface of the base beam;

[0029] The second plug-in limiting part formed on the upper surface of the base beam is flush with the side surface of the base beam close to the indoor; when the top beam completely enters the containing cavity, the second plug-in limiting part is abutted with the first plug-in limiting part on the bottom surface of the base beam, and the first plug-in limiting part is flush with the side surface of the base beam.

[0030] Optionally, the second flow guide cavity is formed between the second plug-in limiting part and the arc-shaped plug-in part, and the second flow guide cavity is communicated with the inner cavity bottom of the first column and the second column;

[0031] The arc-shaped plug-in part is provided with a flow guide hole at the bottom, and the flow guide hole is communicated with the second flow guide cavity;

[0032] The side surface of the base beam close to the flow guide hole is formed with a flow guide plate, and the flow guide plate extends to the outdoor;

[0033] The upper part of the first column and the second column is formed with a flow guide notch, and the flow guide notch is communicated with the inner cavity upper part of the first column and the second column;

[0034] The upper surface of the top beam is formed with a first flow guide cavity, and the first flow guide cavity is communicated with the flow guide notch.

[0035] Optionally, the base material unit further comprises:

[0036] The first recess is formed on the bottom surface of the second plug-in limiting part and the arc-shaped plug-in part;

[0037] The second reinforcing part in U-shaped structure is located in the second flow guide cavity, the second reinforcing part is attached to the inner wall and the inner bottom surface of the second flow guide cavity, and the two ends of the open end of the second reinforcing part are respectively plug-in matched with the two first recesses;

[0038] The second recess is formed on the inner wall bottom of the inner cavity of the base beam;

[0039] The first reinforcing part in door-shaped structure is plug-in matched with the two second recesses at the two ends of the open end.

[0040] Optionally, the pre-buried bolt set comprises:

[0041] a pre-buried groove member pre-buried in the indoor floor;

[0042] a pre-buried bolt slidingly arranged inside the pre-buried groove member, an upper end of the pre-buried bolt penetrating an adjusting groove in the inner bottom surface of the base material positioning code, and an adjusting nut threadedly connected to the upper end of the pre-buried bolt;

[0043] a pressing plate sleeved on the upper end of the pre-buried bolt, the pressing plate being located between the adjusting nut and the inner bottom surface of the base material positioning code;

[0044] The extending direction of the adjusting groove is perpendicular to the extending direction of the pre-buried groove member.

[0045] Optionally, a floor skirting board is formed on the side close to the indoor space, and a cavity for accommodating the second plug-in limiting part is formed between the floor skirting board and the first plug-in limiting part.

[0046] Optionally, at least one abutting rubber strip is arranged on the outer side of each of the first and second vertical columns.

[0047] The outer side of the first vertical column is formed with at least one abutting plug-in part, and the abutting plug-in part is plug-in matched with the abutting plug-in cavity of the outer side of the second vertical column.

[0048] The above-mentioned scheme of the utility model has at least the following beneficial effects:

[0049] In the above-mentioned scheme of the utility model, the top cross beam and the bottom cross beam are respectively arranged at two ends of the window glass, the base material unit is connected to the floor in the indoor space, the main body structure steel beam is connected to the ceiling in the indoor space, the top steel part is connected to the main body structure steel beam at the top of the indoor space, the first cover base material unit is connected to the top steel part, the second cover base material unit is connected to the first cover base material unit, and the second cover base material unit abuts against the top cross beam. The first cover base material unit is provided with an accommodating cavity at the bottom for accommodating the top cross beam. The base material unit is rotatably plug-in connected to the bottom cross beam. The cover base material adopts a split structure. The first cover base material unit is fixedly arranged below the top steel part. During installation, the lower surface of the bottom cross beam is first rotatably plug-in connected to the base material unit. Then, the main body unit is rotated. When the top cross beam is rotated to the inside of the accommodating cavity, the second cover base material unit is connected to the first cover base material unit. The top cross beam is limited and fixed in the accommodating cavity. The installation of the residential unit window system is realized. Since the main body unit reaches the specified position in a rotating manner, the space required for installing the residential unit window system can be effectively saved. The installation problem of the limited space between the floor plate building elevation and the structure elevation is solved. BRIEF DESCRIPTION OF DRAWINGS

[0050] Figure 1 is a vertical sectional view of the residential unit window system of the utility model;

[0051] Figure 2 is a vertical sectional view of the main unit in the residential unit window system of the utility model;

[0052] Figure 3 is a butt joint overhead sectional view between adjacent main units in the residential unit window system of the utility model;

[0053] Figure 4 is a vertical sectional view of the top steel piece in the residential unit window system of the utility model;

[0054] Figure 5 is a vertical sectional view of the first cover material unit in the residential unit window system of the utility model;

[0055] Figure 6 is a vertical sectional view of the second cover material unit in the residential unit window system of the utility model;

[0056] Figure 7 is a vertical sectional view of the first cover material unit and the second cover material unit after being connected in the residential unit window system of the utility model;

[0057] Figure 8 is a vertical sectional view of the bottom cross beam in the residential unit window system of the utility model;

[0058] Figure 9 is a vertical sectional view of the bottom material unit in the residential unit window system of the utility model;

[0059] Figure 10 is a vertical sectional view of the plug-in connection between the bottom cross beam and the bottom material unit in the residential unit window system of the utility model;

[0060] Figure 11 is a vertical sectional view of the installation step one of the residential unit window system of the utility model;

[0061] Figure 12 is a vertical sectional view of the installation step two of the residential unit window system of the utility model;

[0062] Figure 13 is a vertical sectional view of the installation step three of the residential unit window system of the utility model;

[0063] Figure 14 is a vertical sectional view of the installation step four of the residential unit window system of the utility model.

[0064] Explanation of reference signs:

[0065] 1, main unit; 11, window glass; 12, top cross beam; 121, first flow guide cavity; 13, bottom cross beam; 131, first plug-in limiting part; 132, arc-shaped plug-in cavity; 133, ground skirting board; 14, first vertical column; 141, butt plug-in part; 15, second vertical column; 151, butt plug-in cavity; 16, collision rubber strip; 17, flow guide notch; 2, top steel piece; 21, first top connecting plate; 22, second top connecting plate; 3, first cover top material unit; 31, first cover top plate; 32, rotation limiting part; 33, connecting clamping part; 34, front aluminum material of wind pressure code; 341, first connecting part; 342, butt clamping groove; 35, connecting bolt set; 36, first cover top cross beam; 37, first connecting plate; 4, second cover top material unit; 41, second cover top cross beam; 42, abutting part; 43, second connecting plate; 44, first bolt; 45, connecting clamping groove; 46, rear aluminum material of wind pressure code; 461, second connecting part; 462, butt part; 47, second bolt; 5, base material unit; 51, base cross beam; 511, second plug-in limiting part; 512, arc-shaped plug-in part; 513, second flow guide cavity; 514, flow guide plate; 515, flow guide hole; 516, first groove; 517, second groove; 52, base material positioning code; 521, adjusting groove; 53, third bolt; 54, first reinforcing piece; 55, pre-buried bolt set; 551, pre-buried groove piece; 552, pre-buried bolt; 553, pressing plate; 554, adjusting nut; 56, second reinforcing piece; 6, main structure steel beam. DETAILED DESCRIPTION

[0066] Exemplary embodiments of the present application will be described herein below with reference to the accompanying drawings. While exemplary embodiments of the present application are illustrated, it is to be understood that the application is not to be limited to the embodiments described herein, which are presented as examples. Rather, the present application is to cover all modifications, equivalents, and alternatives falling within the scope of the present application. An obvious object of the present application is to provide a residential unit window system.

[0067] As shown in the drawings, Figures 1 to 10 The embodiment of the present application proposes a residential unit window system, which comprises a main unit 1, wherein the main unit 1 comprises a frame structure formed by a top cross beam 12, a first vertical column 14, a bottom cross beam 13 and a second vertical column 15 connected in a head-to-tail manner, and a window glass 11 connected inside the frame structure.

[0068] A base material unit 5 is connected to the indoor ground, and the base material unit 5 is rotatably plug-in connected with the bottom cross beam 13.

[0069] A top steel piece 2 is connected with a main structure steel beam 6 of the indoor top.

[0070] The first cover material unit 3 is connected with the top steel piece 2, and the bottom of the first cover material unit 3 is provided with a containing cavity for containing the top cross beam 12.

[0071] The second cover material unit 4 is connected with the first cover material unit 3, and the second cover material unit 4 abuts against the top cross beam 12 to limit and fix the top cross beam 12 inside the containing cavity.

[0072] In the embodiment, the top cross beam 12 and the bottom cross beam 13 are respectively installed at two ends of the window glass 11, the bottom material unit 5 is connected to the floor in the room, the main body structure steel beam 6 is connected to the ceiling in the room, the top steel piece 2 is connected with the main body structure steel beam 6 at the top of the room, the first cover material unit 3 is connected with the top steel piece 2, the second cover material unit 4 is connected with the first cover material unit 3, and the second cover material unit 4 abuts against the top cross beam 12. The bottom of the first cover material unit 3 is provided with a containing cavity for containing the top cross beam 12, the bottom material unit 5 is rotatably connected with the bottom cross beam 13 in a plug-in manner, the cover material adopts a split structure, the first cover material unit 3 is fixedly arranged below the top steel piece 2, during installation, the lower surface shape of the bottom cross beam 13 is rotatably connected with the plug-in connection of the bottom material unit 5, then the main body unit 1 is rotated, when the top cross beam 12 is rotated to the inside of the containing cavity, the second cover material unit 3 and the first cover material unit 3 are connected, the top cross beam 12 is limited and fixed in the containing cavity, the installation of the residential unit window system is realized, since the main body unit 1 reaches the specified position in a rotating manner, the space required for installing the residential unit window system can be effectively saved, the installation problem of the limited space between the floor slab building elevation and the structure elevation is solved.

[0073] In an optional embodiment of the utility model, the first top connecting plate 21 is in inverted L type structure, the horizontal part of first top connecting plate 21 is welded with main body structure steel beam 6;

[0074] The second top connecting plate 22 is in L type structure, the vertical part of second top connecting plate 22 is welded with the vertical part of first top connecting plate 21.

[0075] In the embodiment, the top steel piece 2 adopts split design, including first top connecting plate 21 and second top connecting plate 22, the horizontal part of first top connecting plate 21 and the vertical part of second top connecting plate 22 are welded with the vertical part of first top connecting plate 21, and the welding position can be adjusted according to actual engineering needs, the position in three-dimensional space is freely adjusted, and the installation problem of the limited space between the floor slab building elevation and the structure elevation is further solved.

[0076] In an optional embodiment of the utility model, the first cover top material unit 3 comprises:

[0077] The first cover top crossbeam 36 is formed with a first cover top plate 31 and a rotation limiting part 32 on the side close to the indoor side; the first cover top plate 31 and the first cover top crossbeam 36 form the accommodating cavity, and the rotation limiting part 32 abuts against the side of the top crossbeam 12 close to the outdoor side;

[0078] The wind pressure code front aluminum material 34 in inverted L-shaped structure abuts against the first cover top crossbeam 36, the horizontal part of the wind pressure code front aluminum material 34 abuts against the first cover top plate 31, and the horizontal part of the wind pressure code front aluminum material 34 and the first cover top plate 31 are connected with the horizontal part of the second top connecting plate 22 through the connecting bolt group 35.

[0079] In the embodiment, the rotation limiting part 32 is used to determine the rotation position end point of the main unit 1, when the side of the top crossbeam 12 close to the outdoor side contacts the rotation limiting part 32, it means that the main unit 1 is rotated to the specified position inside the accommodating cavity in the installation process, wherein the contact surface of the rotation limiting part 32 and the top crossbeam 12 can also be provided with a rubber strip to reduce the contact wear and prolong the service life. The wind pressure code front aluminum material 34 is arranged inside the accommodating cavity, and the shape is inverted L-shaped structure, the wind pressure code front aluminum material 34 is connected with the first cover top crossbeam 36, the first cover top plate 31 and the second top connecting plate 22 at the same time, and the connection positions and stress directions are different, which is used to increase the support strength and improve the stability of the system.

[0080] In an optional embodiment of the utility model, the second cover top crossbeam 41 is in L-shaped structure;

[0081] The second connecting plate 43 formed at the vertical part end of the second cover top crossbeam 41 is connected with the first connecting plate 37 at the end of the first cover top plate 31 through the first bolt 44;

[0082] The abutting part 42 formed at the horizontal part end of the second cover top crossbeam 41 abuts against the side of the top crossbeam 12 close to the indoor side;

[0083] The connecting clamping groove 45 formed in the inner wall of the vertical part of the second cover top crossbeam 41 is inserted and matched with the connecting clamping part 33 at the end of the first cover top plate 31;

[0084] The wind pressure code rear aluminum material 46 is inserted and matched with the abutting part 42 at the bottom end;

[0085] a butt joint part 462 formed on the upper end of the rear aluminum material 46 of the wind pressure code, which is inserted into the butt joint clamping groove 342 of the horizontal part end of the front aluminum material 34 of the wind pressure code;

[0086] a second connecting part 461 formed on the upper end of the rear aluminum material 46 of the wind pressure code, which is connected to the first connecting part 341 of the horizontal part end of the front aluminum material 34 of the wind pressure code through the second bolt 47.

[0087] In the embodiment, the second connecting plate 43 is connected to the first connecting plate 37 of the end of the first cover top plate 31 through the first bolt 44, and the abutting part 42 abuts against the side of the top cross beam 12 close to the indoor side, wherein the contact surface of the abutting part 42 and the top cross beam 12 can be provided with a rubber strip to reduce contact wear and prolong service life, and the connecting clamping groove 45 is inserted into the connecting clamping part 33 of the end of the first cover top plate 31, wherein the connecting clamping groove 45 is provided with a rubber strip inside to provide reliable water and air tightness by sealing the joint with the rubber strip, and to achieve “dry sealing” to reduce the amount of on-site glue. The bottom end of the rear aluminum material 46 of the wind pressure code is inserted into the abutting part 42, and the butt joint part 462 is inserted into the butt joint clamping groove 342 of the horizontal part end of the front aluminum material 34 of the wind pressure code, wherein the inclined surfaces of the butt joint part 462 and the butt joint clamping groove 342 are matched with each other to provide inclined support force to improve the stability of the system, and the second connecting part 461 is connected to the first connecting part 341 of the horizontal part end of the front aluminum material 34 of the wind pressure code through the second bolt 47. Therefore, the second cover top material unit 4 is connected to the top cross beam 12 inside the containing cavity by limiting and fixing the top cross beam 12 through the mutual connection of the second connecting plate 43, the first cover top plate 31, the first connecting plate 37, the abutting part 42, the top cross beam 12, the connecting clamping groove 45, the rear aluminum material 46 of the wind pressure code, the butt joint part 462, the front aluminum material 34 of the wind pressure code, the butt joint clamping groove 342, and the second connecting part 461, further solving the problem of limited space between the floor slab building elevation and the structure elevation.

[0088] In an optional embodiment of the utility model, the U-shaped structure of the bottom material positioning code 52 is connected to the indoor ground through the embedded bolt group 55;

[0089] The door-shaped structure of the bottom cross beam 51 is connected to the inner cavity of the 52 through the third bolt 53;

[0090] The arc-shaped insertion part 512 is formed on the upper surface of the bottom cross beam 51, which is inserted into the arc-shaped insertion cavity 132 of the bottom surface of the bottom cross beam 13;

[0091] A second plug-in limiting part 511 is formed on the upper surface of the bottoming cross beam 51, and the second plug-in limiting part 511 and the bottoming cross beam 51 are flush with the side surface close to the room; when the top cross beam 12 completely enters the accommodating cavity, the second plug-in limiting part 511 abuts against a first plug-in limiting part 131 on the bottom surface of the bottom cross beam 13, and the first plug-in limiting part 131 is flush with the side surface of the bottom cross beam 13.

[0092] In the embodiment, the specific structure of the plug-in connection between the bottoming material unit (5) and the bottom cross beam (13) is mainly described.

[0093] The arc-shaped plug-in part 512 is plug-in matched with an arc-shaped plug-in cavity 132 on the bottom surface of the bottom cross beam 13, and the surface radii of the two are the same, wherein the radius of the arc-shaped plug-in part 512 is slightly smaller than that of the arc-shaped plug-in cavity 132, and the two are gap matched, so as to ensure a certain rotational freedom; when being installed, the arc-shaped plug-in part 512 is plug-in matched with the arc-shaped plug-in cavity 132, so that the installation position of the whole system is ensured to be correct; in addition, the contact surfaces of the second plug-in limiting part 511 and the first plug-in limiting part 131 and the two side surfaces of the arc-shaped plug-in part 512 are all provided with adhesive tapes, so as to reduce the contact wear and prolong the service life; the installation of the traditional residential unit window system needs to reserve a large installation space, and the upper end and the lower end are simultaneously installed to the specified position; since the shape feature of the arc-shaped surface is that the diameters in any direction are equal, the installation of the bottoming cross beam 51 and the top cross beam 12 can be realized at any installation angle, the installation process is further simplified, and the problem of the installation of the limited space between the floor slab building elevation and the structure elevation is further solved.

[0094] In an optional embodiment of the utility model, a second flow guide cavity 513 is formed between the second plug-in limiting part 511 and the arc-shaped plug-in part 512, and the second flow guide cavity 513 is communicated with the inner cavity bottom of the first stand column 14 and the second stand column 15;

[0095] The arc-shaped plug-in part 512 is plug-in matched with an arc-shaped plug-in cavity 132 on the bottom surface of the bottom cross beam 13, and the surface radii of the two are the same, wherein the radius of the arc-shaped plug-in part 512 is slightly smaller than that of the arc-shaped plug-in cavity 132, and the two are gap matched, so as to ensure a certain rotational freedom; when being installed, the arc-shaped plug-in part 512 is plug-in matched with the arc-shaped plug-in cavity 132, so that the installation position of the whole system is ensured to be correct; in addition, the contact surfaces of the second plug-in limiting part 511 and the first plug-in limiting part 131 and the two side surfaces of the arc-shaped plug-in part 512 are all provided with adhesive tapes, so as to reduce the contact wear and prolong the service life; the installation of the traditional residential unit window system needs to reserve a large installation space, and the upper end and the lower end are simultaneously installed to the specified position; since the shape feature of the arc-shaped surface is that the diameters in any direction are equal, the installation of the bottoming cross beam 51 and the top cross beam 12 can be realized at any installation angle, the installation process is further simplified, and the problem of the installation of the limited space between the floor slab building elevation and the structure elevation is further solved.

[0096] The arc-shaped plug-in part 512 is plug-in matched with an arc-shaped plug-in cavity 132 on the bottom surface of the bottom cross beam 13, and the surface radii of the two are the same, wherein the radius of the arc-shaped plug-in part 512 is slightly smaller than that of the arc-shaped plug-in cavity 132, and the two are gap matched, so as to ensure a certain rotational freedom; when being installed, the arc-shaped plug-in part 512 is plug-in matched with the arc-shaped plug-in cavity 132, so that the installation position of the whole system is ensured to be correct; in addition, the contact surfaces of the second plug-in limiting part 511 and the first plug-in limiting part 131 and the two side surfaces of the arc-shaped plug-in part 512 are all provided with adhesive tapes, so as to reduce the contact wear and prolong the service life; the installation of the traditional residential unit window system needs to reserve a large installation space, and the upper end and the lower end are simultaneously installed to the specified position; since the shape feature of the arc-shaped surface is that the diameters in any direction are equal, the installation of the bottoming cross beam 51 and the top cross beam 12 can be realized at any installation angle, the installation process is further simplified, and the problem of the installation of the limited space between the floor slab building elevation and the structure elevation is further solved.

[0097] The arc-shaped plug-in part 512 is plug-in matched with an arc-shaped plug-in cavity 132 on the bottom surface of the bottom cross beam 13, and the surface radii of the two are the same, wherein the radius of the arc-shaped plug-in part 512 is slightly smaller than that of the arc-shaped plug-in cavity 132, and the two are gap matched, so as to ensure a certain rotational freedom; when being installed, the arc-shaped plug-in part 512 is plug-in matched with the arc-shaped plug-in cavity 132, so that the installation position of the whole system is ensured to be correct; in addition, the contact surfaces of the second plug-in limiting part 511 and the first plug-in limiting part 131 and the two side surfaces of the arc-shaped plug-in part 512 are all provided with adhesive tapes, so as to reduce the contact wear and prolong the service life; the installation of the traditional residential unit window system needs to reserve a large installation space, and the upper end and the lower end are simultaneously installed to the specified position; since the shape feature of the arc-shaped surface is that the diameters in any direction are equal, the installation of the bottoming cross beam 51 and the top cross beam 12 can be realized at any installation angle, the installation process is further simplified, and the problem of the installation of the limited space between the floor slab building elevation and the structure elevation is further solved.

[0098] The first flow guide cavity 121 is formed on the upper surface of the top cross beam 12 and is communicated with the flow guide notch 17.

[0099] In this embodiment, when the indoor environment humidity is large or the outdoor environment precipitation is more, the water vapor condensation at the top is gathered in the first flow guide cavity 121, enters the inner cavities of the first vertical column 14 and the second vertical column 15 through the flow guide notch 17, then enters the second flow guide cavity 513, and finally is guided to the outdoor through the flow guide hole 515 and the flow guide plate 514, so that the whole drainage system is formed and the drainage function is realized.

[0100] In an optional embodiment of the utility model, the base material unit 5 further comprises:

[0101] The first recess 516 is formed on the bottom surface of the second plug-in limiting part 511 and the arc-shaped plug-in part 512;

[0102] The second reinforcing part 56 in U-shaped structure is located in the second flow guide cavity 513, the second reinforcing part 56 is attached to the inner wall and the inner bottom surface of the second flow guide cavity 513, and the two ends of the open end of the second reinforcing part 56 are respectively plugged in the two first recesses 516;

[0103] The second recess 517 is formed on the inner wall bottom of the inner cavity of the base cross beam 51;

[0104] The first reinforcing part 54 in door-shaped structure is plugged in the two second recesses 517 at the two ends of the open end.

[0105] In this embodiment, the two ends of the open end of the second reinforcing part 56 are respectively plugged in the two first recesses 516, the second reinforcing part 56 is attached to the inner wall and the inner bottom surface of the second flow guide cavity 513, and is used for supporting the load stable space structure. The two ends of the open end of the first reinforcing part 54 are respectively plugged in the two second recesses 517. The top surface of the first reinforcing part 54 is attached to the inner wall of the base cross beam 51 and is also used for supporting the load and improving the stability of the space structure.

[0106] In an optional embodiment of the utility model, the embedded bolt group 55 comprises:

[0107] The embedded groove part 551 is embedded in the indoor ground;

[0108] The embedded bolt 552 is slidably arranged in the embedded groove part 551, the upper end of the embedded bolt 552 penetrates the adjusting groove 521 in the inner bottom surface of the base material positioning code 52, and the upper end of the embedded bolt 552 is threadedly connected with the adjusting nut 554;

[0109] The pressure plate 553 is fitted onto the upper end of the pre-embedded bolt 552, and the pressure plate 553 is located between the adjusting nut 554 and the inner bottom surface of the bottom material positioning code 52.

[0110] The extension direction of the adjustment groove 521 is perpendicular to the extension direction of the pre-embedded groove 551.

[0111] In this embodiment, the bottom material positioning code 52 is provided with a plurality of threaded holes along the vertical direction, with the threaded holes spaced at the same interval. The lower side wall of the bottom beam 51 is also provided with a plurality of threaded holes spaced at the same interval along the vertical direction. Depending on the building elevation, different threaded holes are used to cooperate with each other. Then, the third bolt 53 is used to fix the bottom material positioning code 52, the bottom beam 51 and the first reinforcing member 54 in sequence to adapt to different building elevations. In addition, by adjusting the position of the pre-embedded bolt 552 in the pre-embedded groove 551, the positional deviation in the vertical direction is adjusted together to achieve precise positioning in the vertical direction. The adjusting groove 521 and the pressure plate 553 are uniformly provided with positioning serrations of the same specification. The pressure plate 553 can adjust the relative position of the in-and-out direction by cooperating with the positioning serrations. When a positional deviation of the in-and-out direction occurs during installation, the relative position of the in-and-out direction can be adjusted by changing the cooperation between the pressure plate 553 and the positioning serrations, and then fixed by the adjusting nut 554. This adjusts the positional deviation of the adjusting groove 521 in the in-and-out direction, achieves precise positioning in the in-and-out direction, and further solves the problem of positional adjustment in the limited space between the floor slab building elevation and the structural elevation.

[0112] In an optional embodiment of the present invention, a floor skirting board 133 is formed on the side of the bottom crossbeam 13 near the interior, and a cavity for accommodating the second insertion limiting part 511 is formed between the floor skirting board 133 and the first insertion limiting part 131.

[0113] In this embodiment, the bottom crossbeam 13 is integrated with the floor skirting board, saving structural space and reducing the height of the skirting board. This makes the aluminum keel interior neat and uniform, and the finishing of the interior floor is simpler, improving the quality of the residence. At the same time, the unit sealing line is moved forward to ensure the airtightness of the curtain wall.

[0114] In an optional embodiment of this utility model, at least one anti-collision strip 16 is provided on the outer side of both the first column 14 and the second column 15.

[0115] The outer surface of the first column 14 is formed with at least one mating insertion part 141, which is mated and engaged with the mating insertion cavity 151 on the outer surface of the second column 15.

[0116] In this embodiment, the first column 14 and the second column 15 adopt indoor round corner design, which is more ergonomic, and the aluminum batten indoor is neat and tidy. The first column 14 and the second column 15 can enhance the overall sealing performance, and the structure design of the multi-cavity and multi-sealing strip can also play a role in dustproof and sound insulation.

[0117] Specific installation process:

[0118] Install the top steel piece 2, as shown in Figure 11 , adjust the position of the first top connecting plate 21 according to the installation position requirements, and weld the first top connecting plate 21 and the main body structure steel beam 6; adjust the position of the second top connecting plate 22, and weld the second top connecting plate 22 and the first top connecting plate 21;

[0119] Install the first cover top material unit 3, as shown in Figure 11 , make the vertical part of the wind pressure code front aluminum material 34 abut against the first cover top beam 36, and the horizontal part of the wind pressure code front aluminum material 34 abut against the first cover top plate 31, so that the first cover top beam 36 is close to the outdoor, and the accommodating cavity is close to the indoor, and the wind pressure code front aluminum material 34, the first cover top beam 36 and the horizontal part of the second top connecting plate 22 are connected through the connecting bolt group 35;

[0120] Install the bottom material unit 5, as shown in Figure 11 , make the upper end of the embedded bolt 552 pass through the adjusting groove 521 and the pressing plate 553 in sequence, adjust the position of the embedded bolt 552 in the embedded groove piece 551 according to the installation position requirements, adjust the position of the bottom material positioning code 52 through the adjusting groove 521, complete the position adjustment, screw the adjusting nut 554 on the end of the embedded bolt 552, make the adjusting nut 554 fully contact with the pressing plate 553, and complete the installation of the bottom material positioning code 52; adjust the connection height of the bottom beam 51 and the bottom material positioning code 52 according to the installation height requirements, and connect the bottom beam 51 and the bottom material positioning code 52 through the third bolt 53;

[0121] Install the main body unit 1, as shown in Figure 12 and Figure 13As shown, the main body unit 1 is moved indoors to the bottom material unit 5, and the bottom crossbeam 13 is inserted into the bottom material unit 5. Specifically, the arc-shaped insertion part 512 is inserted into the arc-shaped insertion cavity 132, and the first insertion limiting part 131 is inserted between the second insertion limiting part 511 and the arc-shaped insertion part 512. With the cooperation of the arc-shaped insertion part 512 and the arc-shaped insertion cavity 132, the main body unit 1 is pushed to rotate, so that the top crossbeam 13 abuts against the rotation limiting part 32, and the second insertion limiting part 511 abuts against the first insertion limiting part 131, so that the top crossbeam 13 is completely inserted into the cavity. Through the cooperation of the arc-shaped insertion part 512 and the arc-shaped insertion cavity 132, the sliding of the main body unit 1 can be realized. At the same time, with the cooperation of the insertion of the docking insertion part 141 and the docking insertion cavity 151, the insertion connection between adjacent main body units 1 can be realized.

[0122] Install the second cover material unit 4, such as Figure 14 As shown, the docking part 462 mates with the docking slot 342, and the second connecting part 461 is connected to the first connecting part 341 by the second bolt 47, thus completing the installation of the aluminum material 46 after the wind pressure code; the abutting part 42 is inserted into the bottom end of the aluminum material 46 after the wind pressure code, and the connecting slot 45 is inserted into the connecting slot 33, and the second connecting plate 43 is connected to the first connecting plate 37 by the first bolt 44, thus realizing the installation of the second cover material unit 4; the abutting part 42 abuts against the top crossbeam 12, thus limiting and fixing the top crossbeam 12 inside the receiving cavity, thus completing the installation and fixing of the main body unit 1;

[0123] By installing and fixing the main unit 1 through the above installation process, the space required for installing the residential unit window system can be effectively saved, and the installation can be quick and easy, solving the problem of limited space between the building elevation of the floor slab and the structural elevation.

[0124] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.

Claims

1. A residential unit window system, characterized in that The utility model relates to a kind of steel window, including: Main unit (1), the main unit (1) includes top crossbeam (12), first column (14), bottom crossbeam (13) and the frame structure formed by the head-to-tail connection of second column (15), window glass (11) is connected inside the frame structure; Bottom material unit (5), the bottom material unit (5) is connected in indoor ground, and the bottom material unit (5) is rotatably inserted with the bottom crossbeam (13); Top steel piece (2), the top steel piece (2) is connected with the main structure steel beam (6) of indoor top; First cover top material unit (3), the first cover top material unit (3) is connected with the top steel piece (2), and the first cover top material unit (3) bottom is provided with the accommodating cavity for accommodating the top crossbeam (12); Second cover top material unit (4), the second cover top material unit (4) is connected with the first cover top material unit (3), and the second cover top material unit (4) is abutted with the top crossbeam (12), to limit the top crossbeam (12) in the accommodating cavity inside fixed.

2. The residential unit window system of claim 1, wherein, The top steel piece (2) includes: First top connecting plate (21) of inverted L type structure, the horizontal portion of the first top connecting plate (21) is welded with main structure steel beam (6); Second top connecting plate (22) of L type structure, the vertical portion of the second top connecting plate (22) is welded with the vertical portion of the first top connecting plate (21).

3. The residential unit window system of claim 2, wherein, The first cover top material unit (3) includes: First cover top crossbeam (36), the first cover top crossbeam (36) is formed with first cover top plate (31) and rotation limiting portion (32) near the side of indoor;The first cover top plate (31) and the first cover top crossbeam (36) form the accommodating cavity, and the rotation limiting portion (32) is abutted with the top crossbeam (12) near the side of outdoor; Wind pressure code front aluminum material (34) of inverted L type structure, the vertical portion of the wind pressure code front aluminum material (34) is abutted with the first cover top crossbeam (36), the horizontal portion of the wind pressure code front aluminum material (34) is abutted with the first cover top plate (31), and the horizontal portion of the wind pressure code front aluminum material (34) and the first cover top plate (31) are connected with the horizontal portion of the second top connecting plate (22) by connecting bolt group (35).

4. The residential unit window system of claim 3, wherein, The second cover top material unit (4) includes: Second cover top crossbeam (41) of L type structure; Second connecting plate (43) shaped in the vertical portion end of the second cover top crossbeam (41), and the second connecting plate (43) is connected with the first connecting plate (37) of the end of the first cover top plate (31) by first bolt (44); Abutment (42) shaped in the horizontal portion end of the second cover top crossbeam (41), and the abutment (42) is abutted with the side of indoor of the top crossbeam (12); Connecting clamping groove (45) shaped in the inner wall of the vertical portion of the second cover top crossbeam (41), and the connecting clamping groove (45) is inserted with the connecting clamping portion (33) of the end of the first cover top plate (31) and cooperates; The wind pressure code after the aluminum material (46) is inserted and matched with the abutting part (42) at the bottom end; The butt joint part (462) formed on the upper end of the wind pressure code after the aluminum material (46) is inserted and matched with the butt joint clamping groove (342) of the horizontal part end of the wind pressure code before the aluminum material (34); The second connecting part (461) formed on the upper end of the wind pressure code after the aluminum material (46) is connected with the first connecting part (341) of the horizontal part end of the wind pressure code before the aluminum material (34) through the second bolt (47).

5. The residential unit window system of claim 1, wherein, The bottoming material unit (5) comprises: The bottoming material positioning code (52) in the U-shaped structure is connected to the indoor ground through the pre-buried bolt group (55); The bottoming cross beam (51) in the door-shaped structure is connected to the inner cavity of the bottoming material positioning code (52) through the third bolt (53); The arc-shaped insertion part (512) formed on the upper surface of the bottoming cross beam (51) is inserted and matched with the arc-shaped insertion cavity (132) of the bottom surface of the bottom cross beam (13); The second insertion limiting part (511) formed on the upper surface of the bottoming cross beam (51) is flush with the side surface close to the indoor of the bottoming cross beam (51); when the top cross beam (12) completely enters the containing cavity, the second insertion limiting part (511) abuts against the first insertion limiting part (131) of the bottom surface of the bottom cross beam (13), and the first insertion limiting part (131) is flush with the side surface of the bottom cross beam (13).

6. The residential unit window system of claim 5, wherein, The second flow guide cavity (513) is formed between the second insertion limiting part (511) and the arc-shaped insertion part (512), and the second flow guide cavity (513) is in communication with the inner cavities of the first stand column (14) and the second stand column (15); The flow guide hole (515) is arranged at the bottom of the arc-shaped insertion part (512) and is in communication with the second flow guide cavity (513); The flow guide plate (514) is formed on the side surface of the bottoming cross beam (51) close to the flow guide hole (515) and extends outward; The flow guide notch (17) is formed on the upper part of the first stand column (14) and the second stand column (15) and is in communication with the inner cavities of the first stand column (14) and the second stand column (15); The first flow guide cavity (121) is formed on the upper surface of the top cross beam (12) and is in communication with the flow guide notch (17).

7. The residential unit window system of claim 6, wherein, The bottoming material unit (5) further comprises: The first recess (516) is formed on the bottom surface of the second insertion limiting part (511) and the arc-shaped insertion part (512); A second reinforcing member (56) in a U-shaped structure is located in the second flow guide cavity (513), and the second reinforcing member (56) is attached to the inner wall and the inner bottom surface of the second flow guide cavity (513), and the two ends of the open end of the second reinforcing member (56) are respectively plugged into the two first grooves (516); A second groove (517) is formed in the inner wall bottom of the inner cavity of the bottom beam (51); A first reinforcing member (54) in a door-shaped structure, the two ends of the open end of the first reinforcing member (54) are respectively plugged into the two second grooves (517).

8. The residential unit window system of claim 5, wherein, The pre-buried bolt group (55) comprises: A pre-buried groove member (551) pre-buried in the indoor floor; A pre-buried bolt (552) slidingly arranged inside the pre-buried groove member (551), the upper end of the pre-buried bolt (552) penetrates the adjusting groove (521) in the inner bottom surface of the base material positioning code (52), and the upper end of the pre-buried bolt (552) is threadedly connected with an adjusting nut (554); A pressing plate (553) sleeved on the upper end of the pre-buried bolt (552), the pressing plate (553) is located between the adjusting nut (554) and the inner bottom surface of the base material positioning code (52); The extending direction of the adjusting groove (521) is perpendicular to the extending direction of the pre-buried groove member (551).

9. The residential unit window system of claim 5, wherein, The bottom beam (13) is formed with a floor skirting board (133) near the side surface of the indoor, and the floor skirting board (133) and the first plug-in limiting part (131) form a cavity for accommodating the second plug-in limiting part (511).

10. The residential unit window system of claim 1, wherein, At least one butt joint plug-in part (141) is formed on the outer side surface of the first vertical column (14), and the butt joint plug-in part (141) is plugged into the butt joint plug-in cavity (151) on the outer side surface of the second vertical column (15). At least one butt joint plug-in part (141) is formed on the outer side surface of the first vertical column (14), and the butt joint plug-in part (141) is plugged into the butt joint plug-in cavity (151) on the outer side surface of the second vertical column (15).