Energy-saving shell system with multifunctional frame combination function
By designing an energy-saving shell system with multifunctional frames combined with functions, the adaptation problem between the frame shell system and the curtain wall structure is solved, and the flexible installation of window frames and the improvement of thermal insulation performance is achieved to meet the needs of different forms.
Patent Information
- Application Number
- CN202510434991.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2025-07-04
AI Technical Summary
The existing frame shell system has low adaptability when combined with curtain wall structure and is difficult to be compatible with sliding doors and photovoltaic systems, affecting the thermal insulation performance of the building.
Design an energy-saving housing system with the function of combining multifunctional frames. Through the joint and connection parts of the external butt frame and the internal butt frame, the window frames are flexiblely installed and fixed, compatibility is enhanced, and the thermal insulation effect is improved through the thermal insulation layer and dew collection mechanism.
It improves the compatibility of the curtain wall and the frame shell system, enhances the thermal insulation performance of the building, and effectively prevents dew from affecting the insulation layer, adapting to the installation needs of different forms.
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Figure CN120250840A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of frame enclosures, and particularly to an energy-saving enclosure system with multifunctional frame combination functions. Background Art
[0002] Based on the concept of energy conservation, currently, frame enclosure systems for high-rise residential buildings or commercial and residential complexes are being developed on the market, and such systems mainly adopt a double-layer window structure composed of aluminum and PVC.
[0003] Since curtain wall structures can be mass-produced in factories, have integrated specifications and are easy to construct, curtain wall structures are often used as external walls for high-rise residential buildings, commercial and residential complexes, buildings, etc.
[0004] However, there are deficiencies in the combined application of the double-layer door and window structure and the curtain wall structure of the existing frame enclosure system:
[0005] In order to apply the double-layer window structure to the curtain wall structure, it is necessary to connect the double-layer window structure to the curtain wall trunk (i.e., the keel) using hardware, or install the double-layer window structure on the inner trunk of the box-shaped curtain wall. However, the adaptability of the above two methods is relatively low, which damages the heat insulation performance of the building exterior wall structure. Moreover, if there are sliding doors, photovoltaic systems, etc. in the frame enclosure system, it is also relatively difficult to be compatible. Therefore, this application proposes a new technical solution. Summary of the Invention
[0006] In order to improve the compatibility between the curtain wall and the frame enclosure system, this application provides an energy-saving enclosure system with multifunctional frame combination functions.
[0007] This application provides an energy-saving enclosure system with multifunctional frame combination functions, adopting the following technical solution:
[0008] An energy-saving enclosure system with multifunctional frame combination functions, comprising:
[0009] An external docking frame, which is provided with two outer frame combination parts for installing an external window frame, and the two outer frame combination parts extend horizontally and are distributed vertically and horizontally;
[0010] An internal docking frame, one side of which is provided with an inner frame combination part and is used for installing an internal window frame;
[0011] A connecting part, which is arranged between the external docking frame and the internal docking frame and is used for connecting and fixing the external docking frame and the internal docking frame.
[0012] Optionally, the external docking frame includes an external connection block, a first external enclosing plate, and a second external enclosing plate. The first external enclosing plate and the second external enclosing plate are respectively connected to two ends of the external connection block. An outer frame joint is formed between the external connection block, the first external enclosing plate, and the second external enclosing plate. The connecting part is fixedly connected to the side of the second external enclosing plate facing away from the external connection block.
[0013] Optionally, the internal docking frame includes a support plate and a vertical plate. The support plate is connected to the side of the connecting part facing away from the external docking frame. The vertical plate is fixedly connected to the support plate, and a heat insulation layer and a coupling mechanism for coupling the heat insulation layer are formed between the vertical plate and the connecting part. An inner frame joint is formed between the vertical plate and the support plate.
[0014] Optionally, the coupling mechanism includes a first fixed section, a second fixed section, and a coupling block. The first fixed section and the second fixed section are respectively arranged on the side walls of the connecting part and the vertical plate, and are both arranged in an L shape. The openings of the first fixed section and the second fixed section face each other. The coupling block is arranged between the connecting part and the vertical plate, and coupling grooves for the ends of the first fixed section and the second fixed section to extend into and be fixed are respectively formed in the upper and lower ends of the coupling block along the longitudinal direction.
[0015] Optionally, a dew collection mechanism for collecting dew is arranged between the connecting part and the vertical plate. The dew collection mechanism includes a first connecting plate, a second connecting plate, a bent plate, and a limiting piece. One end of the limiting piece is fixedly connected to the side wall of the connecting part and forms a slot for the end of the first connecting plate to be clamped with the end of the first fixed section. The other end of the first connecting plate fits against the side wall of the connecting part and is fixedly connected to one end of the second connecting plate. The other end of the second connecting plate is clamped to the vertical plate. One end of the bent plate is fixedly connected to the second connecting plate, and the other end of the bent plate extends and bends towards the direction of the outer frame joint.
[0016] Optionally, an adjusting mechanism is further included for adjusting the size of the outer frame joint so that it can adapt to the installation of window frames with different thicknesses. The external connection block is hollow and has openings at both ends, and the adjusting mechanism is arranged in the inner cavity of the external connection block. The adjusting mechanism includes a threaded rod, a connecting plate, and a limiting block. The limiting block is fixedly connected to the second external enclosing plate. The inside of the limiting block is hollow and has openings at both ends. One end of the threaded rod passes through the limiting block and is rotatably connected to the second external enclosing plate, and the other end of the threaded rod extends out of the external connection block. The external connection block is fixedly connected to the first external enclosing plate. The first external enclosing plate is provided with a through hole for the threaded rod to slide through. The limiting block is provided with a limiting groove along the transverse direction. The connecting plate is threadedly sleeved on the threaded rod, and the connecting plate passes through the limiting groove and is fixed to the external connection block. The external window frame is slidably inserted between the first external enclosing plate and the second external enclosing plate.
[0017] Optionally, a positioning component is provided at one end of the threaded rod facing away from the outer enclosure two. The positioning component includes a fixed disk, a positioning rod, a connecting rod, a limiting spring, and a sliding disk. The end cross-section of the threaded rod is rectangular and is slidably connected to the fixed disk, such that the fixed disk is located within the through-hole. The fixed disk is provided with a positioning groove and a clamping groove. The clamping groove communicates with the positioning groove, and the clamping groove is disposed close to the outer enclosure two. One end of the connecting rod extends into the positioning groove and is fixedly connected to the positioning rod. The positioning rod abuts against the inner wall of the positioning groove. A baffle is fixedly connected to the side wall of the positioning groove. The sliding disk is slidably sleeved on the connecting rod, and the sliding disk abuts against the baffle. The two ends of the limiting spring are respectively fixedly connected to the sliding disk and the positioning rod, and the limiting spring is sleeved on the connecting rod. A plurality of fixing grooves are formed on the inner wall of the through-hole along its circumference, and the end of the positioning rod extends into the fixing groove.
[0018] Optionally, a groove is formed on the side wall of the outer enclosure two facing the outer connecting block. A locking component for locking the window frame is disposed within the groove. The locking component includes an adjusting rod, a clamping block, and a connecting column. One end of the adjusting rod is fixedly connected to the outer enclosure one, and the other end of the adjusting rod passes through the outer connecting block and extends into the groove. The clamping block is L-shaped, and the connection point between its vertical section and horizontal section is rotatably connected to the inner wall of the groove. A sliding groove is formed on the vertical section of the clamping block. The connecting column is fixedly connected to the end of the adjusting rod, and the connecting column extends into the sliding groove. The horizontal section of the clamping block extends out of the groove and abuts against the window frame.
[0019] Optionally, an abutting member for abutting against the window frame is provided on the horizontal section of the clamping block. The abutting member includes a telescopic spring and an abutting block. An installation groove is formed on the horizontal section of the clamping block. The telescopic spring is fixed within the installation groove and is fixedly connected to the abutting block. The abutting block abuts against the window frame.
[0020] In summary, the present application includes the following beneficial technical effects: The outer docking frame and the inner docking frame respectively form an outer frame joint for installing the outer window and an inner frame joint for installing the inner window, and the outer docking frame and the inner docking frame are connected through the connecting part, enabling the user to select a curtain wall or other different window forms for installation according to actual needs, thereby improving the compatibility between the curtain wall and the frame housing system. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is the overall structural schematic diagram of the embodiment of the present application;
[0022] Figure 2 is the installation schematic diagram of the sliding window form of the embodiment of the present application;
[0023] Figure 3 is the structural schematic diagram of the coupling mechanism of the embodiment of the present application;
[0024] Figure 4 is a cross-sectional view of the external connection block of the embodiment of the present application;
[0025] Figure 5 is a schematic structural diagram of the positioning component of the embodiment of the present application;
[0026] Figure 6 is a schematic structural diagram of the abutting member of the embodiment of the present application.
[0027] Explanation of reference numerals: 1, external docking frame; 11, external connection block; 12, first external enclosure; 13, second external enclosure; 14, outer frame joint; 2, internal docking frame; 21, support plate; 22, vertical plate; 241, first fixing section; 242, second fixing section; 243, coupling block; 244, coupling groove; 25, dew collection mechanism; 251, first connecting plate; 252, second connecting plate; 253, bent plate; 3, connecting portion; 4, adjusting mechanism; 41, threaded rod; 42, connecting plate; 43, limiting block; 44, limiting groove; 5, positioning component; 51, fixing disk; 511, positioning groove; 512, clamping groove; 513, baffle; 52, positioning rod; 53, connecting rod; 54, limiting spring; 55, sliding disk; 56, fixing groove; 57, locking component; 571, adjusting rod; 572, clamping block; 573, connecting column; 574, abutting member; 5741, telescopic spring; 5742, abutting block. Detailed Description of the Embodiment
[0028] The following will further describe the present application in detail Figures 1-6 in conjunction with the accompanying drawings.
[0029] The embodiment of the present application discloses an energy-saving housing system with a multi-functional frame combination function.
[0030] Referring to Figure 1 , the energy-saving housing system with a multi-functional frame combination function includes an external docking frame 1, an internal docking frame 2, and a connecting portion 3. Among them, the external docking frame 1 is connected to the internal docking frame 2 through the connecting portion 3 and is installed in the wall through the connecting portion 3.
[0031] The external docking frame 1 is provided with two outer frame joints 14, which are respectively distributed on the upper and lower sides of the outer frame joint frame and are horizontally extended. The window frame is installed through the outer frame joint 14, and the outer frame joint 14 can be adapted to different window frames.
[0032] One side of the internal docking frame 2 forms an inner frame joint and is used for installing the internal window frame.
[0033] Referring to Figure 2In this embodiment, a sliding window frame is used as an example of an external window: the sliding window body includes a sliding connecting window frame and a sliding connecting guide rail, wherein the sliding connecting guide rail is coupled and fixed in a joint portion of the external frame, and the sliding window frame is installed above the sliding connecting guide rail to realize the installation of the sliding window frame.
[0034] Through the above arrangement, when the user needs to install an external window in the external frame joint 14, the user can select a curtain wall, a sliding window frame, etc., and select an internal window for installation in the internal frame joint as needed. The internal frame joint is connected to the external frame joint 14 through the connecting part 3 to meet the user's choice and improve the compatibility between the curtain wall and the frame shell system.
[0035] Reference Figure 1 The external docking frame 1 includes an external connecting block 11, an external enclosure panel 1 12 and an external enclosure panel 2 13. The external enclosure panel 1 12 and the external enclosure panel 2 13 are vertically connected to the two ends of the external connecting block 11, and the external enclosure panel 1 12 and the external enclosure panel 2 13 extend to the upper and lower sides of the external connecting block 11, so that two upper and lower outer frame joints 14 are formed between the external connecting block 11 and the external enclosure panel 1 12 and the external enclosure panel 2 13. Grooves are provided on the side walls facing each other of the external enclosure panel 12 and the external enclosure panel 2 13 to facilitate the installation and fixation of the window frame. The connecting part 3 is fixed to the side of the external enclosure panel 2 13 away from the external connecting block 11 by bolts.
[0036] Reference Figure 1 The internal docking frame 2 includes a support plate 21 and a vertical plate 22. The support plate 21 is connected to the side of the connection portion 3 away from the external docking frame 1 and is used to support the installation of the inner window. The vertical plate 22 is vertically fixed to the support plate 21 by bolts, and the vertical plate 22 extends toward one side of the support plate 21, so that an inner frame joint is formed between the support plate 21 and the vertical plate 22, and the inner window is installed.
[0037] In one embodiment of the present application, a heat insulation layer is formed between the vertical plate 22 and the connecting portion 3, and the heat transfer of the outer window and the heat loss of the inner window are reduced by the heat insulation layer. A coupling mechanism is provided between the vertical plate 22 and the connecting portion 3, so that the heat insulation layer is coupled, and the connection between the connecting portion 3 and the vertical plate 22 is achieved by the coupling mechanism.
[0038] Reference Figure 3 The coupling mechanism includes a fixed section 1 241, a fixed section 2 and a coupling block 243. The cross-sections of the fixed section 1 241 and the fixed section 242 are both L-shaped, and the horizontal sections of the fixed section 1 241 and the fixed section 242 are respectively fixedly connected to the side walls of the connecting portion 3 and the vertical plate 22 facing each other by bolts, and the openings of the fixed section 1 241 and the fixed section 242 are arranged to face each other.
[0039] The coupling block 243 is arranged between the connecting part 3 and the vertical plate 22. Two coupling grooves 244 are longitudinally formed at the upper and lower ends of the coupling block 243 respectively. The ends of the first fixing section 241 and the second fixing section 242 extend into the coupling grooves 244 and are fixed by bolts, so that the connecting part 3 and the vertical plate 22 are connected. (To improve the heat insulation effect, a heat insulation unit can be added to the coupling block 243. The heat insulation unit in this embodiment can be foamed concrete with good heat insulation and heat preservation effects).
[0040] Through the above settings, the first fixing section 241 and the second fixing section 242 are respectively fixed between the connecting part 3 and the vertical plate 22, and the vertical sections of the first fixing section 241 and the second fixing section 242 are fixed by the coupling block 243 to realize the connection between the connecting part 3 and the vertical plate 22. At the same time, the setting of the coupling block 243 leaves a gap between the connecting part 3 and the vertical plate 22, and a heat insulation unit is filled in the gap to form a heat insulation layer, which plays the role of preventing outdoor heat from flowing in and indoor heat from dissipating.
[0041] Refer to Figure 3 , in another embodiment of the present application, a dew collection mechanism 25 for collecting dew formed on the outer window is further arranged between the connecting plate and the vertical plate 22. The dew collection mechanism 25 includes a first connecting plate 251, a second connecting plate 252, a bent plate 253 and a limiting piece.
[0042] The limiting piece is fixedly connected to the side wall of the connecting part 3 by bolts, and a slot is formed between the limiting piece and the end of the first fixing section 241. The end of the first connecting plate 251 extends into the slot, and the first connecting plate 251 is attached to the side wall of the connecting part 3. One end of the second connecting plate 252 is fixedly connected to the first connecting plate 251, and the other end of the second connecting plate 252 is clamped to the vertical plate 22.
[0043] The first connecting plate 251 is restricted by the limiting piece and the first fixing section 241, and at the same time the second connecting plate 252 is clamped to the vertical plate 22, so that the first connecting plate 251 is fixed between the connecting part 3 and the vertical plate 22, ensuring that the dew collection mechanism 25 can be clamped between the connecting part 3 and the vertical plate 22 and is not easy to fall off.
[0044] One end of the bent plate 253 is fixedly connected to the second connecting plate 252 by bolts, and the other end of the bent plate 253 extends in a bent manner towards the outer frame joint direction. Restricted by the bent section of the bent plate 253, the dew dripping from the outer window is restricted by the bent plate 253 and stays between the connecting part 3 and the vertical plate 22, preventing the dew from dripping from the outer window and flowing along the connecting part 3 to the inner window, playing the role of isolating the dew formed on the outer window.
[0045] Refer to Figure 4In another embodiment of the present application, in order to improve the compatibility of the present system, the present system further includes an adjustment mechanism 4, which is arranged in the external docking frame 1. The external docking frame 1 is adjusted by the adjustment mechanism 4, thereby changing the size of the external frame joint 14 to adapt to different window frames and improve the compatibility of the shell system. The interior of the external connection block 11 is hollow and has openings at both ends. The adjustment mechanism 4 is arranged in the inner cavity of the external connection block 11, and the size of the area between the external enclosure 12 and the external enclosure 2 13 is adjusted by the adjustment mechanism 4.
[0046] The adjusting mechanism 4 includes a threaded rod 41, a connecting plate 42 and a limit block 43. The limit block 43 is fixed to the side wall of the external enclosure panel 13 on the side away from the connecting portion 3 by bolts, and the interior of the limit block 43 is hollow and both ends are open. One end of the threaded rod 41 extends into the inner cavity of the external connecting block 11 and is penetrated by the limit block 43. A bearing seat is fixed to the side wall of the external enclosure panel 13 by bolts. One end of the threaded rod 41 located in the inner cavity of the limit block 43 is rollingly connected to the ball in the bearing seat. A through hole is opened through the external enclosure panel 12 for the operator to rotate the threaded rod 41 during installation.
[0047] The limit block 43 is penetrated by a limit groove 44 in the horizontal direction, the connecting plate 42 is threadedly sleeved on the threaded rod 41, and the end of the connecting plate 42 is passed through the limit groove 44 and fixedly connected to the inner wall of the external connecting block 11 by bolts, and the side wall of the connecting plate 42 abuts against the inner wall of the limit groove 44.
[0048] Through the above arrangement, by rotating the threaded rod 41, since the connecting plate 42 is threadedly sleeved on the threaded rod 41 and the connecting plate 42 is restricted by the limiting groove 44, the connecting plate 42 slides along the length direction of the external connecting block 11 as the threaded rod 41 rotates, and drives the external connecting block 11 to move, thereby realizing the adjustment of the size of the external frame joint 14, so as to improve the compatibility with the external window and facilitate the installation of the external window.
[0049] Reference Figure 4 and Figure 5 In one embodiment of the present application, in order to prevent the size of the outer frame joint 14 from changing after expansion or contraction, it is further necessary to position the rotation of the threaded rod 41. A positioning assembly 5 is provided at the end of the threaded rod 41 away from the end of the outer enclosure panel 13. The positioning assembly 5 includes a fixed plate 51, a positioning rod 52, a connecting rod 53, a limit spring 54 and a sliding plate 55.
[0050] The end of the threaded rod 41 is fixedly sleeved with a guide block, and the guide block has a rectangular cross-section. The fixed plate 51 is provided with a guide groove, and the guide block is slidably connected in the guide groove. An extension piece is fixedly connected to the end of the guide block by bolts to limit the guide block from sliding out of the guide groove.
[0051] The fixing plate 51 is provided with a positioning groove 511 on its side wall, and the length direction of the positioning groove 511 is perpendicular to the length direction of the threaded rod 41. The positioning rod 52 is located in the positioning groove 511, and the connecting rod 53 is fixedly connected to the positioning rod 52 by bolts. The side of the positioning groove 511 away from the threaded rod 41 is open, and is used for the end of the connecting rod 53 to pass through and extend to the outside; the fixing plate 51 is provided with a clamping groove 512 on the side of the positioning groove 511 close to the external enclosure 13, and the clamping groove 512 is parallel to the positioning groove 511, and one end of the clamping groove 512 facing the outside of the fixing plate 51 is open, and the other end is connected to the positioning groove 511. The end face and the end face of the inner wall of the positioning groove 511 form a step surface, and the length of the connection between the positioning groove 511 and the clamping groove 512 must be greater than the length of the positioning rod 52, so that the positioning rod 52 can move from the positioning groove 511 to the clamping groove 512, the sliding plate 55 is located in the positioning groove 511 and is slidably sleeved on the connecting rod 53, and the positioning groove 511 is located on its inner wall and a baffle 513 for limiting the movement of the sliding plate 55 is welded, the sliding plate 55 is abutted against the baffle 513, the limiting spring 54 is sleeved on the connecting rod 53, and the two ends of the limiting spring 54 are respectively pressed against the sliding plate 55 and the positioning rod 52, so that the positioning rod 52 can be relatively fixed in the positioning groove 511 and the clamping groove 512.
[0052] The outer enclosure 12 is located on the inner wall of the through hole, and a plurality of fixing grooves 56 are opened along the circumference of the through hole. Since the positioning groove 511 and the clamping groove 512 are connected to each other, the positioning rod 52 is slid in the positioning groove 511 along the opening direction thereof by moving the connecting rod 53. After the positioning rod 52 slides into the clamping groove 512, the connecting rod 53 is continuously pushed to make the positioning rod 52 extend into the fixing groove 56, and the positioning rod 52 abuts against the inner wall of the fixing groove 56, so as to achieve the positioning effect of the rotation of the threaded rod 41. At the same time, due to the elastic force of the limiting spring 54, the positioning rod 52 abuts against the inner wall of the clamping groove 512, so that it is relatively fixed.
[0053] When it is necessary to release the positioning of the threaded rod 41, the positioning rod 52 is extended into the slot 512 by sliding the connecting rod 53, and the connecting rod 53 is pulled toward the outer enclosure 12, so that the positioning rod 52 is pressed against the limit spring 54 and the limit spring 54 contracts, so that the positioning rod 52 is received in the positioning slot 511, and at the same time, the connecting rod 53 is continued to slide so that the positioning rod 52 is abutted against the inner wall of the positioning slot 511 to complete the release of the positioning of the threaded rod 41.
[0054] In another embodiment of the present application, in order for the positioning rod 52 to be more smoothly pushed into the card slot 512 from the positioning slot 511, the inner walls at the connection between the positioning slot 511 and the card slot 512 and the side walls at the end of the positioning rod 52 are both arc-shaped, so as to facilitate the transfer of the positioning rod 52 between the positioning slot 511 and the card slot 512 (it should be noted that the length of the connection between the positioning slot 511 and the card slot 512 needs to be greater than the length of the positioning rod 52, so that the positioning rod 52 can more smoothly switch positions within the positioning slot 511 and the card slot 512).
[0055] In an embodiment of the present application, in order to enable the positioning rod 52 to be more firmly clamped in the fixing slot 56, an arc-shaped groove is provided on the side wall of the positioning rod 52 facing the card slot 512, and a connection slot is provided on the inner wall of the card slot 512. A positioning spring is fixedly connected in the connection slot, and the end of the positioning spring is fixedly connected with a convex block. The side wall of the convex block facing the positioning rod 52 is arc-shaped and protrudes. When the positioning rod 52 slides in the card slot 512, the convex block extends into the arc-shaped groove. Due to the limiting effect of the convex block and the arc-shaped groove, and together with the acting force of the limiting spring 54, the positioning rod 52 abuts against the inner wall of the card slot 512, thereby preventing the positioning rod 52 from falling off the fixing slot 56 and improving the positioning effect of the positioning assembly 5.
[0056] It should be noted that when the fixing disk 51 drives the threaded rod 41 to rotate, the external connection block 11 slides along the length direction of the threaded rod 41, which together has the effect of adjusting the size of the outer frame joint 14 area. By sliding the fixing disk 51 along the length direction of the threaded rod 41, the positioning rod 52 can be aligned and inserted into the fixing slot 56 to achieve a positioning effect.
[0057] Refer to Figure 4 And Figure 6 In another embodiment of the present application, when the external window frame is connected to the outer frame joint 14 in a sliding and inserting manner, sliding slots for the sliding and inserting connection of the window frame need to be provided on the side walls of the external enclosure plate one 12 and the external enclosure plate two 13. Considering problems such as thermal expansion and contraction and uneven edges during the installation of the window frame, the opening size of the sliding slots needs to be larger than the sliding and inserting edges of the window frame to facilitate the installation of the window frame. In order to facilitate the locking and fixing of the installed window frame, a groove is provided on the side wall of the external enclosure plate two 13 facing the external connection block 11, and a locking assembly 57 is provided in the groove.
[0058] The locking assembly 57 includes an adjusting rod 571, a clamping block 572 and a connecting column 573. One end of the adjusting rod 571 is fixedly connected to the side wall of the outer enclosure 12 by a bolt, and the adjusting rod 571 passes through the outer connecting block 11 and extends into the groove. The cross-section of the clamping block 572 is L-shaped, and the connection between its horizontal section and vertical section is rotatably connected to the inner wall of the groove. A sliding groove is vertically penetrated through the clamping block 572. The connecting column 573 is welded to the end of the adjusting rod 571, and the connecting column 573 extends into the sliding groove. The end of the horizontal section of the clamping block 572 extends out of the sliding groove and abuts against the window frame.
[0059] With the above arrangement, when the frame installed by the sliding insertion method is installed, when expanding the area of the outer frame joint 14, the adjusting rod 571 drives the clamping block 572 to rotate, so that the horizontal section of the clamping block 572 extends into the groove, facilitating the insertion of the frame into the outer frame joint 14. When locking and adjusting the frame, the adjusting rod 571 pushes the clamping block 572 to rotate, so that the horizontal section of the clamping block 572 extends out of the groove and abuts tightly against the frame, thus realizing the installation and locking fixation of the sliding insertion frame.
[0060] Refer to Figure 6 In another embodiment of the present application, in order to facilitate abutting against the window structure, an abutting member 574 is provided on the horizontal section of the clamping block 572. The abutting member 574 includes a telescopic spring 5741 and an abutting block 5742. An installation groove is formed on the side wall of the horizontal section of the clamping block 572 facing the outer connecting block 11. The telescopic spring 5741 is arranged in the installation groove and one end is fixed to the inner wall of the installation groove. One end of the abutting block 5742 extends into the installation groove and is fixedly connected to the telescopic spring 5741, and the side wall of the abutting block 5742 abuts against the inner wall of the installation groove. When locking the window, the abutting block 5742 abuts against the window frame driven by the clamping block 572. As the horizontal section of the clamping block 572 continues to rotate towards the outer connecting block 11, the telescopic spring 5741 continues to contract, and drives the clamping block 572 to tightly abut against the window until the outer enclosure 12 and the outer enclosure 2 lock the window.
[0061] The implementation principle of this embodiment: The outer docking frame 1 and the inner docking frame 2 respectively form an outer frame joint 14 for installing the outer window and an inner frame joint for installing the inner window, and the outer docking frame 1 and the inner docking frame 2 are connected through the connecting part 3, enabling users to select different windows for installation according to actual needs.
[0062] When the window is ready for installation, by rotating the fixed disk 51, the connecting plate 42 is limited by the installation groove, so that it drives the external connecting block 11 to move towards the side away from the outer enclosure two 13, thereby expanding the area of the outer frame joint 14. At the same time, the end of the adjusting rod 571 gradually moves away from the outer enclosure two 13, and drives the clamping block 572 to rotate, so that the horizontal section of the clamping block 572 that originally abutted against the window extends into the groove, facilitating the connection and installation of the window.
[0063] When it is necessary to lock and fix the installed window, by reversing the fixed disk 51, the external connecting block 11 moves towards the outer enclosure two 13, and gradually drives the outer enclosures one 12 at both ends to abut against the window with the outer enclosure two 13, so as to achieve the effect of locking and fixing. At the same time, the adjusting rod 571 drives the clamping block 572 to rotate, so that the horizontal section of the clamping block 572 extends out of the groove and abuts against the window.
[0064] After locking the window, by pushing the connecting rod 53 towards the opening of the card slot 512, when the positioning rod 52 moves in the positioning slot 511, it is pushed into the card slot 512 by the elastic force of the limiting spring 54 and extends into the fixing slot 56, playing a positioning role in the rotation of the threaded rod 41. Due to the action of the limiting spring 54, the positioning rod 52 abuts against the inner wall of the card slot 512, realizing the locking of the positioning rod 52.
[0065] By rotating the threaded rod 41, it can expand or reduce the area size of the outer frame joint 14, so as to facilitate installation and locking and fixing, make it compatible with the structures of different windows, and improve the compatibility of the device.
[0066] The heat insulation layer formed between the connecting part 3 and the vertical plate 22 plays a role in blocking the heat between the outer window and the inner window, and at the same time reduces the loss of indoor heat. A dew collection mechanism 25 is also arranged between the connecting part 3 and the vertical plate 22. Through the dew collection mechanism 25, it is prevented that the dew generated by the condensation of the outer window flows into the heat insulation layer and affects the heat insulation effect of the heat insulation unit filled in the heat insulation layer.
[0067] The above are all the preferred embodiments of this application, and the protection scope of this application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.
Claims
1. An energy-saving housing system with a multi-functional frame combination function, characterized in that, include: An external docking frame (1) is provided with two external frame joint parts (14) for mounting an external window frame, wherein the two external frame joint parts (14) extend horizontally and are distributed up and down; An internal docking frame (2) is provided with an inner frame joint portion on one side and is used for installing an internal window frame; The connecting portion (3) is arranged between the external docking frame (1) and the internal docking frame (2), and is used for connecting and fixing the external docking frame (1) and the internal docking frame (2).
2. The energy-saving housing system with a multi-functional frame combination function according to claim 1, characterized in that: The external docking frame (1) comprises an external connection block (11), an external enclosure panel 1 (12) and an external enclosure panel 2 (13); the external enclosure panel 1 (12) and the external enclosure panel 2 (13) are respectively connected to two ends of the external connection block (11); an external frame joint portion (14) is formed between the external connection block (11) and the external enclosure panel 1 (12) and the external enclosure panel 2 (13); and the connection portion (3) is fixedly connected to a side of the external enclosure panel 2 (13) facing away from the external connection block (11).
3. The energy-saving housing system with a multi-functional frame combination function according to claim 2, characterized in that: The internal docking frame (2) comprises a supporting plate (21) and a vertical plate (22); the supporting plate (21) is connected to a side of the connecting portion (3) facing away from the external docking frame (1); the vertical plate (22) is fixedly connected to the supporting plate (21); a heat insulation layer and a coupling mechanism for coupling the heat insulation layer are formed between the vertical plate (22) and the connecting portion (3); and an inner frame joint portion is formed between the vertical plate (22) and the supporting plate (21).
4. The energy-saving housing system with a multifunctional frame combination function according to claim 3, characterized in that: The coupling mechanism comprises a first fixing section (241), a second fixing section (242) and a coupling block (243); the first fixing section (241) and the second fixing section (242) are respectively arranged on the side walls of the connecting portion (3) and the vertical plate (22), and are both arranged in an L-shape; the openings of the first fixing section (241) and the second fixing section (242) are arranged facing each other; the coupling block (243) is arranged between the connecting portion (3) and the vertical plate (22); and the upper and lower ends of the coupling block (243) are respectively provided with coupling grooves (244) along the longitudinal direction for the ends of the first fixing section (241) and the second fixing section (242) to extend into and be fixed.
5. The energy-saving housing system with a multifunctional frame combination function according to claim 3, characterized in that: A dew collecting mechanism (25) for collecting dew is provided between the connecting portion (3) and the vertical plate (22), and the dew collecting mechanism (25) comprises a connecting plate 1 (251), a connecting plate 2 (252), a bent plate (253) and a limiting plate, one end of the limiting plate is fixedly connected to the side wall of the connecting portion (3) and forms a groove with the end of the fixing section 1 (241) for the end of the connecting plate 1 (251) to be clamped, the other end of the connecting plate 1 (251) is fitted to the side wall of the connecting portion (3) and is fixedly connected to one end of the connecting plate 2 (252), the other end of the connecting plate 2 (252) is clamped to the vertical plate (22), one end of the bent plate (253) is fixedly connected to the connecting plate 2 (252), and the other end of the bent plate (253) is bent and extended toward the direction of the outer frame joint (14).
6. The energy-saving housing system with a multi-functional frame combination function according to claim 2, characterized in that: The invention also comprises an adjustment mechanism (4) for adjusting the size of the outer frame joint portion (14) so that it can adapt to the installation of window frames of different thicknesses. The outer connection block (11) is hollow and has openings at both ends. The adjustment mechanism (4) is arranged in the inner cavity of the outer connection block (11). The adjustment mechanism (4) comprises a threaded rod (41), a connecting plate (42) and a limit block (43). The limit block (43) is fixedly connected to the outer enclosure plate (13). The limit block (43) is hollow inside and has openings at both ends. One end of the threaded rod (41) is passed through the limit block (43) and is rotatably connected to the outer enclosure plate (13). The outer enclosure panel (13) is provided with a second outer enclosure panel (13), and the other end of the threaded rod (41) extends out of the outer connection block (11), the outer connection block (11) is fixedly connected to the outer enclosure panel (12), the outer enclosure panel (12) is provided with a through hole for the threaded rod (41) to slide through, the limit block (43) is provided with a limit groove (44) in the transverse direction, the connection plate (42) is threadedly sleeved on the threaded rod (41), and the connection plate (42) is inserted into the limit groove (44) and fixed to the outer connection block (11), and the outer window frame is slidably inserted between the outer enclosure panel (12) and the outer enclosure panel (13).
7. The energy-saving housing system with a multi-functional frame combination function according to claim 6, characterized in that: A positioning assembly (5) is provided at one end of the threaded rod (41) away from the second external enclosure plate (13). The positioning assembly (5) comprises a fixed plate (51), a positioning rod (52), a connecting rod (53), a limit spring (54) and a sliding plate (55). The cross section of the end of the threaded rod (41) is arranged in a rectangular shape and is slidingly connected to the fixed plate (51), so that the fixed plate (51) is located in the through hole. The fixed plate (51) is provided with a positioning groove (511) and a clamping groove (512). The clamping groove (512) is connected to the positioning groove (511), and the clamping groove (512) is arranged close to the second external enclosure plate (13). One end of the connecting rod (53) is arranged in a rectangular shape and is slidingly connected to the fixed plate (51), so that the fixed plate (51) is located in the through hole. The end of the through hole extends into the positioning groove (511) and is fixedly connected to the positioning rod (52), the positioning rod (52) abuts against the inner wall of the positioning groove (511), and a baffle (513) is fixedly connected to the side wall of the positioning groove (511), the sliding plate (55) is slidingly sleeved on the connecting rod (53), and the sliding plate (55) abuts against the baffle (513), the two ends of the limit spring (54) are respectively fixedly connected to the sliding plate (55) and the positioning rod (52), and the limit spring (54) is sleeved on the connecting rod (53), and a plurality of fixed grooves (56) are opened on the inner wall of the through hole along its circumference, and the end of the positioning rod (52) extends into the fixed groove (56).
8. The energy-saving housing system with a multi-functional frame combination function according to claim 6, characterized in that: A groove is formed on the side wall of the second outer enclosing plate (13) facing the outer connection block (11), and a locking assembly (57) for locking the window frame is arranged in the groove. The locking assembly (57) includes an adjusting rod (571), a clamping block (572) and a connecting column (573). One end of the adjusting rod (571) is fixedly connected to the first outer enclosing plate (12), and the other end of the adjusting rod (571) penetrates through the outer connection block (11) and extends into the groove. The clamping block (572) is arranged in an L shape, and the connection point between its vertical section and horizontal section is rotatably connected to the inner wall of the groove. A sliding groove is formed in the vertical section of the clamping block (572), the connecting column (573) is fixedly connected to the end of the adjusting rod (571), and the connecting column (573) extends into the sliding groove. The horizontal section of the clamping block (572) extends out of the groove and abuts against the window frame.
9. The energy-saving housing system with a multi-functional frame combination function according to claim 8, characterized in that: An abutting member (574) for abutting against the window frame is arranged on the horizontal section of the clamping block (572). The abutting member (574) includes a telescopic spring (5741) and an abutting block (5742). An installation groove is formed in the horizontal section of the clamping block (572), the telescopic spring (5741) is fixed in the installation groove, and the telescopic spring (5741) is fixedly connected to the abutting block (5742). The abutting block (5742) abuts against the window frame.