Building energy-saving insulation structure integrated board and processing method thereof
By using interlocking insulation units and screw-in structures, the problems of easy detachment of existing building exterior wall insulation boards and low stability of decorative panels are solved, enabling convenient transportation and assembly, and improving the stability of insulation boards and the safety of decorative parts.
Patent Information
- Application Number
- CN202510825810.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-19
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2045-06-19
AI Technical Summary
Existing building exterior wall insulation boards are prone to falling off, cracking, and water seepage, and the decorative boards have low stability and safety, making them inconvenient to transport and assemble.
It adopts a screw-connected structure for the connecting part and the decorative bearing part, and achieves rapid assembly through the interlocking insulation units to form an integrated energy-saving insulation structure panel for buildings, replacing the traditional monolithic insulation panel structure, and is fixed to the wall with expansion bolts.
It improves the stability and safety of the insulation board, facilitates transportation and assembly, enhances the stability of the decorative parts, and facilitates subsequent disassembly and replacement.
Smart Images

Figure CN120367357B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building exterior wall insulation technology, and more specifically, to an integrated energy-saving and heat-insulating structural panel for buildings and its processing method. Background Technology
[0002] When a building's exterior walls come into contact with the outdoor atmosphere, they transfer heat from the interior to the exterior, causing heat loss. In order to ensure that the building's walls have good energy-saving and thermal insulation performance, thermal insulation measures should be taken for the exterior walls to reduce their heat transfer coefficient and keep it within the heat transfer coefficient limit.
[0003] Existing insulation measures involve laying an insulation layer on the outside of the wall. Specifically, insulation materials such as polystyrene foam are bonded or anchored to the outside of the wall, and the insulation performance of the insulation material is used to improve the insulation of the wall.
[0004] A search revealed a building energy-saving and thermal insulation integrated panel and its processing method, with publication number CN108571082B. The key technical features include a rigid outer layer, an adhesive layer, a wire mesh a, an insulation layer, and several anchors penetrating the rigid outer layer and the insulation layer. This invention solves the problems of easy detachment, cracking, and water seepage of the insulation board from the wall after secondary construction of external wall insulation in newly built buildings.
[0005] However, the aforementioned integrated insulation panel, with its rigid outer layer and insulation layer being integral structures, is inconvenient for transportation and assembly. Furthermore, the decorative panel is directly attached to the side of the rigid outer layer, resulting in lower stability and safety, and making it difficult to disassemble and replace the decorative panel later. Summary of the Invention
[0006] To address the shortcomings of existing technologies, the present invention aims to provide an integrated energy-saving and thermal insulation structure panel for buildings and its processing method. By screwing together the connecting part and the decorative bearing part, the first insulation panel and the second insulation panel are clamped and fixed, thereby completing the rapid assembly of the insulation unit. Then, the insulation units are assembled together to form an integrated energy-saving and thermal insulation structure panel for buildings, replacing the traditional integral insulation panel structure, which is convenient for transportation and assembly.
[0007] To achieve the above objectives, the present invention provides the following technical solution:
[0008] An integrated energy-saving and thermal insulation structure panel for buildings includes interlocking insulation units. Each insulation unit includes two sets of first insulation boards and two sets of second insulation boards arranged opposite each other. The first insulation boards are interlocked with adjacent second insulation boards. Both the first and second insulation boards have arc-shaped grooves on their sides, and positioning grooves on their sides as well. Connecting parts that interlock with each positioning groove are inserted into the arc-shaped grooves. Decorative bearing parts that are screwed to the connecting parts are rotatably arranged between each arc-shaped groove. Decorative parts are snap-fitted into the decorative bearing parts. Each decorative bearing part includes a bearing frame. Each inner wall of the bearing frame has insertion holes. Guide tubes coaxial with corresponding insertion holes are fixed to adjacent inner walls of the bearing frame. A slider is slidably arranged in the guide tube. A rod is fixed to the bottom surface of the slider. A return spring sleeved on the rod is fixed between the slider and the inner wall of the bearing frame. The rod on the bearing frame interlocks with corresponding insertion holes on adjacent bearing frames.
[0009] The present invention is further configured such that: the first insulation board has a first slot on both sides near the arc groove, and a first insert plate is fixed on its other two sides; the second insulation board has a second insert plate fixed on both sides near the arc groove, and a second slot is provided on its other two sides; the first insert plate is inserted into the adjacent second slot; the second insert plate is inserted into the adjacent first slot.
[0010] The present invention is further configured such that: the connecting part includes a post that is inserted into the arc-shaped groove; a plurality of positioning plates that are inserted into the corresponding positioning grooves are uniformly fixed on the periphery of the post; an external threaded rod is fixed at one end of the post; a rotating ring is rotatably provided through the inner wall of the bearing frame; and an internal threaded ring that is screwed to the external threaded rod is fixed at one end of the rotating ring.
[0011] The present invention is further configured such that: a storage box adapted to the side of each of the first and second insulation boards is fixed; a clearance groove adapted to the outer circumferential side of the internal threaded ring is opened on the side of the storage box; an installation hole is opened inside the insertion post; a clearance cavity coaxially connected to the installation hole is opened inside the external threaded rod; and the insertion post is fixed to the side of the wall by expansion bolts.
[0012] The present invention is further configured such that: a plurality of raised ribs are uniformly fixed to the other end of the insert; and a plurality of raised rib rings are fixed to the sides of the first insulation board and the second insulation board.
[0013] The invention is further configured such that: the interior of the storage box is used to store flocculent thermal insulation material, and one side of the box is open; the opening of the storage box is provided with an insertion interface; and a sealing plate is inserted into the insertion interface.
[0014] The invention is further configured such that: a first pull rope is connected between two adjacent sliders; a sealing groove is provided on the open surface of the bearing frame; the decorative part includes a decorative panel; a sealing frame that is inserted and matched with the sealing groove is fixed on the side of the decorative panel; a first rubber ring is fixed on the other end of the rotating ring; a support ring is fixed on the side of the decorative panel; a second rubber ring is fixed on the end of the support ring; and clearance grooves are provided on each side of the sealing frame.
[0015] The invention is further configured as follows: an insertion hole is provided on the peripheral side of the guide tube; a guide sleeve is fixed on the peripheral side of the guide tube; a guide rod is slidably disposed inside the guide sleeve; the guide rod and the guide tube are slidably connected through the guide tube; a stop block is fixed at the end of the guide rod; a connecting spring sleeved on the guide sleeve is fixedly connected between the stop block and the guide tube; an extension rod that is inserted into the corresponding insertion hole is fixedly installed on the side of the decorative panel; a through hole that is inserted into the corresponding guide rod is provided on the peripheral side of the extension rod; a J-shaped guide tube is fixedly installed inside the bearing frame; a V-shaped guide tube is fixedly connected to one end of the J-shaped guide tube, and a nut is screwed to the other end; a second pull rope is fixedly connected between the sides of the two stops and the nuts; the second pull rope passes through the V-shaped guide tube and the J-shaped guide tube in sequence.
[0016] A method for processing an integrated energy-saving and thermal insulation structural panel for buildings includes the following steps:
[0017] T1. By inserting two sets of first insulation boards and two sets of second insulation boards together, and then inserting the connecting post into the arc groove, each set of positioning plates is inserted into the corresponding positioning groove.
[0018] T2. Connect the internal threaded ring on the decorative bearing part into the external threaded rod, keeping the sides of the bearing frame parallel to the corresponding sides of the assembled first insulation board and the two sets of second insulation boards, until the decorative bearing part and the connecting part fix and clamp the assembled first insulation board and the two sets of second insulation boards.
[0019] T3. After completing the assembly of the insulation units, plug the insulation units together to complete the on-site assembly of the integrated insulation structure panel. Apply an adhesive layer to the building wall and attach the integrated insulation structure panel to the adhesive layer. Then, nail the expansion bolts into the building wall through the corresponding mounting holes to complete the fixed connection between the integrated insulation structure panel and the wall.
[0020] T4. Connect each set of decorative parts to the corresponding support frame in sequence.
[0021] The advantages of this invention are:
[0022] 1. This invention achieves clamping and fixing of the first insulation board and the second insulation board through the screw connection of the connecting part and the decorative bearing part, thereby completing the rapid assembly of the insulation unit. Then, the insulation units are assembled together to form an integrated energy-saving insulation structure panel for buildings, replacing the traditional integral insulation board structure, which is convenient for transportation and assembly.
[0023] 2. This invention improves the stability and safety of the decorative part by snapping it into the corresponding decorative support part, replacing the traditional adhesive method, and also facilitates the subsequent disassembly and replacement of the decorative part. Attached Figure Description
[0024] Figure 1 This is a structural schematic diagram of an integrated energy-saving and thermal insulation panel for buildings according to the present invention.
[0025] Figure 2 For the present invention Figure 1 A structural diagram from a formal perspective.
[0026] Figure 3 For the present invention Figure 1 A structural diagram from another angle.
[0027] Figure 4 This is a schematic diagram of the thermal insulation unit of the present invention.
[0028] Figure 5 This is a schematic diagram of the structure of the first insulation board and the second insulation board assembly of the present invention.
[0029] Figure 6 This is a structural schematic diagram of the insulation unit of the present invention from another angle (excluding the decorative part).
[0030] Figure 7 This is a schematic diagram of the structure of the first insulation board of the present invention.
[0031] Figure 8 This is a schematic diagram of the structure of the second insulation board of the present invention.
[0032] Figure 9 This is a schematic diagram of the connection part of the present invention.
[0033] Figure 10 For the present invention Figure 9 A structural diagram from another angle.
[0034] Figure 11 This is a schematic diagram of the structure of the decorative support part of the present invention.
[0035] Figure 12 For the present invention Figure 11 A structural diagram from another angle.
[0036] Figure 13This is a schematic diagram of the structure of the decorative part of the present invention.
[0037] Figure 14 For the present invention Figure 3 A structural diagram from another angle.
[0038] Figure 15 For the present invention Figure 1 A structural schematic diagram from the rear view (excluding the decorative parts).
[0039] Figure 16 For the present invention Figure 15 Enlarged view of region A.
[0040] In the diagram: 1. Insulation unit; 2. First insulation board; 3. Second insulation board; 4. Arc groove; 5. Positioning groove; 6. Connecting part; 7. Decorative bearing part; 9. Bearing frame; 10. Insertion hole; 11. Guide tube; 12. Slider; 13. Insert rod; 14. Return spring; 15. First slot; 16. First insert plate; 17. Second insert plate; 18. Second slot; 19. Insert post; 20. Positioning plate; 21. External threaded rod; 22. Rotary ring; 23. Internal threaded ring; 24. Storage box; 25. Clearance groove; 6. Mounting hole; 27. Clearance cavity; 28. Raised rib; 29. Raised rib ring; 30. Insertion interface; 31. Sealing plate; 32. First pull rope; 33. Sealing groove; 34. Decorative panel; 35. Sealing frame; 36. First rubber ring; 37. Support ring; 38. Second rubber ring; 39. Insertion hole; 40. Guide sleeve; 41. Guide rod; 42. Stop block; 43. Connecting spring; 44. Extension rod; 45. Through hole; 46. J-shaped guide tube; 47. V-shaped guide tube; 48. Nut; 49. Second pull rope. Detailed Implementation
[0041] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0042] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains.
[0043] In this invention, unless otherwise stated, the directional terms such as "up" and "down" generally refer to the directions shown in the accompanying drawings, or to the vertical, perpendicular, or gravitational direction; similarly, for ease of understanding and description, "left" and "right" generally refer to the left and right shown in the accompanying drawings; "inner" and "outer" refer to the inner and outer contours of each component itself, but the above directional terms are not intended to limit this invention.
[0044] Example 1, please refer to Figure 1-16The present invention provides the following technical solutions:
[0045] A building energy-saving and thermal insulation integrated panel specifically includes interlocking insulation units 1; each insulation unit 1 includes two sets of first insulation boards 2 and two sets of second insulation boards 3 arranged opposite to each other; the first insulation boards 2 are interlocked with adjacent second insulation boards 3; each of the first insulation boards 2 and second insulation boards 3 has an arc-shaped groove 4 on its side and a positioning groove 5 on its side; a connecting part 6 is interlocked inside the arc-shaped groove 4 to engage with each positioning groove 5; and each arc-shaped groove 4 is rotatably connected to the connecting part 6. Decorative support part 7; decorative part is snapped into the interior of decorative support part 7; decorative support part 7 includes support frame 9; each inner wall of support frame 9 is provided with insertion hole 10; each adjacent inner wall of support frame 9 is fixed with guide tube 11 coaxial with the corresponding insertion hole 10; slider 12 is slidably arranged in guide tube 11; insertion rod 13 is fixed on the bottom surface of slider 12; return spring 14 sleeved on insertion rod 13 is fixed between slider 12 and inner wall of support frame 9; insertion rod 13 on support frame 9 is inserted into and engaged with the corresponding insertion hole 10 on adjacent support frame 9.
[0046] Working principle of this embodiment:
[0047] The first insulation board 2 and the second insulation board 3 are clamped and fixed by the connecting part 6 and the decorative bearing part 7, thereby completing the rapid assembly of the insulation unit 1. Then, the insulation units 1 are assembled together to form an integrated energy-saving insulation structure panel, which replaces the traditional integral insulation panel structure and is convenient for transportation and assembly.
[0048] By attaching the decorative part to the corresponding decorative support part 7 instead of the traditional adhesive method, the stability and safety of the decorative part are improved, and it is also convenient to disassemble and replace the decorative part in the future.
[0049] Example 2, please refer to Figure 1-16 This second embodiment is an improvement on the first embodiment as follows: Specifically, the first insulation board 2 has a first slot 15 on both sides near the arc groove 4, and a first insert plate 16 is fixed on its other two sides; the second insulation board 3 has a second insert plate 17 fixed on both sides near the arc groove 4, and a second slot 18 on its other two sides; the first insert plate 16 is inserted into the adjacent second slot 18; the second insert plate 17 is inserted into the adjacent first slot 15.
[0050] Each set of insulation units 1 can be assembled first and then fixed together on the side of the building wall. Alternatively, one set of insulation units 1 can be fixedly installed on the side of the building wall first, and then the remaining insulation units 1 can be inserted into the corresponding insulation units 1 and fixed on the side of the building wall in sequence.
[0051] The connecting part 6 includes a plug 19 that is inserted into the arc-shaped groove 4; several positioning plates 20 that are inserted into the corresponding positioning grooves 5 are evenly fixed on the periphery of the plug 19; an external thread rod 21 is fixed at one end of the plug 19; a rotating ring 22 is rotatably provided through the inner wall of the bearing frame 9; an internal thread ring 23 that is screwed to the external thread rod 21 is fixed at one end of the rotating ring 22.
[0052] The first insulation board 2 and the second insulation board 3 are each fixed with a matching storage box 24 on their sides; the storage box 24 has a relief groove 25 on its side that matches the outer circumference of the inner threaded ring 23; the insert post 19 has an installation hole 26 inside; the external threaded rod 21 has a relief cavity 27 inside that is coaxially connected to the installation hole 26; the insert post 19 is fixed to the side of the wall by expansion bolts.
[0053] Several rib strips 28 are evenly fixed to the other end of the insert 19; several rib rings 29 are fixed to the sides of the first insulation board 2 and the second insulation board 3.
[0054] By setting the ribs 28 and rib rings 29, the contact area between the first insulation board 2, the second insulation board 3, and the insert post 19 and the adhesive layer is increased, thereby improving their bonding stability.
[0055] The storage box 24 is used to store fluffy insulation material inside, and one side of it is open; the opening side of the storage box 24 has an insertion interface 30; a sealing plate 31 is inserted into the insertion interface 30.
[0056] The insulation effect of the integrated energy-saving insulation structure panel is further improved by the flocculent insulation material in the storage box 24.
[0057] Working principle of this embodiment two:
[0058] By inserting the two sets of first insulation boards 2 and the two sets of second insulation boards 3 together, and then inserting the pin 19 of the connecting part 6 into the arc groove 4, the positioning plates 20 are inserted into the corresponding positioning grooves 5. The internal threaded ring 23 on the decorative bearing part 7 is screwed into the external threaded rod 21, keeping the sides of the bearing frame 9 parallel to the corresponding sides of the assembled first insulation board 2 and the two sets of second insulation boards 3, until the decorative bearing part 7 and the connecting part 6 fix and clamp the assembled first insulation board 2 and the two sets of second insulation boards 3.
[0059] After assembling the insulation unit 1, the insulation units 1 are plugged together, and the corresponding plug rods 13 are inserted into the corresponding plug holes 10. Adjacent insulation units 1 are interlocked, completing the on-site assembly of the integrated building energy-saving insulation structure panel. An adhesive layer is applied to the building wall surface, and the integrated building energy-saving insulation structure panel is bonded to the adhesive layer. By nailing each set of expansion bolts into the building wall through the corresponding mounting holes, the fixed connection between the integrated building energy-saving insulation structure panel and the wall is completed, replacing the traditional integral insulation board structure, which is convenient for transportation and assembly.
[0060] Example 3, please refer to Figure 1-16 This third embodiment is an improvement on the second embodiment as follows: Specifically, a first pull rope 32 is connected between two adjacent sliders 12; a sealing groove 33 is provided on the open surface of the bearing frame 9; the decorative part includes a decorative plate 34; a sealing frame 35 that is inserted and matched with the sealing groove 33 is fixed on the side of the decorative plate 34; a first rubber ring 36 is fixed on the other end of the rotating ring 22; a support ring 37 is fixed on the side of the decorative plate 34; a second rubber ring 38 is fixed on the end of the support ring 37; and a clearance groove is provided on each side of the sealing frame 35, which is used to avoid the guide tube 11 and the insertion rod 13.
[0061] The guide tube 11 has insertion holes 39 on its circumference; a guide sleeve 40 is fixed on the circumference of the guide tube 11; a guide rod 41 is slidably arranged inside the guide sleeve 40; the guide rod 41 and the guide tube 11 are slidably connected through it; a stop block 42 is fixed at the end of the guide rod 41; a connecting spring 43 sleeved on the guide sleeve 40 is fixedly connected between the stop block 42 and the guide tube 11; an extension rod 44 is fixedly installed on the side of the decorative panel 34 and is inserted into the corresponding insertion hole 39; a through hole 45 is opened on the circumference of the extension rod 44 and is inserted into the corresponding guide rod 41.
[0062] A J-shaped conduit 46 is fixedly installed inside the bearing frame 9; one end of the J-shaped conduit 46 is connected to a V-shaped conduit 47, and the other end is screwed with a nut 48; a second pull rope 49 is fixedly connected between the sides of the two stops 42 and the nut 48; the second pull rope 49 passes through the V-shaped conduit 47 and the J-shaped conduit 46 in sequence.
[0063] Working principle of this embodiment three:
[0064] After the integrated energy-saving and heat-insulating structural panel is fixedly connected to the wall, the nut 48 is removed by rotating it. Pulling the nut 48 outward causes the second pull rope 49 to be pulled outward, so that the two sets of guide rods 41 slide out from the corresponding guide tube 11 and are stored in the guide sleeve 40. The connecting spring 43 is stretched, and the sealing frame 35 on the decorative part is inserted into the corresponding bearing frame 9 until the second rubber ring 38 is pressed against the first rubber ring 36 to prevent the rotating ring 22 from rotating. At this time, the extension rod 44 is inserted into the insertion hole 39 on the corresponding guide tube 11, releasing the tension on the second pull rope 49. Under the elastic restoring force of the connecting spring 43, the corresponding guide rod 41 is driven to slide into the guide tube 11 until it is inserted into the through hole 45 on the corresponding extension rod 44, completing the snap-fit of the decorative part.
[0065] When the decorative part needs to be replaced, rotate and remove the nut 48, pull the nut 48 outward, and pull the second pull rope 49 outward, so that the guide rod 41 is pulled out of the through hole 45, releasing the clip on the decorative part, and the decorative part can be taken out.
[0066] A method for processing an integrated energy-saving and thermal insulation structural panel for buildings includes the following steps:
[0067] T1. By inserting two sets of first insulation boards 2 and two sets of second insulation boards 3 together, and then inserting the pin 19 of the connecting part 6 into the arc groove 4, each set of positioning plates 20 is inserted into the corresponding positioning groove 5.
[0068] T2. Screw the internal threaded ring 23 on the decorative support part 7 into the external threaded rod 21, keeping the sides of the support frame 9 parallel to the corresponding sides of the assembled first insulation board 2 and the two sets of second insulation boards 3, until the decorative support part 7 and the connecting part 6 fix and clamp the assembled first insulation board 2 and the two sets of second insulation boards 3.
[0069] T3. After completing the assembly of insulation unit 1, insert each set of insulation unit 1 together to complete the on-site assembly of the integrated insulation structure panel. Apply an adhesive layer to the building wall and adhere the integrated insulation structure panel to the adhesive layer. By nailing each set of expansion bolts into the building wall through the corresponding mounting holes, the fixed connection between the integrated insulation structure panel and the wall is completed.
[0070] T4. Connect each set of decorative parts to the corresponding support frame 9 in sequence.
[0071] Obviously, the embodiments described above are merely some, not all, embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention.
[0072] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0073] It should be noted that the terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented in sequences other than those illustrated or described herein.
[0074] The above description is merely a preferred embodiment of the present invention and is not intended to limit the invention. Various modifications and variations can be made to the present invention by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
[0075] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiments. All technical solutions falling within the scope of the present invention's concept are within the scope of protection of the present invention. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principles of the present invention should also be considered within the scope of protection of the present invention.
Claims
1. A building energy-saving and thermal insulation integrated panel, comprising interlocking thermal insulation units (1); characterized in that: The insulation unit (1) includes two sets of first insulation boards (2) arranged opposite to each other and two sets of second insulation boards (3) arranged opposite to each other; the first insulation board (2) is inserted into the two adjacent second insulation boards (3); The first insulation board (2) and the second insulation board (3) are provided with arc-shaped grooves (4) on their sides, and positioning grooves (5) are provided on their sides; the arc-shaped grooves (4) are provided with connecting parts (6) that are inserted and matched with each positioning groove (5); Each of the arc-shaped grooves (4) is rotatably provided with a decorative support part (7) that is screwed to the connecting part (6); a decorative part is snapped into the interior of the decorative support part (7); The decorative support part (7) includes a support frame (9); each inner wall of the support frame (9) is provided with an insertion hole (10); each two adjacent inner walls of the support frame (9) are fixed with a guide tube (11) coaxial with the corresponding insertion hole (10); a slider (12) is slidably arranged in the guide tube (11); an insertion rod (13) is fixed on the bottom surface of the slider (12); a return spring (14) sleeved on the insertion rod (13) is fixed between the slider (12) and the inner wall of the support frame (9); the insertion rod (13) on the support frame (9) is inserted into the corresponding insertion hole (10) on the adjacent support frame (9); The connecting part (6) includes a plug (19) that is inserted into the arc groove (4); a plurality of positioning plates (20) that are inserted into the corresponding positioning grooves (5) are evenly fixed on the periphery of the plug (19); an external thread rod (21) is fixed at one end of the plug (19); a rotating ring (22) is rotatably provided through the inner wall of the bearing frame (9); an internal thread ring (23) that is screwed to the external thread rod (21) is fixed at one end of the rotating ring (22); A first pull rope (32) is connected between two adjacent sliders (12); a sealing groove (33) is provided on the opening surface of the bearing frame (9); the decorative part includes a decorative panel (34); a sealing frame (35) that is inserted into and cooperates with the sealing groove (33) is fixed on the side of the decorative panel (34); a first rubber ring (36) is fixed on the other end of the rotating ring (22); a support ring (37) is fixed on the side of the decorative panel (34); a second rubber ring (38) is fixed on the end of the support ring (37); and clearance grooves are provided on each side of the sealing frame (35). The guide tube (11) has insertion holes (39) on its circumferential side; a guide sleeve (40) is fixed on the circumferential side of the guide tube (11); a guide rod (41) is slidably disposed inside the guide sleeve (40); the guide rod (41) and the guide tube (11) slide through and slide together; a stop block (42) is fixed at the end of the guide rod (41); a connecting spring (43) sleeved on the guide sleeve (40) is fixedly connected between the stop block (42) and the guide tube (11); and the decorative panel (34) has a corresponding insertion hole (39) fixedly installed on its side. An extension rod (44) is inserted and fitted; the extension rod (44) has a through hole (45) on its circumferential side that is inserted and fitted with the corresponding guide rod (41); a J-shaped guide tube (46) is fixedly installed inside the bearing frame (9); one end of the J-shaped guide tube (46) is connected to a V-shaped guide tube (47), and the other end is screwed with a nut (48); a second pull rope (49) is fixedly connected between the sides of the two stops (42) and the nut (48); the second pull rope (49) passes through the V-shaped guide tube (47) and the J-shaped guide tube (46) in sequence.
2. The integrated energy-saving and thermal insulation structure panel for buildings according to claim 1, characterized in that: The first insulation board (2) has a first slot (15) on both sides near the arc groove (4), and a first insert plate (16) is fixed on its other two sides; the second insulation board (3) has a second insert plate (17) fixed on both sides near the arc groove (4), and a second slot (18) is opened on its other two sides; the first insert plate (16) is inserted into the adjacent second slot (18); the second insert plate (17) is inserted into the adjacent first slot (15).
3. The integrated energy-saving and thermal insulation structure panel for buildings according to claim 2, characterized in that: The first insulation board (2) and the second insulation board (3) are each fixed with a storage box (24) that is compatible with them; the storage box (24) has a relief groove (25) that is compatible with the outer circumferential side of the internal threaded ring (23); the insert (19) has an installation hole (26) inside; the external threaded rod (21) has a relief cavity (27) that is coaxially connected with the installation hole (26) inside; the insert (19) is fixed to the side of the wall by expansion bolts.
4. The integrated energy-saving and thermal insulation structure panel for buildings according to claim 3, characterized in that: The other end of the insert (19) is uniformly fixed with several convex ribs (28); the sides of the first insulation board (2) and the second insulation board (3) are fixed with several convex rib rings (29).
5. The integrated energy-saving and thermal insulation structure panel for buildings according to claim 4, characterized in that: The storage box (24) is used to store flocculent thermal insulation material inside, and one side of it is open; the storage box (24) has an insertion interface (30) on the open side; a sealing plate (31) is inserted into the insertion interface (30).
6. The processing method of an integrated energy-saving and thermal insulation structural panel for buildings according to claim 5, characterized in that, Includes the following steps: T1. By inserting two sets of first insulation boards (2) and two sets of second insulation boards (3) together, and then inserting the pin (19) of the connecting part (6) into the arc groove (4), so that each set of positioning plates (20) is inserted into the corresponding positioning groove (5); T2. Screw the internal threaded ring (23) on the decorative support part (7) into the external threaded rod (21), keeping the sides of the support frame (9) parallel to the corresponding sides of the assembled first insulation board (2) and the two sets of second insulation boards (3), until the decorative support part (7) and the connecting part (6) fix and clamp the assembled first insulation board (2) and the two sets of second insulation boards (3); T3. After completing the assembly of the insulation unit (1), insert each set of insulation units (1) together to complete the on-site assembly of the integrated insulation structure panel. Apply an adhesive layer to the building wall and attach the integrated insulation structure panel to the adhesive layer. By nailing each set of expansion bolts into the building wall through the corresponding mounting holes, the fixed connection between the integrated insulation structure panel and the wall is completed. T4. Connect each set of decorative parts to the corresponding support frame (9) in sequence.
Citation Information
Patent Citations
Building energy-saving and thermal insulation structural integrated board and processing method thereof
CN108571082B
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