An installation and fixing structure for a composite rock wool non-removable integrated insulation panel
The anchoring and splicing mechanism solves the disassembly and splicing problems of the composite rock wool insulation integrated panel, achieving stable installation and long-term use reliability, and preventing the joints from warping.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING QIXING ECOLOGICAL GROUP CO LTD
- Filing Date
- 2025-06-06
- Publication Date
- 2026-07-31
AI Technical Summary
The existing composite rock wool insulation panels cannot be disassembled when the inner formwork needs to be removed after installation, and the joints are prone to warping, affecting the reliability of installation and service life.
The system employs an integrated insulation panel anchoring and splicing mechanism. The anchor rods are fixedly connected to the inner formwork. After the concrete is poured and formed, the inner formwork can be removed, and the anchor rods remain in the concrete. The splicing mechanism improves the reliability between panels through elastic clips and slots.
It enables reliable installation and splicing of composite rock wool insulation panels that do not require disassembly, preventing the joints from warping and ensuring stability and service life after installation.
Smart Images

Figure CN224578909U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of building engineering technology, specifically relating to an installation and fixing structure for a composite rock wool non-removable integrated insulation panel. Background Technology
[0002] Composite rock wool non-removable integrated insulation board is a new type of wall insulation material. It is made of mortar layers on both the inner and outer sides and an insulation layer. During construction, it is assembled with the main structure in one go and then cast in place with concrete. While meeting the energy-saving requirements of buildings, it has the advantages of convenient installation and fast construction speed. It is currently a prefabricated insulation material promoted by the industry.
[0003] Patent authorization announcement number CN219298539U discloses a connection structure for an integrated exterior wall with composite insulation and no-removal formwork. The structure includes an inner formwork, a concrete exterior wall, and a no-removal composite insulation board. The inner formwork and the no-removal composite insulation board are respectively disposed on both sides of the concrete exterior wall. The inner formwork, the no-removal composite insulation board, and the concrete exterior wall are connected by several anchors. Each anchor consists of a head and a rod body. The head is fixedly disposed on the surface of the no-removal composite insulation board. The outer side of the rod body is provided with a first thread and a second thread, and several barbs are fixedly disposed on the outer side of the rod body. The no-removal composite insulation board consists of an insulation board and a base plate. A first limiting sleeve is provided on the side of the base plate away from the insulation board. This utility model can effectively improve the wind and earthquake resistance of the integrated exterior wall insulation structure and effectively prevent the insulation board from falling off. It is suitable for widespread application and promotion in the field of construction engineering.
[0004] While the aforementioned patent enables the installation of composite rock wool insulation panels that do not require disassembly, in actual use, the inner formwork needs to be disassembled after the composite rock wool insulation panels are installed and cast. However, the connecting structure is integrally formed with the concrete after use, and the protruding structure cannot be disassembled. Forcibly breaking it will cause the concrete at the connection point to crack. Secondly, when splicing composite rock wool insulation panels, the method of splicing them by simply misaligning them with the base plate will cause the edges of the composite rock wool insulation panels to warp over time. Utility Model Content
[0005] To address the problems mentioned in the background section, this utility model provides an installation and fixing structure for a composite rock wool non-removable integrated insulation panel. This structure allows for the removal of protruding connecting structures after the composite rock wool non-removable integrated insulation panel has been installed and cast, and also provides better splicing reliability between the composite rock wool non-removable integrated insulation panels.
[0006] To achieve the above objectives, this utility model provides the following technical solution: an installation and fixing structure for a composite rock wool non-removable integrated insulation panel, including an inner template, with a composite rock wool non-removable integrated insulation panel body disposed on the outer side of the inner template, the inner template and the composite rock wool non-removable integrated insulation panel body being fixedly connected by an integrated insulation panel anchoring mechanism, the connection between the inner template and the composite rock wool non-removable integrated insulation panel body forming a concrete layer by concrete pouring, and multiple sets of composite rock wool non-removable integrated insulation panel bodies being spliced and fixed by an integrated insulation panel splicing mechanism.
[0007] Preferably, the integrated insulation panel anchoring mechanism includes an anchor rod, an anchor nail, a bolt, a bolt insertion groove, a through hole, a fixing plate, a handle, and a fixing component. An anchor rod is provided at the connection between the inner template and the composite rock wool non-removable integrated insulation panel body. An anchor nail is provided on the surface of the anchor rod. The anchor rod and the composite rock wool non-removable integrated insulation panel body are fixedly connected by a bolt. The other end of the anchor rod is fixedly connected to the inner template by a fixing component. The inner template has a through hole corresponding to the fixing component. The fixing component is threadedly connected to a fixing plate. A handle is provided on the side of the fixing plate.
[0008] Preferably, a hexagonal positioning block is provided at one end of the anchor rod near the composite rock wool non-removable integrated insulation panel body, and a hexagonal groove corresponding to the hexagonal positioning block is opened on the inner side of the composite rock wool non-removable integrated insulation panel body.
[0009] Preferably, the outer side of the composite rock wool non-removable thermal insulation integrated panel body is provided with a bolt insertion groove corresponding to the head of the bolt, and the side of the hexagonal positioning block is provided with a screw hole corresponding to the bolt.
[0010] Preferably, the fixing component includes a fixing rod, an external thread one, and an external thread two. The anchor rod and the inner template are fixedly connected by the fixing rod. One end of the fixing rod is provided with external thread two, one end of the anchor rod is provided with a screw hole corresponding to external thread two, and the other end of the fixing rod is provided with external thread one.
[0011] Preferably, the integrated insulation panel splicing mechanism includes a slot, an elastic clip, two bolts, and a connecting plate. The top of the composite rock wool non-removable integrated insulation panel body is provided with a connecting plate, and the top of the composite rock wool non-removable integrated insulation panel body has a groove corresponding to the connecting plate. The connecting plate and the composite rock wool non-removable integrated insulation panel body are fixedly connected by two bolts. The upper end of the connecting plate is provided with an elastic clip, and the bottom of the composite rock wool non-removable integrated insulation panel body has a slot corresponding to the elastic clip.
[0012] Preferably, one side of the composite rock wool non-removable insulation integrated panel body is provided with another set of elastic cards, and the other side of the composite rock wool non-removable insulation integrated panel body is provided with a slot corresponding to the other set of elastic cards.
[0013] Compared with the prior art, the beneficial effects of this utility model are:
[0014] 1. This utility model features an integrated insulation panel anchoring mechanism. This mechanism can fix the inner template and the composite rock wool non-removable integrated insulation panel through an anchoring structure. After the concrete is poured, the fixing plate and fixing rod, along with the inner template, can be removed by turning the handle. The anchor rod remains in the concrete layer and does not need to be removed. This structure ensures the reliability of the composite rock wool non-removable integrated insulation panel after installation and does not affect the problem of damaging the concrete layer when removing the anchoring components later.
[0015] 2. This utility model features an integrated insulation panel splicing mechanism. This mechanism enhances the reliability of splicing multiple sets of composite rock wool insulation panels. The elastic tension generated by inserting elastic cards into the slots improves the fixing effect of the composite rock wool insulation panels and prevents the joints from warping after long-term use. Attached Figure Description
[0016] Figure 1 This is a perspective view of the present utility model;
[0017] Figure 2 This is a perspective view of the integrated insulation panel anchoring mechanism of this utility model;
[0018] Figure 3 This is a perspective view of the anchoring structure location of this utility model;
[0019] Figure 4 This is a perspective view of the integrated insulation panel splicing mechanism of this utility model;
[0020] In the diagram: 1. Inner formwork; 2. Concrete layer; 3. Anchoring mechanism for integrated insulation panel; 31. Anchor rod; 32. Anchor nail; 33. Hexagonal positioning block; 34. Bolt 1; 35. Bolt insertion slot; 36. Through hole; 37. Fixing plate; 38. Handle; 39. Fixing component; 391. Fixing rod; 392. External thread 1; 393. External thread 2; 4. Composite rock wool non-removable integrated insulation panel body; 5. Integrated insulation panel splicing mechanism; 51. Slot; 52. Elastic clip; 53. Bolt 2; 54. Connecting plate. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Example 1
[0023] Please see Figure 1-4 The present invention provides the following technical solution: an installation and fixing structure for a composite rock wool non-removable insulation integrated panel, including an inner template 1, a composite rock wool non-removable insulation integrated panel body 4 provided on the outside of the inner template 1, the inner template 1 and the composite rock wool non-removable insulation integrated panel body 4 are fixedly connected by an insulation integrated panel anchoring mechanism 3, a concrete layer 2 is formed at the connection between the inner template 1 and the composite rock wool non-removable insulation integrated panel body 4 by concrete pouring, and multiple sets of composite rock wool non-removable insulation integrated panel bodies 4 are spliced and fixed by an insulation integrated panel splicing mechanism 5.
[0024] Specifically, the integrated insulation panel anchoring mechanism 3 includes an anchor rod 31, an anchor nail 32, a bolt 34, a bolt insertion groove 35, a through hole 36, a fixing plate 37, a handle 38, and a fixing component 39. An anchor rod 31 is provided at the connection between the inner template 1 and the composite rock wool integrated insulation panel body 4. An anchor nail 32 is provided on the surface of the anchor rod 31. The anchor rod 31 and the composite rock wool integrated insulation panel body 4 are fixedly connected by bolt 34. The other end of the anchor rod 31 is fixedly connected to the inner template 1 by the fixing component 39. The inner template 1 has a pre-set through hole 36 corresponding to the fixing component 39. The fixing plate 37 is threadedly connected to the surface of the fixing component 39. A handle 38 is provided on the side of the fixing plate 37.
[0025] By adopting the above technical solution, when installing the composite rock wool non-removable insulation integrated panel body 4, firstly, the fixing plate 37 and the fixing component 39 are threaded together until the fixing plate 37 can no longer rotate. Then, the fixing component 39 is passed through the preset through hole 36 on the inner template 1, and the screw hole on the side of the anchor rod 31 is engaged with the fixing component 39. Then, by rotating the handle 38, the handle 38 drives the fixing plate 37 to rotate. The rotation of the fixing plate 37 can connect the other end of the fixing component 39 with the screw hole on the side of the anchor rod 31 until one end of the anchor rod 31 is attached to the outside of the inner template 1 and the fixing plate 37 is against the inside of the inner template 1. The anchor rod 31 is then fixed to the inner template 1 by bolt 34. The installation of the composite rock wool non-removable insulation integrated panel body 4 is then completed.
[0026] Specifically, a hexagonal positioning block 33 is provided at one end of the anchor rod 31 near the composite rock wool non-removable integrated insulation panel body 4, and a hexagonal groove corresponding to the hexagonal positioning block 33 is opened on the inner side of the composite rock wool non-removable integrated insulation panel body 4.
[0027] By adopting the above technical solution, in order to prevent the anchor rod 31 from rotating synchronously with the handle 38 when the handle 38 is rotated, the hexagonal positioning block 33 at one end of the anchor rod 31 is first inserted into the hexagonal groove on the inner side of the composite rock wool non-removable thermal insulation integrated panel body 4. At this time, when the handle 38 is rotated, the anchor rod 31 will not rotate with the handle 38. This allows the fixing plate 37 and the anchor rod 31 to move closer to each other, thereby achieving the fixation of the anchor rod 31 to the inner template 1.
[0028] Specifically, the outer side of the composite rock wool non-removable integrated insulation panel body 4 is provided with a bolt insertion groove 35 corresponding to the head of bolt 34, and the side of the hexagonal positioning block 33 is provided with a screw hole corresponding to bolt 34.
[0029] By adopting the above technical solution, the structure can prevent the composite rock wool insulation integrated panel body 4 from bulging after bolt 34 is installed.
[0030] Specifically, the fixing component 39 includes a fixing rod 391, an external thread 392, and an external thread 393. The anchor rod 31 is fixedly connected to the inner template 1 through the fixing rod 391. One end of the fixing rod 391 has an external thread 393, and one end of the anchor rod 391 has a screw hole corresponding to the external thread 393. The other end of the fixing rod 391 has an external thread 392.
[0031] By adopting the above technical solution, the structure can fix the anchor rod 31 to the inner template 1, and the protruding part of the anchor structure can be removed together with the inner template 1 after the subsequent pouring.
[0032] In this embodiment, when installing the composite rock wool non-removable insulation integrated panel body 4, firstly, the hexagonal positioning blocks 33 at one end of two sets of anchor rods 31 are inserted into the corresponding hexagonal grooves on the inner side of the composite rock wool non-removable insulation integrated panel body 4. Then, the fixing plate 37 is threaded to the external thread 392 on one end of the fixing rod 391 until the fixing plate 37 can no longer rotate. Next, one end of the fixing rod 391 is passed through the pre-set through hole 36 on the inner template 1 until the fixing rod 391 and the anchor rod 31 are initially pre-fixed. Then, the hexagonal positioning blocks 33 at one end of the remaining six sets of anchor rods 31 are inserted into the corresponding hexagonal grooves on the side of the composite rock wool non-removable insulation integrated panel body 4. Finally, the handle 38 is rotated, causing the fixing plate 37 and the fixing rod 391 to rotate. Until the external thread 393 on the other end of the fixing rod 391 is connected to the corresponding screw hole on the side of the anchor rod 31, until the anchor rod 31 and the fixing plate 37 are tightly attached to the inner template 1, thus achieving the fixation of the anchor rod 31 and the inner template 1. Then, the composite rock wool non-removable insulation integrated panel body 4 can be fixed to the other end of the anchor rod 31 by bolt 34, thus achieving the installation and fixation of the inner template 1 and the composite rock wool non-removable insulation integrated panel body 4. Then, concrete is poured. After the concrete is poured and formed, the inner template 1, fixing rod 391, fixing plate 37 and handle 38 can be disassembled. The anchor rod 31 is left in the concrete layer 2, which can ensure the reliability of the composite rock wool non-removable insulation integrated panel after installation, and will not affect the problem of damaging the concrete layer 2 when disassembling the anchor components later.
[0033] Example 2
[0034] The difference between this embodiment and Embodiment 1 is that the integrated insulation panel splicing mechanism 5 includes a slot 51, an elastic clip 52, a second bolt 53, and a connecting plate 54. The top of the composite rock wool non-removable integrated insulation panel body 4 is provided with a connecting plate 54, and the top of the composite rock wool non-removable integrated insulation panel body 4 has a groove corresponding to the connecting plate 54. The connecting plate 54 and the composite rock wool non-removable integrated insulation panel body 4 are fixedly connected by the second bolt 53. The upper end of the connecting plate 54 is provided with an elastic clip 52, and the bottom of the composite rock wool non-removable integrated insulation panel body 4 has a slot 51 corresponding to the elastic clip 52.
[0035] By adopting the above technical solution, when splicing the composite rock wool non-removable insulation integrated panel body 4, the connecting plate 54 is fixed to the composite rock wool non-removable insulation integrated panel body 4 by bolt 2 53. The elastic card 52 at the upper end of one set of composite rock wool non-removable insulation integrated panel body 4 is inserted into the slot 51 at the lower end of another set of composite rock wool non-removable insulation integrated panel body 4. The elastic tension generated after the elastic card 52 is inserted into the slot 51 improves the fixing effect of the composite rock wool non-removable insulation integrated panel body 4 and avoids the problem of the joint of the composite rock wool non-removable insulation integrated panel body 4 lifting after long-term use.
[0036] Specifically, one side of the composite rock wool non-removable integrated insulation panel body 4 is provided with another set of elastic clips 52, and the other side of the composite rock wool non-removable integrated insulation panel body 4 is provided with a slot 51 corresponding to the other set of elastic clips 52.
[0037] By adopting the above technical solution, the structure can be set up to achieve splicing and fixing of the composite rock wool insulation integrated panel body 4 in the horizontal position.
[0038] In this embodiment, when splicing the composite rock wool non-removable insulation integrated panel body 4, the connecting plate 54 is fixed to the composite rock wool non-removable insulation integrated panel body 4 by bolt 2 53. The elastic card 52 at the upper end of one set of composite rock wool non-removable insulation integrated panel body 4 is inserted into the slot 51 at the lower end of the other set of composite rock wool non-removable insulation integrated panel body 4. The elastic tension generated after the elastic card 52 is inserted into the slot 51 improves the fixing effect of the composite rock wool non-removable insulation integrated panel body 4 and avoids the problem of the joint of the composite rock wool non-removable insulation integrated panel body 4 lifting after long-term use.
[0039] The working principle and usage process of this utility model are as follows: When using this utility model, during the installation of the composite rock wool non-removable insulation integrated panel body 4, firstly, insert the hexagonal positioning blocks 33 at one end of two sets of anchor rods 31 into the corresponding hexagonal grooves on the inner side of the composite rock wool non-removable insulation integrated panel body 4. Then, thread the fixing plate 37 and the external thread 392 on one end of the fixing rod 391 until the fixing plate 37 can no longer rotate. Next, pass one end of the fixing rod 391 through the preset through hole 36 on the inner template 1 until the fixing rod 391 and the anchor rod 391 are properly connected. After initial pre-fixing of anchor rod 31, the hexagonal positioning blocks 33 at one end of the remaining six sets of anchor rods 31 are inserted into the corresponding hexagonal grooves on the side of the composite rock wool non-removable insulation integrated panel body 4. The handle 38 is then rotated, causing the fixing plate 37 and fixing rod 391 to rotate until the external thread 393 on the other end of the fixing rod 391 corresponds to the screw hole on the side of the anchor rod 31, until the anchor rod 31 and fixing plate 37 are tightly pressed against the inner template 1, thus fixing the anchor rod 31 to the inner template 1. Finally, the composite rock wool insulation integrated panel body 4 can be secured with bolts 34. The composite rock wool insulation panel body 4 is fixed to the other end of the anchor rod 31, thereby realizing the installation and fixation of the inner formwork 1 and the composite rock wool insulation panel body 4. Concrete is then poured. After the concrete is poured and formed, the inner formwork 1, fixing rod 391, fixing plate 37, and handle 38 can be disassembled. The anchor rod 31 is left in the concrete layer 2, which ensures the reliability of the composite rock wool insulation panel after installation and will not affect the problem of damage to the concrete layer 2 during later disassembly of the anchor components. When splicing the body panel 4, the connecting plate 54 is fixed to the composite rock wool non-removable insulation integrated panel 4 by bolt 2 53. The elastic card 52 at the upper end of one set of composite rock wool non-removable insulation integrated panel 4 is inserted into the slot 51 at the lower end of the other set of composite rock wool non-removable insulation integrated panel 4. The elastic tension generated after the elastic card 52 is inserted into the slot 51 improves the fixing effect of the composite rock wool non-removable insulation integrated panel 4 and avoids the problem of the joint of the composite rock wool non-removable insulation integrated panel 4 lifting after long-term use.
[0040] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A composite rock wool non-demolition thermal integrated board mounting and fixing structure comprising an inner formwork (1), characterized in that: The inner template (1) is provided with a composite rock wool non-removable insulation integrated panel body (4) on the outside. The inner template (1) and the composite rock wool non-removable insulation integrated panel body (4) are fixedly connected by the insulation integrated panel anchoring mechanism (3). The connection between the inner template (1) and the composite rock wool non-removable insulation integrated panel body (4) is formed by concrete pouring to form a concrete layer (2). Multiple sets of composite rock wool non-removable insulation integrated panel bodies (4) are spliced and fixed by the insulation integrated panel splicing mechanism (5).
2. The mounting structure of the composite rock wool non-removal thermal integrated board according to claim 1, characterized in that: The integrated insulation panel anchoring mechanism (3) includes an anchor rod (31), an anchor nail (32), a bolt (34), a bolt insertion groove (35), a through hole (36), a fixing plate (37), a handle (38), and a fixing component (39). An anchor rod (31) is provided at the connection between the inner template (1) and the composite rock wool non-removable integrated insulation panel body (4). An anchor nail (32) is provided on the surface of the anchor rod (31). The anchor rod (31) is fixedly connected to the composite rock wool non-removable integrated insulation panel body (4) by a bolt (34). The other end of the anchor rod (31) is fixedly connected to the inner template (1) by a fixing component (39). The inner template (1) has a through hole (36) corresponding to the fixing component (39) pre-set inside. The fixing plate (37) is threadedly connected to the surface of the fixing component (39). A handle (38) is provided on the side of the fixing plate (37).
3. The mounting structure of the composite rock wool non-removal thermal integrated board according to claim 2, characterized in that: One end of the anchor rod (31) is provided with a hexagonal positioning block (33) near the composite rock wool non-removable integrated insulation panel body (4), and the inner side of the composite rock wool non-removable integrated insulation panel body (4) is provided with a hexagonal groove corresponding to the hexagonal positioning block (33).
4. The installation and fixing structure of the composite rock wool non-removable integrated insulation panel according to claim 3, characterized in that: The outer side of the composite rock wool non-removable thermal insulation integrated panel body (4) is provided with a bolt embedding groove (35) corresponding to the head of bolt one (34), and the side of the hexagonal positioning block (33) is provided with a screw hole corresponding to bolt one (34).
5. The mounting structure of the composite rock wool non-removal integrated board according to claim 2, characterized in that: The fixing component (39) includes a fixing rod (391), an external thread one (392) and an external thread two (393). The anchor rod (31) is fixedly connected to the inner template (1) through the fixing rod (391). One end of the fixing rod (391) is provided with external thread two (393), and one end of the anchor rod (31) is provided with a screw hole corresponding to external thread two (393). The other end of the fixing rod (391) is provided with external thread one (392).
6. The mounting structure of the composite rock wool non-demolition thermal integrated board according to claim 1, characterized in that: The integrated insulation panel splicing mechanism (5) includes a slot (51), an elastic card (52), a bolt (53), and a connecting plate (54). The top of the composite rock wool non-removable integrated insulation panel body (4) is provided with a connecting plate (54). The top of the composite rock wool non-removable integrated insulation panel body (4) is pre-set with a groove corresponding to the connecting plate (54). The connecting plate (54) and the composite rock wool non-removable integrated insulation panel body (4) are fixedly connected by bolt (53). The upper end of the connecting plate (54) is provided with an elastic card (52). The bottom of the composite rock wool non-removable integrated insulation panel body (4) is provided with a slot (51) corresponding to the elastic card (52).
7. The installation and fixing structure of the composite rock wool non-removable integrated insulation panel according to claim 6, characterized in that: One side of the composite rock wool non-removable thermal insulation integrated panel body (4) is provided with another set of elastic cards (52), and the other side of the composite rock wool non-removable thermal insulation integrated panel body (4) is provided with a slot (51) corresponding to the other set of elastic cards (52).