Decorative concrete heat insulation integrated plate hanging system
By constructing a simple upper and lower hanging system, the three-dimensional adjustability and multiple load transfer of the decorative concrete insulation integrated panel are realized, which solves the problem that the existing system is difficult to guarantee three-dimensional adjustability and seismic resistance during installation, and improves installation efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-10
- Publication Date
- 2026-04-03
AI Technical Summary
Existing decorative concrete insulation integrated panel hanging systems are difficult to guarantee three-dimensional spatial adjustability, are inconvenient to install, and are easily damaged during inter-story displacement or earthquake resistance, resulting in poor installation effects.
It adopts an upper and lower hanging system, including components such as grooved embedded parts, adapters, supports, L-shaped bases and pressure-bearing bases. It has a simple structure and three-dimensional adjustable function. It ensures the stability and flatness of the panels after installation through multiple load transfer paths.
It improved the efficiency of the mounting process, enhanced the seismic performance, ensured that the outer end face of the panel was flat after installation, and improved the installation quality and safety.
Smart Images

Figure CN121781702A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of decorative concrete insulation integrated panel hanging system, specifically to a decorative concrete insulation integrated panel hanging system. Background Technology
[0002] Currently, building curtain wall forms are constantly evolving, and the colors and properties of various curtain wall materials can fully express the creativity of architects, leading to the widespread application of various panel curtain walls. Decorative concrete, with its adjustable color, high strength, and strong plasticity, is highly favored by architects. Decorative concrete integrated insulation panels are unit panels formed by combining high-performance concrete, insulating rock wool, and a fixing steel frame. Each panel is large, weighing up to 3.5 tons. Compared to other curtain walls, decorative concrete integrated insulation panels have higher density and greater weight. Existing hanging systems struggle to ensure three-dimensional spatial adjustability when facing this weight, making them highly susceptible to damage during inter-story displacement or earthquakes. Furthermore, they cannot guarantee easy installation or a flat outer surface of the panels, resulting in unsatisfactory final appearance after installation. Summary of the Invention
[0003] In view of this, the present invention provides a decorative concrete insulation integrated panel hanging system. This hanging system has a simple structure, is easy to construct, has a firm hanging connection, and has a three-dimensional adjustable function. Compared with commonly used unit panel hanging systems, it has higher hanging efficiency, better seismic performance, and a flatter outer end surface after panel installation, thereby improving panel hanging efficiency and ensuring installation quality.
[0004] This invention is achieved through the following technical solution: A decorative concrete insulation integrated panel hanging system includes: an upper hanging system and a lower hanging system; The upper mounting system includes: a first embedded part, a connecting part, and a supporting part; The first embedded part is a groove-type embedded part, which is embedded in the upper crossbeam and extends laterally along its length. The adapter is slidably connected to the first embedded part and reciprocates along its length; the upper part of the support is vertically and longitudinally adjustable to the adapter, and the lower part is fixedly connected to the upper part of the plate to be installed. The lower mounting system includes: a first L-shaped base, a second L-shaped base, a pressure-bearing base, and a fourth connector; Two second L-shaped bases are installed side by side horizontally on the lower crossbeam; The first horizontal part of the first L-shaped base is fixed to the lower part of the plate to be installed, and the first vertical part is laterally and vertically adjustable to the second vertical part of the second L-shaped base. The pressure-bearing base is located below the first L-shaped base and between the two second L-shaped bases, and is fixedly connected to the lower crossbeam; The fourth connector is disposed between the first horizontal part and the closed end and is used to transmit load.
[0005] Furthermore, the upper horizontal sides of the support member are provided with vertically extending first waist-shaped holes, and the first waist-shaped holes on both sides are arranged opposite to each other. The adapter includes: an adapter plate and two adapter lugs; the adapter plate is in a plane formed by the horizontal and vertical directions, and the two adapter lugs are perpendicular to the surface of the adapter plate and arranged opposite each other in the horizontal direction; the adapter plate is slidably connected to the first embedded part by bolts; each adapter lug is provided with a second oblong hole extending in the longitudinal direction. The first and second waist-shaped holes, located on the same side, overlap in a cross shape and are connected and locked by the first connector.
[0006] Furthermore, each of the first waist-shaped holes on the support member is provided with a lifting hole above it, and the lifting holes on both sides are arranged opposite each other in the lateral direction.
[0007] Furthermore, the cross-section of the first embedded part is U-shaped, forming a U-shaped groove.
[0008] Furthermore, the second horizontal portion of each of the second L-shaped bases is fixedly connected to the lower crossbeam, and the second vertical portion is provided with a fourth waist-shaped hole extending vertically. The first vertical part of the first L-shaped base is provided with at least one set of waist-shaped holes; each set of waist-shaped holes includes two third waist-shaped holes arranged horizontally side by side, each third waist-shaped hole extending horizontally; the two third waist-shaped holes of each set of waist-shaped holes are respectively cross-over with the fourth waist-shaped holes on the two second L-shaped bases and are locked and fixed by the third connector.
[0009] Furthermore, the cross-section of the pressure-bearing base in the width direction is an inverted U-shaped structure, with its open end fixedly connected to the lower crossbeam, and its closed section provided with a second through hole; The fourth connecting component includes: a bolt and a nut; The bolt's axial direction is parallel to the vertical direction, the bolt's head is fixed to the upper surface of the first horizontal part, and the tail passes through the first horizontal part and is inserted into the second through hole. The nut is threaded to the tail of the bolt and is located between the first horizontal part and the closed end of the pressure-bearing base, with the lower end face of the nut abutting the upper surface of the closed end of the pressure-bearing base.
[0010] Furthermore, the lower mounting system also includes: a first gasket; The first gasket is disposed between the third connector and the second vertical part of the second L-shaped base.
[0011] Furthermore, the lower mounting system also includes: a second gasket; The second gasket is placed between the closed end of the pressure-bearing base and the nut of the fourth connector.
[0012] Beneficial effects: (1) A decorative concrete insulation integrated panel hanging system of the present invention includes an upper hanging system and a lower hanging system. The first embedded part of the upper hanging system is a groove-type embedded part. The adapter is slidably connected to the first embedded part. The upper part of the support is vertically and longitudinally adjustable to the adapter. The second vertical part of the first L-shaped base and the second L-shaped base of the lower hanging system are horizontally and vertically adjustable. The pressure-bearing base is located below the first L-shaped base and between the two second L-shaped bases, and is fixedly connected to the lower crossbeam. When the main structure experiences interlayer displacement or temperature deformation difference in the horizontal and vertical directions, the pressure-bearing base can remain fixed, providing stable support for the insulation integrated panel. At the same time, the system has the ability to adjust horizontally, vertically and longitudinally in three dimensions, which can... This system effectively compensates for installation errors in the integrated concrete insulation panels, ensuring a smooth and uniform surface after installation. The overall mounting system is simple in structure, convenient to operate, and provides a strong and reliable connection. It also features three-dimensional adjustability. Compared to conventional unit panel mounting systems, it not only offers higher installation efficiency but also superior seismic performance, further ensuring the stability and flatness of the outer surface after panel installation. Horizontal wind loads on the integrated concrete insulation panels can be directly transferred to the main structure through the adapters of the upper mounting system, and also through the fourth connector to the pressure-bearing base, from which they are then transferred to the main structure. The weight of the integrated insulation panel itself can be transferred to the pressure-bearing base through the connection structure between the first horizontal section and the closed end. These multiple load transfer paths allow for the orderly distribution and transmission of wind loads and self-weight, comprehensively ensuring the structural stability and safety of the integrated insulation panels after installation.
[0013] (2) A decorative concrete insulation integrated panel hanging system of the present invention has a first waist-shaped hole extending vertically on each of the upper horizontal sides of the support member, and a second waist-shaped hole extending longitudinally on each of the two transitions. The first waist-shaped hole and the second waist-shaped hole are cross-overlaid and are connected and locked by the first connector, thereby facilitating the vertical and longitudinal adjustment of the concrete insulation integrated panel.
[0014] (3) The decorative concrete insulation integrated panel hanging system of the present invention has a hoisting hole above each first waist-shaped hole. After inserting a steel wire rope into the hoisting hole, it is convenient to hoist the concrete insulation integrated panel, thereby improving the construction efficiency.
[0015] (4) A decorative concrete insulation integrated panel hanging system of the present invention, wherein a fourth oblong hole extending vertically is provided on the second vertical part of the second L-shaped base, and at least one set of oblong hole groups is provided on the first L-shaped base, each oblong hole group including two third oblong holes extending horizontally and arranged side by side, each third oblong hole respectively overlapping with the fourth oblong hole on the second L-shaped base in a cross shape, and locked and fixed by a third connector, thereby facilitating the vertical and horizontal adjustment of the concrete insulation integrated panel.
[0016] (5) In a decorative concrete insulation integrated panel hanging system of the present invention, the head of the bolt of the fourth connector is fixed to the upper surface of the first horizontal part, the tail passes through the first horizontal part and is inserted into the second through hole, the nut is threadedly connected to the tail of the bolt and is located between the first horizontal part and the closed end of the pressure base, and the lower end of the nut abuts against the upper surface of the closed end of the pressure base. By adjusting the vertical height of the nut, its lower end always abuts against the closed end of the pressure base, thereby continuously transferring the weight of the concrete insulation integrated panel to the pressure base.
[0017] (6) In a decorative concrete insulation integrated panel hanging system of the present invention, the first gasket is set between the third connector and the second vertical part of the second L-shaped base, thereby increasing the bearing area of the second L-shaped base and improving the anti-vibration friction of the lower hanging system.
[0018] (7) In a decorative concrete insulation integrated panel hanging system of the present invention, the second gasket is set between the closed end of the pressure base and the nut of the fourth connector, thereby increasing the pressure bearing area of the pressure base and improving the seismic friction force of the lower hanging system. Attached Figure Description
[0019] Figure 1 This is a schematic diagram (front view) of the decorative concrete insulation integrated panel hanging system of the present invention. Figure 2 This is a schematic diagram (side view) of the decorative concrete insulation integrated panel hanging system of the present invention. Figure 3 This is a schematic diagram (front view) of the upper mounting system of the present invention; Figure 4 This is a schematic diagram (side view) of the upper mounting system of the present invention. Figure 5 This is a schematic diagram (front view) of the lower mounting system of the present invention; Figure 6 This is a schematic diagram (side view) of the lower mounting system of the present invention. Figure 7 This is an isometric schematic diagram of the upper mounting system of the present invention; Figure 8 This is an isometric schematic diagram of the lower mounting system of the present invention; Among them, 1-upper hanging system, 101-first embedded part, 102-adapter, 103-support, 104-first connector, 105-lifting hole, 106-second embedded part, 107-second connector, 108-connecting plate, 2-lower hanging system, 201-first L-shaped base, 202-second L-shaped base, 203-third connector, 204-fourth connector, 205-pressure bearing base, 206-first gasket, 207-second gasket, 208-fifth connector, 209-third embedded part, 3-plate to be installed, 4-upper crossbeam, 5-lower crossbeam. Detailed Implementation
[0020] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0021] Example 1: This embodiment provides a decorative concrete insulation integrated panel hanging system, such as Figure 1 and Figure 2 As shown, a concrete insulation integrated panel (hereinafter referred to as the panel to be installed 3) is used for installation; the hanging system includes: two or more upper hanging systems 1 for suspending the panel to be installed 3 and two or more lower hanging systems 2 for supporting the panel to be installed 3; in this embodiment, two upper hanging systems 1 and two lower hanging systems 2 are preferred. Let the height direction of the plate 3 to be installed be vertical, the direction that is parallel to and perpendicular to the vertical direction of the plate surface where the plate 3 is located be horizontal, and the direction that is perpendicular to the plate surface of the plate 3 to be installed (i.e., perpendicular to both the vertical and horizontal directions) be longitudinal (i.e., the thickness direction of the plate 3 to be installed). The upper hanging system 1 is used to suspend the panel 3 to be installed on the upper beam 4 of the corresponding floor; such as Figure 3 , Figure 4 and Figure 7 As shown, each upper mounting system 1 includes: a first embedded part 101, a transition part 102, a support part 103, a first connecting part 104, a plurality of first embedded sleeves 106, and a second connecting part 107 corresponding to each of the first embedded sleeves 106. The first embedded part 101 is embedded in the upper crossbeam 4; the first embedded part 101 is a groove-type embedded part, with its length direction parallel to the transverse direction and its width direction having a U-shaped cross section, forming a U-shaped groove; the bottom of the U-shaped groove is fixed to the upper crossbeam 4 by several anchor rods. Several first embedded sleeves 106 are embedded in the upper end of the plate to be installed 3 and are fixedly connected to the main keel inside the plate to be installed 3 by welding. The upper part of the support member 103 is slidably connected to the U-shaped groove of the first embedded part 101 via the adapter 102, and the lower part of the support member 103 (the length direction of the support member 103 is parallel to the vertical) is fixedly connected to the first embedded sleeve 106 via the second connector 107. Specifically: The support member 103 has a first oblong hole extending vertically on each of its upper transverse sides (i.e., the major axis of the first oblong hole is parallel to the vertical direction), and the first oblong holes on both sides are arranged opposite to each other; the adapter member 102 includes: an adapter plate and two adapter lugs; the adapter plate is in the plane formed by the transverse and vertical directions (i.e., its normal direction is longitudinal), the two adapter lugs are perpendicular to the surface of the adapter plate and are arranged opposite to each other in the transverse direction; the adapter plate is slidably connected to the U-shaped groove of the first embedded part 101 by bolts, the head of the bolt is slidably engaged with the U-shaped groove, and the tail of the bolt passes through the adapter plate and is locked and fixed by a nut; each adapter lug is provided with a second oblong hole extending longitudinally (i.e., the major axis of the second oblong hole is parallel to the longitudinal direction); the first oblong hole and the second oblong hole on the same side are cross-shaped and overlapped by the first connector 10 4. The connection is threaded and locked to achieve adjustable fixation in both longitudinal and vertical directions. In this embodiment, the first connecting member 104 is made of stainless steel bolts. The tail of the stainless steel bolts passes through the first oblong hole and the second oblong hole in sequence and is fixed by a nut. The vertical relative position of the support member 103 with respect to the adapter 102 can be adjusted through the first oblong hole, and the longitudinal relative position of the support member 103 with respect to the adapter 102 can be adjusted through the second oblong hole, thereby reducing the vertical and longitudinal entry and exit errors of the plate to be installed 3. In this embodiment, a lifting hole 105 is provided above each first oblong hole on the upper part of the support member 103. The lifting holes 105 on both sides are arranged opposite each other in the horizontal direction. The plate to be installed 3 can be lifted by inserting a steel wire rope into the lifting hole (i.e., lifted from the ground to the corresponding floor to be installed). The lower end face of the support member 103 is fixedly connected to the connecting plate 108, and the connecting plate 108 is connected to the first pre-embedded sleeve 106 through the second connecting member 107. In this embodiment, the support member 103 is a rectangular tube, the connecting plate 108 is a steel plate, and the second connecting member 107 is a stainless steel bolt. As an example, a number of reinforcing ribs are provided between the connecting plate 108 and the support member 103. The number of reinforcing ribs are evenly spaced along the circumference of the support member 103, thereby enhancing the structural stability of the upper hanging system. The lower mounting system 2 is used to support the panel 3 to be installed on the lower beam 5 of the corresponding floor, providing upward support for the panel 3 and bearing its own weight; such as Figure 5 , Figure 6 and Figure 8 As shown, each lower mounting system 2 includes: a first L-shaped base 201, a pressure-bearing base 205, a first gasket 206, a second gasket 207, a second L-shaped base 202, a third connector 203, a fourth connector 204, a fifth connector 208, a third embedded part 209, and a fourth embedded part; Several third embedded parts 209 are embedded in the lower end of the plate to be installed 3 and are fixedly connected to the main keel inside the plate to be installed 3 by welding. Several fourth embedded parts are embedded in the lower crossbeam 5; in this embodiment, the fourth embedded parts are plate-type embedded parts. Two second L-shaped bases 202 are installed side by side in the transverse direction on the fourth embedded part; specifically, each second L-shaped base 202 includes: a second horizontal part and a second vertical part that are perpendicular to each other; the second horizontal part is fixedly connected to the fourth embedded part by welding; the second vertical part is provided with a fourth oblong hole that extends vertically (i.e., the major axis of the fourth oblong hole is parallel to the vertical); as an example, a reinforcing rib is provided between the second horizontal part and the second vertical part to ensure its stability; The first L-shaped base 201 is vertically adjustable and mounted on the second vertical portions of the two second L-shaped bases 202. Specifically, the first L-shaped base 201 is an inverted L-shaped structure, including: a first horizontal portion and a first vertical portion that are perpendicular to each other; the first horizontal portion is connected and fixed to the third embedded portion 209 through several fifth connectors 208, and the first horizontal portion is provided with a first through hole; the first vertical portion is provided with at least one set of waist-shaped holes; each set of waist-shaped holes includes: two waist-shaped holes arranged horizontally side by side, which are called third waist-shaped holes, and each third waist-shaped hole extends horizontally (i.e., (The major axis of the third oblong hole is parallel to the transverse direction); the two third oblong holes of each oblong hole group are respectively cross-overed with the fourth oblong holes on the two second L-shaped bases 202, and locked and fixed by the third connector 203; the first L-shaped base 201 and the second L-shaped base 202 serve as movable gravity supports, and the relative position between the first L-shaped base 201 and the second L-shaped base 202 is adjusted by the third oblong hole and the fourth oblong hole, thereby reducing the vertical and lateral movement of the plate to be installed 3 and reducing the installation error; in this embodiment, the third embedded part 209 is preferably four; The pressure-bearing base 205 is a fixed gravity support, located below the first horizontal part and between the two second L-shaped bases 202; the cross-section of the pressure-bearing base 205 along the width direction is an inverted U-shaped structure, its open end is welded to the fourth embedded part, and the closed end is provided with a second through hole coaxial with the first through hole. The fourth connector 204 is disposed between the first horizontal part and the closed end of the pressure-bearing base 205. Specifically, the fourth connector 204 includes a bolt and a nut. The axial direction of the bolt of the fourth connector 204 is parallel to the vertical direction. The head of the bolt is welded to the upper surface of the first horizontal part, and the tail passes through the first through hole and is inserted into the second through hole. The nut is threaded to the tail of the bolt and is located between the first horizontal part of the first L-shaped base 201 and the closed end of the pressure-bearing base 205. The lower end face of the nut abuts against the upper surface of the closed end of the pressure-bearing base 205. As the nut is screwed in and out, its lower end face always abuts against the closed end of the pressure-bearing base 205, thereby continuously transmitting the weight of the plate 3 to be installed to the pressure-bearing base 205 through the fourth connector 204. In this embodiment, the fourth connector 204 is made of stainless steel, and the nut is a double nut. As an example, the second through hole on the pressure-bearing base 205 can be set as a waist-shaped hole extending longitudinally (i.e., a waist-shaped hole with its long axis parallel to the longitudinal direction). In this embodiment, the first connector 104, the second connector 107, the third connector 203 and the fourth connector 204 are all made of stainless steel bolts and are fixed with double nuts, thereby increasing the fastening friction and ensuring the stability of the installation. Working principle: The plate to be installed 3 is stably suspended on the upper beam 4 through the upper hanging system 1; the adapter 102 can move laterally within the grooved embedded part 101 before tightening, thereby adjusting the installation deviation; the longitudinal and lateral positions of the support 103 are adjusted through the first and second oblong holes on the support 103 and the adapter 102, thereby reducing the vertical, lateral and longitudinal installation errors of the plate to be installed 3; after installation, the horizontal wind load received by the plate to be installed 3 is transferred sequentially through the support 103 and the adapter 102 to the first embedded part 101, and finally through the first embedded part 101 embedded in the upper beam 4 to the main structure of the building, thereby ensuring the stability and safety of the structure; The plate to be installed 3 is stably supported on the lower crossbeam 5 by the lower hanging system 2; the pressure-bearing base 205 serves as a fixed gravity support, providing stable support force; the second L-shaped base 202 and the first L-shaped base 201 achieve horizontal and vertical adjustment through the third and fourth waist-shaped holes, and serve as a movable gravity support to reduce the vertical and horizontal installation errors of the plate to be installed 3; after installation, the horizontal wind load received by the plate to be installed 3 is transferred to the second L-shaped base 202 and the pressure-bearing base 205 through the first L-shaped base 201, and finally transferred to the main structure of the building through the fourth embedded part embedded in the lower crossbeam 5, thereby ensuring the stability and safety of the structure; Tests showed that, under the action of ELCentro waves, artificial waves, and Taft waves with a peak acceleration of 620 gal (equivalent to a rare earthquake of magnitude 9), the connecting parts (first connecting part 104, second connecting part 107, third connecting part 203, and fourth connecting part 204) and supporting components (such as support part 103, first L-shaped base 201, second L-shaped base 202, and pressure-bearing base 205, etc.) of the upper and lower connecting systems of the mounting system were not damaged, thus meeting the requirements for earthquake resistance of magnitude 9.
[0022] The installation of the mounting system in this embodiment includes the following steps: Step 1, Measurement and Laying Out: Based on the grid position, measure and lay out the position of each embedded part (i.e., including: first embedded part 101, second embedded part 106, third embedded part 209, and fourth embedded part); Step 2, Install the embedded parts: Accurately install the embedded parts according to the measured and laid-out positions, and clean the surface of the embedded parts to keep it clean; before installing the embedded parts, clean the plate-type embedded parts and the channel-type embedded parts; Step 3: Install the pressure-bearing base 205 and the second L-shaped base 202: Weld the pressure-bearing base 205 and the second L-shaped base 202 onto the fourth embedded part; Step 4, install support component 103: The connecting plate 108 on the support member 103 is locked and fixed to the upper part of the plate 3 to be installed by a number of second connectors 107; Step 5, install the first L-shaped base 201: The first horizontal part of the first L-shaped base 201 is locked and fixed to the lower part of the plate to be installed 3 by the fifth connector 208; Step 6, lift the plate to be installed (3): The steel wire rope is inserted into the lifting hole 105 of the support 103, and the plate to be installed is lifted by a crane and a spreader beam.
[0023] Step 7, Install plate 3 in place: First, insert the fourth connector 204 into the first through hole of the first L-shaped base 201 at the bottom of the plate to be installed 3 and the second through hole on the pressure base 205, and tighten the double nuts to fix it; then, lock and fix the support 103 at the top of the plate to be installed 3 to the adapter 102 through the first connector 104. The upper hanging system connects the steel plate and hoisting square tube, while the lower hanging system's L-shaped base and stainless steel adjusting bolts are all assembled in the factory with the decorative concrete insulation panel, achieving factory assembly and reducing on-site installation steps.
[0024] Example 2: Based on Embodiment 1, this embodiment provides a decorative concrete insulation integrated panel hanging system, the lower hanging system 2 of which further includes: a first gasket 206 and a second gasket 207; The first gasket 206 is disposed between the third connector 203 and the second vertical part of the second L-shaped base 202, thereby increasing the bearing area of the second L-shaped base 202 and improving the anti-vibration friction of the lower hanging system 2; The second gasket 207 is placed between the nut of the pressure base 205 and the fourth connector 204, thereby increasing the pressure-bearing area of the pressure base 205 and improving the anti-vibration friction force of the lower hanging system 2. In this embodiment, both the first gasket 206 and the second gasket 207 are made of steel.
[0025] In summary, the above are merely preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. 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.
Claims
1. A decorative concrete insulation integrated panel hanging system, characterized in that, include: Upper mounting system (1) and lower mounting system (2); The upper mounting system (1) includes: a first embedded part (101), a connecting part (102), and a supporting part (103); The first embedded part (101) is a groove-type embedded part, which is embedded in the upper crossbeam and extends laterally in the length direction; The adapter (102) is slidably connected to the first embedded part (101) and reciprocates along its length; the upper part of the support (103) is vertically and longitudinally adjustable to the adapter (102), and the lower part is fixedly connected to the upper part of the plate to be installed (3). The lower mounting system (2) includes: a first L-shaped base (201), a second L-shaped base (202), a pressure-bearing base (203), and a fourth connector (204). Two second L-shaped bases (202) are installed side by side laterally on the lower crossbeam (5); The first horizontal part of the first L-shaped base (201) is fixed to the lower part of the plate (3) to be installed, and the first vertical part is horizontally and vertically adjustable to the second vertical part of the second L-shaped base (202); The pressure-bearing base (203) is located below the first L-shaped base (201) and between the two second L-shaped bases (202), and is fixedly connected to the lower crossbeam (5); The fourth connector (204) is disposed between the first horizontal part and the closed end for transmitting load.
2. The decorative concrete insulation integrated panel hanging system as described in claim 1, characterized in that, The support member (103) has a first waist-shaped hole extending vertically on each of its upper horizontal sides, and the first waist-shaped holes on both sides are arranged opposite to each other. The adapter (102) includes: an adapter plate and two adapter lugs; the adapter plate is in a plane formed by the horizontal and vertical directions, and the two adapter lugs are perpendicular to the surface of the adapter plate and arranged opposite to each other in the horizontal direction; the adapter plate is slidably connected to the first embedded part (101) by bolts; each adapter lug is provided with a second waist-shaped hole extending in the longitudinal direction. The first waist-shaped hole and the second waist-shaped hole on the same side are cross-shaped and are connected and locked by the first connector (104).
3. The decorative concrete insulation integrated panel hanging system as described in claim 2, characterized in that, Each of the first waist-shaped holes on the support member (103) is provided with a lifting hole (105) above it, and the lifting holes (105) on both sides are arranged opposite each other in the lateral direction.
4. The decorative concrete insulation integrated panel hanging system as described in any one of claims 1-3, characterized in that, The first embedded part (101) has a U-shaped cross section, forming a U-shaped groove.
5. The decorative concrete insulation integrated panel hanging system as described in any one of claims 1-3, characterized in that, The second horizontal portion of each of the second L-shaped bases (202) is fixedly connected to the lower crossbeam (5), and the second vertical portion is provided with a fourth waist-shaped hole extending vertically; The first vertical part of the first L-shaped base (201) is provided with at least one set of waist-shaped holes; each set of waist-shaped holes includes two third waist-shaped holes arranged horizontally side by side, each third waist-shaped hole extending horizontally; the two third waist-shaped holes of each set of waist-shaped holes are respectively cross-over with the fourth waist-shaped holes on the two second L-shaped bases (202), and are locked and fixed by the third connector (203).
6. The decorative concrete insulation integrated panel hanging system as described in claim 5, characterized in that, The cross section of the pressure-bearing base (205) in the width direction is an inverted U-shaped structure, its open end is fixedly connected to the lower crossbeam (5), and its closed section is provided with a second through hole; The fourth connecting component includes: a bolt and a nut; The bolt's axial direction is parallel to the vertical direction, the bolt's head is fixed to the upper surface of the first horizontal part, and the tail passes through the first horizontal part and is inserted into the second through hole. The nut is threaded to the tail of the bolt and is located between the first horizontal part and the closed end of the pressure base (205), with the lower end face of the nut abutting the upper surface of the closed end of the pressure base (205).
7. The decorative concrete insulation integrated panel hanging system as described in claim 5, characterized in that, The lower mounting system (2) also includes: a first gasket (206); The first gasket (206) is disposed between the third connector (203) and the second vertical part of the second L-shaped base (202).
8. The decorative concrete insulation integrated panel hanging system as described in claim 6, characterized in that, The lower mounting system (2) also includes: a second gasket (207); The second gasket (207) is disposed between the closed end of the pressure base (205) and the nut of the fourth connector (204).