Temperature-regulated stone curtain wall

CN224741830UActive Publication Date: 2026-09-11ZHEJIANG GUOFEI CURTAIN WALL BUILDING DECORATION ENG CO LTD
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Patent Information

Application Number
CN202522093905.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-28
Publication Date
2026-09-11
Estimated Expiration
2035-09-28

AI Technical Summary

Technical Problem

[0003]但现有石材幕墙也有缺点,由于石材本身比热容低,其在太阳光照射下升温迅速,在夏季会使商超步行街内温度上升,形成热浪对消费者体验不佳,对此商超通常采用在墙壁附近喷洒水雾降温,但水雾会淋湿附近的行人,高端步行街会设室外空调的方案对步行街进行降温,但冷气会随气流快速消散,实际对环境温度的控制十分有限

Benefits of technology

[0039] In summary, this application includes at least one of the following beneficial technical effects: by stabilizing the water flow through the water collection tank and slowing down and diverting the water flow through the water strip, the heat exchange time between the water flow and the stainless steel metal frame is extended. At the same time, the high thermal conductivity of the metal frame achieves uniform heat distribution, which can fully absorb the heat of the stone veneer and greatly improve the cooling effect.

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Abstract

The application relates to a temperature-regulated stone curtain wall, which comprises an outer wall body, a plurality of vertical beams vertically extending outside the outer wall body, and horizontal beams horizontally connected between the vertical beams; a metal frame is embedded on the back of a stone veneer; a bottom hanging part is arranged on the back of the metal frame; a top fixing part is arranged on the top of the back of the metal frame; the metal frame is hung and fixed on the side of the horizontal beam away from the outer wall body through the bottom hanging part and the top fixing part; at least two water collecting grooves with openings upward are arranged between the upper and lower ends of the back of the metal frame; the bottom of the water collecting groove at the upper end is opened along the side close to the metal frame; water distribution strips are vertically arranged between the water collecting grooves; the water distribution strips protrude from the back of the metal frame and extend along the horizontal direction; and the water distribution strips are provided with vertically-communicating notches at intervals; and the lowermost water collecting groove is provided with a communicating structure. The stone curtain wall has the temperature-regulated function, can accelerate the transfer of the heat caused by the sunlight irradiation on the curtain wall, and has the effect of regulating the ambient temperature.
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Description

Technical Field

[0001] This application relates to the field of stone curtain wall technology, and in particular to a temperature-controlled stone curtain wall. Background Technology

[0002] Stone curtain walls are widely used in modern architectural decoration and renovation projects, and are gradually becoming a core choice in building facade technology systems. Their development relies on the dual innovation of natural stone processing techniques and curtain wall installation technology. Natural stone itself is the core carrier of aesthetic advantages. Especially in recent years, with the development of shopping mall complexes, pedestrian streets in these malls have become the focus of consumption, and stone curtain walls are also being used in the construction of many such pedestrian streets.

[0003] However, existing stone curtain walls also have drawbacks. Because stone itself has a low specific heat capacity, it heats up rapidly under sunlight, which can cause the temperature in shopping malls and pedestrian streets to rise in summer, creating heat waves that negatively impact the consumer experience. To address this, shopping malls usually spray water mist near the walls to cool them down, but the water mist can wet nearby pedestrians. High-end pedestrian streets may install outdoor air conditioning to cool the pedestrian street, but the cool air will dissipate quickly with the airflow, making the actual control over the ambient temperature very limited.

[0004] In response to the aforementioned technologies, the applicant proposes a stone curtain wall with temperature control function, which accelerates the transfer of heat from sunlight shining on the curtain wall and has the effect of regulating the ambient temperature. Utility Model Content

[0005] In order to accelerate the transfer of heat from sunlight shining on the curtain wall and regulate the ambient temperature, this application provides a temperature-controlled stone curtain wall.

[0006] This application provides a temperature-controlled stone curtain wall using the following technical solution:

[0007] A temperature-controlled stone curtain wall includes an exterior wall with several longitudinal beams extending vertically along its outer side, and horizontal beams connecting the longitudinal beams.

[0008] The back of the stone veneer is inlaid with a metal frame;

[0009] The metal frame has a bottom mounting section on the lower back.

[0010] A top fixing part is provided on the upper back of the metal frame;

[0011] The metal frame is attached to and fixed to the side of the beam away from the exterior wall by a bottom mounting section and a top fixing section;

[0012] At least two upward-facing water collection troughs are provided between the top and bottom ends of the back of the metal frame;

[0013] The bottom of the water collection tank at the upper end has an opening along the side closest to the metal frame;

[0014] Vertical water distribution strips are installed between the water collection tanks. The water distribution strips protrude from the back of the metal frame and extend horizontally, and vertically connected notches are spaced apart on the water distribution strips.

[0015] The bottom water collection trough is equipped with a connecting structure. The connecting structure extends vertically and is connected to the bottom water collection trough by lifting and lowering. The bottom end of the connecting structure abuts against the top water collection trough of the lower stone veneer panel. Water flows along the connecting structure into the bottom water collection trough.

[0016] Preferably, the bottom mounting part includes mounting feet, bottom engaging feet, and adjusting bolts;

[0017] The mounting brackets are fixed to the crossbeam;

[0018] One end of the hanging bracket is fixed to the crossbeam and extends outward, while the other end extends upward.

[0019] The bottom interlocking feet are fixed to both ends of the bottom of the metal frame. The bottom interlocking feet are fitted from top to bottom onto the vertical extension ends of the hooking feet. The length of the hooking feet along the crossbeam direction is longer than that of the bottom interlocking feet. The bottom interlocking feet and the hooking feet slide horizontally.

[0020] The widening of both ends of the hook-on legs creates a horizontal limit for the bottom interlocking legs;

[0021] The adjusting bolts are screwed from top to bottom onto the bottom engaging support feet, and the adjusting bolts abut against the bottom of the hanging support feet.

[0022] Preferably, the top mounting portion includes mounting legs, top engaging legs, locking bolts, and locking nuts;

[0023] Install the support legs and fix them to the crossbeam;

[0024] One end of the mounting bracket is fixed to the crossbeam and extends outward, while the other end extends upward.

[0025] The top interlocking support is fixed to both ends of the top of the metal frame. The top interlocking support is fitted from top to bottom onto the vertical extension end of the mounting support. The length of the mounting support along the beam direction is longer than that of the top interlocking support. The top interlocking support slides horizontally with the mounting support.

[0026] The widening of both ends of the mounting legs creates a horizontal limit for the top interlocking legs.

[0027] Locking bolts are installed from top to bottom on the top interlocking support legs;

[0028] The top of the vertical extension of the mounting leg is provided with a receiving groove along the sliding direction of the top engaging leg;

[0029] The locking nut slides horizontally along the receiving groove, which prevents the locking nut from rotating and abuts against the upper and lower ends of the locking nut;

[0030] The locking bolt is screwed onto the locking nut.

[0031] Preferably, the connecting structure includes an extension groove, a connecting opening, a cross-shaped slider, and an abutment post;

[0032] An extension channel is formed at the bottom of the water collection tank and extends downwards, connecting the extension channel to the water collection tank;

[0033] The connecting port is located at the bottom of the extension slot;

[0034] The cross-shaped slider extends vertically in a cross shape. The cross-shaped slider is housed and vertically slidably connected inside the extension groove. A gap is left between the cross-shaped slider and the inner wall of the extension groove to allow water in the water collection tank to flow downwards.

[0035] The abutment post is fixed to the bottom of the cross slider and extends downward through the connecting port, with a gap between the abutment post and the connecting port.

[0036] Preferably, the cross slider is not allowed to pass through the connecting port.

[0037] Preferably, the surface of the water distribution strip is arc-shaped, and the upper and lower ends of the water distribution strip smoothly transition to the surface of the metal frame.

[0038] Preferably, the metal frame is made of stainless steel.

[0039] In summary, this application includes at least one of the following beneficial technical effects: by stabilizing the water flow through the water collection tank and slowing down and diverting the water flow through the water strip, the heat exchange time between the water flow and the stainless steel metal frame is extended. At the same time, the high thermal conductivity of the metal frame achieves uniform heat distribution, which can fully absorb the heat of the stone veneer and greatly improve the cooling effect. Attached Figure Description

[0040] Figure 1 This is a front structural diagram of an embodiment of this application;

[0041] Figure 2 This is a schematic diagram of the rear structure of an embodiment of this application;

[0042] Figure 3 yes Figure 2 Enlarged view of part A;

[0043] Figure 4 This is a partial schematic diagram illustrating the bottom mounting portion and the top fixing portion according to an embodiment of this application;

[0044] Figure 5 This is a top view of the connected structure according to an embodiment of this application;

[0045] Figure 6This is a bottom view of the connected structure in an embodiment of this application.

[0046] Explanation of reference numerals in the attached drawings: 1. Longitudinal beam; 2. Crossbeam; 3. Bottom mounting part; 31. Mounting leg; 32. Bottom interlocking leg; 33. Adjusting bolt; 4. Top mounting part; 41. Mounting leg; 42. Top interlocking leg; 43. Locking bolt; 44. Locking nut; 5. Metal frame; 6. Stone veneer; 7. Water distribution strip; 8. Water collection trough; 9. Connecting structure; 91. Extension groove; 92. Connecting opening; 93. Cross slider; 94. Abutment column. Detailed Implementation

[0047] The present application will be further described in detail below with reference to the accompanying drawings.

[0048] This application discloses a temperature-controlled stone curtain wall, referring to... Figures 1-6 The structure includes an exterior wall with several vertically extending longitudinal beams 1 on its outer side. Horizontal beams 2 connect the longitudinal beams 1 horizontally. A metal frame 5 is inlaid on the back of a stone veneer panel 6. A bottom mounting part 3 is located below the back of the metal frame 5, and a top mounting part 4 is located above the back of the metal frame 5. The metal frame 5 is hooked and fixed to the side of the horizontal beams 2 away from the exterior wall by the bottom mounting part 3 and the top mounting part 4. At least two upward-facing water collection troughs 8 are provided between the upper and lower ends of the back of the metal frame 5. The bottom of the uppermost water collection trough 8 opens along the side closest to the metal frame 5. Vertically spaced water distribution strips 7 are provided between the water collection troughs 8. The water distribution strips 7 protrude from the back of the metal frame 5 and extend horizontally, with vertically connected notches spaced apart on the water distribution strips 7. The bottom water collection trough 8 is provided with a connecting structure 9. The connecting structure 9 extends vertically and is connected to the bottom water collection trough 8 in a lifting manner. The bottom end of the connecting structure 9 abuts against the top water collection trough 8 of the lower stone veneer 6. Water is guided along the connecting structure 9 to the lower water collection trough 8.

[0049] The implementation principle of this application is as follows: Water is injected from the water collection tank 8 of the uppermost stone panel 6. The water collection tank 8 regulates the water flow to avoid fluctuations. Guided by the opening at the bottom of the water collection tank 8, the water flows downward along the surface of the metal frame 5, absorbing heat from the stone panel 6. The high thermal conductivity of the metal frame 5 creates a uniform heat distribution effect. The water flow will converge or split during its downward flow. When flowing through the water distribution strip 7, the flow rate is reduced due to the obstruction of the water distribution strip 7, resulting in a longer heat exchange time and a better cooling effect on the stone panel 6. The water distribution strip 7 converges the water and guides the water flow through the gap, making the water flow more uniform on the back of the metal frame 5 and the heat conduction effect on the back of the metal frame 5 more even. The water passage between the two stone panels 6 is connected by the connecting structure 9 of the upper stone panel 6. The movable connecting structure 9 can eliminate the tolerances caused by the installation between the stone panels 6, avoid interference fits and mutual compression, and also avoid gaps that form water droplets and generate noise. Guided by the connecting structure 9, the water channel can cross the gap between the two stone panels 6, thus preventing water from eroding the sealant between the stone panels 6.

[0050] The bottom mounting part 3 includes mounting legs 31, bottom engaging legs 32, and adjusting bolts 33. Mounting legs 31 are fixed to the crossbeam 2. One end of mounting leg 31 is fixed to the crossbeam 2 and extends outward, while the other end extends upward. Bottom engaging legs 32 are fixed to both ends of the bottom of the metal frame 5. Bottom engaging legs 32 are fitted from top to bottom onto the vertically extending ends of mounting legs 31. The length of mounting legs 31 along the crossbeam 2 is longer than that of bottom engaging legs 32. Bottom engaging legs 32 slide horizontally with mounting legs 31. The ends of mounting legs 31 can be widened to limit the horizontal movement of bottom engaging legs 32, preventing slippage and falling during installation. Adjusting bolts 33 are screwed from top to bottom onto bottom engaging legs 32, and the adjusting bolts 33 abut against the top of the bottom of mounting legs 31.

[0051] The top mounting part 4 includes a mounting leg 41, a top engaging leg 42, a locking bolt 43, and a locking nut 44. The mounting leg 41 is fixed to the crossbeam 2. One end of the mounting leg 41 is fixed to the crossbeam 2 and extends outward, while the other end extends upward. The top engaging leg 42 is fixed to both ends of the top of the metal frame 5. The top engaging leg 42 is fitted from top to bottom onto the vertical extension end of the mounting leg 41. The length of the mounting leg 41 along the crossbeam 2 is longer than that of the top engaging leg 42. The top engaging leg 42 slides horizontally with the mounting leg 41. The two ends of the mounting leg 41 can be widened to limit the horizontal movement of the top engaging leg 42, preventing it from slipping and falling during installation. The locking bolt 43 passes through the top engaging leg 42 from top to bottom. A receiving groove is provided at the top of the vertical extension end of the mounting leg 41 along the sliding direction of the top engaging leg 42. The locking nut 44 slides horizontally along the receiving groove, which facilitates the adjustment of the position of the stone veneer 6. The receiving groove does not allow the locking nut 44 to rotate and abuts against the upper and lower ends of the locking nut 44. The locking bolt 43 is screwed onto the locking nut 44. The locking bolt 43 and the locking nut 44 are fitted together, and the mounting bracket 41 is interference-fitted to form a fixed installation.

[0052] The connecting structure 9 includes an extension groove 91, a connecting port 92, a cross slider 93, and a connecting post 94. The extension groove 91 is located on the bottom surface of the water collection tank 8 and extends downwards, connecting to the water collection tank 8. The connecting port 92 is located at the bottom of the extension groove 91. The cross slider 93 extends vertically in a cross shape, is housed within and slidably connected to the inside of the extension groove 91, and a gap is left between the cross slider 93 and the inner wall of the extension groove 91 to allow water to flow downwards in the water collection tank 8. The connecting port 92 does not allow the cross slider 93 to pass through, providing support at its lowest point and allowing for integrated installation. The connecting post 94 is fixed to the bottom end of the cross slider 93 and extends downwards through the connecting port 92, with a gap between the connecting post and the connecting port 92. The flow rate can be adjusted by controlling the gap.

[0053] Preferably, the surface of the water distribution strip 7 is arc-shaped, and the upper and lower ends of the water distribution strip 7 smoothly transition to the surface of the metal frame 5, which enhances the adsorption force on the water flow and avoids the generation of water droplets.

[0054] Preferably, the metal frame 5 is made of stainless steel.

[0055] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A temperature regulated stone curtain wall comprising an outer wall, characterized in that: The outer wall has several vertically extending longitudinal beams (1), and horizontal beams (2) are horizontally connected between the longitudinal beams (1); a metal frame (5) is inlaid on the back of the stone veneer (6); a bottom hanging part (3) is provided at the bottom of the back of the metal frame (5); a top mounting part (4) is provided at the top of the back of the metal frame (5); the metal frame (5) is hung and fixed to the side of the horizontal beam (2) away from the outer wall by the bottom hanging part (3) and the top mounting part (4); at least two upward-facing water collection troughs (8) are provided between the upper and lower ends of the back of the metal frame (5); the water collection trough at the upper end ( 8) The bottom is open along the side close to the metal frame (5); water distribution strips (7) are vertically spaced between the water collection tanks (8), the water distribution strips (7) protrude from the back of the metal frame (5) and extend horizontally, and the water distribution strips (7) are spaced with vertically connected notches; the bottom water collection tank (8) is provided with a connecting structure (9), the connecting structure (9) extends vertically and is connected to the bottom water collection tank (8) in a lifting manner, the bottom end of the connecting structure (9) abuts against the top water collection tank (8) of the lower stone veneer (6), and the water is guided along the connecting structure (9) to the bottom water collection tank (8).

2. The temperature regulated stone material curtain wall according to claim 1, characterized in that: The bottom mounting part (3) includes a mounting leg (31), a bottom engaging leg (32), and an adjusting bolt (33); the mounting leg (31) is fixed to the crossbeam (2); one end of the mounting leg (31) is fixed to the crossbeam (2) and extends outward, and the other end extends upward; the bottom engaging leg (32) is fixed to both ends of the bottom of the metal frame (5), and the bottom engaging leg (32) is fitted from top to bottom onto the vertical extension end of the mounting leg (31). The length of the mounting leg (31) along the crossbeam (2) is longer than that of the bottom engaging leg (32), and the bottom engaging leg (32) slides horizontally with the mounting leg (31); the two ends of the mounting leg (31) are widened to limit the horizontal movement of the bottom engaging leg (32); the adjusting bolt (33) is screwed from top to bottom onto the bottom engaging leg (32), and the adjusting bolt (33) abuts against the bottom of the mounting leg (31).

3. The temperature regulated stone material curtain wall of claim 1, wherein: The top mounting part (4) includes a mounting leg (41), a top engaging leg (42), a locking bolt (43), and a locking nut (44); the mounting leg (41) is fixed to the crossbeam (2); one end of the mounting leg (41) is fixed to the crossbeam (2) and extends outward, and the other end extends upward; the top engaging leg (42) is fixed to both ends of the top of the metal frame (5), and the top engaging leg (42) is fitted from top to bottom onto the vertically extending end of the mounting leg (41). The length of the mounting leg (41) along the crossbeam (2) is longer than that of the top engaging leg (42). The support leg (42) slides horizontally with the mounting leg (41); the mounting leg (41) is widened at both ends to limit the horizontal movement of the top engaging leg (42); the locking bolt (43) passes through the top engaging leg (42) from top to bottom; the top end of the vertical extension of the mounting leg (41) is provided with a receiving groove along the sliding direction of the top engaging leg (42); the locking nut (44) slides horizontally along the receiving groove, the receiving groove does not allow the locking nut (44) to rotate, and abuts against the upper and lower ends of the locking nut (44); the locking bolt (43) is screwed into the locking nut (44).

4. A temperature-controlled stone curtain wall according to claim 1, characterized in that: The connecting structure (9) includes an extension groove (91), a connecting port (92), a cross slider (93), and abutting post (94); the extension groove (91) is opened on the bottom surface of the water collection tank (8) and extends downward, and the extension groove (91) is connected to the water collection tank (8); the connecting port (92) is opened at the bottom of the extension groove (91); the cross slider (93) extends vertically in a cross shape, and the cross slider (93) is accommodated and vertically slidably connected inside the extension groove (91), and a gap is left between the cross slider (93) and the inner side wall of the extension groove (91) for the water in the water collection tank (8) to flow downward; the abutting post (94) is fixed to the bottom end of the cross slider (93) and extends downward through the connecting port (92), and abuts against the connecting port (92) with a gap left between them.

5. A temperature-controlled stone curtain wall according to claim 4, characterized in that: The connecting port (92) does not allow the cross slider (93) to pass through.

6. A temperature-controlled stone curtain wall according to claim 1, characterized in that: The surface of the water distribution strip (7) is arc-shaped, and the upper and lower ends of the water distribution strip (7) are smoothly transitioned to the surface of the metal frame (5).

7. A temperature-controlled stone curtain wall according to claim 1, characterized in that: The metal frame (5) is made of stainless steel.