Point type hollow intelligent energy-saving curtain wall glass
By introducing intelligent light-shading units and control energy-saving units into point-type hollow intelligent energy-saving curtain wall glass, the problems of inconvenience in light-shading adjustment and resource waste are solved, and the convenience and energy-saving effect of light-shading adjustment are achieved.
Patent Information
- Application Number
- CN202422447761.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-10-10
AI Technical Summary
The existing point-type hollow smart energy-saving curtain wall glass has inconvenient light shading and lacks energy-saving institutions, resulting in waste of resources and inconvenient use.
A dot-type hollow intelligent energy-saving curtain wall glass including glass fixed frame, intelligent light-shading unit and control energy-saving unit is designed. The light-shading adjustment is achieved through the fixed frame, blackout curtain, hydraulic cylinder and permanent magnet in the intelligent light-shading unit, and the power supply light-shading adjustment is provided by controlling the energy-saving solar panels in the energy-saving unit.
It realizes the convenience of light shading adjustment and energy-saving effect, reduces resource waste and does not affect use.
Smart Images

Figure CN223189889U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of curtain wall glass design, specifically to a point-type hollow intelligent energy-saving curtain wall glass. Background Art
[0002] A glass curtain wall is a building envelope or decorative structure whose supporting structure allows for a certain degree of displacement relative to the main structure, without sharing any forces acting on the main structure. Walls are available in single-layer or double-layer glass. Glass curtain walls are a beautiful and innovative decorative method for building walls, a defining feature of the modern era of high-rise architecture. According to a 2013 study by the bird protection volunteer organization FLAP, in Toronto alone, one to nine million migratory birds are killed annually by these curtain walls. To facilitate installation and use, a point-type hollow, intelligent, energy-saving curtain wall glass is needed.
[0003] The existing point-type hollow intelligent energy-saving curtain wall glass has the disadvantages of inconvenient shading adjustment and no energy-saving mechanism, which easily leads to waste of resources and affects its use. Utility Model Content
[0004] The technical problem to be solved by the utility model is to overcome the existing defects and provide a point-type hollow intelligent energy-saving curtain wall glass, which is more convenient to adjust the shading. The curtain wall glass has an energy-saving mechanism, saves resources, does not affect the use, and can effectively solve the problems in the background technology.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a point-type hollow intelligent energy-saving curtain wall glass, comprising a glass fixing frame, an intelligent shading unit and a control energy-saving unit;
[0006] Glass fixing frame: Two equally spaced hollow curtain wall glasses are set inside. The four corners of the two hollow curtain wall glasses are fixedly connected to the glass fixing frame through plug-in columns. The outer edge of the glass fixing frame is sleeved with an intelligent shading unit, and the fixed frame of the intelligent shading unit is provided with a control energy-saving unit;
[0007] Intelligent shading unit: includes a fixed frame, a shading curtain fixed shell, a winding cylinder, a ruler spring, a shading curtain, a counterweight fixed block, an auxiliary cylinder and an auxiliary slider. An L-shaped fixed block is provided at each of the four inner corners of the fixed frame. The fixed frame is sleeved on the glass fixed frame. Each L-shaped fixed block is fixedly connected to the corresponding glass fixed frame by a bolt. The front surface of the fixed frame is located on the upper side of the hollow curtain wall glass and is fixedly connected to the shading curtain fixed shell through a fixed block. A winding cylinder is fixedly connected to the shading curtain fixed shell, and a plurality of linear array ruler springs are fixedly connected to the winding cylinder. All One end of a blackout curtain is fixedly connected to the ruler spring, and a rectangular hole is provided on the lower surface of the blackout curtain fixing shell, and the rectangular hole extends into the blackout curtain fixing shell. The other end of the blackout curtain passes through the rectangular hole and is fixedly connected to the counterweight fixing block, and the front surface of the fixed frame is provided with sliding grooves on the left and right sides of the glass fixing frame, and an auxiliary cylinder is fixedly connected to each of the two sliding grooves, and an auxiliary slider is slidably connected to each of the two sliding grooves. The sliding holes on the two auxiliary sliders are slidably connected to the corresponding auxiliary cylinders, and the front surfaces of the two auxiliary sliders are fixedly connected to the counterweight fixing block through supporting rectangular blocks.
[0008] The glass fixing frame is used to fix the hollow curtain wall glass. The hollow curtain wall glass adopts a double-layer structure to increase the strength and facilitate use. The intelligent shading unit is used for shading. The control energy-saving unit is used to control the intelligent shading unit for easy intelligent control. The fixed frame is used to fix the blackout curtain fixing shell. The blackout curtain fixing shell is used to fix the winding cylinder. The winding cylinder is used to fix the ruler spring. The ruler spring is used to facilitate the resetting of the stretched blackout curtain for adjustment. The blackout curtain is used to block light for shading. The counterweight fixed block is used to pull the blackout curtain to move for easy adjustment. The auxiliary cylinder is used to make the movement of the auxiliary slider more stable. The auxiliary slider is used to move the blackout curtain for shading adjustment.
[0009] Furthermore, the intelligent shading unit also includes an adjusting hydraulic cylinder and a push block. The front surface of the counterweight fixed block is located at the positions corresponding to the two slide grooves and is fixedly connected to a push block respectively. The front surface of the shading curtain fixed shell is fixedly connected to the adjusting hydraulic cylinder through two fixing frames. The extended ends on the two adjusting hydraulic cylinders are respectively fixedly connected to the corresponding push blocks. The input end of the adjusting hydraulic cylinder is electrically connected to the output end of the external power supply through an external control switch group.
[0010] The hydraulic cylinder is adjusted to start and push the push block to move. The push block is used to pull the blackout curtain, thereby making it convenient for the blackout curtain to be used for blackout, and convenient for adjusting the position of the blackout curtain to be used for blackout.
[0011] Furthermore, the intelligent shading unit also includes a permanent magnet and an electromagnetic block. A limiting groove is provided on the rear surface of the counterweight fixed block between the two supporting rectangular blocks. A permanent magnet is fixedly connected in the limiting groove. An electromagnetic block is fixedly connected to the front surface of the fixed frame at a position below the glass fixed frame. The electromagnetic block is fixedly connected to the corresponding permanent magnet, and the input end of the electromagnetic block is electrically connected to the output end of the external power supply through an external control switch group.
[0012] The permanent magnet and the electromagnetic block are used to fix the blackout curtain, thereby performing fixed installation and use, which is convenient for blackout use. The electromagnetic block uses an electromagnet to control the connection with the permanent magnet for use.
[0013] Furthermore, the control energy-saving unit includes a connecting fixing plate, a protective fixing shell and an intelligent controller. The rear surface of the fixed frame is located at the lower side of the glass fixed frame and is fixedly connected to two equally spaced connecting fixing plates. The two connecting fixing plates are fixedly connected to a protective fixing shell by bolts. A smart controller is fixedly connected inside the protective fixing shell. The input end of the smart controller is electrically connected to the output end of the external power supply through an external control switch group.
[0014] The connecting fixing plate is used to fix the protective fixing shell, and the protective fixing shell is used to fix the smart controller. The smart controller adopts an intelligent controller to control the device, making the device more intelligent and convenient to use.
[0015] Furthermore, the energy-saving control unit further includes fixing bolts. A fixing bolt is respectively provided at the four corners of the connecting fixing plate, and the connecting fixing plate is connected to the outside through the fixing bolts.
[0016] The fixing bolts are used to clamp the outside for installation and fixing.
[0017] Furthermore, the control energy-saving unit also includes an energy-saving solar panel, and the front surface of the fixed frame is provided with rectangular card holes on the left and right sides of the intelligent shading unit, and multiple energy-saving solar panels with equal spacing are fixedly connected in the two rectangular card holes.
[0018] Energy-saving solar panels are used to absorb solar energy to convert light energy into electrical energy, thereby providing electricity for shading adjustment to save the environment and thus be used.
[0019] Compared with the prior art, the beneficial effects of the present invention are:
[0020] 1. This point-type hollow intelligent energy-saving curtain wall glass has the following advantages: it is equipped with an intelligent shading unit, which is used to fix the shading curtain fixing shell through a fixed frame, and the shading curtain fixing shell is used to fix the winding cylinder, and the winding cylinder is used to fix the ruler spring, and the ruler spring is used to facilitate the resetting of the stretched shading curtain, thereby adjusting the use, and the shading curtain is used to block light, thereby shading, and the counterweight fixed block is used to pull the shading curtain to move, which is convenient for adjustment. The auxiliary cylinder is used to make the movement of the auxiliary slider more stable, and the auxiliary slider is used to move the shading curtain, and the hydraulic cylinder is activated to push the push block to move, and the push block is used to pull the shading curtain, thereby facilitating the use of the shading curtain for shading, and conveniently adjusting the position of the shading curtain, and the permanent magnet and the electromagnetic block are used to fix the shading curtain, thereby fixed installation and convenient shading use;
[0021] 2. This point-type hollow smart energy-saving curtain wall glass has the following advantages: it is equipped with a control energy-saving unit, which is connected by a fixing plate to fix the protective fixing shell, which is used to fix the smart controller to control the device, and the fixing bolts are used to clamp the outside to install and fix it. The energy-saving solar panel is used to absorb solar energy and convert light energy into electrical energy, thereby providing electrical energy for shading adjustment to achieve control and energy saving.
[0022] 3. This point-type hollow intelligent energy-saving curtain wall glass has the following advantages: shading adjustment is more convenient, the curtain wall glass has an energy-saving mechanism, saves resources, and does not affect use. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 This is a schematic diagram of the front structure of the utility model;
[0024] Figure 2 This is a partial cross-sectional structural diagram of the intelligent shading unit of the utility model;
[0025] Figure 3 This is a partial cross-sectional structural diagram of the utility model blackout curtain;
[0026] Figure 4 It is a schematic diagram of the rear cross-sectional structure of the utility model.
[0027] In the figure: 1 glass fixing frame, 2 hollow curtain wall glass, 3 intelligent shading unit, 31 fixed frame, 32 shade fixing shell, 33 winding cylinder, 34 foot spring, 35 shade, 36 counterweight fixing block, 37 adjustment hydraulic cylinder, 38 push block, 39 permanent magnet, 310 electromagnetic block, 311 auxiliary cylinder, 312 auxiliary slider, 4 control energy-saving unit, 41 connection fixing plate, 42 protective fixing shell, 43 intelligent controller, 44 fixing bolts, 45 energy-saving solar panel. DETAILED DESCRIPTION
[0028] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0029] See also Figure 1-4 , this embodiment provides a technical solution: a point-type hollow intelligent energy-saving curtain wall glass, including a glass fixing frame 1, an intelligent shading unit 3, and a control energy-saving unit 4;
[0030] Glass fixing frame 1: Two equally spaced hollow curtain wall glasses 2 are provided inside. The four corners of the two hollow curtain wall glasses 2 are fixedly connected to the glass fixing frame 1 via plug-in columns. An intelligent shading unit 3 is sleeved on the outer edge of the glass fixing frame 1. A control energy-saving unit 4 is provided on the fixed frame 31 of the intelligent shading unit 3.
[0031] Intelligent shading unit 3: includes a fixed frame 31, a shading curtain fixed shell 32, a winding cylinder 33, a ruler spring 34, a shading curtain 35, a counterweight fixed block 36, an auxiliary cylinder 311 and an auxiliary slider 312. An L-shaped fixing block is provided at each of the four inner corners of the fixed frame 31. The fixed frame 31 is sleeved on the glass fixing frame 1. Each L-shaped fixing block is fixedly connected to the corresponding glass fixing frame 1 by a bolt. The front surface of the fixed frame 31 is located on the upper side of the hollow curtain wall glass 2 and is fixedly connected to the shading curtain fixed shell 32 through a fixing block. A winding cylinder 33 is fixedly connected inside the shading curtain fixed shell 32. A plurality of linear array ruler springs 34 are fixedly connected to the winding cylinder 33. All the ruler springs 34 are fixedly connected to one end of a blackout curtain 35, and a rectangular hole is provided on the lower surface of the blackout curtain fixing shell 32, which extends into the blackout curtain fixing shell 32. The other end of the blackout curtain 35 passes through the rectangular hole and is fixedly connected to the counterweight fixing block 36. The front surface of the fixed frame 31 is provided with sliding grooves on the left and right sides of the glass fixing frame 1, and an auxiliary cylinder 311 is fixedly connected to each of the two sliding grooves. An auxiliary slider 312 is slidably connected to each of the two sliding grooves. The sliding holes on the two auxiliary sliders 312 are slidably connected to the corresponding auxiliary cylinders 311, and the front surfaces of the two auxiliary sliders 312 are fixedly connected to the counterweight fixing block 36 through supporting rectangular blocks.
[0032] The glass fixing frame 1 is used to fix the hollow curtain wall glass 2. The hollow curtain wall glass 2 adopts a double-layer structure to increase the strength and facilitate use. The intelligent shading unit 3 is used for shading. The control energy-saving unit 4 is used to control the intelligent shading unit 3, which is convenient for intelligent control. The fixed frame 31 is used to fix the blackout curtain fixing shell 32. The blackout curtain fixing shell 32 is used to fix the winding cylinder 33. The winding cylinder 33 is used to fix the ruler spring 34. The ruler spring 34 is used to facilitate the resetting of the stretched blackout curtain 35, thereby adjusting it. The blackout curtain 35 is used to block light, thereby shading it. The counterweight fixed block 36 is used to pull the blackout curtain 35 to move, which is convenient for adjustment. The auxiliary cylinder 311 is used to make the auxiliary slider 312 move more stably. The auxiliary slider 312 is used to move the blackout curtain 35, thereby adjusting it.
[0033] The intelligent shading unit 3 also includes an adjusting hydraulic cylinder 37 and a push block 38. The front surface of the counterweight fixed block 36 is located at the positions corresponding to the two slide grooves and is fixedly connected to a push block 38 respectively. The front surface of the shading curtain fixed shell 32 is fixedly connected to the adjusting hydraulic cylinder 37 through two fixing frames. The extended ends on the two adjusting hydraulic cylinders 37 are fixedly connected to the corresponding push blocks 38 respectively. The input end of the adjusting hydraulic cylinder 37 is electrically connected to the output end of the external power supply through an external control switch group.
[0034] The hydraulic cylinder 37 is adjusted to start to push the push block 38 to move. The push block 38 is used to pull the blackout curtain 35, thereby making it convenient for the blackout curtain 35 to be used for blackout, and convenient for adjusting the position of the blackout curtain 35 to be used for blackout.
[0035] The intelligent shading unit 3 also includes a permanent magnet 39 and an electromagnetic block 310. A limiting groove is provided on the rear surface of the counterweight fixed block 36 between the two supporting rectangular blocks. A permanent magnet 39 is fixedly connected in the limiting groove. The front surface of the fixed frame 31 is located at the lower side of the glass fixed frame 1 and is fixedly connected to an electromagnetic block 310. The electromagnetic block 310 is fixedly connected to the corresponding permanent magnet 39. The input end of the electromagnetic block 310 is electrically connected to the output end of the external power supply through an external control switch group.
[0036] The permanent magnet 39 and the electromagnetic block 310 are used to fix the blackout curtain 35, thereby performing fixed installation and use, which is convenient for blackout use. The electromagnetic block 310 uses an electromagnet to control the connection with the permanent magnet 39 for use.
[0037] The control energy-saving unit 4 includes a connecting fixing plate 41, a protective fixing shell 42 and an intelligent controller 43. The rear surface of the fixed frame 31 is located at the lower side of the glass fixing frame 1 and is fixedly connected to two equally spaced connecting fixing plates 41. The two connecting fixing plates 41 are fixedly connected to a protective fixing shell 42 by bolts. A smart controller 43 is fixedly connected inside the protective fixing shell 42. The input end of the smart controller 43 is electrically connected to the output end of the external power supply through an external control switch group.
[0038] The connecting fixing plate 41 is used to fix the protective fixing shell 42, and the protective fixing shell 42 is used to fix the smart controller 43. The smart controller 43 adopts an intelligent controller to control the device, making the device more intelligent and convenient to use.
[0039] The control energy-saving unit 4 further includes fixing bolts 44 . A fixing bolt 44 is respectively provided at the four corners of the connecting fixing plate 41 . The connecting fixing plate 41 is connected to the outside through the fixing bolts 44 .
[0040] The fixing bolts 44 are used to clamp the exterior for installation and fixation.
[0041] The control energy-saving unit 4 also includes an energy-saving solar panel 45. The front surface of the fixed frame 31 is located on the left and right sides of the intelligent shading unit 3 and has rectangular card holes respectively. Multiple energy-saving solar panels 45 with equal spacing are fixedly connected in the two rectangular card holes.
[0042] The energy-saving solar panel 45 is used to absorb solar energy to convert light energy into electrical energy, thereby providing electrical energy for shading adjustment to save the environment and thus be used.
[0043] The working principle of a point-type hollow smart energy-saving curtain wall glass provided by the present invention is as follows: first, a connecting fixing plate 41 is used to fix a protective fixing shell 42, and the protective fixing shell 42 is used to fix the smart controller 43, thereby controlling the device, and a fixing bolt 44 is used to clamp the outside, thereby installing and fixing it for use, and an energy-saving solar panel 45 is used to absorb solar energy to convert light energy into electrical energy, thereby providing electrical energy for shading adjustment, and then a fixing frame 31 is used to fix a blackout curtain fixing shell 32, and the blackout curtain fixing shell 32 is used to fix a winding cylinder 33, and the winding cylinder 33 is used to fix a ruler spring 34, and the ruler spring 34 is used to facilitate the elongated blackout curtain. The light curtain 35 is reset, and thus it can be adjusted. The blackout curtain 35 is used to block light, and thus it can be used for blackout. The counterweight fixed block 36 is used to pull the blackout curtain 35 to move, and it is convenient to adjust. The auxiliary cylinder 311 is used to make the movement of the auxiliary slider 312 more stable. The auxiliary slider 312 is used to move the blackout curtain 35, and the adjustment hydraulic cylinder 37 is started to push the push block 38 to move. The push block 38 is used to pull the blackout curtain 35, and thus it is convenient for the blackout curtain 35 to be used for blackout, and it is convenient to adjust the position of the blackout curtain 35. The permanent magnet 39 and the electromagnetic block 310 are used to fix the blackout curtain 35, and thus it is fixed and installed for convenient blackout.
[0044] It is worth noting that the core chip of the external control switch group disclosed in the above embodiments is a PLC single-chip microcomputer, the smart controller 43 adopts an intelligent controller, the electromagnetic block 310 adopts an electromagnet, and the external control switch group controls the energy-saving solar panel 45, the smart controller 43, the electromagnetic block 310 and the adjustment hydraulic cylinder 37 using methods commonly used in the prior art.
[0045] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.
Claims
1. A point-type hollow intelligent energy-saving curtain wall glass, characterized by: It comprises a glass fixing frame (1), an intelligent shading unit (3) and a control energy-saving unit (4); Glass fixing frame (1): two equally spaced hollow curtain wall glasses (2) are arranged therein, the four corners of the two hollow curtain wall glasses (2) are fixedly connected to the glass fixing frame (1) via plug-in columns, an intelligent shading unit (3) is sleeved on the outer edge of the glass fixing frame (1), and a control energy-saving unit (4) is arranged on the fixed frame (31) of the intelligent shading unit (3); The intelligent shading unit (3) comprises a fixed frame (31), a shading curtain fixed shell (32), a rolling cylinder (33), a ruler spring (34), a shading curtain (35), a counterweight fixed block (36), an auxiliary cylinder (311) and an auxiliary slider (312). An L-shaped fixed block is respectively provided at the four inner corners of the fixed frame (31). The fixed frame (31) is sleeved on the glass fixed frame (1). Each L-shaped fixed block is fixedly connected to the corresponding glass fixed frame (1) by a bolt. The front surface of the fixed frame (31) is located at the upper side of the hollow curtain wall glass (2) and is fixedly connected to the shading curtain fixed shell (32) through a fixed block. A rolling cylinder (33) is fixedly connected inside the shading curtain fixed shell (32). A plurality of linear arrays are fixedly connected to the rolling cylinder (33). A ruler spring (34), one end of a blackout curtain (35) is fixedly connected to all the ruler springs (34), a rectangular hole is provided on the lower surface of the blackout curtain fixed shell (32), the rectangular hole extends into the blackout curtain fixed shell (32), the other end of the blackout curtain (35) passes through the rectangular hole and is fixedly connected to the counterweight fixed block (36), the front surface of the fixed frame (31) is provided with a slide groove at the positions on the left and right sides of the glass fixed frame (1), an auxiliary cylinder (311) is fixedly connected to each of the two slide grooves, an auxiliary slider (312) is slidably connected to each of the two slide grooves, the sliding holes on the two auxiliary sliders (312) are slidably connected to the corresponding auxiliary cylinder (311), and the front surfaces of the two auxiliary sliders (312) are fixedly connected to the counterweight fixed block (36) through supporting rectangular blocks.
2. The point-type hollow intelligent energy-saving curtain wall glass according to claim 1, characterized in that: The intelligent shading unit (3) further comprises an adjusting hydraulic cylinder (37) and a push block (38); the front surface of the counterweight fixed block (36) is located at positions corresponding to the two slide slots and is fixedly connected to a push block (38) respectively; the front surface of the shading curtain fixed shell (32) is fixedly connected to the adjusting hydraulic cylinder (37) via two fixing frames; the extended ends of the two adjusting hydraulic cylinders (37) are fixedly connected to the corresponding push blocks (38) respectively; the input end of the adjusting hydraulic cylinder (37) is electrically connected to the output end of an external power supply via an external control switch group.
3. The point-type hollow intelligent energy-saving curtain wall glass according to claim 1, characterized in that: The intelligent shading unit (3) further comprises a permanent magnet (39) and an electromagnetic block (310); a limit slot is provided on the rear surface of the counterweight fixed block (36) between two supporting rectangular blocks; a permanent magnet (39) is fixedly connected in the limit slot; a front surface of the fixed frame (31) is fixedly connected to an electromagnetic block (310) at a position below the glass fixed frame (1); the electromagnetic block (310) is fixedly connected to the corresponding permanent magnet (39); and an input end of the electromagnetic block (310) is electrically connected to an output end of an external power supply via an external control switch group.
4. The point-type hollow intelligent energy-saving curtain wall glass according to claim 1, characterized in that: The control energy-saving unit (4) comprises a connecting fixing plate (41), a protective fixing shell (42) and an intelligent controller (43); the rear surface of the fixed frame (31) is located at the lower side of the glass fixing frame (1) and is fixedly connected to two connecting fixing plates (41) at equal intervals; the two connecting fixing plates (41) are fixedly connected to a protective fixing shell (42) by bolts; an intelligent controller (43) is fixedly connected inside the protective fixing shell (42); the input end of the intelligent controller (43) is electrically connected to the output end of an external power supply through an external control switch group.
5. The point-type hollow intelligent energy-saving curtain wall glass according to claim 4, characterized in that: The control energy-saving unit (4) further comprises fixing bolts (44), and a fixing bolt (44) is respectively provided at the four corners of the connecting fixing plate (41), and the connecting fixing plate (41) is clamped with the outside via the fixing bolts (44).
6. The point-type hollow intelligent energy-saving curtain wall glass according to claim 4, characterized in that: The control energy-saving unit (4) further comprises an energy-saving solar panel (45), and the front surface of the fixed frame (31) is provided with rectangular snap holes at positions on the left and right sides of the intelligent shading unit (3), and a plurality of energy-saving solar panels (45) at equal intervals are fixedly connected in the two rectangular snap holes.