CN207212196U - Blinds unit and double glass solar shutters - Google Patents
Blinds unit and double glass solar shutters Download PDFInfo
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- CN207212196U CN207212196U CN201721123667.6U CN201721123667U CN207212196U CN 207212196 U CN207212196 U CN 207212196U CN 201721123667 U CN201721123667 U CN 201721123667U CN 207212196 U CN207212196 U CN 207212196U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A30/00—Adapting or protecting infrastructure or their operation
- Y02A30/60—Planning or developing urban green infrastructure
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B10/00—Integration of renewable energy sources in buildings
- Y02B10/10—Photovoltaic [PV]
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
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Abstract
本实用新型公开了一种百叶单元,它包括:太阳能电池片(4)、透明玻璃(2)、专用胶(3)和超薄磁条(1),两片等尺寸的透明玻璃(2)横向对齐,纵向交错布置并形成一个夹层结构和两个伸出结构,专用胶(3)设置于夹层结构的两端之间,太阳能电池片(4)设置于夹层结构的中间,两片超薄磁条(1)分别粘贴于伸出结构的内侧,两片超薄磁条的裸露端极性相反。采用本实用新型百叶单元制成的双玻太阳能百叶窗结构简单,可靠性高,不仅能够利用太阳能发电,缓解高峰电力需求、节能减排效果明显,还能替代传统窗户使用,为太阳能光伏建筑一体化的“绿色建筑”提供技术方案与产品。
The utility model discloses a louver unit, which comprises: solar cells (4), transparent glass (2), special glue (3), ultra-thin magnetic strips (1), two pieces of transparent glass (2) of equal size Horizontally aligned, longitudinally staggered to form a sandwich structure and two protruding structures, the special glue (3) is set between the two ends of the sandwich structure, and the solar cell (4) is set in the middle of the sandwich structure, two ultra-thin The magnetic strips (1) are pasted on the inside of the protruding structure respectively, and the exposed ends of the two ultra-thin magnetic strips have opposite polarities. The double-glass solar shutter made of the shutter unit of the utility model has simple structure and high reliability. It can not only use solar energy to generate electricity, relieve peak power demand, and have obvious effects of energy saving and emission reduction, but also can replace traditional windows, and is an integrated solar photovoltaic building. "Green Building" provides technical solutions and products.
Description
技术领域technical field
本实用新型涉及绿色建筑技术领域,特别涉及一种百叶单元及双玻太阳能百叶窗。The utility model relates to the technical field of green buildings, in particular to a shutter unit and a double-glass solar shutter.
背景技术Background technique
双玻组件在光伏产业的不断整合中应用而生,并且越来越多的在建筑设计中得到应用。节能、降耗、绿色、健康,已成为全世界对于未来建筑的共同追求,建筑能耗降低,将对全社会节能减排起到决定性的作用。太阳能光伏建筑一体化已成为“绿色建筑”研究开发的热点方向之一。太阳能光伏建筑一体化具有节约占地、节约输变电建设成本、缓解高峰电力需求、节能减排效果明显,以及代替部分建筑材料和装饰材料等特点。在建筑外表面(替代原有窗户)安装双玻太阳能发电百叶窗,不仅能够通过调节百叶角度来调整室内采光与通风,而且与建筑相结合的方式,节省空间又能充分铺设光伏组件,增加发电量。Double-glass modules have been applied in the continuous integration of the photovoltaic industry, and are increasingly used in architectural design. Energy saving, consumption reduction, greenness, and health have become the common pursuit of the world for future buildings. The reduction of building energy consumption will play a decisive role in the energy saving and emission reduction of the whole society. BIPV has become one of the hot spots in the research and development of "green buildings". Building integrated solar photovoltaic has the characteristics of saving land, saving construction cost of power transmission and transformation, alleviating peak power demand, obvious effect of energy saving and emission reduction, and replacing some building materials and decorative materials. Installing double-glass solar power shutters on the outer surface of the building (replacing the original windows) can not only adjust the indoor lighting and ventilation by adjusting the angle of the shutters, but also combine with the building to save space and fully lay photovoltaic modules to increase power generation. .
如申请号为2016209419462的中国实用新型专利公开了一种智能化太阳能百叶窗,包括:两条滑道;至少一扇百叶窗本体,其设置在两条滑道之间,百叶窗本体包括:窗框;至少四块太阳能叶片,其间隔设置在窗框内;至少四个叶片框,叶片框框住与其相对应的太阳能叶片;多对叶片传动轴,一个叶片框对应一对叶片传动轴;多个叶片传动齿轮,叶片传动齿轮和叶片传动轴固定连接;至少一个电机,电机固定设置在百叶窗本体的顶部;至少一个内齿皮带,内齿皮带绕设在电机的输出轴上的齿轮,以及多个叶片传动齿轮上;至少一个电器元件。虽然该实用新型能使百叶窗自动调整太阳能叶片的角度,实现最大限度地利用太阳能,并将转化的电能合理分配至家用电器。For example, the Chinese utility model patent with the application number 2016209419462 discloses an intelligent solar shutter, including: two slideways; at least one shutter body, which is arranged between the two slideways, and the shutter body includes: a window frame; at least Four solar blades, which are arranged at intervals in the window frame; at least four blade frames, the blade frames frame the corresponding solar blades; multiple pairs of blade transmission shafts, one blade frame corresponds to a pair of blade transmission shafts; multiple blade transmission gears , the vane transmission gear is fixedly connected to the vane transmission shaft; at least one motor, the motor is fixedly arranged on the top of the shutter body; at least one internal tooth belt, the internal tooth belt is wound on the gear on the output shaft of the motor, and a plurality of vane transmission gears on; at least one electrical component. Although this utility model can make the blinds automatically adjust the angle of the solar blades, realize maximum utilization of solar energy, and rationally distribute converted electric energy to household appliances.
但是该实用新型专利及市场上现有的光伏百叶窗大多采用将原有的普通百叶与光伏组件通过粘合的方式连接起来的设计方法,仍需手动操作,上述的连接方式将加重百叶自身的重量,对百叶窗的各连接部分产生额外压力,另外现有的光伏百叶窗密闭性能差,即使在完全关闭的状态下,也存在漏风的情况,不能满足现有建筑的气密性要求,不能替代传统窗户使用。However, most of the utility model patents and the existing photovoltaic shutters on the market adopt the design method of connecting the original ordinary shutters and photovoltaic modules by bonding, and manual operation is still required. The above-mentioned connection method will increase the weight of the shutters themselves , to generate additional pressure on the connecting parts of the louvers, and the existing photovoltaic louvers have poor airtight performance, even in the fully closed state, there is still air leakage, which cannot meet the airtightness requirements of existing buildings, and cannot replace traditional windows use.
实用新型内容Utility model content
本实用新型针对背景技术中存在的问题,提出一种百叶单元及双玻太阳能百叶窗,通过对百叶单元的重新设计,可使其满足气密性要求,并且设置自动连杆系统,替代传统窗户使用。Aiming at the problems existing in the background technology, the utility model proposes a louver unit and a double-glass solar louver. By redesigning the louver unit, it can meet airtightness requirements, and an automatic linkage system is set to replace traditional windows. .
本实用新型首先公开了一种百叶单元,它包括:太阳能电池片、透明玻璃、专用胶和超薄磁条,两片等尺寸的透明玻璃横向对齐,纵向交错布置并形成一个夹层结构和两个伸出结构,专用胶设置于夹层结构的两端之间用于固定两片透明玻璃,太阳能电池片设置于夹层结构的中间,两片超薄磁条分别粘贴于伸出结构的内侧,两片超薄磁条的裸露端极性相反。The utility model first discloses a louver unit, which comprises: solar cells, transparent glass, special glue and ultra-thin magnetic strips, two pieces of transparent glass of equal size are horizontally aligned, vertically staggered to form a sandwich structure and two The protruding structure, the special glue is set between the two ends of the sandwich structure to fix two pieces of transparent glass, the solar cell is set in the middle of the sandwich structure, and two ultra-thin magnetic strips are respectively pasted on the inner side of the protruding structure. The exposed ends of the ultra-thin magnetic strips are opposite polarity.
优选的,它还包括密封胶条,所述密封胶条设置在百叶单元的横向两端处。Preferably, it also includes a sealing rubber strip, and the sealing rubber strip is arranged at both lateral ends of the louver unit.
本实用新型还公开了一种双玻太阳能百叶窗,它包括若干个所述的百叶单元及一个U型窗框架,各百叶单元等间距的安装在U型窗框架中,百叶单元的一侧通过第一夹具连接转动连杆系统并垂直安装在U型窗框架的一侧,百叶单元的另一侧通过第二夹具连接U型窗框架的另一侧,所述第二夹具预留百叶电缆孔,百叶电缆孔配合U型窗框架上预留的电缆槽实现走线。The utility model also discloses a double-glass solar louver, which includes several louver units and a U-shaped window frame. A clamp is connected to the rotating link system and installed vertically on one side of the U-shaped window frame. The other side of the louver unit is connected to the other side of the U-shaped window frame through a second clamp. The second clamp reserves a hole for the louver cable. The louver cable hole cooperates with the reserved cable groove on the U-shaped window frame to realize wiring.
具体的,所述转动连接杆系统包括轴承、夹具轴、垂直连杆、第一转动连杆和第二转动连杆,垂直连杆固定在U型窗框架的一侧,第一转动连杆的一端连接于垂直连杆,第一转动连杆的另一端连接第二转动连接杆的一端,夹具轴的顶端固定在第二转动连接杆上,夹具轴作为第一夹具的端部穿过轴承;轴承等距离安装在U型窗框架的相应侧。Specifically, the rotating connecting rod system includes a bearing, a clamp shaft, a vertical connecting rod, a first rotating connecting rod and a second rotating connecting rod, the vertical connecting rod is fixed on one side of the U-shaped window frame, and the first rotating connecting rod One end is connected to the vertical connecting rod, the other end of the first rotating connecting rod is connected to one end of the second rotating connecting rod, the top end of the clamp shaft is fixed on the second rotating connecting rod, and the clamp shaft passes through the bearing as the end of the first clamping rod; The bearings are equidistantly mounted on corresponding sides of the U-shaped window frame.
更优的,所述转动连接杆系统还包括有连接件,夹具轴的顶端通过连接件固定第二转动连接杆。More preferably, the rotating connecting rod system further includes a connecting piece, and the top end of the clamp shaft is fixed to the second rotating connecting rod through the connecting piece.
更优的,双玻太阳能百叶窗还包括电机,电机固定于U型窗框架的底部并连接转动连接杆系统。在电机的作用下,垂直连杆带动第一转动连杆,第一转动连杆转动带动第二转动连杆,第二转动连杆带动夹具轴转动使百叶单元完整启闭动作。More preferably, the double-glass solar shutter also includes a motor, which is fixed on the bottom of the U-shaped window frame and connected to the rotating connecting rod system. Under the action of the motor, the vertical connecting rod drives the first rotating connecting rod, the first rotating connecting rod rotates to drive the second rotating connecting rod, and the second rotating connecting rod drives the clamp shaft to rotate to complete the opening and closing action of the louver unit.
更优的,U型窗框架的外侧通过膨胀螺栓固定于窗洞上。More preferably, the outer side of the U-shaped window frame is fixed to the window hole by expansion bolts.
更优的,双玻太阳能百叶窗还包括上挡水板和下挡水板,所述上挡水板设置在双玻百叶窗的上侧,所述下挡水板设置在双玻百叶窗的下侧。More preferably, the double-glass solar shutter also includes an upper water shield and a lower water shield, the upper water shield is arranged on the upper side of the double-glass blind, and the lower water shield is arranged on the lower side of the double-glass blind.
更优的,双玻太阳能百叶窗还包括背板,背板固定在U型窗框架的外侧。More preferably, the double-glass solar shutter also includes a backboard, and the backboard is fixed on the outside of the U-shaped window frame.
本实用新型的有益效果Beneficial effects of the utility model
本实用新型双玻太阳能百叶窗结构简单,可靠性高,不仅能够利用太阳能发电,缓解高峰电力需求、节能减排效果明显,还能替代传统窗户使用,为太阳能光伏建筑一体化的“绿色建筑”提供技术方案与产品。The double-glass solar shutters of the utility model have simple structure and high reliability, can not only utilize solar energy to generate electricity, relieve peak power demand, and have obvious effects of energy saving and emission reduction, but also can replace traditional windows, providing a "green building" for solar photovoltaic building integration technical solutions and products.
附图说明Description of drawings
图1为本实用新型百叶单元的结构示意图。Fig. 1 is a structural schematic diagram of the louver unit of the present invention.
图2为本实用新型百叶单元的闭合状态参考图。Fig. 2 is a reference diagram of the closed state of the louver unit of the present invention.
图3为本实用新型转动连接杆系统的结构示意图。Fig. 3 is a structural schematic diagram of the rotating connecting rod system of the present invention.
图4为本实用新型双玻太阳能百叶窗的结构示意图。Fig. 4 is a structural schematic diagram of a double-glass solar shutter of the present invention.
具体实施方式Detailed ways
下面结合实施例对本实用新型作进一步说明,但本实用新型的保护范围不限于此:The utility model will be further described below in conjunction with embodiment, but protection scope of the utility model is not limited to this:
实施例1:结合图1,一种百叶单元,它包括:太阳能电池片4、透明玻璃2、专用胶3和超薄磁条1,两片等尺寸的透明玻璃2横向对齐,纵向交错布置并形成一个夹层结构和两个伸出结构,专用胶3设置于夹层结构的两端之间用于固定两片透明玻璃2,太阳能电池片4设置于夹层结构的中间,两片超薄磁条1分别粘贴于伸出结构的内侧,两片超薄磁条的裸露端极性相反。专用胶3可以选用EVA胶。Embodiment 1: In combination with Fig. 1, a louver unit, which includes: solar cells 4, transparent glass 2, special glue 3 and ultra-thin magnetic strip 1, two pieces of transparent glass 2 of equal size are aligned horizontally, vertically staggered and A sandwich structure and two protruding structures are formed. The special glue 3 is arranged between the two ends of the sandwich structure to fix two pieces of transparent glass 2. The solar cell 4 is arranged in the middle of the sandwich structure. Two ultra-thin magnetic strips 1 They are respectively pasted on the inside of the protruding structure, and the exposed ends of the two ultra-thin magnetic strips have opposite polarities. Special glue 3 can select EVA glue for use.
结合图2和图4,上下相邻的两个百叶单元17闭合时,通过二者相向的伸出结构及超薄磁条1彼此之间的吸力形成密封。故使用本实施例百叶单元17的百叶窗,关窗时不再存在漏风的情况,满足现有建筑的气密性要求,可以完全替代传统窗户使用。Referring to FIG. 2 and FIG. 4 , when the two vertically adjacent louver units 17 are closed, a seal is formed by the protruding structure of the two facing each other and the suction force between the ultra-thin magnetic strips 1 . Therefore, using the louver of the louver unit 17 of this embodiment, there is no air leakage when the window is closed, which meets the airtightness requirements of existing buildings and can completely replace traditional windows.
实施例2:结合图4,如实施例1所述的百叶单元,它还包括密封胶条22,所述密封胶条22设置在百叶单元17的横向两端处,以增强百叶单元17的稳定性。Embodiment 2: With reference to FIG. 4 , the louver unit as described in Embodiment 1 also includes a sealing strip 22, and the sealing strip 22 is arranged at both lateral ends of the louver unit 17 to enhance the stability of the louver unit 17 sex.
实施例3:结合图4,一种双玻太阳能百叶窗,它包括若干个如实施例1所述的百叶单元17及一个U型窗框架11,各百叶单元17等间距的安装在U型窗框架11中,百叶单元17的一侧通过第一夹具14连接转动连杆系统16并垂直安装在U型窗框架11的一侧,百叶单元17的另一侧通过第二夹具13连接U型窗框架11的另一侧,所述第二夹具13预留百叶电缆孔,百叶电缆孔配合U型窗框架11上预留的电缆槽19实现走线。Embodiment 3: In conjunction with FIG. 4, a double-glass solar shutter, which includes several shutter units 17 and a U-shaped window frame 11 as described in Embodiment 1, and each shutter unit 17 is installed on the U-shaped window frame at equal intervals 11, one side of the louver unit 17 is connected to the rotating link system 16 through the first clamp 14 and is vertically installed on one side of the U-shaped window frame 11, and the other side of the louver unit 17 is connected to the U-shaped window frame through the second clamp 13 On the other side of 11, the second clamp 13 reserves a louver cable hole, and the louver cable hole cooperates with the cable groove 19 reserved on the U-shaped window frame 11 to realize wiring.
优选的,百叶电缆穿过U型窗框架11下沿进行汇集。Preferably, the louver cables pass through the lower edge of the U-shaped window frame 11 for collection.
实施例4:结合图3,如实施例3所述的双玻太阳能百叶窗,该实施例给出了一种转动连接杆系统16的可实现结构:所述转动连接杆系统16包括轴承5、夹具轴6、垂直连杆7、第一转动连杆8和第二转动连杆9,垂直连杆7固定在U型窗框架11的一侧,第一转动连杆8的一端连接于垂直连杆7,第一转动连杆8的另一端连接第二转动连接杆9的一端,夹具轴6的顶端固定第二转动连接杆9,夹具轴6作为第一夹具14的端部穿过轴承5;轴承5等距离安装在U型窗框架11的相应侧。Embodiment 4: In combination with FIG. 3, the double-glass solar shutter as described in Embodiment 3, this embodiment provides a realizable structure of a rotating connecting rod system 16: the rotating connecting rod system 16 includes a bearing 5, a clamp Shaft 6, vertical connecting rod 7, first rotating connecting rod 8 and second rotating connecting rod 9, vertical connecting rod 7 is fixed on one side of U-shaped window frame 11, and one end of first rotating connecting rod 8 is connected to the vertical connecting rod 7. The other end of the first rotating connecting rod 8 is connected to one end of the second rotating connecting rod 9, the top end of the clamp shaft 6 fixes the second rotating connecting rod 9, and the clamp shaft 6 passes through the bearing 5 as the end of the first clamp 14; The bearings 5 are equidistantly mounted on respective sides of the U-shaped window frame 11.
实施例5:如实施例4所述的双玻太阳能百叶窗,该实施例给出了转动连接杆系统16的改进结构,所述转动连接杆系统16还包括有连接件10,夹具轴6的顶端通过连接件10固定第二转动连接杆9。Embodiment 5: The double-glass solar shutter as described in Embodiment 4, this embodiment provides an improved structure of the rotating connecting rod system 16, and the rotating connecting rod system 16 also includes a connecting piece 10, and the top end of the clamp shaft 6 The second rotary connecting rod 9 is fixed by the connecting piece 10 .
实施例6:如实施例3所述的双玻太阳能百叶窗,该实施例给出了双玻太阳能百叶窗的动力装置,包括:电机15,电机15固定于U型窗框架11的底部并连接转动连接杆系统16。在电机15的作用下,垂直连杆7带动第一转动连杆8,第一转动连杆8转动带动第二转动连杆9,第二转动连杆9带动夹具轴6转动使百叶单元17完整启闭动作。Embodiment 6: The double-glass solar shutter as described in Embodiment 3, this embodiment provides the power device of the double-glass solar shutter, including: a motor 15, the motor 15 is fixed on the bottom of the U-shaped window frame 11 and connected to the rotating connection rod system 16 . Under the action of the motor 15, the vertical connecting rod 7 drives the first rotating connecting rod 8, the first rotating connecting rod 8 rotates to drive the second rotating connecting rod 9, and the second rotating connecting rod 9 drives the clamp shaft 6 to rotate to complete the louver unit 17 Open and close action.
本实用新型双玻太阳能百叶窗结构简单,可靠性高,不仅能够利用太阳能发电,缓解高峰电力需求、节能减排效果明显,还能替代传统窗户使用,为太阳能光伏建筑一体化的“绿色建筑”提供技术方案与产品。The double-glass solar shutters of the utility model have simple structure and high reliability, can not only utilize solar energy to generate electricity, relieve peak power demand, and have obvious effects of energy saving and emission reduction, but also can replace traditional windows, providing a "green building" for solar photovoltaic building integration technical solutions and products.
结合图4,更优的实施例中,双玻太阳能百叶窗还具有结构:With reference to Figure 4, in a more optimal embodiment, the double-glass solar shutters also have a structure:
U型窗框架11的外侧通过膨胀螺栓固定于窗洞上。以加强整个双玻太阳能百叶窗的牢固性。The outside of U-shaped window frame 11 is fixed on the window hole by expansion bolts. To strengthen the firmness of the entire double-glass solar shutters.
双玻太阳能百叶窗还包括上挡水板20和下挡水板21,所述上挡水板20设置在双玻百叶窗的上侧,所述下挡水板21设置在双玻百叶窗的下侧。以提高整个双玻太阳能百叶窗的防水效果。The double glass solar shutter also includes an upper water retaining plate 20 and a lower water retaining plate 21, the upper water retaining plate 20 is arranged on the upper side of the double glass blind, and the lower water retaining plate 21 is arranged on the lower side of the double glass blind. To improve the waterproof effect of the whole double glass solar shutters.
双玻太阳能百叶窗还包括背板23,背板23固定在U型窗框架11的外侧。以起到加固双玻太阳能百叶窗以及美观的作用。The double-glass solar shutter also includes a backboard 23 , and the backboard 23 is fixed on the outside of the U-shaped window frame 11 . To play the role of strengthening double glass solar shutters and aesthetics.
本文中所描述的具体实施例仅仅是对本实用新型精神做举例说明。本实用新型所属技术领域的技术人员可以对所描述的具体实施例做各种各样的修改或补充或采用类似的方式替代,但并不会偏离本实用新型的精神或者超越所附权利要求书所定义的范围。The specific embodiments described herein are only examples to illustrate the spirit of the present invention. Those skilled in the technical field to which the utility model belongs can make various modifications or supplements to the described specific embodiments or adopt similar methods to replace them, but they will not deviate from the spirit of the utility model or go beyond the appended claims defined range.
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Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107558913A (en) * | 2017-09-04 | 2018-01-09 | 江苏林洋新能源科技有限公司 | Blinds unit and double glass solar shutters |
| CN108691369A (en) * | 2018-05-31 | 2018-10-23 | 安吉腾佳艺家居有限公司 | A kind of wallboard |
| CN108691368A (en) * | 2018-05-31 | 2018-10-23 | 安吉腾佳艺家居有限公司 | A kind of ventilative wallboard |
| CN108756681A (en) * | 2018-05-31 | 2018-11-06 | 安吉腾佳艺家居有限公司 | A kind of wallboard with automatic regulation function |
| CN109025051A (en) * | 2018-05-31 | 2018-12-18 | 安吉腾佳艺家居有限公司 | A kind of wallboard with solar panel |
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2017
- 2017-09-04 CN CN201721123667.6U patent/CN207212196U/en active Active
Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107558913A (en) * | 2017-09-04 | 2018-01-09 | 江苏林洋新能源科技有限公司 | Blinds unit and double glass solar shutters |
| CN108691369A (en) * | 2018-05-31 | 2018-10-23 | 安吉腾佳艺家居有限公司 | A kind of wallboard |
| CN108691368A (en) * | 2018-05-31 | 2018-10-23 | 安吉腾佳艺家居有限公司 | A kind of ventilative wallboard |
| CN108756681A (en) * | 2018-05-31 | 2018-11-06 | 安吉腾佳艺家居有限公司 | A kind of wallboard with automatic regulation function |
| CN109025051A (en) * | 2018-05-31 | 2018-12-18 | 安吉腾佳艺家居有限公司 | A kind of wallboard with solar panel |
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