Mounting structure of sunshade shutter
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI YUEBAI SHADING TECH CO LTD
- Filing Date
- 2025-08-14
- Publication Date
- 2026-08-07
AI Technical Summary
[0004]该装置虽然采用百叶结构解决了夏季炎热时光线太强导致室内温度过高的问题,但是安装过程复杂,难以在不需要使用的冬季拆除,使用体验感不佳
[0016]本实用新型的有益效果:本实用新型公开了一种遮阳百叶的安装结构,包括相对设置的两个支撑臂14,其中一个为驱动端,另一个为随动端,两支撑臂14之间排列设有若干叶片18。每个支撑臂14等间距设有多个叶片夹支臂17,且两支撑臂14的叶片夹支臂17对称设置。支撑臂14通过摇臂30连接,摇臂两端分别连接传动臂11,传动臂11另一端连接操作条12,操作条12设有多个连接轴,每个连接轴穿过对应的叶片夹23并与叶片夹支臂17转动连接,叶片夹可拆卸连接叶片18,相邻叶片18边缘插接。驱动端的支撑臂14连接驱动系统,通过驱动摇臂30转动带动叶片夹23同步转动,实现叶片18的同步翻转。驱动系统优选采用管状电机26,输出正反向扭力控制叶片18开闭。叶片18两端设有弯折结构,通过卡片183与容置槽184密封,并设有水平延展片增强重叠密封性。叶片18与叶片夹23通过卡勾和卡块辅助限位连接,提高稳定性。支撑臂14通过安装码组件与安装架1锁接固定。本实用新型结构紧凑,传动稳定,便于安装和拆卸,适用于各类遮阳百叶系统。
Smart Images

Figure CN224606326U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of louvers, and in particular to an installation structure for sunshade louvers. Background Technology
[0002] Shopping malls, resort hotels, and many other buildings typically use large glass windows or glass roofs, which not only meet the need for lighting but also enhance the aesthetics. Currently, these buildings often use louvered structures to design the roof and glass windows to meet the sun shading needs during the hot summer months.
[0003] Publication No.: CN220302033U, a rainproof rotating louvered window for a skylight includes a window frame installed on the skylight of a sunroom and several louvers rotatably disposed within the window frame. The window frame is equipped with a drive assembly for rotating each louver. One side of each louver has an overlapping portion, and the other side has a receiving portion. The overlapping portion overlaps with the receiving portion of an adjacent louver. Waterproof components are provided on both sides of the window frame and located on the louvers to seal the gap between the window frame and the louvers. This application effectively meets the needs of lighting, shading, ventilation, and rain protection, thereby increasing its practicality.
[0004] Although the device uses a louvered structure to solve the problem of excessive indoor temperature caused by strong sunlight in the hot summer, the installation process is complicated and it is difficult to remove in the winter when it is not needed, resulting in a poor user experience. Utility Model Content
[0005] In view of this, the present invention proposes an installation structure for sunshade louvers.
[0006] A mounting structure for a sunshade louver includes two opposing support arms 14, one of which is a drive end and the other is a follower end. A plurality of blades 18 are arranged between the two support arms 14. Each support arm 14 has multiple blade clamping arms 17 evenly spaced, and the blade clamping arms 17 of the two support arms 14 are symmetrically arranged. The opposing support arms 14 are connected by a rocker arm 30. The support arm 14 mounting bracket 1 is locked in place by a mounting bracket assembly. Both ends of the rocker arm 30, located inside the support arm 14, are respectively connected to one end of a transmission arm 11. The other end of the transmission arm 11 is connected to an operating bar 12. The body of the operating bar 12 has multiple connecting shafts. The connecting shafts all pass through the corresponding blade clamps 23 and are rotatably connected to their corresponding blade clamp support arms 17. Each blade clamp 23 is detachably connected to a blade 18. The edges of adjacent blades 18 are inserted together. Each blade has a first horizontal extension piece 181 at one end and a second horizontal extension piece 182 at the other end. The height of the second horizontal extension piece 182 is lower than the height of the first horizontal extension piece 181. The first horizontal extension piece 181 of the blade 18 partially overlaps with the second horizontal extension piece 182 of the blade 18 connected to it. The support arm 14 at the drive end is connected to the drive system. The drive system drives the rocker arm 30 to rotate, thereby driving several blade clamps 23 to rotate synchronously, so as to control the synchronous flipping of the blades 18.
[0007] Furthermore, the drive system includes a tubular motor 26, the body of which is fixedly mounted on the support arm 14. The output end of the tubular motor 26 is connected to the rocker arm 30. The tubular motor 26 outputs positive torque, which drives the rocker arm 30 to rotate. The positive torque is transmitted to the transmission arm 11 and drives the operating bar 12 to swing, thereby driving the blade clamp 23 to rotate along its corresponding connecting shaft center, thus realizing the opening action of the blade 18. Conversely, when the tubular motor 26 outputs reverse torque, the blade 18 realizes the closing action.
[0008] Furthermore, the blade 18 is bent at both ends toward the support arm 14, with a card 183 vertically provided at the bottom of the bend at one end and a receiving groove 184 vertically provided at the bottom of the bend at the other end. The receiving groove 184 of the blade 18 is filled with filler glue and engages with the card 183 of the adjacent blade 18.
[0009] Furthermore, a first horizontal extension piece 181 is provided at the bend of the blade 18 near the card 183, and a second horizontal extension piece 182 is provided at the bend of the blade 18 near the receiving groove 184. One end of the second horizontal extension piece 182 is integrally formed with the bend of the blade 18, and the other end is integrally formed with the receiving groove 184.
[0010] Furthermore, a first hook 185 is vertically provided at the center of the bottom of the blade 18, and a second hook 231 is provided at the corresponding position of the blade clip 23 that is detachably connected to the blade 18. After the blade 18 and the blade clip 23 are installed, the first hook 185 and the second hook 231 are engaged and connected.
[0011] Furthermore, the first hook 185 is provided with a reinforcing rib at its lateral position.
[0012] Furthermore, a first locking block 186 is provided vertically at the lower part of the side wall of the receiving groove 184 near the bend of the blade 18, and a first engaging groove 22 is provided at the corresponding position of the blade clamp 23 which is detachably connected to the blade 18. After the blade 18 and the blade clamp 23 are installed, the first locking block 186 engages with the first engaging groove 22 to assist in limiting the connection.
[0013] Furthermore, a transmission arm seat 29 is provided at the blade clamp support arm 17. The transmission arm seat 29 is rotatably connected to the corresponding connecting shaft through the transmission arm seat 29, and the connecting shaft is locked to the blade clamp 23.
[0014] Furthermore, the two opposing support arms 14 are locked to the mounting bracket 1 via mounting bracket components to fix the sunshade louvers.
[0015] Furthermore, the mounting bracket assembly includes a first mounting bracket and a second mounting bracket, both of which are L-shaped stainless steel components. The mounting bracket includes a long plane and a short plane. The long plane has an elongated slotted hole 411 in the middle, and the short plane has a short slotted hole 431. A hexagonal bolt 21 passes through the elongated slotted hole 411 on the long plane of the first mounting bracket and locks with the short slotted hole 431 on the short plane of the second mounting bracket. The short slotted hole 431 on the short plane of the first mounting bracket locks with the mounting bracket 1.
[0016] The beneficial effects of this utility model are as follows: This utility model discloses an installation structure for a sunshade louver, including two support arms 14 arranged opposite each other, one of which is a driving end and the other is a follower end. A plurality of blades 18 are arranged between the two support arms 14. Each support arm 14 has a plurality of blade clamp arms 17 at equal intervals, and the blade clamp arms 17 of the two support arms 14 are symmetrically arranged. The support arms 14 are connected by rocker arms 30, with transmission arms 11 connected to both ends of the rocker arms. The other end of the transmission arms 11 is connected to an operating bar 12. The operating bar 12 has a plurality of connecting shafts, each of which passes through a corresponding blade clamp 23 and is rotatably connected to a blade clamp arm 17. The blade clamp is detachably connected to the blades 18, and adjacent blades 18 are inserted at their edges. The support arm 14 at the driving end is connected to a driving system, which drives the rocker arm 30 to rotate, causing the blade clamps 23 to rotate synchronously, thus achieving synchronous rotation of the blades 18. The driving system preferably uses a tubular motor 26, which outputs forward and reverse torque to control the opening and closing of the blades 18. The blade 18 has bent structures at both ends, which are sealed to the receiving groove 184 by clips 183, and a horizontal extension piece is provided to enhance the overlapping sealing. The blade 18 and the blade clamp 23 are connected by hooks and blocks for auxiliary limiting connection, improving stability. The support arm 14 is locked and fixed to the mounting bracket 1 by mounting bracket assembly. This utility model has a compact structure, stable transmission, and is easy to install and disassemble, and is suitable for various sunshade louver systems. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of the installation structure of a sunshade louver according to this utility model.
[0018] Figure 2 This is a schematic diagram of the rear view of the installation structure of a sunshade louver according to this utility model.
[0019] Figure 3 This is a side view of the installation structure of a sunshade louver according to the present invention.
[0020] Figure 4 yes Figure 1 Enlarged image A.
[0021] Figure 5 yes Figure 3 Enlarged image B.
[0022] Explanation of main component symbols
[0023] Mounting bracket 1, transmission arm 11, operating bar 12, support arm 14, blade clamp support arm 17, blade 18, hex bolt 21, blade clamp 23, tubular motor 26, transmission arm seat 29, rocker arm 30, first horizontal extension piece 181, second horizontal extension piece 182, receiving groove 184, card 183, first hook 185 and second hook 231, first locking block 186, first locking groove 22, first mounting bracket 41, second mounting bracket 43, elongated hole 411, short hole 431. Detailed Implementation
[0024] The following embodiments are described to aid in understanding this application. These embodiments are not, and should not be, construed in any way as limiting the scope of protection of this application.
[0025] In the following description, those skilled in the art will recognize that throughout this discussion, components may be described as individual functional units (which may include subunits), but those skilled in the art will recognize that various components or portions thereof may be divided into individual components or may be integrated together (including integrated within a single system or component).
[0026] Furthermore, the connection between components or systems is not intended to be limited to a direct connection; on the contrary, data between these components may be modified, reformatted, or otherwise altered by intermediate components. Additionally, other or fewer connections may be used. It should also be noted that the terms "connection," "link," or "input" should be understood to include direct connections, indirect connections via one or more intermediate devices, and wireless connections. Example 1:
[0027] like Figure 1-5As shown, an installation structure for a sunshade louver includes two opposing support arms 14, one of which is the driving end and the other is the following end. A plurality of blades 18 are arranged between the two support arms 14. Each support arm 14 has multiple blade clamping arms 17 spaced equally apart, with the blade clamping arms 17 of the two support arms 14 arranged symmetrically. The opposing support arms 14 are connected by a rocker arm 30. The support arm 14 mounting bracket 1 is locked in place by a mounting bracket assembly. Both ends of the rocker arm 30, located inside the support arm 14, are respectively connected to one end of a transmission arm 11. The other end of the transmission arm 11 is connected to an operating bar 12. The body of the operating bar 12 is provided with... Multiple connecting shafts are provided, each passing through a corresponding blade clamp 23 and rotatably connected to its corresponding blade clamp support arm 17. Each blade clamp 23 is detachably connected to a blade 18. Adjacent blades 18 are interlocked at their edges. Each blade has a first horizontal extension piece at one end and a second horizontal extension piece at the other end. The height of the second horizontal extension piece is lower than the height of the first horizontal extension piece. The first horizontal extension piece of each blade 18 overlaps with the second horizontal extension piece of the blade 18 connected to it. A drive system is connected to the support arm 14 at the drive end, which drives the rocker arm 30 to rotate, thereby causing several blade clamps 23 to rotate synchronously and controlling the synchronous rotation of the blades 18. The structure is compact, the transmission is stable, and it is easy to install and disassemble, making it suitable for various types of sunshade louver systems.
[0028] The drive system includes a tubular motor 26, the body of which is fixedly mounted on the support arm 14. The output end of the tubular motor 26 is connected to the rocker arm 30. The positive torque output by the tubular motor 26 drives the rocker arm 30 to rotate. The positive torque is transmitted to the transmission arm 11, which drives the operating bar 12 to swing. A transmission arm seat 29 is provided at the blade clamp support arm 17. The transmission arm seat 29 is rotatably connected to the corresponding connecting shaft. The connecting shaft is locked to the blade clamp 23. This drives the blade clamp 23 to rotate along the center of its corresponding connecting shaft, realizing the opening action of the blade 18. Conversely, when the tubular motor 26 outputs reverse torque, the blade 18 realizes the closing action.
[0029] The blade 18 is bent at both ends toward the support arm 14. A card 183 is vertically positioned at the bottom of the bend at one end, and a receiving groove 184 is vertically positioned at the bottom of the bend at the other end. The receiving groove 184 of the blade 18 is filled with sealant and engages with the card 183 of the adjacent blade 18, creating a sealed connection between the receiving groove 184 and the adjacent blade 18. This effectively prevents external light from entering the room through the gaps between the blades, providing effective sun shading. A first horizontal extension piece is provided at the bend of the blade 18 near the card 183, and a second horizontal extension piece is provided at the bend of the blade 18 near the receiving groove 184. One end of the second horizontal extension piece is integrally formed with the bend of the blade 18, and the other end is integrally formed with the receiving groove 184, further enhancing the sealing performance. This prevents sunlight from penetrating while also blocking rainwater and facilitating its outflow.
[0030] The blade 18 has a first hook 185 vertically positioned at the center of its bottom, and a second hook 231 is provided at the corresponding position of the blade clip 23, which is detachably connected to the blade 18. The first hook 185 has a reinforcing rib in its horizontal position. After the blade 18 and the blade clip 23 are installed, the first hook 185 and the second hook 231 are engaged and connected, and the blade can be installed by snapping them together. The installation process is simple and easy to operate. The blade clip 23 is made of plastic, which is lightweight, safe to install at high places, and has low cost.
[0031] A first locking block 186 is provided vertically at the lower part of the side wall of the receiving groove 184 near the bend of the blade 18. A first locking groove 22 is provided at the corresponding position of the blade clamp 23 which is detachably connected to the blade 18. After the blade 18 and the blade clamp 23 are installed, the first locking block 186 and the first locking groove 22 are locked together to assist in limiting the connection. The locking between the two helps to strengthen the tightness between the blades after closing.
[0032] Two opposing support arms 14 are locked to the mounting frame 1 via mounting bracket assemblies to fix the sunshade louvers. The mounting bracket assembly includes a first mounting bracket and a second mounting bracket, both of which are L-shaped stainless steel components. Each mounting bracket includes a long plane and a short plane. The long plane has a long waist-shaped hole 411 in the middle, and the short plane has a short waist-shaped hole 431. A hexagonal bolt 21 passes through the long waist-shaped hole 411 on the long plane of the first mounting bracket and locks with the short waist-shaped hole 431 on the short plane of the second mounting bracket. The short waist-shaped hole 431 on the short plane of the first mounting bracket is locked to the mounting frame 1, and the locking is secure.
[0033] The beneficial effects of this utility model are as follows: This utility model discloses an installation structure for a sunshade louver, including two support arms 14 arranged opposite each other, one of which is a driving end and the other is a follower end. A plurality of blades 18 are arranged between the two support arms 14. Each support arm 14 has a plurality of blade clamp arms 17 at equal intervals, and the blade clamp arms 17 of the two support arms 14 are symmetrically arranged. The support arms 14 are connected by rocker arms 30, with transmission arms 11 connected to both ends of the rocker arms. The other end of the transmission arms 11 is connected to an operating bar 12. The operating bar 12 has a plurality of connecting shafts, each of which passes through a corresponding blade clamp 23 and is rotatably connected to a blade clamp arm 17. The blade clamp is detachably connected to the blades 18, and adjacent blades 18 are inserted at their edges. The support arm 14 at the driving end is connected to a driving system, which drives the rocker arm 30 to rotate, causing the blade clamps 23 to rotate synchronously, thus achieving synchronous rotation of the blades 18. The driving system preferably uses a tubular motor 26, which outputs forward and reverse torque to control the opening and closing of the blades 18. The blade 18 has bent structures at both ends, which are sealed to the receiving groove 184 by clips 183, and a horizontal extension piece is provided to enhance the overlapping seal. The blade 18 and the blade clamp 23 are connected by hooks and blocks for auxiliary limiting, improving stability. The support arm 14 is locked and fixed to the mounting bracket 1 by mounting bracket assembly. This utility model has a compact structure, stable transmission, and is easy to install and disassemble, and is suitable for various sunshade louver systems.
[0034] Although this application discloses several aspects and embodiments, other aspects and embodiments will be obvious to those skilled in the art. Various modifications and improvements can be made without departing from the concept of this application, and these all fall within the scope of protection of this application. The various aspects and embodiments disclosed in this application are for illustrative purposes only and are not intended to limit this application. The actual scope of protection of this application is determined by the claims.
Claims
1. An installation structure for a sunshade louver, comprising two support arms (14) arranged opposite to each other, wherein one support arm (14) is a driving end and the other support arm (14) is a following end, characterized in that: Several blades (18) are arranged between two support arms (14). Each support arm (14) is provided with multiple blade clamp arms (17) at equal intervals, and the blade clamp arms (17) of the two support arms (14) are symmetrically arranged. The two support arms (14) arranged opposite each other are connected by a rocker arm (30). The support arm (14) mounting bracket (1) is locked by a mounting bracket assembly. Both ends of the rocker arm (30) and the inner side of the support arm (14) are respectively connected to one end of a transmission arm (11). The other end of the transmission arm (11) is connected to an operating bar (12). The body of the operating bar (12) is provided with multiple connecting shafts. Each connecting shaft passes through the corresponding blade clamp (23) and its corresponding blade clamp arm (18). 7) Rotary connection, each blade clamp (23) is detachably connected to a blade (18), the edges of adjacent blades (18) are inserted, each blade has a first horizontal extension piece (181) at one end and a second horizontal extension piece (182) at the other end, the height of the second horizontal extension piece (182) is lower than the height of the first horizontal extension piece (181), the first horizontal extension piece (181) of the blade (18) overlaps with the second horizontal extension piece (182) of the blade (18) connected to it, the support arm (14) of the drive end is connected to the drive system, the rocker arm (30) is driven to rotate through the drive system, and several blade clamps (23) rotate synchronously to control the synchronous flipping of the blades (18).
2. The installation structure of a sunshade louver as described in claim 1, characterized in that: The drive system includes a tubular motor (26), the body of which is fixedly mounted on the support arm (14). The output end of the tubular motor (26) is connected to the rocker arm (30). The tubular motor (26) outputs positive torque, which drives the rocker arm (30) to rotate. The positive torque is transmitted to the transmission arm (11) and drives the operating bar (12) to swing, thereby driving the blade clamp (23) to rotate along its corresponding connecting shaft center, thus realizing the opening action of the blade (18). Conversely, when the tubular motor (26) outputs reverse torque, the blade (18) realizes the closing action.
3. The installation structure of a sunshade louver as described in claim 1, characterized in that: The blade (18) is bent at both ends toward the support arm (14). A card (183) is vertically provided at the bottom of the bend at one end, and a receiving groove (184) is vertically provided at the bottom of the bend at the other end. The receiving groove (184) of the blade (18) is filled with filler glue and engages with the card (183) of the adjacent blade (18).
4. The installation structure of a sunshade louver as described in claim 1, characterized in that: A first horizontal extension piece (181) is provided at the bend of the blade (18) near the card (183), and a second horizontal extension piece (182) is provided at the bend of the blade (18) near the receiving groove (184). One end of the second horizontal extension piece (182) is integrally formed with the bend of the blade (18), and the other end is integrally formed with the receiving groove (184).
5. The installation structure of a sunshade louver as described in claim 1, characterized in that: The blade (18) has a first hook (185) vertically positioned at the center of its bottom. The blade clip (23) which is detachably connected to the blade (18) has a second hook (231) at the corresponding position. After the blade (18) and the blade clip (23) are installed, the first hook (185) and the second hook (231) are connected together.
6. The installation structure of a sunshade louver as described in claim 5, characterized in that: The first hook (185) is provided with a reinforcing rib in the lateral position.
7. The installation structure of a sunshade louver as described in claim 3, characterized in that: A first locking block (186) is provided vertically on the lower part of the side wall of the receiving groove (184) near the bend of the blade (18). A first locking groove (22) is provided at the corresponding position of the blade clamp (23) which is detachably connected to the blade (18). After the blade (18) and the blade clamp (23) are installed, the first locking block (186) and the first locking groove (22) are engaged to assist in limiting the connection.
8. The installation structure of a sunshade louver as described in claim 1, characterized in that: A transmission arm seat (29) is provided at the blade clamp support arm (17). The transmission arm seat (29) is rotatably connected to the corresponding connecting shaft through the transmission arm seat (29). The connecting shaft is locked to the blade clamp (23).
9. The installation structure of a sunshade louver as described in claim 1, characterized in that: Two opposing support arms (14) are locked to the mounting bracket (1) via mounting bracket components to fix the sunshade louvers.
10. The installation structure of a sunshade louver as described in claim 1, characterized in that: The mounting bracket assembly includes a first mounting bracket (41) and a second mounting bracket (43). Both the first mounting bracket (41) and the second mounting bracket (43) are L-shaped stainless steel components. The mounting bracket includes a long plane and a short plane. The long plane has a long waist-shaped hole (411) in the middle, and the short plane has a short waist-shaped hole (431). A hexagonal bolt (21) passes through the long waist-shaped hole (411) on the long plane of the first mounting bracket (41) and locks with the short waist-shaped hole (431) on the short plane of the second mounting bracket (43). The short waist-shaped hole (431) on the short plane of the first mounting bracket (41) is locked with the mounting bracket (1).
Citation Information
Patent Citations
Rainproof rotary shutter with daylighting roof
CN220302033U