CN210738428U - Oblique pull rod fixed shutter for cornice - Google Patents
Oblique pull rod fixed shutter for cornice Download PDFInfo
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- CN210738428U CN210738428U CN201920354767.2U CN201920354767U CN210738428U CN 210738428 U CN210738428 U CN 210738428U CN 201920354767 U CN201920354767 U CN 201920354767U CN 210738428 U CN210738428 U CN 210738428U
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- frame
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- diagonal draw
- blade
- motor
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Abstract
The utility model provides a cornice is last with oblique fixed tripe of pull rod, it increases oblique pull rod through the bottom at the outer frame of tripe for the tripe frame gets the pressure in inner wall and wall contact's place shared, makes on the whole cornice can be more stable fix on the wall body with oblique fixed tripe of pull rod. The utility model provides a cornice is last with fixed tripe of diagonal draw bar, it includes: blade 1, frame 2, connecting rod 4, push head 5, location latch fitting 6, motor 7, its characterized in that: the wall-mounted type parking space further comprises a diagonal draw bar 8, wherein the diagonal draw bar 8 is positioned below the front frame 22 and the rear frame 24, one end of the diagonal draw bar is fixed below the front frame 22 and the rear frame 24 in a welding mode, and the other end of the diagonal draw bar is fixed on the wall surface through screws.
Description
Technical Field
The utility model relates to cornice tripe equipment technical field, it is comparatively specific, involve one kind cornice go up with oblique fixed tripe of pull rod.
Background
The existing fixed building cornice or the device generally has certain sun-shading and rain-shielding functions, but has the problem of sun shading in winter. The utility model discloses a utility model patent that application number is 201720217116X provides a modular structure of cornicing of building comprises the light-passing board on upper portion and the tripe subassembly of adjusting luminance of lower part, and the light-passing board is fixed on the light-passing board support of two symmetries, and the tripe subassembly of adjusting luminance is located two light-passing board supports and gets inboard, the tripe support is fixed on the building outer wall. Because the volume and the weight of the shutter are relatively large, and the fixed position is only the place where the inner side of the shutter bracket contacts with the wall, the bearing is relatively concentrated.
SUMMERY OF THE UTILITY MODEL
In view of this, in order to solve the problem that the inboard of tripe support and the local bearing of wall contact are relatively more concentrated as above, the utility model provides a cornice is with the fixed tripe of oblique pull rod, it is through increasing oblique pull rod in the bottom of tripe outer frame for the tripe frame gets the pressure in the place of inner wall and wall contact and is shared, makes the whole cornice be with the fixed tripe of oblique pull rod can be more stable fix on the wall body.
The utility model provides a cornice is last with fixed tripe of diagonal draw bar, it includes: the blade comprises a blade 1, a frame 2, a connecting rod 4, a push head 5, a positioning lock piece 6 and a motor 7, wherein bearings are arranged on two sides of the blade 1, the frame 2 consists of a left frame 21, a front frame 22, a right frame 23 and a rear frame 24, the left frame 21 is fixed on a wall surface through screws, the corresponding inner sides of the front frame 22 and the rear frame 24 are respectively provided with a front shaft hole and a rear shaft hole, and the bearings on two sides of the blade 1 are respectively and movably fixed in the front shaft hole and the rear shaft hole which are opposite; the motor 7 is fixed on the front frame 22 or the rear frame 24, a motor shaft 71 of the motor 7 is connected with one end of the push head 5, the other end of the push head 5 is connected with the connecting rod 4, the connecting rod 4 is provided with a plurality of positioning locking pieces 6, and each positioning locking piece 6 is connected with one blade, so that the blades are driven to rotate along the bearing; the method is characterized in that: the wall-mounted type parking space further comprises a diagonal draw bar 8, wherein the diagonal draw bar 8 is positioned below the front frame 22 and the rear frame 24, one end of the diagonal draw bar is fixed below the front frame 22 and the rear frame 24 in a welding mode, and the other end of the diagonal draw bar is fixed on the wall surface through screws.
Further, one end of the diagonal draw bar 8 is located at 1/3-2/3 of the total length of the front frame 22 and the rear frame 24.
Further, if the length of the louver is too long or the weight is too large, a middle frame may be disposed on the frame 2, one end of the middle frame is connected to the left frame 21, and the other end is connected to the right frame 23, so that two sets of blades may be used.
Further, when the middle frame is adopted, a diagonal draw bar 8 may be arranged at the bottom of the middle frame in the same manner as the diagonal draw bars 8 under the front frame 22 and the rear frame 24.
Furthermore, the blades 1 can be sheet-shaped shutters or hollow shuttle-shaped shutters.
Further, when the blade 1 adopts a hollow shuttle-shaped louver, the blade 1 consists of an upper blade 11, a lower blade 12 and a left movable cover plate 3 and a right movable cover plate 3 which are opposite, cavities are arranged inside the upper blade 11, the lower blade 12 and the left movable cover plate 3 and the right movable cover plate 3 which are opposite, and a rotating shaft sleeve 33 is correspondingly arranged in the middle of the movable cover plate 3; the hollow shuttle-shaped shutter is movably clamped on the front shaft hole of the front frame 22 and the rear shaft hole of the rear frame 24 through two rotating shaft sleeves 33 on the movable sealing cover plates 3 on the left side surface and the right side surface of the hollow shuttle-shaped shutter.
Furthermore, the positioning locking piece 6 comprises a sleeve 61, a screw 62 and a driving plate 63, wherein the sleeve 61 is provided with a first through hole 611 and a second through hole 612 perpendicular to the first through hole 611, the connecting rod 4 penetrates through the first through hole 611 of the sleeve 61, and the screw 62 is screwed into the second through hole 612 to fixedly lock the connecting rod 4 in the sleeve 61.
Further, the driving plate 63 is in a herringbone shape, the top of the herringbone driving plate 63 is connected with the sleeve 61, the bottom of the herringbone driving plate 63 is connected with the hollow shuttle-shaped blade 1, the distance between the top of the herringbone driving plate 63 and the end of the hollow shuttle-shaped blade 1 is short, and the distance between the top of the herringbone driving plate 63 and the middle of the hollow shuttle-shaped blade 1 is long.
Further, the motor 7 is electrically connected with the PLC, and the motion of the motor can be controlled through the PLC.
Further, a communication unit is arranged in the motor 7, and can be communicated with the mobile control end, so that the mobile control end can control the motor 7 to move.
Furthermore, the included angle between the hollow shuttle-shaped blade 1 and the plane formed by the frame 2 is 0-105 degrees.
Further, in order to prevent the hollow shuttle vane 1 from corroding, an aluminum alloy 6063T5 is used for the hollow shuttle vane 1, and preferably, fluorocarbon is coated on the surface of the aluminum alloy 6063T 5.
Further, the motor 7 adopts a push rod motor, the working voltage of the push rod motor is 220V, the frequency is 50Hz, and the waterproof grade is IP 56.
Drawings
Fig. 1 is a top view of the louver fixed by diagonal draw bars on the cornice of the utility model.
Fig. 2 is a right side view of the louver fixed by the diagonal draw bar on the cornice of the utility model.
Fig. 3 is a right side view of the louver fixed by the diagonal draw bar on the cornice of the utility model, the angle of which is 0 degree.
Fig. 4 is a partial enlarged view of the position a.
Fig. 5 is a schematic structural view of the sleeve.
Description of the main elements
Blade | 1 |
Frame structure | 2 |
|
21 |
|
22 |
|
23 |
|
24 |
Movable |
3 |
Countersunk screw | 31 |
Internally nested telescopic assembly | 32 |
Connecting |
4 |
|
5 |
Positioning lock | 6 |
|
61 |
First through |
611 |
Second through |
612 |
Raised |
613 |
Screw with a thread | 62 |
|
63 |
|
7 |
|
71 |
Diagonal draw bar | 8 |
The following detailed description of the invention will be further described in conjunction with the above-identified drawings.
Detailed Description
Specific embodiment example 1:
as shown in fig. 1, it is a top view of the louver fixed by diagonal draw bars on the cornice of the present invention; as shown in fig. 2, it is a right view of the louver fixed by the diagonal draw bar on the cornice of the utility model; as shown in fig. 3, it is a right side view of the louver fixed by the diagonal draw bar on the cornice of the utility model with an angle of 0 degree; as shown in fig. 4, a partial enlarged view of the a position. Fig. 5 is a schematic structural view of the sleeve.
The utility model provides a cornice is last with fixed tripe of diagonal draw bar, it includes: the blade comprises a blade 1, a frame 2, a connecting rod 4, a push head 5, a positioning lock piece 6 and a motor 7, wherein bearings are arranged on two sides of the blade 1, the frame 2 consists of a left frame 21, a front frame 22, a right frame 23 and a rear frame 24, the left frame 21 is fixed on a wall surface through screws, the corresponding inner sides of the front frame 22 and the rear frame 24 are respectively provided with a front shaft hole and a rear shaft hole, and the bearings on two sides of the blade 1 are respectively and movably fixed in the front shaft hole and the rear shaft hole which are opposite; the motor 7 is fixed on the front frame 22 or the rear frame 24, a motor shaft 71 of the motor 7 is connected with one end of the push head 5, the other end of the push head 5 is connected with the connecting rod 4, the connecting rod 4 is provided with a plurality of positioning locking pieces 6, and each positioning locking piece 6 is connected with one blade, so that the blades are driven to rotate along the bearing; the method is characterized in that: the wall-mounted type parking space further comprises a diagonal draw bar 8, wherein the diagonal draw bar 8 is positioned below the front frame 22 and the rear frame 24, one end of the diagonal draw bar is fixed below the front frame 22 and the rear frame 24 in a welding mode, and the other end of the diagonal draw bar is fixed on the wall surface through screws. One end of the diagonal draw bar 8 is located at 1/2 of the total length of the front frame 22 and the rear frame 24.
The blades 1 can be sheet-shaped shutters or hollow shuttle-shaped shutters. The blade 1 consists of an upper blade 11, a lower blade 12, a left movable sealing cover plate and a right movable sealing cover plate 3 which are opposite, cavities are arranged inside the upper blade 11, the lower blade 12, the left movable sealing cover plate and the right movable sealing cover plate 3, and a rotating shaft sleeve 33 is correspondingly arranged in the middle of the movable sealing cover plate 3; the hollow shuttle-shaped shutter is movably clamped on the front shaft hole of the front frame 22 and the rear shaft hole of the rear frame 24 through two rotating shaft sleeves 33 on the movable sealing cover plates 3 on the left side surface and the right side surface of the hollow shuttle-shaped shutter.
The positioning locking piece 6 comprises a sleeve 61, a screw 62 and a driving plate 63, wherein the sleeve 61 is provided with a first through hole 611 and a second through hole 612 perpendicular to the first through hole 611, the connecting rod 4 penetrates through the first through hole 611 of the sleeve 61, and the screw 62 is screwed into the second through hole 612 to fixedly lock the connecting rod 4 in the sleeve 61.
The driving plate 63 is in a herringbone shape, the top of the herringbone driving plate 63 is connected with the sleeve 61, the bottom of the herringbone driving plate 63 is connected with the hollow shuttle-shaped blade 1, the distance from the top of the herringbone driving plate 63 to the end part of the hollow shuttle-shaped blade 1 is short, and the distance from the top of the herringbone driving plate 63 to the middle part of the hollow shuttle-shaped blade 1 is long.
The motor 7 is electrically connected with the PLC, and the motion of the motor can be controlled through the PLC.
Furthermore, the included angle between the hollow shuttle-shaped blade 1 and the plane formed by the frame 2 is 0-105 degrees.
Further, in order to prevent the hollow shuttle vane 1 from corroding, an aluminum alloy 6063T5 is used for the hollow shuttle vane 1, and preferably, fluorocarbon is coated on the surface of the aluminum alloy 6063T 5.
Further, the motor 7 adopts a push rod motor, the working voltage of the push rod motor is 220V, the frequency is 50Hz, and the waterproof grade is IP 56.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.
Claims (10)
1. The utility model provides a cornice is last with fixed tripe of diagonal draw bar, it includes: the blade (1), the frame (2), the connecting rod (4), the pushing head (5), the positioning locking piece (6) and the motor (7), wherein bearings are arranged on two sides of the blade (1), the frame (2) is composed of a left frame (21), a front frame (22), a right frame (23) and a rear frame (24), the left frame (21) is fixed on a wall surface through screws, a front shaft hole and a rear shaft hole are respectively arranged on the corresponding inner sides of the front frame (22) and the rear frame (24), and the bearings on two sides of the blade (1) are respectively and movably fixed in the front shaft hole and the rear shaft hole which are opposite; the motor (7) is fixed on the front frame (22) or the rear frame (24), a motor shaft (71) of the motor (7) is connected with one end of the push head (5), the other end of the push head (5) is connected with the connecting rod (4), a plurality of positioning locking pieces (6) are arranged on the connecting rod (4), and each positioning locking piece (6) is connected with one blade so as to drive the blades to rotate along the bearing; the method is characterized in that: still include oblique pull rod (8), oblique pull rod (8) are located the below of preceding frame (22) and rear frame (24), and one end is fixed through the below of welded mode with preceding frame (22) and rear frame (24), and the screw is passed through to one end in addition and is fixed on the wall.
2. A louver fixed by diagonal draw bars on a cornice according to claim 1, characterized in that: one end of the diagonal draw bar (8) is positioned at 1/3-2/3 of the total length of the front frame (22) and the rear frame (24).
3. A louver fixed by diagonal draw bars on a cornice according to claim 1, characterized in that: a middle frame can be arranged on the frame (2), one end of the middle frame is connected with the left frame (21), and the other end of the middle frame is connected with the right frame (23), so that two groups of blades can be adopted.
4. A louver fixed by diagonal draw bars on a cornice according to claim 3, characterized in that: the bottom of the middle frame is provided with a diagonal draw bar (8) which is arranged in the same way as the diagonal draw bars (8) under the front frame (22) and the rear frame (24).
5. A louver fixed by diagonal draw bars on a cornice according to claim 1, characterized in that: the blades (1) can adopt sheet-shaped shutters or hollow shuttle-shaped shutters.
6. A louver fixed by diagonal draw bars on a cornice according to claim 1, characterized in that: when the blade (1) adopts a hollow shuttle-shaped shutter, the blade (1) consists of an upper blade (11), a lower blade (12) and a left movable sealing cover plate and a right movable sealing cover plate (3) which are opposite, cavities are arranged inside the upper blade (11), the lower blade (12) and the left movable sealing cover plate and the right movable sealing cover plate (3), and a rotating shaft sleeve (33) is correspondingly arranged in the middle of the movable sealing cover plate (3); the hollow shuttle-shaped shutter is movably clamped on a front shaft hole of the front frame (22) and a rear shaft hole of the rear frame (24) through two rotating shaft sleeves (33) on the movable sealing cover plates (3) on the left side surface and the right side surface of the hollow shuttle-shaped shutter.
7. A louver fixed by diagonal draw bars on a cornice according to claim 1, characterized in that: the positioning locking piece (6) comprises a sleeve (61), a screw (62) and a driving plate (63), a first through hole (611) and a second through hole (612) perpendicular to the first through hole (611) are formed in the sleeve (61), the connecting rod (4) penetrates through the first through hole (611) of the sleeve (61), the screw (62) is screwed into the second through hole (612), and the connecting rod (4) is fixedly locked inside the sleeve (61).
8. A louver fixed by diagonal draw bars on a cornice according to claim 7, characterized in that: the driving plate (63) is in a herringbone shape, the top of the herringbone driving plate (63) is connected with the sleeve (61), the bottom of the herringbone driving plate (63) is connected with the hollow shuttle-shaped louver, the distance between the top of the herringbone driving plate (63) and the end part of the hollow shuttle-shaped louver is short, and the distance between the top of the herringbone driving plate (63) and the middle part of the hollow shuttle-shaped louver is long.
9. A louver fixed by diagonal draw bars on a cornice according to claim 1, characterized in that: the motor (7) is electrically connected with the PLC, and the motion of the motor can be controlled through the PLC.
10. A louver fixed by diagonal draw bars on a cornice according to claim 1, characterized in that: the motor (7) adopts a push rod motor, the working voltage of the push rod motor is 220V, the frequency is 50Hz, and the waterproof grade is IP 56.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920354767.2U CN210738428U (en) | 2019-03-20 | 2019-03-20 | Oblique pull rod fixed shutter for cornice |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920354767.2U CN210738428U (en) | 2019-03-20 | 2019-03-20 | Oblique pull rod fixed shutter for cornice |
Publications (1)
Publication Number | Publication Date |
---|---|
CN210738428U true CN210738428U (en) | 2020-06-12 |
Family
ID=71005902
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201920354767.2U Active CN210738428U (en) | 2019-03-20 | 2019-03-20 | Oblique pull rod fixed shutter for cornice |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN210738428U (en) |
-
2019
- 2019-03-20 CN CN201920354767.2U patent/CN210738428U/en active Active
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