CN218205961U - Main part connection structure and tripe awning - Google Patents

Main part connection structure and tripe awning Download PDF

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Publication number
CN218205961U
CN218205961U CN202222345490.1U CN202222345490U CN218205961U CN 218205961 U CN218205961 U CN 218205961U CN 202222345490 U CN202222345490 U CN 202222345490U CN 218205961 U CN218205961 U CN 218205961U
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China
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assembly
cross beam
sign indicating
indicating number
angle
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CN202222345490.1U
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Chinese (zh)
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李鹏飞
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Foshan Grand Decoration Mstar Technology Ltd
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Foshan Grand Decoration Mstar Technology Ltd
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Abstract

The utility model discloses a main body connecting structure, which comprises a beam assembly, a first connecting piece and a second connecting piece, wherein the beam assembly comprises a first beam and a second beam; the angle connectors respectively extend into the first cross beam and the second cross beam, and the first cross beam is connected with the second cross beam through the angle connectors; the pull codes are positioned and abutted to corners of the corner codes and are respectively connected to the first cross beam and the second cross beam; the stand, its internal connection has the assembly part, and beam assembly, angle sign indicating number and assembly part are equipped with a plurality of first mounting holes that correspond each other respectively, and every first mounting hole of group is connected with a first connecting piece jointly. After first crossbeam and second crossbeam diagonal sign indicating number produced stress, the angle sign indicating number has the trend of deformation, and meanwhile, draws the sign indicating number and can compress tightly the angle sign indicating number further under the combined action of first crossbeam and second crossbeam to the deformation of offset angle sign indicating number, this production that is favorable to restraining the piece angle seam. And simultaneously, the utility model also provides an use above-mentioned main part connection structure's tripe awning.

Description

Main part connection structure and tripe awning
Technical Field
The utility model relates to an outdoor building technical field, in particular to main part connection structure and tripe awning.
Background
Awning blinds are an emerging outdoor building in recent years that can perform different functions by changing the turning angle of the blades. For example, in rainy days or insolation times, the rotation angles of all the blades are changed to realize the flat spreading of the blades, so that effective shielding is provided for people and objects under the awning, and rainwater is collected by the water tank and then is guided to the ground through the drainage pipe; under normal conditions, the rotation angles of all the blades are changed to turn the blades up, and at the moment, the shutter awning does not have a shielding function, so that direct ambient light is provided for people and objects under the awning.
An existing shutter awning, for example, "an electric waterproof shutter flap awning", with publication number CN206581641U, has a main body connection structure including a column and a beam, a small beam connector is installed at an opening at the upper part of the beam, a large beam connector is installed at an opening at the lower part of the beam, a fixing piece on the column is installed below the large beam connector, the fixing piece on the column is connected with the column, and the fixing piece on the column is used for fixing the beam and the column. Because the mounting all connects through same group's connecting piece on crossbeam, the little connecting piece of crossbeam, the big connecting piece of crossbeam and the stand, consequently the stress that receives here is the biggest, and it is easy to take place to warp at the in-process that uses, and then leads to producing between the crossbeam and piece the seam between, and this piece the seam between the angle size along with deepening gradually and crescent of deformation degree in addition.
SUMMERY OF THE UTILITY MODEL
The present invention is directed to a main body connection structure to solve one or more technical problems in the prior art, and to provide at least one of a useful choice and creation conditions.
According to the utility model discloses a main part connection structure of first aspect embodiment includes:
the beam assembly comprises a first beam and a second beam, the first beam and the second beam are both provided with oblique planes, so that the first beam and the second beam can be spliced into any angle, and both the first beam and the second beam are provided with beam inner cavities penetrating through the oblique planes;
the angle connectors respectively extend into the beam inner cavity of the first beam and the beam inner cavity of the second beam, and the first beam and the second beam are connected through the angle connectors;
the pull codes are positioned and abutted to corners of the corner codes and are respectively connected to the first cross beam and the second cross beam;
the stand, its internal connection has the assembly part, crossbeam assembly, angle sign indicating number and assembly part are equipped with a plurality of first mounting holes that correspond each other respectively, and every first mounting hole of group is connected with a first connecting piece jointly.
According to the utility model discloses main part connection structure has following beneficial effect at least: the angle sign indicating number with the assembly part is used for jointly being in with first crossbeam, second crossbeam and stand link together, when first crossbeam with the second crossbeam is to after the angle sign indicating number produces stress, the angle sign indicating number has the trend of deformation, simultaneously, because the zip code location butt is in the corner of angle sign indicating number, consequently the zip code can compress tightly the angle sign indicating number further under the combined action of first crossbeam with the second crossbeam to the offset the deformation of angle sign indicating number, this is favorable to restraining the production of seam between the piece angle.
According to the utility model discloses a some embodiments, in order to avoid producing the interference when the assembly, the first mounting hole of beam assembly with the first mounting hole of angle sign indicating number respectively with correspond first connecting piece carries out clearance fit, the first mounting hole of assembly part with correspond first connecting piece carries out screw-thread fit.
According to the utility model discloses a some embodiments, the angle sign indicating number all reserves installation position, every at the upper and lower both ends that are close to the outside all be equipped with in the installation position draw the sign indicating number, the angle sign indicating number is in installation position department is equipped with the location contained angle, draw the sign indicating number be equipped with match in the locating surface of location contained angle. Due to the arrangement, the puller can be positioned in the corner brace and positioned and abutted to the outer side of the corner brace, so that the internal structure of the beam assembly is further optimized.
According to some embodiments of the utility model, in order to collect the rainwater, the crossbeam assembly is connected with the basin, the basin is located the inner wall of crossbeam assembly.
According to the utility model discloses a some embodiments, the basin is equipped with the water conservancy diversion hole, be equipped with the blow off pipe in the stand, the assembly part is equipped with just right the through-hole in water conservancy diversion hole, the blow off pipe runs through the through-hole and connect in the water conservancy diversion hole makes the blow off pipe can hide in the stand.
According to the utility model discloses a some embodiments, first crossbeam with the second crossbeam all with the roof in crossbeam inner chamber and infrabasal plate are as the crossbeam mounting panel, the angle sign indicating number with draw the sign indicating number all connect in the crossbeam mounting panel, the crossbeam mounting panel with the angle sign indicating number the crossbeam mounting panel with draw the sign indicating number and be equipped with the second mounting hole of mutual correspondence respectively to assemble through the second connecting piece. The first cross beam and the second cross beam are provided with first accommodating grooves above the inner cavity of the cross beam, the first accommodating grooves are detachably connected with first cover plates, the first accommodating grooves can accommodate electric wires, lamp belts or other accessories, and objects in the first accommodating grooves are separated from the external environment through the first cover plates.
According to the utility model discloses a some embodiments, the stand is equipped with the second holding tank along its length direction, the stand with the infrabasal plate of second holding tank is as the column mouting board, the assembly part connect in the column mouting board, second holding tank releasable connection has the second apron. The upright post mounting plate and the assembly parts are provided with third mounting holes corresponding to each other and are assembled through third connecting pieces, the second accommodating groove can accommodate electric wires, lamp belts or other accessories, and the articles in the second accommodating groove are separated from the external environment through the second cover plate.
According to the utility model discloses a some embodiments, in order to facilitate the wiring, first crossbeam perhaps the second crossbeam be equipped with respectively communicate in first holding tank with the line hole of second holding tank for the electric wire can be followed the second holding tank is walked the line extremely first holding tank.
According to the utility model discloses a tripe awning of second aspect embodiment, including tripe assembly and foretell main part connection structure, the tripe assembly is located the inner wall of crossbeam assembly, the tripe assembly includes clutch and a plurality of movable vane, every movable vane all rotate connect in crossbeam assembly, it is a plurality of movable vane by the clutch links.
According to the utility model discloses tripe awning has following beneficial effect at least: because the shutter awning is provided with the main body connecting structure, the joint between the cross beams is small, and the shutter awning is more attractive and durable.
According to the utility model discloses a some embodiments, in order to satisfy the demand of electromotion, the tripe awning still includes linear drive device, linear drive device is equipped with the flexible portion that can sharply stretch out and draw back, flexible portion articulates in arbitrary one movable blade. Due to the existence of the linkage device, when any one movable blade is rotated by the linear driving device, all the rest movable blades synchronously rotate along with the movable blade.
Additional aspects and advantages of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the invention.
Drawings
The above and/or additional aspects and advantages of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
fig. 1 is a schematic perspective view of a main body connection structure according to an embodiment of the present invention;
FIG. 2 is an enlarged fragmentary view at A of the body attachment structure shown in FIG. 1;
fig. 3 is a first exploded view of the main body coupling structure according to the embodiment of the present invention;
fig. 4 is a second exploded view of the main body coupling structure of the embodiment of the present invention;
fig. 5 is a third exploded view of the main body coupling structure according to the embodiment of the present invention;
fig. 6 is a schematic perspective view of a blind awning according to an embodiment of the present invention.
In the drawings: 100-beam assembly, 200-upright post, 110-first beam, 120-second beam, 130-right angle unit, 300-water tank, 310-diversion hole, 101-diagonal plane, 102-beam inner cavity, 400-corner code, 410-wing, 103-beam mounting plate, 500-assembly part, 510-vertical plate, 520-horizontal plate, 240-upright post mounting plate, 501-first mounting hole, 502-first connecting piece, 210-drain pipe, 421-positioning included angle, 420-mounting position, 600-pull code, 610-positioning surface, 104-first accommodating groove, 105-first cover plate, 220-second accommodating groove, 230-second cover plate, 106-line hole, 700-louver assembly, 710-movable blade, 720-linkage device.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary only for the purpose of explaining the present invention, and should not be construed as limiting the present invention.
In the description of the present invention, it should be understood that the directional descriptions, such as the directions or positional relationships indicated by upper, lower, front, rear, left, right, etc., are based on the directions or positional relationships shown in the drawings, and are only for convenience of description and simplification of the description, but not for indicating or implying that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and thus should not be construed as limiting the present invention.
In the description of the present invention, a plurality of means are one or more, a plurality of means are two or more, and the terms greater than, less than, exceeding, etc. are understood as not including the number, and the terms greater than, less than, within, etc. are understood as including the number. If any description of first, second and third is only for the purpose of distinguishing technical features, it is not to be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated or implicitly indicating the precedence of technical features indicated.
In the description of the present invention, unless there is an explicit limitation, the terms such as setting, installing, connecting, etc. should be understood in a broad sense, and those skilled in the art can reasonably determine the specific meaning of the terms in the present invention by combining the specific contents of the technical solution.
As shown in fig. 1 and fig. 2, the main body connection structure according to the embodiment of the first aspect of the present invention includes a beam assembly 100 and a column 200, wherein the beam assembly 100 is rectangular and is formed by splicing a plurality of first beams 110 and a plurality of second beams 120, any one of the first beams 110 and the adjacent second beam 120 jointly form a right angle unit 130 of the beam assembly 100, and each right angle unit 130 is supported by the column 200.
Since the main body connection structure can be used for a blind awning, it should have a function of diverting rainwater. For this purpose, all the inner sides of the first beams 110 and all the inner sides of the second beams 120 are connected with grooved profiles, and all the grooved profiles can be spliced to form the water tank 300, and the water tank 300 is located at the inner periphery of the beam assembly 100. In addition, the water tank 300 is provided with guide holes 310 at positions close to the pillars 200, respectively, so as to facilitate drainage.
As shown in fig. 3 to 5, in particular, each of the first beam 110 and the second beam 120 is provided with a chamfer 101 at an angle of 45 °, so that the first beam 110 and the second beam 120 can be spliced into the right-angle unit 130. In order to reduce the cost, the first beam 110 and the second beam 120 are both section bars, and a beam inner cavity 102 penetrating through the chamfer 101 is formed, so that the beam inner cavities 102 of the first beam 110 and the second beam 120 can be communicated with each other after being spliced. In order to connect the first beam 110 and the second beam 120, each right-angle unit 130 corresponds to an angle brace 400, an included angle of the angle brace 400 is generally slightly larger than 90 °, the angle brace is formed by stamping and bending a steel plate, the angle brace 400 is provided with two fins 410, the two fins 410 respectively extend into the beam inner cavity 102 of the first beam 110 and the beam inner cavity 102 of the second beam 120, and at this time, the angle brace 400 is completely arranged in the right-angle unit 130. The first beam 110 and the second beam 120 all use the inner top plate and the inner bottom plate of the beam inner cavity 102 as the beam mounting plate 103, the beam mounting plate 103 of the first beam 110 and one of the fins 410 are respectively provided with a second mounting hole corresponding to each other, and the beam mounting plate 103 of the second beam 120 and the other one of the fins 410 are respectively provided with a plurality of second mounting holes corresponding to each other, wherein the second mounting holes of the fins 410 are screw holes, so that the first beam 110 and the second beam 120 can be respectively connected with the corner connector 400 through second connecting pieces, and the second connecting pieces can be selected as screws.
In addition, the column 200 is also a profile provided with a column inner cavity, the column 200 is connected with an assembly part 500 at the top of the column inner cavity, the assembly part 500 can be selected as a U-shaped component, which is formed by stamping and bending a steel plate, the assembly part 500 is composed of two vertical plates 510 and a transverse plate 520, and the opening of the assembly part 500 faces downwards. The upright post 200 is provided with two upright post mounting plates 240, two upright post mounting plates 240 and two the riser 510 is provided with a plurality of third mounting holes corresponding to each other respectively, wherein the third mounting holes of the riser 510 are screw holes, so that the upright post 200 and the assembly member 500 can be connected by a third connecting member, and the third connecting member can be selected as a screw.
Further, in order to assemble the beam assembly 100 and the column 200, the right-angle unit 130, the corner connector 400, and the horizontal plate 520 are respectively provided with a plurality of first mounting holes 501 corresponding to each other, wherein the first beam 110 and the second beam 120 are respectively provided with the first mounting holes 501, and the first mounting holes 501 of the horizontal plate 520 are all screw holes, so that the right-angle unit 130, the corner connector 400, and the assembly 500 can be connected by the first connecting member 502, and the first connecting member 502 can be selected as a screw. Since the assembly member 500 is connected to the column 200, the above arrangement enables the beam assembly 100 to be assembled with the column 200, and the assembly strength is higher.
In some embodiments of the present invention, the assembly member 500 covers the diversion hole 310 of the sink 300, and the assembly member 500 is provided with a through hole facing the diversion hole 310, and the column 200 is provided with the drain pipe 210 in the column inner cavity thereof, one end of the drain pipe 210 runs through the through hole and is connected to the diversion hole 310, the other end of the drain pipe 210 extends to the bottom of the column 200 and runs through to outside the column 200, so that the drain pipe 210 can be hidden in the column 200, avoiding the exposure thereof and increasing the risk of pipe explosion, and beautifying the appearance of the main body connecting structure.
It should be noted that the first mounting holes 501 of the first cross beam 110, the second cross beam 120, and the corner connector 400 are in clearance fit with the corresponding first connecting members 502, so as to prevent the first connecting members 502 from being unable to smoothly pass through all the corresponding first mounting holes 501 due to dimensional errors. The present invention is not limited to the shape of the assembly 500, and may be a square tube or other shapes, and is not limited to the above embodiment.
As shown in fig. 6, after the louver assembly 700 is installed on the beam assembly 100, the pressure applied to the beam assembly 100 rises suddenly, and the center of gravity of a single beam tends to be at the middle of the beam assembly, so that the beam assembly generates a large tensile stress on the corner connector 400, which easily causes the corner connector 400 to deform toward the beam, and once the corner connector 400 deforms, the splicing fit between the first beam 110 and the second beam 120 is inevitably affected, which in turn causes a relatively obvious splice angle gap between the two beams, which seriously affects the appearance of the main body connection structure. For this purpose, as shown in fig. 3 and 5, mounting positions 420 having a positioning included angle 421 are reserved at upper and lower ends of the corner brace 400 close to the outer side, and a puller 600 is configured in each mounting position 420, the puller 600 may be a section bar or a solid member, the rigidity of the puller is superior to that of the corner brace 400, and the puller 600 is provided with a positioning surface 610 matched with the positioning included angle 421, so that the puller 600 can be positioned and abutted against the outer side of the corner brace 400. Meanwhile, the beam mounting plate 103 of the first beam 110 and the beam mounting plate 103 of the second beam 120 are respectively provided with second mounting holes corresponding to the pull tab 600, wherein the second mounting holes of the pull tab 600 are screw holes, so that the first beam 110 and the second beam 120 can be respectively connected with the pull tab 600 through second connecting members, and the second connecting members can be selected as screws.
With the above embodiment, after the first cross beam 110 and the second cross beam 120 generate stress on the corner brace 400, the corner brace 400 has a tendency of deformation, and meanwhile, because the puller 600 is positioned and abutted on the outer side of the corner brace 400 and has high rigidity, the puller 600 is not easy to deform, the puller 600 can further press the corner brace 400 under the combined action of the first cross beam 110 and the second cross beam 120, so as to offset the deformation of the corner brace 400, which is beneficial to inhibiting the generation of seams between spliced corners.
It is understood that each corner brace 400 may also be provided with one of the pull braces 600, which has a technical effect that is not as good as that of the above embodiments, but is better than the prior art.
As shown in fig. 2 and 5, in some embodiments of the present invention, the first beam 110 and the second beam 120 are both provided with a first receiving groove 104, the first receiving groove 104 is located above the beam inner cavity 102, and the first receiving groove 104 can receive an electric wire, a light strip or other accessories. In order to isolate the objects in the first receiving groove 104 from the external environment, a first cover plate 105 covering the first receiving groove 104 is detachably connected to each of the first beam 110 and the second beam 120.
As shown in fig. 4 and 5, in some embodiments of the present invention, the pillar 200 is provided with a second receiving groove 220 along the length direction thereof, the pillar mounting plate 240 of the pillar 200 is located in the second receiving groove 220, and the second receiving groove 220 can receive an electric wire, a light strip or other accessories. In order to isolate the items in the second receiving groove 220 from the external environment, a second cover plate 230 for covering the second receiving groove 220 may be detachably connected to the pillar 200. In addition, the first cover plate 105 can shield the first connecting element 502 and the second connecting element, and the second cover plate 230 can shield the third connecting element, so as to prevent the connecting elements from being corroded due to exposure.
As shown in fig. 2, in some embodiments of the present invention, for the convenience of wiring, the second beam 120 is provided with a wire hole 106 respectively communicated with the first receiving groove 104 and the second receiving groove 220, the wire hole 106 is specifically located on the beam mounting plate 103 and right opposite to the second receiving groove 220, so that an electric wire can be routed to the first receiving groove 104 of the second beam 120 from the second receiving groove 220 of the upright 200. Because two holding tanks all can be connected with the apron detachably, therefore the electric wire can all be hidden in main part connection structure to furthest reduces the ageing of electric wire, and promotes the appearance quality of tripe awning. It is understood that the wire hole 106 may also be provided to the beam mounting plate 103 of the first beam 110, not limited to the above-described embodiment.
In other embodiments, the shape of the beam assembly 100 can also be in other shapes, such as triangle, parallelogram, trapezoid, etc., and the angles of the oblique cutting planes 101 of two adjacent beams, the included angle of the corner fastener 400, and the shape of the puller 600 should be adjusted accordingly according to the actual situation.
As shown in fig. 6, the awning blind according to the second aspect of the present invention includes a main body connecting structure according to the first aspect of the present invention, and further includes a blind assembly 700 and a linear driving device (not shown in the drawings), the blind assembly 700 is located on the inner periphery of the beam assembly 100 and above the sink 300, the blind assembly 700 includes a plurality of movable blades 710 and a linkage 720 for realizing linkage of the movable blades 710, and all the movable blades 710 are arranged and rotatably connected to the beam assembly 100. Since the linkage 720 is a conventional art, the present invention does not describe the structure thereof in detail.
In order to meet the requirement of electromotion, the telescopic part of the linear driving device is hinged to any one of the movable blades 710, and due to the existence of the linkage 720, after any one of the movable blades 710 is rotated by the linear driving device, all the rest movable blades 710 are also rotated synchronously along with the linear driving device, so that the working mode of the awning can be switched conveniently. It will be appreciated that the linear drive means includes, but is not limited to, a linear push rod or a pneumatic cylinder, and is preferably an electric push rod since a pneumatic cylinder is not suitable for outdoor environments.
Since the awning uses all technical solutions of all the embodiments, at least all the beneficial effects brought by the technical solutions of the embodiments are achieved, and no further description is given here.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the knowledge of those skilled in the art.

Claims (10)

1. The main part connection structure, its characterized in that includes:
the beam assembly (100) comprises a first beam (110) and a second beam (120), both the first beam (110) and the second beam (120) are provided with inclined planes (101), so that the first beam (110) and the second beam (120) can be spliced into any angle, and both the first beam (110) and the second beam (120) are provided with beam inner cavities (102) penetrating through the inclined planes (101);
the corner connector (400) extends into a beam inner cavity (102) of the first beam (110) and a beam inner cavity (102) of the second beam (120), and the first beam (110) and the second beam (120) are connected through the corner connector (400);
a puller (600) positioned to abut at a corner of the corner brace (400), the puller (600) connected to the first beam (110) and the second beam (120), respectively;
the vertical column (200) is internally connected with an assembly part (500), the beam assembly (100), the corner connector (400) and the assembly part (500) are respectively provided with a plurality of first mounting holes (501) corresponding to each other, and each group of the first mounting holes (501) is jointly connected with a first connecting piece (502).
2. The body coupling structure according to claim 1, wherein: the first mounting hole (501) of the beam assembly (100) and the first mounting hole (501) of the corner connector (400) are in clearance fit with the corresponding first connecting piece (502) respectively, and the first mounting hole (501) of the assembly piece (500) is in threaded fit with the corresponding first connecting piece (502).
3. The body coupling structure according to claim 1, wherein: angle sign indicating number (400) all reserve at the upper and lower both ends that are close to the outside and have installation position (420), every all be equipped with in installation position (420) draw sign indicating number (600), angle sign indicating number (400) are in installation position (420) department is equipped with location contained angle (421), draw sign indicating number (600) be equipped with match in location face (610) of location contained angle (421).
4. The body coupling structure according to claim 1, wherein: the beam assembly (100) is connected with a water tank (300), and the water tank (300) is located on the inner periphery of the beam assembly (100).
5. The body coupling structure according to claim 4, wherein: the water tank (300) is provided with a flow guide hole (310), a drain pipe (210) is arranged in the upright post (200), the assembly part (500) is provided with a through hole right opposite to the flow guide hole (310), and the drain pipe (210) penetrates through the through hole and is connected to the flow guide hole (310).
6. The body coupling structure according to claim 1, wherein: the first cross beam (110) and the second cross beam (120) both use an inner top plate and an inner bottom plate of the cross beam inner cavity (102) as cross beam mounting plates (103), and the corner connectors (400) and the pull connectors (600) are both connected to the cross beam mounting plates (103); the first cross beam (110) and the second cross beam (120) are both provided with a first accommodating groove (104) above the cross beam inner cavity (102), and the first accommodating groove (104) is detachably connected with a first cover plate (105).
7. The body coupling structure according to claim 6, wherein: upright (200) are equipped with second holding tank (220) along its length direction, upright (200) with the infrabasal plate of second holding tank (220) is as stand mounting panel (240), assembly part (500) connect in stand mounting panel (240), second holding tank (220) releasable connection has second apron (230).
8. The body coupling structure according to claim 7, wherein: the first cross beam (110) or the second cross beam (120) is provided with a line hole (106) which is respectively communicated with the first accommodating groove (104) and the second accommodating groove (220).
9. A blind awning characterized in that it comprises the main body connecting structure of any one of claims 1 to 8, and further comprises: the louver assembly (700) is located on the inner periphery of the beam assembly (100), the louver assembly (700) comprises a linkage (720) and a plurality of movable blades (710), each movable blade (710) is rotatably connected to the beam assembly (100), and the movable blades (710) are linked by the linkage (720).
10. The awning as claimed in claim 9, wherein: the movable blade type wind power generation device is characterized by further comprising a linear driving device, wherein the linear driving device is provided with a telescopic part capable of linearly stretching, and the telescopic part is hinged to any one movable blade (710).
CN202222345490.1U 2022-09-02 2022-09-02 Main part connection structure and tripe awning Active CN218205961U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222345490.1U CN218205961U (en) 2022-09-02 2022-09-02 Main part connection structure and tripe awning

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222345490.1U CN218205961U (en) 2022-09-02 2022-09-02 Main part connection structure and tripe awning

Publications (1)

Publication Number Publication Date
CN218205961U true CN218205961U (en) 2023-01-03

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222345490.1U Active CN218205961U (en) 2022-09-02 2022-09-02 Main part connection structure and tripe awning

Country Status (1)

Country Link
CN (1) CN218205961U (en)

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