REELING DEVICE FOR AUTOMATED VENETIANS
20190063148 ยท 2019-02-28
Inventors
Cpc classification
E06B9/322
FIXED CONSTRUCTIONS
E06B9/327
FIXED CONSTRUCTIONS
E06B9/382
FIXED CONSTRUCTIONS
E06B9/68
FIXED CONSTRUCTIONS
International classification
E06B9/322
FIXED CONSTRUCTIONS
E06B9/327
FIXED CONSTRUCTIONS
Abstract
A reeling device for automated venetians is disclosed, including an upper track, a transmission tube, an electric motor, a plurality of reel rotors, a plurality of fixing bases, a plurality of lift cords and ladder tapes. The reel rotors are intervally disposed on the transmission tube, a cord area and a ladder tape area are respectively formed on the surfaces of the plurality of reel rotors, and the cord area and the ladder tape are disposed on the reel rotors in parallel. The fixing bases are disposed at a position that is at the bottom of the upper track and corresponding to the reel rotors, and the fixing bases are disposed below the plurality of reel rotors and have a bottom plate on which a lateral plate is disposed. The cord guiding hole and the lateral plate guide the lift cords to wind at the cord area.
Claims
1. A reeling device for automated venetians having a plurality of slats, the plurality of slats being disposed with slots, the reeling device comprising: an upper track with an accommodation space formed therein; a transmission tube being disposed in the accommodation space of the upper track; an electric motor connected with the transmission tube, configured to drive the transmission tube to rotate; a plurality of reel rotors being intervally disposed on the transmission tube and sleeved on the transmission tube, a cord area and a ladder tape area being respectively formed on the surfaces of the plurality of reel rotors, in which the ladder tape area is next to the cord area, so as to allow the cord area and the ladder tape area to be disposed on the reel rotors in parallel; a plurality of fixing bases being disposed at a position that is at the bottom of the upper track and corresponding to the plurality of reel rotors, the plurality of fixing bases being disposed below the plurality of reel rotors, the plurality of fixing bases respectively having a bottom plate, a cord guiding hole and two ladder tape guiding grooves being disposed on the bottom plate, the cord guiding hole and the two ladder tape guiding grooves being disposed below the ladder tape of the plurality of reel rotors, a lateral plate being disposed on the bottom plate, and the lateral plate being disposed close to a junction of the cord area and the ladder tape area of the reel rotor; a plurality of lift cords, the cord guiding hole and the lateral plate of the plurality of fixing bases being able to guide the plurality of lift cords to wind at the cord area of the reel rotor, the plurality of lift cords passing through the slots of the slats, and the bottom sides of the plurality of lift cords being connected with the bottommost slat, so as to allow the plurality of reel rotors to wind and release the lift cords to raise and lower the slats; and a plurality of ladder tapes, the ladder tape guiding grooves of the plurality of fixing bases being able to guide the ladder tapes to be disposed across the ladder tape area of the reel rotor, each ladder tape being a wide belt body, the middle parts of the plurality of ladder tapes being disposed across the ladder tape area of the reel rotor, the plurality of ladder tapes having two belt portions, a plurality of bearing portions being disposed between the two belt portions, the slats being disposed on the bearing portions, so as to allow the plurality of reel rotors to drive the ladder tapes to adjust the inclination angle of each of the slats, the ladder tapes corresponding to the slots of the slats, and when the slats are adjusted into a light-shielding mode, the slots of the slats being able to be shielded by the ladder tapes.
2. The reeling device for automated venetians as claimed in claim 1, wherein each of the plurality of fixing bases has two side plates, the two side plates connect to the two sides of the bottom plate and extend upwardly, an accommodation room is formed between the bottom plate and the two side plates, and the plurality of reel rotors are contained in the accommodation room.
3. The reeling device for automated venetians as claimed in claim 1, wherein the lateral plate is integrally formed with or compositely disposed on the bottom plate.
4. The reeling device for automated venetians as claimed in claim 1, wherein the lateral plate is disposed above the bottom plate, and the lateral plate is disposed below the plurality of reel rotors.
5. The reeling device for automated venetians as claimed in claim 1, wherein the lateral plate has a lateral portion and a through hole, the lateral portion and bottom plate are intervally disposed, the through hole is disposed below the lateral portion, the through hole passes through a top portion of the lateral plate, the lateral portion and the through hole of the lateral plate guide the lift cords to deviate to wind at the cord area of the reel rotor.
6. The reeling device for automated venetians as claimed in claim 1, wherein the cord guiding hole is disposed at the center of the bottom plate, and the tow ladder tape guiding grooves are disposed at the two sides of the bottom plate.
7. The reeling device for automated venetians as claimed in claim 1, wherein each of the ladder tapes has two belt portions and a middle part, the two belt portions connect with the two ends of the middle part, one of the belt portions connects with the middle part by pressing belt connection, ultrasound welding, suture bonding, ziplock strip connection, buckling connection, locking connection, pinning connection or Velcro bonding connection.
8. The reeling device for automated venetians as claimed in claim 1, wherein ring-shaped protrusions are disposed at the two sides of the ladder tape area.
9. The reeling device for automated venetians as claimed in claim 1, wherein multiple bumps are disposed on the surface of the ladder tape area.
10. The reeling device for automated venetians as claimed in claim 1, wherein a thin groove is surroundingly disposed on the ladder area.
11. The reeling device for automated venetians as claimed in claim 1, wherein the surface of the ladder tape area is a smooth surface.
12. The reeling device for automated venetians as claimed in claim 1, wherein the bottom side of the upper track is disposed with a plurality of openings corresponding to the plurality of fixing bases to expose the bottom side of the fixing bases.
13. The reeling device for automated venetians as claimed in claim 1, wherein an undertaking surface in a round concave arc shape is disposed on the fixing base, and the outer rim of the reel rotor is disposed on the undertaking surface to support the reel rotor and to guide the reel rotor to rotate.
14. The reeling device for automated venetians as claimed in claim 1, wherein the cord area and the ladder tape area of the reel rotor are integrally or compositely formed.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0030] The aforementioned illustrations and following detailed description are exemplary for the purpose of further explaining the scope of the present disclosure. Other objectives and advantages related to the present disclosure will be illustrated in the following description and appended drawings.
[0031] Reference is made to
[0032] The upper track 1 can be, but not limited to, a metal element. In the present embodiment, the upper track 1 is an aluminum track. The upper track 1 can be fixed on a building by, such as a frame 11 or the like. The upper track 1 has an accommodation space 12 formed therein, and the top portion of the accommodation space 12 can be in an opening shape.
[0033] The transmission tube 2 is disposed in the accommodation space 12 of the upper track 1. The transmission tube 2 can be, but not limited to, a metal element. In the preset embodiment, the transmission tube 2 is an aluminum tube. The electric motor (tube-shaped motor) 3 can be disposed inside the transmission tube 2, and the electric motor 3 can be connected with the transmission tube 2 through the current transmission mechanism, so that the electric motor 3 can be used to drive the transmission tube 2 to rotate. Since the upper track 1, the transmission tube 2 and the electric motor 3 are well known to people with ordinary skill in the art, the details with respect thereto will be omitted for the sake of brevity.
[0034] The plurality of reel rotors 4 are intervally disposed on the transmission tube 2. The plurality of reel rotors 4 can be, but not limited to, a plastic element. The reel rotor 4 is a hollow cylinder, and sleeves on the transmission tube 2. The reel rotor 4 can be fixed on the transmission tube 2 through, engagement, adhesion, screw attachment or the like. Reference is next made to
[0035] The cord area 41 and the ladder tape area 42 of reel rotor 4 can be integrally or compositely formed. In the present embodiment, the reel rotor 4 is compositely designed. That is, the cord area 41 and the ladder tape area 42 are separately formed and then combined with each other. Reference is next made to
[0036] A plurality of fixing bases 5 are disposed at a position that is at the bottom of the upper track 1 and corresponding to the plurality of reel rotors 4. The bottom of the upper track 1 can be disposed with multiple openings 13 (as shown in
[0037] A cord guiding hole 511 and two ladder tape guiding grooves 512 (as shown in
[0038] A lateral plate 54 is disposed on the bottom plate 51. The lateral plate 54 can be integrally formed on the bottom plate 51 (as shown in
[0039] In the present embodiment, the lateral plate 54 is disposed on the bottom plate 51 through engagement or the like. The lateral plate 54 has a lateral portion 541 and a through hole 542, in which the lateral portion 541 and the through hole 542 are staggeringly disposed. The through hole 542 is disposed below the lateral portion 541, the through hole 542 passes through a top portion of the lateral plate 54, and the lateral portion 541 and the through hole 542 of the lateral plate 54 can guide the lift cords 6 to deviate to wind at the cord area 41 of the reel rotor 4.
[0040] The lift cords 6 are respectively winded at the pulling area 41 of the reel rotor, and the lift cords 6 pass through slots 101 of the slats 100. The bottom sides of the lift cords 6 are connected with the bottommost slat 100, so as to allow the reel rotor 4 to wind and release the lift cords 6 to raise and lower the slats 100.
[0041] Each of the ladder tapes 7 has two belt portions 71, 72 and a middle part 70, and the two belt portions 71, 72 connect with the two ends of the middle part 70. One of the belt portions 71, 72 (e.g., the belt portion 71) and the middle part 70 can be connected (as shown in
[0042] Each ladder tape 7 is a wide belt body, and the middle parts 70 of the plurality of ladder tapes 7 are disposed across the ladder tape area 42 of the reel rotor 4. The two belt portions 71, 72 are disposed at the two sides of the slats 100, a plurality of bearing portions 73 are disposed between the two belt portions 71, 72, and the bearing portions 73 are disposed intervally. The slats 100 are disposed on the hearing portions 73, which makes the slats intervally disposed, so as to allow the plurality of reel rotors 4 to drive the ladder tapes 7 to adjust the inclination angle of each of the slats 100, thereby adjusting lights. The ladder tapes 7 correspond to the slots 101 of the slats 100, and when the slats 100 are adjusted into a light-shielding mode, the slots 101 of the slats 100 are able to be shielded by the ladder tapes 7.
[0043] The effects of the present disclosure are that a cord area and a ladder tape area are respectively formed on the surfaces of the plurality of reel rotors, in which the ladder tape area is next to the cord area, so as to allow the cord area and the ladder tape area to be disposed on the reel rotors in parallel. The plurality of fixing bases are disposed at a position that is at the bottom of the upper track and corresponding to the plurality of reel rotors, and a cord guiding hole and two ladder tape guiding grooves are disposed on the bottom plate, and the lateral plate is disposed close to a junction of the cord area and the ladder tape area of the reel rotor. The cord guiding hole and the lateral plate of the plurality of fixing bases are able to guide the plurality of lift cords to wind at the cord area of the reel rotor, and the ladder tape guiding grooves of the plurality of fixing bases are able to guide the ladder tapes to be disposed across the ladder tape area of the reel rotor. Each ladder tape is a wide belt body. That is, when the slats are adjusted into a light-shielding mode, the slots of the slats are able to be shielded by the ladder tapes, so that a better light shielding effect is achieved. Moreover, as each ladder tape is a wide belt body and unnecessary to be connected with ladder strings, the manufacturing process and cost can be saved.
[0044] The description illustrated supra set forth simply the preferred embodiments of the present disclosure; however, the characteristics of the present disclosure are by no means restricted thereto. All changes, alterations, or modifications conveniently considered by those skilled in the art are deemed to be encompassed within the scope of the present disclosure delineated by the following claims.