Detachable cord rolling device for non-pull cord window blind
10822870 ยท 2020-11-03
Assignee
Inventors
Cpc classification
B65H79/00
PERFORMING OPERATIONS; TRANSPORTING
E06B9/322
FIXED CONSTRUCTIONS
B65H75/34
PERFORMING OPERATIONS; TRANSPORTING
E06B2009/3225
FIXED CONSTRUCTIONS
International classification
Abstract
A detachable cord rolling device includes a cord rolling unit and an auxiliary driving unit. The cord rolling unit has a first base where first and second torsion spring gears engaged with each other are disposed. A first torsion spring is disposed between the first and second torsion spring gears. The auxiliary driving unit has a second base where third and fourth torsion spring gears engaged with each other are disposed. The second base is detachably disposed on the first base of the cord rolling unit. The third torsion spring gear and the first torsion spring gear of the cord rolling unit are connected by a transmission shaft, thereby rotatable synchronously. As a result, the cord rolling unit of the invention can be used individually, or combined with the auxiliary driving unit by the transmission shaft for increasing the rolling force of the cord rolling unit.
Claims
1. A detachable cord rolling device for a non-pull cord window blind, the detachable cord rolling device comprising: a cord rolling unit having a first base, a first torsion spring gear, a second torsion spring gear, a first torsion spring, at least one cord rolling gear and at least one lift transmission cord, the first and second torsion spring gears being rotatably disposed on the first base and engaged with each other, the first torsion spring connecting the first and second torsion spring gears, the at least one cord rolling gear being rotatably disposed on the first base and engaged with one of the first and second torsion spring gears, the at least one lift transmission cord being wound around the at least one cord rolling gear; an auxiliary driving unit having a second base, a third torsion spring gear, a fourth torsion spring gear and a second torsion spring, the second base being detachably disposed on a top surface of the first base of the cord rolling unit, the third and fourth torsion spring gears being rotatably disposed on the second base and engaged with each other, the second torsion spring connecting the third and fourth torsion spring gears; and a transmission shaft detachably connecting the first torsion spring gear of the cord rolling unit and the third torsion spring gear of the auxiliary driving unit, thereby enabling the first and third torsion spring gears to rotate synchronously.
2. The detachable cord rolling device as claimed in claim 1, wherein: the first torsion spring gear has a first engaging portion provided with a first polygonal hole; the third torsion spring gear has a third engaging portion provided with a third polygonal hole; a top end of the transmission shaft is engaged with the third polygonal hole of the third engaging portion of the third torsion spring gear; and a bottom end of the transmission shaft is engaged with the first polygonal hole of the first engaging portion of the first torsion spring gear.
3. The detachable cord rolling device as claimed in claim 1, wherein: the first base has a plurality of hook grooves; the second base has a plurality of hook portions; and the hook portions are detachably hooked in the hook grooves of the first base respectively.
4. The detachable cord rolling device as claimed in claim 1, wherein: the cord rolling unit includes at least two cord rolling gears, and at least two lift transmission cords; the first and second torsion spring gears are engaged with two said cord rolling gears respectively; and two said lift transmission cords are wound around the two said cord rolling gears respectively.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
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(4)
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DETAILED DESCRIPTION OF THE INVENTION
(8) Referring to
(9) The cord rolling unit 20 is disposed in a top beam (not shown), and has a first base 21, a first torsion spring gear 22, a second torsion spring gear 23, a first torsion spring 24, two cord rolling gears 25, two lift transmission cords 26, and two brakes 27.
(10) As shown in
(11) As shown in
(12) As shown in
(13) As shown in
(14) As shown in
(15) As shown in
(16) The auxiliary driving unit 30 has a second base 31, a third torsion spring gear 32, a fourth torsion spring gear 33, and a second torsion spring 34.
(17) As shown in
(18) As shown in
(19) As shown in
(20) As shown in
(21) It can be understood from the above illustration that in the condition that the cord rolling unit 20 is used individually, when the two lift transmission cords 26 are pulled out to gradually escape from the two cord rolling gears 25, the two cord rolling gears 25 drives the first and second torsion spring gears 22 and 23 respectively, so that the first torsion spring 24 is stretched by the first and second torsion spring gears 22 and 23, and the resilient force of the first torsion spring 24 is saved. In opposite, when the resilient force of the first torsion spring 24 is applied to the first and second torsion spring gears 22 and 23, the first and second torsion spring gears 22 and 23 drive the two cord rolling gears 25 respectively, so that the two cord rolling gears 25 roll up the associated lift transmission cords 26 respectively.
(22) In the condition that the cord rolling unit 20 is used with the auxiliary driving unit 30 cooperatively, when the first torsion spring gear 22 is driven by the cord rolling gear 25 engaged with it, the first torsion spring gear 22 drives the third torsion spring gear 32 to rotate together through the transmission shaft 40, and then the third torsion spring gear 32 further drives the fourth torsion spring gear 33, so that the second torsion spring 34 is stretched by the third and fourth torsion spring gears 32 and 33, and the resilient force of the second torsion spring 34 is saved. When the resilient force of the first torsion spring 24 is applied to the first torsion spring gear 22, the first torsion spring gear 22 also drives the third torsion spring gear 32 to rotate reversely through the transmission shaft 40, so that the stretching force applied by the third and fourth torsion spring gears 32 and 33 to the second torsion spring 34 is relieved. At this time, the resilient force of the second torsion spring 34 auxiliarily drives the third and fourth torsion spring gears 32 and 33 to rotate reversely to the original state.
(23) In conclusion, for the detachable cord rolling device 10 of the present invention, the auxiliary driving unit 30 can be installed or removed, depending on the practical demands. Therefore, the cord rolling unit 20 can be used individually, or operated with the auxiliary driving unit 30 together. Through the cooperation of the first and second torsion springs 24 and 34 and the transmission of the transmission shaft 40, the detachable cord rolling device 10 of the invention has enough rolling force to work for the large-sized window blind, so the window blind doesn't need the additionally increased cord rolling unit 20, thereby lowered in cost and simplified in structure. Besides, the first and second torsion springs 24 and 34 may be the same or different in specification, so that the resilient force thereof may be equal or unequal, that can be modified according to practical demands. In this way, the structural arrangement is more selective and elastic.