The present invention relates to window blinds and more particularly to a window blind which is good in the effect of blocking out the light.
As to the conventional window blind as shown in
It is a primary objective of the present invention to provide a window blind, the slats of which is complete in structure, thereby good in the effect of blocking out the light.
To attain the above objective, the window blind of the present invention includes a bottom beam, a top beam, a plurality of slats, and a slat folding transmission device. The top beam has a bottom plate and two lateral plates connected to two opposite long sides of the bottom plate respectively and provided with a lateral hole each. The slats are disposed between the top beam and the bottom beam in a way that the slats are spaced out from each other. The slat folding transmission device has a cord rolling member and two lift transmission cords opposite to each other. The cord rolling member is disposed in the top beam. The two lift transmission cords pass through the lateral holes of the lateral plates of the top beam respectively, and are located adjacent to two opposite long sides of each of the slats respectively. An end of each of the two lift transmission cords is connected with the bottom beam. Another end of each of the two lift transmission cords is connected with the cord rolling member, so that the two lift transmission cords can pull the bottom beam simultaneously when being rolled by the cord rolling member, thereby moving the bottom beam upwardly to fold up the slats by pushing the slats.
It can be known from the above description that the slats of the window blind of the present invention have no need to be provided with holes by processing, thereby complete in structure, so that the slats can provide good effect of blocking out the light when being adjusted to the inclined condition.
Preferably, the slat folding transmission device further has a cord guiding seat having two first vertical walls opposite to each other, two second vertical walls opposite to each other, two first guiding rods opposite to each other, and two second guiding rods opposite to each other; the two first vertical walls are embedded in the lateral holes of the lateral plates of the top beam respectively, and provided with a first cord passing hole each; each said first cord passing hole is passed through by a said lift transmission cord; the two second vertical walls are located between the two first vertical walls and disposed adjacent to the first vertical walls respectively; each of the first guiding rods is disposed in the first cord passing hole of a said first vertical wall horizontally and abutted against a said lift transmission cord; each of the second guiding rods is disposed between a said first vertical wall and a said second vertical wall inclinedly and abutted against a said lift transmission cord. Such structural arrangement can improve the functional smoothness of the two lift transmission cords.
Preferably, the bottom plate of the top beam has two bottom holes opposite to each other; the window blind further includes a slat angle adjusting device having an angle adjusting rod, an angle adjusting seat, two adjusting cords and a plurality of holding circles; the angle adjusting rod is disposed in the top beam revolvably on its own axis; the angle adjusting seat is connected with the angle adjusting rod and pivotably disposed on the cord guiding seat; the two adjusting cords pass through the bottom holes of the bottom plate of the top beam respectively, and are located adjacent to said two opposite long sides of each of the slats respectively; an end of each of the two adjusting cords is connected with the angle adjusting seat; another end of each of the two adjusting cords is connected with the bottom beam; each of the holding circles is connected between the two adjusting cords and put around a said slat. In this way, the angle adjusting seat can pull one of the two adjusting cords when being driven by the angle adjusting rod, to incline the slats to achieve the effect of blocking out the light.
Preferably, the cord guiding seat has a bottom wall connecting the two first vertical walls and the two second vertical walls; the bottom wall is provided at each of two ends thereof with a second cord passing hole; each said second cord passing hole communicates with a said bottom hole of the bottom plate of the top beam, and is passed through by a said adjusting cord. Such structural arrangement can improve the moving smoothness of the adjusting cords.
Preferably, each of the adjusting cords is connected with a plurality of limiting circles spaced out from each other and passed through by a said lift transmission cord at the same time, such that the lift transmission cords and the adjusting cords are prevented from entwining or interfering with each other.
The detailed structure, features and assembling or using manner of the window blind of the present invention will be specified in the detailed description of the embodiments given hereinafter. However, those skilled in the field of the present invention should understand that the detailed description and the specific embodiments instanced for the implementing of the invention are given for illustration only, not for limiting the scope of the invention.
First of all, it is to be mentioned that the window blind 10 of the present invention may be the window blind with a pulling cord or the window blind with no pulling cord. In this embodiment, it is primarily about the window blind with no pulling cord. Referring to
The top beam 30 is located above the bottom beam 20, and has a bottom plate 31 and two lateral plates 33, as shown in
The slats 35 are disposed between the bottom beam 20 and the top beam 30 in a way that the slats 35 are spaced out from each other.
The slat folding transmission device 40 has a cord rolling member 41, three cord guiding seats 42, and three pairs of lift transmission cords 49. The cord rolling member 41 is disposed in the top beam 30, as shown in
As shown in
When the slats 35 are to be folded up, the upward pushing force applied by the user to the bottom beam 20 and the rolling force applied by the cord rolling member 41 to the lift transmission cords 49 move the bottom beam 20 toward the top beam 30. In the process that the bottom beam 20 is moved toward the top beam 30, all the slats 35 are piled on one another and at last folded up. On the other hand, when the slats 35 are to be adjusted to the inclined condition, at first the handling portion 52 of the driving set 51 is rotated, and the driving set 51 drives the angle adjusting rod 53 to rotate. In the process of rotation, the angle adjusting rod 53 further drives the angle adjusting seats 54 to rotate, so that the angle adjusting seats 54 pulls one of the adjusting cords 56 of each adjusting cord set 55. Then, the pulled adjusting cords 56 upwardly push the associated long sides of the slats 35 through the holding circles 57, so that the slats 35 come into the inclined condition to provide the effect of blocking out the light.
It can be known from the above description that the slats 35 of the window blind 10 of the present invention have no need to be provided with holes by processing, thereby complete in structure, so that the slats 35 can provide good effect of blocking out the light when being adjusted to the inclined condition. Besides, the adjusting cords 56 and the lift transmission cords 49 of the window blind 10 of the present invention are improved in the moving smoothness, and prevented from entwining or interfering with each other, so that the window blind 10 of the present invention is effectively improved in the operational stability.
Number | Date | Country | Kind |
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106109767 A | Mar 2017 | TW | national |
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