The present invention relates to a blind structure, and more particularly to a stringless blind structure.
Conventionally, a stringless blind structure includes a blind structure having an upper beam with a receiving slot, and the bottom of the receiving slot has a plurality of through holes for strings. Also, a string controller and a fixed base are disposed on both sides, and a moving base is disposed between the string controller and the fixed base. The bottom of the upper beam has a blind body and a lower beam, and a plurality of string holes are formed corresponding to the through holes on the upper beam. A plurality of guiding units are formed on the fixed base and moving base to achieve the goal of guiding when the string is pulled or released. A transmitting string is coupled with the string controller, and one end of the transmitting string and one side of the moving base have a block and a protruding block to engage with each other, so that the transmitting string can wind around the moving base and the fixed base and connect with each other. A user can simply applies force to the lower beam to change the status of the string on the moving base and control the transmitting string, so that the user can easily control the blind body to expand or restore.
However, conventional stringless blind structure is disadvantageous because there are too many components and it is not easy to assemble, so the cost to assemble the structure is high and it is difficult to maintain. Also, the expansion and restoration of the blind body is controlled by the moving base and string controller, so it generates noise when the moving base moves. Furthermore, the string controller generates noise as well when it pulls or release the transmitting string due to the interaction of inner rotor and spring. Therefore, there remains a need for a new and improved stringless blind structure to overcome the problems stated above.
The problem the present invention would like to solve is that conventional stringless blind structure is disadvantageous because there are too many components and it is not easy to assemble, so the cost to assemble the structure is high and it is difficult to maintain. Also, the expansion and restoration of the blind body is controlled by the moving base and string controller, so it generates noise when the moving base moves. Furthermore, the string controller generates noise as well when it pulls or release the transmitting string due to the interaction of inner rotor and spring.
To solve and overcome the problems stated above, the present invention provides a stringless blind structure including a main rail, a secondary rail, a main blind body and a string body. An open slot is horizontally formed at one side of the main rail, and a sliding rail is formed inside. A second open slot is horizontally formed at one side of the secondary rail, and a second sliding rail is formed inside. Inner space of the secondary rail is divided into a left side and a right side, and a corresponding restricting portion is formed therein. One end of a string is disposed around the restricting portion, and a connecting unit is coupled with the same end. The main blind body engages with the main rail and the secondary rail through an upper end and a lower end, and two through holes are formed through the upper portion to the lower portion of the main blind body. The string body winds several times between two connecting units and two ends thereof with identical length are cross, inserted into the through holes of the main blind body, and tied at the upper portion of the main blind body to form a secured positioning.
Comparing with the conventional arts, the present invention is advantageous because the main rail, the secondary rail and the main blind body are connected and operated through the string body and the string, so the cost of the structure is lower and the it is more convenient and easier to assemble. Also, the string body winds around two connecting units, and is restricted by the string. When the main blind body expands or restores through the movement of the main rail and the secondary rail, the movement is restricted and controlled by the string to achieve the goal of stringless movement to reduce the noise when the blind moves and to further improve the life quality at home.
The detailed description set forth below is intended as a description of the presently exemplary device provided in accordance with aspects of the present invention and is not intended to represent the only forms in which the present invention may be prepared or utilized. It is to be understood, rather, that the same or equivalent functions and components may be accomplished by different embodiments that are also intended to be encompassed within the spirit and scope of the invention.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood to one of ordinary skill in the art to which this invention belongs. Although any methods, devices and materials similar or equivalent to those described can be used in the practice or testing of the invention, the exemplary methods, devices and materials are now described.
All publications mentioned are incorporated by reference for the purpose of describing and disclosing, for example, the designs and methodologies that are described in the publications that might be used in connection with the presently described invention. The publications listed or discussed above, below and throughout the text are provided solely for their disclosure prior to the filing date of the present application. Nothing herein is to be construed as an admission that the inventors are not entitled to antedate such disclosure by virtue of prior invention.
In order to further understand the goal, characteristics and effect of the present invention, a number of embodiments along with the drawings are illustrated as following:
Referring to
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On the other hand, when the main blind body (30) are restored to its original position, the main rail (10) or the secondary rail (20) are pushed up, and the string body (40) is loosened due to the reduction of the gravity of the main rail (10) and the secondary rail (20). Also, two connecting units (25) are moved toward outside due to the resilience of the string (24), so that the string body (40) are collected between two connecting units (25). And the string body (40) is restricted by the string (24) to prevent the string body (40) from being pulled out by the weight of the main rail (10) and the secondary rail (20), and to further prevent the main blind body (30) from expanding when there is no force applied to it.
According to the embodiments discussed above, the present invention is advantageous because the main rail (10), the secondary rail (20) and the main blind body (30) are connected and operated through the string body (40) and the string (24), so the cost of the structure is lower and the it is more convenient and easier to assemble. Also, the string body (40) winds around two connecting units (25), and is restricted by the string (24). When the main blind body (30) expands or restores through the movement of the main rail (10) and the secondary rail (20), the movement is restricted and controlled by the string (24) to achieve the goal of stringless movement to reduce the noise when the blind moves and to further improve the life quality at home.
Having described the invention by the description and illustrations above, it should be understood that these are exemplary of the invention and are not to be considered as limiting. Accordingly, the invention is not to be considered as limited by the foregoing description, but includes any equivalent.
Number | Date | Country | Kind |
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101204616 | Mar 2012 | TW | national |