The present invention relates generally to windows for structures such as buildings or homes, and more particularly, to a hung window having upper and lower sashes that are balanced and that operate simultaneously when the lower sash is lifted.
In the construction industry, there are a great number of window designs which can be used for various manmade structures. For windows that are intended to be manually operated in order to open and close, there are also numerous available designs. For windows that are manually operated, consideration must be given as to providing a user the ability to operate the window without exerting an unnecessary amount of force.
One type of window design that is commonly used in residential and commercial structures is the hung window. A hung window typically includes two or more sashes arranged in a vertical orientation, i.e., one sash above and the other sash below. One of the sashes may typically be operated to open or close. Because of the weight of the operable sash that must be overcome in order to move the operable sash, a number of designs have been developed in order to mechanically assist the user thereby reducing the amount of force necessary to operate the sash in order to maintain the sash in any desired position.
Two very common ways to mechanically assist in operation of the lower sash includes spiral balances or block and tackle balances. In most cases, both the spiral balances and the block and tackle balances are spring assisted. There are numerous disadvantages to both spiral and block and tackle balances. For such spring assisted balances, they are difficult to repair because the window must be disassembled in order to access the working parts for replacement. Spring assisted balances easily wear out and there are limits as to the weight of an individual sash that can be operated with such balances.
Despite the numerous designs that exist for hung windows, there still exists a need for a hung window which has a simple yet reliable construction, and allows a user to operate the sashes with a minimum effort, regardless of the size or weight of the sashes.
In accordance with the present invention, a simultaneously operating self-balanced hung window is provided. Additionally, a method is provided for operating a hung window. The window of the present invention in a preferred embodiment includes two sashes arranged in a vertical orientation. The two sashes may be referred to as an upper sash and a lower sash. One or more cables interconnect the sashes to one another. Each cable is routed over one or more pulleys which thereby enables simultaneous operation of the sashes. As the lower sash of the window is raised, the upper sash is lowered. The purpose of this arrangement is to have the upper and lower sashes move simultaneously with only one force acting on the window, namely, a force to lift the lower sash. Alternatively, of course, the upper and lower sashes may also move simultaneously when a force is applied to the upper sash. Through the arrangement of the interconnected upper and low sashes, the upper sash acts as a counterweight thereby assisting a user in raising the lower sash. No additional hardware is required for providing a counterbalance.
In the preferred embodiment of the present invention, there are a pair of cables used to connect both lateral sides of the upper and lower sashes, and a pair of pulleys or rollers are installed within the window frame adjacent each lateral side of the sashes thereby allowing simultaneous operation of the upper and lower sashes. By placing a cable at both lateral sides of the sashes, the lifting force from a user is more evenly distributed across the lower sash thereby preventing the lower sash from being lifted in a manner which causes the lower sash to become misaligned or jammed against the frame of the window.
Depending upon the particular size and design of the upper and lower sashes, it may be necessary to add weight to either the upper or lower sash in order to achieve desired balancing between the two sashes. For example, if the lower sash is much larger than the upper sash, then it may be necessary to add some weight to the upper sash, thereby ensuring that the upper sash can effectively counteract the weight of the lower sash. Alternatively, if the upper sash is much larger than the lower sash, it may be necessary to add some weight to the lower sash to ensure that the sashes are relatively balanced, and in this case, to prevent the sashes from inadvertently opening.
The distances that the upper and lower sashes travel during operation are preferably equal; however, it is also contemplated that it may be necessary or desired to have differences between the distances in which the sashes move. Also, it may be required to limit the distance of travel of the sashes for safety requirements. If differential travel is desired between the sashes, then various additional pulleys can be used to achieve differential travel. If it is simply desired to limit the travel of the sashes, then stops may be incorporated within the window frame, as further discussed below.
In addition to adjusting the actual weights of the upper and lower sashes to thereby accommodate a desired balancing between the sashes, an alternative is to provide one or more additional pulleys whereby the force that is exerted when lifting the lower sash can be mechanically enhanced through use of the additional pulley(s). For example, a third pulley could be used in conjunction with each pair of pulleys to provide the desired mechanical advantage. The third pulley would be mounted within the window frame adjacent each lateral side of the sashes or mounted on the sash.
The pulleys and cables may be mounted within the interior channels of each side of the window frame, thereby allowing a user to adjust the length of the cables as necessary, or to otherwise service the cables and pulleys without having to disassemble the window.
In another aspect of the present invention, a method is provided for manipulating sashes of a hung window whereby the sashes can be balanced with respect to one another. Also in accordance with this method, it is contemplated that the upper and lower sashes may travel similar or the same distances, or differential distances. Additionally, the method contemplates balancing of the sashes either through adding necessary weight to one of the sashes, or utilizing a the alternative pulley arrangement, as discussed above, to handle any differential weight between the sashes.
One distinct advantage of the present invention is the ability to counter balance large or heavy sashes that otherwise exceed the capacities of traditional spring assisted balances.
Another advantage of the present invention is the ability to improve air circulation within a room by providing openings in the hung window at the top and bottom of the window, yet only requiring application of a single force to operate the window. In order to evenly cool or ventilate an air space within a building, it is desirable to have at least some circulation which better mixes stratified airstreams. With the hung window of the present invention, the dual openings created by the simultaneously operated sashes enhance air circulation through convection because air may enter one opening and exit the other opening.
Other features and advantages of the present invention will become apparent by a review of the following figures, taken in conjunction with the detailed description.
Referring to
Referring now to
If it is desired to adjust a length of a cable 46, the user may simply move the nut(s) along the length of the threaded section. By adjusting the effective length of the cable 46, the travel and positioning of the sashes may be controlled to match the frame of the window. It is desirable to have much of the weight of the sashes suspended by the pairs of pulleys, and the sashes should be positioned so that they may seal the window when the window is in the closed position.
Referring back to
Now referring to
The frame members and sash supports may be made from aluminum, or any other advantageous materials. The cable design, the channels of the pulleys, and the diameter of the cables may be matched to provide optimal performance in terms of frictional losses or other considerations.
Although it is preferable to have a cable and a pair of pulleys installed at each lateral side of the sashes, the present invention is functional with only one cable and a pair of pulleys installed at one lateral side.
The advantages of the present invention are clear. Simple yet effective means are provided enabling a hung window of virtually any size or weight to be operated in a manner that does not require extensive additional hardware to mechanically assist a user in operating the window. A combination of cables and pulleys can be incorporated within a traditional hung window design that allows the window to be self balanced, and that also enables simultaneous movement of the upper and lower sashes.
In accordance with the method of the present invention, the method provides a way to manipulate the sashes of a hung window thereby requiring only a single force to be applied to simultaneously move the upper and lower sashes. In accordance with the method, a window construction is provided in the form of a hung window including an upper sash which is mounted in the frame and slideable therein, and a lower sash mounted in the frame and slideable therein. Means are provided to allow force to be transmitted from one sash to another. One or more pairs of pulleys and a corresponding cable or cables are used to transmit force between the sashes. The cables interconnect the upper and lower sashes. To operate the sashes, the upper or lower sash is grasped. A force is then exerted in the direction desired to open or close the sashes. If the lower sash is grasped and an upward force is applied, the lower sash will be lifted while the upper sash will be simultaneously lowered. Alternatively, if a force is applied to the upper sash in a downward direction, the upper sash will be lowered and the lower sash will be lifted. As mentioned above, a user may selectively balance the weight of the upper sash with respect to the lower sash thereby optimizing an amount of force necessary to raise the lower sash, or alternatively, lower the upper sash. In a preferred embodiment, the upper and lower sashes travel equal distances with respect to one another. However, it is also within the spirit and scope of the invention to allow differential travel distances between the sashes, as also mentioned above. In lieu of balancing the sashes by adjusting the weights of the sashes, the method of the present invention also envisions use of one or more additional pulleys thereby providing a user a mechanical advantage to operate the sashes.
Although the apparatus and method of the invention have been provided in a preferred embodiment, it shall be understood that various other changes and modifications may be made within the spirit and scope of the present invention.
This application claims priority from U.S. Provisional Patent Application No. 60/501,933, filed Sep. 11, 2003. The entire disclosure of the provisional application is considered to be part of the disclosure of the accompanying application and is hereby incorporated by reference.
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60501933 | Sep 2003 | US |