Enclosed blind control
10968692 · 2021-04-06
Assignee
Inventors
Cpc classification
E06B9/78
FIXED CONSTRUCTIONS
E06B9/322
FIXED CONSTRUCTIONS
E06B2009/785
FIXED CONSTRUCTIONS
International classification
E06B9/322
FIXED CONSTRUCTIONS
Abstract
A blind having a blind operating mechanism and a blind control element and having an enclosure for the blind control element, with the element completely enclosed, a connector supporting the enclosure on the blind, and depending downwardly, and a drive device at the lower end of the enclosure for operating the element.
Claims
1. A blind having a blind operating mechanism and an endless loop blind control element for operating the blind operating mechanism and comprising: (a) an enclosure extending from an upper end to a lower end; (b) a connector supporting the upper end of the enclosure adjacent to the blind operating mechanism and depending downwardly from the blind operating mechanism; and, (c) a rotatable drive on the lower end of the enclosure connecting with the endless loop blind control element for operating the endless loop blind control element within the enclosure upon rotation of the rotatable drive; and wherein the endless loop blind control element defines two loop portions and wherein the enclosure is in the form of an elongated flattened wand defining an interior tube and two edges and including a first channel extending from said upper end to the lower end for one loop portion of the element formed along one edge of the wand and a second channel extending from said upper end to the lower end for the other loop portion of the element formed along the other edge of the wand.
2. The blind as claimed in claim 1 wherein the wand is in two sections and each said wand sections include a portion of said two edges, including a connector body between the two wand sections, said connector body having two connector body edges; where each said portion of said two edges of said wand sections and said two connector body edges define said two edges.
3. A blind having a blind operating mechanism and an endless loop blind control element for operating the blind operating mechanism and comprising: (a) an enclosure extending from an upper end to a lower end; (b) a connector supporting the upper end of the enclosure adjacent to the blind operating mechanism and depending downwardly from the blind operating mechanism; and, (c) a rotatable drive on the lower end of the enclosure connecting with the endless loop blind control element for operating the endless loop blind control element within the enclosure upon rotation of the rotatable drive; and wherein the endless loop blind control element defines two loop portions and wherein the enclosure is in the form of an elongated flattened wand defining two edges and including a first channel extending from said upper end to the lower end for one loop portion of the element formed along one edge of the wand and a second channel extending from said upper end to the lower end for the other loop portion of the element formed along the other edge of the wand; and wherein the wand is in two sections and including a connector body between the two sections; and wherein the two wand sections each define interior tubes and including two rods formed integrally with said connector body, with one rod received in the tube of one of said wand sections, and the other said rod received in the tube of the other said wand section.
4. The blind as claimed in claim 3 wherein the connector body defines grooves on opposite sides of said connector body, aligned with the first and second channels in said two wand sections respectively, for receiving said endless loop blind control element therein.
5. The blind as claimed in claim 4 and including concave depressions formed in said grooves of said connector body to access the endless loop blind control element in said concave depressions.
6. The blind as claimed in claim 4 and including at least one pair of spaced apart selectively moveable stop members secured in at least one of said channels controlling the withdrawal of said element from said at least one of said first and second channels between said at least one pair of spaced apart stop members.
7. The blind control element as claimed in claim 3 wherein at least one of said first and second channels has opposite side walls and including shallow curved formations formed in said at least one of said first and second channel walls for retaining said endless loop blind control element therein.
8. The blind as claimed in claim 3 further including a biasing means for urging said upper end and lower end apart, and wherein said biasing means is compressible for moving said upper and lower ends towards one another.
9. A blind having a blind operating mechanism and an endless loop blind control element for operating the blind operating mechanism and comprising; (a) an enclosure extending from an upper end to a lower end, with the endless loop blind control element enclosed within the enclosure between the upper end to the lower end of said enclosure; (b) a connector supporting the upper end of the enclosure adjacent to the blind operating mechanism and depending downwardly from the blind operating mechanism; and, (c) a rotatable drive device on the lower end of the enclosure connecting with the endless loop blind control element for operating the endless loop blind control element within the enclosure upon rotation of the drive device; wherein said enclosure comprises an elongated body along its length and defining, along one side a tube, and along the other side a channel with side walls defining shallow concave formations.
10. A blind having a blind operating mechanism and an endless loop blind control element for operating the blind operating mechanism and comprising; (a) an enclosure extending from an upper end to a lower end, with the endless loop blind control element enclosed within the enclosure between the upper end to the lower end of said enclosure; (b) a connector supporting the upper end of the enclosure adjacent to the blind operating mechanism and depending downwardly from the blind operating mechanism; and, (c) a rotatable drive device on the lower end of the enclosure connecting with the endless loop blind control element for operating the endless loop blind control element within the enclosure upon rotation of the drive device; wherein said enclosure comprises an elongated body along its length and defining, along one side a first tube, and a second tube along its other side, and including two pairs of spaced apart partition walls within said enclosure and extending between said first and second tubes and wherein said partition walls define spaces there between for passage of portions of said endless loop blind control element there between.
11. A blind having a blind operating mechanism and an endless loop blind control element for operating the blind operating mechanism and comprising; (a) an enclosure extending from an upper end to a lower end, with the endless loop blind control element enclosed within the enclosure between the upper end to the lower end of said enclosure; (b) a connector supporting the upper end of the enclosure adjacent to the blind operating mechanism and depending downwardly from the blind operating mechanism; and, (c) a rotatable drive device on the lower end of the enclosure connecting with the endless loop blind control element and operating the endless loop blind control element within the enclosure upon rotation of the drive device; and including a telescopic joint formed between said enclosure and said drive device, and a spring biasing said joint apart and said enclosure being slidable into said joint to compress said spring.
12. A safety device for an endless loop blind control element operating a blind operating mechanism, the safety device comprising; (a) an enclosure extending from an upper end to a lower end, the enclosure for the endless loop blind control element, the enclosure having an interior tube and at least one channel extending from the upper end to the lower end to receive and inhibit access to the endless loop blind control element; said at least one channel having a concave opening to limit access to, and manipulation of the endless loop blind control element; (b) biasing means disposed in the enclosure to urge opposite ends of the endless loop blind control element away from each other; (c) a rotatable drive device carried by the enclosure connecting the endless loop blind control element to the blind operating mechanism.
13. The safety device as claimed in claim 12 wherein said at least one channel is disposed on an external surface of the enclosure for receiving and inhibiting access to a portion of the endless loop blind control element.
14. The safety device as claimed in claim 13 comprising a second channel disposed on the external surface of the enclosure, said second channel spaced from said first channel, each said first and second spaced apart channels receiving and inhibiting access to a portion of the endless loop blind control element respectively; each said first and second spaced apart channels having a curved opening to restrict access to manipulate the endless loop blind control.
15. The safety device as claimed in claim 14 wherein the upper end is pivotally connected to the blind operating mechanism for movement of the enclosure relative to the blind operating mechanism about a first axis.
16. The safety device as claimed in claim 15 wherein the upper end is pivotally connected to the blind operating mechanism for movement of the enclosure relative the operating mechanism about a second axis substantially perpendicular to the first axis.
17. The safety device as claimed in claim 14 wherein said first and second channels include two spaced side walls extending outwardly to define two spaced surfaces curved toward each other for narrowing the spacing between the two spaced side walls for restricting access to the endless loop blind control element.
18. The safety device as claimed in claim 14 wherein at least one of said channels include one or more selectively moveable safety adjustment limiters secured to said one of said channels to control the withdrawal of said endless loop blind control element away from said at least one of said channels.
19. The safety device as claimed in claim 14 wherein at least one of said channels includes a pair of selectively moveable safety adjustment limiters secured to said at least one channel to adjust the distance between the pair of safety adjustment limiters to control the withdrawal of said endless loop blind control element from the said at least one channel between the pair of said safety adjustment limiters.
20. A blind as claimed in claim 4 having a blind operating mechanism and an endless loop blind control element for operating the blind mechanism as claimed in claim 4 wherein said connector body is “H-shaped” in section.
21. A safety device for an endless loop blind control element operating a blind operating mechanism comprising; (a) an enclosure for the endless loop blind control element, the enclosure having at least one channel for receiving and inhibiting access to the endless loop blind control element; said at least one channel defined by two spaced walls extending outwardly from said enclosure to define two spaced channel surfaces each having flat portions extending outwardly to a curved portion which curve toward each other so as to receive said endless loop blind control element between said flat portions of said spaced channel surfaces, and where said curved portions of said spaced channel surfaces form a restriction in said channel for restricting access to the endless loop blind control element; (b) biasing means disposed in the enclosure for urging opposite ends of the endless loop blind control element away from each other; (c) a drive device carried by the enclosure connecting the endless loop blind control element to the blind operating mechanism.
22. The safety device as claimed in claim 21 wherein said biasing means is also compressible to move said opposite ends together.
Description
IN THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(27) Referring first to
(28) There will usually be some form of clutch (not shown) associated with the blind. This purpose is to prevent the blind from unwinding on its own.
(29) Such features are very well known in the industry and require no illustration.
(30) As is usual the element 16 is an endless loop. Pulling one side of the loop will lower the blind and pulling the other side of the loop will raise it.
(31) The roller blind shown is merely by way of example. Various forms of blind employ the continuous loop type of blind control element. The invention is applicable to most of them and is not confined solely to the roller blind shown. For example endless loop controls are used in Venetian blinds and in vertical blinds, and in Russians, and balloons, to name only some of the more popular types of blinds and window coverings.
(32) The blind control element, in other cases, may be a continuous length of cord, driving the blind through a different form of a drive mechanism (not shown) well known in the art.
(33) The invention is equally applicable to a variety of forms of a blind control element, other than those described. Chains of various constructions, and drive belts, and drive cords, for example, also use the endless loop form of element control.
(34) As explained the endless loop type of blind control element has been in use for very many years.
(35) Building requirements are constantly being reviewed both by governmental building authorities, and the industry both to reduce hazards, and to eliminate accidents to children in particular.
(36) It is now proposed that the loop type of blind control element shall not only be held in tension, but also that the loop of the blind control element shall be enclosed along its length, from the blind, at its upper extremity, down to its lower extremity.
(37) This feature will greatly improve both convenience and safety since a child cannot become entangled in it, but it does pose some problems in execution.
(38) The enclosing of the element should not make it more difficult to access the element for operation of the blind.
(39) On the contrary, it should preferably make the element somewhat easier to operate, by preventing the element from becoming twisted or entangled with itself, or any other blind operating elements, which may be part of a more complex blind system (not shown), such as, for example, a vertical panel blind system, or a Venetian blind system.
(40) For this purpose the invention, in this embodiment, provides a safety device or tubular enclosure 20 (
(41) The enclosure can be made in two or more sections. In one embodiment (
(42) As is usual in this type of blind 14, a blind sprocket 28 is located at one end of the blind itself, in a housing 30. In this case the housing has a downwardly directed neck 32, curved and contoured to ensure smooth guided movement of the element 16 from the sprocket 28, into the safety device or enclosure 20. Usually the sprocket 28 or other control is coupled with some form of clutch (not shown) or brake system, which holds the blind in a desired position, and prevents the blind from unwinding due to gravity. The neck 32 is curved and contoured to present converging sides as shown in
(43) The upper end of the safety device enclosure 20 is attached in this example by a fastener 34. The fastener 34 holds the end of the safety device or enclosure 20 to the neck of the housing 30 but permits the safety device or enclosure 20 to be swung away from the window as the enclosure 20 is fastened to the inside surface of the frame 12 by fastened 34. This provides a degree of convenience to the customer which might not have been available in previous forms of pulley systems for the element 16.
(44) At the lower end of the safety device or enclosure 20 there is a drive device, 40 for operating the element 16.
(45) The drive device 40 is shown as having features capable of engaging the element 16, typically being a somewhat larger diameter sprocket in this example the device 40 is another sprocket, suitable for rotatably driving the chain type of element 16 shown. Other forms of an engagement feature are possible for different forms of a control element. The drive device 40 in this case, is provided with a winding knob 42. This knob can be attached on either the right side or the left side of the drive device, depending on the location of the blind, and the preferences of the customer.
(46) A housing 46 with suitable guide walls 48 is provided to guide the element 16 freely from the enclosure 20 onto the drive device 40. The housing would be made in two parts, so that the element can be fitted around the sprocket, and then secured by attaching the housing parts together.
(47) Numerous refinements can be added. For example, the knob 42 may be mounted on a radial arm 50 extending away from the drive device, to provide somewhat greater mechanical advantage for the customer. The arm could be hinged at 51 so as to be stowable onto the drive drum, when not in use (
(48) The arm 50 has a central hub body 52 and an abutment 54 engageable in suitable recesses 56 and 58 in the drive device, (
(49) The drive device 40 can also be provided with finger recesses or even holes 60, for operation by the fingers, or a suitable simple tool, even a pencil, for example.
(50) Depending on customer preferences, the upper end of the enclosure 20 can possibly be left free of attachment to the blind (
(51) Alternatively the upper end of the enclosure 20 can be left somewhat short of the blind itself, and can simply be attached to the window frame 12 by a screw 62 (
(52) The safety device or enclosure 20 may be one piece from end to end, or, if desired, it may be made in two or even more, parts connected as at 64 (
(53) In another embodiment shown in
(54) This may assist a purchaser who wishes to purchase just the safety device or enclosure 20 and a drive device 40, and retro fit it to an existing old technology blind having the usual form of dangling endless loop control.
(55) It is also possible to provide a small drive motor 67,
(56) Other embodiment are shown in
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(58) The wand 70 is comprised of a first of upper wand section 71 and a second or lower wand section 73 connected by a connector body 100.
(59) Body 100 has upper and lower rods, extensions, or struts 124 extending from the connector body 100 into the tubes 74 of the upper 71 and lower 73 portions of the and 70. In this way rods, extensions or struts 124 act as a form of splint holding all three components together. The connector body 100 is formed at each end with shoulders 104 mating with the lateral sides 103, 105 of the channels 72 on opposite side edges of the wand 70.
(60) Stop members 108 can be secured in the channels 72 (
(61) The stop members 108 may be slideably adjustable along each channel, by sliding along the length of the channel 72 to a selected position and can be secured by clamping screws 111 or any number of other fasteners including adhesives or snapping the parts together.
(62) Between the upper and lower shoulders 104 there are recesses 106 of generally semi-arcuate concave shape. These recesses expose the element 16 along a short length on either side edge 107 of the connector body 100. The recesses 106 provide access for adults to action the element 16 to operate the blind in the traditional way. The finger access 106 is high enough from the floor out of reach from children. In other words another embodiment consists of eliminating the drive 40 and just using the linger access 106; or having a choice of selectively using the finger access or driver 40.
(63) This is to enable a person to grasp the element 16 with finger and thumb, within such recesses 106 and to manually adjust the element 16 one way or the other, for moving the blind.
(64) In another embodiment the finger access 106 could be formed in the side of a one piece wand 70.
(65) While doing this the safety device or element 18 will have to be pulled slightly away from the side edge 107 or edges of the wand 70,
(66) When released the wand will slide partially out of the sleeve 92. The element 16 will then be drawn back into the channels of the wand 70.
(67) In this way, it is possible for the homeowner to make simple manual adjustments, by grasping and moving the element with the fingers, without leaving a hanging loop of the element 16 free to create possible hazards.
(68) Stop members 108 can be secured in the channels 72 (
(69) The stop members may be adjustable along each channel, by sliding along the length of the channel 72 to a selected position and can be secured by clamping screws.
(70) The interior of a wand 70 defines an internal rectangular tube 74 (
(71) This drive member 78, in this case, has a winding arm 80 and knob 82. The arm 80 is attached to an axle 84 driving the drive member 78.
(72) The arm can be swung, by joint 86 to lie flat against the housing. A lock member 88 holds the arm in this position when not in use.
(73) The axle 84 preferably has a keyed opening a female socket 56, in this case being simply square.
(74) A suitable hand held appliance 67, i.e. an electric motor appliance, powered by a battery (
(75) Within the rectangular tube 74 of the wand 70 there is a spring 94 with one end resting on a support surface or button 96 (
(76) The side view of the embodiment shown in
(77) In some cases it may be preferable to locate the sleeve and spring between two sections 71 and 73 of the wand.
(78) In another embodiment shown in
(79) Connector body 120 has upper end lower struts 124 extending from the connector body 120 into the tubes 74 of the upper 71 and lower 73 portions of the wand 70. In this way the struts 124 act as a form of splint holding all three components together. The connector body 120 is formed at each end with shoulders 104 mating with the lateral sides 103, 105 of the channels 72 on opposite side edges of the wand 70.
(80) Stop members 108 can be secured in the channels 72 (
(81) The stop members 108 may be sildably adjustable along each channel 72, by sliding along the length of the channel 72 to a selected position and can be secured by clamping screws 111.
(82) If a motor drive appliance is required, it could be made as shown in
(83) A drive tool 72 would extend from one end of the motor drive 67. The tool 72 would have a keyed shape, corresponding the key way shape of the recess 56 in the axle 84.
(84) When required the homeowner would simply insert the tool 72 into the key way in the axle 84 and operate the motor.
(85) In yet another embodiment one could eliminate the connector body 120 and use a one piece wand 70 and form a hole transversely through the wall of the wand 70 so as to attach a cam 123. In yet another embodiment one can eliminate the driver 40 and just use the handle 128 and cam 123, or having a choice of selectively using the handle 128 and cam 123 or driver 40.
(86) In another embodiment the safety device or he wand 70 can be made in two or more lengths, one being slightly larger than the other, to enable the two lengths to be telescoped together
(87) In order to promote such retrofitting, and improve home safety, the invention also provides an adapter collar 112 (
(88) This collar is intended to be attached directly onto the sprocket housing 30 of an existing old technology blind. The collar 112 may be secured to the sprocket housing 30 by for example a screw 113 or adhesive or other fastening means. The interior of the collar 112 has guide surfaces, guiding the element 16 from the sprocket down into the safety device or enclosure which may either be the wand 70, or tube 20.
(89) The homeowner can then simply take the safety device or enclosure 20, 70 and slide the element loop 16 down through the enclosure 20. The drive device at the lower end of the element is provided with a housing in two parts, or a housing door which can be opened, to fit the element loop around the sprocket or other drive member. The housing would then be closed.
(90) A further embodiment is shown in
(91) Element guide body 114 has guide surfaces providing a smooth path for the element from the blind sprocket into the wand 70.
(92) In another embodiment as best shown in
(93) Connecting member 120 is hollow and contains a cam 123, similar to
(94) In doing so the enclosure will be forced against the spring 94. When the element is released, the spring will extend the enclosure away from the member 122 and tension the element back into the channel 72 away from the reach of children.
(95) Other embodiments are shown in
(96) Within gear body 134 the short loop 132 passes around a first drive gear 142 rotatably mounted in body 134.
(97) Gear body 134 hangs down on a short loop 132. It is not secured to any wall or window frame. A second drive gear 144 is also rotatably mounted in gear body 134, and meshes with first drive gear 142.
(98) The wand 70 is separate from gear body 134 and contains a long loop 168 of the element 16. Long loop 168 extends up out of the top end of the wand 70 and passes info gear body 134 around second drive gear 144. At the lower end of wand 70 the long loop passes around a drive system already described above.
(99) Movement of the long loop 168 caused by the drive 40, 76 (or simply by the fingers engaging holes 60 as previously discussed) will rotate second gear 144. This in turn will rotate first gear 142, thus moving the short loop 132.
(100) In the embodiment shown in
(101) A cam mounted within connector body 122 can be swung right or left, by a lever 152 Swinging of the cam will push a portion of the long loop 168 out of the body 146 on one side or the other. The operator can then grasp the element in the fingers and move it by hand, if he wishes, to adjust the blind. In doing so he will, in effect, shorten the long loop 16. This will force the wand 70 to move compressing the spring 149.
(102) Once one releases the element 16, the spring 94 will extend the safety device or enclosure 20 and the element 16 will be retracted back into the channel 72 in the connector body 120.
(103) It will be seen that with this embodiment the gear body 134 is not secured to the window frame 12, or to the wall of the building. This will reduce the chance that the wand 70 and the element 16 may be rendered unserviceable, due perhaps to the loosening of the fastening.
(104) Further embodiments of the enclosure is shown in
(105) In
(106) The other side edge of the enclosure is a restricted channel 166, with shallow concave restrictions.
(107) Within the enclosure there are two transverse walls 168, separating the two lengths of the element from each other.
(108) In
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(113) Swinging connector 31 comprises first swinging connector 39 which is secured to the sprocket housing 30 by means of a fastener 43. The first swinging connector 39 has two arms 45 having aligned holes 41 defining the axis 35-35. The second swing connector 37 has a depending portion 47 that is attached to the upper part of the enclosure 20 by a fastener 23. The second swing connector 37 includes two projections 35 that are journaled for rotation within holes 41. The swing connector 31 allows the device to pivot about an axis defined by screw 43 so as to pivot about a first axis and also to pivot about a second axis defined by 35-35.
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(117) The invention is not to be taken as limited to any of the specific features as described, but comprehends all such variations thereof as come within the scope of the appended claims.