The present invention is related to a Venetian blind structure, including an upper and lower beams made up of telescopically adjustable upper and lower inner/outer brackets respectively, and plural pairs of mutually abutted upper inner and lower outer blind slats located at retaining holes defined by upper/lower clamping sections distributed equidistantly from top to bottom of U-shaped retaining cords; whereby, due to the sleeve engagement of the upper and lower inner/outer brackets and the abutment location of the upper inner and lower outer blind slats thereof, the upper inner bracket and blind slats, and the lower inner bracket thereof can be simultaneously pushed towards the upper outer upper bracket, and the lower outer blind slats and bracket thereof respectively to telescopically adjust and shorten the overall length of the blind thereof, widely fitting to windows of different sizes as well as efficiently cutting down the packing materials required for more economical use of the shipping space so as to increase the quantity of shipment and the convenience of delivery thereof.
A conventional blind structure is made up of an upper and lower beams, and a blind embodiment attached to the underside of the upper beam wherein the upper and lower beams and the blind embodiment are integrally molded into a certain length and size, which is rather inconvenient for taking too much space in delivery as well as uneconomical for wasting time and materials in package. Even if the upper and lower beams thereof are capable of telescopically adjusted in length, the blind slats, though, are integrally molded into a fixed length without any adjustable functions, uneconomically wasting packing materials and occupying shipping space so that the quantity of shipment thereof is greatly reduced.
It is, therefore, the primary purpose of the present invention to provide a Venetian blind structure, including an upper and lower beams made up of telescopically adjusted upper and lower inner/outer brackets respectively, and plural pairs of upper inner and lower outer blind slats located at retaining holes defined by upper/lower clamping sections distributed equidistantly from top to bottom of U-shaped retaining cords; whereby, via the sleeve engagement of the upper and lower inner/outer brackets thereof respectively and the abutting location of the upper inner and lower outer blind slats thereof, the upper inner bracket and blind slats, and the lower inner bracket thereof can be simultaneously pushed towards the upper outer bracket, and the lower outer blind slats and bracket thereof respectively to telescopically shorten the overall length of the Venetian blind thereof, efficiently cutting down the packing materials required for more economical use of the shipping space to increase the quantity of shipment and the convenience of delivery thereof.
It is, therefore, the second purpose of the present invention to provide a Venetian blind structure wherein the upper inner/outer brackets with an internal and external rods adapted therein, and the lower inner/outer brackets as well as the upper inner and lower outer blind slats thereof can be telescopically adjusted in length to widely fit to windows of different sizes without any other cutting tools required, facilitating the widespread use and the convenience of the present invention thereof.
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Each of the retaining cord mounts 14′ also includes a pair of C-shaped insert grooves 142′ symmetrically cut at both upper lateral sides thereon to be engaged with the stop plates 11′ of the upper outer bracket 10 thereby to define a U-shaped preset space 18′ at the inner periphery of the upper outer bracket 10′ therein. And the upper outer bracket 10′ also has a fixing hole 19′ properly disposed at the bottom surface of one side thereon. The internal and external rods 20, 20′, telescopically joined in sleeve engagement, are respectively provided with internal and external slant clamping legs 21, 21′ properly cut at the bottom sides thereon to be mutually abutted thereby as shown in
Please refer to FIGS. 2 to 3 inclusive. In assembly, the internal rod 20 is forced through in sleeve engagement with the first pair of elastic cavities 141 thereof and located onto the first pull cord mount 14 before both ends of the inner retaining cord 221 are led upwards through the first pair of retaining cord holes 16 of the upper inner bracket 10 respectively and securely fixed to the inner adjustment block 22 for location thereby. The external rod 20′ is passed through the through hole 121′ of the turbo-gear set 12′ at one end thereof, and sequentially joined to the second pair of elastic cavities 131′ of the second pull cord mount 13′ and the elastic grooves 141′ of the retaining cord mounts 14′ thereof respectively at the other end before both ends of each outer retaining cords 221′ thereof are correspondingly led upwards through the second pair of retaining cord holes 16′ of the upper outer bracket 10′ and fixedly attached to the outer adjustment blocks 22′ thereof respectively. The upper inner bracket 10 is then guided through the U-shaped preset space 18′ of the upper outer bracket 10′ till the screw hole 13 thereof is correspondingly matched to the fixing hole 19′ thereof and securely joined thereto via a screw A led from top to bottom and vice versa. Meanwhile, the internal rod 20 is joined to the external rod 20′ thereof in sleeve engagement therewith with the internal and external slant clamping legs 21, 21′ thereof mutually abutted in flexible clamping location thereby, and the two outer retaining cords 221′ disposed at the middle section of the engaged upper inner/outer brackets 10, 10′ thereof are limited at the transverse elongated slots 12 therein. Thus, the upper inner and outer brackets 10, 10′ thereof are assembled into a telescopically adjusted upper beam with the inner and outer retaining cords 221, 221′ thereof extending downwards at the underside thereon. Each pair of the mutually abutted upper inner and lower outer blind slats 30, 30′ are then adapted to the retaining holes 2212, 2212′ thereof and located therein via the upper and lower clamping sections 2211, 2211′ thereof respectively. The right and left pull cords 32, 32′ passed through the first/second pull cord holes 15, 15′ thereof are led downwards from top to bottom through the right and left through holes 31, 31′ of the upper inner and lower outer blind slats 30, 30′ thereof respectively. The lower inner and outer brackets 40, 40′ are then mutually engaged before located to the interior of the bottommost side of the U-shaped inner/outer retaining cords 221, 221′ thereof to form a telescopically adjustable lower beam. The bottommost sides of the inner/outer retaining cords 221, 221′ are correspondingly matched to the first/second pull cord passages 41, 41′ and the sleeve holes 42′ thereof respectively before the locating sleeves 43′ thereof are forced through the sleeve holes 42′ and extended upwards at the movement slot 42 therein to abut against the corresponding outer retaining cords 221′ thereof in clamping location thereby. The bottom ends of the right and left pull cords 32, 32′ are then passed through the first and second pull cord passages 41, 41′ thereof respectively to be tied up to the bottommost side of the inner retaining cord 221 and the outer retaining cord 221′ disposed at the outer side of the lower outer bracket 40′ thereof to complete the assembly of the present invention.
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| Number | Date | Country | Kind |
|---|---|---|---|
| 092219821 | Nov 2003 | TW | national |