The disclosure relates to a window blind, and more particularly to a safety window blind.
Referring to
Specifically, the control cord 131 passes through the headrail 11, and has a front section (not shown) disposed in front of the blind body 12 for being operated by a user, and a rear section (as illustrated in
By virtue of the configuration of the cord loops 137, when the control cord 131 is pulled in a horizontal direction, each of the second cord portions 136 and a corresponding part of the control cord 131 are tightly entwined together to form a knot (similar to an over hand knot), thereby preventing the control cord 131 from being overpulled which may dangerously entangle a child who plays with it.
However, when assembling the abovementioned conventional window blind 1, an operator needs to twist each of the second cord portions 136 to generate the loops 137 for extension of the control cord 131. Since the conventional window blind 1 has a substantial number of the second cord portions 136, and since each second cord portion 136 is relatively short, the abovementioned assembling process is difficult and time-consuming.
Therefore, an object of the disclosure is to provide a safety window blind that can alleviate at least one of the drawbacks associated with the abovementioned prior art.
Accordingly, the safety window blind includes a headrail, a blind body, and two control units. The blind body is hung retractably from the headrail, and includes a plurality of spaced-apart folding portions arranged in an up-down direction. Each of said control units has a spacer cord, a plurality of rings, and a control cord. The spacer cord has a main cord portion extending in the up-down direction, and a plurality of cord loop units connected to the main cord portion and arranged in the up-down direction. Each of the cord loop units has a first cord forming a first loop, and a second cord spaced apart from the first cord in the up-down direction and forming a second loop. The rings are respectively connected to the folding portions of the blind body. The control cord passes through the rings, is operable to retract and expand the blind body in the up-down direction, and has a plurality of holding segments corresponding respectively in position to the cord loop units. Each of the holding segments has a first extending section, a first turning section, a second turning section, and a second extending section. The first extending section passes through the first loop of a respective one of the cord loop units. The first turning section has a first subsection extending from the first extending section, a second subsection opposite to the first subsection, and a bent subsection interconnecting the first and second subsections, and bent around the second cord of the respective one of the cord loop units, such that one of the first and second subsections of the first turning section is disposed inside of the second loop of the respective one of the cord loop units, and that the other one of the first and second subsections is disposed outside of the second loop of the respective one of the cord loop units. The second turning section has a first subsection extending from the second subsection of the first turning section, a second subsection opposite to the first subsection, and a bent subsection interconnecting the first and second subsections, and bent around the first cord of the respective one of the cord loop units, such that one of the first and second subsections of the second turning section is disposed inside of the first loop of the respective one of the cord loop units, and that the other one of the first and second subsections of the second turning section is disposed outside of the first loop of the respective one of the cord loop units. The second extending section extends from the second subsection of the second turning section, and passes through the second loop of the respective one of the cord loop units.
Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiment with reference to the accompanying drawings, of which:
Referring to
In this embodiment, each of the control units 4 has a spacer cord 43, a plurality of rings 42, and a control cord 41. Since the structures of the control units 4 are identical, only one control unit 4 will be described in the following for the sake of brevity. The spacer cord 43 has a main cord portion 431 disposed behind the blind body 3, extending in the up-down direction 430, and interconnecting the headrail 2 and the bottom portion 32 of the blind body 3. The spacer cord 43 further has a plurality of spaced-apart cord loop units 432 connected to the main cord portion 431 and arranged in the up-down direction 430. The rings 42 are respectively connected to the folding portions 33 of the blind body 3. The control cord 41 is operable to retract and expand the blind body 3 in the up-down direction 430. The control cord 41 has a hanging portion 411 extending from the headrail 2 and disposed in front of the blind body 3, and a control portion 412 disposed behind the blind body 3, passing through the rings 42, and having a distal end that is fastened on the bottom portion 32 of the blind body 3. It should be noted that the distal end of the control portion 412 may be fastened on a lowermost one of the rings 42 in other embodiments.
Each of the cord loop units 432 has a first cord 434 that forms a first loop 433, and a second cord 436 that is spaced apart from the first cord 434 in the up-down direction 430, and that forms a second loop 435. For each of the cord loop units 432, the second cord 436 is disposed under the first cord 434, and is longer than the first cord 434. The control portion 412 of the control cord 41 has a plurality of holding segments 414 corresponding respectively in position to the cord loop units 432. Each of the holding segments 414 has a first extending section 415, a first turning section 416, a second turning section 416′, and a second extending section 417. The first extending section 415 passes through the first loop 433 of a respective one of the cord loop units 432. The first turning section 416 has a first subsection 4161 extending from the first extending section 415, a second subsection 4163 opposite to the first extending section 415, and a bent subsection 4162 interconnecting the first and second subsections 4161, 4163, and bent around the second cord 436 of the respective one of the cord loop units 432. The second turning section 416′ has a first subsection 4161′ extending from the second subsection 4163 of the first turning section 416, a second subsection 4163′ opposite to the first subsection 4161′, and a bent subsection 4162′ interconnecting the first and second subsections 4161′, 4163′ of the second turning section 416′, and bent around the first cord 434 of the respective one of the cord loop units 432. The second extending section 417 extends from the second subsection 4163′ of the second turning section 416′, and passes through the second loop 435 of the respective one of the cord loop units 432.
When assembling the safety window blind of this embodiment, an operator first needs to stitch the rings 42 respectively onto the folding portions 33 of the blind body 3, and fasten the main cord portion 431 of the spacer cord 43 between the headrail 2 and the bottom portion 32 of the blind body 3. Then, the control portion 412 is guided downwardly from the headrail 2 to pass through the rings 42 with the holding segments 414 respectively engaging the cord loop units 432. To be more specific, the first extending portion 415 is passed downwardly through the first loop 433 of the respective one of the cord loop units 432, and the bent subsection 4162 of the first turning section 416 is bent upwardly around the second cord 436 of the respective one of the cord loop units 432, such that the first and second subsections 4161, 4163 of the first turning section 416 are disposed respectively inside and outside of the second loop 435 of the respective one of the cord loop units 432. Afterwards, the bent subsection 4162′ of the second turning section 416′ is bent downwardly around the first cord 434 of the respective one of the cord loop units 432, such that the first and second subsections 4161′, 4163′ of the second turning section 416′ are disposed respectively outside and inside of the first loop 433 of the respective one of the cord loop units 432. Finally, the second extending section 417 is passed downwardly through the second loop 435 of the respective one of the cord loop units 432. After the control portion 412 of the control cord 41 passes through all the rings 42 and engages all of the cord loop units 432, the distal end of the control portion 412 is fastened on the bottom portion 32 of the blind body 3, thereby completing the assembling of the safety window blind.
In use, when a child pulls the control portion 412 of the control cord 41 in the horizontal direction (H), distal portions of the first and second cords 434, 436 of each of the cord loop units 432 are drawn toward each other, as illustrated in
The operator may thread the control cord 41 through a needle for facilitating extension of the control portion 412 of the control cord 41 in the abovementioned specific way to engage the cord loop units 432. In comparison with the aforesaid conventional window blind, the operator can complete the assembling of the safety window blind without having to twist the first and second cords 434, 436, thus the assembling of the safety window blind of the present disclosure is more convenient.
Referring to
In the description above, for the purposes of explanation, numerous specific details have been set forth in order to provide a thorough understanding of the embodiments. It will be apparent, however, to one skilled in the art, that one or more other embodiments may be practiced without some of these specific details. It should also be appreciated that reference throughout this specification to “one embodiment,” “an embodiment,” an embodiment with an indication of an ordinal number and so forth means that a particular feature, structure, or characteristic may be included in the practice of the disclosure. It should be further appreciated that in the description, various features are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure and aiding in the understanding of various inventive aspects.
While the disclosure has been described in connection with what is considered the exemplary embodiment, it is understood that his disclosure is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
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