1. Technical Field
The present invention relates generally to a window covering, and more particularly to a cutting machine for cutting rails and window covering material of a window covering.
2. Description of Related Art
Typically, there are a variety of sizes of windows, so the manufactures sell the window coverings to retailers, and the retailers cut the window covering to fit a specific window. A conventional cutting machine for cutting a window covering is taught in U.S. Pat. No. 6,435,066 (hereafter the '066 patent), titled “Cutting apparatus for window covering and methods therefor”, which provides a cutting device on a machine base to cut the window covering.
The '066 patent teaches that a blade, which is used to cut the window coverings, has to simultaneously touch the headrail, the bottom rail, and the window covering material before cutting. However, when the cutting machine of the '066 patent is used to cut a blind with a cellular shade or slats, it would have an uneven cutting result when the blinds are not pressed enough. Therefore, the key to have a nice cutting result is how to firmly press the blinds. However, the clamping device of the '066 patent can't provide sufficient clamping force. On the contrary, if power of the clamping device is too large, it might damage some slats of the blinds.
Furthermore, the '066 patent teaches that the blade simultaneously touches the headrail, the bottom rail, and the window covering material before cutting. It makes the user have to exert a large strength to cut the window coverings, and sometime it will damage the elements with such large strength. Beside, the '066 patent provides a rigid machine base to sustain the window coverings that would damage the blade after the blade cutting the window coverings several times, and that is bad to the afterwards cutting tasks.
The primary objective of the present invention directs to a cutting machine for a window covering, which could evenly cut the window covering with a good cutting quality.
The secondary objective of the present invention directs to a cutting machine for a window covering, which provides a design for a safe operation, and a controllable clamping force.
In order to achieve the objectives of the present invention, the present invention provides a cutting machine for cutting a window covering, wherein the window covering includes a first rail, a covering material, and a second rail, the cutting machine including a machine base having a sustaining face for putting the window covering thereon; and a cutting device provided on the machined base, and including a cutter, which is controllable to reciprocate in a direction substantially perpendicular to the sustaining face, wherein the cutter has a blade edge, and an angle is formed between the blade edge and the sustaining face to cut the first rail, the covering material, and the second rail of the window covering in sequence.
In an embodiment, the angle between the blade edge and the sustaining face is between the 0 and 90 degrees.
In an embodiment, the machine base is provided with a non-rigid pad, and the sustaining face is formed on the non-rigid pad; the cutter crosses an edge of the non-rigid pad and is adjacent to the edge of the non-rigid pad when the cutter is moved to cut the window covering.
In an embodiment, the machine base further includes a rigid board and a guiding board; the non-rigid pad and the guiding board are fixed to the rigid board, and a cutting slot is formed between non-rigid pad and the guiding board for the cutter to pass therethrough; the rigid board is provided with a discharging opening, which is lower than the sustaining face; and a waste part of the window covering after being cut leaves the machine base through the guiding board and the discharging opening in sequence.
In an embodiment, the cutting device further includes a frame and a control bar; the cutter is slidably connected to the frame for reciprocation; the control bar is pivoted on the frame to be moved between a first position and a second position; and the cutter is moved by moving the control bar.
In an embodiment, the cutting device further includes a positioning post and a locker; the positioning post is fixed to the frame; the locker is pivoted on the control bar; the locker has a hook to engage the positioning post when the control bar is moved to the first position, and disengages the positioning post when the control bar is moved to the second position.
In an embodiment, the cutting device further includes a stopping member fixed to the locker to separate the control bar from the hook.
In an embodiment, the hook of the locker has a round edge to abut against the positioning post and move the locker off when the control bar is being moved to the first position from the second position, and then the locker automatically moves back to engage the positioning post because of gravity when the control bar arrives at the first position.
In an embodiment, the cutting device further includes a connecting bar, a stopping block, and a movable block; the connecting bar is pivotally connected to the frame to drive the stopping block to reciprocate along the machine base; the connecting bar has an elongated slot; the elongated slot is oblique to an axial line, which is perpendicular to the sustaining face; the movable block has a portion received in the elongated slot to be moved along with the control bar between a third position and a fourth position; the movable block drives the connecting bar to move when the movable block is moved between the third position and the fourth position; the connecting bar drives the stopping block to move toward the cutter when the movable block is moved to the third position, and the connecting bar drives the stopping block to move away from the cutter when the movable block is moved to the fourth position.
In an embodiment, the cutting device further includes at least one bar; the at least one bar has an end proximal to the sustaining face and an end distal to the sustaining face; the stopping block is connected to the at least one bar, and is movable on the at least one bar and fixed at a position by operating a knob.
In an embodiment, the cutting machine of the present invention further includes a clamping device having two fixed bases, a clamping block, a screw rod, an operating wheel, and a spring. The fixed bases are mounted on the machine base, the clamping block is movable between the fixed bases, the screw bar is fixed to the fixed bases while the clamping block is screwed with the screw bar, and the operating wheel is fixed to an end of the screw bar; the spring fits the screw bar and has opposite ends urging the operating wheel and one of the fixed bases, whereby the clamping block is moved between the fixed bases by turning the operating wheel.
In an embodiment, the clamping device further includes a first stopping block and a second stopping block; the first stopping block is fixed to the operating wheel, and the second stopping block is fixed to one of the fixed bases; turning the operating wheel will make the first stopping block abut against the second stopping block that makes the operating wheel may not be turned anymore.
With the design of above, the cutting machine of the present invention could provide the window covering a stable and consistent clamping force that could have a nice cutting task. The present invention further provides several function, including safe operation, automatically collecting the waste parts of the window covering after being cut, and elongating the life of the cutter.
The present invention will be best understood by referring to the following detailed description of some illustrative embodiments in conjunction with the accompanying drawings, in which
As shown in
As shown in FIGS. from
As shown in
The clamping device 620 further includes a spring 626, a hub 627, a first stopping block 628, and a second stopping block 629. The spring 626 and the hub 627 fit the round section 623a of the screw rod 623, the hub 627 abuts against the fixed base 621, and the spring 626 has opposite ends urging the hub 627 and the operating wheel 624 respectively. As shown in
The cutting device 630 is mounted on the rigid board 612 of the machine base 610 and adjacent to the clamping device 620 which has several functions, including cutting the window covering 20 in a safe way, blocking the window covering, and discharging the window covering. The detail of the cutting device 630 is hereafter.
The cutting device 630 includes a frame 631 and a stopping block 632. The frame 631 is vertically mounted on the rigid board 612 and between the clamping device 620 and the stopping block 632. As shown in
As shown in FIGS. from
The cutter 636 has a blade edge 636a and a body 636b. The blade edge 636a is oblique to the sustaining face 613a, and an angle between the blade edge 636a of the cutter 636 and the sustaining face 613a is between 0 and 90 degrees. The angle of the blade edge 636a of the cutter 636 is determined by the window covering 200 to be cut. A preferable angle between the blade edge 636a of the cutter 636 and the sustaining face 613a is 45 degrees. While the cutter 636 is being moved from the pre-cut position S1 to the post-cut position S2, the first rail 201, the covering material 202, and the second rail 203 of the window covering 200 are cut by the lade edge 536a in sequence. As a result, the window covering 200 is cut in an easy way when the cutter 636 is moved to the post-cut position S2 from the pre-cut position S1. Besides, in order to ensure the cutting quality, the cutter 636 is parallel to an edge of the non-rigid pad 613, and is very close to the edge when the cutter 636 arrives at the post-cut position S2 to provide the window covering a strong support. While the blade edge 636a of the cutter 636 passes through the cutting slot 612a, the body 636b would abut against the edge of the non-rigid pad 613 that makes the window covering 200 have a flat cutting facet. In the event that the cutter 636 might cut the sustaining face 613a of the non-rigid pad 613 if the cutter 636 is tilted. The property of the non-rigid pad 613 would protect the blade edge 636a from being damaged. In the present invention, the non-rigid pad 613 is made of reinforced plastics, which is softer than the blade edge 636a of the cutter 636. In practice, any material softer than the blade edge 636a could be selected to be the non-rigid pad 613.
As shown in
The movable block 643 is fixed to the guiding block 638, and has a portion received in the elongated slot 641b. While the control bar 637 is swung between the first position P1 and the second position P2 to move the cutter 636 between the pre-cut position S1 and the post-cut position S2, it will move the movable block 643 along the elongated slot 641b between a third position P3(
The cutting device 630 further includes a positioning post 646 and a locker 647. As shown in
The locker 647 is fixed with a stopping member 648, which is a bolt for example in the present invention, to separate the control bar 638 from the hook 647a of the locker 647. As a result, when the control bar 637 is swinging toward the first position P1 from the second position P2 (
In conclusion, the cutting machine 100 provides the blade edge 636a of the cutter 636 oblique to the sustaining face 613a that would make the window covering have a nice cutting facet. For the sustaining face 613a of the non-rigid pad 613 softer than the blade edge 636a of the cutter 636, it could protect the blade edge 636a and elongate the life of the cutter 636. The unique clamping device 620 of the present invention provides a consistent pressure to all kinds of the window coverings. It could avoid the bad effect while the pressure to the window coverings is too large or too small. The cutting machine 100 of the present invention further provides the safe design, which avoid the cutter from be activated unexpectedly, and auto-discharging function. It is a nice design.
It must be pointed out that the embodiments described above are only some preferred embodiments of the present invention. All equivalent structures which employ the concepts disclosed in this specification and the appended claims should fall within the scope of the present invention.
This application is a continuation-in-part of U.S. patent application Ser. No. 13/852,339 filed on Mar. 28, 2013. The content of the above-referenced application is incorporated by reference herein.
Number | Name | Date | Kind |
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3245296 | Valente | Apr 1966 | A |
3301117 | Spaulding | Jan 1967 | A |
3961858 | Smith | Jun 1976 | A |
5279196 | Mohr | Jan 1994 | A |
6435066 | Kutchmarek et al. | Aug 2002 | B1 |
7000521 | Cheng | Feb 2006 | B1 |
7204180 | Schwaiger | Apr 2007 | B2 |
Number | Date | Country | |
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20150197982 A1 | Jul 2015 | US |
Number | Date | Country | |
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Parent | 13852339 | Mar 2013 | US |
Child | 14667444 | US |