This application claims, under 35 U.S.C. §119, priority to Taiwanese Application No. 099112548, filed Apr. 21, 2010, which application is hereby incorporated by reference herein in its entirety, inclusive of its specification, claims, and drawings.
The present invention relates to saw machines and more particularly, to a saw machine riving knife adjustment mechanism, which has excellent structural stability and facilitates dismounting of the riving knife from a saw machine.
To avoid jamming of a cutting blade within a workpiece or the occurrence of kickback when the workpiece makes contact with the back teeth of the saw blade, a saw machine generally uses a riving knife in order to keep the cut parts of the workpiece spaced apart from each other, thus enabling the operator to feed the workpiece safely and with less effort.
However, in conventional saw machines, screw bolts are commonly used in order to lock the riving knife to the saw machine. In order to accommodate different working conditions, the riving knife may have to be frequently removed from the saw machine. Due to the use of screw bolts, which must be loosened, such conventional mounting designs complicate dismounting of the riving knife from the saw machine. Further, the conventional mounting design does not provide a satisfactory mechanism for positioning the riving knife. Accordingly, improvements in this regard are necessary.
In view of the above discussion, an embodiment of a saw machine riving knife adjustment mechanism, which assures positive and accurate positioning of the riving knife, and facilitates dismounting of the riving knife, is described.
The saw machine riving knife adjustment mechanism includes a locating frame, a riving knife, a biasing member, and a locking member. The locating frame has a long slot defined therein. The riving knife has a generally longitudinal slot (which may be generally arcuate in shape) open to one end of the riving knife and at least one notch recessed from the peripheral wall of the longitudinal slot. The biasing member is mounted in the locating frame. The locking member is inserted through the longitudinal slot of the riving knife and the long slot of the locating frame in order to lock the riving knife to the locating frame. The locking member is biased by the first biasing member into engagement with one notch of the riving knife, thus assuring positive positioning of the riving knife.
Subject to the aforesaid design, an operator simply needs to overcome the biasing force applied by the biasing member to the locking member, and allow the locking member be moved away from the notch of the riving knife into the longitudinal slot of the riving knife, such that the riving knife can then be conveniently removed from the locking member and the locating frame along its longitudinal slot, thus achieving easy dismounting of the riving knife from the saw machine.
These and other features, aspects, and advantages of the present invention will become better understood with regard to the following description, appended claims, and accompanying drawings where:
It should be noted that the drawing figures are not necessarily drawn to scale, but instead are drawn to provide a better understanding of the components thereof, and are not intended to be limiting in scope, but rather to provide exemplary illustrations. It should further be noted that the figures illustrate exemplary embodiments of a saw machine riving knife adjustment mechanism and the components thereof, and in no way limit the structures or configurations of a saw machine riving knife adjustment mechanism and components thereof according to the present disclosure.
Other and further advantages and features of the present disclosure will be understood by reference to the following specification in conjunction with the accompanying drawings. As illustrated in
The locating frame 20 includes a mount 22, a first long slot 24 defined through the mount 22, and two first locating rods 26 extending from the mount 22 and respectively disposed at top and bottom sides relative to the first long slot 24. A second locating rod 28 extends from the mount 22 and is disposed at a lower right side relative to the first long slot 24 towards an end of the locating frame.
The locating plate 30 is configured to be coupled to the first locating rods 26 of the locating frame 20. The locating plate 30 includes a second long slot 32 defined therethrough, which corresponds in size and shape to the first long slot 24 of the locating frame 20.
The riving knife 40 has a longitudinal slot 42 defined therethrough to allow the passage of the first locating rods 26 within the longitudinal slot 42 in order to enable the riving knife 40 to be positioned between the locating frame 20 and the locating plate 30. The riving knife 40 is also movable up and down relative to the locating frame 20, as the first locating rods 26 travel within the longitudinal slot 42. A portion of the riving knife 40 is further configured to abut against the second locating rod 28. Further, the riving knife 40 has two notches 44 formed therein and respectively recessed from a peripheral wall of the longitudinal slot 42. The two notches 44 are respectively disposed along one lateral side of the longitudinal slot 42 near the top bottom sides (first and second ends) of the longitudinal slot 42. The longitudinal slot 42 is generally arcuate in shape, such that the riving knife 40 can travel in an arcuate motion along the first locating rods 26 positioned within the longitudinal slot 42.
The biasing member 50 is fastened to the locating frame 20 by a bolt 52, and disposed at the back side of the mount 22.
As shown in
The hold down block 62 is tightly mounted on the locking member 61, and has an external toothed portion 622 on the periphery thereof. The handle 63 is arranged on the head end of the locking member 61, and includes an internal toothed portion 632 and a flange 634 adjacent to the internal toothed portion 632.
The handle 63 is axially movable along the locking member 61 between an engaged position P1, shown in
When the handle 63 is in the disengaged position P2, as shown in
In order to lock the riving knife 40 to the saw machine, the user can adjust the position of the riving knife 40 along the longitudinal slot 42 relative to the locking member 61, as shown in
In order to dismount the riving knife 40 from the saw machine, the user can rotate the handle 63 in the opposite direction to loosen the locking member 61 from the stop block 66 and to thus release the hold down block 62 from the riving knife 40. The user can then apply a pressure to overcome the spring force provided by the first biasing member 50 to the stop block 66, enabling the locking member 61 to be moved away from the respective notch 44 of the riving knife 40 into the longitudinal slot 42 of the riving knife 40. At this time, the operator can remove the riving knife 40 from the locking member 61 along its longitudinal slot 42.
Further, in order to facilitate rotation of the handle 63 and to avoid interference of the handle 63 with other component parts, the operator can move the handle 63 outwardly from the engaged position P1 to the disengaged position P2, as shown in
In conclusion, the saw machine riving knife adjustment mechanism assures accurate and positive positioning of the riving knife, and facilitates dismounting of the riving knife from the saw machine.
The present disclosure having been thus described with particular reference to the preferred embodiments thereof, it will be obvious that various changes and modifications may be made therein without departing from the spirit and scope of the present disclosure as defined in the disclosure and the claims.
Number | Date | Country | Kind |
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099112548 | Apr 2010 | TW | national |