The present invention relates to a folding knife equipped with a locking mechanism for locking the blade in an open position.
An ordinary folding knife includes a handle and a blade pivotally supported at the distal end of the handle. A shaft, extending in a direction orthogonal to the blade, is attached to the distal end of the handle. A tang of the blade is pivotally supported by the shaft. The blade is movable between a folded position (non-use position), in which the blade is received within a receiving groove, and an open position (use position), in which the blade extends out of the handle.
The above mentioned folding knife has a locking mechanism for locking the blade in the open position. Various mechanisms have been conventionally proposed and put to practical use as the locking mechanism. The locking mechanism must meet various requirements such as to be able to securely lock the blade, to be able to easily lock and unlock the blade, and to have a simple configuration. However, only few locking mechanisms meet all of the requirements sufficiently.
It is an object of the present invention to provide a folding knife equipped with a novel and improved locking mechanism.
To achieve the above object, the present invention provides a folding knife including a handle and a blade attached to the handle. The handle includes a notch on an upper edge thereof. The blade is pivotally movable about a pivot axis provided in the handle. The blade is movable between a folded position in which the blade is received within the handle and an open position in which the blade extends out of the handle. The blade includes a tang positioned in the handle when the blade is in the open position. A cam surface is provided on a peripheral edge of the tang. The cam surface includes a substantially arcuate guiding portion extending about the pivot axis and an engaging portion extending continuously from one end of the guiding portion. A guide member is fixed to the handle in the notch. The guide member has a guiding axis extending in a longitudinal direction of the handle. A tubular lock member is supported on the guide member and is movable along the guiding axis with respect to the guide member. The lock member includes an axis extending along the guiding axis. The lock member is movable between a lock position in which the lock member engages the engaging portion to lock the blade in the open position and an unlock position in which the lock member is separated from the engaging portion to allow the blade to move from the open position. A bias member biases the lock member in the direction from the unlock position toward the lock position. The bias member acts to move the lock member toward the lock position so as to lock the blade with respect to the handle when the blade is in the open position.
The features of the present invention that are believed to be novel are set forth with particularity in the appended claims. The invention, together with objects and advantages thereof, may best be understood by reference to the following description of the presently preferred embodiment together with the accompanying drawings in which:
One embodiment of the present invention will now be described in accordance with
The handle 1 has first and second sidewalls 4 and 5; and a metal spacing plate 6 provided between the two sidewalls 4 and 5 in the vicinity of the basal portion of the handle 1. The two sidewalls 4 and 5 are joined together by first and second coupling pins 7 and 8 with the spacing plate 6 held in between the sidewalls 4 and 5. The first and second coupling pins 7 and 8 extend through the two sidewalls 4 and 5 and the spacing plate 6 in the vicinity of the basal portion of the handle 1. The two sidewalls 4 and 5 and the spacing plate 6 define the receiving groove 3. The first sidewall 4 has a liner plate 11 and an outer plate 12 disposed exteriorly with respect to the liner plate 11. Similarly, the second sidewall 5 has a liner plate 13 and an outer plate 14 arranged on the outer side of the liner plate 13. Both of the liner plates 11 and 13 are preferably made of a metallic material. Both of the outer plates 12 and 14 are preferably made of a synthetic resin material or wood but may also be made of a metallic material.
A blade shaft 15 extends through the two sidewalls 4 and 5 at the distal portion of the handle 1. The blade 2 includes, at the basal portion thereof, a tang 10 pivotally supported by the blade shaft 15. The axis of the blade shaft 15 is the pivot axis of the blade 2 and extends in a direction orthogonal to the handle 1 and the blade 2. The tang 10 is always arranged inside the handle 1 and held by the two liner plates 11 and 13 from both sides. A knob 16 extends from both sides of the blade 2 in the vicinity of the basal portion of the blade 2. A user may pivot the blade 2 from the folded position to the open position by operating the knob 16 with his or her fingers or by holding the part of the blade 2 exposed from the handle 1 with his or her fingers. The knob 16 may extend only from one side of the blade 2.
As shown in
As shown in
As shown in
Of the front and rear attachments 36 and 37, the front attachment 36 functions as a stopper. In other words, in the vicinity of the basal portion of the blade 2, to be more precise, at the border of the blade portion and the tang 10 of the blade 2, an abutting portion 2a, which abuts against the front attachment 36, is formed, as shown in
As shown in
The lock tube 32 is movably supported on the guide member 31. More specifically, the lock tube 32 is arranged encompassing the support 35 and is movable along the guiding axis 40 with respect to the support 35. Furthermore, the lock tube 32 is rotatable about the guiding axis 40 with respect to the support 35. The lock tube 32 has a cylindrical outer surface 32a having an axis that extends in the direction of the guiding axis 40. The diameter of the outer surface 32a is greater than the thickness of the handle 1, as shown in FIG. 2. The thickness of the handle 1 is the dimension of the axis of the blade shaft 15 in the direction. Thus, with respect to the axial direction of the blade shaft 15, the lock tube 32 projects outward from the outer surfaces of the handle 1. The user moves the lock tube 32 by directly operating the lock tube 32 with his or her fingers. In other words, the lock tube 32 also serves as a manual operating member.
The lock tube 32 is movable between a lock position, shown in
As shown in
When the blade 2 is pivoted from the folded position shown in
The above pivotal movement of the blade 2 and movement of the lock tube 32 separates the second engaging portion 20c of the tang 10 from the front end face of the lock tube 32, and the lock tube 32 rides upon the guiding portion 20a of the tang 10, as shown in FIG. 5. In the state shown in
Once the blade 2 is pivoted to the open position, as shown in
In the state in which the blade 2 is in the open position, the first engaging portion 20b is preferably slightly inclined with respect to the guiding axis 40. In this case, the first engaging portion 20b is inclined toward the distal end of the blade 2 (toward the left in
In the state shown in
When the user moves with his or her fingers the lock tube 32 toward the unlock position against the force of the coil spring 33, the blade 2 is unlocked. In other words, when the lock tube 32 is moved manually from the lock position shown in
The present embodiment described above has the following advantages.
The blade locking mechanism 30 has a simple configuration with a relatively small number of components including the guide member 31, the lock tube 32, and the coil spring 33, and its operation is also relatively simple. Thus, the manufacturing cost is reduced and there is little possibility for defects to occur in the locking mechanism 30.
The locking mechanism 30 is formed as a single unit. The folding knife provided with the locking mechanism 30 is assembled by just mounting the locking mechanism 30, unitized in advance, to the handle 1 in the notch 25 with the pair of coupling pins 38 and 39. This contributes to simplifying the assembly work and reducing the manufacturing cost, compared to when the components constituting the locking mechanism are incorporated in the handle.
The coil spring 33 biasing the lock tube 32 is accommodated within the lock tube 32. This greatly contributes to simplifying the configuration and simplifying the assembly work, compared to when the spring for biasing the lock member is provided within the handle.
When the blade 2 is in the open position, the outer surface 32a of the lock tube 32 engages the first engaging portion 20b of the cam surface 20 formed on the tang 10. The lock tube 32, biased from the unlock position toward the lock position by the force of the coil spring 33, firmly engages the first engaging portion 20b. Thus, the blade 2 is securely and stably locked by the locking mechanism 30, which has a simple configuration.
Even if a great force acts on the blade 2 in the locked state in the direction toward the folded position, the lock tube 32 engaged with the first engaging portion 20b is not separated from the first engaging portion 20b. The locked state of the blade 2 cannot be released unless the user moves the lock tube 32.
There is no exclusive member for manually operating the lock tube 32. When releasing the blade 2 from the lock state, the user only needs to directly and manually operate the lock tube 32. In other words, the lock tube 32 for locking the blade 2 is used also as the manual operating member. This is effective in simplifying the configuration of the locking mechanism 30.
The lock tube 32 is rotatable about the guiding axis 40. When the part of the lock tube 32 slidably contacting the cam surface 20 of the tang 10 becomes worn, the lock tube 32 may be rotated so that a part of the lock tube 32 that has not been worn, slidably contacts the cam surface 20. Thus, the high locking performance of the lock tube 32 can be stably maintained over a long period of time.
The embodiment of the present invention may also be modified as follows.
The shape of the lock tube 32 can be appropriately modified and should not be limited to the shape shown in the drawings. For example, the lock tube 32 does not necessarily have to be cylindrical and may be polygonal or conical.
It should be apparent to those skilled in the art that the present invention may be embodied in many other specific forms without departing from the spirit or scope of the invention. Therefore, the present invention is not to be limited to the details given herein, but may be modified within the scope and equivalence of the appended claims.
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5737841 | McHenry et al. | Apr 1998 | A |
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6370778 | Conable | Apr 2002 | B1 |
6397477 | Collins | Jun 2002 | B1 |
6427335 | Ralph | Aug 2002 | B1 |
6684510 | Collins | Feb 2004 | B1 |
6751868 | Glesser | Jun 2004 | B2 |
20040020058 | Vallotton | Feb 2004 | A1 |