KNIFE WITH BLADE PROVIDED WITH ENGAGING GROOVE TO FACILITATE ASSEMBLY AND DISASSEMBLY
20170266821 · 2017-09-21
Assignee
Inventors
Cpc classification
B25G3/38
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present invention is to provide a knife, which includes a blade having one end formed as a tip and having an engaging groove formed on a side adjacent to the other end thereof; a handle having a side concavely provided with an inwardly extending receiving space and an engaging post fixedly provided therein adjacent to one end thereof and having an elastic plate provided therein adjacent to the other end thereof; and a back-lock member having a first end corresponding to the receiving space, a second end being movably abutted by a free end of the elastic plate, and a middle section pivotally connected in the handle. Thus, when the second end is being pressed, the other end of the blade can be inserted into the receiving space and, is then securely engaged with the engaging post through the engaging groove while the second end is released.
Claims
1. A knife with a blade provided with an engaging groove to facilitate assembly and disassembly, comprising: a blade having a first end formed as a point, a first side formed with a first edge, and a second side formed with an inwardly extending engaging groove, wherein the engaging groove comprises a back-lock groove, a passage groove, and a first positioning groove sequentially arranged along an inward direction; the back-lock groove has a first end located at a periphery of the second side of the blade; the passage groove is smaller than the back-lock groove and has a first end in communication with a second end of the back-lock groove; and the first positioning groove has a first end in communication with a second end of the passage groove and is at an angle with respect to the passage groove; a handle having a first side concavely provided with an inwardly extending receiving space, the handle being fixedly provided therein with an engaging post adjacent to a first end of the handle, wherein when a second end of the blade extends into the receiving space, the engaging post moves sequentially through the back-lock groove and the passage groove to the first end of the first positioning groove; and by subsequently pushing or pulling the blade, the engaging post is pressed tightly against a second end of the first positioning groove such that a portion of the blade that corresponds to the first positioning groove is tightly engaged with the engaging post, bringing the blade and the handle into an assembled state; the handle further having an inner wall provided with an elastic plate adjacent to a second end of the handle, the elastic plate having a free end movably extending into the receiving space; and a back-lock member having a first end provided with an abutting portion, a second end forming a pressing portion, and a middle section pivotally connected in the handle at a position adjacent to a second side of the handle, the free end of the elastic plate abutting against an inner side of the pressing portion such that, when the engaging post is pressed tightly against the second end of the first positioning groove to bring the blade and the handle into the assembled state, the abutting portion is engaged in the back-lock groove and abuts against the blade to secure the blade and the handle in the assembled state; and when it is desired to replace the blade, the blade is detachable from the handle by pressing the pressing portion to disengage the abutting portion from the back-lock groove and by subsequently pushing the blade in such a way that the engaging post moves from the first positioning groove through the passage groove to the back-lock groove and then out of the back-lock groove.
2. The knife of claim 1, wherein the first side of the blade is further provided with a second edge extending toward the second end of the blade; the second edge is different from the first edge in configuration; the blade is further formed with a second positioning groove; the second positioning groove has a first end in communication with the second end of the passage groove and a second end extending toward the second end of the blade; when the engaging post is engaged with the second end of the first positioning groove to bring the blade and the handle into the assembled state, the second edge is in the receiving space; when the blade re-extends into the handle after being detached therefrom and turned over in a longitudinal direction of the knife, the engaging post moves sequentially through the back-lock groove and the passage groove to the first end of the second positioning groove; and by subsequently pushing or pulling the blade, the engaging post is pressed tightly against the second end of the second positioning groove such that a portion of the blade that corresponds to the second positioning groove is tightly engaged with the engaging post to position the second edge securely outside the handle.
3. The knife of claim 1, wherein the passage groove has a width equal to a width of the engaging post, and the first positioning groove (or each of the first positioning groove and second positioning groove) has a width less than a length of the engaging post such that the portion of the blade that corresponds to the first positioning groove (or each said portion of the blade that corresponds to either the first positioning groove or the second positioning groove) is deformed when engage with the engaging post.
4. The knife of claim 2, wherein the passage groove has a width equal to a width of the engaging post, and the first positioning groove (or each of the first positioning groove and second positioning groove) has a width less than a length of the engaging post such that the portion of the blade that corresponds to the first positioning groove (or each said portion of the blade that corresponds to either the first positioning groove or the second positioning groove) is deformed when engage with the engaging post.
5. The knife of claim 3, wherein the second end of the first positioning groove extends toward the first end of the blade such that the first positioning groove is at the angle with respect to the passage groove.
6. The knife of claim 4, wherein the second end of the first positioning groove extends toward the first end of the blade such that the first positioning groove is at the angle with respect to the passage groove.
7. The knife of claim 5, wherein the angle is 90 degrees.
8. The knife of claim 6, wherein the angle is 90 degrees.
9. The knife of claim 7, wherein the angle is less than 90 degrees.
10. The knife of claim 8, wherein the angle is less than 90 degrees.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0008] To facilitate further understanding of the structural and technical features and operation of the present invention, some illustrative embodiments are detailed below with reference to the accompanying drawings, in which:
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
DETAILED DESCRIPTION OF THE INVENTION
[0015] During the research and development process of the present invention, the inventor found that, despite their vast diversity, the existing folding knives are generally based on the same structural principle, i.e., the blade must be fixed to the handle by a “pivot pin” (e.g., a rivet) in order to be received in the handle by rotating around a center defined by the pivot pin. The pivot pin, though essential to the “rotating and folding” function of a folding knife, fixes the blade to the handle and thus prevents the blade from being replaced as desired. The inventor's unconventional design concept lies in a “pivot pin” which is formed as an engaging post to enable “blade replacement” as described in more detailed below.
[0016] Referring to
[0017] As to the handle 22, a receiving space 220 extends into one of its sides. An engaging post 221 is fixedly provided in the handle 22 at a position adjacent to one end of the handle 22. When the other end of the blade 21 extends into the receiving space 220, the engaging post 221 moves sequentially through the back-lock groove 31 and the passage groove 32 to the second end of the passage groove 32 (i.e., the first end of the first positioning groove 33). Then, the engaging post 221 is pressed tightly against the other end (hereinafter the second end) of the first positioning groove 33 by pushing the blade 21 toward the other end (hereinafter the second end) of the handle 22. Consequently, the portion of the blade 21 that corresponds to the first positioning groove 33 is tightly engaged with the engaging post 221, and the blade 21 and the handle 22 are in the assembled state. The handle 22 also has an inner wall provided with an elastic plate 24. The elastic plate 24 is adjacent to the second end of the handle 22 and has a free end movably extending into the receiving space 220.
[0018] In this embodiment, the angle of the first positioning groove 33 with respect to the passage groove 32 is 90 degrees. More specifically, the second end of the first positioning groove 33 extends toward the first end of the blade 21 to form the angle between the first positioning groove 33 and the passage groove 32. In other preferred embodiments of the present invention, the angle and direction of the first positioning groove 33 may be adjusted as appropriate. For example, the second end of the first positioning groove 33 may extend toward the handle 22 instead. In that case, once the blade 21 is inserted into the receiving space 220, and the engaging post 221 has reached the first end of the first positioning groove 33, the user must “pull” the blade 21 in order to press the engaging post 221 tightly against the second end of the first positioning groove 33.
[0019] It should be pointed out that, for the sake of simplicity and to present the core of design of the present invention,
[0020] The back-lock member 23 is configured as a slender plate, with one end provided with an abutting portion 231 and the other end formed as a pressing portion 232. A middle section of the back-lock member 23 is pivotally connected in the handle 22 at a position adjacent to the other side of the handle 22 while the free end of the elastic plate 24 abuts against the inner side of the pressing portion 232. Thus, when the engaging post 221 is pressed tightly against the second end of the first positioning groove 33 to bring the blade 21 and the handle 22 into the assembled state, the abutting portion 231 is engaged in the back-lock groove 31 and abuts against the blade 21 to hold the blade 21 and the handle 22 firmly together and prevent the blade 21 from getting loose.
[0021] According to the present invention, the blade 21 and the handle 22 are connected by engagement between the engaging post 221 and the first positioning groove 33. In practice, the width or length of the engaging post 221 may be increased to enlarge the area of engagement, thereby enhancing the stability of the blade 21 in all directions. Besides, as shown in
[0022] When it is desired to replace the blade 21, referring to
[0023] The engaging groove 3 can be formed in different types of blades 21 so that a single handle 22 can be used in combination with various blades 21 as needed. As a user can replace the blades 21 by himself/herself, the knife 2 of the present invention not only allows the blade 21 in use to be rotated into and out of the handle 22, but also functions as a knife with a “replaceable blade” and features convenient blade replacement. The knife 2 therefore is more flexible in use and can better meet market demands than its conventional counterparts.
[0024] According to the present invention, the shape of the engaging post 221 can be modified to enhance positioning stability. Referring to
[0025]
[0026] Use of the blade 51 is described below as applied to the handle 22 depicted in
[0027] In the third preferred embodiment of the present invention as shown in FIG. 6, the engaging groove 63 also includes a back-lock groove 631, a passage groove 632, and a first positioning groove 633, but the angle θ between the passage groove 632 and the first positioning groove 633 (or between the passage groove 632 and the longitudinal direction of the blade 61, the first positioning groove 633 in this embodiment being parallel to the longitudinal direction of the blade 61) is less than 90 degrees. Thus, even if the blade 61 becomes loose due to an external force and allows the engaging post 621 to move to the end of the first positioning groove 633 that is in communication with the passage groove 632, the engaging post 621 will not move further outward along the passage groove 632 easily. This ensures that the blade 61 will not fall off the handle instantly when impacted by a large external force.
[0028] The technical features of the foregoing three embodiments can be used in conjunction with one another. In the second preferred embodiment, for example, the angle between the passage groove 532 and the first positioning groove 533 and the angle between the passage groove 532 and the second positioning grooves 534 may also be adjusted as appropriate, and the widths of the positioning grooves 533 and 534 may also be designed as slightly less than the length L of the engaging post 221 so that the blade 51 must deform in order to engage with the engaging post 221.
[0029] The above-mentioned descriptions represent merely the exemplary embodiment of the present disclosure, without any intention to limit the scope of the present disclosure thereto. Various equivalent changes, alternations or modifications based on the claims of present disclosure are all consequently viewed as being embraced by the scope of the present disclosure.