EP3006170B1 - Cutter assembly having a screw-locking device - Google Patents
Cutter assembly having a screw-locking device Download PDFInfo
- Publication number
- EP3006170B1 EP3006170B1 EP14188134.2A EP14188134A EP3006170B1 EP 3006170 B1 EP3006170 B1 EP 3006170B1 EP 14188134 A EP14188134 A EP 14188134A EP 3006170 B1 EP3006170 B1 EP 3006170B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- engaging
- cutter assembly
- blade holder
- blade
- segments
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Not-in-force
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Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B26—HAND CUTTING TOOLS; CUTTING; SEVERING
- B26B—HAND-HELD CUTTING TOOLS NOT OTHERWISE PROVIDED FOR
- B26B5/00—Hand knives with one or more detachable blades
- B26B5/001—Hand knives with one or more detachable blades with blades being slid out of handle immediately prior to use
- B26B5/002—Hand knives with one or more detachable blades with blades being slid out of handle immediately prior to use segmented blades
Definitions
- the present invention relates to a cutter assembly, and more particularly to a cutter assembly having a screw-locking device.
- a retractable cutter is applied to cut paper or wooden sheets and substantially comprises a blade holder, a blade and a slider.
- the slider is mounted on the blade holder.
- the blade is mounted slidably in the blade holder and is connected to the slider.
- the slider is pushed, the blade is moved relative to the blade holder to extend out of the blade holder to enable a user to cut an object by the cutter.
- a screw-locking device is mounted on the slider for cutting a thick or hard object.
- the conventional screw-locking device substantially comprises a threaded rod mounted on the slider.
- the slider When the threaded rod is rotated to make the threaded rod abut against an inner surface of the blade holder, the slider can be positioned relative to the blade holder. When the threaded rod is released, the slider is moveable relative to the blade holder to adjust the extension length of the blade relative to the blade holder.
- the locking force of the conventional screw-locking device is achieved by friction between the end of the threaded rod and the inner surface of the blade holder.
- the locking force of the conventional screw-locking device is not sufficient, and the slider and the blade are easily moved when a specific pushing or pulling force is applied to the cutter.
- the blade cannot be positioned firmly and stably.
- the threaded rod and the inner surface of the blade holder are easily worn off due to the abutment between the threaded rod and the inner surface of the blade holder, and depressions or scratches are easily formed on the inner surface of the blade holder. Accordingly, the conventional screw-locking device cannot provide sufficient locking force to the blade.
- EP 2484497 A1 Another conventional knife is disclosed in European patent publication No. EP 2484497 A1 , which disclosed a conventional knife having a body and a slide member slidable in the body. The slide member engages a blade assembly that is arranged to move with the slide member. The knife also includes an actuator member that can be actuated to move the slide member to a disengaged configuration.
- the present invention tends to provide a cutter assembly to mitigate or obviate the aforementioned problems.
- the main objective of the invention is to provide a cutter assembly having a screw-locking device to provide an excellent locking force.
- the cutter assembly in accordance with the present invention has a blade holder, a blade, a slider and a screw-locking device.
- the blade is moveably mounted in the blade holder and has a moving direction.
- the blade holder has a bottom and multiple engaging segments disposed on the bottom along the moving direction of the blade.
- the slider is mounted slidably on the blade holder and connected to the blade.
- the screw-locking device is mounted rotatably on the slider and has a locking bolt and a locking sleeve screwed with each other.
- the locking bolt has an end selectively engaging at least one of the engaging segments.
- the blade holder has a guiding channel defined in a side of the blade holder and having multiple positioning segments formed in at least one side edge of the guiding channel, and the positioning segments correspond respectively to the engaging segments in position.
- the slider is moveable relative to the positioning segments to allow the screw-locking device to move with the slider and to be positioned.
- a firm and stable locking force can be provided to the slider and the blade with the engagement between the engaging segments on the bottom of the blade holder and the locking bolt.
- the blade will not be moved unintentionally while a large force is applied to the blade.
- wear between the locking bolt and the blade holder can be prevented, and a firm and stable locking force is provided to the blade and the service life of the cutter assembly can be also prolonged.
- a first embodiment of a cutter assembly in accordance with the present invention comprises a blade holder 10, a slider 20, an automatic locking device 70, a screw-locking device 40 and a blade 50.
- the blade 50 is moveably mounted in the blade holder 10.
- the blade holder 10 comprises multiple engaging segments 12 disposed on a bottom of the blade holder and arranged along a moving direction D of the blade 50.
- the bottom of the blade holder 10 has a flat inner surface.
- the engaging segments 12 are arranged in a line and may be holes, recesses or ribs arranged at intervals.
- the shapes of the engaging segments 12 may be round or square.
- the engaging segments 12 are engaging holes formed through the blade holder 10.
- a guiding channel 11 is defined in a side of the blade holder 10 and has two side edges. Multiple positioning segments 112 are formed in one of the two side edges of the guiding channel 11 and correspond respectively to the engaging segments 12 in position.
- the positioning segments 112 may be teeth.
- the slider 20 is mounted slidably on the blade holder 10 relative to positioning segments 112 on the guiding channel 11 and comprises an upper sliding member 22 and a lower sliding member 24.
- the blade 50 is connected with the lower sliding member 24 of the slider 20, such that the blade 50 can be moved relative to the blade holder 10 with the slider 20.
- the automatic locking device 70 is mounted on the slider 20 and resiliently engages with the positioning segments 112 on the blade holder 10 to provide an automatic locking effect to the slider 20.
- the screw-locking device 40 is mounted on the slider 20 and comprises a locking bolt 42 and a locking sleeve 44 screwed with each other.
- the locking bolt 42 is mounted rotatably on the upper sliding member 22 and comprises a head 422 and a threaded rod 424.
- the head 422 is formed on one end of the threaded rod 424.
- the threaded rod 424 extends through the slider 20 and selectively engages at least one of the engaging segments 12 on the blade holder 10.
- the end of the threaded rod 424,424A engaging the engaging segments 12 is defined as an engaging end and has a guiding structure 426,426A to make the end of the threaded rod 424,424A non-flat.
- the guiding structure 426,426A has an outer diameter smaller than an outer diameter of the threaded rod 424,424A, such that the engaging end of the threaded rod 424,424A can smoothly engage with the engaging segments 12.
- the guiding structure 426,426A may be a conical protrusion having a gradually decreasing diameter as shown in Fig. 10 or a protrusion having a diameter smaller than a diameter of the threaded rod 424A as shown in Fig. 11 .
- the guiding structure 426A on the threaded rod is formed as stepped shape and has a flat shoulder surface.
- the shoulder surface will abut the blade holder 10.
- the locking bolt 42 is rotated to extend the engaging end into the corresponding engaging segment 12 and make the shoulder surface abut the blade holder 10, the abutment between the shoulder surface and the bottom of the blade holder 10 enhances the locking force between the locking bolt 42 and the blade holder 10.
- a rotating knob 46 is mounted around the head 422 to allow a user to turn the locking bolt 42 conveniently.
- the locking sleeve 44 is mounted in the lower sliding member 24 and has a threaded hole 442 screwed with the locking bolt 42.
- a sleeve mount 26 is mounted on the lower sliding member 24, and the locking sleeve 44 is securely mounted on the sleeve mount 26.
- a protective cap 48 is mounted on the upper sliding member 22 and covers the rotating knob 46 to prevent the locking bolt 42 from being rotated unintentionally.
- the engaging segments 12 on the bottom of the blade holder 10 are covered by the blade 50.
- the positioning segments 112 can provide a guiding effect to the slider 20 sliding thereon, the user can easily move the slider 20 and the locking bolt 42 to a desired and predetermined travel distance without having to align the locking bolt 42 with the engaging segments 12.
- the blade 50 is moved with the slider 20 to extend out from the blade holder 10 to a desired extension length.
- the locking bolt 42 is rotated to make the engaging end of the threaded rod 424 rotate relative to the locking sleeve 44 and engage with a corresponding one of the engaging segments 12.
- a second embodiment of a cutter assembly in accordance with the present invention the structure of the second embodiment is similar to that of the first embodiment except that a groove 14 having a triangular or V-shaped cross section is formed in the bottom of the blade holder 10A.
- the engaging segments 12A are disposed in the groove 14 and are recesses formed un-through the blade holder 10A. Accordingly, the engaging segments 12A of a recess-type can engage the threaded rod 424 of the locking bolt 42 to provide an excellent positioning effect to the blade 50.
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- Life Sciences & Earth Sciences (AREA)
- Forests & Forestry (AREA)
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Knives (AREA)
Description
- The present invention relates to a cutter assembly, and more particularly to a cutter assembly having a screw-locking device.
- A retractable cutter is applied to cut paper or wooden sheets and substantially comprises a blade holder, a blade and a slider. The slider is mounted on the blade holder. The blade is mounted slidably in the blade holder and is connected to the slider. When the slider is pushed, the blade is moved relative to the blade holder to extend out of the blade holder to enable a user to cut an object by the cutter. To hold the blade at a desired position with a desired extension length relative to the blade holder and to provide a large positioning force, a screw-locking device is mounted on the slider for cutting a thick or hard object. The conventional screw-locking device substantially comprises a threaded rod mounted on the slider. When the threaded rod is rotated to make the threaded rod abut against an inner surface of the blade holder, the slider can be positioned relative to the blade holder. When the threaded rod is released, the slider is moveable relative to the blade holder to adjust the extension length of the blade relative to the blade holder.
- However, the locking force of the conventional screw-locking device is achieved by friction between the end of the threaded rod and the inner surface of the blade holder. Thus, the locking force of the conventional screw-locking device is not sufficient, and the slider and the blade are easily moved when a
specific pushing or pulling force is applied to the cutter. Thus, the blade cannot be positioned firmly and stably. In addition, the threaded rod and the inner surface of the blade holder are easily worn off due to the abutment between the threaded rod and the inner surface of the blade holder, and depressions or scratches are easily formed on the inner surface of the blade holder. Accordingly, the conventional screw-locking device cannot provide sufficient locking force to the blade. - Another conventional knife is disclosed in European patent publication No.
EP 2484497 A1 , which disclosed a conventional knife having a body and a slide member slidable in the body. The slide member engages a blade assembly that is arranged to move with the slide member. The knife also includes an actuator member that can be actuated to move the slide member to a disengaged configuration. - To overcome the shortcomings, the present invention tends to provide a cutter assembly to mitigate or obviate the aforementioned problems.
- The main objective of the invention is to provide a cutter assembly having a screw-locking device to provide an excellent locking force.
- The cutter assembly in accordance with the present invention has a blade holder, a blade, a slider and a screw-locking device. The blade is moveably mounted in the blade holder and has a moving direction. The blade holder has a bottom and multiple engaging segments disposed on the bottom along the moving direction of the blade. The slider is mounted slidably on the blade holder and connected to the blade. The screw-locking device is mounted rotatably on the slider and has a locking bolt and a locking sleeve screwed with each other.
- The locking bolt has an end selectively engaging at least one of the engaging segments. The blade holder has a guiding channel defined in a side of the blade holder and having multiple positioning segments formed in at least one side edge of the guiding channel, and the positioning segments correspond respectively to the engaging segments in position. The slider is moveable relative to the positioning segments to allow the screw-locking device to move with the slider and to be positioned.
- With such an arrangement, a firm and stable locking force can be provided to the slider and the blade with the engagement between the engaging segments on the bottom of the blade holder and the locking bolt. The blade will not be moved unintentionally while a large force is applied to the blade. In addition, wear between the locking bolt and the blade holder can be prevented, and a firm and stable locking force is provided to the blade and the service life of the cutter assembly can be also prolonged.
- Other objects, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
-
-
Fig. 1 is a perspective view of a first embodiment of a cutter assembly in accordance with the present invention; -
Fig. 2 is an exploded perspective view of the cutter assembly inFig. 1 ; -
Fig. 3 is an enlarged exploded perspective view of a slider, a blade, a screw-locking device and a protective cap of the cutter assembly inFig. 1 ; -
Fig. 4 is another exploded perspective view of the slider, the blade, the screw-locking device and the protective cap of the cutter assembly inFig. 3 ; -
Fig. 5 is an enlarged cross sectional perspective view of the cutter assembly inFig. 1 ; -
Fig. 6 is an enlarged operational cross sectional perspective view of the cutter assembly inFig. 1 ; -
Fig. 7 is an exploded perspective view of a second embodiment of a cutter assembly in accordance with the present invention; -
Fig. 8 is an enlarged cross sectional perspective view of the cutter assembly inFig. 7 ; -
Fig. 9 is an enlarged side view in partial section of the cutter assembly inFig. 7 ; -
Fig. 10 is a perspective view of a first embodiment of a locking bolt of the cutter assembly in accordance with the present invention; and -
Fig. 11 is a perspective view of a second embodiment of a locking bolt of the cutter assembly in accordance with the present invention. - With reference to
Figs. 1 to 4 , a first embodiment of a cutter assembly in accordance with the present invention comprises ablade holder 10, aslider 20, anautomatic locking device 70, a screw-locking device 40 and ablade 50. Theblade 50 is moveably mounted in theblade holder 10. - The
blade holder 10 comprises multipleengaging segments 12 disposed on a bottom of the blade holder and arranged along a moving direction D of theblade 50. Preferably, the bottom of theblade holder 10 has a flat inner surface. Theengaging segments 12 are arranged in a line and may be holes, recesses or ribs arranged at intervals. The shapes of theengaging segments 12 may be round or square. In the first embodiment, theengaging segments 12 are engaging holes formed through theblade holder 10. A guidingchannel 11 is defined in a side of theblade holder 10 and has two side edges.Multiple positioning segments 112 are formed in one of the two side edges of the guidingchannel 11 and correspond respectively to theengaging segments 12 in position. Thepositioning segments 112 may be teeth. Theslider 20 is mounted slidably on theblade holder 10 relative topositioning segments 112 on the guidingchannel 11 and comprises an upper slidingmember 22 and a lower slidingmember 24. Theblade 50 is connected with the lower slidingmember 24 of theslider 20, such that theblade 50 can be moved relative to theblade holder 10 with theslider 20. Theautomatic locking device 70 is mounted on theslider 20 and resiliently engages with thepositioning segments 112 on theblade holder 10 to provide an automatic locking effect to theslider 20. - The screw-
locking device 40 is mounted on theslider 20 and comprises alocking bolt 42 and alocking sleeve 44 screwed with each other. Thelocking bolt 42 is mounted rotatably on the upper slidingmember 22 and comprises ahead 422 and a threadedrod 424. Thehead 422 is formed on one end of the threadedrod 424. The threadedrod 424 extends through theslider 20 and selectively engages at least one of the engagingsegments 12 on theblade holder 10. With reference toFigs. 10 and11 , the end of the threaded rod 424,424A engaging the engagingsegments 12 is defined as an engaging end and has a guiding structure 426,426A to make the end of the threaded rod 424,424A non-flat. The guiding structure 426,426A has an outer diameter smaller than an outer diameter of the threaded rod 424,424A, such that the engaging end of the threaded rod 424,424A can smoothly engage with the engagingsegments 12. The guiding structure 426,426A may be a conical protrusion having a gradually decreasing diameter as shown inFig. 10 or a protrusion having a diameter smaller than a diameter of the threadedrod 424A as shown inFig. 11 . In the embodiment shown inFig. 11 , the guidingstructure 426A on the threaded rod is formed as stepped shape and has a flat shoulder surface. Accordingly, when the engaging end of the threadedrod 424A engages with a corresponding one of the engagingsegments 12, the shoulder surface will abut theblade holder 10. When the lockingbolt 42 is rotated to extend the engaging end into the corresponding engagingsegment 12 and make the shoulder surface abut theblade holder 10, the abutment between the shoulder surface and the bottom of theblade holder 10 enhances the locking force between the lockingbolt 42 and theblade holder 10. In addition, a rotatingknob 46 is mounted around thehead 422 to allow a user to turn thelocking bolt 42 conveniently. The lockingsleeve 44 is mounted in the lower slidingmember 24 and has a threadedhole 442 screwed with the lockingbolt 42. In addition, asleeve mount 26 is mounted on the lower slidingmember 24, and the lockingsleeve 44 is securely mounted on thesleeve mount 26. Furthermore, aprotective cap 48 is mounted on the upper slidingmember 22 and covers the rotatingknob 46 to prevent thelocking bolt 42 from being rotated unintentionally. - With reference to
Figs. 5 and6 , when a user pushes theslider 20 to move relative to theblade holder 10, the engagingsegments 12 on the bottom of theblade holder 10 are covered by theblade 50. As thepositioning segments 112 can provide a guiding effect to theslider 20 sliding thereon, the user can easily move theslider 20 and the lockingbolt 42 to a desired and predetermined travel distance without having to align the lockingbolt 42 with the engagingsegments 12. Theblade 50 is moved with theslider 20 to extend out from theblade holder 10 to a desired extension length. Then, the lockingbolt 42 is rotated to make the engaging end of the threadedrod 424 rotate relative to the lockingsleeve 44 and engage with a corresponding one of the engagingsegments 12. With the engagement between the engagingsegment 12 and the threadedrod 424, a firm locking force is provided to theslider 20 and theblade 50. Accordingly, theblade 50 will not be moved unintentionally when the user is cutting a thick object or when a large force is applied to theblade 50. In addition, wear between the lockingbolt 42 and theblade holder 10 can be prevented, such that a sufficient locking force can be provided to theblade 50 and the service life of the cutter assembly can be prolonged. - With reference to
Figs. 7 to 9 , a second embodiment of a cutter assembly in accordance with the present invention, the structure of the second embodiment is similar to that of the first embodiment except that agroove 14 having a triangular or V-shaped cross section is formed in the bottom of theblade holder 10A. The engagingsegments 12A are disposed in thegroove 14 and are recesses formed un-through theblade holder 10A. Accordingly, the engagingsegments 12A of a recess-type can engage the threadedrod 424 of the lockingbolt 42 to provide an excellent positioning effect to theblade 50. - Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Claims (14)
- A cutter assembly comprises:a blade holder (10) in which a blade (50) is moveably mounted and has a moving direction, the blade holder (10) having a bottom and multiple engaging segments (12) disposed on the bottom along the moving direction of the blade (50);a slider (20) mounted slidably on the blade holder (10) and connected to the blade (50); anda screw-locking device (40) mounted on the slider (20) and comprising a locking bolt (42) and a locking sleeve (44) screwed with each other and the locking bolt (42) having an end selectively engaging at least one of the engaging segments (12), characterized in that:the blade holder (10) has
a guiding channel (11) defined in a side of the blade holder (10) and having multiple positioning segments (112) formed in at least one side edge of the guiding channel (11), and the positioning segments (112) correspond respectively to the engaging segments (12) in position; andthe slider (20) is moveable relative to the positioning segments (112) to allow the screw-locking device (40) to move with the slider (20) and to be positioned. - The cutter assembly as claimed in claim 1, wherein the locking bolt (42) comprises
a threaded rod (424) having an end;
a head (422) formed on the end of the threaded rod (424); and
a rotating knob (46) mounted around the head (422). - The cutter assembly as claimed in claim 2, wherein the positioning segments (112) are teeth.
- The cutter assembly as claimed in claim 3, wherein the slider (20) comprises an upper sliding member (22) and a lower sliding member (24) combined with each other;
the locking bolt (42) is rotatably mounted on the upper sliding member (22); and
the locking sleeve (44) is mounted in the lower sliding member (24). - The cutter assembly as claimed in claim 4 further comprising an automatic locking device (70) mounted on the slider (20) and resiliently and selectively engaging at least one of the positioning segments (112).
- The cutter assembly as claimed in claim 5 further comprising a protective cap (48) mounted on the upper sliding member (22) and covering the rotating knob (46).
- The cutter assembly as claimed in any one of claims 1 to 6 wherein the engaging segments (12) are arranged in a line along the moving direction of the blade (50).
- The cutter assembly as claimed in claim 7, wherein each engaging segment (12) is a through hole formed through the blade holder (10).
- The cutter assembly as claimed in claim 8, wherein the bottom of the blade holder (10) has a flat inner surface.
- The cutter assembly as claimed in claim 7 wherein each engaging segment (12A) is a recess formed un-through the blade holder (10A).
- The cutter assembly as claimed in claim 10 wherein the blade holder further has a groove (14) formed in the bottom of the blade holder (10A); and
the engaging segments (12A) are disposed in the groove (14). - The cutter assembly as claimed in claim 7 or 11, wherein each engaging segment (12,12A) has a shape selected from one of round and square.
- The cutter assembly as claimed in claim 7, wherein the engaging segments (12) are ribs arranged at intervals.
- The cutter assembly as claimed in any one of claims 7, 12 and 13, wherein the end of the locking bolt (42) engaging at least one of the engaging segments (12,12A) is defined as an engaging end and has a guiding structure (426,426A) protruding from the engaging end of the locking bolt (42) to make the engaging end non-flat.
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
ES14188134.2T ES2660200T3 (en) | 2014-10-08 | 2014-10-08 | Cuter assembly |
EP14188134.2A EP3006170B1 (en) | 2014-10-08 | 2014-10-08 | Cutter assembly having a screw-locking device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP14188134.2A EP3006170B1 (en) | 2014-10-08 | 2014-10-08 | Cutter assembly having a screw-locking device |
Publications (2)
Publication Number | Publication Date |
---|---|
EP3006170A1 EP3006170A1 (en) | 2016-04-13 |
EP3006170B1 true EP3006170B1 (en) | 2017-11-22 |
Family
ID=51660406
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP14188134.2A Not-in-force EP3006170B1 (en) | 2014-10-08 | 2014-10-08 | Cutter assembly having a screw-locking device |
Country Status (2)
Country | Link |
---|---|
EP (1) | EP3006170B1 (en) |
ES (1) | ES2660200T3 (en) |
Family Cites Families (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2870537A (en) * | 1958-03-14 | 1959-01-27 | Ortner Samuel | Pocket safety knife |
US3448518A (en) * | 1967-07-27 | 1969-06-10 | Harry Sklar | Knife |
US3518758A (en) * | 1967-10-24 | 1970-07-07 | Robert A Bennett | Utility knife with movable and rotatable blade |
US4200977A (en) * | 1977-01-17 | 1980-05-06 | Kotobuki & Co. Ltd. | Cutter knife |
US8413339B2 (en) * | 2011-02-03 | 2013-04-09 | Stanley Black & Decker, Inc. | Quick change snap off knife |
-
2014
- 2014-10-08 ES ES14188134.2T patent/ES2660200T3/en active Active
- 2014-10-08 EP EP14188134.2A patent/EP3006170B1/en not_active Not-in-force
Non-Patent Citations (1)
Title |
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None * |
Also Published As
Publication number | Publication date |
---|---|
ES2660200T3 (en) | 2018-03-21 |
EP3006170A1 (en) | 2016-04-13 |
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