A double blade cigar cutter

By designing a double-blade cigar cutter, equipped with two sets of blades and locked together by the same locking mechanism, the problem of the single function of existing cigar cutters is solved, enabling quick and convenient cutting of cigars at different positions.

CN224539477UActive Publication Date: 2026-07-24SHENZHEN YIDUCHENG IND CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN YIDUCHENG IND CO LTD
Filing Date
2025-08-20
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Current cigar cutters generally only have one type of blade, either a flat blade or a V-shaped blade, which is limited in function and cannot meet the cutting needs of different locations.

Method used

Design a double-blade cigar cutter equipped with two sets of blades locked together by the same locking mechanism to cut cigars at different positions. The design is simple.

Benefits of technology

It enables quick and convenient cutting of cigars at different locations, saving parts and installation space, and is easy to operate.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224539477U_ABST
    Figure CN224539477U_ABST
Patent Text Reader

Abstract

The utility model relates to a double-knife cigar cutter, including the casing and the first blade that locates in the casing, be equipped with the first shearing mouth on the casing, the first blade does telescopic motion in the casing, forms the opening or the close of first shearing mouth, still be equipped with mounting bracket, second blade and operating part in the casing, open second shearing mouth on the casing, second shearing mouth and first shearing mouth are equipped with respectively in the casing both sides, the second blade does telescopic motion in the casing, forms the opening or the close of second shearing mouth, be equipped with the first accommodating cavity for accommodating the first blade and the second accommodating cavity for accommodating the second blade on the mounting bracket, the first blade and the second blade one end are connected with operating part, and with operating part synchronous slip, the other end slides in the corresponding accommodating cavity. Adopt above -mentioned technical scheme, the utility model provides a double-knife cigar cutter, sets up two groups of blades, realizes the shearing of cigar different position, and two groups of blades are locked through same locking structure, and the structure is simple and convenient.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of cigar cutter technology, and in particular to a double-blade cigar cutter. Background Technology

[0002] Currently, the flat blade of a cigar cutter is generally used to cut the end of a cigar, while the V-shaped blade is generally used to cut the head of a cigar. Most cigar cutters sold on the market only have one type of blade, either a flat blade or a V-shaped blade, which can only meet one of the requirements for cutting cigars and has a relatively limited function. Utility Model Content

[0003] The purpose of this utility model is to overcome the defects of the prior art by providing a double-blade cigar cutter with two sets of blades to cut the cigar at different positions. The two sets of blades are locked together by the same locking structure, which is simple in structure.

[0004] The technical solution of this utility model is as follows: A double-blade cigar cutter includes a housing and a first blade disposed within the housing. The housing has a first cutting opening, and the first blade extends and retracts within the housing to open or close the first cutting opening. The housing also includes a mounting bracket, a second blade, and an operating component. The housing has a second cutting opening, which is located on one side of the housing, and the second blade extends and retracts within the housing to open or close the second cutting opening. The mounting bracket has a first receiving cavity for accommodating the first blade and a second receiving cavity for accommodating the second blade. One end of the first and second blades is connected to the operating component and slides synchronously with the operating component, while the other end slides within the corresponding receiving cavities. Each receiving cavity has an opening communicating with the cutting opening. The blades sliding within the corresponding receiving cavities can switch the opening and closing of the cutting opening. The housing also includes a locking component for locking the two blades.

[0005] The above technical solution is adopted, with two sets of blades, and both blades are connected to the operating component. Pressing the operating component will drive the two blades to slide synchronously. According to the position to be cut by the cigar cutter, the cigar is placed in the corresponding cutting opening, and the operating component is pressed to cut. The operation is convenient and quick. Moreover, the two blades are locked by the same locking component, saving parts and installation space.

[0006] Further features of this invention: The locking assembly includes a locking member, a driving member, and an elastic member. The mounting bracket has a first mounting cavity and a second mounting cavity at both ends of the receiving cavity. The operating member is connected to a first connecting post and a second connecting post. The first connecting post is slidably disposed in the first mounting cavity, and the second connecting post is slidably disposed in the second mounting cavity. The driving member and the locking member are sleeved on the outside of the first connecting post. The locking member is located below the driving member. The first connecting post is sleeved with a driving rod. The upper end of the driving rod abuts against the operating member, and the lower end abuts against the driving member. The elastic member is located inside the second connecting post, and its bottom abuts against the bottom wall of the second mounting cavity. The two blades are hidden inside the housing by a single press of the operating component, and the elastic element is compressed in the second mounting cavity. When the operating component is pressed again, the second connecting column slides into the second mounting cavity and drives the two blades and the operating block to move automatically out of the housing, thereby opening the shearing port.

[0007] With the above-mentioned further configuration, the locking element can be locked or unlocked by pressing or pressing the operating block again, so that the blade is hidden inside the housing or slides out of the housing. The structure is simple and easy to operate, and two blades can be locked or unlocked at the same time.

[0008] A further feature of this invention is as follows: the locking member has several locking blocks along its circumference, and an unlocking groove is formed between two adjacent locking blocks. Each locking block has a locking groove at one end facing the driving member, and the locking groove is set at an angle. The driving member has several driving blocks along its circumference, and each driving block has an inclined surface at one end facing the locking block. The inner sidewall of the first mounting cavity has several protruding ribs along its circumference, and each protruding rib is set along the vertical direction of the first mounting cavity. The driving member has a sliding groove that slides and engages with the protruding ribs. When the lower end of each protruding rib abuts against the locking groove, the two blades are located inside the housing, forming a separation between the opening and the shearing opening. When each protruding rib is located inside the unlocking groove, the two blades can automatically slide out of the housing, forming a connection between the opening and the shearing opening.

[0009] With the above-described further configuration, when the operating component and blade are outside the housing, pressing the operating component into the housing causes the blade, connecting column, driving component, and locking component to slide into the corresponding mounting cavity, compressing the elastic component. When the locking component slides to the end of the rib, the rib abuts against the locking groove, thus limiting the locking component. The connecting column and locking component cannot slide, and the blade is hidden in the corresponding mounting cavity, blocking the cutting opening between the opening and the cutting opening. When unlocking is required, pressing the operating component inward causes the first connecting column and driving rod to slide downward, pressing against the driving component and locking component. The inclined surface on the driving component presses against the locking groove on the locking component, causing the locking component to rotate circumferentially around the first connecting column. The rib slides into the unlocking groove, thus unlocking the locking component. Under the action of the elastic component, the operating component slides out of the housing, forming a connection between the opening and the cutting opening.

[0010] A further feature of this invention is as follows: a limiting post is provided in the second mounting cavity, the elastic element is a spring, the elastic element is sleeved on the limiting post and abuts against the upper end of the limiting post, and the second connecting post is sleeved outside the limiting post and slides axially relative to the limiting post.

[0011] The above-mentioned further design makes the elastic element structure more stable, and better drives the operating block to slide out of the housing during unlocking.

[0012] A further improvement of this invention: the operating component includes a separate pressing block and a cover. The pressing block has two mounting holes corresponding to the positions of the two connecting posts. The upper ends of the two connecting posts have threaded holes, and screws are inserted into the threaded holes to connect the pressing block and the connecting posts. The pressing block also has a slot and a first connecting hole. The upper end of the first blade is inserted into the slot. Both the first blade and the second blade have second connecting holes. The second connecting holes are coaxially arranged with the first connecting holes and are fixed by screws. The cover is placed over the pressing block and fixed by screws.

[0013] With the above-mentioned further design, when the connecting column and the operating block are installed, the screws are screwed in from top to bottom, and when the operating block is connected to the cover, the screws are screwed in from bottom to top, so that the screws are not exposed, which is more aesthetically pleasing. In addition, the cover is equipped with anti-slip strips for easy operation. The two blades are connected to the operating block through the same set of screws, reducing the number of parts and saving installation steps.

[0014] A further feature of this invention is as follows: the mounting frame includes a separate frame body and a panel. The frame body has a first receiving cavity on one side, and a cover plate is provided on the other side of the frame body. A second receiving cavity is formed between the cover plate and the frame body. The lower end of the frame body has a positioning block that protrudes towards the cover plate. The stationary blade is fixedly mounted on the positioning block, and the moving blade is located inside the stationary blade. The lower end of the moving blade is housed between the positioning block and the side wall of the second receiving cavity.

[0015] The above-mentioned further design facilitates the installation of the stationary blade. The positioning block provides an installation position for the stationary blade, making the stationary blade head structure stable and also providing sliding space for the moving blade. The frame is equipped with a plug and the panel is equipped with a socket. The plug is inserted into the socket to realize the installation of the frame and the panel. The structure is simple and easy to assemble and disassemble.

[0016] A further improvement of this invention is that the first blade has a V-shaped cutting edge, and the second blade has an arc-shaped cutting edge.

[0017] With the above-mentioned further design, different shaped blades can be used to cut different parts of the cigar. The V-shaped blade is used to cut the head of the cigar, and the arc-shaped blade is used to cut the tail of the cigar. To cut the desired position, place the cigar in the corresponding cutting opening and press the operating part. It is convenient and practical. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of a specific embodiment of the present utility model; Figure 2 This is a cross-sectional view of a specific embodiment of the present utility model; Figure 3 This is a schematic diagram of the internal structure of the shell in a specific embodiment of this utility model; Figure 4 This is a schematic diagram of the first shearing opening in a specific embodiment of the present invention; Figure 5 This is a schematic diagram of the second sword air inlet in a specific embodiment of this utility model; Figure 6 This is a schematic diagram of the first blade in a specific embodiment of the present utility model; Figure 7 This is a schematic diagram of the second blade in a specific embodiment of the present utility model; Figure 8 This is a schematic diagram of the locking component and the driving component in a specific embodiment of the present utility model; Figure 9 This is a schematic diagram of the mounting bracket according to a specific embodiment of the present utility model; Figure 10 This is a schematic diagram of the locking component being installed on the mounting bracket according to a specific embodiment of the present invention; Figure 11 This is a schematic diagram of the frame of a specific embodiment of the present utility model; Figure 12 This is a schematic diagram of the pressing block and two connecting columns in a specific embodiment of the present utility model; Figure 13 This is a schematic diagram of the cover body according to a specific embodiment of the present utility model.

[0019] In the diagram, 1. Housing; 11. First shearing opening; 12. Second shearing opening; 2. First blade; 3. Mounting bracket; 31. First receiving cavity; 32. Second receiving cavity; 33. Opening; 34. First mounting cavity; 341. Rib; 35. Second mounting cavity; 351. Limiting post; 36. Frame; 361. Positioning block; 362. Insert post; 37. Panel; 4. Second blade; 41. Stationary blade; 42. Moving blade; 5. Operating component; 51. First connecting post; 52. Second connecting post; 53. Pressing block; 531. Mounting hole; 532. Slot; 533. First connecting hole; 534. Second connecting hole; 54. Cover; 6. Locking assembly; 61. Locking component; 611. Locking block; 6111. Locking groove; 612. Unlocking groove; 62. Driving component; 621. Driving block; 63. Elastic component; 64. Driving rod. Detailed Implementation

[0020] The technical solutions in this embodiment will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0021] It should be noted that all directional indicators (such as up, down, forward, backward, etc.) in the description of this utility model are only used to explain the relative positional relationship and movement of the components in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0022] Furthermore, in this utility model, the use of terms such as "first," "second," etc., is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. In the description of this utility model, "a number" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0023] Furthermore, the technical solutions of the various embodiments of this utility model can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0024] like Figure 1-13As shown, a double-blade cigar cutter includes a housing 1 and a first blade 2 disposed within the housing 1. The housing 1 has a first cutting opening 11. The first blade 2 extends and retracts within the housing 1, opening or closing the first cutting opening 11. The housing 1 also includes a mounting bracket 3, a second blade 4, and an operating component 5. The housing 1 has a second cutting opening 12, which is located on one side of the housing 1, and the second blade 4 extends and retracts within the housing 1, opening or closing the second cutting opening 12. The mounting bracket 3 has a first receiving cavity 31 for accommodating the first blade 2 and a second receiving cavity 32 for accommodating the second blade 4. One end of the blade 2 and the second blade 4 are connected to the operating member 5 and slide synchronously with the operating member 5. The other end slides in the corresponding receiving cavity. The receiving cavity is provided with an opening 33 that communicates with the cutting opening. The blade can switch the opening 33 and the cutting opening to be open or closed by sliding in the corresponding receiving cavity. The housing 1 is also provided with a locking component 6 for locking the two blades. Two sets of blades are provided, and both blade heads are connected to the operating member 5. Pressing the operating member 5 can drive the two blades to slide synchronously. According to the position to be cut by the cigar cutter, the cigar is placed in the corresponding cutting opening, and pressing the operating member 5 can cut it. The operation is convenient and quick. The two blades are locked by the same locking component, which saves parts and installation space.

[0025] The locking assembly 6 includes a locking member 61, a driving member 62, and an elastic member 63. The mounting bracket 3 has a first mounting cavity 34 and a second mounting cavity 35 at both ends of the receiving cavity. The operating member 5 is connected to a first connecting post 51 and a second connecting post 52. The first connecting post 51 is slidably disposed in the first mounting cavity 34, and the second connecting post 52 is slidably disposed in the second mounting cavity 35. The driving member 62 and the locking member 61 are sleeved on the first connecting post 51. The locking member 61 is located below the driving member 62. The first connecting post 51 is sleeved with a driving rod 64. The upper end of the driving rod 64 abuts against the operating member 5, and the lower end abuts against the driving member 62. The elastic member 63 is located inside the second connecting post 52, and its bottom abuts against the bottom wall of the second mounting cavity 35. The two blades are hidden inside the housing 1 by a single press of the operating element 5, and the elastic element 63 is compressed into the second mounting cavity 35. When the operating element 5 is pressed again, the second connecting post 52 slides into the second mounting cavity 35 and drives the two blades and the operating block to move automatically out of the housing 1, thereby opening the cutting opening. By pressing or pressing the operating block again, the locking element 61 can be locked or unlocked, so that the blades are hidden inside the housing 1 or slide out of the housing 1. The structure is simple and easy to operate, and both blades can be locked or unlocked at the same time.

[0026] The locking member 61 has a plurality of locking blocks 611 arranged circumferentially thereon, and an unlocking groove 612 is formed between two adjacent locking blocks 611. Each locking block 611 has a locking groove 6111 at one end facing the driving member 62. The locking groove 6111 is set at an angle. The driving member 62 has a plurality of driving blocks 621 arranged circumferentially thereon. Each driving block 621 has an inclined surface at one end facing the locking block 611. The inner sidewall of the first mounting cavity 34 has a plurality of protruding ribs 341 arranged circumferentially thereon. Each rib 341 is arranged vertically along the first mounting cavity 34. The driving member 62 is provided with a sliding groove that slides and engages with the rib 341. When the lower end of each rib 341 abuts against the locking groove 6111, the two blades are located inside the housing 1, forming a separation between the opening 33 and the shearing opening. When each rib 341 is located inside the unlocking groove 612, the two blades can automatically slide out of the housing 1, forming a connection between the opening 33 and the shearing opening. When the operating member 5 and the blades are located outside the housing 1, they slide towards the housing 1. The internal pressing operation component 5 drives the blade 42, connecting post, driving component 62, and locking component 61 to slide into the corresponding mounting cavity, compressing the elastic component 63. When the locking component 61 slides to the end of the protruding rib 341, the protruding rib 341 abuts against the locking groove 6111, thus limiting the locking component 61. The connecting post and locking component 61 cannot slide, and the blade is hidden in the corresponding mounting cavity, blocking the shearing opening between the opening 33 and the shearing opening. To unlock, press the internal pressing operation component 5. When the operating member 5 moves the first connecting post 51 and the driving rod 64 downwards, it will push the driving member 62 and the locking member 61 to slide. The inclined surface on the driving member 62 will press against the locking groove 6111 on the locking member 61, causing the locking member 61 to rotate around the first connecting post 51. The protruding rib 341 slides into the unlocking groove 612, thus unlocking the locking member 61. Under the action of the elastic member 63, the operating member 5 will slide out of the housing 1, forming a connection between the opening 33 and the shearing opening.

[0027] The second mounting cavity 35 is provided with a limiting post 351. The elastic element 63 is spring-loaded and sleeved on the limiting post 351, and abuts against the upper end of the limiting post 351. The second connecting post 52 is sleeved outside the limiting post 351 and slides axially relative to the limiting post 351, making the structure of the elastic element 63 more stable and better driving the operating block to slide out of the housing 1 when unlocking.

[0028] The operating component 5 includes a separate pressing block 53 and a cover 54. The pressing block 53 has two mounting holes 531 corresponding to the positions of the two connecting posts. The upper ends of the two connecting posts have threaded holes, and screws are inserted into the threaded holes to connect the pressing block 53 to the connecting posts. The upper end of the elastic element 63 abuts against the screws. The pressing block 53 also has a slot 532 and a first connecting hole 533. The upper end of the first blade 2 is inserted into the slot 532. The first blade 2 and the second blade 4 both have a second connecting hole 534. The second connecting hole 534 and the first connecting hole 533 are coaxially arranged and fixed by screws. The cover 54 covers the pressing block 53 and is fixed by screws. When the connecting post is installed with the operating block, the screws are screwed in from top to bottom. When the operating block is connected with the cover 54, the screws are screwed in from bottom to top, so that the screws are not exposed, which is more aesthetically pleasing. The cover 54 is provided with anti-slip strips for easy operation. The connection between the two blades and the operating block is made by the same set of screws, which reduces the number of parts and saves installation steps.

[0029] The second blade 4 includes a movable blade 42 and a stationary blade 41. The movable blade 42 is connected to the operating member 5, and the stationary blade 41 is fixedly disposed in the second receiving cavity 32. The mounting bracket 3 includes a separately disposed bracket body 36 and a panel 37. The first receiving cavity 31 is provided on one side of the bracket body 36, and the cover plate is disposed on the other side of the bracket body 36, forming the second receiving cavity 32 between the cover plate and the bracket body 36. The lower end of the bracket body 36 is provided with a positioning block 361 protruding towards the cover plate, and the stationary blade 41 is fixed. The movable blade 42 is positioned on the positioning block 361, located inside the stationary blade 41, with its lower end recessed between the positioning block 361 and the side wall of the second receiving cavity 32. This split design facilitates the installation of the stationary blade 41. The positioning block 361 provides an installation position for the stationary blade 41, ensuring the stability of the stationary blade head structure and providing sliding space for the movable blade 42. The frame 36 has a pin 362, and the panel 37 has a hole. The pin is inserted into the hole to install the frame 36 and the panel 37. The structure is simple and easy to assemble and disassemble. The first blade 2 has a V-shaped cutting edge, while the second blade 4 has an arc-shaped cutting edge. Different cutting edge shapes can be used to cut different parts of the cigar. The V-shaped cutting edge is used to cut the head of the cigar, and the arc-shaped cutting edge is used to cut the tail of the cigar. To cut the desired position, place the cigar in the corresponding cutting opening and press the operating part 5. This design is convenient and practical.

Claims

1. A double-blade cigar cutter, comprising a housing (1) and a first blade (2) disposed within the housing (1), wherein the housing (1) has a first cutting opening (11), and the first blade (2) extends and retracts within the housing (1) to open or close the first cutting opening (11), characterized in that, The housing (1) is also provided with a mounting bracket (3), a second blade (4) and an operating component (5). A second shearing port (12) is provided on the housing (1). The second shearing port (12) and the first shearing port (11) are respectively located on both sides of the housing (1). The second blade (4) moves in and out of the housing (1) to open or close the second shearing port (12). The mounting bracket (3) is provided with a first receiving cavity (31) for receiving the first blade (2) and a second receiving cavity (32) for receiving the second blade (4). One end of the first blade (2) and the second blade (4) are connected to the operating component (5) and slide synchronously with the operating component (5). The other end slides in the corresponding receiving cavity. The receiving cavity is provided with an opening (33) that communicates with the shearing port. The blade slides in the corresponding receiving cavity to switch the opening (33) and the shearing port to be open or closed. The housing (1) is also provided with a locking component (6) for locking the two blades.

2. The double-blade cigar cutter according to claim 1, characterized in that, The locking assembly (6) includes a locking member (61), a driving member (62), and an elastic member (63). The mounting bracket (3) has a first mounting cavity (34) and a second mounting cavity (35) at both ends of the receiving cavity. The operating member (5) is connected to a first connecting post (51) and a second connecting post (52). The first connecting post (51) is slidably disposed in the first mounting cavity (34), and the second connecting post (52) is slidably disposed in the second mounting cavity (35). The driving member (62) and the locking member (61) are sleeved on the first connecting post (51). The locking member (61) is located below the driving member (62). The first connecting post (51) is sleeved with a driving rod (64). The upper end of the driving rod (64) abuts against the operating member (5), and the lower end abuts against the driving member (62). The elastic member (63) is located inside the second connecting post (52), and its bottom abuts against the bottom wall of the second mounting cavity (35). The two blades are hidden inside the housing (1) by a single press of the operating component (5), and the elastic component (63) is compressed in the second mounting cavity (35). When the operating component (5) is pressed again, the second connecting column (52) slides into the second mounting cavity (35) and drives the two blades and the operating block to move automatically out of the housing (1) to open the cutting port.

3. The double-blade cigar cutter according to claim 2, characterized in that, The locking member (61) has a plurality of locking blocks (611) arranged circumferentially thereon, and an unlocking groove (612) is formed between two adjacent locking blocks (611). Each locking block (611) has a locking groove (6111) at one end facing the driving member (62). The locking groove (6111) is set at an angle. The driving member (62) has a plurality of driving blocks (621) arranged circumferentially thereon. Each driving block (621) has an inclined surface at one end facing the locking block (611). The inner wall of the first mounting cavity (34) is arranged circumferentially thereon. A number of protruding ribs (341) are provided, each protruding rib (341) is arranged in the vertical direction of the first mounting cavity (34), and the driving member (62) is provided with a sliding groove that slides and cooperates with the protruding ribs (341). When the lower end of each protruding rib (341) abuts against the locking groove (6111), the two blades are located inside the housing (1), forming a separation between the opening (33) and the shearing port. When each protruding rib (341) is located inside the unlocking groove (612), the two blades can automatically slide out of the housing (1), forming a connection between the opening (33) and the shearing port.

4. The double-blade cigar cutter according to claim 2 or 3, characterized in that, The second mounting cavity (35) is provided with a limiting post (351). The elastic element (63) is spring-loaded. The elastic element (63) is sleeved on the limiting post (351) and abuts against the upper end of the limiting post (351). The second connecting post (52) is sleeved outside the limiting post (351) and slides axially relative to the limiting post (351).

5. The double-blade cigar cutter according to claim 2, characterized in that, The operating component (5) includes a separate pressing block (53) and a cover (54). The pressing block (53) has two mounting holes (531) corresponding to the two connecting posts. The upper ends of the two connecting posts have threaded holes. Screws are inserted into the threaded holes to connect the pressing block (53) and the connecting posts. The pressing block (53) also has a slot (532) and a first connecting hole (533). The upper end of the first blade (2) is inserted into the slot (532). The first blade (2) and the second blade (4) both have a second connecting hole (534). The second connecting hole (534) and the first connecting hole (533) are coaxially arranged and fixed by screws. The cover (54) covers the pressing block (53) and is fixed by screws.

6. The double-blade cigar cutter according to claim 1, 2, or 3, characterized in that, The second blade (4) includes a moving blade (42) and a stationary blade (41). The moving blade (42) is connected to the operating member (5), and the stationary blade (41) is fixedly disposed in the second receiving cavity (32).

7. The double-blade cigar cutter according to claim 6, characterized in that, The mounting bracket (3) includes a separate frame (36) and a panel (37). The frame (36) has a first receiving cavity (31) on one side and a cover plate on the other side. The cover plate and the frame (36) form a second receiving cavity (32). The lower end of the frame (36) has a positioning block (361) protruding towards the cover plate. The stationary blade (41) is fixedly mounted on the positioning block (361). The moving blade (42) is located inside the stationary blade (41), and the lower end of the moving blade (42) is stored between the positioning block (361) and the side wall of the second receiving cavity (32).

8. The double-blade cigar cutter according to claim 1, 2, or 3, characterized in that, The first blade (2) has a V-shaped cutting edge, and the second blade (4) has an arc-shaped cutting edge.