IP Library › Granted Patent US 12,491,647
Granted Patent B2
US 12,491,647 · App. 18/397,661 · Granted Dec 9, 2025

Cutting device

Inventors: Kohei Suto (Tokyo, JP); Takashi Morimura (Tokyo, JP); Kazunobu Yoshimura (Tokyo, JP); Shoma Sano (Tokyo, JP)
Assignee: Max Co., Ltd.
B26B15/00
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Quick Facts
Patent No.
US 12,491,647
App. No.
18/397,661
Granted
Dec 9, 2025
Kind
B2
Abstract

An electric cutting device includes: a pair of cutting blades for clamping and cutting an object; an electric motor; and a drive mechanism for operating the cutting blades. The drive mechanism includes a movement member movable in a predetermined direction by a driving force of the electric motor and converts movement of the movement member into an opening and closing operation of the cutting blades. The drive mechanism is configured to: when the movement member moves in the predetermined direction, cause the pair of cutting blades to move in a direction closer to each other; and after the pair of cutting blades come closest to each other, when the movement member further moves in the predetermined direction, cause the pair of cutting blades to move in a direction away from each other.

Claims (30)

1 . An electric cutting device, comprising:

a pair of cutting blades configured to clamp and cut an object;

an electric motor configured to generate a driving force; and

a drive mechanism configured to cause the cutting blades to operate by the driving force of the electric motor,

wherein the drive mechanism comprises a movement member configured to move in a predetermined direction by the driving force of the electric motor, the drive mechanism being configured to convert movement of the movement member into an opening and closing operation of the cutting blades, and

wherein the drive mechanism is configured to:

in a case where the movement member moves in the predetermined direction, cause the pair of cutting blades to move in a direction closer to each other; and

after the pair of cutting blades come closest to each other, in a case where the movement member further moves in the predetermined direction, cause the pair of cutting blades to move in a direction away from each other.

2 . The cutting device according to claim 1 , further comprising:

a controller configured to control an operation of the electric motor,

wherein in a case of cutting the object, the controller is configured to:

cause the movement member to move in the predetermined direction until the pair of cutting blades begin moving away from each other, following the pair of cutting blades moving closer to each other and coming closest to each other.

3 . The cutting device according to claim 1 , wherein the drive mechanism further comprises:

a rod-shaped link member that connects the cutting blades and the movement member, and is configured such that when the pair of cutting blades come closest to each other, an angle formed between a longitudinal direction of the link member and the predetermined direction is set to 90 degrees.

4 . The cutting device according to claim 1 ,

wherein the pair of cutting blades includes a first cutting blade and a second cutting blade,

wherein the cutting device further comprises:

a first blade member having the first cutting blade; and

a second blade member having the second cutting blade, wherein the drive mechanism further comprises:

a first link member that connects the first blade member and the movement member; and

a second link member that connects the second blade member and the movement member,

wherein the first link member and the first blade member are pivotally connected to each other at a first connection point, the first connection point being located across a rotation shaft of the first blade member from the first cutting blade, and

wherein the second link member and the second blade member are pivotally connected to each other at a second connection point, the second connection point being located across a rotation shaft of the second blade member from the second cutting blade.

5 . The cutting device according to claim 4 , wherein a distance between the first connection point and the second connection point in a direction perpendicular to the predetermined direction is:

a first distance when the pair of cutting blades come closest to each other; and

a second distance when the pair of cutting blades begin moving away from each other, following the pair of cutting blades coming closest to each other, the second distance being shorter than the first distance.

6 . The cutting device according to claim 4 ,

wherein the first link member, the second link member and the movement member are connected to one another in a manner of pivoting about a shaft of the movement member, and

wherein when the pair of cutting blades come closest to each other, the first link member and the second link member align in a substantially straight line as viewed from an axial direction of the shaft of the movement member.

7 . The cutting device according to claim 1 , wherein a gap is formed between the pair of cutting blades when the pair of cutting blades come closest to each other.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2024
From: SUTO, KOHEI; MORIMURA, TAKASHI; YOSHIMURA, KAZUNOBU; SANO, SHOMA
To: MAX CO., LTD.
Reel/Frame 066171/0406 →
Priority Claims (9)
JP 2022-210196 · Dec 27, 2022 · national
JP 2022-210296 · Dec 27, 2022 · national
JP 2022-210302 · Dec 27, 2022 · national
JP 2022-210308 · Dec 27, 2022 · national
JP 2022-210362 · Dec 27, 2022 · national
JP 2022-210372 · Dec 27, 2022 · national
JP 2022-210594 · Dec 27, 2022 · national
JP 2022-210638 · Dec 27, 2022 · national
JP 2023-141751 · Aug 31, 2023 · national
Continuity (1)
Related Publication 20240208089A1 · Jun 27, 2024
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