高精度分切机的划线机构
By designing an adjustable swing arm and scribing disc structure on the slitting machine, the problems of high material consumption, inaccurate marking, and difficulty in double-sided scribing in the existing technology have been solved, achieving high-precision, continuous scribing and marking, as well as equipment versatility.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WENZHOU GUOWANG MASCH CO LTD
- Filing Date
- 2026-06-01
- Publication Date
- 2026-07-17
AI Technical Summary
The existing marking devices for slitting machines have problems such as high material costs, inaccurate marking, complex equipment, and difficulty in marking both sides of the material at the same time.
It adopts an adjustable swing arm and scribing disk structure, combined with color marking components. The swing arm is driven by a drive component to swing, so that the scribing disk contacts and rotates with the material, achieving stable scribing marking on the side of the material, and adapting to different material widths through a guide component.
It achieves high-precision, continuous marking, reduces material consumption, improves production efficiency and equipment versatility, and extends the service life of colored marking parts.
Smart Images

Figure CN224509674U_ABST
Abstract
Claims
1. A slitting mechanism of a high-precision slitter, characterized by: include: The first end of the swing arm (1) is used for hinged installation; The scribing disk (2) is rotatably disposed at the second end of the swing arm (1) for contacting the side of the material and being driven to rotate by the material. The angle between the side wall of the scribing disk (2) and the upper surface of the material is set to an obtuse angle. The driving component (3) is connected to the swing arm (1) and is used to drive the swing arm (1) to swing so that the marking disk (2) moves closer to or away from the material; A coloring mark (4) is provided on the swing arm (1). The coloring end of the coloring mark (4) abuts against the side of the scribing disk (2) and is used to color the side of the scribing disk (2) and transfer it to the side of the material.
2. The slitting mechanism of a high precision slitter according to claim 1, characterized in that: The marking mechanism consists of two sets, which are symmetrically arranged; it also includes a guide component (5), through which the two sets of marking mechanisms are symmetrically and slidably arranged.
3. The slitting mechanism of a high precision slitter according to claim 2, characterized in that: Each of the marking mechanisms further includes a fixed seat (6), which is disposed on the guide assembly (5), the first end of the swing arm (1) is hinged to the fixed seat (6), and the drive member (3) is disposed on the fixed seat (6).
4. The slitting mechanism of a high precision slitter according to claim 3, characterized in that: The driving component (3) is a cylinder, the cylinder body of which is hinged to the fixed seat (6), and the piston rod of which is hinged to the middle part of the swing arm (1).
5. The high precision slitter's scoring mechanism according to claim 1, characterized in that: The second end of the swing arm (1) is provided with a scribing shaft (7), and the scribing disk (2) is rotatably mounted on the scribing shaft (7) through bearings and spacers; the scribing disk (2) has a disc-shaped structure.
6. The high precision slitter's scoring mechanism according to claim 1, characterized in that: The coloring marker (4) is a marker pen. A connecting plate (8) is fixed on the swing arm (1). A long hole (9) perpendicular to the length direction of the swing arm (1) is opened on the connecting plate (8). A mounting plate (10) is fixed in the long hole (9) in an adjustable position. The marker pen is fixed on the mounting plate (10).
7. The slitting mechanism of a high-precision slitter according to claim 1 or 6, characterized in that: The axis of the coloring mark (4) forms a deflection angle with the axis of the scribing disk (2), the deflection angle being 2° to 5°.