一种圆角机双机头四边缝设备
By designing a rounded corner sewing machine with double heads and four-sided sewing, the problem that existing sewing machines cannot meet the needs of batch and large-scale continuous fabric processing is solved, realizing automated and high-efficiency fabric processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SUZHOU METFORD AUTOMATION TECH CO LTD
- Filing Date
- 2025-07-23
- Publication Date
- 2026-07-17
AI Technical Summary
Existing sewing machines are insufficient to meet the needs of continuous processing of large quantities of fabric.
Design a rounded corner sewing machine with double head and four-sided sewing, including a frame, a fabric processing module, a multi-station feeding mechanism, a fabric transfer mechanism and a label feeding mechanism, to realize uninterrupted and continuous fabric supply, and to perform the sewing operation of labels and fabric pieces through the sewing machine head.
It enables automated and efficient fabric processing, meeting the needs of continuous processing of batch fabrics.
Smart Images

Figure CN224513784U_ABST
Abstract
Claims
1. A corner rounding machine with double heads and four-sided sewing equipment, comprising a frame (10) and a crossbar (11) fixedly installed on the upper end of the frame (10), characterized in that: A set of fabric processing modules is installed on each side of the frame (10). The fabric processing module includes a fabric transfer mechanism (2), a sewing machine head (12), and a receiving frame (13). The sewing machine head (12) is fixedly installed on the frame (10), the fabric transfer mechanism (2) is installed on the cross frame (11), and the receiving frame (13) is located on the side of the frame (10). A contoured channel for fabric to pass through is opened in the middle of the frame (10). A multi-station feeding mechanism (4) is installed on the lower side of the contoured channel. The multi-station feeding mechanism (4) includes a feeding assembly, a multi-station hopper assembly and a lifting feeding assembly installed on the frame (10). The multi-station hopper assembly is used to push the fabric out of the contoured channel. A fabric pushing and positioning mechanism (5) is installed on the upper side of the contoured channel. The fabric pushing and positioning mechanism (5) is used to push the fabric pushed out by the multi-station hopper assembly to the table of the frame (10). A label feeding mechanism (3) is also installed on the frame (10).
2. The double-head four-side seaming device of claim 1, wherein, The fabric transfer mechanism (2) includes a three-axis moving component and a rotating fabric pressing component. The three-axis moving component is mounted on the cross frame (11), and the rotating fabric pressing component is mounted on the moving end of the three-axis moving component.
3. The double-head four-side seaming device of claim 1, wherein, The label feeding mechanism (3) includes a housing (31) and a label conveying component, a label cutting component and a label pushing component installed on the housing (31).
4. The double-head four-side seaming device of claim 3, wherein, The label pushing component includes a vertical sliding table, a horizontal sliding table, a mounting frame (38), and a label clamping component. The vertical sliding table is installed on the side of the housing (31). The vertical sliding table is installed on the side of the housing (31). The moving end of the vertical sliding table is fixedly installed with a horizontal sliding table. The moving end of the horizontal sliding table is fixedly installed with a mounting frame (38). The horizontal sliding table is installed on the mounting frame (38).
5. The double-head four-side seaming device of claim 1, wherein, The feeding assembly includes a lower conveyor line (46), a side conveyor line (47), a pusher cylinder (48), and a pusher plate (49). The lower conveyor line (46) is fixedly connected to the frame (10), and the side conveyor lines (47) are symmetrically fixedly installed on the left and right sides of the frame. The pusher cylinder (48) is fixedly connected to the frame (10), and the output end of the pusher cylinder (48) is fixedly connected to the pusher plate (49).
6. The double-head four-side sewing apparatus of claim 1, wherein The multi-station hopper assembly includes a turntable (41), a rotating motor (42), and a limiting plate (43). The rotating motor (42) is fixedly connected to the frame (10). The output end of the rotating motor (42) is fixedly mounted with the turntable (41). Multiple sets of limiting components for limiting the fabric are fixedly mounted in a circular array on the turntable (41). The limiting component consists of two limiting plates (43) fixedly installed on the turntable (41), and the two limiting plates (43) and the limiting plates (43) of the adjacent limiting components form a U-shaped limiting space.
7. The double-head four-side sewing apparatus of claim 1, wherein The fabric pushing and positioning mechanism (5) includes a pushing cylinder (51), a positioning fixed pin (52), a positioning movable pin (53), a centering component, and a lifting component. The pushing cylinder (51) is fixedly installed at the front end of the frame (10), and multiple positioning fixed pins (52) are fixedly installed at the rear end of the frame (10). The centering component and the lifting component are installed at the lower end of the frame (10). The moving end of the lifting component is connected to the centering component. Multiple positioning movable pins (53) are fixedly installed on the two moving ends of the centering component. Multiple movable slots corresponding to the positioning movable pins (53) and used for the movement of the positioning movable pins (53) are provided on the table surface of the frame (10).
8. The double-head four-side sewing apparatus of claim 7, wherein The centering assembly includes an adjusting block (54), a sliding rod (55), and a bidirectional symmetrical lead screw (56). The sliding rod (55) is fixedly connected to the lifting plate (57). The bidirectional symmetrical lead screw (56) is rotatably connected to the lifting plate (57) through a bearing. The driving component is fixedly connected to the lifting plate (57). The output end of the driving component is fixedly connected to the bidirectional symmetrical lead screw (56). Two adjusting blocks (54) are provided and symmetrically distributed on both sides of the bidirectional symmetrical lead screw (56). The adjusting blocks (54) are limited and slidably connected to the sliding rod (55), and the adjusting blocks (54) are threadedly connected to the bidirectional symmetrical lead screw (56). The positioning movable pin (53) is fixedly connected to the adjusting blocks (54).