毛巾分切设备

By combining photoelectric sensor detection and driver position adjustment, the problem of uneven cutting edges and fabric deviation when cutting thick fabrics is solved, achieving uniformity and accuracy in towel cutting.

CN224513913UActive Publication Date: 2026-07-17CHANGZHOU FUTAN MASCH EQUIP CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHANGZHOU FUTAN MASCH EQUIP CO LTD
Filing Date
2025-06-16
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing fabric cutting machines produce uneven cuts when cutting thicker fabrics, and towel fabrics are prone to deviation, resulting in uneven cutting.

Method used

A photoelectric sensor is used to detect the side position of the towel fabric. The position of the feeding rack is adjusted by a driver to ensure that the fabric is within the detection range. The cutting mechanism and the traction mechanism work together to achieve precise cutting.

Benefits of technology

It achieves smooth cutting of thicker fabrics and prevents fabric deviation, ensuring uniformity and precision in slitting.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224513913U_ABST
    Figure CN224513913U_ABST
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Abstract

本实用新型公开了一种毛巾分切设备,牵引机构位于分切机构下游且与机架连接,驱动机构分别与牵引机构和分切机构连接,放料架包括下支架、直线导向组件、滑块组件、上支架、驱动器、侧支板、多个支撑辊、用于检测毛巾面料侧边的光电传感器,直线导向组件与下支架固定,滑块组件与直线导向组件滑动配合,滑块组件与上支架固定,驱动器的一端与下支架铰接,驱动器的另一端与上支架铰接,侧支板与上支架固定,多个支撑辊沿着圆周方向间隔布置,支撑辊的两端分别与侧支板连接后,形成用于容纳毛巾面料辊的弧形槽,光电传感器安装在下支架上且位于弧形槽的下游。本实用新型可以避免释放的毛巾面料跑偏。
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Claims

1. A towel slitting device, comprising a feeding rack (A), a frame (B), a fabric guide roller (C), a slitting mechanism (D), a traction mechanism (E), and a drive mechanism (F), wherein the frame (B) is located downstream of the feeding rack (A), the fabric guide roller (C) is pivotally connected to the frame (B), the slitting mechanism (D) is located downstream of the fabric guide roller (C) and connected to the frame (B), the traction mechanism (E) is located downstream of the slitting mechanism (D) and connected to the frame (B), and the drive mechanism (F) is connected to both the traction mechanism (E) and the slitting mechanism (D), characterized in that, The feeding rack (A) includes a lower support (1), a linear guide assembly (2), a slider assembly (3), an upper support (4), a driver (5), a side support plate (6), multiple support rollers (7), and a photoelectric sensor (8) for detecting the side of the towel fabric. The linear guide assembly (2) is fixed to the lower support (1), the slider assembly (3) is slidably engaged with the linear guide assembly (2), the slider assembly (3) is fixed to the upper support (4), one end of the driver (5) is hinged to the lower support (1), the other end of the driver (5) is hinged to the upper support (4), the side support plate (6) is fixed to the upper support (4), multiple support rollers (7) are arranged at intervals along the circumferential direction, and after the two ends of the support rollers (7) are respectively connected to the side support plate (6), an arc groove (7a) is formed to accommodate the towel fabric rollers. The photoelectric sensor (8) is installed on the lower support (1) and located downstream of the arc groove (7a).

2. The towel slitting apparatus according to claim 1, wherein The feeding rack (A) also includes a first shaft (9), a connecting plate (10), a first roller (11), a second roller (12), and a rotation limiting component. One end of the first shaft (9) is pivotally connected to the upper support (4), and the other end of the first shaft (9) is fixed to the connecting plate (10). The first roller (11) and the second roller (12) are arranged at intervals. The two ends of the first roller (11) and the second roller (12) are respectively connected to the connecting plate (10). The rotation limiting component is respectively connected to the first shaft (9) and the upper support (4).

3. The towel slitting apparatus according to claim 2, wherein The rotation limiting assembly includes a ratchet (13) and a pawl (14). The ratchet (13) is fixed to the first shaft (9), one end of the pawl (14) engages with the ratchet (13), and the other end of the pawl (14) is connected to the upper bracket (4).

4. The towel slitting apparatus according to claim 1, wherein The feeding rack (A) also includes a support rod (15), a baffle (16), and a locking component (17) for pressing against the support rod (15). The baffle (16) has a sleeve (18) at its end. The support rod (15) passes through the baffle (16) and the sleeve (18). The support rod (15) is located above the support roller (7). Both ends of the support rod (15) are fixed to the side support plate (6) respectively. The sleeve (18) has a threaded hole. The locking component (17) is threadedly connected to the sleeve (18).

5. The towel slitting apparatus of claim 1 wherein, The slitting mechanism (D) includes a connecting seat (21), a lifting driver (22), a knife holder (23), a knife shaft (24), a cutter (25), a knife holder (26), a drive shaft (27), and a transmission mechanism (28). The connecting seat (21) is connected to the frame (B). The lifting driver (22) is fixed to the connecting seat (21). The knife holder (23) is connected to the power output end of the lifting driver (22). The knife shaft (24) is pivotally connected to the knife holder (23). The cutter (25) is fixed to the knife shaft (24). The knife holder (26) cooperates with the cutter (25). The transmission shaft (27) is pivotally connected to the connecting seat (21). The transmission shaft (27) is connected to the drive mechanism (F). The transmission mechanism (28) is connected to the knife shaft (24) and the transmission shaft (27) respectively.

6. The towel slitting apparatus according to any one of claims 1 to 5, characterized in that, It also includes a fabric storage mechanism (G) located downstream of the traction mechanism (E). The fabric storage mechanism (G) includes a first fabric guide roller (51), a second fabric guide roller (52), a first shaft (53), a second shaft (54), a first support rod (55), a first slide block (56), a third fabric guide roller (57), a fourth fabric guide roller (58), and a first flexible transmission mechanism (59). The first fabric guide roller (51) and the second fabric guide roller (52) are arranged at intervals and connected to the frame (B). The first shaft (53) and the second shaft (54) are respectively connected to the frame (B). Then, the first shaft (53) is located above the second shaft (54), the first flexible transmission mechanism (59) is connected to the first shaft (53) and the second shaft (54) respectively, the first support rod (55) is fixed to the frame (B), the first slide (56) is located below the first cloth roller (51), the first slide (56) is slidably engaged with the first support rod (55), the first slide (56) is also connected to the first flexible transmission mechanism (59), the third cloth roller (57) and the fourth cloth roller (58) are arranged at intervals and are both connected to the first slide (56).