CN214879006U - Fabric slitting device - Google Patents

Fabric slitting device Download PDF

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Publication number
CN214879006U
CN214879006U CN202120784990.8U CN202120784990U CN214879006U CN 214879006 U CN214879006 U CN 214879006U CN 202120784990 U CN202120784990 U CN 202120784990U CN 214879006 U CN214879006 U CN 214879006U
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China
Prior art keywords
fabric
shaft
slitting
frame
cutter
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CN202120784990.8U
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Chinese (zh)
Inventor
袁喜
袁伟
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Changzhou Futan Machinery Co ltd
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Changzhou Futan Machinery Co ltd
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Priority to CN202120784990.8U priority Critical patent/CN214879006U/en
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Abstract

The utility model discloses a device is cut to surface fabric, including the frame, still include: one or more ultrasonic generators, the ultrasonic generator is mounted on the frame; one or more slitting mechanisms matched with the ultrasonic generator to slit the fabric, wherein the slitting mechanisms are arranged on the rack; the first driving mechanism comprises a driver, a first transmission mechanism, a transmission shaft and a second transmission mechanism, the driver is connected with the first transmission mechanism, the first transmission mechanism is connected with the transmission shaft, the transmission shaft is installed on the rack, the second transmission mechanism is connected with the transmission shaft, and the second transmission mechanism is further connected with the splitting mechanism. The utility model has the advantages of cut efficiently.

Description

Fabric slitting device
Technical Field
The utility model relates to a device is cut to surface fabric.
Background
In the textile industry, often can use cloth cutting device, divide into the width according to customer's requirement and equal or unequal segment with the cloth and carry out the rolling packing, but present cutting machine structure is unreasonable, needs a plurality of workman to push down the cutter by hand and cuts apart, has increased the human cost of enterprise. In addition, the cloth after slitting needs to be cut into a required state again, for example, the towel fabric is cut into a plurality of strip-shaped towel fabrics by the aid of the first slitting, each cloth strip is cut into each towel when the towel fabric is slit again, and the towel fabric is manually slit when the towel fabric is slit again, so that the slitting efficiency is low.
SUMMERY OF THE UTILITY MODEL
The utility model provides a cut efficient surface fabric and cut device.
The technical means for solving the technical scheme is as follows:
device is cut to surface fabric, including the frame, still include:
one or more ultrasonic generators, the ultrasonic generator is mounted on the frame;
one or more slitting mechanisms matched with the ultrasonic generator to slit the fabric, wherein the slitting mechanisms are arranged on the rack;
the first driving mechanism comprises a driver, a first transmission mechanism, a transmission shaft and a second transmission mechanism, the driver is connected with the first transmission mechanism, the first transmission mechanism is connected with the transmission shaft, the transmission shaft is installed on the rack, the second transmission mechanism is connected with the transmission shaft, and the second transmission mechanism is further connected with the splitting mechanism.
Further, the rack includes:
a lower bracket;
the upper bracket is fixed on the lower bracket;
the ultrasonic generator is arranged on the first guide rail;
and the splitting mechanism is arranged on the second guide rail.
Further, the slitting mechanism comprises:
a support frame;
the lifting driver is arranged on the support frame;
the cutter seat is connected with the output end of the lifting driver;
the cutter shaft is rotatably assembled with the cutter seat and connected with the second transmission mechanism;
the cutter wheel is arranged on the cutter shaft.
Further, the slitting mechanism further comprises:
the auxiliary supporting mechanism comprises a connecting plate and a bearing assembly, the connecting plate is connected with the supporting frame, the bearing assembly is fixed with the connecting plate, and the transmission shaft penetrates through the bearing assembly.
Further, the cloth cutting machine also comprises a cloth cutting roller, wherein the cloth cutting roller is positioned at the upstream of the ultrasonic generator and the slitting mechanism, and two ends of the cloth cutting roller are rotatably matched with the machine frame.
Further, still including cutting waste material drive mechanism, it includes to cut waste material drive mechanism:
the support is connected with the rack;
the third transmission mechanism is connected with the transmission shaft;
one end of the driving shaft is connected with the third transmission mechanism;
one end of the driven shaft is rotatably connected with the rack or the support;
the driving traction roller is arranged at the other end of the driving shaft;
and the driven traction roller is arranged at the other end of the driven shaft and is matched with the driving traction roller.
Furthermore, the traction mechanism for cutting the waste materials further comprises a tension roller, the tension roller is rotatably arranged on the support, and a material passing port located above the driving traction roller and the driven traction roller is arranged on the support.
The fabric enters between the cutter wheel and the ultrasonic generator after passing through the cloth opening roller, and the power output by the driver is transmitted to the first transmission mechanism, the first transmission mechanism transmits the power to the transmission shaft, and the transmission shaft transmits the power to the cutter shaft through the second transmission mechanism, so that the cutter wheel rotates, and the fabric passing between the cutter wheel and the ultrasonic generator is cut by the cutter wheel. The utility model has the advantages of cut efficiently.
Drawings
Fig. 1 is a schematic view of a fabric slitting device of the present invention;
FIG. 2 is a partial schematic view of a fabric slitting device;
FIG. 3 is another partial schematic view of the fabric slitting device;
reference numbers in the drawings:
the device comprises a frame A, a lower bracket 1, an upper bracket 2, a first guide rail 3 and a second guide rail 4;
an ultrasonic generator B;
the cutting machine comprises a cutting mechanism C, a support frame 5, a lifting driver 6, a cutter seat 7, a cutter shaft 8, a cutter wheel 9, a connecting plate 10, a bearing assembly 11, a cloth opening roller 12, a support 13, a material passing hole 13a, a third transmission mechanism 14, a driving shaft 15, a driven shaft 16, a driving traction roller 17, a driven traction roller 18 and a tension roller 19;
the device comprises a first driving mechanism D, a driver 20, a first transmission mechanism 21, a first intermediate transmission mechanism 21a, an intermediate shaft 21b, a second intermediate transmission mechanism 21c, a third intermediate transmission mechanism 21D, a transmission shaft 22 and a second transmission mechanism 23.
Detailed Description
As shown in fig. 1 to 3, the fabric slitting device of the present invention comprises a frame a, one or more ultrasonic generators B, one or more slitting mechanisms C, and a first driving mechanism D, wherein the following describes each part and the relationship between each part in detail respectively:
supersonic generator B installs in frame A, frame A includes lower carriage 1, upper bracket 2, first guide rail 3, second guide rail 4, upper bracket 2 is fixed on lower carriage 1, supersonic generator B installs on first guide rail 3, first guide rail 3 is fixed on lower carriage 1, supersonic generator B and first guide rail 3 fixed connection, first guide rail 3 comprises first track and first slider, first track is fixed on lower carriage 1, first slider and first track sliding fit, the side of first slider is equipped with holding screw, when first slider slides to required position along first track, support through holding screw and first track, thereby make first slider fix on first track. Cut mechanism C and install on second guide rail 4, cut mechanism C and 4 sliding fit of second guide rail, it is fixed with upper bracket 2 to cut mechanism C.
Slitting mechanism C and supersonic generator B cooperation are cut the surface fabric, slitting mechanism C sets up in frame A, slitting mechanism C includes support frame 5, lifting drive 6, cutter seat 7, arbor 8, cutter wheel 9, and lifting drive 6 installs on support frame 5, and cutter seat 7 is connected with lifting drive 6's output, and arbor 8 and the rotatable assembly of cutter seat 7, arbor 8 are connected with second drive mechanism 23, and cutter wheel 9 installs on arbor 8.
Support frame 5 and 4 sliding fit of second guide rail, be equipped with the second slider on support frame 5, this second slider and 4 sliding fit of second guide rail are equipped with first holding screw on support frame 5, and when support frame 5 removed needs the position, support top or threaded connection through first holding screw and upper bracket 2, make support frame 5 obtain fixed and can not remove again. The lifting driver 6 can adopt an air cylinder or an oil cylinder, in the embodiment, the lifting driver 6 preferentially adopts the air cylinder, the cutter shaft 8 is installed on the cutter seat 7 through a bearing, the cutter rail wheel 9 is used for being matched with the ultrasonic generator B to cut the fabric, and the lifting driver 6 drives the cutter seat 7 to lift, so that the cutter wheel 9 is lifted, and the distance between the cutter wheel 9 and the ultrasonic generator B is changed.
The first driving mechanism D includes a driver 20, a first transmission mechanism 21, a transmission shaft 22, and a second transmission mechanism 23, the driver 20 is connected to the first transmission mechanism 21, and the driver 20 may adopt an electric motor or a hydraulic motor.
The first transmission mechanism 21 is composed of a first intermediate transmission mechanism 21a, an intermediate shaft 21b, a second intermediate transmission mechanism 21c and a third intermediate transmission mechanism 21d, wherein the first intermediate transmission mechanism 21a can adopt a belt transmission mechanism or a chain-sprocket transmission mechanism, in the embodiment, the first intermediate transmission mechanism 21a preferably adopts a chain-sprocket transmission mechanism, the second intermediate transmission mechanism 21c preferably adopts a gear transmission mechanism, the third intermediate transmission mechanism 21d preferably adopts a chain-sprocket transmission mechanism, the first intermediate transmission mechanism 21a is respectively connected with a motor and the intermediate shaft 21b, the second intermediate transmission mechanism 21c is respectively connected with the intermediate shaft 21c and the lower bracket 1, and the third intermediate transmission mechanism 21d is respectively connected with the second intermediate transmission mechanism 21c and a transmission shaft 22.
The second transmission mechanism 23 can adopt a belt transmission mechanism or a chain wheel and chain transmission mechanism, in this embodiment, the second transmission mechanism 23 preferably adopts a chain wheel and chain transmission mechanism, and the second transmission mechanism 23 is connected with the knife shaft 8 in the slitting mechanism C, so that the knife shaft 8 is driven to rotate by the second transmission mechanism 23, and the knife wheel 9 is further driven to rotate.
The slitting mechanism C further comprises an auxiliary supporting mechanism, the auxiliary supporting mechanism comprises a connecting plate 10 and a bearing assembly 11, the connecting plate 10 is connected with the supporting frame 5, the bearing assembly 11 is fixed with the connecting plate 10, and the transmission shaft 22 penetrates through the bearing assembly 11. Because the length of jackshaft 22 is longer, need drive a plurality of mechanisms C work of cutting in addition at the during operation, consequently, through the cooperation of supplementary supporting mechanism and transmission shaft 22, make transmission shaft 22 obtain more supports, make transmission shaft 22's rigidity obtain increasing to can avoid transmission shaft 22 to produce at the during operation and rock.
The present embodiment is not limited to the above-described structure, and therefore, further includes a cloth-opening roller 12, the cloth-opening roller 12 being located upstream of the ultrasonic generator B and the slitting mechanism C, both ends of the cloth-opening roller 12 being rotatably engaged with the frame a. The fabric entering between the ultrasonic generator B and the slitting mechanism C is tensioned outwards by the cloth opening roller 12, so that the fabric is slit by the ultrasonic generator B and the slitting mechanism C in a tensioned state, and the slitting quality is improved.
The embodiment is not limited to the above structure, therefore, the waste slitting traction mechanism further comprises a waste slitting traction mechanism, the waste slitting traction mechanism comprises a support 13, a third transmission mechanism 14, a driving shaft 15, a driven shaft 16, a driving traction roller 17, a driven traction roller 18, the support 13 is connected with the rack a, the third transmission mechanism 14 is connected with a transmission shaft 22, one end of the driving shaft 15 is connected with the third transmission mechanism 14, one end of the driven shaft 16 is rotatably connected with the rack a or the support 13, the driving traction roller 17 is arranged at the other end of the driving shaft 15, the driven traction roller 18 is arranged at the other end of the driven shaft 16, and the driven traction roller 18 is matched with the driving traction roller. The slitting waste traction mechanism further comprises a tension roller 19, the tension roller 19 is rotatably arranged on the support 13, and a material passing opening 13a positioned above the driving traction roller 17 and the driven traction roller 18 is formed in the support 13.
The utility model discloses a working process does: the fabric enters between the cutter wheel 9 and the ultrasonic generator B after passing through the cloth opening roller 12, as the power output by the driver 20 is transmitted to the first transmission mechanism 21, the first transmission mechanism 21 transmits the power to the transmission shaft 22, the transmission shaft 22 transmits the power to the cutter shaft 8 through the second transmission mechanism 23, so that the cutter wheel 9 rotates, the fabric passing between the cutter wheel 9 and the ultrasonic generator B is cut by the cutter wheel 9, the number of the cut fabric is determined according to the number of the cutter wheel 9 and the ultrasonic generator B, for example, the cutter wheel 9 and the ultrasonic generator B are a group, the fabric is cut into two fabrics, if the cutter wheel 9 and the ultrasonic generator B are two groups, the fabric is cut into three fabrics, namely, the number of the cut fabrics is the number of the cutter wheel 9 and the ultrasonic generator B group plus one.
The waste materials generated by cutting are drawn to a tension roller 19, and are guided by the tension roller 19 to enter an active traction roller 17 and a passive traction roller 18 through a material passing hole 13a, and the active shaft 15 rotates to drive the active traction roller 17 to rotate, so that the passive traction roller 18 rotates under the action of friction force, and the waste materials are drawn.

Claims (7)

1. Device is cut to surface fabric, including frame (A), its characterized in that still includes:
one or more ultrasonic generators (B) mounted on the frame (A);
one or more slitting mechanisms (C) which are matched with the ultrasonic generator (B) to slit the fabric are arranged on the rack (A);
first actuating mechanism (D), first actuating mechanism (D) includes driver (20), first drive mechanism (21), transmission shaft (22), second drive mechanism (23), driver (20) are connected with first drive mechanism (21), first drive mechanism (21) are connected with transmission shaft (22), transmission shaft (22) are installed in frame (A), second drive mechanism (23) are connected with transmission shaft (22), second drive mechanism (23) still are connected with cutting mechanism (C).
2. A fabric slitting device according to claim 1, characterized in that the frame (A) comprises
A lower bracket (1);
the upper bracket (2) is fixed on the lower bracket (1);
the first guide rail (3) is arranged on the lower bracket (1), and the ultrasonic generator (B) is arranged on the first guide rail (3);
a second guide rail (4) arranged on the upper bracket (2), and a splitting mechanism (C) is arranged on the second guide rail (4).
3. A fabric slitting device according to claim 1, characterized in that the slitting mechanism (C) comprises:
a support frame (5);
the lifting driver (6), the lifting driver (6) is installed on the supporting frame (5);
the cutter seat (7), the cutter seat (7) is connected with the output end of the lifting driver (6);
the cutter shaft (8), the cutter shaft (8) and the cutter seat (7) can be rotatably assembled, and the cutter shaft (8) is connected with the second transmission mechanism (23);
the cutter wheel (9), the cutter wheel (9) is installed on the cutter shaft (8).
4. A fabric slitting device according to claim 3, wherein the slitting mechanism (C) further comprises:
the auxiliary supporting mechanism comprises a connecting plate (10) and a bearing assembly (11), the connecting plate (10) is connected with the supporting frame (5), the bearing assembly (11) is fixed with the connecting plate (10), and the transmission shaft (22) penetrates through the bearing assembly (11).
5. A fabric slitting device according to any one of claims 1 to 4, further comprising a fabric opening roller (12), the fabric opening roller (12) being located upstream of the ultrasonic generator (B) and the slitting mechanism (C), both ends of the fabric opening roller (12) being rotatably fitted to the frame (A).
6. A fabric slitting device according to any one of claims 1 to 4, further comprising a slitting waste pulling mechanism, the slitting waste pulling mechanism comprising:
the support (13), the support (13) is connected with the frame (A);
the third transmission mechanism (14), the third transmission mechanism (14) is connected with the transmission shaft (22);
one end of the driving shaft (15) is connected with the third transmission mechanism (14);
one end of the driven shaft (16) is rotatably connected with the rack (A) or the support (13);
the driving traction roller (17), the driving traction roller (17) is arranged at the other end of the driving shaft (15);
and the driven traction roller (18), the driven traction roller (18) is arranged at the other end of the driven shaft (16), and the driven traction roller (18) is matched with the driving traction roller.
7. A fabric slitting device according to claim 6, characterized in that the slitting waste pulling mechanism further comprises a tension roller (19), the tension roller (19) is rotatably mounted on the support (13), and the support (13) is provided with a material passing opening above the driving traction roller (17) and the driven traction roller (18).
CN202120784990.8U 2021-04-16 2021-04-16 Fabric slitting device Active CN214879006U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120784990.8U CN214879006U (en) 2021-04-16 2021-04-16 Fabric slitting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120784990.8U CN214879006U (en) 2021-04-16 2021-04-16 Fabric slitting device

Publications (1)

Publication Number Publication Date
CN214879006U true CN214879006U (en) 2021-11-26

Family

ID=78947946

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120784990.8U Active CN214879006U (en) 2021-04-16 2021-04-16 Fabric slitting device

Country Status (1)

Country Link
CN (1) CN214879006U (en)

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