CN211966334U - Two-sided synchronous heterochrosis scarf cutting equipment - Google Patents
Two-sided synchronous heterochrosis scarf cutting equipment Download PDFInfo
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- CN211966334U CN211966334U CN201922468743.2U CN201922468743U CN211966334U CN 211966334 U CN211966334 U CN 211966334U CN 201922468743 U CN201922468743 U CN 201922468743U CN 211966334 U CN211966334 U CN 211966334U
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Abstract
The utility model discloses a double-sided synchronous different-color scarf cutting device, which comprises a frame, wherein a fabric conveying mechanism is arranged in the middle of the top surface of a top plate of the frame, and fabric is conveyed on the fabric conveying mechanism; the left side and the right side of the middle part of the top surface of the top plate of the rack are both fixed with vertical plates, the upper top plate is fixed on the top surfaces of the two vertical plates, the bottom surfaces of the left side and the right side of the upper top plate and the bottom surface of the middle part of the upper top plate are both fixed with two supporting plates, the two ends of each of the two transverse transmission screw rods are hinged on the supporting plate on one corresponding side and the supporting plate on the middle part through bearings, and a mobile motor is fixed on the outer side wall of. The scarf block cutting machine can place fabrics cut off according to the design length on a conveyor belt to be directly adsorbed and conveyed, and can automatically cut the scarf blocks into a plurality of scarf blocks, and the scarf block cutting machine is good in effect and high in efficiency.
Description
The technical field is as follows:
the utility model relates to a calico printing machine equipment manufacture technical field, more specifically say and relate to a two-sided synchronous heterochrosis scarf cutting equipment.
Background art:
it generally adopts cutting knife etc. to carry out manual cutting current scarf surface fabric cutting, perhaps is the scarf surface fabric passes through the conveying roller and carries, through the cutting tool cutting, and its conveying roller carries the scarf surface fabric through the mode of tensioning and cuts, and the cutting is rolled up to whole generally, and follow-up cutting off the surface fabric according to the length of difference again, and its effect is limited, and whole roll of cutting squints easily moreover, and is very troublesome, and it can't cut the surface fabric that cuts off according to the design length requirement.
The utility model has the following contents:
the utility model aims at overcoming the not enough of prior art, provide a two-sided synchronous heterochrosis scarf cutting equipment, it can place the surface fabric that cuts off according to design length needs directly adsorb the transport on the conveyer belt to carry out automatic cutout becomes a plurality of scarf pieces, and it is effectual, efficient.
The utility model provides a technical problem's scheme is:
the double-sided synchronous different-color scarf cutting equipment comprises a rack, wherein a fabric conveying mechanism is arranged in the middle of the top surface of a top plate of the rack, and fabric is conveyed on the fabric conveying mechanism;
vertical plates are fixed on the left side and the right side of the middle part of the top surface of a top plate of the rack, an upper top plate is fixed on the top surfaces of the two vertical plates, two support plates are fixed on the bottom surfaces of the left side and the right side of the upper top plate and the middle part of the upper top plate, two ends of two transverse transmission screw rods are hinged on the corresponding support plate on one side and the middle support plate through bearings, a mobile motor is fixed on the outer side wall of one support plate, an output shaft of the mobile motor is a spline shaft which is inserted in a spline hole formed in one end of each transverse transmission screw rod, a mobile block is screwed on the corresponding transverse transmission screw rod, a horizontal plate is fixed at the bottom end of the mobile block, a lifting motor is fixed on the top surface of the horizontal plate, the output shaft of the lifting motor penetrates through the horizontal plate and is connected with the vertical screw rods, the mounting plate is fixed with a laser cutting head which faces the fabric.
The top surface of the moving block is fixed with a guide block, the top surface of the guide block is formed with a guide convex part, and the guide convex part is inserted and sleeved in a long groove formed in the bottom surface of the upper top plate.
A vertical guide plate is fixed on the top surface of one side of the mounting plate, a guide strip is fixed on the inner side wall of the top of the vertical guide plate, and the guide strip is inserted and sleeved in a side guide groove formed in the side wall of the moving block.
The fabric conveying mechanism comprises a left main supporting plate and a right main supporting plate, and the two main supporting plates are fixed on the top surface of a top plate of the rack;
all be equipped with the driving roller between the front portion and the rear portion of two main tributary faggings, the both ends of driving roller pass through the bearing and articulate on two main tributary faggings, are fixed with conveying motor on the lateral wall of one of them main tributary fagging, and conveying motor's output shaft is the integral key shaft, and the integral key shaft plug bush is in the splined hole that the one end of the driving roller that corresponds has, and the conveyer belt tensioning is on two driving rollers.
The both sides of conveyer belt are equipped with the barrier plate, and the rectangular logical groove of the both sides of conveyer belt is covered to the barrier plate, and the both ends shaping of barrier plate has the arc wall, and the one end plug bush of driving roller is in the arc wall, and the one end lateral wall of driving roller is close to the internal face of arc wall, is fixed with a plurality of connecting blocks on the lateral wall of barrier plate, and the connecting block is fixed on the inside wall of the main tributary fagging that corresponds.
The stop plate is connected with an air suction connecting pipe, and the outer end of the air suction connecting pipe is fixed on the inner side wall of the through hole of the corresponding main support plate.
The conveying belt is a steel wire mesh belt.
A plurality of adsorption through holes are formed in the conveying belt.
The utility model discloses an outstanding effect is:
the scarf block cutting machine can place fabrics cut off according to the design length on a conveyor belt to be directly adsorbed and conveyed, and can automatically cut the scarf blocks into a plurality of scarf blocks, and the scarf block cutting machine is good in effect and high in efficiency.
Description of the drawings:
fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a partial enlarged view of the present invention;
fig. 3 is a partial plan view of the present invention.
The specific implementation mode is as follows:
in the embodiment, as shown in fig. 1 to 3, a double-sided synchronous scarf cutting device with different colors comprises a frame 10, wherein a fabric conveying mechanism 20 is arranged in the middle of the top surface of a top plate of the frame 10, and fabric 100 is conveyed on the fabric conveying mechanism 20;
Further, a guide block 161 is fixed to a top surface of the moving block 16, a guide protrusion 162 is formed on the top surface of the guide block 161, and the guide protrusion 162 is inserted into an elongated groove 121 formed on a bottom surface of the upper plate 12.
Furthermore, a vertical guide plate 191 is fixed on the top surface of one side of the mounting plate 19, a guide strip 192 is fixed on the inner side wall of the top of the vertical guide plate 191, and the guide strip 192 is inserted into a side guide groove 163 formed on the side wall of the moving block 16.
Further, the fabric conveying mechanism 20 includes two left and right main support plates 21, and the two main support plates 21 are fixed on the top surface of the top plate of the frame 10;
the driving rollers 22 are arranged between the front portion and the rear portion of the two main supporting plates 21, two ends of each driving roller 22 are hinged to the two main supporting plates 21 through bearings, a conveying motor 23 is fixed to the outer side wall of one main supporting plate 21, an output shaft of each conveying motor 23 is a spline shaft, the spline shaft is inserted in a spline hole formed in one end of the corresponding driving roller 22 in a sleeved mode, and the conveying belt 24 is tensioned on the two driving rollers 22.
Furthermore, the two sides of the conveying belt 24 are provided with the blocking plates 25, the blocking plates 25 cover the long through grooves on the two sides of the conveying belt 24, arc grooves are formed in the two ends of the blocking plates 25, one end of the transmission roller 22 is inserted and sleeved in the arc grooves, the side wall of one end of the transmission roller 22 is close to the inner wall surface of the arc grooves, the outer side wall of each blocking plate 25 is fixed with a plurality of connecting blocks 26, and the connecting blocks 26 are fixed on the inner side wall of the corresponding main support plate 21.
Furthermore, the blocking plate 25 is connected with an air suction connecting pipe 27, and the outer end of the air suction connecting pipe 27 is fixed on the inner side wall of the through hole of the corresponding main supporting plate 21.
Further, the conveying belt 24 may be a wire mesh belt or a plurality of suction through holes 241 may be formed on the conveying belt 24, as shown in fig. 1 and 3.
The outer end of the air suction connecting pipe 27 is screwed with a connector, the connector is communicated with an air suction head of an air pump through a connecting pipe, and the air pump can be fixed on the rack 10 or the surrounding ground.
This embodiment is when using, and the surface fabric that will cut off according to the design length requirement is placed on the rear end top surface of conveyer belt 24, breathes in through the air pump to make the surface fabric adsorb on conveyer belt 24, through conveying motor 23 operation, make conveyer belt 24 operation, thereby move the surface fabric forward, when removing, open through laser cutting head 1 and realize the cutting, adopt two laser cutting head 1 in this embodiment, thereby can cut into three scarf pieces with the surface fabric.
Wherein, through the operation of elevator motor 18, can realize the height position control of laser cutting head 1, and through the operation of removal motor 15, can realize laser cutting head 1 lateral shifting, adjust the cutting position, its cutting effect is good, and is efficient.
The above embodiments are only used for illustrating the present invention, and not for limiting the present invention, and those skilled in the relevant technical field can make various changes and modifications without departing from the spirit and scope of the present invention, so that all equivalent technical solutions also belong to the scope of the present invention, and the protection scope of the present invention should be defined by the claims.
Claims (8)
1. The utility model provides a two-sided synchronous heterochrosis scarf cutting equipment, includes frame (10), its characterized in that: the middle part of the top surface of the top plate of the rack (10) is provided with a fabric conveying mechanism (20), and fabric (100) is conveyed on the fabric conveying mechanism (20);
vertical plates (11) are fixed on the left side and the right side of the middle part of the top surface of a top plate of the rack (10), an upper top plate (12) is fixed on the top surfaces of the two vertical plates (11), two supporting plates (13) are fixed on the bottom surfaces of the left side and the right side of the upper top plate (12) and the bottom surface of the middle part of the upper top plate (12), two ends of two transverse transmission screws (14) are hinged on the corresponding supporting plate (13) on one side and the supporting plate (13) in the middle part through bearings, a moving motor (15) is fixed on the outer side wall of one of the supporting plates (13), an output shaft of the moving motor (15) is a spline shaft which is inserted and sleeved in a spline hole arranged at one end of each transverse transmission screw (14), a moving block (16) is screwed on the corresponding transverse transmission screw (14), a horizontal plate (17) is fixed at the bottom end of the moving block (16), and a, an output shaft of the lifting motor (18) penetrates through the horizontal plate (17) and is connected with a vertical screw (181) through a coupler, the vertical screw sleeve (182) is in threaded connection with the vertical screw (181), a mounting plate (19) is fixed at the bottom end of the vertical screw sleeve (182), a laser cutting head (1) is fixed on the mounting plate (19), and the laser cutting head (1) faces the fabric (100).
2. The double-sided synchronous heterochromatic scarf cutting apparatus of claim 1, characterized in that: a guide block (161) is fixed on the top surface of the moving block (16), a guide convex part (162) is formed on the top surface of the guide block (161), and the guide convex part (162) is inserted in a long groove (121) formed on the bottom surface of the upper top plate (12).
3. The double-sided synchronous heterochromatic scarf cutting apparatus of claim 1, characterized in that: a vertical guide plate (191) is fixed to the top face of one side of the mounting plate (19), a guide strip (192) is fixed to the inner side wall of the top of the vertical guide plate (191), and the guide strip (192) is inserted into a side guide groove (163) formed in the side wall of the moving block (16).
4. The double-sided synchronous heterochromatic scarf cutting apparatus of claim 1, characterized in that: the fabric conveying mechanism (20) comprises a left main supporting plate and a right main supporting plate (21), and the two main supporting plates (21) are fixed on the top surface of the top plate of the rack (10);
all be equipped with driving roller (22) between the front portion and the rear portion of two main tributary faggings (21), the both ends of driving roller (22) pass through the bearing and articulate on two main tributary faggings (21), be fixed with on the lateral wall of one of them main tributary fagging (21) conveying motor (23), the output shaft of conveying motor (23) is the integral key shaft, the integral key shaft plug bush is in the splined hole that the one end of corresponding driving roller (22) has, conveyer belt (24) tensioning is on two driving rollers (22).
5. The double-sided synchronous heterochromatic scarf cutting apparatus of claim 4, characterized in that: the both sides of conveyer belt (24) are equipped with barrier plate (25), and the microscler logical groove of the both sides of conveyer belt (24) is covered in barrier plate (25), and the both ends shaping of barrier plate (25) has the arc wall, and the one end plug bush of driving roller (22) is in the arc wall, and the one end lateral wall of driving roller (22) is close to the internal wall of arc wall, is fixed with a plurality of connecting blocks (26) on the lateral wall of barrier plate (25), and connecting block (26) are fixed on the inside wall of the main tributary fagging (21) that corresponds.
6. The double-sided synchronous heterochromatic scarf cutting apparatus of claim 5, characterized in that: the air suction connecting pipe (27) is connected to the upper portion of the blocking plate (25), and the outer end of the air suction connecting pipe (27) is fixed to the inner side wall of the through hole of the corresponding main supporting plate (21).
7. The double-sided synchronous heterochromatic scarf cutting apparatus of claim 4, characterized in that: the conveying belt (24) is a steel wire mesh belt.
8. The double-sided synchronous heterochromatic scarf cutting apparatus of claim 4, characterized in that: the conveying belt (24) is provided with a plurality of adsorption through holes (241).
Priority Applications (1)
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CN201922468743.2U CN211966334U (en) | 2019-12-31 | 2019-12-31 | Two-sided synchronous heterochrosis scarf cutting equipment |
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CN201922468743.2U CN211966334U (en) | 2019-12-31 | 2019-12-31 | Two-sided synchronous heterochrosis scarf cutting equipment |
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CN211966334U true CN211966334U (en) | 2020-11-20 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN111055025A (en) * | 2019-12-31 | 2020-04-24 | 苏州印丝特数码科技有限公司 | Two-sided synchronous heterochrosis scarf cutting equipment |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN111055025A (en) * | 2019-12-31 | 2020-04-24 | 苏州印丝特数码科技有限公司 | Two-sided synchronous heterochrosis scarf cutting equipment |
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Denomination of utility model: A double-sided synchronous different color scarf cutting equipment Effective date of registration: 20220715 Granted publication date: 20201120 Pledgee: Bank of Suzhou Co.,Ltd. Shishan road sub branch Pledgor: SUZHOU INSILK Co.,Ltd. Registration number: Y2022320010386 |