CN103817974B - Non-woven bag forming machine and bag moulding process - Google Patents

Non-woven bag forming machine and bag moulding process Download PDF

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CN103817974B
CN103817974B CN201410063762.6A CN201410063762A CN103817974B CN 103817974 B CN103817974 B CN 103817974B CN 201410063762 A CN201410063762 A CN 201410063762A CN 103817974 B CN103817974 B CN 103817974B
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support
forming
bag
damper
heat
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CN103817974A (en
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欧阳锡聪
陈祖仁
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Zhejiang Ono Machinery Co.,Ltd.
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WENZHOU OUWEI PACKING MACHINERY Co Ltd
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Abstract

A kind of non-woven bag forming machine.Mainly solve existing non-woven bag forming machine streamline bulky, operation is many, complex structure, the problem that agency cost is high.It is characterized in that: described shaping mechanism (4) includes binder block (41), the first damper for forming (42), the second damper for forming (43), edge forming push pedal (44), base moulding push plate (45), described the first damper for forming (42), the second damper for forming (43) are symmetrical arranged, described heat sealing mechanism (5) comprises symmetrically arranged first heat-sealing head (51), the second heat-sealing head (52), and described the first damper for forming (42), the second damper for forming (43) are positioned at the first heat-sealing head (51), the second heat-sealing head (52) both sides.This Mechanism Optimization structure of non-woven bag forming machine, mechanism's floor space is little, and production process is few, improve the production efficiency of non-woven bag.

Description

Non-woven bag forming machine and bag moulding process
Technical field
The present invention relates to a kind of shaping mechanism and moulding process, be specifically related to a kind of non-woven bag forming machine and bag moulding process.
Background technology
Non-woven bag has the feature of environmental protection practicality, is widelyd popularize in recent years and uses, thus has impelled the fast development of non-woven fabric bag full-automatic molding technology.But along with the development of China's non-woven fabrics in recent years, the outlet phenomenon of competition vicious circle of demanding a lower price between domestic industry.Only have and find technology-intensive technique, produce multi items, road that Composite, high-qualityization, product that the added value such as differential is high are only the existence of each enterprise.Therefore the stereoscopic bag that third dimension is stronger becomes the main flow of non-woven bag, but relate to more operation in the making relative to this stereoscopic bag of the Non-woven cloth bag of plane, need additionally to carry out boiling hot triangle, impression, heat-sealing handle, directly results in streamline bulky, operation is many, complex structure, agency cost is high.
Summary of the invention
In order to overcome the deficiency of background technology, the invention provides a kind of non-woven bag forming machine, mainly solve existing non-woven bag forming machine streamline bulky, operation is many, complex structure, the problem that agency cost is high.
The technical solution adopted in the present invention is: a kind of non-woven bag forming machine, comprises support, and described support is provided with material cutting mechanism, feed mechanism, shaping mechanism, heat sealing mechanism, described shaping mechanism includes binder block, first damper for forming, second damper for forming, edge forming push pedal, base moulding push plate, the first described damper for forming, second damper for forming is symmetrical arranged, and described heat sealing mechanism comprises symmetrically arranged first heat-sealing head, second heat-sealing head, the first described heat-sealing head, second heat-sealing head is positioned at the first described damper for forming, the both sides of the second damper for forming, described binder block, base moulding push plate is along Z-direction sliding motion, and described edge forming push pedal is along X-direction sliding motion, and described heat-sealing head is along Y direction sliding motion, and described binder block compresses and drives cloth to move to damper for forming, primary importance between heat-sealing head and the second place be positioned at above cloth, in described primary importance, described edge forming push pedal, base moulding push plate has and moves and make cloth pasting to the 3rd position on binder block surface.
Described support is provided with the first reductor, tooth bar, and the rotating shaft of described reductor is provided with the driven wheel with tooth bar adaptation, and described binder block is provided with binder seat, and described tooth bar is fixedly connected with binder seat.
Be provided with material carrying mechanism in described support, described material carrying mechanism comprises retainer turnover panel, and described retainer turnover panel has the 4th position compressing cloth and the 5th position departing from cloth.
Described material carrying mechanism comprises retainer support and retainer cylinder, described retainer support coordinates with support slippage, described retainer support is hinged with retainer turnover panel, described retainer cylinder one end and retainer support hinged, the other end and retainer turnover panel hinged, be provided with gangbar in described material carrying mechanism, described gangbar one end and retainer support are fixed, and the other end and binder seat are fixed.
Described binder seat is fixed with flange slide block, and described support is provided with the guide rail with flange slide block adaptation.
Drive motors is provided with in described support, second reductor, first cam box, second cam box, power transmission shaft, the motor shaft of described drive motors is connected with the second reductor, the second described reductor is provided with output shaft, described output shaft is provided with the first bevel gear, first power shaft of the first described cam box is provided with the second bevel gear, the first described bevel gear engages with the second bevel gear, connecting axle is provided with between described power transmission shaft and the second power shaft of the second cam box, between the second described power shaft and connecting axle, between described connecting axle and power transmission shaft, intermeshing bevel gear is equipped with between described power transmission shaft and output shaft.
Described power transmission shaft is provided with the first cam, described support is hinged with the first swing arm, the first described swing arm is provided with the first roller, the first described swing arm is provided with first connecting rod, described first connecting rod is fixedly connected with edge forming push pedal, the first described cam and the first roller inconsistent, be provided with the first back-moving spring between the first described swing arm and support.
Be provided with in described support and drive base moulding push plate along the propulsion plant of X-axis movement and drive base moulding push plate along the lowering or hoisting gear of Z axis movement.
Described support is provided with camshaft, slip base, described camshaft is driven by drive motors, described lowering or hoisting gear includes to be located at lifter cam on camshaft and to drive base moulding push plate along the first transmission mechanism of X-axis movement, and described propulsion plant includes the propelling cam be located on camshaft and drives base moulding push plate along the second transmission mechanism of Z axis movement.
The first described transmission mechanism includes lifting fork, shift fork, described shift fork is fixed on the moulding push plate of base, described base moulding push plate coordinates with slip base slippage, lifting groove is provided with in described shift fork, described lifting fork one end and support hinged, the other end is located in lifting groove by roller housing, and described lifter cam is inconsistent with lifting fork, is provided with the 3rd back-moving spring between described slip base and base moulding push plate.
The second described transmission mechanism includes the second swing arm, second connecting rod, second described swing arm one end and support hinged, the other end and second connecting rod hinged, the second described swing arm is provided with the second roller, described second connecting rod and slip base hinged, described slip base is coordinated with support slippage by slide block, the described slip base direction of motion is vertical with the base moulding push plate direction of motion, described propelling cam and the second roller inconsistent, be provided with the second back-moving spring between the second described swing arm and support.
Be provided with some driving wheels in described support, described driving wheel is provided with friction belt, and described friction belt inner surface and damper for forming outer surface fit, and described friction belt is moved along the z-axis direction at damper for forming place.
The present invention also provides a kind of bag moulding process, comprises the steps that a. gets the raw materials ready: get and wait to roll over flat sheets; B. global formation, pleated sheet, is formed before bag, the bag back side and bag bottom surface; C. side creases, folding bag bottom edge, make it tilt to bag inside and with bag plane perpendicular, form folding line simultaneously; D. fold, along folds bag front edge, bag dorsal edge, folded bag front edge, bag dorsal edge, bag bottom edge are overlapped; E. seal. use heat-sealing head heat-sealing intersection, form bag side.
The invention has the beneficial effects as follows: the structure optimizing non-woven bag forming machine, mechanism's floor space is little, and production process is few, improves the production efficiency of non-woven bag.
Accompanying drawing explanation
Fig. 1 is surface structure schematic diagram of the present invention.
Fig. 2 is the structural representation that the present invention removes housing.
Fig. 3 is internal structure schematic diagram of the present invention.
Fig. 4 is internal structure schematic diagram of the present invention.
Fig. 5 is the structural representation of moulding push plate 44.
Fig. 6 is the structural representation of the first heat-sealing head 51.
Fig. 7 is the structural representation of material carrying mechanism 9.
Fig. 8 is polycrystalline substance schematic diagram of the present invention.
Fig. 9 is edge forming part drives structure schematic diagram.
Figure 10 is base moulding section drives structure schematic diagram.
Figure 11 is base moulding section drives structure schematic diagram.
Figure 12 is the schematic diagram of step a of the present invention.
Figure 13 is the schematic diagram of step b of the present invention.
The schematic diagram of Figure 14 step c of the present invention.
The schematic diagram of Figure 15 steps d of the present invention.
The schematic diagram of Figure 16 step e of the present invention.
1-support in figure, 2-material cutting mechanism, 3-feed mechanism, 4-shaping mechanism, 41-binder block, 411-binder seat, 412-flange slide block, 413-guide rail, 42-first damper for forming, 43-second damper for forming, the push pedal of 44-edge forming, 45-base moulding push plate, 451-shift fork, 452-is elevated groove, 5-heat sealing mechanism, 51-first heat-sealing head, 52-second heat-sealing head, 6-first reductor, 7-tooth bar, 8-driven wheel, 9-material carrying mechanism, 91-retainer support, 92-retainer cylinder, 93-retainer turnover panel, 94-gangbar, 10-slip base, before 11-bag, 111-bag front edge, the 12-bag back side, 121-bag dorsal edge, 13-bag bottom surface, 131-bag bottom edge, 14-folding line, 15-bag side, 16-drive motors, 17-second reductor, 171-output shaft, 172-first bevel gear, 18-first cam box, 181-first power shaft, 182-second bevel gear, 19-second cam box, 191-second power shaft, 20-power transmission shaft, 201-first cam, 202-first swing arm, 203-first roller, 204-connecting rod, 205-first back-moving spring, 21-connecting axle, 22-camshaft, 221-is elevated fork, 222-lifter cam, 223-advances cam, 224-second swing arm, 225-second roller, 226-second connecting rod, 227-second back-moving spring, 228-the 3rd back-moving spring, 23-driving wheel, 24-friction belt, 25-propulsion plant, 251-second transmission mechanism, 26-lowering or hoisting gear, 261-first transmission mechanism.
Detailed description of the invention
Below in conjunction with accompanying drawing, embodiments of the present invention is further illustrated.
As shown in Fig. 1 composition graphs 2 to 16, a kind of non-woven bag forming machine, comprises support 1, and described support 1 is provided with material cutting mechanism 2, feed mechanism 3, shaping mechanism 4, heat sealing mechanism 5, described shaping mechanism 4 includes binder block 41, first damper for forming 42, second damper for forming 43, edge forming push pedal 44, base moulding push plate 45, the first described damper for forming 42, second damper for forming 43 is symmetrical arranged, and described heat sealing mechanism 5 comprises symmetrically arranged first heat-sealing head 51, second heat-sealing head 52, the first described heat-sealing head 51, second heat-sealing head 52 is positioned at the first described damper for forming 42, the both sides of the second damper for forming 43, described binder block 41, base moulding push plate 45 is along Z-direction sliding motion, and described edge forming push pedal 44 is along X-direction sliding motion, and described heat-sealing head is along Y direction sliding motion, and described binder block 41 compresses and drives cloth to move to damper for forming, primary importance between heat-sealing head and the second place be positioned at above cloth, in described primary importance, described edge forming push pedal 44, base moulding push plate 45 has and moves and make cloth pasting to the 3rd position on binder block 41 surface.
Described support 1 is provided with the first reductor 6, tooth bar 7, and the rotating shaft of described reductor 6 is provided with the driven wheel 8 with tooth bar 7 adaptation, and described binder block 41 is provided with binder seat 411, and described tooth bar 7 is fixedly connected with binder seat 411.
Be provided with material carrying mechanism 9 in described support 1, described material carrying mechanism 9 comprises retainer turnover panel 93, and described retainer turnover panel 93 has the 4th position compressing cloth and the 5th position departing from cloth.
Described material carrying mechanism 9 comprises retainer support 91 and retainer cylinder 92, described retainer support 91 coordinates with support slippage, described retainer support 91 is hinged with retainer turnover panel 93, described retainer cylinder 92 one end and retainer support 91 hinged, the other end and retainer turnover panel 93 hinged, be provided with gangbar 94 in described material carrying mechanism 9, described gangbar 94 one end and retainer support 91 are fixed, and the other end and binder seat 411 are fixed.Material carrying mechanism 9 can coordinate binder block 41 to pull cloth, good stability, and efficiency is high.
Described binder seat 411 is fixed with flange slide block 412, and described support 1 is provided with the guide rail 413 with flange slide block 412 adaptation.
Drive motors 16 is provided with in described support 1, second reductor 17, first cam box 18, second cam box 19, power transmission shaft 20, the motor shaft of described drive motors 16 is connected with the second reductor 17, the second described reductor 17 is provided with output shaft 171, described output shaft 171 is provided with the first bevel gear 172, first power shaft 181 of the first described cam box 18 is provided with the second bevel gear 182, the first described bevel gear 172 engages with the second bevel gear 182, connecting axle 21 is provided with between described power transmission shaft 20 and the second power shaft 191 of the second cam box 19, described power transmission shaft 20, second power shaft 191, connecting axle 21, output shaft 171 is provided with intermeshing bevel gear.A drive motors 16 rotates, and just can drive the first cam box 18, second cam box 19, edge forming push pedal 44, base moulding push plate 45 operation.
Described power transmission shaft 20 is provided with the first cam 201, described support 1 is hinged with the first swing arm 202, the first described swing arm 202 is provided with the first roller 203, the first described swing arm 202 is provided with first connecting rod 204, described first connecting rod 204 is fixedly connected with edge forming push pedal 44, the first described cam 201 and the first roller 203 inconsistent, be provided with the first back-moving spring 205 between the first described swing arm 202 and support 1.First cam 201 rotates, and coordinates the first back-moving spring 205, drives edge forming push pedal 44 to move back and forth.
Be provided with in described support 1 and drive base moulding push plate 45 along the propulsion plant 25 of X-axis movement and drive base moulding push plate 45 along the lowering or hoisting gear 26 of Z axis movement.
Described support 1 is provided with camshaft 22, slip base 10, described camshaft 22 is driven by drive motors 16, described lowering or hoisting gear 26 includes to be located at lifter cam 222 on camshaft 22 and to drive base moulding push plate 45 along the first transmission mechanism 261 of X-axis movement, and described propulsion plant 25 includes the propelling cam 223 be located on camshaft 22 and drives base moulding push plate 45 along the second transmission mechanism 251 of Z axis movement.
The first described transmission mechanism 261 includes lifting fork 221, shift fork 451, described shift fork 451 is fixed on base moulding push plate 45, described base moulding push plate 45 coordinates with slip base 10 slippage, lifting groove 452 is provided with in described shift fork 451, described lifting fork 221 one end and support 1 hinged, the other end is located in lifting groove 452 by roller housing, described lifter cam 222 is inconsistent with lifting fork 221, is provided with the 3rd back-moving spring 228 between described slip base 10 and base moulding push plate 45.
The second described transmission mechanism 251 includes the second swing arm 224, second connecting rod 226, second described swing arm 224 one end and support 1 hinged, the other end and second connecting rod 226 hinged, the second described swing arm 224 is provided with the second roller 225, described second connecting rod 226 is hinged with slip base 10, described slip base 10 is coordinated with support 1 slippage by slide block, described slip base 10 direction of motion is vertical with base moulding push plate 45 direction of motion, described propelling cam 223 and the second roller 225 inconsistent, the second back-moving spring 227 is provided with between the second described swing arm 224 and support 1.Camshaft 22 drives lifter cam 222 and advances cam 223 to rotate, and advances cam 223 first push up pressure second roller 225, and stretch the second back-moving spring 227 the second swing arm 224 is swung, drive slip base 10 and base moulding push plate 45 transversal moving forward; Lifter cam 222 pushes up voltage rise and falls fork 221 and make it swing, and drive base moulding push plate 45 upwards slippage compress the 3rd back-moving spring 228 simultaneously, push up molded cloth; Advance cam 223 to rotate, the second swing arm 224 resets under the second back-moving spring 227 acts on; Lifter cam 222 rotates, and base moulding push plate 45 resets under the 3rd back-moving spring 228 acts on.A camshaft drives two cams, and compact conformation efficiency is high, with low cost, and mechanism's synchronism is good.
Also cylinder can be adopted directly to drive the mode of base moulding push plate 45 and slip base 10 for propulsion plant 25, lowering or hoisting gear 26, a cylinder is fixed on slip base 10 and is used for driving base moulding push plate 45, another cylinder is fixed on for driving slip base 10 on support 1, and base moulding push plate 45 and slip base 10 slippage coordinate.
Be provided with some driving wheels 23 in described support, described driving wheel 23 is provided with driving wheel 23, and described friction belt 24 inner surface and damper for forming outer surface fit, and described friction belt 24 is moved along the z-axis direction at damper for forming place.Driving wheel 23 rotates, and drives friction belt 24, bag is fallen.
The present invention also provides a kind of bag moulding process, comprises the steps that a. gets the raw materials ready: get and wait to roll over flat sheets; B. global formation, pleated sheet, to form before bag 11, the bag back side 12 and bag bottom surface 13; C. side creases, folding bag bottom edge 131, makes it tilt to bag inside and vertical with bag bottom surface 13, formation folding line 14 simultaneously; D. fold, fold bag front edge 111, bag dorsal edge 121 along folding line 14, folded bag front edge 111, bag dorsal edge 121, bag bottom edge 131 are overlapped; E. seal. use heat-sealing head heat-sealing intersection, form bag side 15.
The present invention specifically uses as follows: during work, the nonwoven cloth of sheet is delivered to below binder block 41 by feed mechanism 3, material cutting mechanism 2 by non-woven fabric cloth, retainer turnover panel 93 overturns and coordinates binder block 41 to compress nonwoven cloth, binder block 41 and retainer turnover panel 93 press down simultaneously, on base moulding push plate 45 pushes up, under damper for forming effect, nonwoven cloth bends and binder block 41 two sides of fitting; Edge forming push pedal 44 is released and is again folded nonwoven cloth, makes its binder block 41 two sides in addition of fitting completely; Base moulding push plate 45 is removed, and the first heat-sealing head 51, second heat-sealing head 52 is released, the nonwoven cloth of laminating when heat-sealing second time is folding; Base moulding push plate 45 departs from, and friction belt 24 is moved, and shaping cloth bag drops out by below mechanism.
The beneficial effect of the invention is: the structure optimizing non-woven bag forming machine, and mechanism's floor space is little, and production process is few, improves the production efficiency of non-woven bag.

Claims (13)

1. a non-woven bag forming machine, comprises support (1), and described support (1) is provided with material cutting mechanism (2), feed mechanism (3), shaping mechanism (4), heat sealing mechanism (5), is characterized in that: described shaping mechanism (4) includes binder block (41), first damper for forming (42), second damper for forming (43), edge forming push pedal (44), base moulding push plate (45), described the first damper for forming (42), second damper for forming (43) is symmetrical arranged, and described heat sealing mechanism (5) comprises symmetrically arranged first heat-sealing head (51), second heat-sealing head (52), described the first heat-sealing head (51), second heat-sealing head (52) is positioned at described the first damper for forming (42), the both sides of the second damper for forming (43), described binder block (41), base moulding push plate (45) is along Z-direction sliding motion, and described edge forming push pedal (44) is along X-direction sliding motion, and described heat-sealing head is along Y direction sliding motion, and described binder block (41) compresses and drives cloth to move to damper for forming, primary importance between heat-sealing head and the second place be positioned at above cloth, in described primary importance, described edge forming push pedal (44), base moulding push plate (45) have move and make cloth pasting to binder block (41) surface the 3rd position.
2. non-woven bag forming machine according to claim 1, it is characterized in that: described support (1) is provided with the first reductor (6), tooth bar (7), the rotating shaft of described reductor (6) is provided with the driven wheel (8) adaptive with tooth bar (7), described binder block (41) is provided with binder seat (411), and described tooth bar (7) is fixedly connected with binder seat (411).
3. non-woven bag forming machine according to claim 1, it is characterized in that: in described support (1), be provided with material carrying mechanism (9), described material carrying mechanism (9) comprises retainer turnover panel (93), and described retainer turnover panel (93) has the 4th position compressing cloth and the 5th position departing from cloth.
4. non-woven bag forming machine according to claim 3, it is characterized in that: described material carrying mechanism (9) comprises retainer support (91) and retainer cylinder (92), described retainer support (91) coordinates with support slippage, described retainer support (91) is hinged with retainer turnover panel (93), described retainer cylinder (92) one end and retainer support (91) hinged, the other end and retainer turnover panel (93) hinged, gangbar (94) is provided with in described material carrying mechanism (9), described gangbar (94) one end and retainer support (91) are fixed, the other end and binder seat (411) are fixed.
5. non-woven bag forming machine according to claim 2, is characterized in that: described binder seat (411) is fixed with flange slide block (412), and described support (1) is provided with the guide rail (413) adaptive with flange slide block (412).
6. non-woven bag forming machine according to claim 1, it is characterized in that: in described support (1), be provided with drive motors (16), second reductor (17), first cam box (18), second cam box (19), power transmission shaft (20), the motor shaft of described drive motors (16) is connected with the second reductor (17), described the second reductor (17) is provided with output shaft (171), described output shaft (171) is provided with the first bevel gear (172), first power shaft (181) of described the first cam box (18) is provided with the second bevel gear (182), described the first bevel gear (172) engages with the second bevel gear (182), connecting axle (21) is provided with between described power transmission shaft (20) and second power shaft (191) of the second cam box (19), between described the second power shaft (191) and connecting axle (21), between described connecting axle (21) and power transmission shaft (20), intermeshing bevel gear is equipped with between described power transmission shaft (20) and output shaft (171).
7. non-woven bag forming machine according to claim 6, it is characterized in that: described power transmission shaft (20) is provided with the first cam (201), described support (1) is hinged with the first swing arm (202), described the first swing arm (202) is provided with the first roller (203), described the first swing arm (202) is provided with first connecting rod (204), described first connecting rod (204) is fixedly connected with edge forming push pedal (44), described the first cam (201) is inconsistent with the first roller (203), the first back-moving spring (205) is provided with between described the first swing arm (202) and support (1).
8. non-woven bag forming machine according to claim 1, is characterized in that: be provided with in described support (1) and drive base moulding push plate (45) along the propulsion plant (25) of X-axis movement and drive base moulding push plate (45) along the lowering or hoisting gear (26) of Z axis movement.
9. non-woven bag forming machine according to claim 8, it is characterized in that: described support (1) is provided with camshaft (22), slip base (10), described camshaft (22) is driven by drive motors (16), described lowering or hoisting gear (26) includes to be located at lifter cam (222) on camshaft (22) and to drive base moulding push plate (45) along first transmission mechanism (261) of X-axis movement, described propulsion plant (25) includes to be located at propelling cam (223) on camshaft (22) and to drive base moulding push plate (45) along second transmission mechanism (251) of Z axis movement.
10. non-woven bag forming machine according to claim 9, it is characterized in that: described the first transmission mechanism (261) includes lifting fork (221), shift fork (451), described shift fork (451) is fixed on base moulding push plate (45), described base moulding push plate (45) coordinates with slip base (10) slippage, lifting groove (452) is provided with in described shift fork (451), described lifting fork (221) one end and support (1) hinged, the other end is located in lifting groove (452) by roller housing, described lifter cam (222) is inconsistent with lifting fork (221), the 3rd back-moving spring (228) is provided with between described slip base (10) and base moulding push plate (45).
11. non-woven bag forming machines according to claim 9, it is characterized in that: described the second transmission mechanism (251) includes the second swing arm (224), second connecting rod (226), described the second swing arm (224) one end and support (1) hinged, the other end and second connecting rod (226) hinged, described the second swing arm (224) is provided with the second roller (225), described second connecting rod (226) is hinged with slip base (10), described slip base (10) is coordinated with support (1) slippage by slide block, described slip base (10) direction of motion is vertical with base moulding push plate (45) direction of motion, described propelling cam (223) is inconsistent with the second roller (225), the second back-moving spring (227) is provided with between described the second swing arm (224) and support (1).
12. non-woven bag forming machines according to claim 1, it is characterized in that: in described support, be provided with some driving wheels (23), described driving wheel (23) is provided with friction belt (24), described friction belt (24) inner surface and damper for forming outer surface fit, and described friction belt (24) is moved along the z-axis direction at damper for forming place.
13. 1 kinds of bag moulding process, is characterized in that: comprise the steps that a. gets the raw materials ready: get and wait to roll over flat sheets; B. global formation, pleated sheet, forms (11), the bag back side (12) and bag bottom surface (13) before bag; C. side creases, folding bag bottom edge (131), makes it tilt to bag inside and vertical with bag bottom surface (13), forms folding line (14) simultaneously; D. fold, along folding line (14) folding bag front edge (111), bag dorsal edge (121), folded bag front edge (111), bag dorsal edge (121), bag bottom edge (131) are overlapped; E. seal. use heat-sealing head heat-sealing intersection, form bag side (15).
CN201410063762.6A 2014-02-25 2014-02-25 Non-woven bag forming machine and bag moulding process Active CN103817974B (en)

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CN112743853A (en) * 2020-12-18 2021-05-04 浙江欧诺机械有限公司 Side welding mechanism of non-woven bag forming machine
CN117549603B (en) * 2024-01-12 2024-04-26 江苏帕科医疗股份有限公司 Medical non-woven fabric processing equipment and processing technology thereof

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