CN109353076B - Glued double-sleeve bag manufacturing equipment - Google Patents

Glued double-sleeve bag manufacturing equipment Download PDF

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Publication number
CN109353076B
CN109353076B CN201811431580.4A CN201811431580A CN109353076B CN 109353076 B CN109353076 B CN 109353076B CN 201811431580 A CN201811431580 A CN 201811431580A CN 109353076 B CN109353076 B CN 109353076B
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CN
China
Prior art keywords
bag
colloid
assembly
bagging
opening
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Application number
CN201811431580.4A
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Chinese (zh)
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CN109353076A (en
Inventor
林树
许建武
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Fujian Minwu Machinery Co ltd
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Fujian Minwu Machinery Co ltd
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Publication of CN109353076A publication Critical patent/CN109353076A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31BMAKING CONTAINERS OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31B70/00Making flexible containers, e.g. envelopes or bags
    • B31B70/02Feeding or positioning sheets, blanks or webs
    • B31B70/04Feeding sheets or blanks
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G18/00Cultivation of mushrooms
    • A01G18/20Culture media, e.g. compost
    • A01G18/22Apparatus for the preparation of culture media, e.g. bottling devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31BMAKING CONTAINERS OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31B70/00Making flexible containers, e.g. envelopes or bags
    • B31B70/006Controlling; Regulating; Measuring; Safety measures
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31BMAKING CONTAINERS OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31B70/00Making flexible containers, e.g. envelopes or bags
    • B31B70/74Auxiliary operations
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31BMAKING CONTAINERS OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31B2160/00Shape of flexible containers
    • B31B2160/10Shape of flexible containers rectangular and flat, i.e. without structural provision for thickness of contents
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31BMAKING CONTAINERS OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31B2170/00Construction of flexible containers
    • B31B2170/20Construction of flexible containers having multi-layered walls, e.g. laminated or lined

Abstract

The invention relates to glued double-bagging manufacturing equipment which comprises a frame, and a bag taking mechanism A, a bag taking mechanism B and a bagging mechanism which are arranged on the frame at intervals from front to back. The invention aims to provide full-automatic gluing type double-sleeve bag manufacturing equipment. The invention has the advantages that: the bag taking mechanism A, the bag taking mechanism B, the bag sleeving mechanism and the bag collecting mechanism are arranged, so that the bag taking, bag opening, bag sleeving, bag sealing and bag collecting operations can be automatically completed, manual operation is not needed, the production efficiency is high, and the quality is reliable; in addition, bag taking mechanism B adopts the colloid suction head structure, not only can accomplish the operation of opening the bag, can also remain the colloid in the outer edge of inner bag mouth, when inner and outer bag cup joints each other, realizes automatic cementing fixed.

Description

Glued double-sleeve bag manufacturing equipment
Technical Field
The invention relates to the field of automation equipment, in particular to double-bagging manufacturing equipment.
Background
Some edible mushrooms (such as mushrooms) are planted in the traditional edible mushrooms, and the traditional edible mushrooms are cultivated by adopting a single-layer fungus bag, and the prior art is updated into a double-bag structure, namely, an inner bag is sleeved into an outer bag, and the bag openings of the inner bag and the outer bag are attached together through heat sealing or other modes so as to form a whole. When hypha grows to a certain extent, the outer bag is removed, the inner bag is reserved, the inner bag is favorable for moisture preservation of fungus sticks and is not easy to break, cultivation of hypha and mushroom growth are facilitated, and accordingly yield is improved.
The existing double-bagging production is mostly manufactured manually by matching semi-automatic equipment with workers, and the production efficiency is low. There are also few fully automatic equipments, which mechanically sleeve the inner bag and then sleeve the outer bag in the filling step when producing edible fungi, the mechanical structure is complex, the filling yield is reduced, and the production is unstable.
Disclosure of Invention
The invention aims to provide full-automatic gluing type double-sleeve bag manufacturing equipment.
The aim of the invention is realized by the following technical scheme: the glued double-bagging manufacturing equipment comprises a frame, and a bag taking mechanism A, a bag taking mechanism B and a bagging mechanism which are arranged on the frame at intervals from front to back; the bag taking mechanism A is used for grabbing an outer bag and opening the bag opening of the outer bag towards the bag sleeving mechanism, and the bag taking mechanism B is used for grabbing an inner bag and opening the bag opening of the inner bag towards the bag sleeving mechanism; the bag taking mechanism B comprises a bag supplying assembly B provided with an inner bag, a plurality of colloid suction heads used for sucking the outer edge of the inner bag mouth and residual adsorption colloid, and a power assembly B used for driving the colloid suction heads to complete bag supporting action; the bagging mechanism comprises a front supporting rod and a bagging driving assembly, wherein the front supporting rod is used for being inserted into the inner bag to enable an inner bag opening and an inner bag bottom to be arranged in a front-back extending mode, and the bagging driving assembly is used for driving the front supporting rod to move forward to the inner bag bottom and driving the inner bag to move into the outer bag to enable the inner bag and the outer bag to be overlapped.
Compared with the prior art, the invention has the advantages that:
the bag taking mechanism A, the bag taking mechanism B, the bag sleeving mechanism and the bag collecting mechanism are arranged, so that the bag taking, bag opening, bag sleeving, bag sealing and bag collecting operations can be automatically completed, manual operation is not needed, the production efficiency is high, and the quality is reliable;
in addition, bag taking mechanism B adopts the colloid suction head structure, not only can accomplish the operation of opening the bag, can also remain the colloid in the outer edge of inner bag mouth, when inner and outer bag cup joints each other, realizes automatic cementing fixed.
Drawings
Fig. 1 is a schematic view of an embodiment of a glued double-bag manufacturing apparatus according to the present invention.
Fig. 2 is an enlarged view at a in fig. 1.
Fig. 3 is a side view of fig. 1.
FIG. 4 is a schematic view of the structure of the upper colloid suction head.
FIG. 5 is a schematic view of the structure of the upper colloid suction head.
Fig. 6 is a schematic view of the trigger mechanism.
Fig. 7 is a schematic view of the trigger mechanism.
Fig. 8 is a schematic structural view of the bag collecting mechanism.
Fig. 9 is a schematic structural view of the lifting bag feeding mechanism.
Description of the reference numerals: 1 frame, 2 bag taking mechanism A, 21 upper vacuum chuck, 22 power component A, 23 lower vacuum chuck, 24 bag storage box A, 3 bag taking mechanism B, 31 upper colloid suction head, 311 glue outlet seat, 312 glue outlet barrel, 313 solid glue column, 314 pressure plate, 315 tension spring, 32 bag taking power component B, 33 lower colloid suction head, 34 bag storage box B, 4 bag covering mechanism, 41 front supporting rod, 43 bag driving component, 5 bag feeding power component, 51 fixed bracket, 52 linkage plate, 53 cylinder, 6 lifting bag supplying mechanism, 61 climbing plate, 62 lifting cylinder, 63 lifting guide rail, 64 falling stopping rack, 65 falling stopping ratchet, 7 bag collecting mechanism, 71 pre-clamping component, clamping plate, 712 gap, 713 clamping groove, 72 bag pulling component, 721 sliding seat, 722 bag pulling power component, 723 clamping part, 724 clamping power component, 73 bag collecting box, 8 triggering mechanism, 81 pushing seat, 82 triggering block, 83 telescopic rack, 84 linkage rod, 85 rotating gear, 86 swinging rod, 87 piece A, 88 triggering piece B and 89 triggering piece.
Detailed Description
The present invention is described in detail below with reference to the drawings and examples of the specification:
fig. 1 to 9 show an embodiment of a glued double-bagging manufacturing device according to the present invention.
The glued double-bagging manufacturing equipment comprises a frame 1, and a bag taking mechanism A2, a bag taking mechanism B3 and a bagging mechanism 4 which are arranged on the frame 1 at intervals from front to back;
the bag taking mechanism A2 is used for grabbing an outer bag and opening the bag opening of the outer bag towards the bagging mechanism 4, and the bag taking mechanism B3 is used for grabbing an inner bag and opening the bag opening of the inner bag towards the bagging mechanism 4; the distance between the bag taking mechanism A2 and the bag taking mechanism B3 is larger than the length of the inner bag;
the bag taking mechanism B3 comprises a bag supplying assembly B provided with an inner bag, a plurality of colloid suction heads used for sucking the outer edge of the inner bag mouth and residual adsorption colloid, and a power assembly B used for driving the colloid suction heads to complete bag supporting action;
the bagging mechanism 4 comprises a front supporting rod 41 which is used for being inserted into the inner bag to enable the inner bag opening and the inner bag bottom to be arranged in a front-back extending mode, and a bagging driving assembly 43 which drives the front supporting rod 41 to move forward to the inner bag bottom and drives the inner bag to move into the outer bag to enable the inner bag and the outer bag to be overlapped.
The number of the colloid suction heads is two, namely an upper colloid suction head 31 and a lower colloid suction head 33;
the upper colloid suction head 31 is positioned on the upper side of the bag supplying assembly B and the lower colloid suction head 33 and is used for sucking the upper edge of the opening of the inner bag;
the lower colloid suction head 33 is positioned at the rear side of the bag supply assembly B and is used for sucking the lower side edge of the opening of the inner bag;
the power assembly B comprises a bag taking power piece B32 for driving the upper colloid suction head 31 to vertically displace and a bag conveying power piece 5 for driving the upper colloid suction head 31 to displace between the bag supplying assembly B and the lower colloid suction head 33.
The bag feeding power piece 5 comprises a fixed bracket 51 arranged between the bag taking mechanism A2 and the bag taking mechanism B3, a linkage plate 52 arranged on the fixed bracket 51 in a sliding manner and an air cylinder 53 for driving the linkage plate 52 to move forwards and backwards; the bag taking power piece B32 is arranged on the linkage plate 52.
The bag taking mechanism A2 comprises a bag supplying assembly A provided with an outer bag, a plurality of vacuum chucks used for sucking the outer edges of the outer bag opening and a power assembly A22 used for driving the vacuum chucks to complete bag opening.
The vacuum chucks are two in number, namely an upper vacuum chuck 21 and a lower vacuum chuck 23;
the upper vacuum sucker 21 is positioned on the upper side of the bag supply assembly A and the lower vacuum sucker 23 and is used for sucking the upper edge of the opening of the outer bag;
the lower vacuum sucker 23 is positioned at the rear side of the bag supply assembly A and is used for sucking the lower edge of the opening of the outer bag;
the power assembly A22 drives the upper vacuum chuck 21 to vertically displace, and the power assembly A22 is arranged on the linkage plate 52.
The power component A22 is arranged at the front end of the linkage plate 52, and the bag taking power component B32 is arranged at the rear end of the linkage plate 52.
The number of the front supporting rods 41 is two, and the left and right of the two front supporting rods 41 are arranged at intervals;
the bagging driving assembly 43 is provided with a triggering mechanism 8 for controlling the two front supporting rods 41 to open and close mutually.
The triggering mechanism 8 comprises a pushing seat 81, two triggering blocks 82 which are distributed at intervals left and right and the middle of which is hinged on the pushing seat 81, a telescopic rack 83 which is arranged between the two triggering blocks 82 and stretches back and forth, two linkage rods 84 which are respectively connected with the rear end of the telescopic rack 83 and the outer side end of the triggering block 82, a rotating gear 85 which is meshed with the telescopic rack 83, and a swinging rod 86 which drives the rotating gear 85 to rotate forward and backward;
the rear end of the front stay bar 41 is connected to the inner side end of the trigger block 82;
the rear end of the travel of the bagging driving assembly 43 is provided with a touch piece A87 which enables the outer end of the swinging rod 86 to swing forwards, and the front side of the touch piece A87 is provided with a touch piece B88 which enables the outer end of the swinging rod 86 to swing backwards;
the inner end of the swing lever 86 is provided with a gear portion that mates with the rotation gear 85.
The touch piece A87 is a fixed stop block, the touch piece B88 is a V-shaped swing block, a reset stop strip 89 is further arranged on the rear side of the swing rod 86, the reset stop strip 89 is only matched with the V-shaped swing block, and the V-shaped swing block is driven to reset in the backward moving process of the bagging driving assembly 43.
The triggering mechanism 8 may also be a cylinder.
The upper colloid suction head 31 comprises a colloid outlet seat 311, a plurality of colloid outlet barrels 312 vertically arranged on the colloid outlet seat 311, solid colloid columns 313 slidably arranged in the colloid outlet barrels 312, a pressing plate 314 propped against the upper ends of the solid colloid columns 313, and a tension spring 315 connected between the colloid outlet seat 311 and the pressing plate 314; the lower end of the solid glue column 313 extends out of the bottom of the glue seat 311.
The structure of the lower colloid suction head 33 is identical to that of the upper colloid suction head 31.
The bag supplying assembly A comprises a bag storing box A24 and an outer bag which is placed in the bag storing box A24 towards the rear side; the bag supplying assembly B comprises a bag storing box B34 and an inner bag which is placed in the bag storing box B34 towards the rear side;
the bag storage box A24 and the bag storage box B34 are internally provided with a lifting bag supply mechanism 6;
the lifting bag supply mechanism 6 comprises two climbing plates 61 which are arranged at intervals up and down, a jacking cylinder 62 which is arranged between the two climbing plates 61 and controls the two climbing plates to open and close, a lifting guide rail 63 which guides the two climbing plates 61 and a vertically arranged falling-stopping rack 64; the climbing plates 61 are provided with falling stopping ratchets 65 matched with the falling stopping racks 64, and the falling stopping ratchets 65 are hinged with the climbing plates 61.
The front side of the bag taking mechanism A2 is also provided with a bag collecting mechanism 7;
the bag collecting mechanism 7 comprises a pre-clamping assembly 71 for initially positioning the front stay bar 41 and sleeving a bag body on the front stay bar, a bag pulling assembly 72 for clamping the pre-clamped bag body again and pulling the bag body to the front side, and a bag collecting box 73 arranged on the lower side of the running track of the bag pulling assembly 72.
The pre-clamping assembly 71 comprises two clamping plates 711 with mutually clamped rear ends, a gap 712 for accommodating the extraction of the bag body is reserved between the front ends of the two clamping plates 711, and the front end of the front stay bar 41 is inserted between the two clamping plates 711;
the bag pulling assembly 72 includes a sliding seat 721, a bag pulling power member 722 driving the sliding seat 721 to slide back and forth, two clamping portions 723 disposed at the rear side of the sliding seat 721, and a clamping power member 724 driving the clamping portions 723 to open and close;
the front side of the pre-clamping assembly 71 is provided with a clamping groove 713 which is matched with the clamping part 723 and vertically penetrates.
The clamping groove 713 is located between the two front struts 41.
The working process of the invention is as follows:
1. the bag feeding power piece 5 drives the upper colloid suction head 31 to move to the upper side of the bag storage box B34, the bag taking power piece B32 drives the upper colloid suction head 31 to extend into the bag storage box B34 to suck the upper side edge of the opening of the inner bag and reset, then the bag feeding power piece 5 drives the upper colloid suction head 31 to move to the upper side of the lower colloid suction head 33, the bag taking power piece B32 drives the upper colloid suction head 31 to move downwards, the lower colloid suction head 33 sucks the lower side edge of the opening of the inner bag, and finally the upper colloid suction head 31 moves upwards, and the opening of the inner bag is opened;
simultaneously, the upper vacuum sucker 21 moves to the upper side of the bag storage box A24, the power component A22 drives the upper vacuum sucker 21 to extend into the bag storage box A24 to suck the upper side edge of the opening of the outer bag and reset, then the bag feeding power piece 5 drives the upper vacuum sucker 21 to move to the upper side of the lower vacuum sucker 23, the power component A22 drives the upper vacuum sucker 21 to move downwards, so that the lower vacuum sucker 23 sucks the lower side edge of the opening of the outer bag, and finally the upper vacuum sucker 21 moves upwards and the opening of the outer bag is opened;
the openings of the inner bag and the outer bag face the bagging mechanism 4 and are positioned on the same straight line.
2. The bagging driving assembly 43 drives the front supporting rod 41 to move towards the bag taking mechanism B3, the front supporting rod 41 is inserted from the bag opening of the inner bag and is continuously inserted to the bottom of the inner bag, so that the inner bag in a sagging state is in a front-back extending arrangement.
3. The front stay bar 41 is driven by the bagging driving assembly 43 to continuously move towards the bag taking mechanism A2, (the front stay bar 41 draws the inner bag out of the bag taking mechanism B3, colloid remains on the outer edge of the opening of the inner bag), the front stay bar 41 is inserted into the inner bag from the bag opening of the outer bag and continuously inserted into the bag bottom of the outer bag, at the moment, the inner bag and the outer bag are mutually overlapped, and the residual colloid of the inner bag can bond the bag opening of the inner bag and the outer bag.
The two front supporting rods 41 always keep the attached state in the process, so that the front supporting rods can be accurately inserted from the bag openings of the inner bag and the outer bag.
4. The bagging driving assembly 43 drives the front stay bar 41 to continue to move towards the bagging mechanism 7, the swing rod 86 on the triggering mechanism 8 passes through the touch piece B88, the swing rod 86 swings backwards, the rotating gear 85 rotates clockwise, the telescopic rack 83 moves backwards, the inner side end of the pushing seat 81 turns outwards, the front stay bar 41 is driven to open, and the whole double bagging is unfolded left and right.
5. The front end of the front stay bar 41 is inserted from the rear end of the pre-clamping assembly 71, and the two clamping plates 711 are pried open, so that the double-sleeve bag in the pre-clamping assembly 71 is flat.
6. The clamping power piece 724 controls the clamping part 723 to clamp, clamps the bag body between the two front support rods 41, the bag pulling power piece 722 pulls the bag body out of the gap 712, and when the bag body is pulled out for a certain distance (the length of the bag body), the clamping power piece 724 controls the clamping part 723 to open, and the double bags automatically fall into the bag collecting box 73.
7. The bagging driving assembly 43 drives the front stay 41 to move backwards, and the reset stop 89 drives the trigger B88 to reset (the process swing rod 86 does not contact the trigger B88). The pocket drive assembly 43 continues to move rearward and as the swing lever 86 passes the trigger a87, the swing lever 86 swings forward and the two front struts 41 close to each other (the process reset bar 89 does not contact the trigger a 87).

Claims (10)

1. A glued double-sleeve bag manufacturing device, which is characterized in that: the automatic bag taking machine comprises a frame (1), a bag taking mechanism A (2), a bag taking mechanism B (3) and a bag sleeving mechanism (4) which are arranged on the frame (1) at intervals from front to back;
the bag taking mechanism A (2) is used for grabbing an outer bag and opening the bag opening of the outer bag towards the bagging mechanism (4), and the bag taking mechanism B (3) is used for grabbing an inner bag and opening the bag opening of the inner bag towards the bagging mechanism (4);
the bag taking mechanism B (3) comprises a bag supplying assembly B provided with an inner bag, a plurality of colloid suction heads used for sucking the outer side edge of the inner bag mouth and residual adsorption colloid, and a power assembly B used for driving the colloid suction heads to complete bag opening action;
the bagging mechanism (4) comprises a front stay bar (41) which is used for being inserted into the inner bag to enable the inner bag opening and the inner bag bottom to be arranged in a front-back extending mode, and a bagging driving assembly (43) which drives the front stay bar (41) to move forward to the inner bag bottom and drives the inner bag to move into the outer bag to enable the inner bag and the outer bag to be overlapped.
2. The glued double-bagging manufacturing device of claim 1, wherein: the two colloid suction heads are respectively an upper colloid suction head (31) and a lower colloid suction head (33);
the upper colloid suction head (31) is positioned on the upper side of the bag supply assembly B and the lower colloid suction head (33) and is used for sucking the upper side edge of the opening of the inner bag; the lower colloid suction head (33) is positioned at the rear side of the bag supply assembly B and is used for sucking the lower side edge of the opening of the inner bag;
the power assembly B comprises a bag taking power piece B (32) for driving the upper colloid suction head (31) to vertically displace and a bag conveying power piece (5) for driving the upper colloid suction head (31) to displace between the bag supplying assembly B and the lower colloid suction head (33).
3. The glued double-bagging manufacturing device of claim 2, wherein: the bag conveying power piece (5) comprises a fixed bracket (51) arranged between the bag taking mechanism A (2) and the bag taking mechanism B (3), a linkage plate (52) arranged on the fixed bracket (51) in a sliding manner and an air cylinder (53) for driving the linkage plate (52) to move forwards and backwards; the bag taking power piece B (32) is arranged on the linkage plate (52).
4. A glue double-pocket manufacturing apparatus as defined in claim 3, wherein: the bag taking mechanism A (2) comprises a bag supplying assembly A provided with an outer bag, a plurality of vacuum chucks used for sucking the outer side edges of the outer bag mouth and a power assembly A (22) used for driving the vacuum chucks to complete bag opening.
5. The glue double-pocket manufacturing apparatus of claim 4, wherein: the two vacuum chucks are respectively an upper vacuum chuck (21) and a lower vacuum chuck (23);
the upper vacuum sucker (21) is positioned on the upper side of the bag supply assembly A and the lower vacuum sucker (23) and is used for sucking the upper edge of the opening of the outer bag; the lower vacuum sucker (23) is positioned at the rear side of the bag supply assembly A and is used for sucking the lower edge of the opening of the outer bag;
the power assembly A (22) drives the upper vacuum chuck (21) to vertically displace, and the power assembly A (22) is arranged on the linkage plate (52).
6. The glued double-bagging manufacturing device of claim 1, wherein: the front support rods (41) are arranged in two, and the left and right sides of the two front support rods (41) are arranged at intervals; the bagging driving assembly (43) is provided with a triggering mechanism (8) for controlling the two front supporting rods (41) to open and close mutually.
7. The glue double-pocket manufacturing apparatus of claim 6, wherein: the triggering mechanism (8) comprises a pushing seat (81), two triggering blocks (82) which are distributed at intervals left and right and the middle of which is hinged on the pushing seat (81), a telescopic rack (83) which is arranged between the two triggering blocks (82) and stretches back and forth, two linkage rods (84) which are respectively connected with the rear end of the telescopic rack (83) and the outer side end of the triggering block (82), a rotating gear (85) which is meshed with the telescopic rack (83) and a swinging rod (86) which drives the rotating gear (85) to rotate forwards and backwards;
the rear end of the front stay bar (41) is connected with the inner side end of the trigger block (82);
the rear end of the travel of the bagging driving assembly (43) is provided with a touch piece A (87) which enables the outer end of the swinging rod (86) to swing forwards, and the front side of the touch piece A (87) is provided with a touch piece B (88) which enables the outer end of the swinging rod (86) to swing backwards;
the inner end of the swing lever (86) is provided with a gear part matched with the rotating gear (85).
8. The glued double-bagging manufacturing device of claim 2, wherein: the upper colloid suction head (31) comprises a colloid outlet seat (311), a plurality of colloid outlet barrels (312) vertically arranged on the colloid outlet seat (311), solid colloid columns (313) slidably arranged in the colloid outlet barrels (312), pressing plates (314) propped against the upper ends of the solid colloid columns (313) and tension springs (315) connected between the colloid outlet seat (311) and the pressing plates (314); the lower end of the solid glue column (313) extends out of the bottom of the glue outlet seat (311).
9. The glue double pocket manufacturing apparatus of any one of claims 1-8, wherein: the front side of the bag taking mechanism A (2) is also provided with a bag collecting mechanism (7);
the bag collecting mechanism (7) comprises a pre-clamping assembly (71) for preliminarily positioning the front stay bar (41) and sleeving a bag body on the front stay bar, a bag pulling assembly (72) for clamping the pre-clamping bag body again and pulling the bag body to the front side, and a bag collecting box (73) arranged on the lower side of the running track of the bag pulling assembly (72).
10. The glue double-pocket manufacturing apparatus of claim 9, wherein: the pre-clamping assembly (71) comprises clamping plates (711) with two mutually clamped rear ends, a gap (712) for accommodating the extraction of the bag body is reserved between the front ends of the two clamping plates (711), and the front end of the front supporting rod (41) is inserted between the two clamping plates (711);
the bag pulling assembly (72) comprises a sliding seat (721), a bag pulling power piece (722) for driving the sliding seat (721) to slide forwards and backwards, two clamping parts (723) arranged on the rear side of the sliding seat (721) and a clamping power piece (724) for driving the clamping parts (723) to open and close;
the front side of the pre-clamping assembly (71) is provided with a clamping groove (713) which is matched with the clamping part (723) and penetrates through the clamping groove vertically.
CN201811431580.4A 2018-07-04 2018-11-27 Glued double-sleeve bag manufacturing equipment Active CN109353076B (en)

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CN201810726645 2018-07-04
CN2018107266451 2018-07-04

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CN109353076B true CN109353076B (en) 2023-12-01

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CN201810892991.7A Active CN108812073B (en) 2018-07-04 2018-08-07 Automatic double-bagging manufacturing equipment for edible fungus sticks
CN201811431580.4A Active CN109353076B (en) 2018-07-04 2018-11-27 Glued double-sleeve bag manufacturing equipment
CN201821963641.7U Withdrawn - After Issue CN209159028U (en) 2018-07-04 2018-11-27 The double bagging manufacturing equipments of veneer type

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CN201821963641.7U Withdrawn - After Issue CN209159028U (en) 2018-07-04 2018-11-27 The double bagging manufacturing equipments of veneer type

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Publication number Priority date Publication date Assignee Title
CN108812073B (en) * 2018-07-04 2023-09-01 福建省闽武机械有限公司 Automatic double-bagging manufacturing equipment for edible fungus sticks
CN109691353A (en) * 2019-01-15 2019-04-30 西北农林科技大学 A kind of horizontal lentinus edodes strain stick automatic bag sheathing device

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