CN214524468U - Automatic bag filling mechanism based on woven bag - Google Patents

Automatic bag filling mechanism based on woven bag Download PDF

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Publication number
CN214524468U
CN214524468U CN202120233329.8U CN202120233329U CN214524468U CN 214524468 U CN214524468 U CN 214524468U CN 202120233329 U CN202120233329 U CN 202120233329U CN 214524468 U CN214524468 U CN 214524468U
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China
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wall
driving assembly
barrel wall
fixed
movable
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CN202120233329.8U
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Chinese (zh)
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雷昌毅
殷彬富
盛荣波
朱河龙
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Sanlux Co ltd
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Sanlux Co ltd
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Abstract

The utility model relates to an automatic bag filling mechanism based on woven bags, including frame and push pedal, be equipped with movable bucket wall, fixed bucket wall, baffle and drive assembly one and two in the frame, drive assembly one is used for controlling being close to and separating of movable bucket wall and fixed bucket wall, and movable bucket wall and fixed bucket wall form the storage vat, the both ends of storage vat length direction are all opened, and the upper end of direction of height forms the feed inlet, drive assembly two is used for controlling the length direction of push pedal in the storage vat and moves, the baffle is located the storage vat below and is used for the clearance between shutoff movable bucket wall and the fixed bucket wall; the advantages are that: the storage vat of the scheme is of a split structure, the fixed vat wall and the movable vat wall are utilized to perform baffle matching action, the volume of the container can be enlarged, failure in charging caused by factors such as flexibility and irregularity of the V-belt is greatly reduced, and in addition, vibration compensation is formed through the reciprocating motion of the movable vat wall, so that a gap between the V-belt and the storage vat is eliminated.

Description

Automatic bag filling mechanism based on woven bag
Technical Field
The utility model relates to a filling technical field especially relates to an automatic bag mechanism of irritating based on braided bag.
Background
For filling of flexible objects such as triangular belts, different from the filling industry of common feed and the like, the triangular belts have certain flexibility and more product types (different in length, width and the like), so that the filling state is uncertain, and meanwhile, in order to improve the utilization rate of woven bags, more than 10 bundles of triangular belts are required to be placed into each bag in the industry, and the loading amount is large. The method for filling the bags on the market mainly comprises the following steps:
firstly, an operator manually props up a woven bag opening, and the triangular belt is stuffed into the woven bag by matching the other hand or the other person;
secondly, a bag filling device is adopted, the bundled V-belt is placed into a cylindrical storage bucket, the front end of the storage bucket is provided with an opening for sleeving a woven bag, the rear end of the storage bucket is provided with a push plate controlled by a cylinder, and the upper part of the storage bucket is provided with a feeding hole; after the V belt was packed into a certain amount, need artifically fill in the V belt in the storage vat space, put full certain amount's V belt in the storage vat, overlap the braided bag sack at the storage vat sack, fill in the storage vat gap with the V belt in the storage vat once more, ensure that the V belt highest face is less than and weaves the highest face of sack, later the cylinder promotes the V belt in the storage vat, irritates into the braided bag.
Aiming at the mode of manually filling the bag, the following defects exist: the V-belt is irregular, and has more size specifications and large size. The triangular belt has relatively large friction force when filling the bag, and the manual bag filling is very difficult. Aiming at the adoption of the existing bag filling equipment, the following defects exist: due to the limitation of the specification of the woven bag, the diameter of the storage barrel is smaller, the opening of the upper discharging notch is smaller, and product accumulation is easy to occur when the triangular belt is placed and exceeds the highest surface of the cylindrical storage barrel; when the storage vat bung hole was sheathe the in the braided bag to the manual work, need hard stopper in the V-belt toward the storage vat space of will heightening to the braided bag sack is held to a hand, and the artifical supplementary degree of opening that makes its sack is bigger, and artifical intensity of labour is bigger, and the filling degree of difficulty is big, inefficiency.
Based on this, the present disclosure is thus directed.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an automatic bag mechanism of irritating based on braided bag to improve the bag degree of automation of irritating of flexible article such as V belt, improve production efficiency.
In order to achieve the above purpose, the technical solution of the present invention is as follows:
the utility model provides an automatic bag mechanism of irritating based on braided bag, includes frame and push pedal, is equipped with movable bucket wall, fixed bucket wall, baffle and drive assembly one and two in the frame, drive assembly one is used for controlling being close to and separating of movable bucket wall and fixed bucket wall, and movable bucket wall and fixed bucket wall form the storage vat, the equal opening in both ends of storage vat length direction, the upper end of direction of height forms the feed inlet, drive assembly two is used for controlling the length direction of push pedal in the storage vat and removes, the baffle is located the storage vat below and is used for the clearance between shutoff movable bucket wall and the fixed bucket wall.
Furthermore, the second driving assembly is arranged below the material storage barrel, a connecting rod is fixed between the driving end of the second driving assembly and the push plate, and the connecting rod penetrates through a gap between the wall of the movable barrel and the wall of the fixed barrel; and a third driving assembly is arranged on the rack and used for controlling the baffle to be close to or far away from the gap between the movable barrel wall and the fixed barrel wall, and when the baffle is far away from the gap between the movable barrel wall and the fixed barrel wall, the connecting rod can move in the length direction of the gap.
Furthermore, a supporting wheel for supporting the baffle plate is fixed on the frame.
Furthermore, one end of the movable barrel wall and one end of the fixed barrel wall in the length direction are both of an up-down inverted opening structure.
Furthermore, a driving assembly IV and a gland are arranged on the rack, and the driving assembly IV is used for controlling the gland to plug or keep away from the feeding hole of the storage barrel.
Furthermore, the driving assembly IV is an air cylinder, the gland and the cylinder body of the air cylinder are hinged to the rack, and the telescopic end of the air cylinder is hinged to the gland.
Furthermore, a limit screw for limiting the rotation of the driving assembly is arranged on the frame.
Furthermore, the movable barrel wall is connected with the rack in a sliding mode.
Furthermore, the baffle is connected with the frame in a sliding mode.
The utility model has the advantages that:
1. the storage vat of the prior art scheme is a fixed integral structure, the volume of the container can not be expanded, and the triangular belt can overflow out of the vat during charging, and needs to be adjusted manually, but the utility model discloses a storage vat is a split structure, utilizes the fixed vat wall and the movable vat wall to perform baffle plate matching action, can enlarge the volume of the container, greatly reduces the failure of charging caused by the factors such as the flexibility and irregularity of the triangular belt, and in addition, forms vibration compensation through the reciprocating motion of the movable vat wall, so as to eliminate the gap between the triangular belt and the storage vat;
2. in order to further improve the success rate of filling the bag, the gland is pressed on the barrel during filling the bag to form a sealing surface with the fixed barrel device and the movable barrel device, so that the overflow risk possibly caused by excessive triangular belts is avoided, and the triangular belts in the barrel are completely filled into the woven bag.
Drawings
Fig. 1 is a schematic configuration diagram of the present invention in an embodiment;
FIG. 2 is a schematic top view of FIG. 1;
FIG. 3 is a rear view of FIG. 1;
FIG. 4 is a schematic right-side view of FIG. 1;
FIG. 5 is a schematic view A-A of FIG. 2;
FIG. 6 is an enlarged view of portion A of FIG. 1;
description of the reference symbols
The device comprises a first driving component 101, a fixed barrel wall 102, a gland 103, a push plate 104, a second driving component 105, a third driving component 106, a fourth driving component 107, a baffle 108, a movable barrel wall 109, a support 110, a limit screw 111, a slide rail 112, a connecting rod 113, an upper inverted opening 114, a lower inverted opening 114 and a supporting wheel 115.
Detailed Description
The present invention will be described in further detail with reference to examples.
The present embodiment provides an automatic bag filling mechanism based on woven bags, as shown in fig. 1 to 6, including a frame, a movable barrel wall 109, a fixed barrel wall 102, a baffle 108, a push plate 104, a press cover 103, and a plurality of driving components.
The movable barrel wall 109 and the fixed barrel wall 102 are symmetrically arranged on the rack, the movable barrel wall 109 is connected to the rack in a sliding manner through a sliding rail 112, the movable barrel wall 109 is connected with the sliding rail 112 through a support 110, and the fixed barrel wall 102 is fixed to the rack through the support 110. A first driving assembly 101 is fixed on the frame, and the first driving assembly 101 is used for controlling the movable barrel wall 109 to approach and separate from the fixed barrel wall 102. The movable barrel wall 109 and the fixed barrel wall 102 form a storage barrel after approaching, and since the movable barrel wall 109 and the fixed barrel wall 102 are both arc-shaped barrel walls smaller than a semicircle in this embodiment, the storage barrel formed by the movable barrel wall 109 and the fixed barrel wall 102 forms openings at both ends in the length direction, a feed inlet is formed at the upper end in the height direction, and one open end of the storage barrel is used for being sleeved with a woven bag.
The frame is located the below of storage vat and is fixed with drive assembly two 105, and drive assembly two 105 is used for controlling push pedal 104 to remove on the length direction in the storage vat for push the braided bag with the material in the storage vat. The second driving assembly 105 is connected with the push plate 104 through the connecting rod 113, and in order to facilitate the connection between the second driving assembly 105 and the push plate 104, the closest distance between the movable barrel wall 109 and the fixed barrel wall 102 is set to be a distance slightly larger than the width of the connecting rod 113, and meanwhile, the distance does not enable the material (particularly, a triangular belt) in the storage barrel to fall. The second driving assembly 105 of the embodiment adopts an electric module, and the second driving assembly 105 is arranged below the storage barrel, so that the volume of the whole machine can be reduced, and the structure of the bag filling mechanism is more compact.
To solve the problem that when the movable barrel wall 109 is separated from the fixed barrel wall 102, the distance between the movable barrel wall and the fixed barrel wall is increased, which may cause the material in the storage barrel to drop, the baffle 108 is disposed below the storage barrel for blocking the gap between the movable barrel wall 109 and the fixed barrel wall 102. However, in order to avoid interference between the connecting rod 113 and the baffle 108 when the push plate 104 moves, the third driving assembly 106 is provided on the frame in this embodiment, and the third driving assembly 106 is used for controlling the baffle 108 to approach or move away from the gap between the movable barrel wall 109 and the fixed barrel wall 102. As shown in fig. 5, when the push plate 104 needs to operate, the third driving component 106 drives the baffle 108 to move to the side away from the movable barrel wall 109, thereby yielding. In addition, a support wheel 115 for supporting the baffle 108 is fixed on the frame, and the baffle 108 and the frame are slidably connected through a slide rail 112, so as to increase the stability of the operation of the baffle 108.
In order to facilitate the woven bag to be sleeved into the storage barrel, as shown in fig. 4, in this embodiment, one end of the movable barrel wall 109 and one end of the fixed barrel wall 102 are designed to be in the form of an upper inverted opening 114 and a lower inverted opening 114, which serve as a guide for the woven bag to be sleeved, so that the woven bag can be more easily and completely sleeved into the barrel opening.
In the prior art, when the push plate 104 pushes the material, a phenomenon that part of the material is pushed out of the feed port exists, and in order to solve the defect, the press cover 103 and the driving assembly four 107 are additionally arranged in the embodiment, and the driving assembly four 107 is used for controlling the press cover 103 to block or keep away from the feed port of the storage barrel. The fourth driving assembly 107 of the present embodiment employs an air cylinder, and the first driving assembly 101 and the third driving assembly 106 of the present embodiment also employ an air cylinder. As shown in fig. 1, the gland 103 and the cylinder body of the cylinder are hinged on the frame, the telescopic end of the cylinder is hinged with the gland 103, when the driving assembly four 107 extends out, the gland 103 blocks the feeding hole, and when the driving assembly four 107 retracts, the gland 103 opens the feeding hole. Since the driving assembly four 107 can rotate continuously when operating, in order to avoid over-rotation, as shown in fig. 6, a limit screw 111 for limiting the rotation of the driving assembly four 107 is disposed on the frame.
The use flow of the bag filling mechanism of the embodiment is as follows:
s01: the second driving assembly 105 drives the push plate 104 to move to one end of the storage barrel, which is far away from the upper inverted port 114 and the lower inverted port 114, and the fourth driving assembly 107 drives the gland 103 to open the feeding port;
s02: the first driving component 101 drives the movable barrel wall 109 to be far away from the fixed barrel wall 102 and to be opened for a certain distance with the fixed barrel wall 102, so that the feeding hole is enlarged;
s03: the third driving component 106 drives the baffle 108 to block the gap between the movable barrel wall 109 and the fixed barrel wall 102, and the baffle 108 is supported on the supporting wheels 115 when extending out, so that the deformation of the baffle 108 can be reduced, and the initial position of the storage barrel is finished;
s04: the bundled materials are put into a storage bucket from a feeding port, and when one bundle is placed, a first driving assembly 101 drives a movable bucket wall 109 to do reciprocating motion for one time, wherein the reciprocating motion is close to the fixed bucket wall 102 and far away from the fixed bucket wall 102, and until the last bundle of materials is placed, the reciprocating motion process of the movable bucket wall 109 can form vibration compensation so as to eliminate a gap between the triangular belt and the storage bucket; after the placement is finished, the first driving assembly 101 drives the movable barrel wall 109 to be close to the fixed barrel wall 102;
s05: after the action is finished, the fourth driving assembly 107 drives the gland 103 to seal the feeding hole;
s06: woven bags are sleeved in the upper and lower inverted openings 114 of the storage barrel;
s07: the driving component III 106 drives the bottom baffle 108 to be far away from the gap between the movable barrel wall 109 and the fixed barrel wall 102, so that abdication of the connecting rod 113 is realized;
s08: the second driving assembly 105 drives the push plate 104 to move towards one end of the woven bag, and materials in the storage barrel are pushed into the woven bag;
s09: after the push-in is completed, the process returns to step S01, and the operation is repeated.
The above-mentioned embodiments are merely illustrative of the inventive concept and are not intended to limit the scope of the invention, which is defined by the claims and the insubstantial modifications of the inventive concept can be made without departing from the scope of the invention.

Claims (9)

1. The utility model provides an automatic irritate a bag mechanism based on braided bag, includes frame and push pedal, its characterized in that: the rack is provided with a movable barrel wall, a fixed barrel wall, a baffle, a first driving assembly and a second driving assembly, wherein the first driving assembly is used for controlling the movable barrel wall to be close to and separated from the fixed barrel wall, the movable barrel wall and the fixed barrel wall form a storage barrel, the two ends of the storage barrel in the length direction are both opened, the upper end of the storage barrel in the height direction forms a feeding hole, the second driving assembly is used for controlling the push plate to move in the length direction in the storage barrel, and the baffle is located below the storage barrel and is used for plugging a gap between the movable barrel wall and the fixed barrel wall.
2. The automatic bag filling mechanism based on the woven bag as claimed in claim 1, wherein: the driving assembly II is arranged below the material storage barrel, a connecting rod is fixed between the driving end of the driving assembly II and the push plate, and the connecting rod penetrates through a gap between the wall of the movable barrel and the wall of the fixed barrel; and a third driving assembly is arranged on the rack and used for controlling the baffle to be close to or far away from the gap between the movable barrel wall and the fixed barrel wall, and when the baffle is far away from the gap between the movable barrel wall and the fixed barrel wall, the connecting rod can move in the length direction of the gap.
3. The automatic bag filling mechanism based on the woven bag as claimed in claim 2, wherein: and a supporting wheel for supporting the baffle plate is fixed on the frame.
4. The automatic bag filling mechanism based on the woven bag as claimed in claim 1, wherein: one end of the movable barrel wall and one end of the fixed barrel wall in the length direction are both of an up-down inverted opening structure.
5. The automatic bag filling mechanism based on the woven bag as claimed in claim 1, wherein: and a fourth driving assembly and a gland are arranged on the rack, and the fourth driving assembly is used for controlling the gland to plug or keep away from the feed inlet of the storage barrel.
6. The automatic bag filling mechanism based on the woven bag as claimed in claim 5, wherein: the driving assembly IV is an air cylinder, the gland and the cylinder body of the air cylinder are hinged to the rack, and the telescopic end of the air cylinder is hinged to the gland.
7. The automatic bag filling mechanism based on the woven bag as claimed in claim 6, wherein: and the rack is provided with a limiting screw for limiting the rotation of the driving assembly.
8. The automatic bag filling mechanism based on the woven bag as claimed in claim 1, wherein: the movable barrel wall is connected with the frame in a sliding mode.
9. The automatic bag filling mechanism based on the woven bag as claimed in claim 2, wherein: the baffle is connected with the frame in a sliding manner.
CN202120233329.8U 2021-01-27 2021-01-27 Automatic bag filling mechanism based on woven bag Active CN214524468U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120233329.8U CN214524468U (en) 2021-01-27 2021-01-27 Automatic bag filling mechanism based on woven bag

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120233329.8U CN214524468U (en) 2021-01-27 2021-01-27 Automatic bag filling mechanism based on woven bag

Publications (1)

Publication Number Publication Date
CN214524468U true CN214524468U (en) 2021-10-29

Family

ID=78312499

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120233329.8U Active CN214524468U (en) 2021-01-27 2021-01-27 Automatic bag filling mechanism based on woven bag

Country Status (1)

Country Link
CN (1) CN214524468U (en)

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