CN214354541U - Stringing bag production facility - Google Patents

Stringing bag production facility Download PDF

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Publication number
CN214354541U
CN214354541U CN202023251301.1U CN202023251301U CN214354541U CN 214354541 U CN214354541 U CN 214354541U CN 202023251301 U CN202023251301 U CN 202023251301U CN 214354541 U CN214354541 U CN 214354541U
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China
Prior art keywords
station
rope
turns over
guide
bag
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Active
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CN202023251301.1U
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Chinese (zh)
Inventor
丁善玉
潘孝华
薛道良
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Zhejiang Chovyting Machinery Co ltd
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Zhejiang Chovyting Machinery Co ltd
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Priority to CN202023251301.1U priority Critical patent/CN214354541U/en
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Abstract

The utility model discloses a stringing bag production facility is equipped with the sack in proper order on major ingredient delivery path and turns over a station, the station that punches, reverse a station that resets, individual layer turn over the station, the leading-in station of rope, upper strata membrane reset station, rope chamber shaping station and bag body shaping station, the sack turns over a station and is equipped with a device one that turns over, the station that punches is provided with perforating device, reverse a station that resets is equipped with a device two that turns over, the individual layer turns over the station and is equipped with a device three that turns over, the leading-in station of rope is equipped with the rope leading-in device and turns over a device four, the upper strata membrane resets the station and is equipped with a device five that turns over, rope chamber shaping station is equipped with the involution device, bag body shaping station is equipped with seals and cuts device or heat-seal point and cuts the device. The utility model discloses a simple turns over an action and punches, the rope threading is realized to the involution from the major ingredient, is applicable to mechanized automatic production.

Description

Stringing bag production facility
Technical Field
The utility model relates to a threading bag production facility is applicable to flexible material such as non-woven fabrics, paper, is particularly useful for plastic film threading disposal bag.
Background
The stringing bag is a handbag, a hand rope is threaded at the bag opening part of the bag body, a notch for pulling the hand rope out is formed in the bag opening part, the hand rope can be pulled out from the notch to serve as a hand part of the bag body, and the bag opening can be tightened up by the hand rope to play a dustproof role. The stringing mode of stringing bag also has the multiple, and the common cloth stringing bag of weaving has, adopts the mode processing of sewing, and the film stringing bag needs artifical stringing, has the problem that production efficiency is low, and the processing cost is high.
Disclosure of Invention
In view of the technical problem who exists among the background art, the utility model aims at providing a threading bag production facility, realizes the automatic production of threading bag.
In order to solve the technical problem, the utility model discloses a following technical scheme: this rope-threading bag production facility, its characterized in that is equipped with the sack in proper order on main material transfer path and turns over a station, the station that punches, reverse turn over a reset station, individual layer turn over open the station, the leading-in station of rope, upper strata membrane reset station, rope chamber shaping station and bag body shaping station, the sack turns over a station and is equipped with a device one, the station that punches is provided with perforating device, reverse turn over a reset station and be equipped with a device two, the individual layer turn over open the station and be equipped with a device three, the leading-in station of rope is equipped with rope leading-in device and turns over a device four, upper strata membrane reset station is equipped with turns over a device five, rope chamber shaping station is equipped with the involution device, bag body shaping station is equipped with seals and cuts device or heat-seal point and cuts the device.
The first turning-over device comprises a turning-over plate and a guide roller, the folding edge of the turning-over plate is inclined, the turning-over plate comprises a front plate and a rear plate, an included angle is formed between the front plate and the rear plate, the guide roller is arranged on the side of the joint of the front plate and the rear plate, the main material is wound below the guide roller and the turning-over plate, and the turning-over part of the main material is turned over upwards along the folding edge.
And a compression roller is arranged on the side of the guide plate and is arranged above the main material.
Still be equipped with between deflector and the deflector roll and turn over the folded plate, turn over the inclined setting of folded plate and form the contained angle with the direction, just turn over the folded plate and have the folding limit that the slope set up, the front end and the direction limit of folding limit link up.
The utility model discloses a simple turns over an action and realizes the wire rope handling operation from punching, the wire rope handling of major ingredient to the involution, is applicable to mechanized automatic production, and the utility model discloses a production facility then adopts above-mentioned technology to realize the automated production of wire rope handling bag, compares production efficiency with current artifical wire rope handling and improves by a wide margin.
Drawings
Fig. 1 is a schematic view of the forming process of the rope-through bag of the present invention.
Fig. 2 is the utility model discloses the sack schematic diagram that punches.
Fig. 3 is a schematic view of the present invention in a single layer.
Fig. 4 is a schematic diagram of the rope guide of the present invention.
Fig. 5 is a schematic view of the rope threading of the present invention.
Fig. 6 is a schematic view of the rope cavity forming of the present invention.
Fig. 7 is a schematic view of the processing steps of the rope-threading bag of the present invention.
Fig. 8 is a schematic view of the utility model of a stringing bag.
Fig. 9 is a schematic view of a third folding device of the present invention.
Detailed Description
The following describes details and operational principles of embodiments and examples of the present invention with reference to the drawings. The utility model discloses a 1 major ingredient adopts the film coil stock, and one side closure of major ingredient is base 2, and another side opening then is sack 3, if the left and right sides of 1 major ingredient is all closed, then opens one side with cutting knife 13 and opens the formation opening.
Referring to the attached drawings 1-8, the processing technology of the rope-through bag comprises the following processing steps:
1) the bag mouth is turned over, the double-layer bag mouth 3 of the main material is turned over upwards or downwards at the same time, and the turned side edge is a turned edge 4;
2) punching a bag opening, conveying the turned main material 1 to a punching station, punching holes at the turned edge, forming a notch 5 for taking a rope at the bag opening, wherein the notch can be in a semicircular shape, a square shape and the like, and the punching position is preferably the middle position of the bag opening of the unit rope threading bag;
3) reversely turning and resetting, after punching, reversely turning and resetting the double-layer bag mouth 3, and after the punched part is unfolded, forming a rope taking hole 6 on the double-layer main material;
4) the single layer is turned, the upper layer film 8 at the opening of the main material bag is turned upwards, and the rope taking holes 6 on the upper layer film 8 and the lower layer film 7 are exposed simultaneously;
5) threading, wherein a main material 1 is moved to a rope leading-in station, a threading auxiliary material is divided into a first auxiliary material 10 and a second auxiliary material 9, the threading auxiliary material is a hand-held rope or a hand-held belt, the first auxiliary material and the second auxiliary material are led in, the first auxiliary material 10 covers an upper film 8 which is turned over, the second auxiliary material 9 covers a lower film 7, then the upper film is turned over downwards, the first auxiliary material is coated, the lower film is turned over upwards, the second auxiliary material is coated, in the step 1), a turning edge 4 is formed after a bag opening is turned over, holes are formed in the turning edge, and therefore when the upper film and the lower film are turned over, the effect of turning over along the turning edge 4 is better, the upper film 8 and the lower film are aligned up and down, namely, the upper film is turned over downwards along the turning edge, and the lower film is turned over upwards along the turning edge;
6) the upper layer film is reset, after the rope threading is completed, the upper layer film 8 which is turned upwards is turned downwards and reset, the first auxiliary material and the second auxiliary material are respectively exposed in the rope taking holes 6 in the upper layer film and the lower layer film, and when the rope pulling device is used, a user can pull out the first auxiliary material and the second auxiliary material from the rope taking holes.
7) Forming a rope cavity, wherein the edge of the bag mouth of the main material is a sealing edge 12, after the upper membrane 8 is reset, the sealing edge of the upper membrane is sealed with the upper membrane 8 to form an upper rope cavity 14, and the sealing edge of the lower membrane is sealed with the lower membrane 7 to form a lower rope cavity 11, wherein the sealing can be performed by heat sealing or ultrasonic sealing or glue bonding;
8) and (3) forming the bag body, after the stringing is finished, transversely sealing the continuous main material to form an independent stringing bag body, sealing the first auxiliary material 10 and the second auxiliary material 9 with the bag body at the same time, and forming the independent stringing bag body by taking the sealing edge as a limit. The main material and the stringing auxiliary material can be sent to a sealing station for sealing by hot pressing, and can also be sealed by ultrasonic waves, bonded by glue and the like. The sealed stringing bag body can still be kept in a continuous mode or a unit mode, and if the unit mode is selected, the continuous main materials can be sealed and cut into the unit stringing bag body by adopting a sealing and cutting device; if continuous rolling bags are kept, the main materials can be transversely sealed and point-cut by adopting a heat-sealing point-cutting device, and the point-cut part is arranged in the middle of heat sealing, so that the bag bodies still keep a continuous state, only a point-cut line is formed between the adjacent bag bodies, and the unit bag bodies can be formed by tearing from the point-cut line when in use.
Referring to the attached figure 8, two sides 15 of the formed rope threading bag are sealed, and the auxiliary rope threading materials 9 and 10 are sealed with the two sides of the bag body, so that two ends of the auxiliary rope threading material are fixed with the bag body, a rope taking hole 6 is formed in the bag opening 3 of the bag body, the auxiliary rope threading material is exposed from the rope taking hole, and the auxiliary rope threading material can be pulled out from the upper rope cavity and the lower rope cavity. When the portable bag is used, the first auxiliary material 10 and the second auxiliary material 9 are pulled out from the rope taking hole, the upper rope cavity 14 and the lower rope cavity 11 are compressed, the bag opening of the bag body is naturally tightened, the first auxiliary material and the second auxiliary material are used as a hand-held rope, the hand-held rope can be further tightened, the bag opening is completely tightened, and the first auxiliary material and the second auxiliary material are knotted, so that the bag opening is closed, and a dustproof effect is achieved.
A first turning device is arranged on the bag opening turning station, a punching device 16 is arranged on the punching station, the punching device comprises a punching knife and a punching seat matched with the punching knife, when main materials are conveyed to the punching station, the punching knife is pressed with the punching seat, and a hole for taking a rope is formed at the turning edge of the bag opening of the main materials; the reverse turning reset station is provided with a turning device II, the single-layer turning station is provided with a turning device III, the rope guide station is provided with a rope guide device and a turning device IV, the rope guide device adopts a guide rod, a rope threading auxiliary material bypasses the guide rod and is pulled forwards, the guide rod enables the auxiliary material I to be covered on the turned upper film, the auxiliary material II is covered on the lower film, if the rope threading auxiliary material is led in from the side, the guide rod is obliquely arranged, the rope threading auxiliary material is turned and is consistent with the main material conveying direction, and if the rope threading auxiliary material is led in from the upper part, the rope threading auxiliary material is changed from vertical conveying to horizontal conveying; the rope cavity forming station is provided with a rope cavity forming device, the rope cavity forming device is used for forming a rope cavity, the rope cavity forming device is a heat sealing device, the rope cavity forming device is used for longitudinally sealing, an upper heat sealing die and a lower heat sealing die are used for pressing and heat sealing, an ultrasonic device can be used for conducting ultrasonic sealing, the sealing edge can be glued, and sealing can be achieved in a bonding mode; the bag body forming station is provided with a sealing and cutting device or a heat-sealing and point-cutting device, and the sealing and cutting device is used for sealing and cutting continuous main materials and stringing auxiliary materials to form a unit stringing bag. The first one adopts a hot cutter which seals and cuts the main material and the stringing auxiliary material to form an independent unit stringing bag; the second method adopts sealing and cold cutting knife combination, namely, the main material and the stringing auxiliary material are transversely sealed to form an independent stringing bag, two sealing lines are provided, one sealing line is the rear side sealing line of the front bag body, the other sealing line is the front side sealing line of the rear bag body, the sealing mode can be heat sealing, ultrasonic sealing and the like, and the cold cutting knife is used for cutting off the two sealing lines after sealing to enable the front bag body to become an independent unit stringing bag; and the third type adopts a heat-sealing heat cutter which is formed by combining two heat-sealing cutters and a cutting-off cutter, wherein the cutting-off cutter is arranged between the two heat-sealing cutters, the two heat-sealing cutters are respectively used for sealing the side edges of the front bag body and the rear bag body, and the main material and the stringing auxiliary material are cut off at the same time of heat sealing. The structure of the heat-sealing point breaking device is similar to that of the second structure and the third structure, and only the cold cutter or the cutting knife is replaced by the point breaking knife, so that the bag bodies still keep a continuous state, only a point breaking line is formed between the adjacent bag bodies, and the bag bodies can be formed by breaking from the point breaking line when in use.
The second turnover device and the fifth turnover device reset the turnover part, and the guide part 17 can be used for guiding, for example, a guide rod or a guide plate is inclined, so that the turnover part of the main material is reversely turned along the guide part to reset. The first turning device, the third turning device and the fourth turning device can adopt guide grooves, for example, guide rods or guide plates form guide grooves, and the turning parts of the main materials are turned along the guide grooves. In this embodiment, turn over a device one including deflector 25 and deflector roll 20, the deflector sets up in the place ahead of deflector roll, just deflector roll and deflector are not at same height, and the two forms high fall, and the material can not appear tensile when turning over like this, if the two is on same horizontal plane, must lead to the fact the material tensile when turning over, influences product quality, deflector 25 has guiding edge 24, main material 1 turns over along guiding edge 24 and turns over, guiding edge and sack parallel arrangement, the double-deck sack of main material turns over along the guiding edge of deflector simultaneously, and the side after the main material turns over is for turning over hem 4, should turn over hem 4 unanimously with the guiding edge 24 of deflector. Referring to the attached drawing 9, the single-layer film is turned, and the third turning device and the fourth turning device are both single-layer film turning, so that the third turning device and the fourth turning device can both adopt the above structure, the guide roller 20 is arranged above the guide plate 25, when the single-layer film is turned, in order to ensure stable conveying of the main material 1 and avoid influence of turning on the main material, the side of the guide plate is also provided with the press roller 21, the press roller is arranged above the main material 1, the press roller 21 presses the part which is not turned, and when the single-layer film is turned, the press roller 21 presses the other film 7, so that the effect is better; still be equipped with between deflector and the deflector roll and turn over folded plate 23, turn over folded plate 23 slope setting and form the contained angle with deflector 25, just turn over folded plate and have the folding limit 22 that the slope set up, the front end and the direction limit 24 of folding limit link up, turn over the folded plate and turn over the preparation for the material is turned over, turn over the folded plate and make the material turn over along folding limit and turn over gradually, get into the deflector at last and realize turning over the book completely.

Claims (4)

1. The utility model provides a rope-penetrating bag production facility, its characterized in that is equipped with the sack in proper order on main material transfer path and turns over a station, the station that punches, reverse a reset station, individual layer turn over open the station, rope leading-in station, upper strata membrane reset station, rope chamber shaping station and bag body shaping station, the sack turns over a station and is equipped with a device I that turns over, the station that punches is provided with perforating device, reverse a reset station is equipped with a device II that turns over, the individual layer turns over open the station and is equipped with a device III that turns over, the leading-in station of rope is equipped with rope leading-in device and turns over a device IV, upper strata membrane reset station is equipped with turns over a device V, rope chamber shaping station is equipped with the involution device, bag body shaping station is equipped with seals and cuts device or heat-seal point and cuts the device.
2. The stringing bag manufacturing apparatus as claimed in claim 1, wherein the folding device comprises a guide plate and a guide roller, the guide plate is disposed in front of the guide roller, the guide roller and the guide plate are not at the same height, the guide plate has a guide edge, and the main material is folded along the guide edge.
3. The stringing bag production equipment as claimed in claim 2, wherein a pressing roller is arranged on the side of the guide plate and above the main material.
4. The stringing bag production device as claimed in claim 2, wherein a folding plate is further arranged between the guide plate and the guide roller, the folding plate is arranged obliquely and forms an included angle with the guide, the folding plate is provided with an obliquely arranged folding edge, and the front end of the folding edge is connected with the guide edge.
CN202023251301.1U 2020-12-30 2020-12-30 Stringing bag production facility Active CN214354541U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023251301.1U CN214354541U (en) 2020-12-30 2020-12-30 Stringing bag production facility

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023251301.1U CN214354541U (en) 2020-12-30 2020-12-30 Stringing bag production facility

Publications (1)

Publication Number Publication Date
CN214354541U true CN214354541U (en) 2021-10-08

Family

ID=77949433

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023251301.1U Active CN214354541U (en) 2020-12-30 2020-12-30 Stringing bag production facility

Country Status (1)

Country Link
CN (1) CN214354541U (en)

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