CN115476498B - Automatic feeding pipe mechanism and bottle making machine - Google Patents
Automatic feeding pipe mechanism and bottle making machine Download PDFInfo
- Publication number
- CN115476498B CN115476498B CN202211168821.7A CN202211168821A CN115476498B CN 115476498 B CN115476498 B CN 115476498B CN 202211168821 A CN202211168821 A CN 202211168821A CN 115476498 B CN115476498 B CN 115476498B
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- pipe
- fixedly connected
- clamping
- rod
- automatic feeding
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C49/00—Blow-moulding, i.e. blowing a preform or parison to a desired shape within a mould; Apparatus therefor
- B29C49/42—Component parts, details or accessories; Auxiliary operations
- B29C49/4205—Handling means, e.g. transfer, loading or discharging means
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29L—INDEXING SCHEME ASSOCIATED WITH SUBCLASS B29C, RELATING TO PARTICULAR ARTICLES
- B29L2031/00—Other particular articles
- B29L2031/712—Containers; Packaging elements or accessories, Packages
- B29L2031/7158—Bottles
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- Engineering & Computer Science (AREA)
- Manufacturing & Machinery (AREA)
- Mechanical Engineering (AREA)
- Processing And Handling Of Plastics And Other Materials For Molding In General (AREA)
Abstract
The invention discloses an automatic feeding pipe feeding mechanism and a bottle making machine, which belong to the technical field of plastic bottle production and comprise a conveyor, wherein the lower end of the conveyor is fixedly connected with a storage cavity, one side of the top end of the conveyor is fixedly connected with a baffle plate, the bottom end of the baffle plate is fixedly connected with a clamping pipe, one end of the clamping pipe is fixedly connected with a conveying frame which extends downwards in an inclined manner, and the other end of the conveying frame is sheathed with a heating channel.
Description
Technical Field
The invention relates to the technical field of plastic bottle processing, in particular to an automatic feeding and pipe supplying mechanism and a bottle making machine.
Background
The plastic bottle is a plastic container formed by adding an organic solvent into materials such as polyethylene or polypropylene, heating at high temperature, and blow molding, extrusion blowing or injection molding through a plastic mold, and is widely applied to liquid or solid disposable plastic packaging containers such as video, beverage, pickles, dried fruits, edible oil and the like.
In the existing plastic bottle blow molding process, the raw materials need to be heated and then extruded into the shape of a test tube, then the plastic bottle can be manufactured into a complete plastic bottle after being heated and blow molded again and cooled, when the test tube after preliminary molding is transported, the test tube is clamped inside a transported clamping tube through a supporting ring on the test tube, due to the fact that the production quantity is huge, in the transportation process, part of the test tube can not enter the clamping tube and is clamped outside the clamping tube due to accumulation, and the part of the test tube falls from the clamping tube due to the transportation of the test tube inside the clamping tube, so that the transportation effect of the test tube is influenced, and even if the test tube falls down, the clamping is collected again through a group of feeding components, the problem that part of the test tube cannot be clamped due to accumulation still occurs.
Based on the above, the invention designs an automatic feeding pipe feeding mechanism and a bottle making machine to solve the above problems.
Disclosure of Invention
The invention aims to provide an automatic feeding pipe feeding mechanism and a bottle making machine, which are used for solving the problems in the background technology.
The automatic feeding and pipe supplying mechanism comprises a conveyor, wherein the lower end of the conveyor is fixedly connected with a storage cavity, one side of the top end of the conveyor is fixedly connected with a baffle plate, the bottom end of the baffle plate is fixedly connected with a clamping pipe, one end of the clamping pipe is fixedly connected with a conveying frame which extends downwards in an inclined mode, the other end of the conveying frame is sleeved with a heating channel, the output end of the heating channel is fixedly connected with a bottle blowing machine, a plurality of forming dies which are distributed in an equidistant mode and rotatable are arranged on the bottle blowing machine, the upper end of each forming die is connected with a blowing pipe corresponding to the forming die in a sliding mode, the clamping pipe is provided with a pushing and stirring mechanism, and the pushing and stirring mechanism can orderly clamp pipe bodies which are stacked on the clamping pipe and cannot be orderly transported through the clamping pipe, and orderly clamp bodies after stirring are transported inside the clamping pipe.
As a further scheme of the invention, the jacking and stirring mechanism comprises a first motor, the first motor is fixed at one end of a clamping pipe, a plurality of swinging frames which are sequentially connected are rotatably arranged in the clamping pipe, the output end of the first motor is fixedly connected with one end of each swinging frame, ejector rods are respectively rotatably sleeved on the swinging frames, a plurality of jacking openings in which lamps are distributed are formed in the clamping pipe, and the outer walls of the upper ends of the ejector rods respectively penetrate through the corresponding jacking openings and are arranged above the clamping pipe.
As a further scheme of the invention, the jacking and stirring mechanism further comprises fixing plates, the fixing plates are respectively arranged at two sides of the bottom end of the clamping pipe, the bottom ends of the two fixing plates are jointly connected with a connecting belt in a rotating mode, the bottom ends of the fixing plates are fixedly connected with a second motor, the output end of the second motor is rotationally connected with the connecting belt, a plurality of connecting rods which are distributed at equal intervals are slidably arranged on the outer wall of the connecting belt, two adjacent connecting rods are fixedly connected through reset springs, two ends of each connecting rod are respectively and fixedly connected with a rotating shaft, the rotating shafts are respectively and rotationally connected with a first swing rod, the other ends of the first swing rods are rotationally connected with a connecting block, one end of each connecting block is rotationally connected with a second swing rod, the other ends of the second swing rods are fixedly connected with a sliding rod, the bottom ends of the clamping pipe are fixedly connected with a fixing piece, and the bottom ends of the fixing piece are fixedly connected with a V-shaped sliding groove which can be in sliding connection with the sliding rod.
As a further scheme of the invention, the inside of the connecting rod is fixedly connected with a magnetic attraction block, and one end of the second swing rod is embedded with a metal block which can be attracted by the magnetic attraction block.
As a further aspect of the present invention, the internal heating temperature of the heating channel is about one hundred and fifteen degrees celsius.
As a further scheme of the invention, the pipe body consists of a connecting pipe, a supporting ring and a thread head, the outer walls of the conveying frames are smooth walls, gaps between the conveying frames are identical to gaps between the clamping pipes, and the width of the gaps is larger than the width of the vertical section of the pipe body and smaller than the circumferential diameter of the supporting ring on the pipe body.
As a further scheme of the invention, a water cooling channel is arranged in the forming die, a water cooling inlet is arranged at the top end of the forming die, and a water cooling outlet is arranged at the bottom end of the forming die.
As a further scheme of the invention, the outer wall of the top end of the ejector rod is in a chamfer arc shape, and the outer walls of the ejector rod are smooth walls.
Compared with the prior art, the invention has the beneficial effects that:
1. The invention adopts the pushing stirring mechanism, which is used for effectively preventing the tube bodies from piling up and sequentially transporting when the tube bodies are manufactured into test tubes by the raw materials, pushing the tube bodies piled up at the upper end of the clamping tube through the pushing rod to enable the tube bodies to enter the clamping tube for transporting inside, and matching with the connecting rod for increasing the spacing between the tube bodies inside the clamping tube, so that the problem of piling up and clamping materials can not occur when the clamping tube is used for transporting the tube bodies, and the regular transportation of all the tube bodies can be ensured, thereby improving the production efficiency.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present invention;
FIG. 2 is a schematic diagram of the front structure of the bottle blowing machine according to the present invention;
FIG. 3 is a schematic diagram of a top-drive material-shifting mechanism (section of a material clamping pipe);
FIG. 4 is an enlarged schematic view of the structure of the coating 3 at A;
FIG. 5 is a schematic diagram of the structures of the first swing link, the connecting rod, the second swing link, the connecting block, the rotating shaft and the sliding rod;
FIG. 6 is a schematic view (rear view) of a clamp tube structure;
Fig. 7 is an enlarged schematic view of the structure at B in fig. six.
In the drawings, the list of components represented by the various numbers is as follows:
1. A storage cavity; 2, a conveyor, 3, a material baffle plate, 4, a conveying frame, 5, a heating channel, 6, a bottle blowing machine, 8, a blowing pipe, 9, a forming die, 10, a first motor, 11, a clamping pipe, 12, a second motor, 13, a sliding rod, 14, a swinging frame, 15, a push rod, 16, a connecting belt, 17, a fixing plate, 18, a first swinging rod, 19, a connecting rod, 20, a second swinging rod, 21, a rotating shaft, 22, a connecting block, 23, a V-shaped chute, 24 and a fixing sheet.
Detailed Description
Referring to fig. 1-7, the invention provides a technical scheme, which comprises a conveyor 2, wherein the lower end of the conveyor 2 is fixedly connected with a storage cavity 1, one side of the top end of the conveyor 2 is fixedly connected with a baffle plate 3, the bottom end of the baffle plate 3 is fixedly connected with a clamping pipe 11, one end of the clamping pipe 11 is fixedly connected with a conveying frame 4 which extends downwards and obliquely, the other end of the conveying frame 4 is sheathed with a heating channel 5, the output end of the heating channel 5 is fixedly connected with a bottle blowing machine 6, a plurality of forming dies 9 which are distributed at equal intervals and can rotate are arranged on the bottle blowing machine 6, the upper end of each forming die 9 is connected with a blowing pipe 8 corresponding to the forming die in a sliding manner, the clamping pipe 11 is provided with a pushing and stirring mechanism, and the jacking and stirring mechanism can clamp a pipe body which is piled on the clamping pipe 11 and cannot be orderly transported through the clamping pipe 11, and orderly clamps the pipe body after stirring the pipe body and the pipe body is orderly transported;
Above-mentioned scheme is when putting into practical use into production, when producing the plastic bottle, the raw and other materials mix the back heating that will produce at present, stir the back through pressing from both sides the body of material 11 upper end, and cool off after pressing from both sides the inside adjacent body of material 11, the raw and other materials have had the preliminary outward appearance of test tube shape at this moment, carry the body after cooling to the storage chamber 1 inside, transport the body through conveyer 2 to the inside striker plate 3 of pressing from both sides material 11 upper end, the body gradually gets into the inside of pressing from both sides material 11 through inclined striker plate 3 in the transportation process, transport in the inside orderly unified direction of pressing from both sides material 11, top moves the material stirring mechanism in the transportation body in-process, will stir the back because of piling up the body of card at pressing from both sides material 11 upper end, and press from both sides the inside adjacent body of material 11 interval between the inside, make the body that blocks up can be in the inside of pressing from both sides material 11 after stirring smoothly, make the test tube 11 transport get into inside heating channel 5 along conveying frame 4, make body surface hardness reduction after pipe surface hardness reduction through heating channel 5 inside, the body after the pipe 9 entering into inside shaping mould 9, the inside is pressed from both sides material pressing from both sides material 8, can not make the inside the material stirring from both sides the inside can be had the material pressing from both sides the inside through the invention, can not make the inside the material pressing from both sides the material 11 through the inside the pipe through pressing from both sides the body, and the inside the invention can be cooled down through pressing from both sides the inside the material through the pipe, the inside can be pressed from both sides the inside through the material is pressed from inside, the inside can be pressed from inside through the material after the material is pressed into the inside through the material after the material is pressed through the material is pressed.
As a further scheme of the invention, the top-driving material stirring mechanism comprises a first motor 10, wherein the first motor 10 is fixed at one end of a material clamping pipe 11, a plurality of swinging frames 14 which are sequentially connected are rotatably arranged in the material clamping pipe 11, the output end of the first motor 10 is fixedly connected with one end of each swinging frame 14, ejector rods 15 are respectively and rotatably sleeved on the swinging frames 14, a plurality of top openings in which lamps are distributed are formed in the material clamping pipe 11, and the outer walls at the upper ends of the ejector rods 15 respectively penetrate through the corresponding top openings and are arranged above the material clamping pipe 11;
The jacking and stirring mechanism further comprises fixing plates 17, the fixing plates 17 are respectively arranged on two sides of the bottom end of the clamping pipe 11, the bottom ends of the two fixing plates 17 are connected with a connecting belt 16 in a rotating mode, the bottom ends of the fixing plates 17 are fixedly connected with a second motor 12, the output end of the second motor 12 is connected with the connecting belt 16 in a rotating mode, a plurality of connecting rods 19 which are distributed at equal intervals are slidably arranged on the outer wall of the connecting belt 16, two adjacent connecting rods 19 are fixedly connected through reset springs, two ends of each connecting rod 19 are respectively fixedly connected with a rotating shaft 21, a first swing rod 18 is respectively connected onto each rotating shaft 21 in a rotating mode, the other end of each first swing rod 18 is connected with a connecting block 22 in a rotating mode, one end of each connecting block 22 is connected with a second swing rod 20 in a rotating mode, the other end of each second swing rod 20 is fixedly connected with a sliding rod 13, the bottom end of the clamping pipe 11 is fixedly connected with a fixing piece 24, and the bottom end of the fixing piece 24 is fixedly connected with a V-shaped sliding groove 23 which can be slidably connected with the sliding rod 13;
When the scheme is put into practical use, after the pipe body is transported to the inside of the baffle plate 3 through the conveyor 2, the first motor 10 is started to drive the swinging frame 14 in the clamping pipe 11 to rotate, the swinging frame 14 is rotated to drive the ejector rod 15 to periodically extend upwards from the top opening, the pipe body originally piled up at the upper end of the clamping pipe 11 is pushed by the extending part to enable the piled up pipe body to move, then the pipe body enters the clamping pipe 11 to be fixed, if the clearance between the adjacent pipe bodies in the pipe body transportation process in the clamping pipe 11 is small, the pipe body piled up by the pushing is not inserted in the clearance, the second motor 12 is started to drive the connecting belt 16 to rotate, when the connecting belt 16 rotates, the pipe body is moved through the connecting rod 19 outside, when the connecting rod 19 slides to the upper end of the V-shaped chute 23, the bottom ends of the sliding rods 13 at two sides of the connecting rod 19 enter the V-shaped chute 23, and along with the sliding of the connecting rod 19, the slide bar 13 slides along the V-shaped slide groove 23, the first swing bar 18 and the second swing bar 20 which are horizontally positioned are enabled to overturn around the connecting block 22, one end of the first swing bar 18 rotates around the rotating shaft 21, the connecting rod 19 and the first swing bar 18 and the second swing bar 20 at two sides form a diamond, the pipe bodies at two sides of the connecting rod 19 are jacked by the first swing bar 18 and the second swing bar 20, the space between the pipe bodies is increased, the pipe bodies stacked at the upper end of the clamping pipe 11 can be jacked by matching with the reciprocating motion of the ejector rod 15 and then enter the inner side of the clamping pipe 11 for transportation, two adjacent connecting rods 19 are elastically connected by a reset spring, after the slide bar 13 passes through the V-shaped slide groove 23, the first swing bar 18 and the second swing bar 20 recover the horizontal position, the space between the two connecting rods 19 is recovered, the ejector rod 15 capable of moving the pipe bodies stacked at the upper end of the clamping pipe 11 is adopted, the connecting rod 19 of the inside body interval of clamp material pipe 11 is increased in the cooperation for clamp material pipe 11 can not appear piling up the problem of card material when transporting the body, can guarantee again that all bodies homoenergetic neatly transport, improves production efficiency.
As a further scheme of the invention, a magnetic block is fixedly connected in the connecting rod 19, and a metal block which can be adsorbed by the magnetic block is embedded in one end of the second swing rod 20;
When the scheme is put into practical use, the second swing rod 20 is attached to the connecting rod 19 through the magnetic attraction block inside the connecting rod 19, the connecting rod 19 can fixedly adsorb the second swing rod 20 at one end of the connecting rod 19, and the first swing rod 18 and the second swing rod 20 are prevented from deflecting around the connecting block 22 in the swinging process of the connecting rod 19 along with the connecting belt 16.
As a further aspect of the present invention, the internal heating temperature of the heating channel 5 is about one hundred and fifteen degrees celsius;
when the scheme is put into practical use, the heating channel 5 is required to provide enough temperature so that the surface of the pipe body is softened when the pipe body is transported in the heating channel 5, and the subsequent blow molding processing is facilitated.
As a further scheme of the invention, the pipe body consists of a connecting pipe, a supporting ring and a thread head, the outer walls of the conveying frames 4 are smooth walls, the gaps between the conveying frames 4 are the same as the gaps between the clamping pipes 11, and the width of the gaps is larger than the vertical section width of the pipe body and smaller than the circumference diameter of the supporting ring on the pipe body;
When the scheme is put into practical use, the pipe body is automatically aligned in the clamping pipe 11 through the design of the supporting ring, and the gravity center of the pipe body is deviated due to the fact that the position of the supporting ring is close to the threaded head, namely, the problem that the pipe body is turned upside down in the automatic alignment process is avoided, and the smooth conveying frame 4 cannot cause abrasion to the outer wall of the pipe body in the pipe body conveying process.
As a further scheme of the invention, a water cooling channel is formed in the forming die 9, a water cooling inlet is formed at the top end of the forming die 9, and a water cooling outlet is formed at the bottom end of the forming die 9;
When the scheme is put into practical use, the plastic bottle formed in the forming die 9 is rapidly cooled and formed through the water cooling channel, so that the production efficiency of the plastic bottle is improved.
As a further scheme of the invention, the outer wall of the top end of the ejector rod 15 is in a chamfer arc shape, and the outer walls of the ejector rod 15 are smooth walls;
When the scheme is put into practical use, the contact part of the chamfering arc-shaped ejector rod 15 with the pipe body is smooth when the chamfering arc-shaped ejector rod is ejected upwards, and the pipe body cannot be damaged in appearance.
When the plastic bottle is produced, raw materials for production are mixed and heated, are extruded to a molding cavity for preliminary molding and then cooled, at the moment, the raw materials have the preliminary appearance of a test tube shape, the cooled tube body is conveyed to the inside of a storage cavity 1, the tube body is conveyed to the inside of a baffle plate 3 at the upper end of a clamping tube 11 through a conveyor 2, and gradually enters the inside of the clamping tube 11 through the inclined baffle plate 3 in the conveying process, and are conveyed in an orderly and uniform direction in the inside of the clamping tube 11;
When the pipe body is transported to the inside of the baffle plate 3 through the conveyor 2, the first motor 10 is started to drive the swinging frame 14 in the clamping pipe 11 to rotate, the swinging frame 14 is rotated to drive the ejector rod 15 to periodically extend upwards from the ejection opening, the extended part pushes the pipe body originally piled up at the upper end of the clamping pipe 11, the piled up pipe body is moved to a movable position and then enters the inside of the clamping pipe 11 to be fixed, if the clearance between adjacent pipe bodies in the transportation process of the pipe body in the clamping pipe 11 is small, the pipe bodies piled up by pushing are not inserted in the clearance, the second motor 12 is started to drive the connecting belt 16 to rotate, when the connecting belt 16 rotates, the pipe bodies are moved through the connecting rod 19 outside, when the connecting rod 19 slides to the upper end of the V-shaped chute 23, the bottom ends of the sliding rods 13 at two sides of the connecting rod 19 enter the V-shaped chute 23 and slide along with the sliding of the connecting rod 19, the sliding rod 13 slides along the V-shaped sliding groove 23, the first swing rod 18 and the second swing rod 20 which are horizontally positioned are enabled to overturn around the connecting block 22, one end of the first swing rod 18 rotates around the rotating shaft 21, the connecting rod 19 and the first swing rod 18 and the second swing rod 20 on two sides form a diamond, the pipe bodies on two sides of the connecting rod 19 are jacked by the first swing rod 18 and the second swing rod 20, the space between the pipe bodies is increased, at the moment, the pipe bodies stacked at the upper end of the clamping pipe 11 can be jacked by matching with the reciprocating motion of the ejector rod 15 and then enter the inner side of the clamping pipe 11 for transportation, two adjacent connecting rods 19 are elastically connected through a reset spring, after the sliding rod 13 passes through the V-shaped sliding groove 23, the first swing rod 18 and the second swing rod 20 recover to be horizontally positioned, and the space between the two connecting rods 19 is recovered;
The test tube transported by the clamping pipe 11 enters the heating channel 5 along the conveying frame 4, the surface hardness of the tube body is reduced after the inside of the heating channel 5 is heated, the forming die 9 is closed after the tube body after the hardness is reduced enters the forming die 9, the blown tube 8 moves downwards to be in butt joint with the opening of the tube body, the inside of the tube body is filled with the forming die 9 by low-pressure air and then high-pressure air, and the plastic bottle can be manufactured after the plastic bottle is cooled.
Claims (6)
1. An automatic feeding pipe feeding mechanism comprises a conveyor (2), wherein the lower end of the conveyor (2) is fixedly connected with a storage cavity (1), one side of the top end of the conveyor (2) is fixedly connected with a baffle plate (3), the bottom end of the baffle plate (3) is fixedly connected with a clamping pipe (11), one end of the clamping pipe (11) is fixedly connected with a conveying frame (4) which extends downwards in an inclined manner, the other end of the conveying frame (4) is sheathed with a heating channel (5), the output end of the heating channel (5) is fixedly connected with a bottle blowing machine (6), a plurality of forming dies (9) which are distributed at equal intervals are arranged on the bottle blowing machine (6), and the upper end of each forming die (9) is connected with a blowing pipe (8) corresponding to the forming dies in a sliding manner.
The jacking and stirring mechanism comprises a first motor (10), wherein the first motor (10) is fixed at one end of a clamping pipe (11), a plurality of swinging frames (14) which are sequentially connected are rotatably arranged in the clamping pipe (11), the output end of the first motor (10) is fixedly connected with one end of each swinging frame (14), ejector rods (15) are respectively and rotatably sleeved on the swinging frames (14), a plurality of jacking openings distributed by lamps are formed in the clamping pipe (11), and the outer walls of the upper ends of the ejector rods (15) respectively penetrate through the corresponding jacking openings and are arranged above the clamping pipe (11);
The top-moving stirring mechanism further comprises fixing plates (17), the fixing plates (17) are respectively arranged on two sides of the bottom end of the clamping pipe (11), two fixing plates (17) are connected with a connecting belt (16) in a rotating mode, a second motor (12) is fixedly connected to the bottom end of each fixing plate (17), the output end of each second motor (12) is connected with the corresponding connecting belt (16) in a rotating mode, a plurality of connecting rods (19) which are distributed at equal intervals are arranged on the outer wall of each connecting belt (16) in a sliding mode, two adjacent connecting rods (19) are fixedly connected through reset springs, two ends of each connecting rod (19) are respectively fixedly connected with a rotating shaft (21), a first swing rod (18) is respectively and fixedly connected to each rotating shaft (21), a connecting block (22) is connected to the other end of each first swing rod (18) in a rotating mode, a second swing rod (20) is connected to one end of each connecting block (22) in a rotating mode, a fixing piece (24) is fixedly connected to the other end of each second swing rod (20), and the bottom end of each fixing piece (11) is fixedly connected with a fixing piece (24), and the fixing piece (24) is connected with a sliding rod (23) in a sliding mode.
The bottle blowing machine (6) is fixedly connected with the output end of the heating channel (5), a plurality of rotatable forming dies (9) which are distributed at equal intervals are arranged on the bottle blowing machine (6), and the upper ends of the forming dies (9) are slidably connected with blowing pipes (8) corresponding to the forming dies.
2. The automatic feeding and pipe supplying mechanism according to claim 1, wherein a magnetic block is fixedly connected inside the connecting rod (19), and a metal block capable of being adsorbed by the magnetic block is embedded in one end of the second swing rod (20).
3. An automated pipe feeding mechanism according to claim 1, wherein the internal heating temperature of the heating channel (5) is one hundred fifteen degrees celsius.
4. The automatic feeding and pipe supplying mechanism of claim 1, wherein the pipe body consists of a connecting pipe, a supporting ring and a thread head, the outer walls of the conveying frames (4) are smooth walls, gaps between the conveying frames (4) are identical to gaps between the clamping pipes (11), and the width of the gaps is larger than the vertical section width of the pipe body and smaller than the circumferential diameter of the supporting ring on the pipe body.
5. The automatic feeding pipe supply mechanism of claim 1, wherein a water cooling channel is formed in the forming die (9), a water cooling inlet is formed in the top end of the forming die (9), and a water cooling outlet is formed in the bottom end of the forming die (9).
6. The automatic feeding and pipe supplying mechanism of claim 1, wherein the outer wall of the top end of the ejector rod (15) is in a chamfer arc shape, and the outer walls of the ejector rod (15) are smooth walls.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202211168821.7A CN115476498B (en) | 2022-09-24 | 2022-09-24 | Automatic feeding pipe mechanism and bottle making machine |
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202211168821.7A CN115476498B (en) | 2022-09-24 | 2022-09-24 | Automatic feeding pipe mechanism and bottle making machine |
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| Publication Number | Publication Date |
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| CN115476498A CN115476498A (en) | 2022-12-16 |
| CN115476498B true CN115476498B (en) | 2025-05-30 |
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| Application Number | Title | Priority Date | Filing Date |
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| CN202211168821.7A Active CN115476498B (en) | 2022-09-24 | 2022-09-24 | Automatic feeding pipe mechanism and bottle making machine |
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| CN118083606B (en) * | 2024-04-12 | 2025-02-07 | 唐山中材重型机械有限公司 | A cement raw material storage shed reclaimer |
Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107696455A (en) * | 2017-11-16 | 2018-02-16 | 浙江工业大学奉化智慧经济研究院 | A kind of conveying mechanism of full automatic extra quality road bottle blowing machine |
| CN213472163U (en) * | 2020-10-09 | 2021-06-18 | 汕头市金诚塑胶机械有限公司 | Full-automatic bottle blowing machine of multistation extrusion molding for plastic bottle production |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN216941783U (en) * | 2021-11-29 | 2022-07-12 | 沧州毅泽佳塑料包装有限公司 | Bottle blowing machine with possess autoloading function for plastic bottle production |
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Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107696455A (en) * | 2017-11-16 | 2018-02-16 | 浙江工业大学奉化智慧经济研究院 | A kind of conveying mechanism of full automatic extra quality road bottle blowing machine |
| CN213472163U (en) * | 2020-10-09 | 2021-06-18 | 汕头市金诚塑胶机械有限公司 | Full-automatic bottle blowing machine of multistation extrusion molding for plastic bottle production |
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