CN110774568B - Blowing-filling rotary air duct mechanism for storage bottles - Google Patents

Blowing-filling rotary air duct mechanism for storage bottles Download PDF

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Publication number
CN110774568B
CN110774568B CN201911064626.8A CN201911064626A CN110774568B CN 110774568 B CN110774568 B CN 110774568B CN 201911064626 A CN201911064626 A CN 201911064626A CN 110774568 B CN110774568 B CN 110774568B
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China
Prior art keywords
bottle
plate
component
guide plate
air duct
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CN201911064626.8A
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CN110774568A (en
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张伟
袁爱军
秦天豪
张俊
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Jiangsu China Beverage Machinery Co ltd
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Jiangsu China Beverage Machinery Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C49/00Blow-moulding, i.e. blowing a preform or parison to a desired shape within a mould; Apparatus therefor
    • B29C49/42Component parts, details or accessories; Auxiliary operations
    • B29C49/4205Handling means, e.g. transfer, loading or discharging means
    • B29C49/42069Means explicitly adapted for transporting blown article

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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Mechanical Engineering (AREA)
  • Filling Of Jars Or Cans And Processes For Cleaning And Sealing Jars (AREA)

Abstract

The invention discloses a blowing-filling-rotating bottle storage air channel mechanism which comprises a bottle blowing machine, a filling-rotating all-in-one machine, a bottle blowing machine bottle outlet mechanism and a filling-rotating all-in-one machine bottle inlet mechanism, wherein a drive plate assembly is arranged on the upper side of a rack, an air channel assembly is arranged on the outer side of the drive plate assembly, a turning assembly is arranged between the air channel assembly and the drive plate assembly, the bottle blowing machine bottle outlet mechanism and the filling-rotating all-in-one machine bottle inlet mechanism are connected to two sides of the drive plate assembly, a driving belt wheel and a driven belt wheel are arranged on the lower side of the drive plate assembly, a synchronous belt is connected between the driving belt wheel and the driven belt wheel, and the synchronous belt is connected with a turning belt wheel and a tensioning belt wheel. When the filling and rotating integrated machine is in failure shutdown, blown bottles pass through the bottle storage air channel mechanism and change normal conveying tracks by the track turning component on the bottle storage air channel mechanism, are not directly conveyed into the filling and rotating integrated machine, but are directly conveyed into the bottle storage air channel mechanism for storage, and the problem of bottle blank waste caused by the phenomenon is solved by the method.

Description

Blowing-filling rotary air duct mechanism for storage bottles
Technical Field
The invention relates to the technical field of blowing, filling and rotating, in particular to an independent module between a bottle blowing machine and a filling and rotating integrated machine, and specifically relates to a blowing, filling and rotating bottle storage air duct mechanism.
Background
Blowing, filling and rotating all-in-one machine is a general name of a bottle blowing machine and a filling and rotating all-in-one machine, is also one of main devices adopted in the current beverage production industry, can be subjected to fault shutdown more or less in the actual production link, and when the filling and rotating all-in-one machine part is subjected to fault shutdown and overhaul, the bottle blowing machine part also needs to be shut down, hundreds of bottle blanks being heated in a bottle blowing machine heating furnace can not be heated, and can be discharged and removed when the device is restarted, so that serious waste is caused.
The existing blowing, filling and rotating integrated machine structure is difficult to solve the phenomenon, the frequency of fault shutdown is increased along with the aging of equipment parts, and the bottle blank consumption caused by heating defects becomes a difficult problem which needs to be solved urgently by designers.
We have therefore proposed a rotary air duct mechanism for a bottle for blow-filling in order to solve the problems set out above.
Disclosure of Invention
The invention aims to provide an air duct mechanism for blowing, filling and rotating storage bottles, which solves the problem that when the filling and rotating integrated machine part is in fault shutdown and overhaul, the bottle blowing machine part needs to be shut down, hundreds of bottle blanks being heated in a bottle blowing machine heating furnace cannot be heated, and are discharged and removed when the equipment is restarted, so that serious waste is caused in the prior art.
In order to achieve the purpose, the invention provides the following technical scheme: the utility model provides a blow and irritate and store up bottle wind channel mechanism soon, includes bottle blowing machine, irritates and revolve all-in-one, bottle blowing machine goes out bottle mechanism and irritates and revolve all-in-one and advance bottle mechanism, be provided with frame, driver plate subassembly, diversion subassembly and wind channel subassembly between bottle blowing machine and the irritate and revolve all-in-one, the driver plate subassembly is installed to the upside of frame, and the outside of driver plate subassembly is provided with the wind channel subassembly, and installs the diversion subassembly between wind channel subassembly and the driver plate subassembly, the both sides of driver plate subassembly are connected with bottle blowing machine and go out bottle mechanism and irritate and revolve all-in-one and advance bottle mechanism and be located bottle blowing machine and irritate and revolve all-in-one respectively, the downside of driver plate subassembly is provided with driving pulley and driven pulley, and is connected with the hold-in range between driving pulley and the driven pulley, be connected with diversion pulley and tensioning pulley on the hold in range.
Preferably, the stand, the driving plate assembly, the direction changing assembly and the air duct assembly form a storage bottle air duct mechanism.
Preferably, the direction changing assembly comprises a guide plate, a cylinder fixing connecting column, an inlet telescopic cylinder, a connecting plate, a hinged plate, a rotating shaft, a first fixing shaft sleeve, a second fixing shaft sleeve, an outlet guide plate, an inlet guide plate and an outlet telescopic cylinder.
Preferably, the one end of import telescopic cylinder is connected with cylinder fixed connection post, and cylinder fixed connection post's upper end is fixed with the baffle, the other end of import telescopic cylinder is connected with the articulated slab through the connecting plate, and the articulated slab passes through the fixed axle sleeve of second and fixes on the rotation axis, the upper end of rotation axis is connected with the baffle, and the upper end of rotation axis is fixed with the import deflector.
Preferably, the one end of export telescopic cylinder is connected with cylinder fixed connection post, and the other end of export telescopic cylinder is connected with the articulated slab through the connecting plate, the articulated slab is through first fixed axle sleeve and rotation axis fixed connection, and the upper end of rotation axis is connected with the baffle to the upper end of rotation axis is fixed with the export deflector.
Preferably, the hinge plate, the rotating shaft, the second fixed shaft sleeve and the inlet guide plate are fixedly connected together, and the angle between the hinge plate, the rotating shaft, the first fixed shaft sleeve and the outlet guide plate is kept constant.
Preferably, the air duct assembly comprises a fan assembly, an air duct, an air deflector and a bottle hanging plate, the fan assembly is installed on the upper side of the air duct, the air deflector and the bottle hanging plate are arranged inside the air duct, the bottle hanging plate is located on the lower side of the air deflector, and the fan assembly is uniformly distributed on the upper side of the air duct.
Preferably, the two ends of the air duct are correspondingly connected with an outlet guide plate and an inlet guide plate on the guide plate, the outlet guide plate is positioned at the joint of the dial component and the bottle feeding mechanism of the filling and screwing integrated machine, and the inlet guide plate is positioned at the joint between the dial components.
Preferably, the synchronous belt is connected with the drive plate assembly and the bottle discharging mechanism of the bottle blowing machine, and two adjacent drive plates on the drive plate assembly move in opposite directions with the driving belt wheel, the driven belt wheel and the turning belt wheel through the synchronous belt.
Compared with the prior art, the invention has the beneficial effects that: the blowing-filling rotary storage bottle air duct mechanism is arranged between a bottle blowing machine and a filling-rotating integrated machine, when the filling-rotating integrated machine is in fault shutdown, a blank conveying mechanism of the bottle blowing machine stops feeding blanks, meanwhile, the bottle blanks in the heating furnace are continuously heated until the bottle blanks in the furnace are completely heated and blown, the blown bottles pass through the bottle storage air duct mechanism and change normal conveying tracks through a track turning component on the bottle storage air duct mechanism, the blown bottles are not directly conveyed into the filling-rotating integrated machine, but are directly conveyed into the bottle storage air duct mechanism by power provided by the air duct component through the fan to be stored, and the problem of waste of the bottle blanks caused by the phenomenon is solved by the method.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic top view of the air duct mechanism for storing bottles of the present invention;
FIG. 3 is a schematic view of the overall structure of the dial assembly of the present invention;
FIG. 4 is a schematic view of the drive plate assembly transmission of the present invention;
FIG. 5 is a schematic view of a direction changing assembly of the present invention;
FIG. 6 is a schematic structural view of an air duct assembly according to the present invention;
FIG. 7 is a schematic view of the structure of FIG. 6 at A in accordance with the present invention;
FIG. 8 is a schematic top view of the dial assembly of the present invention;
FIG. 9 is a schematic top view of the dial assembly of the present invention;
fig. 10 is a top view of the dial assembly of the present invention.
In the figure: 1. a bottle blowing machine; 2. filling and rotating integrated machines; 3. a frame; 4. a dial assembly; 5. a direction changing component; 51. a guide plate; 52. a cylinder fixing connecting column; 53. an inlet telescopic cylinder; 54. a connecting plate; 55. a hinge plate; 56. a rotating shaft; 57. a first fixed shaft sleeve; 58. a second fixed shaft sleeve; 59. an outlet guide plate; 510. an inlet guide plate; 511. an outlet telescopic cylinder; 6. an air duct assembly; 61. a fan assembly; 62. an air duct; 63. an air deflector; 64. a bottle hanging plate; 7. a bottle discharging mechanism of the bottle blowing machine; 8. a bottle feeding mechanism of the filling and rotating integrated machine; 9. a synchronous belt; 10. a driving pulley; 11. a driven pulley; 12. a direction-changing belt wheel; 13. tensioning the pulley.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-10, the present invention provides a technical solution: a blowing-filling rotary bottle storage air duct mechanism comprises a bottle blowing machine 1, a filling-rotating integrated machine 2, a machine frame 3, a driving plate component 4, a direction changing component 5, an air duct component 6, a bottle blowing machine bottle outlet mechanism 7, a filling-rotating integrated machine bottle inlet mechanism 8, a synchronous belt 9, a driving belt wheel 10, a driven belt wheel 11, a direction changing belt wheel 12 and a tensioning belt wheel 13, wherein the machine frame 3, the driving plate component 4, the direction changing component 5 and the air duct component 6 are arranged between the bottle blowing machine 1 and the filling-rotating integrated machine 2, the driving plate component 4 is arranged on the upper side of the machine frame 3, the air duct component 6 is arranged on the outer side of the driving plate component 4, the direction changing component 5 is arranged between the air duct component 6 and the driving plate component 4, the bottle blowing machine bottle outlet mechanism 7 and the filling-rotating integrated machine bottle inlet mechanism 8 are connected to two sides of the driving plate component 4, the bottle blowing machine bottle outlet mechanism 7 and the filling-rotating integrated machine bottle inlet mechanism 8 are respectively positioned inside the bottle blowing machine 1 and the filling-rotating integrated machine 2, the lower side of the dial component 4 is provided with a driving belt wheel 10 and a driven belt wheel 11, a synchronous belt 9 is connected between the driving belt wheel 10 and the driven belt wheel 11, and a turning belt wheel 12 and a tensioning belt wheel 13 are connected to the synchronous belt 9.
The machine frame 3, the dial component 4, the direction changing component 5 and the air duct component 6 form a storage bottle air duct mechanism, and the direction changing component 5 comprises a guide plate 51, an air cylinder fixing connecting column 52, an inlet telescopic air cylinder 53, a connecting plate 54, a hinge plate 55, a rotating shaft 56, a first fixing shaft sleeve 57, a second fixing shaft sleeve 58, an outlet guide plate 59, an inlet guide plate 510 and an outlet telescopic air cylinder 511.
One end of the inlet telescopic cylinder 53 is connected with a cylinder fixed connection column 52, and the upper end of the cylinder fixed connection column 52 is fixed with a guide plate 51, the other end of the inlet telescopic cylinder 53 is connected with a hinged plate 55 through a connection plate 54, and the hinged plate 55 is fixed on a rotating shaft 56 through a second fixed shaft sleeve 58, the upper end of the rotating shaft 56 is connected with the guide plate 51, and the upper end of the rotating shaft 56 is fixed with an inlet guide plate 510, one end of the outlet telescopic cylinder 511 is connected with the cylinder fixed connection column 52, and the other end of the outlet telescopic cylinder 511 is connected with the hinged plate 55 through the connection plate 54, the hinged plate 55 is fixedly connected with the rotating shaft 56 through a first fixed shaft sleeve 57, and the upper end of the rotating shaft 56 is.
The hinge plate 55, the rotating shaft 56, the second fixed shaft sleeve 58 and the inlet guide plate 510 are fixedly connected together, and the angle between the hinge plate 55, the rotating shaft 56, the first fixed shaft sleeve 57 and the outlet guide plate 59 is kept constant, so that the normal moving state of the inlet guide plate 510 and the outlet guide plate 59 can be ensured.
The air duct assembly 6 comprises a fan assembly 61, an air duct 62, an air deflector 63 and a bottle hanging plate 64, the fan assembly 61 is installed on the upper side of the air duct 62, the air deflector 63 and the bottle hanging plate 64 are arranged inside the air duct 62, the bottle hanging plate 64 is located on the lower side of the air deflector 63, and the fan assembly 61 is uniformly distributed on the upper side of the air duct 62.
The two ends of the air duct 62 are correspondingly connected to the outlet guide plate 59 and the inlet guide plate 510 on the guide plate 51, and the outlet guide plate 59 is located at the connection position of the dial assembly 4 and the filling and screwing integrated machine bottle feeding mechanism 8, and the inlet guide plate 510 is located at the connection position between the dial assemblies 4.
The synchronous belt 9 is connected with the driving plate component 4 and the bottle discharging mechanism 7 of the bottle blowing machine, and two adjacent driving plates on the driving plate component 4 move in opposite directions with the driving belt wheel 10, the driven belt wheel 11 and the turning belt wheel 12 through the synchronous belt 9.
Normal operating condition, diversion subassembly 5 is in the first state (fig. 8), the bottle that bottle blowing machine 1 blown accomplished directly gets into through storage bottle wind channel mechanism and irritates in revolving all-in-one 2, when irritating revolves all-in-one 2 and breaks down the machine halt, irritate and revolve all-in-one 2 can be under the inertial action, the station number that continues to advance ten numbers of stations here can set up, diversion subassembly 5 is in the second state (fig. 9), change the bottle and carry the orbit, make the bottle get into on the guide rail that wind channel subassembly 6 extends, and get into wind channel 62, bottle blank blowing is accomplished until in the warming-up furnace, after the bottle that the blowing was accomplished all got into wind channel 62, diversion subassembly 5 changes back to the first state (fig. 8) again.
When the filling and rotating integrated machine 2 is restarted, bottle blowing is delayed after the bottle blowing machine 1 blows bottles, the turning component 5 is in a third state (figure 10), the bottles stored in the air channel component 6 are pushed by the fan component 61 and are input into the filling and rotating integrated machine 2 from an outlet opened by the turning component 5, after the bottles in the bottle storage air channel mechanism are completely conveyed, the turning component 5 is changed back to the first state (figure 8), the bottles blown by the bottle blowing machine 1 start to be conveyed, and the equipment returns to a normal production state.
The working principle of the embodiment is as follows: as shown in fig. 1-10, when the filling and rotating integrated machine 2 is stopped due to a fault, the movement of the mechanism needs to be consistent with that of the bottle blowing machine 1, so that the synchronous belt 9 is selected to connect the dial component 4 and the bottle discharging mechanism 7 of the bottle blowing machine, and the bottle discharging mechanism 7 and the dial component 4 of the bottle blowing machine are linked, and in the movement transmission process, a direction changing belt wheel 12 is added between the driving belt wheel 10 and the driven belt wheel 11 for changing the direction (as shown in fig. 4) because the movement directions of two adjacent dial wheels are opposite;
the structure of the direction changing assembly 5 is as shown in fig. 5, one end of the cylinder fixing connection column 52 is fixed on the guide plate 51, the other end is connected with the inlet telescopic cylinder 53 (or the outlet telescopic cylinder 511), the hinge plate 55, the rotating shaft 56 and the inlet guide plate 510 are fixedly connected together, and the angle between the three is kept unchanged; in addition, the hinge plate 55, the rotation shaft 56 and the outlet guide plate 59 are fixedly connected together with the angle therebetween being maintained, wherein the connection plate 54 is fixed to the inlet telescopic cylinder 53 (or the outlet telescopic cylinder 511) and is hinged to the hinge plate 55;
when the filling and rotating integrated machine 2 is stopped due to a fault, the telescopic rod of the inlet telescopic cylinder 53 extends outwards to drive the inlet guide plate 510 to rotate clockwise by an angle, so that the inlet guide plate 510 and the guide rail extending section of the air duct assembly 6 form a bottle outlet channel (as shown in fig. 9), and when all bottle blanks in the bottle blowing machine 1 are blown and conveyed to the air inlet duct assembly 6, the telescopic rod of the inlet telescopic cylinder 53 retracts to drive the inlet guide plate 510 to rotate anticlockwise by an angle, so that the inlet guide plate 510 restores to the original position (as shown in fig. 8);
when the filling and rotating integrated machine 2 is restarted, bottle blowing is carried out on the bottle blowing machine 1 after a period of time, the telescopic rod of the outlet telescopic cylinder 511 extends outwards to drive the outlet guide plate 59 to rotate clockwise by an angle, so that the outlet guide plate 59 and the guide rail extending section of the air duct assembly 6 form a bottle inlet channel (as shown in fig. 10), when all bottles in the bottle storage air duct 62 are conveyed, the telescopic rod of the outlet telescopic cylinder 511 retracts to drive the outlet guide plate 59 to rotate anticlockwise by an angle, so that the inlet guide plate 510 restores to the original position (as shown in fig. 8), the bottle blowing machine 1 continues to blow bottles, and the whole bottle storage process is completed.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the invention can be made, and equivalents and modifications of some features of the invention can be made without departing from the spirit and scope of the invention.

Claims (2)

1. The utility model provides a blow and irritate and store up bottle wind channel mechanism soon, includes bottle blowing machine (1), irritates and revolve all-in-one (2), bottle blowing machine goes out bottle mechanism (7) and irritate and revolve all-in-one and advance bottle mechanism (8), its characterized in that: a rack (3), a drive plate component (4), a turning component (5) and an air duct component (6) are arranged between the bottle blowing machine (1) and the filling and rotating integrated machine (2), the drive plate component (4) is installed on the upper side of the rack (3), the air duct component (6) is arranged on the outer side of the drive plate component (4), the turning component (5) is installed between the air duct component (6) and the drive plate component (4), the bottle blowing machine bottle outlet mechanism (7) and the filling and rotating integrated machine bottle inlet mechanism (8) are connected to two sides of the drive plate component (4), the bottle blowing machine bottle outlet mechanism (7) and the filling and rotating integrated machine bottle inlet mechanism (8) are respectively located inside the bottle blowing machine (1) and the filling and rotating integrated machine (2), a driving belt wheel (10) and a driven belt wheel (11) are arranged on the lower side of the drive plate component (4), and a synchronous belt (9) is connected between the driving belt wheel (10) and the driven belt wheel (11), the automatic bottle feeding device is characterized in that a direction-changing belt wheel (12) and a tensioning belt wheel (13) are connected to the synchronous belt (9), a bottle storage air duct mechanism is composed of a rack (3), a dial component (4), a direction-changing component (5) and an air duct component (6), the direction-changing component (5) comprises a guide plate (51), a cylinder fixed connection column (52), an inlet telescopic cylinder (53), a connecting plate (54), a hinged plate (55), a rotating shaft (56), a first fixed shaft sleeve (57), a second fixed shaft sleeve (58), an outlet guide plate (59), an inlet guide plate (510) and an outlet telescopic cylinder (511), one end of the inlet telescopic cylinder (53) is connected with the cylinder fixed connection column (52), the upper end of the cylinder fixed connection column (52) is fixed with the guide plate (51), and the other end of the inlet telescopic cylinder (53) is connected with the hinged plate (55) through the connecting plate (54), the hinged plate (55) is fixed on the rotating shaft (56) through a second fixed shaft sleeve (58), the upper end of the rotating shaft (56) is connected with a guide plate (51), the upper end of the rotating shaft (56) is fixed with an inlet guide plate (510), one end of the outlet telescopic cylinder (511) is connected with a cylinder fixed connecting column (52), the other end of the outlet telescopic cylinder (511) is connected with the hinged plate (55) through a connecting plate (54), the hinged plate (55) is fixedly connected with the rotating shaft (56) through a first fixed shaft sleeve (57), the upper end of the rotating shaft (56) is connected with the guide plate (51), the upper end of the rotating shaft (56) is fixed with an outlet guide plate (59), the hinged plate (55), the rotating shaft (56), the second fixed shaft sleeve (58) and the inlet guide plate (510) are fixedly connected together, and the angle between the four is kept unchanged, the hinged plate (55), the rotating shaft (56), the first fixed shaft sleeve (57) and the outlet guide plate (59) are fixedly connected together, the angle between the hinged plate (55), the rotating shaft (56), the first fixed shaft sleeve (57) and the outlet guide plate (59) is kept unchanged, the air duct component (6) comprises a fan component (61), an air duct (62), an air deflector (63) and a bottle hanging plate (64), the bottle hanging plate (64) is positioned on the lower side of the air deflector (63), the fan component (61) is uniformly distributed on the upper side of the air duct (62), two ends of the air duct (62) are correspondingly connected with the outlet guide plate (59) and the inlet guide plate (510) on the guide plate (51), and the outlet guide plate (59) is positioned at the joint of the driving plate component (4) and the bottle feeding mechanism (8) of the filling and rotating integrated machine, and the inlet guide plates (510) are located at the junction between the dial assemblies (4).
2. The blower-filled rotary storage bottle air duct mechanism of claim 1, wherein: the synchronous belt (9) is connected with the driving plate component (4) and the bottle discharging mechanism (7) of the bottle blowing machine, and two adjacent driving plates on the driving plate component (4) move in opposite directions with the driving belt wheel (10), the driven belt wheel (11) and the turning belt wheel (12) through the synchronous belt (9).
CN201911064626.8A 2019-11-04 2019-11-04 Blowing-filling rotary air duct mechanism for storage bottles Active CN110774568B (en)

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CN110774568B true CN110774568B (en) 2021-08-13

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