CN107538720B - Transmission embryo protection device - Google Patents

Transmission embryo protection device Download PDF

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Publication number
CN107538720B
CN107538720B CN201710743457.5A CN201710743457A CN107538720B CN 107538720 B CN107538720 B CN 107538720B CN 201710743457 A CN201710743457 A CN 201710743457A CN 107538720 B CN107538720 B CN 107538720B
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China
Prior art keywords
guide rail
transmission
heating head
chain
driving
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CN201710743457.5A
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CN107538720A (en
Inventor
陆玉静
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Guangdong Jianbang Machinery Co ltd
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Guangdong Jianbang Machinery Co ltd
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Publication of CN107538720A publication Critical patent/CN107538720A/en
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Abstract

The transmission embryo protection device comprises a frame, a heating head mechanism, a transmission mechanism, a driving mechanism, an embryo protection mechanism and an embryo protection mechanism, wherein the transmission mechanism is arranged on the frame, the heating head mechanism is arranged on the transmission mechanism at intervals, the driving mechanism is arranged below the transmission mechanism and is positioned on the frame, the embryo protection mechanism is of a boss structure, and the embryo protection mechanism comprises a resisting part and a connecting part; the resisting part is used for resisting the bottle embryo on the heating head mechanism which is driven to the turning position of the driving mechanism, so as to prevent the bottle embryo on the heating head mechanism from tilting due to centrifugal force generated by turning; the connecting part is connected with the transmission mechanism and synchronously rotates with the transmission mechanism under the drive of the driving mechanism. The invention aims to provide a transmission embryo protection device which can effectively prevent bottle embryos from tilting during movement and improve the success rate and efficiency of bottle blowing.

Description

Transmission embryo protection device
Technical Field
The invention relates to the technical field of bottle blowing equipment, in particular to a transmission embryo protection device.
Background
Among the prior art, the bottle blowing machine is in the in-process of transporting of bottle embryo, when transporting to the turn, the bottle embryo can produce the condition of slope owing to the centrifugal force that the turn produced, and centrifugal force makes the bottle embryo produce unrecoverable slope and throws away equipment even, has influenced the efficiency and the success rate of bottle blowing, can influence the life-span of bottle blowing machine even.
Disclosure of Invention
The invention aims to solve the problems and provide a transmission embryo protection device which can prevent bottle embryos from tilting during movement and improve the success rate and the efficiency of bottle blowing.
In order to solve the object, the invention adopts the following technical scheme:
the transmission embryo protection device comprises a frame, a heating head mechanism, a transmission mechanism and a driving mechanism, wherein the transmission mechanism is arranged on the frame, the heating head mechanism is arranged on the transmission mechanism at intervals, the driving mechanism is arranged below the transmission mechanism and is positioned on the frame, the transmission embryo protection device further comprises an embryo protection mechanism, the embryo protection mechanism is of a boss structure, and the embryo protection mechanism comprises a resisting part and a connecting part;
the resisting part is used for resisting the bottle embryo on the heating head mechanism which is driven to the turning position of the driving mechanism, so that the bottle embryo on the heating head mechanism is prevented from tilting due to centrifugal force generated by turning;
the connecting part is connected with the transmission mechanism and synchronously rotates with the transmission mechanism under the drive of the driving mechanism.
More preferably, the transmission mechanism comprises a chain, a bearing guide rail, a chain wheel and a guide rail;
the bearing guide rail and the guide rail are oppositely arranged on the frame, the chain is arranged in the guide rail, the chain wheel is arranged on one side of the chain, and the sprocket teeth of the chain wheel are meshed with the gaps of the chain.
More preferably, the bearing guide rail is of a rectangular structure, and the guide rail is of a rectangular structure;
the four corners of the guide rail are arranged in a disconnected mode, and the chain wheel is arranged at the disconnected position of the guide rail.
More preferably, the sprocket comprises a driving sprocket and three driven sprockets, and the driving mechanism is arranged below the driving sprocket.
More preferably, the heating head mechanism is arranged between the bearing guide rail and the guide rail, and comprises a heating head, a heating head mounting seat and a bottle embryo supporting frame;
the heating head is fixedly arranged at the upper part of the heating head mounting seat;
the bottle embryo support frame is arranged at the upper part of the heating head, the bottle embryo support frame is a T-shaped support, and two ends of the bottle embryo support frame are propped against the inner wall of the bottle embryo;
the heating head mounting seat comprises a base, a rolling shaft and a connecting mechanism, wherein the rolling shaft and the connecting mechanism are respectively arranged on two sides of the base, the connecting mechanism is fixedly connected with the chain and synchronously drives the chain, and the rolling shaft is arranged on the upper surface of the bearing guide rail in a rolling way.
More preferably, the connecting mechanism is connected with the chain in a pin connection mode.
More preferably, the driving mechanism comprises a motor and a motor mounting seat, the motor mounting seat is arranged below the frame, the motor is fixedly mounted on the motor mounting seat, and an output shaft of the motor is connected with the driving sprocket.
More preferably, the driving mechanism further comprises a speed reducer, and the speed reducer is arranged below the motor.
More preferably, the motor further comprises a gasket, and the gasket is arranged between the motor and the driving sprocket.
More preferably, two embryo protection mechanisms are arranged, and the two embryo protection mechanisms are respectively arranged above the driving sprocket and the driven sprocket adjacent to the driving sprocket.
The invention aims to provide a transmission embryo protection device which can effectively prevent bottle embryos from tilting during movement and improve the success rate and efficiency of bottle blowing.
Drawings
FIG. 1 is a side view of one embodiment of the present invention;
FIG. 2 is a perspective view of one embodiment of the present invention;
FIG. 3 is a schematic diagram of one embodiment of the present invention;
FIG. 4 is a block diagram of a transmission mechanism according to one embodiment of the present invention;
wherein: a frame 1; a heating head mechanism 2; a heating head 21; a heating head mount 22; a base 221; a roll shaft 222; a connection mechanism 223; a preform supporting frame 23; a transmission mechanism 3; a chain 31; a bearing rail 32; a sprocket 33; a drive sprocket 331; a driven sprocket 332; a guide rail 34; a driving mechanism 4; a motor 41; a motor mount 42; a speed reducer 43; a gasket 44; a blank protecting mechanism 5; a resisting portion 51; a connecting portion 52; and a bottle embryo 6.
Detailed Description
The technical scheme of the invention is further described below by means of specific embodiments in combination with the accompanying drawings.
The utility model provides a transmission protects embryo device, includes frame 1, heating head mechanism 2, drive mechanism 3 and actuating mechanism 4, drive mechanism 3 set up in frame 1, heating head mechanism 2 interval set up in drive mechanism 3, actuating mechanism 4 set up in the below of drive mechanism 3 and lie in frame 1, still include protect embryo mechanism 5, protect embryo mechanism 5 to be the boss structure, protect embryo mechanism 5 and include keep out portion 51 and connecting portion 52; the resisting part 51 is used for resisting the bottle embryo 6 on the heating head mechanism 2 which is driven to the turning position of the driving mechanism 3, so as to prevent the bottle embryo 6 on the heating head mechanism 2 from tilting due to centrifugal force generated by turning; the connecting part 52 is connected to the transmission mechanism 3 and rotates synchronously with the transmission mechanism 3 under the drive of the driving mechanism 4.
As shown in fig. 1, 2 and 3, in one embodiment of the present invention, when the bottle embryo 6 is transported to the turning position of the transmission mechanism 3 by the driving mechanism 4, the bottle embryo 6 is inclined due to the centrifugal force generated by the turning, and the supporting point on the inner side of the bottle embryo 6 is lifted, at this time, the embryo protection mechanism 5 plays a role of blocking, so as to prevent the bottle embryo 6 from generating an irreversible inclination and even throwing out of the equipment.
As shown in fig. 3, the blank protecting mechanism 5 is an inverted boss structure, the blank protecting mechanism 5 is composed of the resisting portion 51 and the connecting portion 52, the connecting portion 52 is connected with the transmission mechanism 3 and runs synchronously, a notch of the resisting portion 51 is covered on a protrusion of a bottle mouth of the bottle blank 6, and when the bottle blank 6 is about to incline, the notch of the resisting portion 51 abuts on the protrusion of the bottle mouth of the bottle blank 6, so that the bottle blank 6 is prevented from inclining.
To illustrate further, the transmission 3 comprises a chain 31, a bearing rail 32, a sprocket 33 and a rail 34; the bearing guide rail 32 and the guide rail 34 are arranged on the frame 1 in a manner of being opposite to each other, the chain 31 is arranged in the guide rail 34, the chain wheel 33 is arranged on one side of the chain 31, and the sprocket teeth of the chain wheel 33 are meshed with the gaps of the chain 31. In one embodiment of the present invention, as shown in fig. 1 and 4, the sprocket teeth of the sprocket 33 are engaged with the gaps of the chain 31 to drive the chain 31 to move, the chain is mounted in the guide rail 34, and the bearing guide rail 32 is disposed opposite to the guide rail 34 with a certain gap. In this example, the transmission mechanism 3 is matched with the chain wheel 32 by adopting the chain 31, can work in low-custom and high-temperature environments, and can ensure accurate transmission ratio, larger transmission power and high transmission efficiency.
To further illustrate, the bearing rail 32 has a rectangular configuration and the rail 34 has a rectangular configuration; the four corners of the guide rail 34 are provided with a disconnection, and the sprocket 33 is provided at the disconnection of the guide rail 34. In one embodiment of the present invention, as shown in fig. 4, the bearing guide rail 32 and the guide rail 34 are concentrically rectangular, the guide rail 34 is a broken guide rail, the broken position is four corners of a rectangular structure, the sprocket 33 is disposed at four broken positions of the guide rail 34, the sprocket 33 is used to replace the guide rail, and when the sprocket 33 rotates, the guiding function of the chain 31 is also achieved, and meanwhile, the material is saved, and the cost is reduced.
To illustrate further, the sprocket 33 includes a driving sprocket 331 and three driven sprockets 332, and the driving mechanism 4 is disposed below the driving sprocket 331. As shown in fig. 1 and fig. 2, in one embodiment of the present invention, the sprocket 33 includes a driving sprocket 331 and three driven sprockets 332, the driving sprocket 331 is connected to the driving mechanism 4, and in operation, the driving mechanism 4 drives the driving sprocket 331 to rotate, and the three driven sprockets 332 can be simultaneously driven to rotate by the transmission of the chain 31, so that a driving device is not required to be added to each driven sprocket 332, thereby saving cost and reducing energy consumption.
To illustrate further, the heating head mechanism 2 is disposed between the bearing guide rail 32 and the guide rail 34, and the heating head mechanism 2 includes a heating head 21, a heating head mounting seat 22 and a bottle embryo supporting frame 23; the heating head 21 is fixedly arranged at the upper part of the heating head mounting seat 22; the bottle embryo support frame 23 is arranged at the upper part of the heating head 21, the bottle embryo support frame 23 is a T-shaped support, and two ends of the bottle embryo support frame 23 are propped against the inner wall of the bottle embryo 6; the heating head mounting seat 22 comprises a base 221, a rolling shaft 222 and a connecting mechanism 223, the rolling shaft 222 and the connecting mechanism 223 are respectively arranged on two sides of the base 221, the connecting mechanism 223 is fixedly connected with the chain 31 and synchronously drives the chain 31, and the rolling shaft 222 is arranged on the upper surface of the bearing guide rail 32 in a rolling way.
As shown in fig. 1, 3 and 4, in one embodiment of the present invention, the heating head mechanism 2 is disposed between the gap between the bearing guide rail 32 and the guide rail 34, the heating head mechanism 2 is composed of a heating head 21, a heating head mounting seat 22 and a bottle blank supporting frame 23, the bottle mouth of the bottle blank 6 is sleeved on the heating head 21, the bottle blank supporting frame 23 is a T-shaped bracket, two ends of the T-shaped bracket abut against the inner wall of the bottle blank 6, so as to play a good role in supporting, the heating head mounting seat 22 is composed of a base 221, a rolling shaft 222 and a connecting mechanism 223, the rolling shaft 222 and the connecting mechanism 223 are disposed on two sides of the base 221, and the rolling shaft 222 and the connecting mechanism 223 suspend the heating head mechanism 2 in the gap between the bearing guide rail 32 and the guide rail 34, so that the bottom of the heating head mechanism 2 is suspended, and the production efficiency is improved.
The rolling shaft 222 is mounted on the upper surface of the bearing guide rail 32, and when the heating head mechanism 2 moves, the rolling shaft 222 rolls on the bearing guide rail 32, so that the auxiliary action is achieved, the resistance in the conveying process is reduced, and the production efficiency is improved. The connection mechanism 223 connects and fixes the heating head mechanism 2 and the chain 31, so that the heating head mechanism 2 and the chain 31 move synchronously.
Further describing, the connection mechanism 223 is connected to the chain 31 by a pin. In this example, the connection mode between the connection mechanism 223 and the chain 31 is pin connection, so that the connection mechanism is convenient to disassemble and assemble, and convenient to replace and maintain.
To illustrate further, the driving mechanism 4 includes a motor 41 and a motor mounting seat 42, the motor mounting seat 42 is disposed below the frame 1, the motor 41 is fixedly mounted on the motor mounting seat 42, and an output shaft of the motor 41 is connected with the driving sprocket 331.
To illustrate further, the driving mechanism 4 further includes a speed reducer 43, and the speed reducer 43 is disposed below the motor 41.
Further described, a spacer 44 is further included, and the spacer 44 is disposed between the motor 41 and the driving sprocket 331. As shown in fig. 1, in one embodiment of the present invention, the gasket is disposed between the motor 41 and the driving sprocket 331, which plays a role in protecting equipment and damping, preventing loss of the equipment caused by the motor during operation, and improving service life of the equipment.
To further illustrate, two blank protecting mechanisms 5 are provided, and the two blank protecting mechanisms 5 are respectively disposed above the driving sprocket 331 and the driven sprocket 332 adjacent to the driving sprocket 331.
The technical principle of the present invention is described above in connection with the specific embodiments. The description is made for the purpose of illustrating the general principles of the invention and should not be taken in any way as limiting the scope of the invention. Other embodiments of the invention will be apparent to those skilled in the art from consideration of this specification without undue burden.

Claims (8)

1. The utility model provides a transmission protects embryo device, includes frame, heats first mechanism, drive mechanism and actuating mechanism, drive mechanism set up in the frame, heat first mechanism interval set up in drive mechanism, actuating mechanism set up in drive mechanism's below and be located frame, its characterized in that: the automatic protection device also comprises a protection mechanism, wherein the protection mechanism is of a boss structure and comprises a resisting part and a connecting part;
the resisting part is used for resisting the bottle embryo on the heating head mechanism which is driven to the turning position of the driving mechanism, so that the bottle embryo on the heating head mechanism is prevented from tilting due to centrifugal force generated by turning, and a notch of the resisting part is abutted to the bulge of the bottle mouth of the bottle embryo;
the connecting part is connected with the transmission mechanism and synchronously rotates with the transmission mechanism under the drive of the driving mechanism;
the transmission mechanism comprises a chain, a bearing guide rail, a chain wheel and a guide rail;
the bearing guide rail and the guide rail are oppositely arranged on the frame, the chain is arranged in the guide rail, the chain wheel is arranged on one side of the chain, and the sprocket teeth of the chain wheel are meshed with the gaps of the chain;
the heating head mechanism is arranged between the bearing guide rail and the guide rail and comprises a heating head, a heating head mounting seat and a bottle embryo supporting frame;
the heating head is fixedly arranged at the upper part of the heating head mounting seat;
the bottle embryo support frame is arranged at the upper part of the heating head, the bottle embryo support frame is a T-shaped support, and two ends of the bottle embryo support frame are propped against the inner wall of the bottle embryo;
the heating head mounting seat comprises a base, a rolling shaft and a connecting mechanism, wherein the rolling shaft and the connecting mechanism are respectively arranged on two sides of the base, the connecting mechanism is fixedly connected with the chain and synchronously drives the chain, and the rolling shaft is arranged on the upper surface of the bearing guide rail in a rolling way.
2. A transmission blank holder according to claim 1, wherein: the bearing guide rail is of a rectangular structure, and the guide rail is of a rectangular structure;
the four corners of the guide rail are arranged in a disconnected mode, and the chain wheel is arranged at the disconnected position of the guide rail.
3. A transmission blank holder as claimed in claim 2, wherein: the chain wheel comprises a driving chain wheel and three driven chain wheels, and the driving mechanism is arranged below the driving chain wheel.
4. A transmission blank holder according to claim 1, wherein: the connecting mechanism is connected with the chain in a pin connection mode.
5. A transmission blank holder according to claim 3, wherein: the driving mechanism comprises a motor and a motor mounting seat, wherein the motor mounting seat is arranged below the frame, the motor is fixedly mounted on the motor mounting seat, and an output shaft of the motor is connected with the driving sprocket.
6. The transmission blank holder of claim 5, wherein: the driving mechanism further comprises a speed reducer, and the speed reducer is arranged below the motor.
7. The transmission blank holder of claim 5, wherein: the motor driving chain wheel is characterized by further comprising a gasket washer, wherein the gasket washer is arranged between the motor and the driving chain wheel.
8. A transmission blank holder according to claim 3, wherein: the blank protection mechanisms are arranged in two, and the two blank protection mechanisms are respectively arranged above the driving sprocket and the driven sprocket adjacent to the driving sprocket.
CN201710743457.5A 2017-08-25 2017-08-25 Transmission embryo protection device Active CN107538720B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710743457.5A CN107538720B (en) 2017-08-25 2017-08-25 Transmission embryo protection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710743457.5A CN107538720B (en) 2017-08-25 2017-08-25 Transmission embryo protection device

Publications (2)

Publication Number Publication Date
CN107538720A CN107538720A (en) 2018-01-05
CN107538720B true CN107538720B (en) 2023-11-17

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Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1335219A (en) * 2000-07-25 2002-02-13 徐光中 Conveying mechanism for bottle blow molding machine
CN203139714U (en) * 2012-12-31 2013-08-21 杭州兴源过滤科技股份有限公司 Chain travelling mechanism for chamber type filter press side beam filter cloth washing car
CN103331903A (en) * 2013-06-21 2013-10-02 杭州中亚机械股份有限公司 Bottle blank heating device of rotary bottle blowing machine
CN103395192A (en) * 2013-06-21 2013-11-20 杭州中亚机械股份有限公司 Bottle preform heating device of rotary bottle blowing machine
CN203992309U (en) * 2014-08-29 2014-12-10 福建汇华集团东南汽车缸套有限公司 The automatic cooling conveying device of a kind of cylinder liner blank
CN105501812A (en) * 2015-12-24 2016-04-20 重庆兆峰玻璃晶品有限公司 Anti-toppling device of glass bottles
CN105540500A (en) * 2016-02-22 2016-05-04 苏州市职业大学 Tire conveying device
CN105600384A (en) * 2015-12-24 2016-05-25 重庆兆峰玻璃晶品有限公司 Glass bottle bend conveying device
CN207190248U (en) * 2017-08-25 2018-04-06 佛山建邦机械有限公司 One kind transmission shield fetus device

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1335219A (en) * 2000-07-25 2002-02-13 徐光中 Conveying mechanism for bottle blow molding machine
CN203139714U (en) * 2012-12-31 2013-08-21 杭州兴源过滤科技股份有限公司 Chain travelling mechanism for chamber type filter press side beam filter cloth washing car
CN103331903A (en) * 2013-06-21 2013-10-02 杭州中亚机械股份有限公司 Bottle blank heating device of rotary bottle blowing machine
CN103395192A (en) * 2013-06-21 2013-11-20 杭州中亚机械股份有限公司 Bottle preform heating device of rotary bottle blowing machine
CN203992309U (en) * 2014-08-29 2014-12-10 福建汇华集团东南汽车缸套有限公司 The automatic cooling conveying device of a kind of cylinder liner blank
CN105501812A (en) * 2015-12-24 2016-04-20 重庆兆峰玻璃晶品有限公司 Anti-toppling device of glass bottles
CN105600384A (en) * 2015-12-24 2016-05-25 重庆兆峰玻璃晶品有限公司 Glass bottle bend conveying device
CN105540500A (en) * 2016-02-22 2016-05-04 苏州市职业大学 Tire conveying device
CN207190248U (en) * 2017-08-25 2018-04-06 佛山建邦机械有限公司 One kind transmission shield fetus device

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Address after: 528000 No. 28 (F1), Zone C, Sanshui Industrial Park, Sanshui District, Foshan City, Guangdong Province

Applicant after: Guangdong Jianbang Machinery Co.,Ltd.

Address before: 528000 Sanshui center science and Technology Industrial Zone, Foshan City, Guangdong Province

Applicant before: FOSHAN JIANBANG MACHINERY Co.,Ltd.

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