CN211762937U - Transmission mechanism suitable for mould in large-tonnage hot press - Google Patents

Transmission mechanism suitable for mould in large-tonnage hot press Download PDF

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Publication number
CN211762937U
CN211762937U CN201922378209.2U CN201922378209U CN211762937U CN 211762937 U CN211762937 U CN 211762937U CN 201922378209 U CN201922378209 U CN 201922378209U CN 211762937 U CN211762937 U CN 211762937U
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mould
hot press
dies
plate
hot
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CN201922378209.2U
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Chinese (zh)
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万礼礼
史辉
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Jiangsu Shuangma Intelligent Technology Co ltd
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Jiangsu Shuangma Intelligent Technology Co ltd
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Abstract

The utility model provides a transmission device suitable for mould in large-tonnage hot press, including setting up in the climbing mechanism of hot press both sides, be provided with a unable adjustment base on the climbing mechanism, unable adjustment base is last to be provided with through its moving transport assembly of actuating mechanism drive, transport assembly includes the transport platform that forms by power gyro wheel, the ascending drive of climbing mechanism unable adjustment base makes transport assembly and mould contact, the actuating mechanism drive transport assembly drives the mould removes. The utility model has the advantages that: through the direct output of transporting in the mould follow hot press of transmission device to be convenient for directly open the mould, take out the product in the mould, and this transmission device can make mould and hot plate separation, has avoided the heat transfer between the friction influence both between mould and the hot plate.

Description

Transmission mechanism suitable for mould in large-tonnage hot press
Technical Field
The utility model relates to a transmission device suitable for mould in large-tonnage hot press.
Background
For a hot press with thousands of tons or even tens of thousands of tons, the mold is often heavy, sometimes even as high as several tons to tens of tons, the heating and vulcanizing time in the hot press is very long, and when a product is taken out from the mold, the product is often difficult to be taken out due to the limited space in the hot press. Therefore, in order to solve the problem, it is necessary to provide a method for removing the mold from the hot press so as to facilitate the subsequent direct opening of the mold for removing the product from the mold.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to solve foretell technical problem, provide a transmission device who is applicable to mould in the large-tonnage hot press.
The purpose of the utility model is realized through the following technical scheme:
the conveying mechanism is suitable for dies in a large-tonnage hot press and comprises jacking mechanisms arranged on two sides of the hot press, wherein a fixed base is arranged on each jacking mechanism, a conveying assembly which drives the fixed base to operate through a driving mechanism is arranged on each fixed base, each conveying assembly comprises a conveying table formed by power rollers, the jacking mechanisms ascend to drive the fixed bases to move towards the dies, so that the conveying assemblies are in contact with the dies, and the driving mechanisms drive the conveying assemblies to drive the dies to move.
Preferably, the powered rollers are connected by a chain.
Preferably, the driving mechanism is a speed reducer.
Preferably, the jacking mechanism is a lifting oil cylinder.
Preferably, the speed reducer is a variable frequency speed reducer.
Preferably, the conveying mechanism is arranged on two sides of a heating plate of the hot press.
Preferably, the two sides of the die are provided with auxiliary conveying plates, the tops of the auxiliary conveying plates are abutted to the bottom of the upper die plate, the lower part of the auxiliary conveying plates is supported at the bottom of the lower die plate, and one side of each auxiliary conveying plate extends towards the outer side of the die and is arranged outside the heating plate in a protruding mode.
The utility model has the advantages that: through the direct output of transporting in the mould follow hot press of transmission device to be convenient for directly open the mould, take out the product in the mould, and this transmission device can make mould and hot plate separation, has avoided the heat transfer between the friction influence both between mould and the hot plate.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Detailed Description
The utility model discloses a transmission device who is applicable to mould in large-tonnage hot press combines figure 1 to show, sets up in the hot press both sides, and is further, transmission device sets up in the 3 both sides of hot plate of hot press. The lifting mechanism is provided with a fixed base. In this embodiment, the jacking mechanism is a lift cylinder 1. And a lifting shaft of the lifting oil cylinder 1 is connected with the fixed base.
The fixed base is provided with a conveying assembly 2 which drives the fixed base to operate through a driving mechanism, the conveying assembly 2 comprises a conveying table formed by power rollers, and the power rollers are connected through chains. One power roller is connected with a driving mechanism through a transmission shaft, and the driving mechanism moves to drive the power roller to operate. In consideration of actual transmission requirements, the driving mechanism is a variable frequency speed reducer.
For better cooperation transmission, the mould both sides are provided with supplementary delivery board 5, the top and the cope match-plate pattern bottom butt of supplementary delivery board 5, the below of supplementary delivery board 5 bears in the bottom of lower bolster, a side of supplementary delivery board 5 extends the protrusion outside 4 moulds and arranges outside hot plate 3. The transfer mechanism is disposed below the auxiliary conveyor plate 5.
The lifting oil cylinder 1 is lifted to drive the fixed base to move towards the direction of the mould 4 until the auxiliary conveying plate 5 is contacted with the power roller and continues to move upwards, so that the mould is separated from the heating plate, and the driving mechanism drives the power roller to operate to drive the mould to move out of the hot press.
The transmission mechanism can separate the die from the heating plate, thereby avoiding the friction between the die and the heating plate and influencing the heat transfer between the die and the heating plate. The utility model discloses a transmission can avoid using the layer board transportation, adopts no layer board mechanism, has just also avoided the heating vulcanization of the influence mould that the deformation problem of layer board brought. The hot plate direct transfer gives the mould during the heat transfer, avoids heating plate heat transfer among the prior art to need transmit the energy waste of mould through the layer board earlier again, has solved the low scheduling problem of heat transfer efficiency among the prior art.
The utility model has a plurality of specific implementation modes. All technical solutions formed by adopting equivalent substitutions or equivalent transformations fall within the scope of the present invention.

Claims (7)

1. The transmission mechanism is suitable for dies in large-tonnage hot presses and is characterized in that: including setting up in the climbing mechanism of hot press both sides, be provided with a unable adjustment base on the climbing mechanism, unable adjustment base is last to be provided with its moving conveying assembly through actuating mechanism drive, conveying assembly includes the transport platform that is formed by power gyro wheel, the ascending drive of climbing mechanism the unable adjustment base moves to the mould direction, makes conveying assembly and mould contact, and actuating mechanism drives conveying assembly drives the mould removes.
2. The transport mechanism for dies in large tonnage hot presses of claim 1, wherein: the power rollers are connected through chains.
3. The transfer mechanism of claim 2 adapted for use with dies in a large tonnage hot press, wherein: the driving mechanism is a speed reducer.
4. A transfer mechanism suitable for use with dies in large tonnage hot presses as set forth in claim 3, wherein: the jacking mechanism is a lifting oil cylinder.
5. The transport mechanism for dies in large tonnage hot presses of claim 4, wherein: the speed reducer is a variable frequency speed reducer.
6. The transfer mechanism of claim 5 adapted for use with dies in a large tonnage hot press, wherein: the transmission mechanism is arranged on two sides of the heating plate of the hot press.
7. The transfer mechanism of claim 6, adapted for use with dies in large tonnage hot presses, wherein: the hot plate mould is characterized in that auxiliary conveying plates are arranged on two sides of the mould, the top of each auxiliary conveying plate is abutted to the bottom of the upper mould plate, the lower part of each auxiliary conveying plate is supported at the bottom of the lower mould plate, and one side of each auxiliary conveying plate extends to the outer side of the mould and protrudes out of the hot plate.
CN201922378209.2U 2019-12-26 2019-12-26 Transmission mechanism suitable for mould in large-tonnage hot press Active CN211762937U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922378209.2U CN211762937U (en) 2019-12-26 2019-12-26 Transmission mechanism suitable for mould in large-tonnage hot press

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922378209.2U CN211762937U (en) 2019-12-26 2019-12-26 Transmission mechanism suitable for mould in large-tonnage hot press

Publications (1)

Publication Number Publication Date
CN211762937U true CN211762937U (en) 2020-10-27

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922378209.2U Active CN211762937U (en) 2019-12-26 2019-12-26 Transmission mechanism suitable for mould in large-tonnage hot press

Country Status (1)

Country Link
CN (1) CN211762937U (en)

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