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CN-224217120-U - Gao Wenku double-layer door control automatic control system

CN224217120UCN 224217120 UCN224217120 UCN 224217120UCN-224217120-U

Abstract

The utility model relates to a double-layer door control automatic control system for a high-temperature warehouse, and belongs to the field of tire production. The automatic glue feeding device is characterized in that a closed corridor is arranged between an outer door of the heating warehouse and an indoor door of the heating warehouse, an outdoor raw glue waiting station is arranged on a glue material conveying platform outside the outer door of the heating warehouse, an outdoor waiting station sensing photoelectric is arranged on the outdoor raw glue waiting station, the inner door of the heating warehouse is controlled to be opened by an outdoor door driving motor and an indoor door driving motor respectively, the closed corridor inside the outer door of the heating warehouse is provided with a glue material entering waiting station, the glue material entering waiting station is provided with a waiting station sensing photoelectric, the closed corridor inside the inner door of the heating warehouse is provided with an indoor door glue material waiting station, an indoor door glue material waiting area confirmation sensing light is arranged on the indoor door glue material waiting station, a glue material entering heating warehouse station is arranged outside the indoor door of the heating warehouse, and a heating warehouse inner waiting area sensing photoelectric is arranged on the glue material entering heating warehouse waiting station.

Inventors

  • YU WEIYUAN
  • LI SHAOWU
  • XIE JIAKUN
  • ZHANG LIBIN

Assignees

  • 三角轮胎股份有限公司

Dates

Publication Date
20260508
Application Date
20250521

Claims (1)

  1. 1. The automatic control system for the double-layer entrance guard of the high-temperature warehouse is provided with a heating warehouse and is characterized in that the heating warehouse is provided with an outer door of a heating warehouse and an inner door of the heating warehouse, a closed corridor is arranged between the outer door of the heating warehouse and the inner door of the heating warehouse, a glue conveying platform penetrates through the outer door of the heating warehouse, the inner door of the heating warehouse and the closed corridor, a conveying roller is arranged on the glue conveying platform, an outer waiting station for raw glue stock is arranged on the glue conveying platform outside the outer door of the heating warehouse, an outer waiting station induction photoelectric is arranged on the outer waiting station for raw glue stock, the inner door of the heating warehouse and the inner door of the heating warehouse are controlled to be opened by an outer door driving motor and an inner door driving motor respectively, a glue stock entering waiting station is arranged on the closed corridor inside the outer door of the heating warehouse, a waiting station for glue stock entering waiting station for the heating warehouse is arranged on the closed corridor inside the heating warehouse, a waiting station for glue stock entering the heating warehouse is arranged on the waiting station for the indoor door of the heating warehouse, a waiting area confirmation induction light is arranged on the waiting area of the indoor door for the heating warehouse, and a waiting station for the glue stock entering the heating warehouse is arranged on the waiting station for the heating warehouse.

Description

Gao Wenku double-layer door control automatic control system Technical Field The utility model relates to the field of tire production, in particular to a Gao Wenku double-layer door control automatic control system for natural rubber blocks in the process of high-temperature heating, warehouse-in, warehouse-out and transportation. Background It is well known that natural raw rubber materials are made into blocks for convenient transportation and storage before processing in an internal mixer. Due to factors such as winter, regional variation and the like, the temperature of the rubber material is too low, particularly when the rubber core part in the rubber block is directly used for rubber mixing by an internal mixer, the mixing process cannot achieve the uniform mixing effect, and the rubber material quality is affected because the low-temperature rubber material cannot be used. The current treatment method for the low temperature of the raw rubber material mainly comprises heating the rubber material, and the heating warehouse is used for baking the rubber material, so that the method is quick in effect and uniform in temperature. However, in the processes of feeding and discharging the sizing materials into and from the warehouse, heat can be overflowed from the heating warehouse in the lifting and opening and closing processes of the warehouse door, and meanwhile cold air outside the warehouse enters, so that the temperature in the heating warehouse is unbalanced, the local temperature is high, and the warehouse door area is a low-temperature area. The purpose of uniform heating of temperature is not achieved, and meanwhile, the door is opened for a long time to cause great heat energy consumption loss and waste, so that the energy consumption cost is increased. Disclosure of Invention In order to overcome the defects of the prior art, the utility model provides a double-layer door control automatic control system for a high-temperature warehouse, which eliminates heat dissipation of natural rubber blocks in the process of opening doors in the process of high-temperature heating, warehouse-in, warehouse-out and conveying. The technical scheme includes that the automatic control system for the double-layer entrance guard of the high-temperature warehouse is provided with a heating warehouse and is characterized in that the heating warehouse is provided with a Wen Kushi outer door and a heating warehouse indoor door, a closed corridor is arranged between the Wen Kushi outer door and the heating warehouse indoor door, a sizing material conveying platform penetrates through the heating warehouse outdoor door, the Wen Kushi inner door and the closed corridor, conveying rollers are arranged on the sizing material conveying platform, an original sizing material outdoor waiting station is arranged on the sizing material conveying platform outside the Wen Kushi outer door, an outdoor waiting station sensing photoelectric device is arranged on the original sizing material outdoor waiting station, the Wen Kushi outer door and the heating warehouse indoor door are controlled to be opened by an outdoor door driving motor and an indoor door driving motor respectively, a sizing material entering corridor waiting station is arranged on the sealing corridor inside the heating warehouse indoor door, a waiting station sensing photoelectric device is arranged on the sizing material entering corridor, a sizing material waiting station waiting area confirmation sensing light is arranged on the indoor door waiting station, sizing material entering the heating warehouse waiting station is arranged on the indoor door waiting station, and a sizing material waiting station sensing photoelectric device is arranged on the heating warehouse waiting station outside the heating warehouse. The utility model has the beneficial effects of eliminating the mixing quality risk caused by the temperature consumption generated by long-time door opening in the process of feeding the sizing material into the warehouse and the local uneven heating of the heating warehouse. Drawings The utility model will be further described with reference to the drawings and examples. FIG. 1 is a schematic diagram of the structure of the present utility model. In the figure, 1, an original rubber material outdoor waiting station, 2, a rubber material conveying platform, 3, a conveying roller, 4, an outdoor waiting station induction photoelectric device, 5, a door Wen Kushi, an outdoor door driving motor, 7, an outdoor door traction pulley, 8, a door opening, 9, a closed corridor, 10, a rubber material entering the corridor waiting station, 11, a waiting station induction photoelectric device, 12, an indoor door driving motor, 13, an indoor door traction pulley, 14, a warming warehouse indoor door, 15, an indoor door rubber material waiting station, 16, an indoor door waiting area confirmation induction photoelectric device, 17, a rubber material entering the w