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Transmission control method and device

A transmission control and work control technology, applied in conveyor control devices, transportation and packaging, conveyor objects, etc., can solve the problems of waste of human resources, slow speed of sparse baskets, and time consuming.

Inactive Publication Date: 2014-07-16
北京市正兴隆生物科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] When thinning the buds of Pleurotus eryngii, it is necessary to manually move the bud-throwing baskets to the work area. After the bud-thinning work is over, it is necessary to manually move the bud-throwing baskets to the designated place. Because the bud-throwing baskets are relatively heavy, the speed of manually moving the bud-throwing baskets is very slow. Therefore, it takes a lot of manpower and time to carry out the work of removing the buds before and after bud removal, which wastes human resources and time, and cannot be carried out quickly and continuously.

Method used

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  • Transmission control method and device
  • Transmission control method and device

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0106] figure 1 What is shown is a schematic diagram of an application scenario of Embodiment 1 of a transmission control method, figure 2 What is shown is a flow chart of Embodiment 1 of a transmission control method. What is described in this embodiment is that the conveyed object passes through the first feeding conveyor belt (C 1 ) to the conveyor belt in the first working area (C 2 ) and then to the first conveyor belt (C 3 ) transmission process, the specific steps are as follows:

[0107] Step 101: When receiving the first sensor (X 0 ) to the first stopper solenoid valve (Y 0 ) to send a first descending control instruction, and send a first timing trigger instruction to the first timer, the first descending control instruction is used to control the first stopper solenoid valve (Y 0 ) work down, the first timing trigger instruction is used to trigger the first timer for the first stopper solenoid valve (Y 0 ) to time the work down time.

[0108] First sensor (...

Embodiment 2

[0125] image 3 What is shown is a schematic diagram of an application scenario of Embodiment 2 of a transmission control method. In this embodiment, compared with Embodiment 1, a conveyor belt in the first waiting area (C 4 ), and there are multiple conveyor belts containing the first waiting area (C 4 ) transmission channel for transmission.

[0126] During the transmission process, the conveyed objects are first conveyed to the first working zone conveyor belt in the first zone (C 2 ), and then send another transfer item to the conveyor belt in the first waiting area of ​​the first area (C 4 ), and then, transfer the third feed to the first working zone conveyor belt in the second zone (C 2 ), and then send the fourth transfer item to the first waiting area conveyor belt in the second area (C 4 ), and so on, the transfer items are sent to the conveyor belt in the first working area from the first area to the last area in turn (C 2 ) and the conveyor belt in the first w...

Embodiment 3

[0159] In this embodiment, compared with Embodiment 2, in the transmission process, the conveyed objects are first conveyed to the first working area conveyor belt (C 2 ), and then sequentially transfer the objects to the conveyor belt in the first waiting area from the first area to the last area (C 4 ).

[0160] In this application, there may be transmission channels in N zones, where N is a natural number. For the convenience of description, in Embodiment 3, the above-mentioned transmission channels in five zones are taken as an example, and the transmission objects are bamboo baskets as an example.

[0161] Step 301: When receiving the first sensor (X 0 ) After sensing the induction signal sent by the bud-thinning basket, it sends to the first stopper solenoid valve (Y 0 ) to send a first descending control instruction, and send a first timing trigger instruction to the first timer, the first descending control instruction is used to control the first stopper solenoid va...

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Abstract

The invention discloses a transmission control method and device. The method provided by the invention comprises the following steps that: when a sensing signal sent by a sensor due to passing of a transmission subject is received, a corresponding control signal is sent to a transmission device, and further, the transmission subject is transmitted to a first work area conveyor belt (C2) via a first feed conveyor belt (C1) for processing; after the processing is completed, the transmission subject is transmitted to a first discharge conveyor belt (C3) via a first work area conveyor belt (C2); and the transmission process of the transmission subject is completed under control of automatic sensing. The device provided by the invention is a device corresponding to the method provided by the invention.

Description

technical field [0001] The invention relates to the field of automatic control, in particular to a transmission control method and device. Background technique [0002] Pleurotus eryngii, also known as Pleurotus eryngii, is a rare new variety of edible fungus that has been successfully developed and cultivated in recent years. Pleurotus eryngii is a combination of food, medicine and diet. It not only has almond fragrance, thick meat, fresh and tender taste, fragrant taste, and rich nutrition; Therefore, Pleurotus eryngii is very popular with people, and the market price is 3-5 times higher than that of Pleurotus ostreatus, which has broad commercial value. [0003] In the process of planting Pleurotus eryngii, in order to ensure the quality of edible fungus, increase the diameter of each mushroom, and maintain the specified quantity, it is necessary to reduce the number of mushroom buds, so as to remove some mushroom buds. If necessary measures are not taken for Pleurotus e...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B65G43/08
Inventor 郑雪平
Owner 北京市正兴隆生物科技有限公司