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Device for continuously conveying materials, its conveying method and its application in tunnel furnace

A technology for conveying materials and materials, which is applied in the field of devices for continuously conveying materials, can solve the problems of increase in defective products, deformation of metal transmission mechanisms, and economic losses of users.

Active Publication Date: 2016-06-22
高竹梅
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] When the tunnel furnace is working, the material to be processed is usually conveyed to the tunnel furnace for processing by means of a circular conveying device of metal or ceramic material. Usually, the temperature in the tunnel furnace exceeds 200°C, especially the processed material usually needs to be sprayed Corrosive substances or sintering in a corrosive gas environment. Under the influence of such a high temperature and strong corrosive environment, the metal transmission device or metal transmission mechanism entering the furnace will often be deformed, corroded or structurally damaged, resulting in incorrect material transmission positions. Accurate, the conveying device is easy to damage the conveyed materials after deformation, resulting in an increase of defective products, and even stop production, causing economic losses to users

Method used

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  • Device for continuously conveying materials, its conveying method and its application in tunnel furnace

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Effect test

Embodiment approach 1

[0020] This embodiment provides a preferred embodiment of a device for continuously conveying materials. The device is composed of a first group of conveying components and a second group of conveying components that can reciprocate up and down simultaneously, and can also reciprocate up and down independently; Such as figure 1 As shown, the first group of conveying components is composed of the first group of corrugated conveying sheets 11 with 2 conveying sheets, the first group of conveying sheet supports 12 with 2 brackets, and the first group of lifting transmission mechanisms 13 with 2 transmission mechanisms. , the two transmission sheets of the first group of corrugated transmission sheets 11 are respectively fixed on the two supports of the first group of transmission sheet supports 12, and the two supports of the first group of transmission sheet supports 12 are respectively fixed on the first group of lifting transmission mechanisms 13 On the 2 conveying mechanisms...

Embodiment approach 2

[0024] This embodiment provides a method for conveying materials using the device for continuously conveying materials in Embodiment 1, including the following steps:

[0025] S1: first put the cylindrical material (such as figure 1 No. 31) is placed at one end of the flush first and second sets of conveying components. At the beginning, ensure that the cylindrical material 31 is located at the horizontal end of the first set of corrugated conveying sheets 11, and at the second set of corrugated conveying sheets 21 between the first peak and the trough of ;

[0026] S2: Ascending the second set of corrugated conveying sheets 21, the cylindrical material 31 will roll down from between the first crest and trough of the second set of corrugated conveying sheets 21 to the first wave of the second group of corrugated conveying sheets 21 due to its own gravity. Within a trough, that is, the first peak position of the first group of waveform transmission sheets 11;

[0027] S3: Lo...

Embodiment approach 3

[0032] This embodiment provides an application of the device for continuously conveying materials in Embodiment 1 when conveying materials in a tunnel furnace. In this embodiment, the first and second groups of corrugated conveying sheets 11 and 21, The first and second group of transmission plate supports 12 and 22 are placed in the tunnel furnace, and the first and second group of lifting transmission mechanisms 13 and 23 are placed outside the tunnel furnace for operation, so that the first and second group of lifting transmission mechanisms can be avoided. Mechanisms 13 and 23 are damaged by the high temperature or strong corrosive environment inside the tunnel furnace.

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Abstract

The invention relates to the field of material conveying, and discloses a device for continuously conveying materials and its conveying method as well as its application in a tunnel furnace. Two sets of conveying components are composed; the first group of corrugated conveying sheets in the first group of conveying assemblies is fixed on the first group of conveying sheet supports, and the first group of conveying sheet supports is fixed on the first group of lifting and lowering transmission mechanisms; the second group of conveying assemblies The second group of corrugated conveying sheets in the second group is fixed on the second group of conveying sheet supports, and the second group of conveying sheet supports is fixed on the second group of lifting transmission mechanisms; the first and second groups of corrugated conveying sheets are parallel to each other, and the two The peak and trough positions of the latter are set relative to each other. Compared with the prior art, the conveying sheet used for conveying materials in the device will not be damaged by high temperature or strong corrosive environment, the conveying materials are relatively stable, the yield rate is high, and the conveying position is accurate.

Description

technical field [0001] The invention relates to the field of material conveying, in particular to a device for continuously conveying materials, a conveying method thereof and an application in a tunnel furnace. Background technique [0002] When the tunnel furnace is working, the material to be processed is usually conveyed to the tunnel furnace for processing by means of a circular conveying device of metal or ceramic material. Usually, the temperature in the tunnel furnace exceeds 200°C, especially the processed material usually needs to be sprayed Corrosive substances or sintering in a corrosive gas environment. Under the influence of such a high temperature and strong corrosive environment, the metal transmission device or metal transmission mechanism entering the furnace will often be deformed, corroded or structurally damaged, resulting in incorrect material transmission positions. Accurate, the deformation of the conveying device is easy to damage the transported mat...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B65G35/00
Inventor 高竹梅郑炯光孔飞
Owner 高竹梅