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An automated production line for ferrite magnetic tiles and its implementation method

An automated production line, ferrite magnet technology, applied in ceramic molding workshops, auxiliary molding equipment, ceramic molding machines, etc., can solve problems such as low production efficiency, low product qualification rate, and increased production costs, and achieve high production efficiency, The effect of high product qualification rate and short production cycle

Active Publication Date: 2018-08-28
HENGDIAN GRP DMEGC MAGNETICS CO LTD +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] 1. Low production efficiency;
[0005] 2. The product qualification rate is low and the stability is poor;
[0006] 3. The production cycle is too long, which increases the production cost;
[0007] 4. The area is too large;
[0008] 5. Poor working conditions and more manual use

Method used

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  • An automated production line for ferrite magnetic tiles and its implementation method
  • An automated production line for ferrite magnetic tiles and its implementation method
  • An automated production line for ferrite magnetic tiles and its implementation method

Examples

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Embodiment 1

[0046] like Figure 1-7As shown, an automatic production line for ferrite magnetic tiles, including a press, the output end of the press is a press output conveyor belt, the front end of the press output conveyor belt is provided with a regular chamfering platform, and the regular chamfering platform is provided with chamfer The regular chamfering platform is connected with the blank chamfering manipulator, the first conveyor belt is installed above the output conveyor belt of the press, the billet discharge robot is installed on the side of the first conveyor belt, and the empty board supply device is installed at the outlet end of the first conveyor belt , The front end of the empty plate supply device is a transfer conveyor belt, the outlet end of the transfer conveyor belt is connected to the main conveyor belt, and the main conveyor belt is connected to the kiln.

[0047] like figure 2 As shown, a regularizing mechanism is provided on the regular chamfering platform in ...

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PUM

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Abstract

The invention discloses a ferrite magnetic tile automatic production line. The ferrite magnetic tile automatic production line comprises a pressing machine. The output end of the pressing machine is provided with a pressing machine output conveying belt. A regularization chamfering platform is arranged at the front end of the pressing machine output conveying belt, provided with a chamfering device and connected with a blank-taking chamfering manipulator. A first conveying belt is arranged above the pressing machine output conveying belt. The side edge of the first conveying belt is provided with a blank-discharging manipulator. The outlet end of the first conveying belt is provided with a bare board supplying device. The front end of the bare board supplying device is provided with a transfer conveying belt. The outlet end of the transfer conveying belt is connected with a main conveying belt which is connected with a kiln. The invention further discloses an implementation method of the ferrite magnetic tile automatic production line. The ferrite magnetic tile automatic production line and the implementation method of the ferrite magnetic tile automatic production line have the characteristics of being simple in structure, good in product quality, high in production efficiency, small in production area, low in production cost, short in production cycle and the like.

Description

technical field [0001] The invention relates to the production technology of magnetic tiles, in particular to an automatic production line of ferrite magnetic tiles and its realization method. Background technique [0002] Magnetic materials have magnetically ordered strong magnetic substances, and in a broad sense also include weak magnetic and antiferromagnetic substances that can apply their magnetic properties and magnetic effects. At present, magnetic materials are widely used in various industries. [0003] The whole production process of the magnetic material needs to go through processes such as pressing, billet making, and sintering. However, in the prior art, the processes of pressing, transferring, and sintering the blank require manual operations. Such technology will have the following technical problems: [0004] 1. Low production efficiency; [0005] 2. The product qualification rate is low and the stability is poor; [0006] 3. The production cycle is too...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B28B15/00B28B3/00B28B17/00
CPCB28B3/00B28B15/00B28B17/00
Inventor 何时金厉力波何军义金清育金郁金伟翔
Owner HENGDIAN GRP DMEGC MAGNETICS CO LTD