Seal conveying device for full-automatically stacking magnetic material blanks

A technology of conveying device and magnetic material, which is applied to conveyer objects, transportation and packaging, stacking of objects, etc. The effect of automatic stacking and conveying, avoiding labor costs and improving production efficiency

Active Publication Date: 2017-12-15
NINGBO KONIT IND +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The magnetic material manufacturing technology in the domestic magnetic material industry is progressing with each passing day, and the pre-pressing section of the magnet blank is gradually being replaced by automatic production; however, after the automatic magnetic powder press presses the magnet blank, the operator still needs to load the magnet blank Store in a sealed nitrogen-filled and oxygen-exhausting storage box for turnover, and then send it to the sintering furnace to sinter and shape the magnet blank; sintering in the sintering furnace; in the above-mentioned manual operation, there are the following problems: First, the container used for storing the magnet blanks needs to be manually inserted into the operation, so it is difficult to achieve an oxygen-free container. Nitrogen, there will always be a small amount of oxygen infiltrating, and the small amount of oxygen due to leakage will vary from container to container
Second, the magnet blank may be oxidized in a small amount of oxygen-containing environment, and the degree of oxidation is different due to the different oxygen content of each container, so that the magnetic energy of the sintered magnet is directly affected, resulting in magnetic Low energy, unstable, easy to break
Third, when stacking the magnet blanks by manual operation, the blanks are easily cracked and deformed due to the uneven force of picking up the pieces, which directly affects the sintering and shaping
Fourth, the operation link of stacking magnet blanks by manual operation requires more operators to work and consumes a lot of labor

Method used

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  • Seal conveying device for full-automatically stacking magnetic material blanks
  • Seal conveying device for full-automatically stacking magnetic material blanks
  • Seal conveying device for full-automatically stacking magnetic material blanks

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0054] see figure 1 , 2 , a fully automatic sealing conveying device for stacking magnetic material blanks, which includes stacking box stacking cabins 2000 connected in series, a plurality of conveying main channel cabins 3000, manual box feeding cabins 4000, and a box for supporting the manual box feeding cabin and the cabin box support 5000 of the main channel cabin for conveying; the left end of the box stacking cabin 2000 has an output interface 2001 connected with the sintering furnace 1000, and the right end has an input interface 2003 connected with the main channel cabin 3000 for conveying;

[0055] see image 3 , the code box stacking box cabin 2000 includes an ink cartridge base pushing mechanism 2100, a code box stacking box main box body 2002 and an ink cartridge cover pushing mechanism 2200 arranged in the code box stacking box main box body 2002, ink cartridges and ink cartridge cover arrangements Mechanism 2300, Manipulator Mechanism 2400, Elevator Mechanism ...

Embodiment 2

[0068] see Figures 1 to 18 , the present invention has a plurality of channel delivery cabins 3000 that are sealed and connected in the sealed delivery device for fully automatic stacking of magnetic material blanks, and each channel delivery cabin 3000 is connected to a fully automatic magnetic powder press through a press interface (3002) on its side. Corresponding connection; this embodiment takes the sealed conveying device of the fully automatic stacking magnetic material blank with four channel conveying cabins 3000 as an example:

[0069] Connect the feeding outlets of the four fully automatic magnetic powder presses to the press interface 3002 of the four-channel conveying cabin 3000 in the sealed conveying device for fully automatic stacking of magnetic material billets respectively; the pressure gauge interface 4002 is equipped with a reading pressure gauge and an alarm The controller; the manual nitrogen charging and oxygen exhausting interface 4008 is plugged into...

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PUM

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Abstract

The invention discloses a seal conveying device for full-automatically stacking magnetic material blanks. The device comprises a box stacking cabin, multiple conveying main channel cabins, a manual box feeding cabin, and a cabin box bracket for supporting the manual box feeding cabin and the conveying main channel cabins; an output joint is arranged at the left end of the box stacking cabin, and an input joint connected with the conveying main channel cabins is arranged at the right end; and the box stacking cabin comprises an ink box base pushing mechanism, a box stacking main box body, and an ink box cover pushing mechanism, an ink box and ink box cover arranging mechanism, a manipulator mechanism and a lifting table mechanism arranged in the box stacking main box body. Through serial seal connection of the box stacking cabin, the multiple conveying main channel cabins and the manual box feeding cabin, no oxygen and nitrogen containing of the whole seal conveying device are realized; and through mutual cooperation of mechanisms in the box stacking cabin, the multiple conveying main channel cabins and the manual box feeding cabin, full-automatic stacking and conveying of the magnetic material blanks are realized.

Description

technical field [0001] The invention relates to the conveyance of magnetic material blanks, in particular to a sealed conveying device for fully automatic stacking of magnetic material blanks. Background technique [0002] The magnetic material manufacturing technology in the domestic magnetic material industry is progressing with each passing day, and the pre-pressing section of the magnet blank is gradually being replaced by automatic production; however, after the automatic magnetic powder press presses the magnet blank, the operator still needs to load the magnet blank Store in a sealed nitrogen-filled and oxygen-exhausting storage box for turnover, and then send it to the sintering furnace to sinter and shape the magnet blank; sintering in the sintering furnace; in the above-mentioned manual operation, there are the following problems: First, the container used for storing the magnet blanks needs to be manually inserted into the operation, so it is difficult to achieve ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B65G47/82B65G57/11B65G65/32
CPCB65G47/82B65G57/11B65G65/32
Inventor 吕振
Owner NINGBO KONIT IND
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