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Casting stopper graphite lubrication starting point calculation method

A calculation method, graphite lubrication technology, applied in the field of metallurgical casting, can solve the problems of block failure, poor quality of casting products, insensitive opening and closing, etc., and achieve the effect of high reliability and good high temperature environment

Inactive Publication Date: 2018-08-07
萝北奥星新材料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In the field of metallurgical casting, in order to improve production efficiency, a continuous casting line has gradually been formed. The casting line is a production line for continuous casting. Multiple casting sand boxes pass through the conveying device sequentially under the molten iron ladle, and the molten iron is injected. During the process of changing the sand box, the molten iron overflows into the next sand box, resulting in poor quality of the casting product. The problem with this method is that the stopper repeatedly contacts and leaves the molten iron, which often occurs when the molten iron attached to the surface of the stopper solidifies and sticks to the surface of the stopper, causing the stopper to lose its function, opening and closing insensitive, and in severe cases There are too many attachments on the block, which still prevents the overflow of molten iron in the open state, causing the danger of molten iron hurting people

Method used

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  • Casting stopper graphite lubrication starting point calculation method
  • Casting stopper graphite lubrication starting point calculation method
  • Casting stopper graphite lubrication starting point calculation method

Examples

Experimental program
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specific Embodiment approach 1

[0061] combine figure 1 and figure 2 As shown, a graphite lubricating device for metallurgical casting blocks disclosed in this embodiment includes: a frame 1, a lifting mechanism 2, an ink spreading mechanism 3 and a block turning mechanism 4, and the upper end of the frame 1 is fixed to the wall End connection, the frame 1 is provided with a lifting mechanism 2, the lifting end of the lifting mechanism 2 is fixedly connected with the ink spreading mechanism 3, a stopper 5 is set under the ink spreading mechanism 3, and the side of the stopper 5 is connected with the stopper turning mechanism 4 , the block turning mechanism 4 is fixedly connected with the frame 1;

[0062] When the stopper 5 is blocked, the lifting mechanism 2 drives the stopper 5 to move downward, while the stopper turning mechanism 4 makes the stopper 5 turn over while moving downwards, and the ink spraying mechanism 3 is on the outside of the stopper 5 in the process of turning over. Ink is sprinkled on...

specific Embodiment approach 2

[0072] This implementation mode is based on the specific implementation mode 1, combining Figure 5 As shown, the difference is that the top of the fixed ink cartridge 31 or the vibrating ink cartridge 32 is hinged with an ink cartridge cover.

[0073] As the vibrating cartridge undergoes repeated vibrations, the graphite powder is splashed by implementing the cartridge cover.

specific Embodiment approach 3

[0074] This implementation mode is based on the specific implementation mode 1, combining figure 1 and image 3 As shown, the difference is that the transmission gear 38 is internally sleeved with a one-way bearing 39, the outer ring of the one-way bearing 39 is fixedly connected with the transmission gear 38, and the inner ring of the one-way bearing 39 is fixedly connected with the vibrating cartridge vibration block B37 , the anti-rotation direction of the one-way bearing 39 is counterclockwise;

[0075] When the stopper 5 moves upwards, there is no need to spray ink. At this time, the auxiliary gear 381 rotates counterclockwise, which drives the transmission gear 38 to rotate clockwise. The one-way bearing 39 allows rotation in the clockwise direction, and the vibration of the ink cartridge vibration block B37 does not occur. Rotate, the vibrating ink cartridge stops vibrating, and the ink spreading mechanism stops ink spraying, which realizes that ink spraying is not per...

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Abstract

The invention relates to the technical field of metallurgy casting, in particular to a casting stopper graphite lubrication starting point calculation method. A casting stopper graphite lubrication device comprises a frame, a lifting mechanism, a graphite spreading mechanism and a stopper overturning mechanism, the upper end of the frame is connected with a fixed end of a wall, the lifting mechanism is arranged on the frame, a lifting end of the lifting mechanism is fixedly connected with the graphite spreading mechanism, a stopper is arranged on the lower portion of the graphite spreading mechanism, the side surface of the stopper is connected with the stopper overturning mechanism, the stopper overturning mechanism is fixedly connected with the frame, so that the cylindrical stopper canvertically motion and overturns in the motioning process, graphite powder is sprayed on the surface of the stopper in the overturning process, the graphite powder covers a contact surface of the stopper and molten iron, and a graphite powder spraying layer completely covers the contact surface of the stopper and the molten iron, so that the device solves the problem that the molten iron is adheredon the surface of the metallurgy casting stopper.

Description

technical field [0001] The invention relates to the technical field of metallurgical casting, in particular to a method for calculating the starting point of graphite lubrication of a casting block. Background technique [0002] In the field of metallurgical casting, in order to improve production efficiency, a continuous casting line has gradually been formed. The casting line is a production line for continuous casting. Multiple casting sand boxes pass through the conveying device sequentially under the molten iron ladle, and the molten iron is injected. During the process of changing the sand box, the molten iron overflows into the next sand box, resulting in poor quality of the casting product. The problem with this method is that the stopper repeatedly contacts and leaves the molten iron, which often occurs when the molten iron attached to the surface of the stopper solidifies and sticks to the surface of the stopper, causing the stopper to lose its function, opening an...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B22D41/14
CPCB22D41/14
Inventor 陈瑞陈庚韩玉凤韩军孙太生韩国军张云剑郎玉海
Owner 萝北奥星新材料有限公司
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