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Porcelain clay composite counter bore machining tool and process

A technology of porcelain mud and countersinking, which is applied in the field of porcelain insulator manufacturing, can solve the problems of unavoidable processing defects of porcelain mud accumulation and countersinking, reducing the electromechanical strength performance of finished ceramic materials, and tedious operation of discharging residual materials, etc., so as to reduce the size and quality inspection. The need for review, the reduction of manual repetitive operations, and the effect of avoiding performance degradation

Pending Publication Date: 2020-08-11
SUZHOU PORCELAIN INSULATOR WORKS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Especially in the production of counterbore with composite structure such as cylinder and cone, the long-term cumulative loss is relatively large
[0003] The composite counterbore of existing porcelain insulators generally adopts off-axis adjustment steel wire forming and hook knife forming methods, and it is difficult to avoid the processing defects of porcelain mud accumulation counterbore
In addition, the operation of feeding, discharging, and discharging the remaining material is cumbersome, which requires high quality workers and is prone to operational fatigue. If the rough silk pattern left by the cutting edge is not further processed, it will reduce the mechanical and electrical strength of the finished porcelain material.

Method used

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  • Porcelain clay composite counter bore machining tool and process
  • Porcelain clay composite counter bore machining tool and process
  • Porcelain clay composite counter bore machining tool and process

Examples

Experimental program
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Embodiment 1

[0021] Such as figure 1 , figure 2 and image 3 As shown, this embodiment relates to a porcelain clay composite countersunk processing tool, including a tool shaft 1, a shaft frame 2 and a profiling tool seat 3, wherein the profiling tool seat 3 is provided with a mud inlet 31 and a mud discharge port 32 , the profiling tool seat 3 is provided with at least one piece of porcelain clay composite counterbore profiling blade 4; the shaft frame 2 is fixed in the profiling tool seat 1, and is provided with a mud inlet and a mud discharge port communicating with the profiling tool seat Channel; tool shaft 1 is fixed on the pedestal 2.

[0022] One mud inlet is provided on the side of the profiling tool seat.

[0023] The tool shaft is arranged on the horizontal displacement mechanism, and is driven to move left and right by the horizontal displacement mechanism; the horizontal displacement mechanism is arranged on the lifting mechanism, and the tool shaft is driven to move up an...

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PUM

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Abstract

The invention discloses a porcelain clay composite counter bore machining tool and process, and belongs to the technical field of porcelain insulator manufacturing. The porcelain clay composite counter bore machining tool comprises a tool shaft, a shaft frame and a profiling tool seat, wherein the profiling tool seat is provided with a clay inlet and a clay outlet; at least one porcelain clay composite counter bore profiling blade is arranged on the profiling tool seat; the shaft frame is fixed to the interior of the profiling tool seat and is provided with a channel communicating with the clay inlet and the clay outlet of the profiling tool seat; and the tool shaft is fixed to the shaft frame. According to the porcelain clay composite counter bore machining tool and process, counter boreswith cylindrical and conical composite structures can be conveniently constructed in a porcelain insulator blank.

Description

technical field [0001] The invention relates to a technology in the field of manufacturing porcelain insulators, in particular to a porcelain clay composite sink hole processing tool and processing technology. Background technique [0002] The electromechanical performance guarantee of porcelain material insulators is related to the ingredients and production process, and the unreasonable cutting process or manual cutting errors in the forming process are the main factors that cause the performance of porcelain materials to fail to meet expectations. Especially in the production of counterbore with composite structure such as cylindrical cone, the long-term cumulative loss is relatively large. [0003] The composite counterbore of existing porcelain insulators is generally formed by off-axis adjustment steel wire forming and hook knife forming, and it is difficult to avoid the processing defect of porcelain mud accumulation in the counterbore. In addition, the operation of ...

Claims

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Application Information

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IPC IPC(8): B28B1/48
CPCB28B1/48
Inventor 周永新戴裕军
Owner SUZHOU PORCELAIN INSULATOR WORKS