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Automatic separating and recovering device for zinc-nickel permeated layer permeating agent

An automatic separation and recovery device technology, applied in coating, solid-state diffusion coating, metal material coating technology, etc., can solve the problems of labor intensity and dust, increase processing cost, affect the working environment of workers, etc., and achieve full Effect of recovery and efficient separation

Active Publication Date: 2011-09-28
CHONGQING DAYOU SURFACE TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the penetrating agent powder attached to the infiltrated workpiece is very difficult to remove. The recovery rate of the penetrating agent is only 70% in the washing process with water, which increases the processing cost; the noise is very loud when using vibration to remove dust, generally at 120 Above decibels is not good for environmental protection, and the effect is not very good; manual dust removal, labor intensity and dust are relatively large, which affects the working environment of workers

Method used

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  • Automatic separating and recovering device for zinc-nickel permeated layer permeating agent
  • Automatic separating and recovering device for zinc-nickel permeated layer permeating agent
  • Automatic separating and recovering device for zinc-nickel permeated layer permeating agent

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Embodiment

[0016] Example: see figure 1 , figure 2 , the present invention includes an overturning frame 1, an ash box 2, an ash sieve tank 3, an ash sieve tank driving device 4 and an ash receiving trolley 10. The ash box 2 is a box body with two ends open, and its lower side The bottom protrudes, and an ash outlet is opened at the end of the protruding part, and an inserting plate capable of closing the ash outlet is arranged at the ash outlet.

[0017] The ash sieve tank 3 is a tank body with one end closed and the other end open and a side wall with sieve holes. The sealing device 5 seals it with the opening of the ash box 2. Several ribs are fixed on the inner wall of the ash sieve tank 3. The length direction of the ribs is consistent with the axial direction of the ash sieve tank 3. Also be provided with a tank cover 6 that matches it, can open a through hole at the center of tank cover 6 as required, the size of this through hole is consistent with workpiece tooling davit.

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Abstract

The invention discloses an automatic separating and recovering device for a zinc-nickel permeated layer permeating agent, which comprises a turning machine frame, an ash tank, an ash sieving tank, an ash sieving tank driving device and an ash receiving trolley, wherein the ash tank is a tank body with openings at two ends; the ash sieving tank is a tank body with one end closed and the other end opening and sieve pores on the side wall, the tank body is positioned in the ash tank, the two ends of the ash sieving tank extends out from the openings at the two ends of the ash tank; supporting plates are arranged under the parts, which extend out from the two open ends of the ash tank, of the ash sieving tank; roller devices for supporting the ash sieving tank is arranged between the supporting plates and the ash sieving tank; the ash sieving tank deriving device is connected with the closed end of the ash sieving tank; the ash tank is rotationally connected with the turning machine frame; and a turbine reducer is arranged on the turning machine frame. The device can quickly, efficiently and automatically separate permeating agent powder adhered on the surface of a permeated workpiece, and can fully recover the permeating agent powder.

Description

technical field [0001] The invention relates to a device for recovering the infiltration agent, in particular to an automatic separation and recovery device for the infiltration agent in zinc-nickel infiltration. Background technique [0002] Zinc-nickel coating technology is a metal anti-corrosion technology developed by the National Innovation Fund for Small and Medium-sized Enterprises. In mass production, the usual zinc-nickel coating process is: alkali washing and degreasing-shot blasting rust removal-heating coating-vibration deashing —Water washing to remove the meeting, wherein the last two steps of ash removal are mainly to remove and recover the zinc-nickel powder attached to the surface of the workpiece. However, the penetrating agent powder attached to the infiltrated workpiece is very difficult to remove. The recovery rate of the penetrating agent is only 70% in the washing process with water, which increases the processing cost; the noise is very loud when us...

Claims

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Application Information

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IPC IPC(8): C23C10/28
Inventor 章关孙任佑乾
Owner CHONGQING DAYOU SURFACE TECH
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