Pulse current and vibration matched feeding device

A technology of pulse current and feeding device, which is applied in the direction of accessory devices, electric processing equipment, power supply circuits, etc., can solve the problems of small gap processing short circuit, affecting processing accuracy, stray corrosion, etc., to reduce stray corrosion and improve precision , the effect of reducing energy consumption

Inactive Publication Date: 2017-11-07
CHANGZHOU INST OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

During the processing, the gap is filled with electrolyte, because the products dissolved in the anode of electrolytic processing are all dissolved in the electrolyte, if the electrolyte in the processing gap cannot be updated in time, the electrolytic processing cannot be carried out normally, even in small gap processing short circuit phenomenon
On the other hand, DC power electrolytic machining will produce stray corrosion, so that electrolytic machining will also occur in parts that do not need to be processed, seriously affecting the machining accuracy

Method used

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  • Pulse current and vibration matched feeding device
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Embodiment Construction

[0018] The present invention will be described in further detail below in conjunction with the accompanying drawings.

[0019] The present invention is a pulse current and vibration matching feeding device, such as figure 1 shown.

[0020] Cam 1 and slider 2 form a mechanical vibration mechanism, cam 1 rotates to drive slider 2 to vibrate up and down, cylindrical cam 1 is processed with 2 identical cam profile curves 1-1, and slider 2 is equipped with 2 cylindrical pins 3. Make the slider 2 stressed symmetrically. The taper hole 1-2 on the slider 2 is used for positioning when installing the cathode and sealing of the internally sprayed electrolyte. The bolts 8 are used to install the device to the beam of the electrolytic machining machine tool. The first metal damping material 9 and the second metal damping material 10 can isolate vibration and eliminate the influence of mechanical vibration on the electrolytic machining machine tool. A permanent magnet 4 is installed on ...

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Abstract

The invention discloses a pulse current and vibration matched feeding device which comprises a housing, and a cam and a sliding block that are arranged in the housing; the upper part of the cam is connected with a motor; a groove is formed in the upper part of the sliding block; the lower part of the cam is movably sleeved in the groove in the upper part of the sliding block; profile curves are formed in the cam; cylindrical pins are arranged on the sliding block, and are limited in the profile curves of the cam, and thus rotary motion of the cam is converted to up-down vibration of the sliding block; a permanent magnet is arranged on the sliding block; a hall switch is arranged at the place where the sliding block is in the lowest position after the sliding block vibrates downwards, in the housing; and when the sliding block is in the lowest position after the sliding block vibrates downwards, the hall switch sends out a voltage signal to a driving module, and thus a pulse power source sends out a packet high frequency pulse. An electrolytic solution in a machining gap can be renewed effectively; pulse current and vibration are matched for feeding, a cathode is vibrated to be fed to a place closest to an anode and the pulse power source sends out pulse, thus dispersion corrosion is reduced, energy consumption is reduced, and the precision of electrolytic machining is improved.

Description

technical field [0001] The invention relates to an electrolytic machining pulse current and vibration matching feeding device and method used in the field of non-traditional machining, and is mainly used for pulse current vibration feeding precision electrolytic machining. Background technique [0002] At present, the processing used in mechanical manufacturing can be divided into traditional mechanical processing and non-traditional processing. [0003] Traditional machining relies on the tool material being harder than the workpiece material, and using mechanical energy to remove excess material on the workpiece, which is generally feasible. However, when the workpiece material becomes harder and the processed surface becomes more and more complex, traditional machining will limit the productivity and affect the processing quality, and sometimes even cannot be processed; if the wall thickness of the workpiece is getting smaller and smaller (the wall thickness is less than ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B23H3/00B23H11/00
CPCB23H3/00B23H11/00B23H2300/10
Inventor 干为民朱红朱烨徐波许泽刚金祥曙
Owner CHANGZHOU INST OF TECH
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