Wire electric discharge machine

US9950378B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9950378-B2
Application numberUS-201615088186-A
CountryUS
Kind codeB2
Filing dateApr 1, 2016
Priority dateApr 2, 2015
Publication dateApr 24, 2018
Grant dateApr 24, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

In a wire electric discharge machine, a discharge delay time is used to classify the inter-electrode state into three categories; a short-circuit state, small-gap state, and large-gap state. Based on this classification, the magnitude of a machining current supplied from a main discharge circuit is determined. If the discharge delay time is zero (i.e., if no electric discharge is generated) after the lapse of a predetermined time since the start of the application of a machining voltage to an inter-electrode gap by an auxiliary discharge circuit, the inter-electrode gap is determined to be short-circuited by machining chips. Thereupon, a short-circuit machining current is supplied from the main discharge circuit to the inter-electrode gap to remove the machining chips. In this way, establishment of a complete short-circuit state is prevented so that the machining efficiency is improved to increase the machining speed.

First claim

Opening claim text (preview).

The invention claimed is: 1. A wire electric discharge machine which comprises an auxiliary discharge circuit, configured to apply a voltage to an inter-electrode gap between an electrode and a workpiece, thereby inducing electric discharge, and a main discharge circuit configured to supply a machining current, and machines the workpiece by repeating a cycle in which the main discharge circuit is activated and stopped after the auxiliary discharge circuit is activated, the wire electric discharge machine comprising: a discharge delay time measuring unit configured to measure a discharge delay time, which is a duration without electric discharge such that a machining voltage is applied from the auxiliary discharge circuit to the inter-electrode gap, wherein a short-circuit machining current is supplied from the main discharge circuit to the inter-electrode gap when a result of measurement by the discharge delay time measuring unit is zero after a lapse of a predetermined short-circuit determination period since a start of an application of the machining voltage to the inter-electrode gap by the auxiliary discharge circuit, no machining current is supplied from the main discharge circuit to the inter-electrode gap or a machining current lower than or equal to the short-circuit machining current is supplied when electric discharge is generated and the discharge delay time is less than a reference value after the short-circuit determination period, a normal machining current equal to or higher than the short-circuit machining current is supplied from the main discharge circuit to the inter-electrode gap when electric discharge is generated and the discharge delay time is not less than the reference value after the short-circuit determination period, and the machining current applied to the inter-electrode gap when electric discharge is generated and the discharge delay time is less than the reference value after the short-circuit determination period, is lower than the normal machining current applied to the inter-electrode gap when electric discharge is generated and the discharge delay time is not less than the reference value after the short-circuit determination period. 2. The wire electric discharge machine according to claim 1 , wherein the discharge delay time measuring unit measures a duration in which the absolute value of an inter-electrode machining voltage waveform is not lower than a threshold. 3. The wire electric discharge machine according to claim 1 , wherein the discharge delay time measuring unit measures a duration in which the absolute value of an inter-electrode machining voltage waveform having exceeded a first threshold falls below a second threshold. 4. The wire electric discharge machine according to claim 1 , wherein unit for detecting generation of the electric discharge detects the electric discharge when the absolute value of the inter-electrode machining voltage waveform having exceeded a threshold falls below the threshold. 5. The wire electric discharge machine according to claim 1 , wherein unit for detecting generation of the electric discharge detects the electric discharge when the absolute value of the inter-electrode machining voltage waveform having exceeded a first threshold falls below a second threshold. 6. The wire electric discharge machine according to claim 1 , wherein unit for detecting generation of the electric discharge detects the electric discharge if the discharge delay time output from the discharge delay time measuring unit is more than zero and does not change for a predetermined time or if the amount of change during the predetermined time is not higher than a tolerance. 7. A wire electric discharge machine which comprises an auxiliary discharge circuit, configured to apply a voltage to an inter-electrode gap between an electrode and a workpiece, thereby inducing electric discharge, and a main discharge circuit configured to supply a machining current, and machines the workpiece by repeating a cycle in which the main discharge circuit is activated and stopped after the auxiliary discharge circuit is activated, the wire electric discharge machine comprising: an inter-electrode state determination unit configured to output an open, discharge, or short-circuit signal, depending on an inter-electrode state during a predetermined inter-electrode state determination period, after an application of a machining voltage from the auxiliary discharge circuit to the inter-electrode gap is started, wherein a short-circuit machining current is supplied from the main discharge circuit to the inter-electrode gap when the short-circuit signal is output from the inter-electrode state determination unit, no machining current is supplied from the main discharge circuit to the inter-electrode gap or a machining current lower than or equal to the short-circuit machining current is supplied when the discharge signal is output from the inter-electrode state determination unit, the application of the machining voltage from the auxiliary discharge circuit to the inter-electrode gap is continued when the open signal is output from the inter-electrode state determination unit, and a normal machining current equal to or higher than the short-circuit machining current is supplied from the main discharge circuit to the inter-electrode gap when electric discharge is generated after the inter-electrode state determination period, and the machining current applied to the inter-electrode gap when the discharge signal is output from the inter-electrode state determination unit is lower than the machining current applied to the inter-electrode gap when the open signal is output from the inter-electrode state determination unit and when electric discharge is generated after the inter-electrode state determination period. 8. The wire electric discharge machine according to claim 7 , wherein the inter-electrode state determination unit is configured to compare the absolute value of an inter-electrode machining voltage waveform and a threshold during the inter-electrode state determination period, and determine the inter-electrode state as a short-circuit mode, in response to the waveform being always less than the threshold, a discharge mode, in response to the waveform having exceeded the threshold and falling below the threshold thereafter, and an open mode, in response to the waveform having exceeded the threshold without falling below the threshold thereafter. 9. The wire electric discharge machine according to claim 7 , wherein the inter-electrode state determination unit is configured to compare the absolute value of an inter-electrode machining voltage waveform and first and second thresholds during the inter-electrode state determination period, and determine the inter-electrode state as a short-circuit mode, in response to the waveform being always less than the first or second threshold, a discharge mode, in response to the waveform having exceeded the first threshold and falling below the second threshold thereafter, and an open mode, in response to the waveform having exceeded the first threshold without falling below the first or second threshold thereafter. 10. The wire electric discharge machine according to claim 7 , wherein the inter-electrode state determination unit is configured to output no inter-electrode state determination signals during the inter-electrode state determination period, compare the absolute value of an inter-electrode machining voltage waveform and a threshold at the end of the inter-electrode state determination period, and determine the inter-electrode state as a short-circuit mode, in response to the waveform being less than the threshold

Assignees

Inventors

Classifications

  • B23H1/024Primary

    Detection of, and response to, abnormal gap conditions, e.g. short circuits (preventing short circuits or other abnormal discharges by altering machining parameters using adaptive control B23H7/16) · CPC title

  • Apparatus for supplying current to working gap; Electric circuits specially adapted therefor · CPC title

  • B23H1/02Primary

    Electric circuits specially adapted therefor, e.g. power supply, control, preventing short circuits or other abnormal discharges · CPC title

  • Electrodes specially adapted therefor or their manufacture (B23H9/00 takes precedence) · CPC title

  • Auxiliary apparatus or details, not otherwise provided for · CPC title

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What does patent US9950378B2 cover?
In a wire electric discharge machine, a discharge delay time is used to classify the inter-electrode state into three categories; a short-circuit state, small-gap state, and large-gap state. Based on this classification, the magnitude of a machining current supplied from a main discharge circuit is determined. If the discharge delay time is zero (i.e., if no electric discharge is generated) aft…
Who is the assignee on this patent?
Fanuc Corp
What technology area does this patent fall under?
Primary CPC classification B23H1/024. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Apr 24 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).