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Working principle of slow wire processing

 Slow wire walking, also called low-speed wire walking, is a kind of CNC machining machine tool that uses continuously moving fine metal wire as an electrode to pulse spark discharge on the workpiece to generate a high temperature of over 6000 degrees, ablate metal and cut into a workpiece. The principle of wire processing is the phenomenon that there is a gap between the wire electrode and the workpiece, and the metal is removed by continuous discharge. Since the slow-moving wire cutting machine adopts the method of wire electrode continuous feeding, that is, the wire electrode is processed during the movement, so even if the wire electrode is worn out, it can be continuously supplemented, so it can improve the machining accuracy of the parts and slow the wire. The surface roughness of the workpiece processed by the cutting machine can usually reach Ra=0.8μm and above, and the roundness error, linear error and dimensional error of the slow-moving wire cutting machine are much better t

Classification of CNC Machining Occupation Levels

1. Blue-collar layer:   That is, CNC machining operation technicians, proficient in machining and CNC machining process knowledge, proficient in the operation and manual programming of CNC machine tools (attributes: automated machine tools), understand automatic programming and simple maintenance of CNC machine tools (attributes: automated machine tools), such There is a large market demand for personnel, and they are suitable for operating workers of CNC machine tools (attributes: automated machine tools) in the workshop, but due to their single knowledge, their wages will not be much higher.   2. Gray collar layer:   One, CNC machining programmer:   Master the knowledge of 5 Axis CNC machining Aluminum   technology and the operation of CNC machine tools (attributes: automated machine tools), be familiar with the design and manufacturing expertise of complex molds (title: mother of industry), and be proficient in 3D CAD/CAM software, such as UG, GOOGLE PRO/E, etc. ; Familiar with CNC

Elimination of Gear Backlash in CNC Machining Feed System

Elimination of Gear Backlash in CNC Machining Feed System   The transmission gear in the feed system of the CNC machining machine tool must eliminate the transmission gap between the meshing gears as much as possible, otherwise the motion will lag behind the command signal after each reversal of the feed system, which will affect the machining accuracy (accuracy) ). There are the following two common methods for CNC machining machine tools to eliminate the transmission gear gap.   1. Rigidity adjustment method   The rigid adjustment method is an adjustment method that cannot be automatically compensated for the tooth side clearance after adjustment. Therefore, the pitch tolerance and tooth thickness of the gear must be strictly controlled, otherwise the flexibility of the transmission will be affected. This adjustment method has a relatively simple structure and a better transmission rigidity.   (1) Eccentric shaft adjustment method   As shown in Figure 610, the gear 1 is mounted on th

Semikron SKKT500/12E

Semikron SKKT500/12E
#SKKT500/12E Semikron SKKT500/12E New 500A/1200V/SCR/2U, SKKT500/12E pictures, SKKT500/12E price, #SKKT500/12E supplier

SKKT500/12E Features
.Heat transfer through aluminium mitride ceramic isolated metal baseplate
.Precious metal pressure contacts for high reliability
.UL recognized,file no.E63 532
Typical Applications
.AC motor softstarters
.Input converters for AC inverter drives
.Dc motor control (e.g.for michine tools)
.Temperature control (e.g for ovens,chemical processes)
.Professional light dimming (studios,theaters)
Kollektor Emitter Sperrspannung Collector-emittervoltage Tvj = 25°C VCES 1200 V
Kollektor Dauergleichstrom ContinuousD Ccollectorcurrent TC = 100°C, Tvj max = 175°C IC nom 250 A
Periodischer Kollektor Spitzenstrom Repetitive peakcollector current tP = 1 ms ICRM 500 A
Gesamt Verlustleistung Total power dissipation TC = 25°C, Tvj max = 175°C Ptot 620 W
Gate Emitter Spitzenspannung Gate emitter peak voltage VGES +/-20 V
Temperatur in Schaltbetrieb Temperature under switching conditions Tvj op -40 130 °C


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