Mixed type linear stepping electrochemical machine tool
A linear stepping motor and electrochemical machining technology, applied in the mechanical field, can solve the problems of undiscovered information reports of the same technology, undiscovered equipment or devices, etc., and achieve the effects of improved machining accuracy, good surface quality, and simple machine tool structure
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Embodiment 1
[0024] Such as figure 1 As shown, the composition of the hybrid linear stepping micro-electrochemical machining machine tool of the present invention is: an electromagnetic drive system, a magnetic drag mechanism, a processing system, an interface circuit, a computer control system, a power supply system and a liquid supply system, a power supply system and a supply system The liquid system provides electricity and working electrolyte for the processing machine tool through the connector, see image 3 . The transmission system is not gears, worm gears, screw nuts, belts and other mechanisms. Instead, the magnetic control block 7, the guide block 14, the slide plate 9, and the self-lubricating guide post 11 form a magnetic drag mechanism, and the electromagnetic drive system directly drives the processing system through the magnetic drag mechanism. The slide plate 9 isolates the upper case where the electromagnetic drive system is located from the work box where the processin...
Embodiment 2
[0030] Such as figure 1 As shown, the overall structure is the same as that of Embodiment 1, and the specific electromagnetic drive system is: the stator primary of the electromagnetic drive system is composed of laminated cores with equidistant tooth slots, the X-axis primary 1 and the Y-axis primary 2 are fixed on the On the top frame of the work box, the Z-axis primary 4 is fixed under the X-Y secondary table 3, which is the mover, and the X-Y secondary table 3 as the X-Y mover is provided with mutually perpendicular equidistant grooves. When X or When the Y direction pulse signal arrives, the X-Y table 3 moves along the X or Y direction on the X-Y plane. When the secondary table 3 moves on the X-Y plane, it drives the Z-axis primary 4 fixed below it to move together, along the Z-axis The cylindrical generatrix of the secondary (mover in Z direction) 5 is provided with equidistant cogs in the horizontal direction and vertical direction at the same time, and the coils are ar...
Embodiment 3
[0032] Such as figure 1 As shown, the overall composition is the same as in Embodiment 2, and the magnetron block 7 and the guide block 14 in the magnetic force drag mechanism are all embedded with permanent magnets. Reversely, when the processing object requires the cathode of the tool to rotate in the X, Y, and Z directions at the same time, the C-axis signal drives the mover 5 in the Z direction to rotate, and drives the magnetron block 7 and the guide block 14 to rotate synchronously. In view of the liquid supply And the limitation of the conductive pipeline, the C-direction rotation angle of the cathode of the tool provided by this design is ≤360°.
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