What is the problem with the electrical failure of the vertical CNC lathe?
The
high-efficiency vertical CNC lathe is suitable for processing medium
and small discs; the high-strength cast iron base and column for the
cover parts have good stability and seismic performance. The clamping
structure is also very convenient. Small;
oil-water separation structure makes the cooling water clean and
environmentally-friendly and long-lasting separation cooling water tank,
which is convenient for cleaning the precision and high-rigidity
bullet-type spindle structure, and is also convenient for maintenance;
the sleeve of the main shaft is fully symmetrical and the hanging design
also better eliminates heat. The
influence of deformation on the machining accuracy The high-power AC
spindle motor enhances the stability of the machine tool. The spindle is
lubricated with imported high-grade grease.
Fully
enclosed, maintenance-free bed saddle and column guide rails adopt
super-heavy load linear rolling guides with good dynamic response
performance and high precision retention. Equipped with high-quality
6-station vertical electric tool holder, high rigidity, rapid tool
change and reliable centralized machine operation panel It
makes the operation more convenient and fast. The X/Z axis adopts
high-precision ball screw and special bearing for screw, and the
precision is good. The whole type is fully enclosed and protected, and
it is environmentally friendly and clean. When the CNC vertical system electrical system fails, it should be checked as follows:
1.
Numerical control vertical lathe signal and alarm indication method:
hardware alarm indication This refers to various states and fault
indicators on various electronic and electrical devices including
numerical control system and servo system, combined with indicator
status and corresponding functions. Instructions can be used to know the contents of the instructions and the causes and troubleshooting methods.
2.
Parameter adjustment method: CNC vertical lathe CNC system, PLC and
servo drive system are equipped with many modifiable parameters to adapt
to different machine tools and different working conditions. These
parameters not only match the electrical system to the specific
machine, but also make it necessary to achieve high levels of machine
functions. Visual inspection: Simply put, it is the use of sensory inspection. The
fault site personnel are carefully asked about the process of the
fault, the fault phenomenon and the consequences of the fault, and may
be asked multiple times throughout the judgment process.
3.
Interface status check method: Modern CNC system integrates PLC in it,
and CNC and PLC communicate with each other in a series of interface
signals. Some
faults are related to the error or loss of interface signals. Some of
these interface signals can be displayed on the corresponding interface
board and input/output board, and some can be displayed on the CRT
screen by simple operation, and all interfaces The signal can be called up with the PLC programmer. For each group of AC and DC power supply voltages, measure the relevant DC and pulse signals, and find possible faults.
4.
Instrument inspection method uses conventional electrical instruments:
measure the AC and DC power supply voltage of each group, and measure
related DC and pulse signals to find possible faults. For
example, use a multimeter to check the status of each power supply, and
measure the relevant signal state measurement points set on some
boards. Use an oscilloscope to observe the amplitude, phase, or even the
relevant ripple signal. Use the PLC programmer to find the PLC program. The location and cause of the fault.
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