VMC966 vertical machining center, because X, Y, Z axis is equipped with high-speed moving linear heavy-duty roller guideway pair, so that the machine tool high-speed feed vibration is small, low-speed feed without crawling, both the high-speed rail machine and the high rigidity of the hard rail machine, so it is widely used in machinery manufacturing industry, die manufacturing industry and other industries. Especially automobile manufacturing and motorcycle manufacturing. After one clamping, the workpiece can automatically and continuously complete the processing of milling, drilling, boring, expansion, hinge, countersink, tapping and so on, which is suitable for mass production. The structure of the whole machine is fixed column type and cross sliding table structure. The fuselage adopts super large stable base, high rigidity long span herringbone column, high speed cutting without vibration and deformation. The whole machine is fully closed and protected, the machine tool is beautiful in shape, easy to operate and easy to maintain. The large parts of the foundation are made of high quality resin sand molding and high strength cast iron material, which makes the machine tool obtain high rigidity and stable accuracy. X, Y, Z axis guideway are used 45 large linear, high rigidity, low friction, low noise. X, Y, Z axis adopts 4 sliders, high rigidity, re-machined, good shock absorption. The large diameter C3 grade ball screw, with pretension structure, eliminates part of the thermal extension.
S pecifications and configuration
unit | VMC 966 | |||
worktable : | ||||
Table size | mm | 1000*550 | ||
T slot | no | 5 | ||
Centre distance | mm | 90 | ||
T-Width | mm | 18 | ||
Max. load of worktable | kg | 500 | ||
machining range : | ||||
Longitudinal travel | mm | 900 | ||
Cross travel | mm | 600 | ||
Vertical travel | mm | 6 00 | ||
spindle nose to table surface | mm | 100-700 | ||
spindle : | ||||
Spindle taper | BT40 | |||
Speed Range | rpm | 40- 8 000 | ||
S pindle output torque (Max.) | N.M | 47.8 | ||
motor | ||||
spindle motor power | kw | 7 | ||
feed :- | ||||
cuttiing feed X/Y/Z | mm / min | 1 -10000 | ||
rapid feed X/Y/Z | m / min | 48/48/48 | ||
feed motor (X/Y/Z) | kw | 2.3/2.3/4 | ||
tool magazine | ||||
tool magazine capacity | piece | 24 | ||
tool magazine type | arm type tool magazine | |||
Max. tool weight | kg | 8 | ||
Max. Tool dia. (full/empty) | 78/120 | |||
Max. Tool length | mm | 300 | ||
Tool changing time ( tool to t ool/cut to cut ) | s | 1.75/5 | ||
accuracy | ||||
positioning accuracy | mm | ±0.005/300 JIS | ||
repeat positioning accuracy | mm | ±0.003 JIS | ||
overall dimensions(LxWxH) | mm | unit | VMC 966 | |
worktable : | ||||
Table size | mm | 1000*550 | ||
T slot | no | 5 | ||
Centre distance | mm | 90 | ||
T-Width | mm | 18 | ||
Max. load of worktable | kg | 500 | ||
machining range : | ||||
Longitudinal travel | mm | 900 | ||
Cross travel | mm | 600 | ||
Vertical travel | mm | 6 00 | ||
spindle nose to table surface | mm | 100-700 | ||
spindle : | ||||
Spindle taper | BT40 | |||
Speed Range | rpm | 40- 8 000 | ||
S pindle output torque (Max.) | N.M | 47.8 | ||
motor | ||||
spindle motor power | kw | 7 | ||
feed :- | ||||
cuttiing feed X/Y/Z | mm / min | 1 -10000 | ||
rapid feed X/Y/Z | m / min | 48/48/48 | ||
feed motor (X/Y/Z) | kw | 2.3/2.3/4 | ||
tool magazine | ||||
tool magazine capacity | piece | 24 | ||
tool magazine type | arm type tool magazine | |||
Max. tool weight | kg | 8 | ||
Max. Tool dia. (full/empty) | 78/120 | |||
Max. Tool length | mm | 300 | ||
Tool changing time ( tool to t ool/cut to cut ) | s | 1.75/5 | ||
accuracy | ||||
positioning accuracy | mm | ±0.005/300 JIS | ||
repeat positioning accuracy | mm | ±0.003 JIS | ||
overall dimensions(LxWxH) | mm | 2600×3000×2800 | ||
Machine weight | kg | 5000 | ||
Machine weight | kg | 5000 |
Working conditions
(4) far away from light source, vibration source and heat source, away from high frequency power generation motivation, discharge motivation, welding machine, etc., to avoid electrical interference caused by machine tool NC system failure
1:How can I choose the most suitable machines?