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G1614Z Double Column Machining Center
G1614Z Double Column Machining Center
G1614Z Double Column Machining Center

G1614Z Double Column Machining Center

$28000-35000 /Set/Sets

Payment Type:L/C,T/T,D/P,D/A,Bank transfer
Incoterm:FOB,CFR,CIF,EXW
Min. Order:1 Set/Sets
Transportation:Ocean,Land
Port:shenzhen,guangzhou,dongguan
Product Attributes

Model No.G1614Z

BrandLEYO

Working Table And Load1700*1200 mm 3500 kg

SpindleBelt spindle BT40 11 kw 10000 rpm

Xyz Position Accuracy±0.008mm

Xyz Reposition Accuracy±0.008mm

Machine Weight15000 kg

Tool Magazine Capacity24T

Xyz Aixs Travel1650*1400*700 mm

Product NameG1614Z Double Column Machining Center

Packaging & Delivery
Selling Units : Set/Sets
Package Type : wooden case packing
Product Description

LEYO G1614Z Double Column Machining Center Description

LEYO G1614Z Double Column Machining Center is a gantry Milling Machine with a workbench size of 1700*1200 mm, which can process workpieces of approximately 1650*1400*700 mm.



LEYO G1614Z Double Column Machining Center Technical Parameters
Brand:LEYO
Machine Name:VMC G1614Z Double Column Machining Center
Xyz Aixs Stroke: 1650*1400*700
mm
Working Table Size and Max load:1700*1200 mm 3500 kg

Spindle Type:Belt spindle

Spindle Taper Hole:BT40 

Spindle Power/Speed:11 kw 10000 rpm

Xyz Aixs Position Accuracy:±0.008 mm
Xyz Aixs Reposition Accuracy:±0.008 mm
Machine Weight:15000 kg
Axis Number:3/4/5 axis

Tool Library capacity:24T

Controller System:Gsk/Hnc/Lnc/Syntec/Mitsubishi/Fanuc/Siemens

G1614z

FAQ

1.The difference between five-axis linkage and 3+ 2/3 +1.

Five-axis linkage and 3+2/3+1 are two different types of machining strategies used in CNC (Computer Numerical Control) machines. The main difference between them is the number of axes involved in the machining process.

In five-axis linkage, the machine tool can move along five different axes, which allows for greater flexibility and precision in machining complex shapes and contours. This means that the tool can approach the workpiece from any direction, allowing for more efficient machining and better surface finish.

On the other hand, 3+2/3+1 machining involves using three axes (X, Y, and Z) to position the workpiece, and then using two or one additional axes to tilt the tool at a specific angle. This technique is useful for machining parts with angled features, but it is less flexible than five-axis linkage and may require more setup time.

Overall, the choice between five-axis linkage and 3+2/3+1 machining depends on the complexity of the part being machined and the required precision and efficiency.

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