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Liqiao Industrial Park, Xuanzhou District, Xuancheng City, Anhui Province, China
Five axis five linkage machining center
Product Description
Crane type structural bed, achieving outstanding rigidity and stability; X. The Y and Z linear axes move based on the base and bed, without any worktable or workpiece load, and without the influence of cutting operation environment, which can improve the low failure, long life, stable accuracy and unparalleled dynamic response of the machine tool.
The five axis turntable is fixed on the support base bed, with A-axis dual drive, achieving higher rigidity and load-bearing capacity. The DD direct drive turntable can achieve long-lasting high precision for machine tools.
All models in the series can be equipped with HSKE40/E50/A63 spindles for higher rigidity and efficiency.
Introduction to Core Component Content
The overhead crane structure bed is made of HT300 gray iron castings and strictly follows the processing technology of two thermal aging and one high-frequency aging to ensure the stability of the casting material, achieve outstanding rigidity, stability accuracy, and unparalleled dynamic response.
The XVZ linear axis is based on the movement of the base bed, without any worktable or workpiece load, and without the influence of cutting operation environment, ensuring low load during XYZ axis movement operation, achieving high rigidity and stability. The AC axis turntable is fixed on the support base bed to avoid accuracy errors caused by the movement of the AC axis, ensuring the accuracy of the rotation center during five axis linkage.
All models in the series adopt dual A-axis and dual DD direct drive rotary tables, and the AC axis is equipped with Heidenhain grating, achieving higher load-bearing capacity and longer precision life.
The three-axis rail adopts German and Japanese ball track (INA/REXRTOH/THK), and the three-axis screw adopts German and Japanese (NSK/THK) and Taiwan's Shangyin Yintai brand.
The spindle adopts HSK series high-precision and high torque electric spindle. Effectively control the thermal elongation of the spindle to ensure better accuracy errors caused by thermal deformation of the machine tool's B-axis.
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