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Kitamura Horizontal
Horizontal machining center is a kind of machine tool with high rigidity and stability, which is widely used in the machinery manufacturing industry. The core structure includes cross sliding table structure and double layer working table structure. These structures are uniquely designed to provide superior cutting performance and precision....
Horizontal machining center is a kind of machine tool with high rigidity and stability, which is widely used in the machinery manufacturing industry. The core structure includes cross sliding table structure and double layer working table structure. These structures are uniquely designed to provide superior cutting performance and precision.
First of all, the cross slide structure is an important part of the horizontal machining center. It has the characteristics of large cutting force, maturity and stability, and can provide high rigidity and good dynamic response. In the cutting process, the rigidity of the slide structure directly affects the precision and surface quality of the workpiece.
Secondly, the double-layer workbench structure is also one of the characteristics of the horizontal machining center. This structure can improve the high rigidity and stability of the machine tool, so that the machine tool can still maintain a stable working state when cutting at high speed.
In order to further improve the rigidity and stability of the machine tool, widening the base and sliding saddle can increase the foundation stiffness of the machine tool and improve the stability of the machine tool during high-speed cutting. The design of sliding saddle can optimize the force distribution of the machine tool, reduce the overall vibration of the machine tool, and improve the dynamic performance of the machine tool. Table locking force is uniform to ensure the rigidity of the table.
The new herringbone column structure can improve the anti-distortion performance of the machine tool and enhance the static stiffness of the machine tool. The meter-shaped reinforcement bar can enhance the bearing capacity of the table, improve the rigidity and stability of the table.
The use of resin sand casting and honeycomb structure, through multiple stress relief procedures, can further improve the accuracy and stability of the machine.
Model | HMC1075 | HMC1290 | HMC1395 |
Table size (mm) | 1300X600 | 1360X700 | 1400X700 |
Allowable maximum load (Kg) | 800 | 1000 | 1000 |
X-axis travel (mm) | 1000 | 1200 | 1200 |
Y-axis travel (mm) | 750 | 800 | 800 |
Z-axis travel (mm) | 800 | 700 | 750 |
T-slot | 5-18-105 | 5-18-122 | 5-18-122 |
Distance from spindle end face to work table (mm) | 115-915 | 180-880 | 168-918 |
Distance from spindle center to Z-axis rail surface (mm) | 110-860 | 140-940 | 260-1060 |
Spindle taper | BT50-150 | BT50-190 | BT50-190 |
Spindle speed (r/min) | 6000 | 6000 | 6000 |
X/Y/Z rapid movement (m/min) | 20/12/20 | 20/12/20 | 20/12/20 |
Machine weight (Kg) | 8000 | 10000 | 10000 |
Model | HMC1814 | HMCT500 | HMCT630 |
Table size (mm) | 2000X900 | 500*500 | 630*630 |
Allowable maximum load (Kg) | 1600 | 600 | 950 |
X-axis travel (mm) | 1800 | 600 | 1050 |
Y-axis travel (mm) | 1280 | 360 | 750 |
Z-axis travel (mm) | 900 | 450 | 900 |
T-slot | 5-22-165 | — | — |
Distance from spindle end face to work table (mm) | 200-1100 | 150-850 | — |
Distance from spindle center to Z-axis rail surface (mm) | 140-1420 | 130-650 | 130-1030 |
Spindle taper | BT50-190 | BT40-150 | BT50-190 |
Spindle speed (r/min) | 6000 | 8000 | 6000 |
X/Y/Z rapid movement (m/min) | 18/12/18 | 20/12/20 | 20/12/20 |
Machine weight (Kg) | 15000 | 8000 | 10000 |