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Manufacturing today requires precision and efficiency in order to meet the demands of the global economy. Machining centers, whether vertical or horizontal, provide an ideal solution for high speed, high accuracy production of complex parts and components across a wide range of industries.
Vertical and horizontal machining centers

Manufacturing today requires precision and efficiency in order to meet the demands of the global economy. Machining centers, whether vertical or horizontal, provide an ideal solution for high speed, high accuracy production of complex parts and components across a wide range of industries.
Vertical machining centers (VMCs) are a popular choice for manufacturers thanks to their versatility, precision, and efficiency. Designed to operate with a vertical spindle, VMCs use a variety of tools to cut, shape, and drill materials, including metals, plastics, and composites. They offer a wide range of cutting and milling capabilities, from simple drilling operations to complex contour machining. Additionally, VMCs are typically compact and require less floor space than their horizontal counterparts, making them ideal for smaller production environments.
On the other hand, horizontal machining centers (HMCs) use a horizontal spindle and are designed for efficient high-volume production of parts and components. HMCs can also perform a wide range of operations, including drilling, milling, and turning, and are often equipped with automatic pallet changers for fast and efficient part loading and unloading. They are also capable of processing larger parts and higher material capacities than VMCs, making them ideal for manufacturing heavy-duty components in industries such as automotive, aerospace, and heavy equipment.
Both VMCs and HMCs offer numerous advantages for manufacturers, including high speed, precision, and efficiency. They are also capable of running multiple operations simultaneously, reducing setup time and increasing productivity. Additionally, most modern machining centers include advanced control systems that allow operators to easily program and adjust cutting parameters for maximum accuracy and performance.


Despite the numerous advantages of machining centers, some manufacturers may be hesitant to invest in these technologies due to concerns about cost or complexity. However, the benefits of VMCs and HMCs far outweigh the initial investment, and can ultimately lead to significant time and cost savings over the long term. Additionally, many manufacturers offer financing and technical support to help businesses successfully integrate these technologies into their production processes.
In conclusion, vertical and horizontal machining centers represent the future of precision manufacturing. These versatile and efficient technologies offer numerous advantages for businesses of all sizes across a wide range of industries. By investing in VMCs and HMCs, manufacturers can stay competitive in an ever-changing global economy and meet the demands of customers for fast, accurate, and cost-effective production of high-quality parts and components.
CK61100 × 4000 CNC lathe
1.CK61100 × 4000 Mechanical Specification Table
| Parameter | unit | CK61100×4000 | 
| Bed rotation diameter | mm | 1000 | 
| Guide span | mm | 550 | 
| Maximum workpiece length | mm | 4000 | 
| Maximum turning length | mm | 1350 1850 2850 | 
| Swing diameter on skateboard | mm | 650 | 
| Chuck form (manual) | mm | 400 | 
| Spindle through hole diameter | mm | 105 | 
| Repositioning accuracy of tool holder transposition | mm | 0.008" | 
| X-axis travel | mm | 500 | 
| Spindle speed gear | mm | Fourth gear 17-1000 | 
| Workpiece accuracy | IT6-IT7 | |
| Workpiece surface roughness | Ra1.6 | |
| Tailgate sleeve diameter/stroke | mm | 130/250 | 
| Taper of tailstock taper hole | Six Mohs | |
| Tool rest form | Vertical four-station | |
| Motor power | kw | 15 | 
2.Optional
| Spindle transmission form | Variable frequency stepless speed regulation/two speed change/three speed change | 
| chuck | Manual chuck/hydraulic chuck | 
| system | Siemens 840 Fanuc Mitsubishi Syntech ( China KND Digital) GSK( China Guangzhou Digital) H N C( China Huazhong Digital) | 
3.Brands and specifications of main components used
| Serial Number | Component Name | Brand manufacturer | producer | Model and specifications | 
| 1 | CNC system | GSK | China | |
| 2 | Main motor | GSK | China | 5.5kW | 
| 3 | spindle bearing | Harbin | domestic | |
| 4 | X-axis ball screw | firing | domestic | Φ40*8 | 
| 5 | Z-axis ball screw | firing | domestic | Φ 50 * 10(63 * 10 for three meters) | 
| 6 | chuck | Wafangdian | domestic | 400 three claws/630mm four claws | 
| 7 | tool carrier | Hongda/Wenchang | domestic | 4-station electric | 
| 8 | Electronic handwheel | Zhehong | domestic | |
| 9 | Electrical appliances, allergy protectors | schneider | France | |
| 10 | coupling | Sanmu | Japan | |
| 11 | Cooling device | Luokai/Jianyang | Taiwan | |
| 12 | Centralized automatic lubrication system | domestic | ||
| 13 | Precision Nut | Yingxi | ||
| Note: When encountering a shortage of supply, products from other brands will be used as substitutes, but there will be no difference in quality and grade. | ||||
4.Attached accessories
| Serial Number | Product Name | specifications | number | 
| 1 | Operating Instructions | GSK | 1 | 
| 2 | Program manual | GSK | 1 | 
| 3 | circuit diagram | Dalian Second Machinery Co., Ltd | 1 | 
| 4 | Random Precision Table | Dalian Second Machinery Co., Ltd | 1 | 
| 5 | toolbox | 15″ | 1 set | 
| 6 | Foundation supplies | 1 set | 
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