Turning and milling is a tool commonly used in CNC machine tools, which can realize high efficiency, high precision, high quality and high flexibility in metal workpiece processing by machining the geometry and surface roughness of parts.
Turn-milling Machining combines turning and milling into a single process to efficiently produce complex parts with improved accuracy and surface finish. This advanced technology enables simultaneous multi-axis cutting, thereby shortening production time and increasing productivity. By integrating various operations, mill-turn processing also minimizes setup and handling, increasing the accuracy and cost-effectiveness of manufacturing complex parts.
Mill-turning is a machine tool that can perform both turning and milling operations on the same machine tool. It is a type of CNC machine tool that uses computer instructions to control the motion trajectory of the processing tool, thereby achieving high-precision and efficient processing and production.
1. Shorten the production process chain and improve production efficiency. It can be equipped with various special tools and new tool arrangement methods to reduce tool changing time and improve processing efficiency. Turning-milling combined processing can complete all or most of the processing process in one fixture, thus greatly shortening the product manufacturing process chain.
2. Reduce the number of clamping times and improve processing accuracy. The number of loading times is reduced and error accumulation caused by positioning reference conversion is avoided.
3. Reduce the floor space and reduce production costs.
Carbon steel; cast iron; aluminum alloy; brass; plastic.
Mill-turn composites are often used to produce parts that are not axisymmetric and have many features, such as holes, slots, pockets, and even three-dimensional surface profiles. Parts that are fully manufactured through turn-mill compounds typically include a limited number of parts that may be used in prototypes, such as custom-designed fasteners or brackets.
Another application of mill-turn is the manufacture of tools for other processes. For example, it is common to turn and mill composite 3D molds. Mill-turn is also commonly used as a secondary operation to add or improve features on parts manufactured using a different process. Because mill-turn compounds provide high tolerances and surface finish, they are ideal for adding precision features to parts that have already formed their basic shapes.
1. High efficiency: Turning and milling have high efficiency and precision in combined processing, and can complete diversified processing tasks in a short time.
2. High precision: Because turning and milling have multi-axis control and automatic processing technology, their machining accuracy is very high, which can meet the needs of components with high precision requirements in industrial production.
3. Flexibility: Turning and milling can be cut and processed in different ways according to the requirements of the processing task, and the flexibility is very high.
4. Intelligent: The degree of intellectualization of turning and milling is high, and the processing tasks with a high degree of automation can be carried out.
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