CNC precision machining is a manufacturing method that uses computer digital control technology to perform high-precision machining on workpieces. Through the pre-written CNC program, the machine tool's motion trajectory, speed, cutting depth and other processing parameters are accurately controlled, so that the tool performs cutting, drilling, milling, grinding and other operations on the workpiece, thereby manufacturing parts that meet the requirements of precision size and shape.
High precision: CNC precision machining can achieve very high machining accuracy. Its positioning accuracy can usually reach ±0.001mm or even higher, and the repeated positioning accuracy is also within a very small error range. This allows the dimensional accuracy and shape accuracy of the processed parts to meet strict requirements. For example, in the aerospace field, it is used to manufacture key components such as engine blades, which can ensure the surface accuracy and dimensional tolerance of the blades, thereby ensuring the high performance and reliability of the engine.
High degree of automation: The entire machining process is controlled by a computer program, and the machine tool can automatically complete a series of complex machining operations. The operator only needs to install the workpiece blank on the machine tool, set the program and related parameters, and the machine tool can process according to the preset instructions. This automation not only improves production efficiency, but also reduces errors caused by human factors and ensures the stability of machining quality.
Strong ability to process complex shapes: It can process various complex geometric shapes, such as free-form surfaces, special-shaped holes, spiral structures, etc. Through CNC programming, the tool path can be accurately controlled to achieve accurate machining of complex shapes. In the mold manufacturing industry, CNC precision machining can manufacture injection molds, die-casting molds, etc. with complex cavities to meet the molding needs of various product shapes.
High flexibility: As long as the CNC program is modified, the shape, size and processing technology of the processed parts can be quickly changed. This makes CNC precision machining very suitable for multi-variety and small-batch production. Enterprises can flexibly adjust production plans according to the different needs of customers and process a variety of precision parts without large-scale reconfiguration of machine tools and equipment.
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