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jc35Exhibition NewsThe machining process route is one of the factors affecting the production efficiency of CNC automatic lathes
Numerical control automatic lathe is a high-performance, high-precision, low-noise walking type automatic lathe. It is an automatic machining machine tool that controls the machining program through a cam, greatly reducing the requirements for workers and improving production efficiency. Suitable for batch processing of small parts, especially complex parts, in industries such as instruments, clocks, automobiles, motorcycles, bicycles, glasses, stationery, hardware and bathroom, electronic components, connectors, computers, mobile phones, electromechanical, military, etc.
The CNC automatic lathe has the characteristics of automatic processing, fast processing speed, one-time processing of complex parts, accurate and reliable processing accuracy, automatic feeding, automatic shutdown after material completion, and high production efficiency. The machining process route is a factor that affects its production efficiency, so it is necessary to develop a reasonable machining process route to reduce the auxiliary time of CNC milling.
The formulation of processing technology: Usually, a part can have several different processing methods, and the production efficiency, processing cost, and processing accuracy often vary significantly depending on the processing process of the part. Therefore, we should, on the premise of ensuring the processing quality of the part, try to improve production efficiency and reduce production costs according to the specific production conditions, and formulate a reasonable processing technology.
Determination of processing route: A correct and concise processing route is the foundation for ensuring processing quality and improving efficiency. When choosing the machining route for parts, it is necessary to follow the principles of determining the machining route in order to achieve the goal of improving production efficiency. The principles for determining the machining route mainly include: ensuring the machining accuracy and surface roughness requirements of the parts, and achieving high efficiency; The processing route should be kept as short as possible, which can reduce the number of program segments and also minimize the tool idle time; Numerical calculations should be simplified with fewer program segments to reduce programming workload. In addition, when determining the machining route, it is also necessary to consider the machining allowance of the workpiece and the stiffness of the lathe and cutting tools, and determine whether to complete the machining with one or multiple passes. At the same time, efforts should be made to achieve one-time clamping, multi-directional processing, and one-time forming. In this way, the installation frequency of the workpiece can be reduced, and the time for handling and clamping can be shortened. In this way, it can not only improve processing efficiency but also ensure the required positional accuracy of the parts.


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