Turning and milling compound lathe: a sharp tool to improve the machining efficiency of machine tools
Release time:
2023-07-20 14:43
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Turning and milling compound lathe is a multifunctional machine tool that can simultaneously turn and mill operations, so it is widely used in aviation, aerospace, automotive, machinery manufacturing and other industries. It can not only improve the machining efficiency of the machine tool, but also save materials and reduce operation time. This paper will introduce the working principle, application range, advantages and future development trend of turning and milling compound lathes.
Working principle
The turning and milling compound lathe is composed of two parts: the lathe part is used for turning, and the milling machine part is used for milling. Complex machining tasks can be accomplished by turning and moving the workpiece while operating the lathe and milling machine. Turning and milling complex lathes can achieve multiple axial movements in order to process at different angles and directions.
Scope of application
Turning and milling composite lathes can be used to process workpieces of various materials and shapes, such as aluminum alloy, steel, copper, plastic, etc. It can produce auto parts, aircraft parts, molds, gears and so on. In the aviation and aerospace industry, turn-milling composite lathes are widely used in parts processing with high precision and high efficiency.
advantage
The main advantage of the compound lathe is that it can simultaneously turn and mill operations, which greatly improves the machining efficiency of the machine tool. Compared with traditional lathes and milling machines, it has a shorter operating time and saves materials. In addition, the turning and milling compound lathe can also process more complex shapes and structures, improving the accuracy and quality of the product.
Future development trend
With the emergence of new technologies, the performance and efficiency of turning and milling compound lathes will continue to improve. The turning and milling composite lathes of the future will be more intelligent and automated, which can achieve higher processing speed and higher accuracy. At the same time, the application of new materials will bring more challenges and opportunities for turning and milling composite lathes, such as superalloys, titanium alloys and so on.
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