Experimental Study on Aluminum Alloy High-speed Milling Based on Orthogonal Test Design
Zeng Lin-li
Abstract
Zeng Lin-li
Abstract
The cutting force is an important factor of the toolwear and the deformation of processed parts and the cutting parameters is the main factor of the influence on the cutting force.Therefore,the suitable cutting parameteris of great significance to reduce the machining deformation and improve the production efficiency.First,the designmethod of the orthogonal test is used to make the design of the experimental scheme of the cutting parameters of aluminum alloy highspeed milling.Then,the influence on the selection of different cutting parameterson cutting force sizes is analyzed through the actual cutting experiments in order to optimize the choice of cutting parameters.The analysis results provide a reference for the choice of cutting parameters of aluminum alloy high-speed milling.
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The cutting force is an important factor of the toolwear and the deformation of processed parts and the cutting parameters is the main factor of the influence on the cutting force.Therefore,the suitable cutting parameteris of great significance to reduce the machining deformation and improve the production efficiency.First,the designmethod of the orthogonal test is used to make the design of the experimental scheme of the cutting parameters of aluminum alloy highspeed milling.Then,the influence on the selection of different cutting parameterson cutting force sizes is analyzed through the actual cutting experiments in order to optimize the choice of cutting parameters.The analysis results provide a reference for the choice of cutting parameters of aluminum alloy high-speed milling.
Key concepts: Machining, Deformation (meteorology), Alloy, Aluminium, Selection (genetic algorithm), Mechanical engineering, Structural engineering, Materials science