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基于 UG10.0 整体叶轮数控成形仿真研究
引用本文:曾念. 基于 UG10.0 整体叶轮数控成形仿真研究[J]. 精密成形工程, 2016, 8(4): 96-99
作者姓名:曾念
作者单位:自贡市职业培训学院,四川 自贡 643000
摘    要:由于整体叶轮构造复杂,加工精度要求严格,其叶片的型面为自由型面并有一定的扭曲,同时叶片内流道较窄,为此在加工时很容易出现过切、碰撞、干涉等现象,加工难度大。结合工程应用,设计了整体叶轮的数控成形整套加工方案,并基于UG 10.0软件的CAD/CAM功能模块,重点研究了叶片成形过程仿真,验证了方法的可行性。所提出的数控成形加工方案,经仿真验证叶轮能够获得很好的成形,对整体叶轮及类似零件的精密成形加工具有一定的工程实际意义。

关 键 词:涡轮叶片;自由型面;数控仿真; CAD/CAM; UGNX
收稿时间:2016-05-20
修稿时间:2016-07-10

CNC Machining Forming Simulation for Integral Impeller Based on UG10.0
ZENG Nian. CNC Machining Forming Simulation for Integral Impeller Based on UG10.0[J]. Journal of Netshape Forming Engineering, 2016, 8(4): 96-99
Authors:ZENG Nian
Affiliation:Zigong Professional Training School, Zigong 643000, China
Abstract:Integral impeller has a complicated structure and has strict precision requirement on processing. The blade is free-profiled and distorted to some degree, and the flow path is narrow. Hence, prone to overcutting, collision, interference and other problems, the processing is rather difficult. A CNC machining forming proposal was put forward for integral impeller based on engineering application. It focused study on the blade forming process simulation based on UG NX10.0 software CAD/CAM modules and verified the feasibility of the method. The CNC forming proposal could get a better form after verification by simulation. It has a great significance for the precision forming of integral impeller and similar parts.
Keywords:turbine blade   free-profiled   numerical control simulation   CAD/CAM   UG NX
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