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工件初始表面几何状态对铣削力及表面形貌的影响 被引量:3
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作者 宋文刚 刘战强 吕文军 《工具技术》 北大核心 2021年第7期28-32,共5页
为研究多工步铣削加工过程工件初始表面几何状态对后续工步铣削力及表面形貌的影响,采用表面算术平均高度和表面最大高度对表面形貌进行定量表征,建立了考虑工件初始表面几何状态的切削层模型。设计并利用两工步铣削试验对切削层模型进... 为研究多工步铣削加工过程工件初始表面几何状态对后续工步铣削力及表面形貌的影响,采用表面算术平均高度和表面最大高度对表面形貌进行定量表征,建立了考虑工件初始表面几何状态的切削层模型。设计并利用两工步铣削试验对切削层模型进行验证。试验表明,工件初始表面几何状态与第二工步铣削的铣削力和表面粗糙度参数呈正相关关系,切削层模型能为多工步铣削过程研究提供理论基础。 展开更多
关键词 多工步铣削 初始表面几何状态 铣削力 表面形貌 切削层模型
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Mathematical Model and Simulation of Cutting Layer Geometry in Orthogonal Turn⁃Milling with Zero Eccentricity
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作者 SUN Tao QIN Lufang +1 位作者 FU Yucan HOU Junming 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2020年第6期839-847,共9页
Orthogonal turn-milling is a high-efficiency and precision machining method.Its cutting layer directly affects chip formation,cutting forces,and chatter,and further affects tool life,machining quality,etc.We studied T... Orthogonal turn-milling is a high-efficiency and precision machining method.Its cutting layer directly affects chip formation,cutting forces,and chatter,and further affects tool life,machining quality,etc.We studied The cutting layer geometry(CLG)in orthogonal turn-milling with zero eccentricity(OTMZE)is studied to explore orthogonal turn-milling cutting layer formation process.OTMZE principles of motion and formation processes are analyzed statically without considering kinetic influences.Mathematical models of the entrance and exit angles,cutting thickness,and cutting depth are established.In addition,these models are validated experimentally and some influences of cutting parameters on the tool cutting layer are analyzed.The results show that OTMZE cutting layer formation can be divided into two stages,chip shapes are nearly consistent with the simulated CLGs,and the most influencial parameter in affecting the cutting layer is found to be the tool feed per revolation of workpiece fa,followed by the ratio of the tool and workpiece speedsλand the cutting depth ap.These models and results can provide theoretical guidance to clarify formation processes and quantitatively analyze changes in cutting layer geometry during OTMZE.In addition,they offer theoretical guidelines for cutting forces and chatter. 展开更多
关键词 orthogonal turn-milling zero eccentricity cutting layer geometry mathematical model forming process
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