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薄壁变形机匣件限位检测方法的研究与优化 被引量:3
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作者 郑耀辉 王江 +2 位作者 王明海 刘娜 赵明 《机床与液压》 北大核心 2021年第5期98-101,119,共5页
为研究薄壁变形机匣件在装配状态下约束表面与相关表面形位误差的变化规律,提出一种限位检测方法。通过有限元模拟机匣件实际装配,分析了不同装夹参数对约束面平面度的影响,并用直观分析法求出了主要影响因素为压板位置。利用所建立的模... 为研究薄壁变形机匣件在装配状态下约束表面与相关表面形位误差的变化规律,提出一种限位检测方法。通过有限元模拟机匣件实际装配,分析了不同装夹参数对约束面平面度的影响,并用直观分析法求出了主要影响因素为压板位置。利用所建立的模型,分析了约束面在限位状态下相关表面平面度及平行度的变化情况。通过神经元网络建立了压板位置与约束面平面度的预测模型,并用遗传算法求解了约束面平面度全局最小值及相应的压板位置,从而有效地控制整个机匣件的变形。 展开更多
关键词 薄壁变形机匣 限位检测方法 平面度 有限元法
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钛合金薄壁件超声振动辅助铣削工艺研究 被引量:5
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作者 于福权 方振龙 《机电工程》 CAS 北大核心 2023年第1期129-135,共7页
在钛合金薄壁件的铣削加工过程中,存在薄壁件变形大、加工精度低等问题,为此,提出了一种基于超声振动的辅助铣削加工工艺方法。首先,分析了钛合金材料的切削变形机理,得到了影响工件变形的关键因素,为后续参数指标分析提供参考;然后,利... 在钛合金薄壁件的铣削加工过程中,存在薄壁件变形大、加工精度低等问题,为此,提出了一种基于超声振动的辅助铣削加工工艺方法。首先,分析了钛合金材料的切削变形机理,得到了影响工件变形的关键因素,为后续参数指标分析提供参考;然后,利用ABAQUS有限元仿真软件,对钛合金薄壁件的形变和受力情况进行了分析,讨论了超声振动的作用机理及其对切削力的影响;最后,在超声辅助条件下,通过单因素试验,研究了不同工艺参数对薄壁件铣削形变量的影响规律。研究结果表明:超声振动辅助加工可有效解决薄壁件铣削变形问题,大幅提高其加工精度;随着主轴转速和超声功率的增加,薄壁件的变形量呈逐渐降低的趋势;而随着进给速度的增加,薄壁变形量呈逐渐增加的趋势。该试验结果与仿真结果基本一致,与理论值的平均误差在5%以内,由此可见,该结论可为钛合金薄壁件铣削加工中参数的选择和优化提供参考。 展开更多
关键词 超声振动辅助加工 加工精度 工艺参数 薄壁铣削变形 进给速度 超声功率
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薄壁件车削加工中残余应力的产生与控制 被引量:6
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作者 曲中兴 张立武 《航空制造技术》 2009年第19期87-90,95,共5页
薄壁件车削加工时,已加工表面存在的残余应力将影响工件的使用性能和疲劳强度。阐明了薄壁件车削加工过程中残余应力产生的原因;分析了影响车削残余应力的因素;总结了目前国内常用的残余应力测试方法;介绍了几种可行的用来控制和调整残... 薄壁件车削加工时,已加工表面存在的残余应力将影响工件的使用性能和疲劳强度。阐明了薄壁件车削加工过程中残余应力产生的原因;分析了影响车削残余应力的因素;总结了目前国内常用的残余应力测试方法;介绍了几种可行的用来控制和调整残余应力的方法。 展开更多
关键词 残余应力 车削加工 薄壁件变形 控制措施
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Numerical simulation analysis for deformation deviation and experimental verification for an antenna thin-wall parts considering riveting assembly with finite element method 被引量:7
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作者 PAN Ming-hui TANG Wen-cheng +1 位作者 XING Yan NI Jun 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第1期60-77,共18页
In the process of thin-wall parts assembly for an antenna,the parts assembly deformation deviation is occurring due to the riveting assembly.In view of the riveting assembly deformation problems,it can be analyzed thr... In the process of thin-wall parts assembly for an antenna,the parts assembly deformation deviation is occurring due to the riveting assembly.In view of the riveting assembly deformation problems,it can be analyzed through transient and static simulation.In this work,the theoretical deformation model for riveting assembly is established with round head rivet.The simulation analysis for riveting deformation is carried out with the riveting assembly piece including four rivets,which comparing with the measuring points experiment results of riveting test piece through dealing with the experimental data using the point coordinate transform method and the space line fitting method.Simultaneously,the deformation deviation of the overall thin-wall parts assembly structure is analyzed through finite element simulation;and its results are verified by the measuring experiment for riveting assembly with the deformation deviation of some key points on the thin-wall parts.Through the comparison analysis,it is shown that the simulation results agree well with the experimental results,which proves the correctness and effectiveness of the theoretical analysis,simulation results and the given experiment data processing method.Through the study on the riveting assembly for thin-wall parts,it will provide a theoretical foundation for improving thin-wall parts assembly quality of large antenna in future. 展开更多
关键词 thin-wall parts assembly assembly deformation deviation theoretical deformation model finite element simulation measuring experiment
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A model of deformation of thin-wall surface parts during milling machining process 被引量:11
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作者 王凌云 黄红辉 +2 位作者 Rae W.WEST 李厚佳 杜继涛 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第5期1107-1115,共9页
A three-dimensional finite element model was established for the milling of thin-walled parts. The physical model of the milling of the part was established using the AdvantEdge FEM software as the platform. The alumi... A three-dimensional finite element model was established for the milling of thin-walled parts. The physical model of the milling of the part was established using the AdvantEdge FEM software as the platform. The aluminum alloy impeller was designated as the object to be processed and the boundary conditions which met the actual machining were set. Through the solution, the physical quantities such as the three-way cutting force, the tool temperature, and the tool stress were obtained, and the calculation of the elastic deformation of the thin-walled blade of the free-form surface at the contact points between the tool and the workpiece was realized. The elastic deformation law of the thin-walled blade was then predicted. The results show that the maximum deviation between the predicted value and the actual measured machining value of the elastic deformation was 26.055 μm; the minimum deviation was 2.011 μm, with the average deviation being 10.154 μm. This shows that the prediction is in close agreement with the actual result. 展开更多
关键词 thin-walled surface parts milling force elastic deformation finite element model
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