China Mechanical Engineering ›› 2025, Vol. 36 ›› Issue (12): 3023-3029.DOI: 10.3969/j.issn.1004-132X.2025.12.027
Shuai MO1,2,3(
), Yanchen ZHANG1,2, Yaxin LI1,2, Beibei LI1, Sujiao CHEN4, Nanjiang PENG5, Wei ZHANG1
Received:2025-01-23
Online:2025-12-25
Published:2025-12-31
Contact:
Shuai MO
莫帅1,2,3(
), 张燕琛1,2, 李亚鑫1,2, 李贝贝1, 陈素姣4, 彭南江5, 张伟1
通讯作者:
莫帅
作者简介:莫帅*(通信作者),男,1987年生,教授、博士研究生导师。研究方向为非线性动力学。E-mail:moshuai2010@163.com。
基金资助:CLC Number:
Shuai MO, Yanchen ZHANG, Yaxin LI, Beibei LI, Sujiao CHEN, Nanjiang PENG, Wei ZHANG. Nonlinear Vibration of Friction Stir Welding System of Aluminum Alloys[J]. China Mechanical Engineering, 2025, 36(12): 3023-3029.
莫帅, 张燕琛, 李亚鑫, 李贝贝, 陈素姣, 彭南江, 张伟. 铝合金搅拌摩擦焊系统非线性振动特性[J]. 中国机械工程, 2025, 36(12): 3023-3029.
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URL: https://www.cmemo.org.cn/EN/10.3969/j.issn.1004-132X.2025.12.027
| 参数名称 | 参数值 | 参数名称 | 参数值 |
|---|---|---|---|
| 轴肩半径/mm | 18 | 质量/kg | 1 |
| 搅拌针半径/mm | 8 | 压深/mm | 0.1 |
| 搅拌针长度/mm | 3.8 | 工件屈服强度/MPa | 235.3 |
Tab.1 System technical parameters
| 参数名称 | 参数值 | 参数名称 | 参数值 |
|---|---|---|---|
| 轴肩半径/mm | 18 | 质量/kg | 1 |
| 搅拌针半径/mm | 8 | 压深/mm | 0.1 |
| 搅拌针长度/mm | 3.8 | 工件屈服强度/MPa | 235.3 |
| [1] | MENG X, HUANG Y, CAO J, et al. Recent Progress on Control Strategies for Inherent Issues in Friction Stir Welding[J]. Progress in Materials Science, 2021, 115: 100706. |
| [2] | 康粟, 李冬晓, 李晓光, 等. 铝合金搅拌摩擦焊力的周期性波动特征与机制[J]. 机械工程学报, 2022, 58(12): 55-63. |
| KANG Su, LI Dongxiao, LI Xiaoguang, et al. Characteristic and Mechanism of Periodic Oscillation of Force in Friction Stir Welding of Aluminum Alloy[J]. Journal of Mechanical Engineering, 2022, 58(12): 55-63. | |
| [3] | BOCCARUSSO L, ASTARITA A, CARLONE P, et al. Dissimilar Friction Stir Lap Welding of AA-6082-Mg AZ31: Force Analysis and Microstructure Evolution[J]. Journal of Manufacturing Processes, 2019, 44: 376-388. |
| [4] | GUAN W, CUI L, LIANG H, et al. The Response of Force Characteristic to Weld-forming Process in Friction Stir Welding Assisted by Machine Learning[J]. International Journal of Mechanical Sciences, 2023, 253: 108409. |
| [5] | 何长树, 郄默繁, 张志强, 等. 轴向超声振动对搅拌摩擦焊过程中金属流动行为的影响[J]. 金属学报, 2021, 57(12): 1614-1626. |
| HE Changshu, Mofan QIE, ZHANG Zhiqiang, et al. Effect of Axial Ultrasonic Vibration on Metal Flow Behavior during Friction Stir Welding [J]. Acta Metallurgica Sinica, 2021, 57(12): 1614-1626. | |
| [6] | LIU Q, LI W, ZHU L, et al. Temperature-dependent Friction Coefficient and Its Effect on Modeling Friction Stir Welding for Aluminum Alloys[J]. Journal of Manufacturing Processes, 2022, 84: 1054-1063. |
| [7] | SHI L, CHEN J, YANG C, et al. Thermal-fluid-structure Coupling Analysis of Void Defect in Friction Stir Welding[J]. International Journal of Mechanical Sciences, 2023, 241: 107969. |
| [8] | CHEN G, MA Q, ZHANG S, et al. Computational Fluid Dynamics Simulation of Friction Stir Welding: a Comparative Study on Different Frictional Boundary Conditions[J]. Journal of Materials Science & Technology, 2018, 34(1): 128-134. |
| [9] | YANG C, DAI Q, SHI Q, et al. Flow-coupled Thermo-mechanical Analysis of Frictional Behaviors at the Tool-workpiece Interface during Friction Stir Welding[J]. Journal of Manufacturing Processes, 2022, 79: 394-404. |
| [10] | YAN Y, LIU G, WIERCIGROCH M, et al. Safety Estimation for a New Model of Regenerative and Frictional Cutting Dynamics[J]. International Journal of Mechanical Sciences, 2021, 201: 106468. |
| [11] | CHANDA A, DWIVEDY S K. Nonlinear Dynamic Analysis of Flexible Workpiece and Tool in Turning Operation with Delay and Internal Resonance[J]. Journal of Sound and Vibration, 2018, 434: 358-378. |
| [12] | 莫帅, 周长鹏, 王檑, 等. 机器人关节裂纹传动系统机电耦合动态特性研究[J]. 机械工程学报, 2022, 58(19): 57-67. |
| MO Shuai, ZHOU Changpeng, WANG Lei, et al. Research on Dynamic Characteristics of Electromechanical Coupling of Robot Joint Crack Transmission System[J]. Journal of Mechanical Engineering, 2022, 58(19): 57-67. | |
| [13] | MO S, LI Y, WANG D, et al. An Analytical Method for the Meshing Characteristics of Asymmetric Helical Gears with Tooth Modifications[J]. Mechanism and Machine Theory, 2023, 185: 105321. |
| [14] | MO S, LUO B, SONG W, et al. Geometry Design and Tooth Contact Analysis of Non-orthogonal Asymmetric Helical Face Gear Drives[J]. Mechanism and Machine Theory, 2022, 173: 104831. |
| [15] | MO S, WANG L, HU Q, et al. Coupling Failure Dynamics of Tooth Surface Morphology and Wear Based on Fractal Theory[J]. Nonlinear Dynamics, 2024, 112(1): 175-195. |
| [16] | GEBHARD P. Dynamisches Verhalten von Werkzeugmaschinen bei Anwendung für das Rührreibschweißen[M]. München:Herbert Utz Verlag, 2011. |
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