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1A Study on 3D FE Simulation Method of NC Bending Process of Thin-walled Tube显示文摘The numerical control (NC) precision bending process of thin-walled tube is on e of advanced plastic forming processes with high efficiency, forming precision, strength/weight ratio and low cost, thus it is playing more and more important role in manufacturing parts in aerospace and automobile industries. However, the determination of parameters crucial to make sure tube parts qualified is heavil y experience-based and involves repeated trial-and-errors in practice, which makes the production efficiency reduce drastically and does not fulfill the deve lopment of high technology. With quick development of computer technology and gr adual perfect of plastic forming theory, computer numerical simulation based on finite element method (FEM) has become one of important tools of researching and developing plastic forming technology. Development trend of NC precision bendin g process of tube is simulating its forming process by FEM. Because NC tube bend ing is of 3D nature, it is of great importance to analyze the forming mechanism and find out the influence law of forming parameters on forming process in the N C precision bending process of thin-walled tube quantitatively by 3D FE simulat ion. Based on the rigid-plastic finite element method (FEM) principle, a 3-dimens ional (3D) rigid-plastic FE simulation system named TBS -3D (tube bending simu lation by 3D FEM) for the NC bending process of thin-walled tube has been devel oped, a reasonable FEM model has been established. By use of this FEM simulation system, a NC bending process of thin-walled has been simulated. And deformed m eshes under different bending stages, stress distribution along bending directio n, relationship between maximal wall thickness changing ratio and bending angle have been obtained. And then some forming laws of NC tube bending obtained are a s follows: (1) NC bending process make tube elongate to some extent; (2) Charact eristic of stress distribution is that the outer area is undergoing tensile stre ss, the inner area is undergoing compression stress, and stress neutral layer mo ves close to the inner area, which is in good accordance with the practice; (3) Maximal wall thinning ratio in the outer tensile area changes only a little with increase of bending angle, and maximal wall thickening ratio in the inner compr ession area increases linearly with bending angle. The above results show that 3 D FE simulation is an important and valid tool of analyzing NC bending process o f tube, this research is beneficial for the practical tube bending process, and it may serve as a significant guide to the practice of the relevant processes.ZHAN Mei 1, YANG He 1, JIANG Zhi-qiang 2, ZHAO Zhen-son g 1, LIN Yan 1 (1. College of Materials Science and Engineering, Northwestern Polytech nical University, Xi’an 710072, China 2. Xi’an Heavy Machinery Research Institute, Xi’an 71003 2, China) 2002厦门大学学报(自然科学版)2002,41,S1:3
2Systemic complement depletion diminishes perihematomal brain edema in rats显示文摘Xi G Hua Y Keep R F 2001Stroke2001,32,1:2
3Erythrocytes and delayed brain edema formation following intracerebral hemorrhage in rats显示文摘Xi G Keep RF Hoff yr 1998J Neurosurg1998,89,6:1
4Synthesis and DNA binding of spiroeyelic model compounds related to the neocarzinostatin chromophore 显示文摘Xi Z Jones G B Qabaja G Wright J Johnson F Goldberg I H 1999Org Lett1999,1,9:1
5Mechanisms of edema formation after intracerebral hemorrhage:effects of extravasated red blood cells on blood flow and blood-brain barrier integrity显示文摘 Hua Y Bhasin RR 2001Stroke2001,32,12:1
6Mechanisms of brain injury after intracerebral hemorrhage显示文摘Xi G Keep RF Hoff JT 2006Lancet Neurol2006,5,:1
7Erythrocytes and delayed brian edema formation following intracerebral hemorrhage in rats显示文摘Xi G Keep KF HOOT 1998J Neumsu1998,89,60:1
8Complement activation in the brain after experimental intracerebral hemorrhage显示文摘Hua Y Xi G Keep RF 2000J Neurosurg2000,92,6:1
9Er ythrocy tes and delayed brainedema formation following intracerebral hemorrhage in rats显示文摘Xi G Keep RF Hoft JT 1998J Neurosurg1998,89,5:1
10Attenuation of intracerebral hemorrhage and thrombin-induced brain edema by overexprssion of interleukin-1 receptor antagonist显示文摘Masada T Hua Y Xi G 2001J Neurosurg2001,95,:1
11Attenuation of thrombin-induced brain edema by cerebral thrombin preconditioning 显示文摘Xi G Keep RF 1999Stroke1999,30,6:1
12Effect of delayed argatroban treatment on intracerebral hemorrhage-induced edema in the rat显示文摘Kitaoka T Hua Y Xi G 2003Acta Neurochir2003,,:1
13Complement activation in the brain after esperimental intracerebral hemorrhage 显示文摘HUA Y XI G KEEP R F 2000Neurosurg2000,92,:1
14trocmental intracerebral hemorrhage 显示文摘Xi G Wagner KR keep FR 1998Stroke1998,29,:1
15Brain edema after intracerebral hemorrhage 显示文摘Hoff JT Xi G 2003Acta Neurochir Supp12003,86,:1
16Intracerebral haemorrhage: mechanisms of injury and therapeutic targets 显示文摘Keep RF Hua Y Xi G 2012Lancet Neurol2012,11,:1
17Driver- vehicle- environment closed- loop simulation of handling and stability using fuzzy control theory 显示文摘Xi G Qun Y 1994Vehiele System Dynamics1994,,23:1
18Role of blood clot formation onearly edema development after experimental intracerebral hemorrhage显示文摘Xi G Wagner KR Keep RF 1998Stroke1998,29,12:1
19Role of blood clot formation early edema development after experimental imrracerebral hemorrhage显示文摘Xi G Wagner KR Keep RF 1998Neurosurg1998,29,12:1
20Lobar intracerebral hemorrhage model in pigs:rapid edema decelopment in perihematomai white matter显示文摘Wagner KR Xi G Hua Y 1996Stroke1996,27,3:1
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