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薄壁小弯曲弯头弹性介质挤胀成形实验研究
英文标题:Experimental research on extruding-bulging of thin-walled elbow with small bending radius and elastic medium
作者:马媛媛1 钱未騻1 张小岩1 陈清根2 徐雪峰2 林兵兵2 
单位:1.中航工业洪都航空工业集团公司 2.南昌航空大学 
关键词:弹性填料 薄壁小弯曲弯头 挤胀成形 球形芯轴 
分类号:
出版年,卷(期):页码:2016,41(4):31-35
摘要:

采用弹性填料作为传力介质对薄壁小弯曲弯头进行挤胀成形,研究了薄壁小弯曲弯头弹性介质挤胀成形机理和主要影响因素,分析了弹性介质下的薄壁小弯曲弯头挤胀成形过程和壁厚分布规律。结果表明:弹性介质在冲头轴向推力与球形芯轴反推力的双向挤压下发生弹性变形并形成连续的弹性体以产生胀力,弯曲时将管坯紧贴于凹模,同时推动管坯沿凹模型腔变形流动;此外,球形芯轴的进给量是弹性介质挤胀成形工艺的关键, 在进给量不足时使成形件出现截面畸变及出口端塌陷变形等缺陷;以管径Φ32 mm×1 mm的LF2M铝合金弯头成形为例,球形芯轴的进给量控制在75°时,成形件整体壁厚分布相对均匀,外侧最大壁厚减薄率为16%。

The extruding -bulging of thin-walled elbow with small bending radius by the elastic filling used as medium was conducted, its deformation mechanism and key factors were studied, and the forming process and wall thickness distribution were analyzed. The results show that the elastic deformation and a continuous elastomer are formed by the punch axial and spherical core shaft reverse thrust press to produce expansion force, which makes the tube blank close to the die in the bending and pushes the deformation to flow along the die. In addition, the feeding value of the spherical core shaft is the key parameter for the extruding-bulging with the elastic medium. When it is insufficient, the cross section distortion and the collapse of the exit end are appeared easily. For the push bending of aluminum alloy tube LF2M with Ф32 mm×1 mm, the wall thickness distribution of the formed parts is relatively uniform, and the maximum thinning rate of lateral wall thickness is up to 16% with the feeding value controlled within 75°.

基金项目:
中航工业产学研项目资助(BA201306321);国家自然科学基金资助项目(51405219)
作者简介:
马媛媛(1988-),女,学士,工程师
参考文献:

[1]权晋花.薄壁小半径弯管与中压内胀成形工艺[J].锻压装备与制造技术,2009,44(3):103-105.

Quan J H.Thin-walled elbow with small bending radius and medium pressure internal bulging forming process[J]. China Metal Forming Equipment & Manufacturing Technology,2009,44(3):103-105.

[2]单德彬,袁林,吕炎.铝合金管坯低熔点塑性介质挤胀成形力学特征[J].哈尔滨工业大学学报,2007,39(1):69-72.

Shan D B,Yuan L,Lv Y.Characteristics and experimental study on extruding-bulging process of aluminum-alloy tube with a low melting point plastic medium[J].Journal of Harbin Institute of Technology,2007,39(1):69-72.

[3]单德彬,徐文臣,吕炎.厚壁管坯低熔点塑性介质挤胀成形实验研究[J].材料科学与工艺,2003,11(3):258-261.

Shan D B,Xu W C,Lv Y.Extruding-bulging process of thick-walled tubes with low-melting-point plastic medium[J]. Materials Science and Technology,2003,11(3):258-261.

[4]Ahmetoglu M, Altan T. Tube hydroforming:state-of-the-art and future trends[J].J. of Mater. Process Technol.,2000,98:25-33.

[5]宋鹏,王小松,徐永超,等.内压对薄壁铝合金管材充液压弯过程的影响[J].中国有色金属学报,2011,21(2):311-317.

Song P,Wang X S,Xu Y C, et al. Influence of internal pressure on hydro-bending of thin-walled aluminum alloy tube[J].The Chinese Journal of Nonferrous Metals,2011,21(2):311-317.

[6]李洪洋,苑世剑,王小松,等.轴向补料量对内高压成形三台阶轴影响的实验研究[J].清华大学学报:自然科学版,2005,45(5):597-600,605.

Li H Y,Yuan S J,Wang X S,et al. Experimental investigation of axial supplement effects on three-stepped shaft hydroforming[J]. Journal of Tsinghua University:Science and Technology,2005,45(5):597-600,605.

[7]郭训忠.铝/铁基及铝/纯钛基双金属复合管件的冷成形及铝层陶瓷化研究[D].南京:南京航空航天大学,2011.

Guo X Z. Cold Forming of Aluminum/Iron-based and Aluminum/Titanium Clad Pipe and Oxidation of Aluminum Layer[D].Nanjing:Nanjing University of Aeronautics and Astronautics,2011.

[8]赵军,马丽霞.小曲率半径空间弯曲新工艺[J].机械工人热加工,1995,(2):5-6.

Zhao J,Ma L X.The technology of small radius curved space[J]. Machinist Metal Forming, 1995,(2):5-6.

[9]李鹏亮,孙宾,张志,等.薄壁小弯曲半径钛合金管材弯曲技术研究[J].航空制造技术,2013,(16):113-115.

Li P L,Sun B,Zhang Z,et al.The bending technology of titanium alloy tube with thin walled small bending radius [J]. Aeronautical Manufacturing Technology, 2013,(16):113-115.

[10]何文治.航空制造工程手册[M].北京:航空工业出版社,1992.

He W Z. Aeronautical Manufacturing Engineering Handbook[M]. Beijing: Aviation Industry Press,1992.

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