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作 者:张利国[1] 姬书得[1] 张田仓[2] 付瑞东[3] 陶军[2] 刘震磊[1]
机构地区:[1]沈阳航空航天大学通用航空研究院,辽宁沈阳110136 [2]北京航空制造工程研究所,北京100024 [3]燕山大学材料科学与工程学院,河北秦皇岛066004
出 处:《北京理工大学学报》2013年第1期17-21,共5页Transactions of Beijing Institute of Technology
摘 要:基于FGH96合金的材料本构模型以及摩擦因数随温度的变化关系,利用DEFORM软件建立了FGH96合金惯性摩擦焊的热力耦合分析模型,研究了焊接过程中飞边的形成与温度及材料流动之间的关系.结果表明,在摩擦焊初期,由于温度与材料流动速度较低,飞边不易形成;当焊接过程达到稳态后,随着摩擦界面及其附近区域材料向摩擦界面两边界流动速度的增加,飞边形成并逐渐增大;飞边的尺寸大小以及弯曲程度随初始转速以及轴向压力的增加而增大,基于飞边形貌确定了FGH96合金惯性摩擦较合理的焊接工艺参数.On basis of the constitutive equation of FGH96 alloy and the relation between friction coefficient and temperature, the coupled thermo-mechanical model of inertia friction welding of FGH96 alloy is established using DEFORM software. The relation between the flash forming and material flow is investigated. The results show that the flash doesn't appear in the early stage of welding because the temperature and the velocity of material flow are both small. After the welding process reaches stable state, the material near two edges of friction edge flows towards the outside of friction surface, which results in the appearance of flash and the dimensions of flash increase with the continuance of welding time. With the increase of the initial velocity or the axial press, both the dimension and the bending extent of the flash are increased. Moreover, the method to determine the reasonable welding parameters is put forward based on the appearance of the flash.
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