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Reduction of Residual Stress of Welded Joint Using Vibrational Load

机译:利用振动载荷降低焊接接头的残余应力

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Welding is widely used for construction of many structures. Since welding is a process using locally given heat, residual stress isrngenerated near the bead. Tensile residual stress degrades fatigue strength. Some reduction methods of residual stress are presented and, forrnexample, heat treatment and shot peening are practically used. However, those methods need special tools and are time consuming. In thisrnpaper, a new method for reduction of residual stress using vibrational load during welding is proposed. The proposed method is examinedrnexperimentally for some conditions. Two thin plates are supported on the supporting device and butt-welded using an automatic CO_2 gasrnshielded arc welding machine. Residual stress in the direction of the bead is measured by using a paralleled beam X-ray diffxactometer withrnscintillation counter after removing quenched scale chemically. First, residual stress for one pass welding for some excitation frequencies isrnexamined. Material of specimen is rolled steel for general structure (JIS400). In this case, excitation frequencies are selected as the naturalrnfrequency and higher frequency. For both frequencies, tensile residual stress near the bead is significantly reduced. Second, residual stress forrntwo pass welding for some excitation frequencies is examined. Specimens are welded at one side and then at reverse side. In this case, somernfrequencies are selected. For all frequencies, tensile residual stress near the bead is reduced at both sides of specimen. Finally, the proposedrnmethod is applied to the specimen made of high tensile strength steel. In this case, tensile residual stress near the bead is also reduced.
机译:焊接被广泛用于许多结构的构造。由于焊接是使用局部给定热量的过程,因此在焊缝附近会产生残余应力。拉伸残余应力会降低疲劳强度。提出了一些减少残余应力的方法,例如,实际使用热处理和喷丸处理。但是,这些方法需要专用工具,并且很耗时。本文提出了一种在焊接过程中利用振动载荷降低残余应力的新方法。在一定条件下对提出的方法进行了实验研究。将两个薄板支撑在支撑设备上,并使用自动CO_2气保焊机对接焊接。在化学去除淬火水垢后,通过使用带有闪烁计数器的平行光束X射线衍射仪测量珠子方向上的残余应力。首先,对某些激励频率下的单道次焊接的残余应力进行了检查。试样的材料为一般结构用轧制钢(JIS400)。在这种情况下,将激励频率选择为自然频率和较高频率。对于这两个频率,胎圈附近的拉伸残余应力都大大降低了。其次,研究了在某些激励频率下的二次焊的残余应力。试样在一侧焊接,然后在背面焊接。在这种情况下,选择了一些频率。对于所有频率,珠子附近的拉伸残余应力在试样的两侧都减小了。最后,将所提出的方法应用于由高抗拉强度钢制成的样品。在这种情况下,胎圈附近的拉伸残余应力也减小了。

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