Effect of Magnetic Stirring to Anelasticity of Steel Compression Coil Spring (Role of magnetic domain walls for weakly pinning dislocations)

S. Kotake, Takuro Murata
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Abstract

is an important phenomenon for spring technology, since it affects the size and restoring force of a spring during its operation. Although this property has been known more than a half-century ago, its mechanism has not been clarified yet. In this study we have evaluated the effects of magnetic treatments to the anelasticity of steel compression coil springs during elastic deformation in experiments. We measured the temporal change of recovery lengths of the specimens after unloading with or without magnetic stirring under 180mT, since free length change of the coil spring is the summation of the faint twist modification in the steel wire. Each spring of 20mm long showed about 20 μ m length of recovery in 2 hours from the point of 90 second after the unloading. It indicates some bowing-out dislocations during the compression were interrupted with certain disturbances. The length of recovery was increased in 10 % for the magnetic stirring specimens. Since alternatively changed external magnetic field expands the length of magnetic domain walls in steel, it suggests the walls might play the role of obstacles, such as weak pinning sites, against the recovery movement of the dislocations in anelasticity.
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磁搅拌对钢压缩线圈弹簧非弹性的影响(磁畴壁对弱钉钉位错的作用)
是弹簧技术中的一个重要现象,因为它影响弹簧在工作过程中的大小和恢复力。虽然这一特性在半个多世纪前就已为人所知,但其机制尚未得到阐明。在实验中,我们评估了磁处理对钢压缩线圈在弹性变形过程中的非弹性的影响。在180mT下,我们测量了有或无磁力搅拌卸载后试样恢复长度的时间变化,因为线圈弹簧的自由长度变化是钢丝中微弱扭转变化的总和。每个长度为20mm的弹簧从卸载后90秒开始,在2小时内恢复长度约为20 μ m。结果表明,在压缩过程中,一些弓形位错受到一定的干扰而中断。磁搅拌试样的恢复长度增加了10%。由于交替变化的外磁场扩大了钢中磁畴壁的长度,这表明磁畴壁可能起到了阻碍位错在非弹性中恢复运动的作用,如弱钉钉位点。
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