机械工程学报
機械工程學報
궤계공정학보
CHINESE JOURNAL OF MECHANICAL ENGINEERING
2010年
4期
15-21
,共7页
磁记忆检测%磁场梯度%应力集中%颈缩
磁記憶檢測%磁場梯度%應力集中%頸縮
자기억검측%자장제도%응력집중%경축
Magnetic memory testing%Magnetic gradient%Stress concentration%Neck contraction
金属磁记忆检测是无损检测领域的新技术.为探索以磁场梯度为判据的磁记忆检测方法,采用自制的专用磁场梯度检测仪,在地磁场环境对棒状低碳钢进行拉伸试验.结果显示磁场梯度与应力的关系随测量方法不同有很大差异.当将试件原位放置在拉伸机上测量时,磁场梯度与应力之间没有确定的关系;当将试件从拉伸机上取下测量时,磁场梯度与近期曾经受到的最大应力成线性关系.通过测量铁磁性构件表面的磁场梯度,为非破坏性测量应力提供新途径.另外,磁记忆信号会随试件取下后搁置时间而逐渐减弱的事实,表明用金属磁记忆技术检测应力集中具有时效性.
金屬磁記憶檢測是無損檢測領域的新技術.為探索以磁場梯度為判據的磁記憶檢測方法,採用自製的專用磁場梯度檢測儀,在地磁場環境對棒狀低碳鋼進行拉伸試驗.結果顯示磁場梯度與應力的關繫隨測量方法不同有很大差異.噹將試件原位放置在拉伸機上測量時,磁場梯度與應力之間沒有確定的關繫;噹將試件從拉伸機上取下測量時,磁場梯度與近期曾經受到的最大應力成線性關繫.通過測量鐵磁性構件錶麵的磁場梯度,為非破壞性測量應力提供新途徑.另外,磁記憶信號會隨試件取下後擱置時間而逐漸減弱的事實,錶明用金屬磁記憶技術檢測應力集中具有時效性.
금속자기억검측시무손검측영역적신기술.위탐색이자장제도위판거적자기억검측방법,채용자제적전용자장제도검측의,재지자장배경대봉상저탄강진행랍신시험.결과현시자장제도여응력적관계수측량방법불동유흔대차이.당장시건원위방치재랍신궤상측량시,자장제도여응력지간몰유학정적관계;당장시건종랍신궤상취하측량시,자장제도여근기증경수도적최대응력성선성관계.통과측량철자성구건표면적자장제도,위비파배성측량응력제공신도경.령외,자기억신호회수시건취하후각치시간이축점감약적사실,표명용금속자기억기술검측응력집중구유시효성.
Metal magnetic memory technology is a new nondestructive testing method. To explore a new diagnostic method based on magnetic gradient testing, a series of tensile tests on low carbon steel bars are carried out in geomagnetic field environment. A self-made special detector is used to measure the magnetic gradient above the material surface. The results show that the relation between the magnetic gradient and the stress varies with different measurement methods. The magnetic gradient has no specific relation to tensile stress if the sample is placed on the tensile testing machine and measured. If the sample is taken off from the machine and measured, the magnetic gradient shows a linear relation with the maximum stress that the sample was subjected to recently. It offers a new method for nondestructive measurement of stress by measuring the magnetic gradient on the ferromagnetic component surface. In addition, magnetic memory signal will gradually decrease after the sample is taken off and laid aside, which shows that the detection of stress concentration by using metal magnetic memory technique is time dependent.