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沈正祥, 等: 矫顽力在碳钢热处理质量预评定中的应用
集中, 矫顽力次之; 铁素体相中分散的渗碳体颗粒影 [ 9 ] TANNERBK , SZPUNARJA , WILLCOCKSN M ,
响磁畴壁运动, 矫顽力最小. etal.Ma g neticand metallur g icalp ro p ertiesofhi g hG
( 2 )不同热处理条件下, 碳钢的常用力学性能 tensilesteels [ J ] .JournalofMaterialsScience , 1988 ,
指标与矫顽力近似成线性关系, 其中抗拉强度和硬 23 ( 12 ): 4534G4540.
[ 10 ] YOSHINO M , TANABE H , SAKAMOTO T , etal.
度与矫顽力有很好的关联性.
Nondestructive measurementofg rain sizein steel
( 3 )基于矫顽力的无损评估技术, 既能快速辨
p latesb yusin gma g neticcoerciveforce [ J ] .Materials
别碳钢的显微组织, 又能对力学性能实现定量预测,
ScienceForum , 1996 , 210 : 45G54.
可用于碳钢的热处理质量预评定.
[ 11 ] BIDA G V , NICHIPURUK A P.Coercive force
参考文献: measurementsinnondestructivetestin g [ J ] .Russian
JournalofNondestructiveTestin g , 2000 , 36 ( 10 ): 707G
[ 1 ] 路胜卓 . 磁记忆用 于 材 料 热 处 理 质 量 评 估 的 方 法 研 727.
究[ D ] . 哈尔滨: 哈尔滨工业大学, 2007. [ 12 ] MÁLEKZ.Astud y oftheinfluenceofdislocationson
[ 2 ] KULEEV V G , TSARKOVA T P.Effectofp lastic someofthe ma g neticp ro p ertiesofp ermallo yallo y s
deformationsandheattreatmentonthebehaviorof [ J ] .CzechoslovakJournalofPh y sics , 1959 , 9 ( 5 ):
thecoerciveforce underload [ J ] .The Ph y sicsof 613G626.
[ 13 ] 杨理践, 孙宏亮, 高松巍, 等 . 基于矫顽力的钢板应力
MetalsandMetallo g ra p h y , 2007 , 104 ( 5 ): 461G468.
[ 3 ] MIERCZAK L , JILES D C , FANTONI G.A new 检测技术[ J ] . 无损检测, 2018 , 40 ( 3 ): 5G9.
[ 14 ] 孙燕华 .Q245R 钢 磁 特 性 对 应 力 的 映 射 规 律 研 究
methodforevaluationofmechanicalstressusin gthe
reci p rocalam p litude of ma g netic barkhausen noise [ D ] . 济南: 山东大学, 2016.
[ J ] .IEEE Transactionson Ma g netics , 2011 , 47 ( 2 ): [ 15 ] BYEON J W , KWUN S I. Evaluation of
459G465. microstructuresofvariousl yheattreatedcarbonsteel
[ 4 ] JILES D C. Review of ma g netic methods for b y ma g netic coectivit y measurement [ J ] .Ph y sica
nondestructive evaluation [ J ] .NDT International , StatusSolidi ( b ), 2004 , 241 ( 7 ): 1697G1700.
[ 16 ] 计云萍, 刘宗昌, 任慧平, 等 . 高碳钢中马氏体的组织
1988 , 21 ( 5 ): 311G319.
[ 5 ] BATISTAL , RABE U , ALTPETERI , etal.Onthe 结构及形成机制[ J ] . 机械工程材料, 2013 , 37 ( 3 ): 1G4.
mechanism ofnondestructiveevaluationofcementite [ 17 ] LO C C H , JAKUBOVICS J P , SCRUBY C B.
contentin steels usin g acombination of ma g netic Monitorin gthe microstructureofp earliticsteelsb y
Barkhausen noise and ma g netic force microsco py ma g netoacousticemission [ J ] .Journal of A pp lied
techni q ues [ J ] .Journalof Ma g netism and Ma g netic Ph y sics , 1997 , 81 ( 8 ): 4069G4071.
Materials , 2014 , 354 : 248G256. [ 18 ] MOHAPATRAJN , MOHANTYS , DABBIRUSK ,
[ 6 ] BYEONJ W , KWUN SI.Ma g neticnondestructive et al. Correlation of ma g netic p ro p erties with
evaluationofthermall y de g raded2.25CrG1Mosteel mechanical p ro p ertiesofahi g htensileg radesteelin
[ J ] .MaterialsLetters , 2004 , 58 ( 1 / 2 ): 94G98. variousheattreatedconditions [ J ] .Transactionsof
[ 7 ] GHANEIS , SAHEB ALAM A , KASHEFIM , etal. theIndianInstituteof Metals , 2018 , 71 ( 10 ): 2361G
Nondestructivecharacterizationofmicrostructureand 2374.
mechanical p ro p ertiesofintercriticall yannealeddualG [ 19 ] SANDOMIRSKIIS G.Estimation ofthe ultimate
p hasesteelb y ma g neticBarkhausennoisetechni q ue tensile stren g th of steel from its HB and HV
[ J ] .MaterialsScienceandEn g ineerin g : A , 2014 , 607 hardnessnumbersand coerciveforce [ J ] .Russian
( 23 ): 253G260. Metallur gy ( Metall y ), 2017 , 11 : 989G993.
[ 8 ] GHANEI S , KASHEFI M , MAZINANI M. [ 20 ] MOHAPATRA J N , KAMADA Y. Ma g netic
Com p arativestud yofedd ycurrentand Barkhausen h y steresis loo p as a tool for the evaluation of
noise nondestructive testin g methods in s p heroidizationofcementitesin p earliticsteels [ J ] .
microstructural examination of ferriteGmartensite Journalof Materials En g ineerin gand Performance ,
dualG p hase steel [ J ] .Journal of Ma g netism and 2015 , 24 ( 4 ): 1551G1557.
Ma g neticMaterials , 2014 , 356 : 103G110.
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