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ID:36544436
大小:1.67 MB
页数:8页
时间:2019-05-11
《等离子熔覆MO/NI基合金涂层的组织结构及耐磨性能》由会员上传分享,免费在线阅读,更多相关内容在行业资料-天天文库。
1、维普资讯http://www.cqvip.com第16卷第9期中国有色金属学报2006年9月V0I.16No.9TheChineseJournaIofNonferrousMetaIsSep.2006文章编号:1004—0609(2006)09—1595—08等离子熔覆M0/Ni基合金涂层的组织结构及耐磨性能①侯清宇,何宜柱,高甲生(安徽工业大学材料科学与工程学院,马鞍山243002)摘要:应用光学显微镜、扫描电镜(SEM)、x射线衍射(XRD)、透射电镜(TEM)以及滑动磨损实验,研究不同Mo加入量对等离子熔覆镍基合金涂层组织结构和性能的影响。结果表明,熔覆层主要是由面心立方结构的Y(
2、Ni,Fe)固溶体、六方结构的M(c,B)和四方结构的Cr2B等物相构成,在镍基固溶体中存在明显的成分偏析。Mo的加入没有改变熔覆层的相结构,但硼碳化物的相对含量却有所提高,成分偏析逐渐减弱,直至消失,并且促进了等轴晶的形成。Mo的加入可以提高熔覆层的耐磨性能,当其加入量在6以内时,随着Mo加入量的提高,熔覆层的耐磨性逐渐提高。但是,当加入量达到8时,耐磨性能开始降低。关键词:等离子熔覆;镍基合金;钼;组织结构;耐磨性中图分类号:TGl13.12;TG456.2文献标识码:AMicrostructureandwearresistanceofMo/Ni-basedalloycoating
3、producedbyplasmacladdingHOUQing—yu,HEYi—zhu,GAOJia—sheng(SchoolofMaterialsScienceandEngineering,AnhuiUniversityofTechnology,Ma’anshan243002,China)Abstract:TheeffectofdifferentMoadditionsonthemicrostructureandwearresistanceofthenickel—basedalloycoatingproducedbyplasmacladdingwasinvestigatedusingo
4、pticalmicroscope,scanningelectronmicroscope(SEM),X-raydiffraction(XRD),transmissionelectronmicroscope(TEM),andslidingweartest.Theresultsshowthatthey(Ni,Fe)solidsolutionwithaface-centeredcubiccrystalstructureispresentedaccompaniedbytheM7(C,B)3withahexagonalcrystalstructureandCr2Bwithatetragonalcr
5、ystalstructureinthenickel—basedalloycoating.Theobviouscomponentsegregationexistsinthenickel—basedsolidsolution.TheadditionofModoesnotchangethephasecomposition,thoughtherelativecontentofborideandcarbideincreases.Meanwhile,thecompo—nentsegregationdecreasesgraduallythendisappearsfinallywiththeincre
6、asingMocontent.TheequiaxedcrystalscomeintobeingintheMo-modifiedcoating.TheadditionofMoincreasesthewearresistance.ThewearresistanceincreaseswiththeincreasingMocontentwhenitscontentislowerthanorequalsto6.Onthecontrary,thewearresistancedecreasesagainwhentheMocontentequalsto80A.TheadditionofMocanhom
7、ogenizethecomponent,promotetheformationofequiaxedcrystals,andincreasetherelativequantityofborideandcarbide.Alltheseresultsarebeneficialtoincreasingthewearresistanceofthecladdingcoating.Keywords:plasmacladding;nickel—basedall
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