功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2009年
12期
2097-2099,2103
,共4页
AZ91D镁合金%磷化膜%微观结构%SEM%XRD
AZ91D鎂閤金%燐化膜%微觀結構%SEM%XRD
AZ91D미합금%린화막%미관결구%SEM%XRD
AZ91D magnesium alloy%phosphate coating%microstructure%SEM%XRD
以锌系磷酸盐化学转化膜为研究体系,采用SEM,XRD分析方法及检测手段,研究乙醇胺(MEA)添加剂及其浓度对AZ91D镁合金锌系磷酸盐化学转化膜微观结构的影响.研究发现由于锌系磷化液中乙醇胺的添加:(1)改变了AZ91D镁合金锌系磷化膜晶体层的微观结构,促进了晶核的形成和晶粒细化,晶簇间隙中晶核的形成对晶体膜层完整性和致密度起着关键作用;(2)对(Zn_3(PO_4)_2·_4H_2O)晶体的取向有影响,有控制晶簇尺寸使磷化结晶组织更均匀的作用;(3)MEA在1.2g/L时磷化膜层平整致密、晶簇的尺寸均匀缺陷最少;(4)锌系磷化膜有两层结构:(Zn_3(PO_4)_2·_4H_2O)晶体外层和非晶态内层;(5)MEA的不同添加量对晶体层孔隙的影响有3种类型:表面浅孔(a型),晶簇间缝隙或微裂纹(b型),开放缺陷(c型).
以鋅繫燐痠鹽化學轉化膜為研究體繫,採用SEM,XRD分析方法及檢測手段,研究乙醇胺(MEA)添加劑及其濃度對AZ91D鎂閤金鋅繫燐痠鹽化學轉化膜微觀結構的影響.研究髮現由于鋅繫燐化液中乙醇胺的添加:(1)改變瞭AZ91D鎂閤金鋅繫燐化膜晶體層的微觀結構,促進瞭晶覈的形成和晶粒細化,晶簇間隙中晶覈的形成對晶體膜層完整性和緻密度起著關鍵作用;(2)對(Zn_3(PO_4)_2·_4H_2O)晶體的取嚮有影響,有控製晶簇呎吋使燐化結晶組織更均勻的作用;(3)MEA在1.2g/L時燐化膜層平整緻密、晶簇的呎吋均勻缺陷最少;(4)鋅繫燐化膜有兩層結構:(Zn_3(PO_4)_2·_4H_2O)晶體外層和非晶態內層;(5)MEA的不同添加量對晶體層孔隙的影響有3種類型:錶麵淺孔(a型),晶簇間縫隙或微裂紋(b型),開放缺陷(c型).
이자계린산염화학전화막위연구체계,채용SEM,XRD분석방법급검측수단,연구을순알(MEA)첨가제급기농도대AZ91D미합금자계린산염화학전화막미관결구적영향.연구발현유우자계린화액중을순알적첨가:(1)개변료AZ91D미합금자계린화막정체층적미관결구,촉진료정핵적형성화정립세화,정족간극중정핵적형성대정체막층완정성화치밀도기착관건작용;(2)대(Zn_3(PO_4)_2·_4H_2O)정체적취향유영향,유공제정족척촌사린화결정조직경균균적작용;(3)MEA재1.2g/L시린화막층평정치밀、정족적척촌균균결함최소;(4)자계린화막유량층결구:(Zn_3(PO_4)_2·_4H_2O)정체외층화비정태내층;(5)MEA적불동첨가량대정체층공극적영향유3충류형:표면천공(a형),정족간봉극혹미렬문(b형),개방결함(c형).
The effect of the concentration of ethanolamine (MEA) additive on the microstructure of phosphate coating was investigated using X-ray diffraction (XRD), scanning electron microscope (SEM). The results showed that the addition of ethanolamineadditive had several effects on the microstructure of phosphate coating as follows. (1) The addition of ethanolamine additive was propitious to nucleation and grain-refining, which has critical effect on the integrality of the phosphate coating. (2) Ethanolamine additive is influential to the preferential orientation of (Zn_3(PO_4)_2·_4H_2O) crystal, and has an effect on the control of the size of crystal cluster as well as the uniformity of crystal structure. (3) The phosphate coating with the compact surface morphologies and least flaws was obtained when the concentration of ethanolamine additive was 1.2g/L. (4) The phosphate conversion coatings formed a duplex structure: a crystal outer layer and an amorphous inner layer. (5) The different amount of ethanolamine additive resulted three types of hole: the surface of shallow porosity (a), micro flaws between the cracks or micro-cracks (b) and open defects (c).