表面技术
錶麵技術
표면기술
SURFACE TECHNOLOGY
2014年
3期
64-67,73
,共5页
等离子喷涂%铜合金%氧化锆陶瓷%氧化铝陶瓷%抗高温氧化性能
等離子噴塗%銅閤金%氧化鋯陶瓷%氧化鋁陶瓷%抗高溫氧化性能
등리자분도%동합금%양화고도자%양화려도자%항고온양화성능
plasma spraying%copper alloy%zirconia ceramics%alumina ceramics%oxidation resistance at high temperature
目的:对比研究ZrO2-Y2 O3和A12 O3-TiO2涂层的抗高温氧化性能。方法采用等离子喷涂工艺,以NiCrAl为粘接层,在铜合金基体表面分别制备ZrO2-Y2 O3和A12 O3-TiO2涂层,测试涂层的显微组织、元素种类及含量、显微硬度,并在相同条件下测试涂层的抗高温氧化性能。结果 ZrO2-Y2 O3和A12 O3-TiO2涂层都具有明显的层状结构,涂层结合紧密,内部孔洞细小,显微硬度分别为423HV 和628HV。这两种涂层都具有一定的抗高温氧化性能,NiCrAl粘结层是整个涂层最薄弱的环节。结论等离子喷涂ZrO2-Y2 O3涂层的抗高温氧化性能优于A12 O3-TiO2涂层。
目的:對比研究ZrO2-Y2 O3和A12 O3-TiO2塗層的抗高溫氧化性能。方法採用等離子噴塗工藝,以NiCrAl為粘接層,在銅閤金基體錶麵分彆製備ZrO2-Y2 O3和A12 O3-TiO2塗層,測試塗層的顯微組織、元素種類及含量、顯微硬度,併在相同條件下測試塗層的抗高溫氧化性能。結果 ZrO2-Y2 O3和A12 O3-TiO2塗層都具有明顯的層狀結構,塗層結閤緊密,內部孔洞細小,顯微硬度分彆為423HV 和628HV。這兩種塗層都具有一定的抗高溫氧化性能,NiCrAl粘結層是整箇塗層最薄弱的環節。結論等離子噴塗ZrO2-Y2 O3塗層的抗高溫氧化性能優于A12 O3-TiO2塗層。
목적:대비연구ZrO2-Y2 O3화A12 O3-TiO2도층적항고온양화성능。방법채용등리자분도공예,이NiCrAl위점접층,재동합금기체표면분별제비ZrO2-Y2 O3화A12 O3-TiO2도층,측시도층적현미조직、원소충류급함량、현미경도,병재상동조건하측시도층적항고온양화성능。결과 ZrO2-Y2 O3화A12 O3-TiO2도층도구유명현적층상결구,도층결합긴밀,내부공동세소,현미경도분별위423HV 화628HV。저량충도층도구유일정적항고온양화성능,NiCrAl점결층시정개도층최박약적배절。결론등리자분도ZrO2-Y2 O3도층적항고온양화성능우우A12 O3-TiO2도층。
Objective In order to study the oxidation resistance of ZrO2-Y2 O3 and A12 O3-TiO2 coatings, ZrO2-Y2 O3 and A12 O3-TiO2 coatings with NiCrAl bonding layer were successfully prepared by plasma spraying process. Methods The microstruc-tures, element types and levels and micro-hardness of the different coatings were studied by metallurgical microscopy, scanning e-lectron microscopy (SEM), energy dispersive spectrometer (EDS) and micro-hardness measurement. Oxidation resistance of all the specimens were tested under the same conditions. Results Both ZrO2-Y2 O3 and A12 O3-TiO2 coatings had a significant layer structure, good adhesion and low porosity. The micro-hardness of ZrO2-Y2 O3 and A12 O3-TiO2 coatings was 423HV and 628HV, respectively. Both ZrO2-Y2 O3 and A12 O3-TiO2 coatings had certain oxidation resistance. NiCrAl bonding layer was the weakest part of the whole coatings. Conclusion ZrO2-Y2 O3 coatings had better oxidation resistance than A12 O3-TiO2 coatings.