金属学报
金屬學報
금속학보
ACTA METALLURGICA SINICA
2009年
7期
844-848
,共5页
纳米晶Ni%疲劳裂纹起源%纳米硬度%原子力显微镜
納米晶Ni%疲勞裂紋起源%納米硬度%原子力顯微鏡
납미정Ni%피로렬문기원%납미경도%원자력현미경
nanocrystaUine Ni%fatigue crack initiation%nanoindentation%AFM
系统研究了纳米晶Ni与粗晶Ni的疲劳行为.通过疲劳实验获得了这2种材料的疲劳应力-寿命曲线,并采用AFM对纳米晶Ni样品表面进行观察以研究其裂纹萌生的微观机制,利用纳米压痕仪对疲劳实验前后样品的力学性能和显微组织变化进行了研究.结果表明,纳米晶Ni具有比粗晶Ni更高的疲劳极限.AFM观察表明,纳米晶疲劳后样品表面出现平均尺寸为73 nm的胞状起伏,疲劳后样品的晶粒尺寸未发生明显改变.压痕硬度结果表明,疲劳过程材料的力学性能也未发生明显变化.
繫統研究瞭納米晶Ni與粗晶Ni的疲勞行為.通過疲勞實驗穫得瞭這2種材料的疲勞應力-壽命麯線,併採用AFM對納米晶Ni樣品錶麵進行觀察以研究其裂紋萌生的微觀機製,利用納米壓痕儀對疲勞實驗前後樣品的力學性能和顯微組織變化進行瞭研究.結果錶明,納米晶Ni具有比粗晶Ni更高的疲勞極限.AFM觀察錶明,納米晶疲勞後樣品錶麵齣現平均呎吋為73 nm的胞狀起伏,疲勞後樣品的晶粒呎吋未髮生明顯改變.壓痕硬度結果錶明,疲勞過程材料的力學性能也未髮生明顯變化.
계통연구료납미정Ni여조정Ni적피로행위.통과피로실험획득료저2충재료적피로응력-수명곡선,병채용AFM대납미정Ni양품표면진행관찰이연구기렬문맹생적미관궤제,이용납미압흔의대피로실험전후양품적역학성능화현미조직변화진행료연구.결과표명,납미정Ni구유비조정Ni경고적피로겁한.AFM관찰표명,납미정피로후양품표면출현평균척촌위73 nm적포상기복,피로후양품적정립척촌미발생명현개변.압흔경도결과표명,피로과정재료적역학성능야미발생명현변화.
Electrodeposited nanocrystalline (nc)metal is often used as a model material in nc material investigation.But electrodeposition typically yields only thin foils that are at most several hundred micrometers in thickness,this arouses experimental difficulties in fatigue testing.There are several investigations on fatigue of electrodeposited nc metals.However,for the lack of direct ex-perimental evidence,the mechanism of fatigue crack nucleation for nc materials is still not clear.In addition to fatigue properties,the microstructure stability is another key point for the practice of bulk nc materials.Some research papers indicated that the grains of nc metal would grow up under quasi-static loading,but no any investigation give out results under cyclic loading.In this paper,fatigue of electrodeposited nc Ni was experimentally investigated.Fatigue testing was carried out to obtain the S-N curves.For the reason that surface is the most important site for fatigue crack initiation ,atomic force microscopy(AFM)was used to scan the sample surface before and after fatigue testing, which provides a direct observation on fatigue crack nucleation mechanism.For investigation on the stability of microstructure,the AFM was also used to measure the grain size of samples after fatigue loading,and nanoindenter was used to investigate the change of mechanical properties of samples af- ter fatigue testing.The S-N curves indicate that nanocryatalline samples have a higher fatigue limit than coarse grain ones.The AFM images indicate that cell pellet morphology with the average size of 73 nm appeared on sample surface after high cycle fatigue testing and the grain size is the same as those before the fatigue testing.From the results of nanoindentation,the mechanical properties includ-ing hardness,strain rate sensitivity and elastic modules of samples also keep no obvious change after fatigue loading.Based on these results,the fatigue crack nucleation mechani.qm of electrodeposited nc Ni was discussed.