振动与冲击
振動與遲擊
진동여충격
JOURNAL OF VIBRATION AND SHOCK
2015年
10期
111-114
,共4页
赵建华%赵占西%陈晓亮%陆晓%周翔%纪秀林
趙建華%趙佔西%陳曉亮%陸曉%週翔%紀秀林
조건화%조점서%진효량%륙효%주상%기수림
CrMoV 堆焊层%冲蚀磨损%显微组织%冲蚀角度
CrMoV 堆銲層%遲蝕磨損%顯微組織%遲蝕角度
CrMoV 퇴한층%충식마손%현미조직%충식각도
CrMoV surfacing layer%erosion wear%microstructure%impact angle
采用手工电弧焊工艺在20钢基体表面制备 CrMoV 合金堆焊层进行相组成、显微组织、耐冲蚀磨损性能及冲蚀磨损机理研究。结果表明,堆焊层数增加母材稀释率减小,堆焊层显微组织主要为马氏体、残余奥氏体及合金碳化物。第二、三堆焊层显微硬度最高,堆焊层平均显微硬度达780 HV,为基体硬度的4倍多。在所有冲蚀角度范围内, CrMoV 合金堆焊层耐泥沙冲蚀磨损性能优于20钢;冲蚀角度小于30°时冲蚀磨损机制以微切削为主,大于30°时以疲劳损伤及局部塑性变形为主;砂粒粒径增加,堆焊层及20钢的冲蚀磨损率均有所增加,但不与粒径的增加值成正比。
採用手工電弧銲工藝在20鋼基體錶麵製備 CrMoV 閤金堆銲層進行相組成、顯微組織、耐遲蝕磨損性能及遲蝕磨損機理研究。結果錶明,堆銲層數增加母材稀釋率減小,堆銲層顯微組織主要為馬氏體、殘餘奧氏體及閤金碳化物。第二、三堆銲層顯微硬度最高,堆銲層平均顯微硬度達780 HV,為基體硬度的4倍多。在所有遲蝕角度範圍內, CrMoV 閤金堆銲層耐泥沙遲蝕磨損性能優于20鋼;遲蝕角度小于30°時遲蝕磨損機製以微切削為主,大于30°時以疲勞損傷及跼部塑性變形為主;砂粒粒徑增加,堆銲層及20鋼的遲蝕磨損率均有所增加,但不與粒徑的增加值成正比。
채용수공전호한공예재20강기체표면제비 CrMoV 합금퇴한층진행상조성、현미조직、내충식마손성능급충식마손궤리연구。결과표명,퇴한층수증가모재희석솔감소,퇴한층현미조직주요위마씨체、잔여오씨체급합금탄화물。제이、삼퇴한층현미경도최고,퇴한층평균현미경도체780 HV,위기체경도적4배다。재소유충식각도범위내, CrMoV 합금퇴한층내니사충식마손성능우우20강;충식각도소우30°시충식마손궤제이미절삭위주,대우30°시이피로손상급국부소성변형위주;사립립경증가,퇴한층급20강적충식마손솔균유소증가,단불여립경적증가치성정비。
CrMoV surfacing coatings were deposited on 20 steel substrates using shielded metal arc welding.The microstructure,erosion wear resistance performance and erosion wear mechanism of CrMoV coatings were studied.It was shown that with increase in surfacing layers,the dilution rate of parent material decreases;the microstructure of surfacing layers consists of martensite,residual austensite and alloy carbides;the highest hardness of surfacing alloy exists at the second and third layers;the average micro-hardness of surfacing layers is 780HV,it is more than 4 times of the matrix one.The erosion wear tests showed that CrMoV coating has a better erosion resistance capacity than 20 steel substrate does;the erosion wear mechanism of CrMoV coating is mainly micro-cutting at small impact angles,and mainly fatigue damage and local plastic deformation at large impact angles;the erosion wear rate of surface coating increases with increase in particle size,but it is not directly proportional to the particle size.