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A10VSO10DFR1/52R-PPA14N00-S1482
A10VSO10DFR1/52R-PPA14N00-SO857
A10VSO10DFR1/52R-PPA14N00-SO858
A10VSO10DFR1/52R-PSA14N00-S1915
A10VSO10DFR1/52R-PSA14N00-SO 32
A10VSO10DFR1/52R-PSC14N00
A10VSO10DFR1/52R-PSC14N00-SO 32
A10VSO10DFR1/52R-PSC64N00
A10VSO10DFR1/52R-PSC64N00E
A10VSO10DFR1/52R-PSC64N00ES1768
A10VSO10DFR1/52R-PSC64N00-S1768
A10VSO10DFR1/52R-PUC64N00
A10VSO10DFR1/52R-PUC64N00E

A10VSO10DFR1/52R-PUC64N00E
A10VSO10DFR1/52R-PUC64N00-SO857
A10VSO10DFR1/52R-VPA14N00
A10VSO10DFR1/52R-VUC64N00
A10VSO10DR/52R-PSA14N00-S1482
A10VSO10DR/52R-PSA14N00-SO32
A10VSO10DR/52R-PSA14N00-SO857
A10VSO10DR/52R-PSC64N00
A10VSO10DR/52R-PSC64N00E
A10VSO10DR/52R-PSC64N00-SO858
A10VSO10DR/52R-PSC64N00-SO922
A10VSO10DR/52R-PUC14N00
A10VSO10DR/52R-PUC14N00
A10VSO10DR/52R-PUC64N00
A10VSO10DR/52R-PUC64N00E

A10VSO10DR/52R-PUC64N00-S1768
A10VSO10DR/52R-PUC64N00-SO857
A10VSO10DR/52R-PUC64N00-SO858
A10VSO10DR/52R-VKC64N00ES1768
A10VSO10DR/52R-VKC64N00-S1768
A10VSO10DR/52R-VPA14N00
A10VSO10DR/52R-VPA14N00-SO857
A10VSO10DR/52R-VSC64N00-SO857
A10VSO10DRG/52L-PSC64N00
A10VSO10DRG/52L-PUC64N00
A10VSO10DRG/52R-PKC14N00
A10VSO10DRG/52R-PKC64N00
A10VSO10DRG/52R-PKC64N00E
A10VSO10DRG/52R-PKC64N00-SO846
A10VSO10DRG/52R-PKC64N00-SO857
A10VSO10DRG/52R-PKC64N00-SO858
A10VSO10DRG/52R-PPA14N00
A10VSO10DRG/52R-PPA14N00-SO857
A10VSO10DRG/52R-PPA14N00-SO858
A10VSO10DRG/52R-PPC14N00
A10VSO10DRG/52R-PSC14N00

加工精密程度高,偏差小。加工表面质量良好。加工方法经济,加工人员技巧不必熟练亦可加工。采用拉削刀具加工的方法能够满足涡*叶根槽高精度及较低表面粗糙度值要求。拉削加工涡*叶根槽,保证高精度及较低表面粗糙度值的关键在于涡*叶根槽精拉刀的设计及制造。针对涡*材料特殊、难于加工及叶根槽高精度、较低表面粗糙度值等特点,合理设计拉刀,合理选择拉刀材料,采用*热处理方法,解决拉刀制造过程中关键技术,完善制造工艺,*终达到批量生产的目标,刀具质量及性能达到*水平。技术关键拉刀整体设计针对叶根槽形状复杂的特点,将拉刀设计成粗拉刀、半精拉刀、精拉刀,成组使用,一次拉削成形;粗拉刀拉掉大部分切削余量,半精拉刀修整齿形轮廓,精拉刀*定型拉削。拉削方式选择粗拉刀采用渐成式拉削方式,拉出叶根槽雏形,半精拉刀采用抬高加工方法修整槽型,精拉刀采用同廓式拉削方式,需对拉刀形面进行铲磨后角。拉刀选材一般拉刀所使用的材料是我们所熟知W6Mo5Co4V2高速钢,当经过热处理之后可达洛氏硬度63~66HRC,由于涡轮*的材质是耐高温的镍基合金,加工性差,而且涡轮*的精度要求很高,硬质合金刀具虽然在硬度、耐磨性和切削用量等方面优于高速钢,但其缺点就是不能承受较大的冲击力,强度较低,只是高速钢的1/3,热处理困难;整体硬质合金刀具制造困难,可加工性差,型线的研磨必须用金刚石砂轮。