A11VO130DRS/10R-NPD12N00 德国力士乐变量柱塞泵
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■A10VSO柱塞泵型号列表:
A10VSO18DFR1/31R-PPB12N00
A10VS018DR/31R-PPA12N00
A10VSO18DFR1/31R-PPA12N00
A10VSO28DR/31R-PPA12N00
A10VSO28DR/31R-PSC12N00
A10VSO28DRF1/31R-PSA12N00
E-A10VSO28DFR1/31R-PPA12N00
A10VSO28DFR1/31R-PPA12N00
A10VSO28DFR/31R-PSA12N00
A10VSO28DR/32R-PPA121V00
A10VO28DFR1/31L-PSC62N00
A10VO28DFR1/31R-PSC62N00
A10VSO45DR/31R-PPA12N00
A10VS045DFR1/31R-PPA12N00
E-A10VSO45DFR1/31R-PPA12N00
A10VSO45DR/52R-PC12N00
A10VO45DFR1/31R-PSC62K02
A10VSO45DFR1/32R-PPB12N00
A10VSO71DFR1/31R-PPA12N00
A10VSO71DFR1/31R-PPA12KB5
A10VSO71DFR/31R-PSC62K07
E-A1OVSO71DFR1/31R-PPA12N00
A10VSO71DFR1/32R-VPB22U99
A10VSO71DFR1/31R-PPB12N00
A10VSO71DR/31R-PPA12N00
A10VSO100DR/31R-PPA12N00
A10VSO100DR/31R-VPA12N00
A10VSO100DFR1/31R-PPA12N00
A10VSO100DR/31R-PPA12N00
A10VS0100DFR1/32R-VPB12N00
A10VSO100DFR1/32R-PPB12N00
A10V0100DR/31R-PSC11N00
A10VS0100DR/31R-PTA12N00
E-A10VSO140D/31R-PPB12N00
A10VS0140DR/31R-PPB12N00
E-A10VSO140DFR1/31R-PPA12N00
A10VSO140DFR1S/31R-PPB12N00
A10VSO140DFR1/31R-PPB12N00
A10VS0140DFLR/31R-PPB12N00
A10VSO140DR/31R-PPB12N00
A10VSO140DRS/32R-VPB12N00
A10VSO140DRS/32R-VPB22U99
A10VSO140DFR1/31R-PPB12N00
A10VSO140DR/32R-PPA12N00
工作液内的污物有三个来源:个来源是液压系统内原有的杂质,如液压元件、导管、接头等机械加工中残留下来的金属屑和毛刺,喷砂时留下的砂粒,铸件末清洗干净的砂粒,金属的氧化皮、锈蚀脱落物和涂料脱落物,管螺纹部分的油封剂,清理管路时留下的纤维物第二个来源是外部进入液压系统内的杂质,如工作液保存中混入的尘埃,因冷却器路水混入的水分及空气中的湿气等. 第三个来源是液压系统内生成的杂质,如各种液压元件和接头等处密封件的破损屑,液压元件运动部分磨损造成的金属粉末,因高温高压造成工作液的劣化而生成沥青、油淤泥,因水分、空气,金属等的作用使工作液产生氧化现象的生成物 ,因橡胶密封件和软管等在工作液中溶解而生成的杂质等.根据这些杂质来源,应采取以下 措施来保持工作液的清洁.
■A4VSO变量泵
A4VSO40LR2G/10R-PPB13N00
A4VSO71DFR/10X-PPB13N00
A4VSO71DR/10X-PPB13N00
A4VSO71DRG/10X-PPB13N00
A4VSO71LR2/10R-PPB13N00
A4VSO71LR2D/10R-PPB13N00
A4VSO125DFR/22R-PPB13N00
A4VSO125DR/22R-PPB13N00
A4VSO125DR/22R-VPB13N00
A4VSO125LR2/22R-PPB13N00
A4VSO125LR2G/22R-PPB13N00
A4VSO125LR2N/22R-PPB13N00
A4VSO180LR2N/22R-PPB13N00
A4VSO250DFR/30R-PPB13N00
A4VSO250DR/30R-PPB13N00
A4VSO250DRG/30R-PPB13N00
A4VSO250LR2/30R-PPB13N00
A4VSO250LR2G/30R-PPB13N00
A4VSO180DFR/22R-PPB13N00
A4VSO180DR/22R-PPB13N00
A4VSO180DRG/22R-PPB13N00
■A11VSO变量泵
A11VO40LRS/10R-NSC12N00 A11VO40LRS/10R-NPC12N00
A11VO40LRH2/10R-NSC12N00 A11VO40LRH2/10R-NPC12N00
A11VO40DRS/10R-NSC12N00 A11VO40DRS/10R-NPC12N00
A11VO60LRS/10R-NSC12N00 A11VO60LRS/10R-NPC12N00
A11VO60LRS/10R-NSC12K01 A11VO60LRS/10R-NPC12K01
A11VO60LRH2/10R-NSC12N00 A11VO60LRH2/10R-NPC12N00
A11VO60LRH2/10R-NSC12K01 A11VO60LRH2/10R-NPC12K01
A11VO60DRS/10R-NSC12N00 A11VO60DRS/10R-NPC12N00
A11VO60DRS/10R-NSC12K01 A11VO60DRS/10R-NPC12K01
A11VO75LRS/10R-NSD12N00 A11VO75LRS/10R-NPD12N00
A11VO75LRS/10R-NSD12K01 A11VO75LRS/10R-NPD12K01
A11VO75LRH2/10R-NSD12N00 A11VO75LRH2/10R-NPD12N00
早期的泵的平面配油机构的结构,是在缸体与配油盘之间安设一枚止推球轴承,力图强制人为的构成必要的间隙。可是,在实践指出,由于平面的配油机构的载荷不均匀(一侧几乎没有什么载荷),缸体歪斜,威尔漏损非常严重,不能保证同一的润滑条件。因此导致磨损也是不均匀的。这样,在设计时就必须考虑到在载荷的不均匀性,但是试验结果事与愿违,还是发生不能允许的磨损和漏损。--whhmsyy2019lxy