PV028R1K1T1NMMC
武穴黎翔機電設備有限公司,詢價聯系人:何女士
詢價電話:0713-6542758,18934630908????
詢價傳真:0713-6542758
詢價QQ:?736567721,704552157PAVC100R4222
PAVC1002R42
PVP1630R212
PVP1636R2V12
PVP1630R2M12
PVP3336C9R21
PVP3336C9R21
PVP33369R21
PVP33203R26A4M21
PVP1636C9L2A12
PHP10508R10
PAV10RKP1D
PAV6.3RKVP1AA
PAV6.3RKVP1AA
PV016L1K1T1NFHS
PV016R1K8T1NMMC(恒壓變量控制)
PV020R1K1T1VMMC
PV028R1K1T1NMMC
PV020R1K1T1NMMC
PV020R1K1T1N100
PV023R1K1T1NMMC(恒壓變量控制)
PV023R1K1T1NUPD(電液比例變量控制)
"PV032R1K1T1NMMC
武穴黎翔機電設備有限公司。PARKER美國派克銷售熱線:18934630908.0713-6542758,詢價QQ:3206749044.
PV032R1K8T1NUPG(電液比例變量控制)
2F1C03-01-B-4-C
PV046R1K1T1NFHS
PV046R1K1T1NMMC(恒壓變量控制)
PV063R1K1T1NFF1
PV063R1K1T1NFWS
PV080R1K1T1NFWS(5.5折)
PV080R1K8T1NFWS由于電磁鐵推力的限制,在大于63L/min的液壓系統中,一般不再選用直推式的電磁換向閥,而選用通過流量較大的電液換向閥。電液換向閥的原理是:控制油通過電磁先導閥到達電液閥主閥芯的兩端(即電液換向閥主閥體兩端蓋側),通過電磁先導閥的換向,來實現主閥芯的左右移動,從而開通或切斷通往執行元件的油路,使執行元件運行或停止。但在打開或切斷油路的瞬間,系統中會產生相當大的沖擊,這種沖擊會極大影響液壓系統中液壓元件和密封件的使用壽命。為了減小及至消除由此引起的液壓沖擊,最簡單的辦法是在該電液閥下面疊加一個P口節流閥或進油節流式雙單向節流閥、出油節流式雙單向節流閥,以延長閥芯的換向及復位時間,從而到降低液壓沖擊的目的。下面就以彈簧復位型、三位四通中封式電液壓換向閥為例、對該三種疊加節流方式作簡要說明。一、疊加一個P口可調節流閥:控制油先通過疊加可調節流閥、到達電磁先導閥的P口,通過電磁先導閥的換向及調整節流閥的開度,來實現主閥芯的換向延時,從而達到降低主油路與執行元件接通時的換向沖擊。但先導電磁閥斷電時、彈簧復位型電液換向閥主閥體兩端蓋內的液壓油會通過先導電磁閥的中位與泄油口接通、主閥芯在復位彈簧的作用下會立即復位,由于主閥芯復位快、亦即切斷執行元件油路的速度快、從而引起液壓沖擊。由此可見,疊加一個P口可調節流閥,只能實現換向接通延時、不能解決復位切斷延時。注:象油缸類的執行元件,油缸前進與后退時通過換向閥的流量是不一致的,油缸無桿腔與有桿腔的面積比越大、流量差距也越大,此時若想較滿意的降低執行元件前進與后退時的液壓沖擊,通過一個可調節流閥,恐怕是難以實現的A10VSO140DFR1/31R-PPB12N00
A10VSO140DFLR1/31R-PPB12KO1
A10VSO-140DR/31R-PPB12N00
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A10VSO140DFR1S/31RPPB12N00
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A10VSO140DRS/32R-VPB12N00
A4VSO40LR2G/10R-PPB13N00
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