力士樂單向閥SL10PB1-4X/ R900443419,德國REXROTH液控單向閥,上海韋米機電設備有限公司主營進口品牌備件:力士樂REXROTH,安沃馳AVENTICS,本特利BENTLY,迪普馬DUPLOMATIC,貝加萊B&R,阿托斯ATOS,愛爾泰克AIRTEC,世格ASCO等;歡迎詢價采購!
單向閥、液控單向閥、SV/SL型液控單向閥、疊加式液控單向閥
1.結構和工作原理
單向閥又稱止回閥或逆止閥。用于液壓系統中防止油流反向流動。單向閥有直通式和直角式兩種。
SV和SL型液控單向閥都是座式閥,由液壓開啟,能給出反向流。
這種閥用來隔離局部壓力回路,即作為在管子破裂時防止負載降落的保護,也可防止負載下爬。這種液控單向閥主要包括閥體、主閥、先導閥、壓縮彈簧和控制活塞 。
SV型閥(無泄油口)一一泄漏油內部回油
由A口至B口始終可以流動。反方向上則導閥和主閥被壓縮彈簧和系統壓力保持在閥座上。若X口供給壓力油則控制活塞被推向右。
這首先打開導閥,然后打開主閥。于是油液先通過導閥,然后通過主
導閥。為了保證用控制活塞能可靠地操縱,需要一定的低控制壓力。
SL型閥(帶泄油口)-一-泄漏油外部回油
在原理上,此閥與SV型有相同的功能。不同之處在于增加了泄油口Y,這就可使控制活的環形面積與A口隔離。A口來的油壓只作用在控制活塞的面積A4上,從而有效地降低此條件下所需的控制壓力。
Z2S型疊加式液控單向閥
Z2S型單向閥是疊加式液控單向閥。它可用于關閉一個或兩個工作油口,無泄漏持續時間長,穩定性好。
油液從A到A1或B到B1自由流通,反向則被截止。如果油流通過閥,例
如從A到A1,壓力油作用在閥芯上,閥芯則向右運動并推動鋼球離開閥座。單向閥被控制油打開時,油可從B1到B流通。壓力在B1腔卸荷,單向閥全部開啟。為保證兩個主單向閥在換向閥中位時能可靠的關閉,閥的A、B口與回油路連接。
2.單向閥的主要故障
單向閥可能出現的主要的故障,是當油液從P2腔反向進入時,錐閥芯(或鋼球)不能將油液嚴格封閉而產生滲漏。這種滲漏現象更容易出現在反向流油的壓力比較低的情況。這時需要檢查閥芯錐面(或鋼球)與閥座的接觸是否緊密;或檢查閥座孔與閥芯孔是否保證所需要的同軸度要求,或者當閥座壓入閥體孔時有沒有壓歪。如不符合要求,則需將閥芯錐面(或鋼球)與閥座重新配研,或者將閥座拆出重新壓裝,直到與閥芯錐面(或鋼球)嚴密接觸為止。
另外單向閥的閥座或閥套與閥體間的密封裝配或拆裝時擠傷,而造成內部泄漏。
如果單向閥啟閉不靈活,這種閥芯有卡阻現象,則需檢查閥體孔與閥芯的加工幾何精度,以及二者的配合間隙是否符合要求。這種現象有可能出現于正向開啟壓力很小的單向閥,或者這種開啟壓力很小的單向閥是閥芯軸線沿水平方向安裝使用時的場合;另外,也應檢查彈簧是否斷裂或者過分彎曲而引起卡阻。這里應該注意的是,不論是直通型單向閥還是直角型單向閥,都不允許閥芯錐面向上安裝。
液壓機,以高壓液體(油、乳化液等)傳送工作壓力的鍛壓機械。液壓機的行程是可變的,能夠在任意位置發出大的工作力。液壓機工作平穩,沒有震動,容易達到較大的鍛造深度,適合于大鍛件的鍛造和大規格板料的拉深、打包和壓塊等工作。液壓機主要包括水壓機和油壓機。某些彎曲、矯正、剪切機械也屬于液壓機一類。
液壓機工作原理
利用帕斯卡定律制成的利用液體壓強傳動的機械,種類很多。當然,用途也根據需要是多種多樣的。如按傳遞壓強的液體種類來分,有油壓機和水壓機兩大類。水壓機產生的總壓力較大,常用于鍛造和沖壓。鍛造水壓機又分為模鍛水壓機和自由鍛水壓機兩種。模鍛水壓機要用模具,而自由鍛水壓機不用模具。
力士樂單向閥SL10PB1-4X/ R900443419
力士樂REXROTH液控單向閥SL 6
R901232640 SL6PA1-6X/
R900565317 SL6PA1-6X/SO310
R901232641 SL6PA1-6X/V
R901427400 SL6PA1-6X/VJ3
R901439613 SL6PA2-6X/
R901342139 SL6PA2-6X/J50
R901432052 SL6PA2-6X/VJ3
R901387396 SL6PA3-6X/
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R900491117 SL6PB1-6X/
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R900928043 SL6PB1-6X/JV
R900594742 SL6PB1-6X/V
R901361958 SL6PB1-6X=
R900590409 SL6PB2-6X/
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R900597726 SL6PB4-6X/
R901080403 SL6PB4-6X/JV
R900934694 SL6PB4-6X/V
力士樂REXROTH液控單向閥SL 10...32
R900483370 SL10GA1-4X/
R900483370 SL10GA1-42
R900448378 SL10GA1-4X//12
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R901363026 SL10GA2-4X=
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R901406522 SL10PA1-4X=VJ50
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R900599586 SL20PB1-4X/
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R900564927 SL30PB3-4X/V
R900513491 SL30PB4-4X/
R900212472 SL30PB4-4X/V
力士樂REXROTH整流板
R900452416 Z4S16-2X/
R900475218 Z4S16-2X/V
R900425901 Z4S16-2X/
R900427059 Z4S16-2X/J
R900427362 Z4S16-2X/V
R900452416 Z4S16-20/
R900475218 Z4S16-20/V
R900425901 Z4S16-20/
R900427059 Z4S16-20/J
R900427362 Z4S16-20/V
R900423359 Z4S10-1X/
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R900413377 Z4S10-2X/
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R900514779 Z4S10-3X/
R900514780 Z4S10-3X/J
R900514781 Z4S10-3X/V
R900490756 Z4S6-1X/
R900538004 Z4S6-1X/J3V
R900489356 Z4S6-1X/V
液壓泵控制系統
力士樂挖掘機液壓泵控制系統有不同的配置,具有不同的控制功能。
恒功率閥和杠桿式恒功率裝置
恒功率閥是二位三通閥。在彈簧力作用下,恒功率閥處于右位,下油缸壓力油通過恒功率閥回油,在上油缸腔內油壓和彈簧作用下油泵向大流量方向擺動。油泵壓力油通過上油缸腔作用在頂桿上,頂桿頂推杠桿使杠桿繞支點擺動,推動A閥向右移動,使恒功率閥處于左位,油泵壓力油通過恒功率閥經閥進入下油缸,推動其活塞桿,克服上油缸液壓力并壓縮彈簧使油泵向小流量方向擺動。同時由于上油缸活塞桿右移,頂.桿頂推杠桿的力臂減小,使杠桿推A閥的力下降,直至與A閥彈簧力相等,油泵擺角處于新的平衡位置。
這種恒功率裝置通過杠桿機構來實現,只要杠桿系統設計得好,就能實現很理想的恒功率曲線。
油泵流量調節閥為二位三通閥,閥的左端受泵的出口油壓Pp作用,閥的右端受多路閥負載敏感腔的油壓PLmax和彈簀力FS2作用,此閥的作用是設定系統的補償壓力。流量調節閥的作用是使系統壓差OP ( P -PLmax) 保持定值。OP由設計確定稱為系統的補償壓差,是系統各操縱閥的進口壓加P與出口壓力Pm ( = PLmax) 之差,各操縱閥在保持補償壓差一定條件下,通過改變閥桿的開口面積來控制去各液壓作用元件的流量。系統通過油泵流量調節,按司機操縱閥桿的開度大小,提供所需流量,而且只供給比負載稍高一點(△P)的油壓。避免了系統的流量損失和過大的壓力損失。當彈簧力和閥的受壓面積在設計時取定后,LRS 油泵控制系統是不變的,因此恒功率閥設定功率是不變的。油泵流量調節閥設定的補償壓力也是不變的,雖然可以停機通過調整彈簧來改變功率設定和補償壓力設定,但顯然是不方便和不理想的,但實際挖掘機工作中需要改變功率和改變補償壓力,這是LRS 系統的不足之處。
液壓傳動
與機械傳動相比。液壓傳動更容易實現其運動參數(流量)和動力參數(壓力)的控制,而液壓傳動較之液力傳動具有良好的低速負荷特性。由于具有傳遞效率高,可進行恒功率輸出控制,功率利用充分,系統結構簡單,輸出轉速無級調速,可正、反向運轉,速度剛性大,動作實現容易等突出優點,液壓傳動在工程機械中得到了廣泛的應用。幾乎所有工程機械裝備都能見到液壓技術的蹤跡,其中不少已成為主要的傳動和控制方式。極限負荷調節閉式回路,發動機轉速控制的恒壓,恒功率組合調節的變量系統開發,給液壓傳動應用于工程機械行走系提供了廣闊的發展前景。