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液壓控制閥,
一、液壓控制閥的分類
1.概述
在液壓系統中,用于控制和調節工作壓力的高低、流量大小以及改變流量方向的元件統稱為液壓控制閥。液壓控制閥通過對工作液體的壓力、流量以及流液方向的控制與調節,從而可以控制液壓執行元件的開啟、停止和換向,調節其運動速度和輸出扭矩(或力)
2.液壓控制閥的分類 .
2.1按功能分類
(1)壓力控制閥用于控制或調節液壓系統或回路壓力的閥, 如溢流閥、減壓閥、順序閥壓力繼電器等;
(2)方向控制閥用于控制或調節液壓系統或回路中方向及其通和斷,從而控制執行元件的運動方向及其啟動、停止的閥。如單向閥、換向閥等;
(3)流量控制閥用于控制或調節液壓系統或回路中工作液體流量大小的閥。如節流閥、調速閥、分集流閥等
2.2按閥的控制方式分類
液壓控制閥按控制方式可分為:
(1)開關(或定值)控制閥:借助于通斷型電磁鐵及手動、機動、液動等方式,將閥芯位置或閥芯上的彈簧設定在某一工作狀態 ,使液流的壓力、流量或流向保持不變的閥。這類閥屬于常見的普通液壓閥
(2)比例控制閥:采用比例電磁鐵(或力矩馬達)將輸入信號轉換成力或閥的機械位移,使閥的輸出(壓力、流量)也按照其輸入量連續、成比例地進行控制的閥,比例控制閥一般屬于開環控制閥, 現在也很多用在閉環系統中。
(3)伺服控制閥:其輸入信號(電量、機械量)多為偏差信號(輸入信號與反饋信號的差值),閥的輸出量( 壓力、流量)也按照其輸入量連續、成比例地進行控制的閥。這類閥的工作性能類似于比例控制閥,但具有較高的動態瞬應和靜態性能,多用于要求較高的、響應快的閉環液壓控制系統。
(4)數字控制閥:用于數字信息直接控制的閥類。
二、壓力控制閥
壓力控制閥(簡稱壓力閥)是用來控制液壓傳動系統或氣壓傳動系統中流體壓力的一種控制閥。
常用的壓力閥有:溢流閥、減壓閥、順序閥和壓力繼電器等。
大型鋼廠現場采用的壓力控制閥種類很多, 如:減壓溢流閥、比例減壓閥、先導式溢流閥、直動式溢流閥、溢流閥、電磁溢流閥、板式減壓閥、減壓閥、比例減壓溢流閥、壓力補償器。
針對具有代表性的,現場易出故障的壓力控制閥的工作原理和結構進行分析。
1、DR型先導式減壓閥
1.結構分析
其組成主要包括帶主閥插件(3)的主閥(1)和帶壓力調節組件的先導閥(2)。在靜態位置,閥常開,油液可自由地從油口B經主閥芯插件(3)進入油口A。油口A的壓力作用于主閥芯的底側。同時作用于先導閥(2)中的球閥(6)上, 經節流孔(4)作用于主閥芯(3)的彈簧加載側,并且流經油口(5)。
同樣,壓力經節流孔(7)、控制油路(8)、單向閥(9)和節流孔(10)作用于球閥(6)上。根據彈簧(11)的設定,在球閥(6)前部、油口(5)中和彈簧腔(12)內建壓,保持控制活塞(13)處于開啟位置。
油液可自由地從油口B經主閥芯插件(3)流入油口A,直至油口A的壓力超過彈簧(11)的設定值,并打開球閥(6)、控制活塞(13)移至關閉位置。
當油口A的壓力與彈簧設定壓力之間達到平衡時, 獲得期望的減壓壓力。控制油經控制油路(15)由外部從彈簧腔(14)泄回油箱。通過安裝一個可選的單向閥 (16)可實現從油口A至B的自由返回流動。壓力表接口(17)用于油口A的減壓壓力監測。
2、3DR型先導式減壓閥
1.結構分析
3DR型減壓閥是三通先導式減壓閥,起到減壓溢流作用。
減壓閥主要包括帶控制閥芯(2)的主閥(1) 和帶調壓裝置(10)的先導控制閥(3)。在靜態位置,閥常開,油液可自由地從油口P經主閥芯(2)進入油口A。油口A的壓力通過孔(4)作用于主閥芯的右側壓縮彈簧。同時通過節流孔(6)作用于主閥(2)的彈簧一側(6)上 ,經通道(5)作用于先導球閥(7)。
根據彈簧(11)的設定,在球閥(7)之前和通道(5)中建壓,保持控制閥芯(2)處于開啟位置。油液可自由地從油口P經主閥芯流入油口A ,直至油口A的壓力超過彈簧(11)的設定值,并打開球閥(7)
當油口A的壓力與彈簧設定壓力之間達到平衡時,獲得期望的減壓壓力。
如果油口A的壓力在外力的作用下繼續升高, 主閥芯(2)繼續壓向彈簧(9),這樣油口A通過腔(8)與油口T相連,多余的壓力油泄回油箱,從而確保減壓壓力不變。
先導油的回油必須外泄到Y口, Y口油液要無背壓自由回油箱。
壓力表連接(14)用于油口A的減壓壓力監測。
3、DB/DBW型先導式溢流閥
1.結構分析
DB和DBW型壓力控制閥是先導式溢流閥。它們用于限制( DB型),或用電磁鐵限制及卸荷系統壓力( DBW型)
該溢流閥(DB型)的組成主要包括帶主閥芯插件(3)的主閥(1)和帶壓力調節組件的先導閥(2 ) DB型溢流閥油路A中的壓力作用于主閥芯( 3 )上。同時,壓力經帶節流孔(4)和(5 )的控制通路(6 )和( 7 ),作用在主閥芯( 3 )的彈簧加載側及先導閥(2)的球(8)上。
如果A口的壓力超過彈簧(9)的設定值,球(8)克服彈簧力(9)而使先導閥開啟。該信號經控制信道( 10 )和(6 )從A口內部獲取。主閥芯(3 )彈簧加載側的油液經過控制通路(7 )節流孔(11 )和球閥(8 )流入彈簧腔( 12)對DB..5*/.- .型它由控制通路( 13 )內部引入油箱, 而對DB.. 5...型經控制通路( 14 )它由外部弓入油箱。節流孔(4 )和(5 )在主閥芯(3 )兩端產生壓降,因此A到B連接通道被打開。油液由A口流向B口,而設定工作壓力保持不變。
溢流閥借助油口X ( 15 )可對不同壓力(二級壓力)卸荷或切換。
4、ZDR 6 D型減壓閥
1.結構分析
ZDR 6 D型減壓閥是疊加式結構三通直動式減壓閥,它對次級回路有減壓功能。用于系統壓力減壓。
其組成主要包括閥體( 1 )控制閥芯( 2 )壓縮彈簧( 3 )和調節組件(4 )以及可選單向閥。由調節組件( 4)設定二次壓力。DA型在靜態位置,該閥常開, 油液可自由地從油口A1流向油口A2。油口A2壓力經控制油路( 5 )同時作用于壓縮彈簧對面的活塞面積上。當油口A2的壓力超過彈簧(3 )設定值時, 控制閥芯(2 )移至控制位置,油口A2的壓力保持穩定。
信號和控制油經控制油道( 5 )從油口A2內部提供。如果油口A2的壓力由于外力作用于執行器而繼續升高,閥芯就繼續向壓縮彈簧(3 )方向移動。這樣油口A2經控制活塞(2)上的臺肩(9 )與油箱連通。足夠的油液流回油箱,以防止壓力進一-步升高。彈簧腔(7 )經孔(6 )至油口T ( Y )由外部泄油至油箱。
壓力表接口(8 )用于閥的二次壓力監測。
REXROTH插裝式單向閥M-SR15KE30-1X/ R900346082
力士樂REXROTH插裝式單向閥M-SR 6...30
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力士樂REXROTH止回閥安裝裝置M-SR 52...150
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力士樂REXROTH疊加式液控單向閥Z2S 6
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R900372840 Z2S6-1-6X/VSO481
R901374869 Z2S6-1-6X/V/60
R901429695 Z2S6-1-6X/V/60J3
R900747681 Z2S6-1-6X/V/62
R901426712 Z2S6-1-6X/VJ3
R900072644 Z2S6-1-6X=
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R900913720 Z2S6-1-6X=SO450=PL
R901408551 Z2S6-1-6X=V/60
R987163885 Z2S6-1-64STAMPEDFV2225050
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R900347504 Z2S6-1-64/V
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R901374869 Z2S6-1-64/V/60
R901429695 Z2S6-1-64/V/60J3
R900747681 Z2S6-1-64/V/62
R901426712 Z2S6-1-64/VJ3
R900072644 Z2S6-1-64=
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R901286325 Z2S6A2-6X/VJ50
R901030539 Z2S6A2-6X/XCV
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R900347501 Z2S6B1-6X/
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R901437169 Z2S6B1-6X/SO150
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R983030688 Z2S6-2-6XIN010
R983030694 Z2S6-2-6X/VIN010
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R983030695 Z2S6-B1-6X/VIN010
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力士樂REXROTH疊加式液控單向閥Z2S 10
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R900516212 Z2S10A4-3X/
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R900436800 Z2S10B3-3X/
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R900439705 Z2S10B3-3X/V
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力士樂疊加式液壓鎖單向閥Z2S 16
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R901417166 Z2S16-1-5X/VJ3
R901299705 Z2S16-1-5X/VJ50
R900072647 Z2S16-1-5X=
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R900412346 Z2S16-3-5X/
R900412893 Z2S16-3-5X/V
R900442636 Z2S16-4-5X/
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R900328798 Z2S16A1-5X/
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R900477274 Z2S16B2-5X/
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R900422295 Z2S16B3-5X/
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R900539653 Z2S16B4-5X/
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R971893714 Z2S16-1-5X/
R971893715 Z2S16-2-5X/
R971893710 Z2S16A1-5X/
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R971893711 Z2S16B1-5X/
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R971893713 Z2S16B2-5X/
R900328797 Z2S16-1-51/
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R900072647 Z2S16-1-5X=
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R900508670 Z2S16-4-51/V
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R900427329 Z2S16A2-51/V
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R900085134 Z2S16A3-51/V
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R900477274 Z2S16B2-51/
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R900422295 Z2S16B3-51/
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R971893715 Z2S16-2-51/
R971893710 Z2S16A1-51/
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R971893711 Z2S16B1-51/
R971893712 Z2S16B1-51/V
R971893713 Z2S16B2-51/
力士樂疊加式液壓鎖單向閥Z2S 22
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R900539017 Z2S22A1-5X/SO21
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R900457907 Z2S22A2-5X/
R900589414 Z2S22A2-5X/V
R900507469 Z2S22A3-5X/
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R900522102 Z2S22A4-5X/
R900433037 Z2S22B1-5X/
R900533752 Z2S22B1-5X/V
R901017619 Z2S22B1-5X/VSO60
R900072796 Z2S22B1-5X=
R900437818 Z2S22B2-5X/
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R900528638 Z2S22B3-5X/
R900509911 Z2S22B4-5X/
R900432915 Z2S22-1-5X/
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R900072795 Z2S22-1-5X=
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R900439719 Z2S22-3-5X/
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力士樂REXROTH單向閥,先導式Z2S 32
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力士樂REXROTH液控單向閥SV 6
R901320289 SV6PA1-6X/
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R901407741 SV6PA2-6X/
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R900586840 SV6PB4-6X/
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力士樂液控單向閥SV 10...32
R900483368 SV10GA1-4X/
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R900426680 SV10GA1-4X//5
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R900477368 SV10GA2-4X/V/12
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R900519481 SV10GA3-4X/J
R900032320 SV10GA3-4X/V
R900596177 SV10GA4-4X/
R978905884 SV10GA4-4X/12
R900511928 SV10GA4-4X/SO287
R900509845 SV10GA4-4X/V
R983073301 SV10GA4-4X/VIN010
R983070087 SV10GB2-4X/IN010
R900453511 SV10GB1-4X/
R900426646 SV10GB1-4X//12
R900522959 SV10GB1-4X/J
R900440206 SV10GB1-4X/SO267
R900428704 SV10GB1-4X/SO43
R900442169 SV10GB1-4X/V
R978856677 SV10GB1-4X/V/12
R901328265 SV10GB1-4X=
R900464954 SV10GB2-4X/
R978867297 SV10GB2-4X/12
R978867297 SV10GB2-4X/12
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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。
一、液壓傳動技術的應用
液壓傳動技術在近代工業制造中的應用
液壓傳動有許多突出的優點,因此它的應用非常廣泛,如一般工業用的塑料加工機械、壓力機械、機床等,行走機械中的工程機械、建筑機械、農業機械、汽車等;鋼鐵工業用的冶金機械、提升裝置、軋輥調整裝置等;土木水利工程用的防洪閘門及堤壩裝置、河床升降裝置、橋梁操縱機構等,發電廠渦輪機調速裝置、發電廠等等。
二、液壓傳動技術的原理與特點
1、液壓傳動的介紹
液壓傳動是用液體作為工作介質來傳遞能量和進行控制的傳動方式。液壓傳動和氣壓傳動并稱為流體傳動,是根據17世紀帕斯卡提出的液體靜壓力傳動原理而發展起來的一門新興技術,是工農業生產中應用廣泛的技術。
2、液壓傳動的優點
(1)體積小、重量輕,因此慣性力較小,當突然過載或停車時,不會發生大的沖擊,
(2)能在給定范圍內平穩的自動調節牽引速度,并可實現無極調速;
(3)換向容易,在不改變電機旋轉方向的情況下,可以較方便地實現工作機構旋轉和直線往復運動的轉換;
(4)液壓泵和液壓馬達之間用油管連接,在空間布置上彼此不受嚴格限制;
(5) 由于采用油液為工作介質,元件相對運動表面間能自行潤滑,磨損小,使用壽命長;
(6)操縱控制簡便,自動化程度高;
(7)容易實現過載保護。
液壓傳動有許多突出的優點,因此它的應用非常廣泛,如一般工業用的塑料加工機械、壓力機械、機床等,行走機械中的工程機械、建筑機械、農業機械、汽車等,鋼鐵工業用的冶金機械、提升裝置、軋輥調整裝置等,土木水利工程用的防洪閘門及堤壩裝置、河床升降裝置、橋粱操縱機構等;發電廠渦輪機調速裝置等等,船舶用的甲板起重機械、船頭門、艙壁閥、船尾推進器等,特殊技術用的控制裝置、測量浮標、升降旋轉舞臺等。
3、液壓傳動的基本原理
液壓傳動的基本原理是在密閉的容器內,利用有壓力的油液作為工作介質來實現能量轉換和傳遞動力的。其中的液體稱為工作介質,一般為礦物油,它的作用和機械傳動中的皮帶、鏈條和齒輪等傳動元件相類似。液壓傳動是利用帕斯卡原理!帕斯卡原理是大概就是:在密閉環境中,向液體施加一個力,這個液體會向各個方向傳遞這個力!力的大小不變!液壓傳動就是利用這個物理性質,向一個物體施加一個力,利用帕斯卡原理使這個力變大!從而起到舉起重物的效果!
液壓傳動在閥門行業也得到很大的應用,如閥門的機床制造加工設備、閥門]液壓試驗設備、閥門的液壓傳動裝置等。
三、液壓傳動系統的組成
1、液壓動力原件
將動力裝置的機械能轉換成為液壓能的裝置,其作用是為液壓傳動系統提供壓力油,是液壓傳動系統的動力源。例如液壓泵。
1.1液壓泵
液壓泵是液壓系統的動力元件,其作用是將原動機的機械能轉換成液體的壓力能,指液壓系統中的油泵,它向整個液壓系統提供動力。液壓泵的結構形式一般有齒輪泵、葉片泵和柱塞泵。
1.2齒輪泵
齒輪泵即依靠密封在個殼體中的兩個或兩個以上齒輪,在相互嚙合過程中所產生的工作空間容積變化來輸送液體的泵。齒輪泵的概念是很簡單的,即它的基本形式就是兩個尺寸相同的齒輪在一個緊密配合的殼體內相互嚙合旋轉,這個殼體的內部類似“8”字形,兩個齒輪裝在里面,齒輪的外徑及兩側與殼體緊密配合。來自于擠出機的物料在吸入口進入兩個齒輪中間,并充滿這一空間,隨著齒的旋轉沿殼體運動,*后在兩齒嚙合時排出。困油現象齒輪泵要平穩工作,齒輪嚙合的重合度必須大于1, 于是總有兩對齒輪同時嚙合, :并有一部分油液被圍困在兩對輪齒所圍成的封閉容腔之間。這個封閉的容腔開始隨著
齒輪的轉動逐漸減小,以后又逐漸加大。封閉腔容積的減小會使被困油液受擠壓而產生很高的壓力,并且從縫隙中擠出,導致油液發熱,并致使機件受到額外的負載,而封閉腔容積的增大又造成局部真空,使油液中溶解的氣體分離,產生氣穴現象。這些都將產生強烈的振動和噪音,這就是齒輪泵的困意現象。
危害:徑向不平衡力很大時能使軸彎曲,齒頂與殼體接觸,同時加速軸承的磨損,降低軸承的壽命。
消除困油現象方法:通常是在兩側蓋板上開卸荷槽,使封閉腔容積誠小時通過左邊的卸荷槽與壓油腔相通,容積增大時通過右邊的卸荷槽與吸油腔相通。
1.3葉片泵
葉片泵即通過葉輪的旋轉,將動力機的機械能轉換為水能(勢能、動能、壓能)的水力機械。
葉片泵轉子旋轉時,葉片在離心力和壓力油的作用下,尖部緊貼在定子內表面上。這樣兩個葉片與轉子和定子內表面所構成的工作容積,先由小到大吸油后再由大到小排油,葉片旋轉一周時,完成兩次吸油與排油。
1.4柱塞泵
柱塞泵即利用柱塞在泵缸體內往復運動,使柱塞與泵壁間形成容積改變,反復吸入和排;出液體并增高其壓力的泵。
柱塞泵是液壓系統的一個重要裝置。它依靠柱塞在缸體中往復運動,使密封工作容腔的容積發生變化來實現吸油、壓油。柱塞泵具有額定壓力高、結構緊湊、效率高和流量調節方便等優點,被廣泛應用于高壓、大流量和流量需要調節的場合,諸如液壓機、工程機械和船舶中。
2、液壓執行元件
將液壓能轉換為機械能的裝置,其作用是在壓力油的推動下輸出力和速度或轉矩和速度,以驅動工作裝置做工。例如液壓缸、液壓馬達。
2.1液壓馬達
液壓馬達習慣上是指輸出旋轉運動的,將液壓泵提供的液壓能轉變為機械能的能量轉換裝置。
液壓馬達亦稱為油馬達,主要應用于注塑機械、船舶、起揚機、工程機械、建筑機械、煤礦機械、礦山機械、冶金機械、船舶機械、石油化工、港口機械等。
高速馬達齒輪馬達具有體積小、重量輕、結構簡單、工藝性好、對油液的污染不敏感、耐沖擊和慣性小等優點。缺點有扭矩脈動較大、效率較低、起動扭矩較小(僅為額定扭矩的60%-一70%)和低速穩定性差等。
2.2液壓缸
液壓缸是將液壓能轉變為機械能的、做直線往復運動(或擺動運動)的液壓執行元件。它結構簡單、工作可靠。用它來實現往復運動時,可免去減速裝置,并且沒有傳動間隙,運動平穩,因此在各種機械的液壓系統中得到廣泛應用。液壓缸輸出力和活塞有效面積及其兩邊的壓差成正比;液壓缸基本上由缸筒和缸蓋、活塞和活塞桿、密封裝置、緩神裝置與排氣裝置組成。緩神裝置與排氣裝置視具體應用場合而定,其他裝置則必不可少。
3.3液壓控制調節元件
用來控制液壓傳動系統中油液的流動方向、壓力和流量,以保證液壓執行元件和工作裝置完成指定工作。
液壓傳動中用來控制液體壓力、流量和方向的元件。其中控制壓力的稱為壓力控制閥,控制流量的稱為流量控制閥,控制通、斷和流向的稱為方向控制閥。
3.4液壓輔助元件
保證液壓傳動系統正常工作。例如油箱、油管、濾油器。
液壓輔件是系統的一一個重要組成部分,其合理設計和選用在很大程度上影響液壓系統的效率、噪聲、溫升、工作可靠性等技術性能。主要包括:
3.4.1過濾器
過濾器的作用:濾去油中雜質,維護油液清潔,防止油液污染,保證系統正常工作。
3.4.2蓄能器
蓄能器的作用:
蓄能器是液壓系統中儲存和釋放壓力能的裝置。
1.作輔助動力源或緊急動力源在工作循環不同階段需要的流量變化很大時,常采用蓄能器和一個流量較小的泵組成油源。另外當驅動泵的原動機發生故障時,蓄能器可作緊急動力源。
2.保壓和補充泄漏需要較長時間保壓而泵卸載時,可利用蓄能器釋放儲存的壓力油,補充系統泄漏,保持系統壓力。
3.吸收沖擊和消除壓力脈動在壓力沖擊處和泵的出口安裝蓄能器可吸收壓力沖擊峰值和壓力脈動,提高系統工作的平穩性。
3.4.3油箱
油箱是液壓系統中儲存液壓油用。
油箱的功用:
儲存系統所需的足夠油液;;
散發油液中的熱量;
逸出溶解在油液中的空氣; :
沉淀油液中的污物;
對中小型液壓系統,泵裝置及一些液壓元件還安裝在油箱頂板上。
3.4.4熱交換器
系統能量損失轉換為熱量以后,會使油液溫度升高。若長時間油溫過高,油液粘度下降,泄漏增加,密封老化,油液氧化,嚴重影響系統正常工作。為保證正常工作溫度在20~65C,需要在系統中安裝冷卻器。相反,油溫過低,油液粘度過大,設備啟動困難,壓力損失加大并引起過大的振動。此種情況下系統應安裝加熱器,將油液溫度升高到適合的溫度。
3.4.5管件
管件是用來連接液壓元件、輸送液壓油液的連接件。它應保證有足夠的強度,沒有泄漏,密封性能好,壓力損失小,拆裝方便。
3.4.6密封裝置
密封裝置用來防止系統油液的內外泄漏,以及外界灰塵和異物的侵入,保證系統建立必要壓力。
3.5液壓工作介質
工作介質指傳動液體,通常被稱為液壓油。
3.5.1液壓油
液壓油引就是利用液體壓力能的液壓系統使用的液壓介質,在液壓系統中起著能量傳遞、系統潤滑、防腐、防銹、冷卻等作用。對于液壓油來說,首先應滿足液壓裝置在工作溫度下與啟動溫度下對液體粘度的要求,由于油的粘度變化直接與液壓動作、傳遞效率和傳遞精度有關,還要求油的粘溫性能和剪切安定性應滿足不同用途所提出的各種需求。
3.5.2液壓油的要求
質量要求:
1.合適的粘 度和良好的粘溫性能,以保證液壓元件在工作壓力和工作溫度發生變化的條件下得到良好潤滑、冷卻和密封。
2.良好的極壓抗磨性, 以保證油泵、液壓馬達、控制閥和油缸中的摩擦副在高壓、高速苛刻條件下得到正常的潤滑,減少磨損。
3.優良的抗氧化安定性、水解安定性和熱穩定性,以抵抗空氣、水分和高溫、高壓等因素的影響或作用,使其不易老化變質,延長使用壽命。
4.良好的抗泡性 和空氣釋放值,以保證在運轉中受到機械劇烈攪拌的條件下產生的泡沫能迅速消失:并能將混入油中的空氣在較短時間內釋放出來,以實現準確、靈敏、平穩地傳遞靜壓。
5.良好的抗乳化性, 能與混入油中的水分迅速分離,以免形成乳化液,引起液壓系統的金屬材質銹蝕和降低使用性能。
6.良好的防銹性,以防止金屬表面銹蝕。