999精品在线视频,手机成人午夜在线视频,久久不卡国产精品无码,中日无码在线观看,成人av手机在线观看,日韩精品亚洲一区中文字幕,亚洲av无码人妻,四虎国产在线观看 ?

Study on energy-saving composite cylinder hydraulic lifting system*

2014-03-09 03:32:04LujunZHANGZhijiangLINSchoolofElectromechanicalAutomobileEngineeringYantaiUniversityYantai264005China
機床與液壓 2014年18期
關鍵詞:系統

Lu-jun ZHANG,Zhi-jiang LIN School of Electromechanical Automobile Engineering,Yantai University,Yantai264005,China;

2 Key Laboratory of Advanced Manufacturing and Control Technology in Universities of Shandong,Yantai 264005,China;

3Wendeng Agricultural Machinery Service Station,Wendeng 264400,China

Study on energy-saving composite cylinder hydraulic lifting system*

Lu-jun ZHANG?1,2,Zhi-jiang LIN31School of Electromechanical Automobile Engineering,Yantai University,Yantai264005,China;

2Key Laboratory of Advanced Manufacturing and Control Technology in Universities of Shandong,Yantai 264005,China;

3Wendeng Agricultural Machinery Service Station,Wendeng 264400,China

The construction machines,such as the crane,hydraulic grab and etc.,utilize the hydraulic lifting system.The conventionalhydraulic lifting system usually can not recover the potentialenergy of the heavy object.In order to avoid the object falling too fast,a throttle valve is set in the oil circuit to lim it the falling velocity of the object.Therefore,the potential energy w ill be converted into the thermal energy,which not only brings the energy loss and also could cause some therm al prob lem s.In order to avoid the loss of energy,an energy-saving composite cylinder hydraulic lifting system is designed.This paper presents the basic structure and working theory of this new hydraulic lifting system.By utilizing composite cylinder with special structure combined with accumulator,this system can lim it the lowering velocity of heavy object and also could recover the potentialenergy of the objectbeing lowered.Thus,this system has remarkable effect of energy-saving.The parameters of the accumulator used in this system are determ ined.The mathematicalmodelof lifting condition is proposed,and the simulation analysis o f lifting condition is conducted as well.

Com posite cylinder,Accumu lator,Energy-saving,Hydraulic lifting system,Potential energy recovery

* Project supported by Technological Development Planning Fund of Shandong Province(2013YD03058)

? Lu-jun ZHANG,PhD.E-mail:zlj6910@163.com

1.Introduction

Lots of engineering construction machines,such as the crane,hydraulic grab,hydraulic elevator and hydraulic pumping units,have the hydraulic lifting system[1-4].The hydraulic lifting system lifts and lowers the heavy object continually.When lifting the heavy object to a high position,the system will store large amount of potential energy.However,when lowering the heavy object down,the potential energy will be released.The conventional hydraulic lifting system can not recover this kind of potential energy.In order to avoid the object falling too fast,a throttle valve is usually adopted in the oil circuit to limit the falling velocity.Therefore,the potential energy will be converted into the thermal energy,which will not only lead to the energy loss and also causes the thermal problems[5-6].In order to avoid the loss of energy,an energy-saving composite cylinder hydraulic lifting system is designed.By utilizing the composite cylinder with special structure combined with accumulator,this new hydraulic lifting system not only could limit the lowering velocity of heavy object,but also could recover the potential energy of the lowered object.Therefore,this system has remarkable characteristics of energy-saving.

2.Basic structure of the energy-saving com posite cylinder hydraulic lifting system

The two types of composite cylinder for hydraulic lifting systems are shown in Figure1 and Figure 2,respectively.As shown in Figure1,the composite cylinderⅠis composed of one piston cylinder and one plunger cylinder.The large piston rod of the piston cylinder is adopted to lift the heavy object,and the small piston rod of the piston cylinder is also used as the plunger of the plunger cylinder.Thus,the composite cylinder Ⅰis divided into three chambers(i.e.,Q1,Q2,and Q3),whose acting areas are notequal.As shown in Figure 2,the composite cylinderⅡis also composed of one piston cylinder and one plunger cylinder,but the combining type of the piston cylinder and plunger cylinder is not the same.The plunger of the plunger cylinder is also used as the cylinder of the piston cylinder,however,the piston rod of the piston cylinder is fixed on the base of the plunger cylinder.Thus,the composite cylinderⅠ is also divided into three chambers(i.e.,Q1,Q2,and Q3),whose acting areas are not equal either.For the above hydraulic lifting systems based on two types of composite cylinder,the oil inlet of Q1 chamber is connected to the accumulator,and the oil inlets of Q2 chamber and Q3 chamber are connected to two oil inlets of the directional valve 6,respectively.Through the direction-changing of the directional valve 6,Q2 chamber and Q3 chamber are connected to high pressure oil and low pressure oil alternately.The relief valve 2 plays the function as safeguard,and when the oil pressure in the system surpasses the setting value,this valve will open and overflow the oil.The reducing valve 4 controls theminimum pressure of the circuit of Q1 chamber-accumulator,and the circuit of the Q1 chamber-accumulator is supplemented the oil through this valve.The relief valve 3 controls the maximum pressure of the circuit of the Q1 chamber-accumulator,and thus makes the pressure of this circuit in a certain range.

3.Working princip le of the energy-saving composite cylinder hydraulic lifting system

Because the working principle of two types of composite cylinder hydraulic lifting system is similar,the following will take the hydraulic lifting system based on the composite cylinderⅠas an example to conduct the analysis.

When lifting the heavy object at the first time,the directional valve 6 is setat the right position.The oil pump supplies the oil to Q2 chamber,and the oil in Q3 chamber will flow back to the oil tank.At this moment,since the accumulator is not charged into the oil,the circuit of the Q1 chamber-accumulator is in low pressure state,and the reducing valve 4 opens.Thus,the oil pump also supplies the oil to Q1 chamber as well,and the large piston rod 8 will go up to lift the heavy object.

During the process of lowering the heavy object,the directional valve 6 is set at the left position.The oil pump supplies oil to Q3 chamber,and the oil in Q2 chamber will return to the oil tank.Due to the weight of heavy object and the oil pressure,the large piston rod 8 will go down.The oil in the Q1 chamber will be discharged into the accumulator,and the air in the accumulator is compressed and the energy is stored.At the same time,because of the action of the accumulator,the oil in the Q1 chamber keeps a certain pressure and gives the system a balancing resistance,thus prevents the heavy object from falling too fast.

When lifting the heavy object again at next time,the directional valve 6 will be set at the right position.The oil pump supplies oil to Q2 chamber,and the oil in Q3 chamberwill return to the oil tank.At the same time,the accumulator releases the recovered energy from the last time to Q1 chamber,and this amount of energy togetherwith the pressure oil in Q2 chamberwill drive the large piston rod to go up to lift the heavy object.When the directional valve 6 is set at themiddle position,the heavy object can stop at any location.By adjusting the displacement of the variable pump 1,the speed of lifting and lowering the heavy object could be adjusted.

4.Determ ination of the parameters of the accumulator

The following condition must be satisfied during the lifting process of heavy object

Where,ppis the pump pressure,p1is the lowest pressure of the accumulator,A1and A2are the acting area of the oil pressure in Q1 and Q2 chamber,respectively,W is the weight of the heavy object.

If the pressure of ppis constant,the values of p1and A1could be determined by Eq.(1).After A1has been determined,the oil volumeΔV that the accumulator needs to supply could be evaluated as follows:

Where,s is the stroke of large piston rod in Figure 1 or plunge in Figure 2.

Figure 1.Hydraulic lifting system based on composite cylinderⅠ

Figure 2.Hydraulic lifting system based on composite cylinderⅡ

Where,p0isthe charging pressure of the accumulator,p2is the highest pressure of the accumulator.

Once the p1is determined,p0and p2could be obtained through the formula 0.9 p1> p0>0.25 p2.

5.Mathematicalmodel of lifting condition

In order to analyze the mathematical model of lifting condition,the pressure loss of oil through pipe and each directional valve will not be considered.According to Newton’s second law,the dynamic equation of lifting part could be obtained as follows:

Where,ppis the pump pressure;p is the pressure of the accumulator;A1and A2are the acting area of the oil pressure in Q1 and Q2 chamber,respectively;W is the weight of the heavy object;m is the weight of the heavy object;v is the velocity of the heavy object.

Because the accumulator could provide a large amount of pressure oil for the system in a short time,the volume of air in the accumulatorwill vary according to the adiabatic process,and then[7]

Where,piis the instantaneous pressure of the accumulator air,Viis the instantaneous volume of the accumulator air,p0is the accumulator air charging pressure,V0is the volume of the air bag.

If the inertia of air bag is not considered,then

When the lifting displacement of the heavy object is x,the instantaneous volume of the accumulator air could be evaluated as follows:

6.Simulation analysis of lifting condition

Eq.(9)is an nonlinear differential equation,and it could not be solved by analytical methods.Therefore,a program is designed to conduct the numerical simulation analysis.The known data are as follows:s=8 m,p0=10 MPa,pp=10 MPa,A1=0.005 m2,A2=0.005 m2,V0=0.069 m3.

Substitute these data into Eq.(9)and conduct the numerical integration by using Matlab,one could obtain the relationships between the heavy object lifting displacement x,lifting velocity v and the time t with differentweight of object W,which are shown in Figure 3 and Figure 4,respectively.From these two figures,it could be seen that during the lifting process of heavy object,the heavier the object,the lower the average lifting velocity is,and the longer the lifting time is.

Figure 3.Curves of the lifting displacement under W=70 kN,85 kN and 95 kN

Figure 4.Curves of the lifting velocity under W=70 kN,85 kN and 95 kN

7.Conclusion

By adopting the composite cylinder with special structure and accumulator,the energy-saving hydraulic lifting system can not only limit the lowering velocity of the heavy object and also could recover and reuse the potential energy of the heavy object.Therefore,this kind of lifting system could save energy remarkably.In addition,the system will work more smoothly by using the accumulator.This kind of energy-saving hydraulic lifting system could be widely used in lots of machinery with hydraulic lifting system.The mathematical model of lifting condition is deduced,and simulation analysis of lifting condition is conducted as well.

[1] Yang H,SunW,and Xu B.New investigation in energy regeneration of hydraulic elevators[J].IEEE/ASME Transactions on Mechatronics,2007,12(5):519 -526.

[2] Lin X,Guan C,Pei L,etal.Research on the system of arm potential energy recovery in hybrid hydraulic excavators[j].Transaction of the Chinese Society for Agricultural Machinery,2009,40(4):96-101.

[3] Lin J,Xu B,Yang H.Study on energy-saving system of hydraulic elevators using pressure accumulators as power source[J].China Mechanical Engineering,2003,14(24):2081-2084.

[4] Lu Y,Yu Z,Wu g.Design principle of power recovery type hydraulic pumping units[J].China Petroleum Machinery,1995,23(2):42- 45.

[5] Moak R.New Hydraulic Lift Rig For Drilling and Workover,World oil,1996,217(7):41 -42.

[6] Zhang L.New energy-saving method of large hydraulic lifting and loweringmechanism[J].Machine Tool& Hydraulics,1993,3:169-170.

[7] Jiang J,Song J,Gao C.Hydraulic and Pneumatic Transmission[M].Beijing:Higher Education Press,2002.

節能組合油缸液壓升降系統研究*

張路軍?1,2,林治江3

1.煙臺大學機電汽車工程學院,山東煙臺 264005
2.山東省高校先進制造與控制技術重點實驗室,山東煙臺 264005
3.文登市農機技術推廣服務站,山東文登 264400

建筑機械如汽車起重機、液壓挖掘機等都采用了液壓升降系統。常規液壓升降系統不能回收重物下放的重力勢能,為避免超速下降,一般在下降的回油路中設置節流閥等限速元件。重力勢能被轉化成熱能,不僅造成很大的能量損失且使油液的發熱量增多。為避免這種能量浪費現象,設計了一種節能組合油缸液壓升降系統。介紹了這種液壓升降系統的基本結構和工作原理。該系統將特殊結構的組合油缸和蓄能器相結合,可以限制下降重物的速度,同時能回收利用重力勢能,節能效果顯著。確定了蓄能器的參數,推導出了起升工況數學模型,進行了起升工況仿真分析。

組合油缸;蓄能器;節能;液壓升降系統;勢能回收

TG502.32

10.3969/j.issn.1001-3881.2014.18.012

2014-05-01

猜你喜歡
系統
Smartflower POP 一體式光伏系統
工業設計(2022年8期)2022-09-09 07:43:20
WJ-700無人機系統
ZC系列無人機遙感系統
北京測繪(2020年12期)2020-12-29 01:33:58
基于PowerPC+FPGA顯示系統
基于UG的發射箱自動化虛擬裝配系統開發
半沸制皂系統(下)
FAO系統特有功能分析及互聯互通探討
連通與提升系統的最后一塊拼圖 Audiolab 傲立 M-DAC mini
一德系統 德行天下
PLC在多段調速系統中的應用
主站蜘蛛池模板: 国产精品美女免费视频大全| 丝袜无码一区二区三区| 激情六月丁香婷婷四房播| 亚洲中文在线看视频一区| 欧亚日韩Av| 亚洲日产2021三区在线| 国产精品午夜福利麻豆| 欧美一道本| 国产香蕉在线视频| 亚洲欧美色中文字幕| 日本欧美在线观看| 亚洲天堂免费| 欧美一区中文字幕| 亚洲中文字幕在线一区播放| 欧美激情福利| 亚洲男人的天堂网| 在线免费观看AV| 久久综合色天堂av| 中文纯内无码H| 国产精品欧美激情| 国产丰满大乳无码免费播放| 高清免费毛片| 亚洲三级片在线看| 亚洲国产中文精品va在线播放| 国产精品19p| 中文字幕色站| 欧美日韩中文字幕在线| 精品国产一区91在线| 欧美午夜一区| 五月丁香伊人啪啪手机免费观看| 国产人在线成免费视频| 欧美第一页在线| 国产成人高精品免费视频| 亚洲一区无码在线| 免费人欧美成又黄又爽的视频| 日本在线国产| 视频一本大道香蕉久在线播放 | 国产一区二区三区夜色| 91网址在线播放| 久久久久久久久久国产精品| 国产主播一区二区三区| 欧美不卡视频在线| 亚洲AV永久无码精品古装片| 国产成人乱无码视频| 3D动漫精品啪啪一区二区下载| 青青草原国产精品啪啪视频| 久久综合干| 尤物精品视频一区二区三区| 国产第一页屁屁影院| 亚洲无码免费黄色网址| 国产综合网站| 激情午夜婷婷| 精品国产免费观看| 国产精品福利导航| 欧美精品在线看| 2024av在线无码中文最新| 日韩在线播放中文字幕| 国产69精品久久| 狠狠色丁香婷婷综合| 永久天堂网Av| 日本成人不卡视频| a毛片在线播放| 欧美激情一区二区三区成人| 国产欧美日韩91| 青青青草国产| 免费欧美一级| 中文字幕调教一区二区视频| 97se亚洲综合在线| 99久久精品国产麻豆婷婷| 亚洲天堂首页| 青青草原偷拍视频| 国产尤物在线播放| 欧美视频在线不卡| 玩两个丰满老熟女久久网| 亚洲精品第一页不卡| 91九色最新地址| 国产精品成人观看视频国产| 亚洲区视频在线观看| 五月婷婷丁香综合| 国产美女一级毛片| 久久国产乱子| 制服丝袜一区|