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1、<p><b> 附錄C英文資料</b></p><p> Design and application of energy-saving pneumatic system </p><p> Pneumatic drive and control the production process automation and mechanizat
2、ion of the most effective means, but its working medium (air) and high manufacturing costs, energy efficiency, extremely low.</p><p> Pneumatic system used to improve the economy, has become the must attent
3、ion.On the pneumatic system, reducing gas consumption is the energy.Energy-saving pneumatic system from several aspects: </p><p> (1) improve the gas supply system, pneumatic system to solve the energy prob
4、lem, should improve the gas supply system, starting from the compressed air production, processing, transmission, distribution of the gas supply systemthorough consideration, taking comprehensive measures.Structure of di
5、fferent types of air compressors produce the same amount of compressed air, because of its efficiency vary, there are differences in energy consumption.Speed type of turbine air compressor's efficiency is</p>
6、<p> (2) using gas - electric or gas - liquid composite transmission control systems for energy-saving technology since the rapid development of microelectronics, computer applications have entered the field of pne
7、umatic control technology.Used to control the pneumatic actuator, pneumatic components by the general composition of complex pneumatic logic control circuit, now may be a computer or programmable logic controller to repl
8、ace.As long as the procedures for the preparation of various pneumatic </p><p> (3) development of energy-saving pneumatic components pneumatic energy development component, available from the following asp
9、ects: to reduce leakage, reduce energy consumption.Development of anti-leakage, good wear resistance, no to oil seals soft material.Development of low-power pneumatic components, reduce energy consumption.Adopts the oil
10、lubrication, oil consumption to reduce environmental pollution.No to oil lubrication system is a pneumatic filter, regulator why not lubricating the valve</p><p> (4) rational design of pneumatic systems, m
11、erit selection and rational use of pneumatic components, pneumatic fluid to reduce gas consumption, pneumatic system dynamics theory and experimentation, the use of computer simulation technology to optimize the design o
12、f the pneumatic system, merit selectionbest parameters.For example, the nominal diameter of the cylinder is based on common ratio of geometric progression of 1.25 points files, such as the expansion of the cylinder diame
13、ter of a random g</p><p> (5) in the pneumatic system with different working pressure pneumatic system is one of the important energy-saving way to different parts of the system under different circumstance
14、s with different working pressure.For example, the supply of high pressure gas source pressure transmission system, pneumatic control systems on the supply of low-pressure gas source; in the cylinder to overcome the exte
15、rnal load of the working stroke high-pressure gas supply source, no external load supply of low pres</p><p><b> 附錄D英文資料翻譯</b></p><p> 氣動(dòng)系統(tǒng)節(jié)能設(shè)計(jì)及應(yīng)用</p><p> 氣壓傳動(dòng)和控制是生產(chǎn)過(guò)程
16、自動(dòng)化和機(jī)械化的最有效手段之一,但其工作介質(zhì)(壓縮空氣)的制造成本高,能量的利用率又相當(dāng)?shù)汀L岣邭鈩?dòng)系統(tǒng)使用的經(jīng)濟(jì)性,已成為當(dāng)前應(yīng)該重視的問(wèn)題。 對(duì)氣動(dòng)系統(tǒng)來(lái)說(shuō),減少耗氣量就是節(jié)能。氣動(dòng)系統(tǒng)的節(jié)能可以從幾個(gè)方面著手: (1)完善氣源系統(tǒng) 要解決氣動(dòng)系統(tǒng)的節(jié)能問(wèn)題,應(yīng)從完善氣源系統(tǒng)入手,即從壓縮空氣的生產(chǎn)、處理、輸送、分配的整個(gè)氣源系統(tǒng)全盤(pán)考慮,采取綜合措施。結(jié)構(gòu)型式不同的空氣壓縮機(jī)生產(chǎn)同樣多的壓縮空氣,由于其效率不一
17、,消耗的能量就有差異。速度型的透平式空壓機(jī)的效率低,如把10m3自由空氣壓縮成0.6MPa的壓縮空氣,由排量為1000 m3/h的透平式空壓機(jī)生產(chǎn),耗能1.77kW?h。而生產(chǎn)同樣數(shù)量和壓力的壓縮空氣,如用同樣排量的活塞式空壓機(jī)生產(chǎn),僅耗能0.83kW?h。因此,從節(jié)能角度出發(fā),空壓機(jī)的節(jié)能與空壓機(jī)的結(jié)構(gòu)型式有關(guān)。在選擇空壓機(jī)時(shí),采用具有完善級(jí)間冷卻的多極壓縮機(jī)可節(jié)省能量、提高效率。例如二級(jí)壓縮比單級(jí)壓縮節(jié)能15%以上,三級(jí)壓縮比二級(jí)
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