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The polishing fluid is composed of Al2O3 micropowder with a grain diameter of 0.5-1.0 mum, coal oil, lard, plant oil and spindle oil, wherein Al2O3 micropowder is abradant, coal oil is solvent, the mixing liquid of lard, plant oil and spindle oil is as additive; and the polishing fluid is prepared by a mixing liquid which is composed of 2% lard, 2% abraser, 8% plant oil and spindle oil by volume and 88% coal oil. The polishing fluid can produce the H62 brass element with a uniform surface quality and a good surface roughness value up to 0.008 mum, has the characteristics of no eroding elements, effectively relieving mechanical score, good processing surface quality and can be used for decoration of the plastic metal material and surface polishing process before the material metallographic microscope analysis.

抛光液由粒径为0.5~1.0μm的Al 2 O 3 微粉、煤油、猪油、植物油和锭子油混合而成;其中Al 2 O 3 微粉为磨料,煤油作溶剂,猪油、植物油和锭子油的混合液作添加剂;抛光液按体积比由2%的猪油、2%的磨料、8%的植物油和锭子油的混合液、88%的煤油配制而成;该抛光液能够加工出表面质量均匀,表面粗糙度值达到0.008μm的H62黄铜工件,具有不腐蚀工件、有效缓解机械刻划作用、加工表面质量好的特点,可以用于塑性金属材料的外观装饰性加工,以及材料金相分析前的表面抛光加工。

Through high-performance oil-pipe, in the proposed system the vacuum oil filter, pressuring oil filter, oil tank are combined with transformer or reactor; by means of switching over of oil circuit different oil-filtering functions can be implemented, thus the difficult problems such as the request for high quality of insulating-oil by large-scale oil immersed equipments of UHV substations and the difficulty to disposal large amount of insulating-oil are solved.

该系统把真空滤油机、压力式滤油机、油罐和变压器或高抗等通过高性能油管组合在一起,通过油路的切换实现各种滤油功能,解决了特高压变电站大型油浸设备对绝缘油品质要求高、油量大不易处理的问题。

Ingredients: glycine soja oil, ricinus communis seed oil, rosmarinus officinalis leaf oil, cymbopogon schoenanthus oil, thuja occidentalis leaf oil, mentha piperita oil, cymbopogon nardus oil, eugenia caryophyllus flower oil, geranium maculatum oil, tocopherol

野生大豆油,籽油,迷迭香叶油,柠檬schoenanthus石油,北美香柏叶油,薄荷油,柠檬nardus石油,欧亨尼娅石竹花油,天竺葵斑点油,维生素E

The results indicate that the different thermal expansions and elastoplastic properties and distributed randomness of various mineral particles composed of oil shale will lead to the nonuniformity of thermal field, deformation field and stress field in heating process, which makes the particles of oil shale deform incompatibly: and the release of product pyrolysis results in irreversible damages of oil shale material and structure. These are the main reasons for the thermal fracture of oil shale. When oil shale is heated through thermal conduction, temperature transfers slowly, so the spacing between heating well and production well should not be kept too long. When difference exists in oil shale reservoir's properties, heating well should be chosen in the high conductivity region. Oil shale's stratification is vital for developing permeation zone in in-situ retorting. Oil shale will generate additional expansion force as it reaches its pyrolysis temperature, and stratification will be cracked first, so the oil shale stratification should be utilized to enhance its permeability.

研究结果表明:组成油页岩各种矿物颗粒热膨胀和弹塑性性质的不同及其分布的随机性,导致油页岩加热过程中温度场、变形场和应力场的非均匀性,使得油页岩颗粒间变形不协调和油页岩热解产物释放引起油页岩材料与结构性能发生不可逆的劣化损伤,这是油页岩发生热破裂的主要原因;热传导方式加热油页岩,温度的传递比较缓慢,加热井和生产井的间距不宜过大,对油页岩储层性质存在差异时,注热井应选择较高热导率的区段;油页岩的层理对油页岩地下原位开发形成渗透带至关重要,油页岩达到热解温度会产生附加的膨胀力,首先在层理处开裂,应充分利用油页岩层理赋存条件改造其渗透性。

The analysis result shows that the remaining oil of this area is characterized as: Remaining oil is mainly distributed in thin tabulated beds and untabulated beds with low permeability. Remaining oil scatters widely. Complexity exists in the contact between remaining oil and water flooded layers and zones. Vertically, the remaining oil layers in adjusting area alternates with water breakthrough layers, between them the barrier beds is thin. Horizontally, because of the plane heterogeneity, the relatively good intervals are flooded, so that the remaining oil only exists in margin oil layer owing to faultiness of injection-production; remaining oil is enclosed by waterflooded zone, therefore, it is so complex relationships between remaining oil and waterflooded layers and zones that high requirements are made in the choice of completion optimization.

通过研究分析,研究区二类油层剩余油具有以下特点:(1)剩余油以表内薄差层和表外层为主,渗透能力低;(2)剩余油比较零散;(3)剩余油与水淹层和水淹带的接触具有复杂性;调整区剩余油从纵向上看,剩余油层与见水层相间分布,隔层小;从平面上看,由于油层平面的非均质性,相对较好部位已水淹,只在油层的边边角角部位由于注采不完善等因素存在剩余油,剩余油被水淹带包围,所以目前剩余油与水淹层和水淹带的接触相当复杂,这对完井方式的选择提出更高的要求。

The present invention discloses an improved food-grade-lubricant useful as hydraulic oil, circulating oil, drip oil, general purpose oil, grease base oil, cable oil, chain oil, spindle oil, gear oil, and compressor oil for equipment in the food service industry.

本发明公开了改良的食品级润滑剂,其可以用作食品工业设备中的液压油、循环油、滴油、通用油、润滑油、电缆油、链条油、锭子油、齿轮油和压缩机油。

The paper summrized lubrication technology and the selection of lubricant for rotary kiln, grate cooler, mill, conveyor mechanical equipment and large scale fan as following,(1)in rotary kiln, apply oil spoon of circulatory lubrication or pump forced oil supply system in the roller supporting mechanism and use (superscript #)680 high load industrial gear oil, and use lubrication method of idle oil wheel or spray in drive gear wheel and select solid lubricant which has high viscosity, strong adsorbability, good abrasion resistance in utmost pressure and lattic crystal structure,(2) in grate cooler, use immersion oil lubrcation in reducer and boiled oil centralized lubrication method in supporting roller and guide roller bearing, choose (superscript #)1 limit pressure lithium lubrcant grease,(3) in mill, use circulatory lubrication with fluxing oil station in drive mechanism and circulatory lubrication with high-low pressure fluxing oil station in main bearing and sliding shoe bearing and select N320 industrial gear oil.

文章全面总结了回转窑、篦冷机、磨机、输送机械及大型风机的润滑技术和润滑剂的选择。其中,(1)回转窑的托轮支承装置一般采用油勺供油的连续循环润滑方式或油泵强制供油系统,润滑油选用680重负荷工业齿轮油;传动大小齿轮的润滑一般采用带油轮或喷雾的润滑方式,润滑剂宜选用粘度高、吸附性强、极压耐磨性好、具有点阵晶体结构的固体润滑剂;(2)篦冷机中传动减速机的润滑一般采用浸油飞溅润滑;托轮,挡轮轴承的润滑一般采用干油集中润滑的方式,润滑脂一般选用锥入度310~340的1极压锂基润滑脂;(3)磨机中传动装置一般采用稀油润滑站循环润滑和冷却的方式;主轴承或滑履轴承的润滑一般采用高低压稀油润滑站循环润滑和冷却的方式,润滑油一般选用N320工业齿轮油。

Then direct against the concrete conditions of the oil field of Xinjiang, influencing the important factor that the oil gas operated the cost in the oil field of Xinjiang to be analyzed at first, then analyzing in the face of the domestic and international oil field before combining provide the oil field oil gas in Xinjiang and operate concrete method and measure that the cost controls, and combine the change law of petroleum gas cost in the past 10 years of big company of foreign petroleum Oil field Company oil gas cost control what time does it get helpful enlightenment out of about Xinjiang, providing the incentive mechanism of operating the cost of oil gas of oil field company of Xinjiang to design finally.

然后针对新疆油田的具体情况,首先对影响新疆油阳油气操作成本的重要因素进行了分析,然后结合前面对国内外油田的分析给出新疆油田油气操作成本控制的具体方法和措施,并结合国外石油大公司在近十年的石油天然气成本的变化规律对新疆油田公司油气成本控制提出了几点有益的启示,最后给出了新疆油田公司油气操作成本的激励机制设计。

And kinematic viscosity at 30° C. is 2.0 mm 2 /s to 10.0 mm 2 /s, is obtained from waste edible oils such as rape seed oil, sesame oil, soybean oil, maize oil, sunflower oil, palm oil, palm kernel oil, coconut oil, corn oil, safflower oil.

本发明涉及一种方法生产的柴油燃油从废物中的食用油,其中一个所谓的蔬菜柴油燃油,其中十六烷值指数是45至70 ,闪点是80 ° C时,以210 ° C时和运动粘度在30 ° C时为2.0毫米2 /秒10.0毫米2 /秒,是从废物中得到的食用油,如菜籽油,芝麻油,豆油,玉米油,葵花籽油,棕榈油,棕榈仁油,椰子油,玉米油,红花籽油。

In the preparation method, primary soybean oil and deep hydrogenation soybean oil, or primary rapeseed oil and deep hydrogenation rapeseed oil are adopted as raw materials; sodium methoxide is selected as a catalyst; the consumption of the catalyst is 0.1 percent to 0.5 percent; the reaction temperature is 70 DEG C to 110 DEG C; therefore, the primary soybean oil and the deep hydrogenation soybean oil, or the primary rapeseed oil and the deep hydrogenation rapeseed oil have randomized lactide reaction for 10 min to 90 min, so as to change the composition of mixed oil triglyceride and obtain the low/zero trans fatty acid base oil with different melting points and the characteristics of solid fat.

本发明以一级大豆油和极度氢化大豆油,或一级菜籽油和极度氢化菜籽油为原料,选择甲醇钠为催化剂,催化剂用量0.1%~0.5%,反应温度70~110℃,使一级大豆油和极度氢化大豆油,或一级菜籽油和极度氢化菜籽油之间进行随机交酯化反应,反应时间10~90min,从而改变混合油甘三酯组成,得到具有不同熔点和固体脂肪特征的低/零反式脂肪酸基料油。

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Lugalbanda 是神和被崇拜了一千年多 Uruk古埃及喜克索王朝国王。

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