《高性能等静压石墨制造工艺配方精选》

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2024新版《等静压、各向同型石墨制造工艺配方精选》


        国际新技术网编辑:为了更好的为读者呈现国际、国内外新型石墨制造技术详细内容,满足企业读者不同需求,共同探讨石墨制造的技术动态,恒志信科技公司独家推出《石墨新技术》资料版块,深度披露现今石墨制造与研制的发展方向,以及新工艺和产品用途,呈现我国石墨未来研制的技术环境及产品走向,欢迎关注!


        等静压石墨由高纯石墨压制而成。等静压石墨是国际上近50年来发展起来的新产品,与当今高科技紧密相联。作为全球制造业大国和最大的光伏产品生产国,中国一直保持巨量的等静压石墨需求。当前,随着国内光伏产业的迅猛发展,中国等静压石墨需求量逐年扩大。同期,由于中国等静压石墨生产企业技术基础薄弱,加上国外企业的技术封锁,中国等静压石墨产量和质量均未得到有效提升。2023年,中国等静压石墨需求量达1.8万吨,而同期等静压石墨产量仅为9500吨,供应缺口达8500吨。当前,中国新涉足等静压石墨业务企业普遍存在的技术储备不足及产品结构不合理等问题很难短期内得到解决。


         等静压石墨是新型石墨材料,是石墨材料中的精品,由于具有一系列优良特性,它必然会与高新技术、国防尖端技术紧密相联,成为21世纪最有价值的新材料之一。随着经济发展,静压石墨的国内国际市场容量与日俱增,发展潜力巨大。正因如此,目前国内正兴起一股等静压石墨生产热,一些以生产模压石墨为主的炭素生产企业看中这块“大蛋糕”,陆续上马等静压设备,挤身等静压石墨生产行列中来,竞争将不可避免进入白热化状态,竞争的对手包括国外同行。在激烈的市场竞争中,国内等静压石墨生产企业的立足之本和出路是:将产品升级换代,朝大规格、细结构(超细结构)、高强度、高纯度、多功能方向发展,顺应光伏产业、机械制造、核能利用各行业发展趋势,为中国国民经济的发展更好地服务。

 

         中国是一个发展中国家,正在步入重工业化时期,中国已经成为世界级的“制造大工厂”。而且科学技术的发展带来了新的工业革命,等静压石墨材料及制品的广阔应用领域给等静压石墨产业带来了勃勃生机。当前,由于经济危机的爆发,国外炭素产业受到了较严重的影响,于是他们加大了对中国的销售力度。当前中国约能消耗世界等静压石墨产品的1/4,是世界上最大等静压石墨产品市场之一,等静压石墨产业将迎来发展的新阶段。

         本篇是为了配合国家产业政策向广大企业、科研院校提供环氧涂料技术制造工艺配方汇编技术资料。资料中每个项目包含了最详细的技术制造资料,现有技术问题及解决方案、产品生产工艺、配方、产品性能测试,对比分析。资料信息量大,实用性强,是从事新产品开发、参与市场竞争的必备工具。


         本篇系列汇编资料分为为精装合订本和光盘版,内容相同,用户可根据自己需求购买。

2025版《埃克森美孚合成发动机油制造工艺配方精选汇编》

2025版《埃克森美孚合成发动机油制造工艺配方精选汇编》

埃克森美孚(ExxonMobil)旗下的美孚(Mobil)品牌是全球知名的润滑油品牌之一,其发动机油产品以高性能、创新技术和卓越的品质著称。美孚发动机油广泛应用于汽车、卡车、摩托车和工业设备等领域,满足不同发动机类型和工况的需求。

  本资料是收录涉及埃克森美孚汽油发动机油、柴油发动机油、混合动力和电动汽车最新专利技术资料,资料中包括制造原料、配方、生产工艺、产品性能测试及标准、实际应用效果,技术指标,解决的具体问题等等,是企业提高产品质量和发展新产品的重要、实用、超值和难得的技术资料。


【资料内容】制造工艺及配方
【资料语种】英文 中文
【项目数量】51项
电子版】1980元(PDF文档  邮件发送)



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埃克森美孚(ExxonMobil)旗下的美孚(Mobil)品牌是全球知名的润滑油品牌之一,其发动机油产品以高性能、创新技术和卓越的品质著称。美孚发动机油广泛应用于汽车、卡车、摩托车和工业设备等领域,满足不同发动机类型和工况的需求。

  本资料是收录涉及埃克森美孚汽油发动机油、柴油发动机油、混合动力和电动汽车最新专利技术资料,资料中包括制造原料、配方、生产工艺、产品性能测试及标准、实际应用效果,技术指标,解决的具体问题等等,是企业提高产品质量和发展新产品的重要、实用、超值和难得的技术资料。


【资料内容】制造工艺及配方
【资料语种】英文 中文
【项目数量】51项
电子版】1980元(PDF文档  邮件发送)



目录

1Internal Combustion Engine Lubricant
2Engine Oil Lubricant Composition With Excellent Fuel Consumption And Method Of Making Same
3Non-Newtonian Engine Oil Lubricant Compositions For Superior Fuel Economy
4Engine Oil Lubricant Composition With Steel Corrosion Protection And Preparation Method Thereof
5Engine Oil Lubricant Composition With Excellent Engine Wear Protection And Corrosion Protection And Preparation Method Thereof
6Marine Fuel Compositions With Reduced Engine Frictional Losses
7Lubricating Oil Compositions With Engine Corrosion Protection
8Method For Improving Engine Fuel Efficiency
9Method And Composition For Preventing Or Reducing Engine Knock And Pre-Ignition In High Compression Spark Ignition Engines
10Method For Improving Engine Fuel Efficiency And Energy Efficiency
11Lubricating Engine Oil And Method For Improving Engine Fuel Efficiency
12Non-Newtonian Engine Oil With Superior Engine Wear Protection And Fuel Economy
13Lubricating Oil Compositions With Engine Wear Protection
14Use For Improving The Fuel Efficiency Of Engine Oil Compositions For Large Low And Medium Speed Engines By Reducing The Traction Coefficient
15Lubricating Engine Oil For Improved Wear Protection And Fuel Efficiency
16Ashless Engine Lubricants For High Temperature Applications
17Method For Improving Deposit Control And Cleanliness Performance In An Engine Lubricated With A Lubricating Oil
18Selection Of Engine Maps Based On In-Situ Detection Of Viscosity Of The Engine Oil
19Composition And Method For Preventing Or Reducing Engine Knock And Pre-Ignition In High Compression Spark Ignition Engines
20Diesel Engine Cylinder Oils
21Method For Preventing Or Reducing Engine Knock And Pre-Ignition
22Lubricating Oil Compositions With Engine Wear Protection And Solubility
23Method For Improving Emulsion Characteristics Of Engine Oils
24High Efficiency Engine Oil Compositions
25Low Viscosity Engine Oil With Superior Engine Wear Protection
26Method For Improving Engine Wear And Corrosion Resistance
27Soot Control For Diesel Engine Lubricants
28Method For Improving The Fuel Efficiency Of Engine Oil Compositions For Large Low And Medium Speed Engines By Reducing The Traction Coefficient
29Method For Improving The Fuel Efficiency Of Engine Oil Compositions For Large Low And Medium Speed Gas Engines By Reducing The Traction Coefficient
30Method For Improving The Fuel Efficiency Of Engine Oil Compositions For Large Low, Medium And High Speed Engines By Reducing The Traction Coefficient
31Method For Enhancing The Oxidation And Nitration Resistance Of Natural Gas Engine Oil Compositions And Such Compositions
32Long-Life Engine Oil Composition With Low Or No Zinc Content
33Method For Stabilizing Diesel Engine Lubricating Oil Against Degradation By Biodiesel Fuel
34Lubricant Compositions, Their Preparation And Use
35Low Sap Engine Lubricant Containing Silane And Zinc Dithiophosphate Lubricant Additive And Composition
36Low Sap Engine Lubricant Additive And Composition Containingnon-Corrosive Sulfur And Organic Borates
37High Performance Non-Zinc, Zero Phosphorus Engine Oils For Internal Combustion Engines
38Long Life Gas Engine Oil And Additive System
39Part-Synthetic, Aviation Piston Engine Lubricant
40Low Ash, Low Phosphorus And Low Sulfur Engine Oils For Internal Combustion Engines
41Lubricating Oil System For Internal Combustion Engine
42High Fuel Economy Passenger Car Engine Oil
43Crankcase Lubricant Compositions And Method Of Improving Engine Deposit Performance
44Fuel-Economy Lubrication-Effective Engine Oil Composition
45Engine Oil With Improved Fuel Economy Properties
46Biodegradable Branched Synthetic Ester Base Stocks And Lubricants Formed Therefrom
47Method For Lubricating The Cylinder Of A 2-Stroke Marine Engine
48Specific Antioxidant Combination For Diesel Engine Lubricating Compositions
49Method To Control The Rise In Viscosity Produced Due To The Presence Of Soot In The Lubricant Of A Diesel Engine
50Method For Improving The Corrosion Inhibiting Properties Of Lubricant Compositions
51High Performance Engine Oil