金刚石砂轮磨具制造新技术系列资料一

《圣戈班金刚石砂轮磨具》

制造工艺配方精选汇编

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金刚石砂轮磨具制造工艺配方大全
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各位读者:大家好!


       自从我公司2000年推出每年一期的超硬材料金刚石砂轮磨具系制造列新技术汇编以来,深受广大企业的欢迎,在此,我们衷心地感谢致力于创新的新老客户多年来对我们产品质量和服务的认同,由衷地祝愿大家工作顺利!


      磨料磨具磨削素有"工业的牙齿"之称,不仅与装备制造、航空航天、船舶、新能源、汽车、家电、电子信息等行业密切相关,而且已渗透到人们生活的各个方面。我国现有磨料磨具磨削生产企业2000多家;2012年工业总产值超过1000亿元。预计近两年,中国将超过美国成为世界最大的磨料磨具磨削生产国。


      2017年以来,国家提出的十大重点产业调整和振兴规划,以及新近发布的关于加快七大战略性新兴产业发展的决定,对现代高端制造业的磨切工具及其技术发展提出了更高的要求。


       为推动国内现代制造业的技术升级和产品换代,实现节能环保、减排增效和绿色制造的目标,促进国民经济的高效和持续发展。提高金刚石砂轮磨具的产品质量,我公司特推出本期新技术工艺配方汇编。


    本期所介绍的资料,系统全面地收集了近年来树脂结合剂-金刚石砂轮制造最新技术,包括:优秀的专利新产品,新配方、新产品生产工艺的全文资料。其中有许多优秀的新技术在实际应用巨大的经济效益和社会效益,这些优秀的新产品的生产工艺、技术配方非常值得我们去学习和借鉴。
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2024新版《圣戈班金刚石砂轮磨具制造工艺配精选汇编

世界领先集团

圣戈班,成立时间:1665年英文名:Saint-Gobain,总部设在法国的圣戈班集团生产、加工并销售高技术材料并提供相应服务。圣戈班将原材料加工为先进材料用于我们的日常生活中,同时开发未来新材料。圣戈班集团是其所在所有行业的欧洲及世界领先者,并且是世界工业集团百强之一。圣戈班已在巴黎、伦敦、法兰克福、苏黎世、布鲁塞尔、阿姆斯特丹等交易所上市。


圣戈班高功能产业部涵盖磨料磨具、陶瓷材料及玻璃纤维三大主营业务。这三大业务在中国和整个亚洲都已枝繁叶茂,他们共同支持、相互分享着创新、技术和市场。这三大业务集中在同一个部门,员工们能更好地服务客户、齐心协力地创造美好的未来。
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