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《3D打印-尼龙粉 制造工艺配方精选》


3D打印尼龙粉概述
尼龙粉是一种常用于3D打印的热塑性材料,具有高强度、耐磨性、耐化学腐蚀性以及良好的机械性能。它广泛应用于选择性激光烧结(SLS)、多喷射熔融(MJF)等3D打印工艺。

3D打印尼龙粉的常见类型
尼龙11(PA11):具有良好的抗紫外线和抗冲击性能,适合户外使用。
尼龙12(PA12):强度和刚度更高,是SLS打印中最常用的材料之一。
复合尼龙材料:如玻璃纤维增强尼龙(如Nylon 12 GF Powder)和碳纤维增强尼龙(如Nylon 11 CF Powder),这些材料在强度和刚性上表现更优。

3D打印尼龙粉的应用领域
工业制造:用于制造机械零件、齿轮、轴承等,具有良好的耐磨性和机械强度。
汽车与航空航天:用于制造功能测试部件、发动机进气歧管、轻量化结构件等。
医疗领域:可用于制造生物相容性好的医疗器械。
消费品:如运动器材、鞋底模具等。

3D打印尼龙粉的优势
高精度与复杂结构:SLS和MJF工艺可以实现复杂几何形状的打印,无需支撑结构。
材料可重复使用:未烧结的尼龙粉末可以回收再利用,减少浪费。
良好的表面处理:尼龙粉末打印的部件表面可以进行喷砂、喷漆等后处理。

3D打印尼龙粉的局限性
吸湿性:尼龙材料容易吸收空气中的水分,可能导致打印件变形或性能下降。
表面粗糙度:MJF打印的部件表面相对粗糙,需要额外的后处理。
材料选择有限:与FDM等其他3D打印技术相比,SLS和MJF的材料种类相对较少。

总结
3D打印尼龙粉因其优异的机械性能和广泛的适用性,在工业制造、汽车、航空航天等领域具有重要的应用价值。然而,其吸湿性和表面粗糙度等局限性也需要在实际应用中加以注意。


《埃克森美孚基础油制造工艺配方精选汇编》

《埃克森美孚基础油制造工艺配方精选汇编》

埃克森美孚的润滑油业务在全球享有盛誉,旗下美孚品牌以高性能和创新著称。其产品包括美孚1号(全合成润滑油)、美孚DTE抗磨液压油、美孚高性能工业齿轮油等。公司还提供定制化的润滑解决方案,帮助客户提高设备效率。

  本资料是收录涉及埃克森美孚基础油最新专利技术资料,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
【项目数量】64项
电子版】1980元(PDF文档  邮件发送)



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埃克森美孚的润滑油业务在全球享有盛誉,旗下美孚品牌以高性能和创新著称。其产品包括美孚1号(全合成润滑油)、美孚DTE抗磨液压油、美孚高性能工业齿轮油等。公司还提供定制化的润滑解决方案,帮助客户提高设备效率。

  本资料是收录涉及埃克森美孚基础油最新专利技术资料,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
【项目数量】64项
电子版】1980元(PDF文档  邮件发送)



《埃克森美孚(EXXONMOBIL)基础油制造工艺配方精选汇编》

1Base Stock Production Using A High Activity Catalyst
2High Viscosity High Quality Group Ii Lube Base Stocks
3Novel Antioxidant Combination And Synthetic Base Oils Containing The Same
4Low Viscosity, Low Volatility Lubricating Oil Basestocks
5Basestock Production From Feeds Containing Solvent Extracts
6Lubricant Base Stocks With Improved Filterability
7Lubricant Base Stock Production From Recycled Oil
8Production Of Base Oils From Petrolatum
9Lubricant Base Stock Production From Disadvantaged Feeds
10Lubricant Base Stocks From Renewable Sources With Improved Low Temperature Properties
11Ionic Liquids As Lubricating Oil Base Stocks, Cobase Stocks And Multifunctional Functional Fluids
12Wax And Lube Base Stock Products Using Shape Selective Membrane Separation
13Process For Making Lube Base Stocks From Renewable Feeds
14Process For Making Lube Basestocks From Renewable Feedstocks
15Process For Preparing Basestocks Having High Vi
16Functional Fluids Comprising Low-Viscosity, Low-Volatility Polyalpha-Olefin Base Stock
17Lubricant Compositions From Renewable Base Stocks With Improved Properties
18Production Of Lubricant Base Stocks With Controlled Aromatic Contents
19Production Of Renewable Waxes And Base Oils
20Process For Producing Novel Synthetic Basestocks
21Heavy Hydrocarbon Composition With Utility As A Heavy Lubricant Base Stock
22Solvent Extraction For Correction Of Color And Aromatics Distribution Of Heavy Neutral Base Stocks
23Vinyl Ether Polymer Fluids Made Using Controlled Living Cationic Polymerization And Their Use As Synthetic Lubricant Basestocks
24Processes For Preparing Low Viscosity Lubricating Oil Base Stocks
25Lubricant Oil Compositions Containing Gtl Base Stock(S) And/Or Base Oil(S) And Having Improved Resistance To The Loss Of Viscosity And Weight And A Method For Improving The Resistance To Loss Of Viscosity And Weight Of Gtl Base Stock(S) And/Or Base Oil(S
26Base Stocks And Oil Compositions Containing The Same
27Group Iii Base Stocks And Lubricant Compositions
28Mitigation Of Air Release In Lubricant Base Stocks And Lubricating Oils
29Transformer Oil Basestock And Transformer Oil Composition Comprising The Same
30Lubricant Base Stock Blends
31Low Traction Energy Conserving Fluids Containing Base Stock Blends
32Cold Cranking Simulator Viscosity Reducing Base Stocks And Lubricating Oil Formulations Containing The Same
33Cold Cranking Simulator Viscosity Boosting Base Stocks And Lubricating Oil Formulations Containing The Same
34Bio-Feeds Based Hybrid Group V Base Stocks And Method Of Production Thereof
35Low Viscosity Low Volatility Lubricating Oil Base Stocks And Methods Of Use Thereof
36Synthetic Lubricant Basestocks And Methods Of Preparation Thereof
37Alkylated Anisole-Containing Lubricating Oil Base Stocks And Processes For Preparing The Same
38High Stability Lubricating Oil Base Stocks And Processes For Preparing The Same
39Multifunctional Lubricating Oil Base Stocks And Processes For Preparing Same
40Ultra High Viscosity Synthetic Base Stocks And Processes For Preparing Same
41Low Viscosity Lubricating Oil Base Stocks And Processes For Preparing Same
42High Viscosity, Functionalized Metallocene Polyalphaolefin Base Stocks And Processes For Preparing Same
43Naphthalene-1,8-Dicarboxylate Ester Compounds And Lubricating Oil Base Stocks And Processes For Making Same
44Low Viscosity Low Volatility Lubricating Oil Base Stocks And Processes For Preparing Same
45High Viscosity Index Monomethyl Ester Lubricating Oil Base Stocks And Methods Of Making And Use Thereof
46Aircraft Turbine Oil Base Stock And Method Of Making
47Lubricant Base Oil Hydroprocessing And Blending
48Lubricant Basestock Production With Enhanced Aromatic Saturation
49High Pressure Hydrofinishing For Lubricant Base Oil Production
50Hydroprocessing For Lubricant Basestock Production
51Rapid Estimation Of Feed Potential For Base Oil Formation
52High Viscosity Index Lubricating Oil Base Stock Viscosity Modifier Combinations, And Lubricating Oils Derived Therefrom
53Methods Of Separating Aromatic Compounds From Lube Base Stocks
54Removal Of Polynuclear Aromatics From Severely Hydrotreated Base Stocks
55Functional Fluids Comprising Low-Viscosity Polyalpha-Olefin Base Stock
56High Viscosity Base Stock Compositions
57Isoparaffinic Lube Basestock Compositions
58A 13c-Nmr-Based Composition Of High Quality Lube Base Oils And A Method To Enable Their Design And Production And Their Performance In Finished Lubricants