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一种表面处理添加剂及其应用
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《汽车工艺与材料》 2003年第2期42-42,共1页
关键词 表面处理添加剂 应用 无机含氧酸盐
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含添加剂细水雾抑制池火及相关特性 被引量:12
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作者 贾利涛 朱顺兵 蒋军成 《消防科学与技术》 CAS 北大核心 2014年第5期558-561,共4页
建立固定式细水雾灭火试验平台,探究添加表面活性剂添加剂后,细水雾扑灭油池火时的温度变化特性和火焰形态。对汽油、柴油池火的火焰温度及灭火时间的对比表明,在细水雾中添加表面活性剂添加剂能大幅提升细水雾灭火性能;含添加剂的细水... 建立固定式细水雾灭火试验平台,探究添加表面活性剂添加剂后,细水雾扑灭油池火时的温度变化特性和火焰形态。对汽油、柴油池火的火焰温度及灭火时间的对比表明,在细水雾中添加表面活性剂添加剂能大幅提升细水雾灭火性能;含添加剂的细水雾抑制池火过程分为火焰初期增长、初步抑制、火焰再次增长和再次抑制4个阶段;含添加剂细水雾系统的灭火机理在于可以捕捉和湮灭链式反应中的自由基,降低表面张力。 展开更多
关键词 细水雾 表面活性剂添加剂 池火 灭火性能
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含表面活性剂高压细水雾抑制食用油池火研究 被引量:1
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作者 彭伟 任俊生 +1 位作者 谢奇 李金虎 《消防科学与技术》 CAS 北大核心 2023年第11期1518-1522,共5页
为研究含表面活性剂添加剂高压细水雾对食用油池火的抑制效果,在尺寸为6 m×6 m×4 m的受限空间内开展相关试验,通过分析油温、火焰温度、表面活性剂相关特性等情况,研究含表面活性剂添加剂高压细水雾对食用油池火的抑制效果。... 为研究含表面活性剂添加剂高压细水雾对食用油池火的抑制效果,在尺寸为6 m×6 m×4 m的受限空间内开展相关试验,通过分析油温、火焰温度、表面活性剂相关特性等情况,研究含表面活性剂添加剂高压细水雾对食用油池火的抑制效果。结果表明:含表面活性剂的细水雾对食用油油温的冷却和火焰的抑制有很好的效果,主要与添加剂的表面张力和起泡性有关。含表面活性剂细水雾对油温冷却效果从高到低依次为:含1%CAB-35细水雾>含0.01%正庚醇细水雾>含0.01%FS-51细水雾>纯水;对火焰的抑制效果依次为:含1%CAB-35细水雾>含0.01%FS-51细水雾>含0.01%正庚醇细水雾>纯水。因此,对食用油油温的冷却要考虑适中表面张力和较高起泡性的表面活性剂作为添加剂,而对火焰的抑制则要考虑较低表面张力和较高起泡性的表面活性剂作为添加剂。 展开更多
关键词 细水雾 食用油 表面活性剂添加剂 表面张力 泡沫 冷却效果 抑制效果
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表面活性剂的应用
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作者 陈怡 蔡晓红 《精细石油化工文摘》 CAS 1999年第2期21-28,共8页
关键词 表面活性剂 阴离子表面活性剂 复配物 两性表面活性剂 表面活性剂添加剂 阳离子表面活性剂 脂肪酸 IPC 配合物 共聚物
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极压抗磨剂在冷轧轧制油中的作用研究 被引量:4
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作者 胡汉国 《石油商技》 2004年第1期6-9,共4页
简要介绍了冷轧轧制油中极压抗磨剂的发展状况和作用机理,讨论了极压抗磨剂的反应活性、带钢表面添加剂浓度与润滑性的关系,表明了在冷轧轧制油中加入极压抗磨剂的必要性。
关键词 极压抗磨剂 冷轧轧制油 表面添加剂 润滑性 浓度
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Experimental and Molecular Dynamics Simulations for Investigating the Effect of FattyAcid and Its Derivatives on Low Sulfur Diesel Lubricity 被引量:4
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作者 Luo Hui Fan Weiyu +2 位作者 Li Yang Zhao Pinhui Nan Guozhi 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2013年第3期79-85,共7页
In this work,fatty acid and its derivatives were adopted as lubricity additives for low sulfur diesel.Tribological evaluation obtained from the High-Frequency Reciprocating Rig(HFRR)apparatus showed that the lubricati... In this work,fatty acid and its derivatives were adopted as lubricity additives for low sulfur diesel.Tribological evaluation obtained from the High-Frequency Reciprocating Rig(HFRR)apparatus showed that the lubricating performance of the additives increased in the following order:stearic acid>glycol monopalmitate>stearyl alcohol>ethyl palmitate>cetyl ethyl ether.The adsorption behavior of the additives on Fe(110)surface and Fe2O3(001)surface was investigated by molecular dynamics(MD)simulations to verify their lubricity performance.The results suggested that adsorption energies of the additives on Fe(110)surface are determined by the van der Waals forces,while adsorptions on Fe2O3(001)surface are significantly attributed to the electrostatic attractive forces.Higher values of adsorption energy of the additives on Fe2O3(001)surface indicate that the additive has more efficient lubricity enhancing properties. 展开更多
关键词 MD simulation ADSORPTION lubricity additive fatty acid low-sulfur diesel
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Competitive Adsorption of Anticorrosion and Antiwear Additives
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作者 Feng Bing Chen Guoxu +2 位作者 Liu Shuanghong Chen Junjun Wang Kunt 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2012年第1期68-73,共6页
Simulated adsorptive experiments using the axletree and lubricating oil containing anticorrosion additive were conducted,and the UV absorbance of the lubricating oil before and after the adsorptive experiments was mea... Simulated adsorptive experiments using the axletree and lubricating oil containing anticorrosion additive were conducted,and the UV absorbance of the lubricating oil before and after the adsorptive experiments was measured.Through the UV spectral measurements the difference in UV absorbance of the lubricating oil before and after the adsorptive experiments was identified,the adsorbed quantity of anticorrosion additive in the interfacial film between lubricating oil and bearing was calculated using the Lambert-Bell principle to verify the adsorption of corrosion inhibitor on the surface of friction pairs.Adsorption experiments on lubricating oil containing both antiwear and anticorrosion additives were carried out and the UV absorbance of lubricating oil samples before and after the experiments was measured to determine the difference in the UV absorbance among lubricating oil samples with the same mass fraction of anticorrosion additive and different mass fractions of antiwear additive.By measuring the ultraviolet spectral absorbance of lubricating oil samples and calculating the adsorbed quantity of anticorrosion additive in the interfacial film it was possible to determine the influence of antiwear additive on the quantity of adsorbed anticorrosion additive on the surface of friction pairs and verify the competitive adsorption relationship between the antiwear additive and the anticorrosion additive. 展开更多
关键词 anticorrosion additive antiwear additive ultraviolet spectrum interfacial film ABSORBANCE
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