首页> 外文会议>SAE/KSAE International Powertrains, Fuels and Lubricants Meeting >Understanding Polyisobutylene Succinimides (PIBSI) and Internal Diesel Injector Deposits
【24h】

Understanding Polyisobutylene Succinimides (PIBSI) and Internal Diesel Injector Deposits

机译:了解聚异丁烯琥珀酰亚胺(PiBSI)和内柴油喷射器沉积物

获取原文

摘要

Deposit control additives have been added to diesel fuel for over 30 years to prevent the build-up of deposits in the fuel injection system and thereby ensure optimum engine operation. As the complexity of modern diesel fuel injection systems has increased their tolerance to deposit formation has decreased and therefore there is now an even greater need for high quality deposit control additives. The predominant and most effective chemistry for diesel deposit control additives used over the past 30 years is polyisobutylene succinimides (PIBSI). The design and manufacture of these additives is critical to their performance in the field in terms of functioning to control deposits but also from a no-harm standpoint. Recent work has identified low molecular weight PIBSI as a cause of internal diesel injector deposits (IDID) associated with injector sticking. Low molecular weight PIBSI would not normally be associated with a high quality deposit control additive and the term PIBSI can cover a multitude of chemical structures. This paper presents new work carried out to further understand the relative effects of a range of PIBSI molecules and more precisely understand which low molecular weight PIBSI species can lead to IDID. Laboratory bench tests have been carried out to test a range of PIBSI to identify those species responsible for IDID. The effects of fuel components and refinery additives have also been investigated. Industry Standard and modified engine tests have been used to demonstrate the effect of low molecular weight PIBSI species. They have also been used to show that a PIBSI specifically designed and manufactured to function as a diesel deposit control additive does not cause internal diesel injector deposits and will also function effectively to prevent their formation.
机译:存放控制添加剂已被添加到柴油燃料中超过30年,以防止燃料喷射系统中的沉积物积聚,从而确保最佳发动机操作。随着现代柴油燃料喷射系统的复杂性提高了它们对沉积物形成的耐受性降低,因此对高质量的沉积物控制添加剂甚至有更大的需求。过去30年中使用的柴油沉积控制添加剂的主要和最有效的化学是聚异丁烯琥珀酰亚胺(PIBSI)。这些添加剂的设计和制造对于在用于控制沉积物而且来自无伤害的角度来说,这些添加剂的性能至关重要。最近的工作已将低分子量Pibsi鉴定为与注射器粘附相关的内部柴油喷射器沉积物(IDID)的原因。低分子量Pibsi通常不会与高质量的沉积物控制添加剂相关,并且Pibsi术语可以覆盖多种化学结构。本文提出了新的工作,以进一步了解一系列Pibsi分子的相对效果,更精确地理解哪种低分子量Pibsi物种可以导致成像。已经进行了实验室台式测试以测试一系列PIBSI以识别负责IDID的这些物种。还研究了燃料成分和炼油添加剂的影响。业界标准和改进的发动机测试已被用于证明低分子量PiBSI物种的影响。它们还被用来表明专门设计和制造的PIBSI用作柴油沉积控制添加剂的功能不会引起内部柴油喷射器沉积物,并且还将有效地运作以防止其形成。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号