首页> 外文会议>CleanTech'99: International Cleaning Technology Exposition, May 18-20, 1999, Rosemont, IL >Cleaning High Precision Inertial Navigation Systems, A Case Study and Panel Discussion
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Cleaning High Precision Inertial Navigation Systems, A Case Study and Panel Discussion

机译:清洁高精度惯性导航系统,案例研究和小组讨论

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Litton Guidance & Control Systems division builds high-performance inertial navigation systems. Choosing and implementing new cleaning systems is often a major challenge. In addition to meeting stringent customer, performance, and regulatory requirements, the processes must be practical and reliable. Litton's cleaning studies as well as a review of process development in a production facility will assist course attendees in their own process choices. Producing inertial navigation systems involves exacting, multi-step cleaning of complex subassemblies. Each sub-component of a system may require various cleaning steps; each performed by skilled assemblers. Fluxes, oils, and flotation fluids must be removed from an array of materials of construction including a wide assortment of metals, plastics, and epoxies. For the given product application, soil residues, cleaning agent residues, and water are not acceptable. Replacing 1,1,1-trichloroethane was very challenging. Process replacement was multi-staged. Litton has remained responsive to evaluating the newer, more promising replacements that were not available early on in the ODC phase-out. Optimizing the processes involved coordination among engineers, chemists, environmental health and safety specialists, and skilled assembly people at Litton G&CS, BFK Solutions, and Albemarle Corporation. A range of cleaning agents was evaluated including co-solvent systems, fluorinated solvents, and brominated solvents. Process development was multi-step. Initial processes allowed replacement of ODCs, but were costly and cumbersome for the assembler. Litton has tested and implemented alternative cleaning sequences, which include a cleaner formulated with n-propyl bromide (nPB). The new processes provide effective, reliable cleaning. In addition, cleaning process time has been reduced by over 40% and cleaning agent usage has been reduced to essentially one-third of the total volume of solvents used in the original ODC replacement process. It is important to note and clarify that the cleaning performance data obtained in this study using the vapor degreasing grade nPB cleaning formulation (VG) does not indicate that any other nPB type formulation will give equivalent performance. This is due to the unique composition of the parts being cleaned, including configuration and combination of materials of construction, and the specific properties and carefully tuned characteristics of the cleaning agent formulation. Significant qualification testing is necessary before attempting to use other formulations in similar applications.
机译:利顿制导与控制系统部门制造高性能的惯性导航系统。选择和实施新的清洁系统通常是一个重大挑战。除了满足严格的客户,性能和法规要求之外,这些过程还必须实用且可靠。 Litton的清洁研究以及对生产设施中工艺开发的回顾,将帮助参加培训的学员选择自己的工艺。惯性导航系统的生产涉及对复杂子组件的精确,多步清洁。系统的每个子组件可能需要各种清洁步骤;每个由熟练的装配工执行。助焊剂,油和浮选液必须从各种结构材料中清除,这些材料包括各种各样的金属,塑料和环氧树脂。对于给定的产品应用,土壤残留物,清洁剂残留物和水是不可接受的。更换1,1,1-三氯乙烷非常困难。流程替换是多阶段的。 Litton一直对评估更新,更有希望的替代产品(在ODC淘汰初期无法提供)保持响应。优化流程需要在Litton G&CS,BFK Solutions和Albemarle Corporation的工程师,化学家,环境健康与安全专家以及熟练的组装人员之间进行协调。评估了一系列清洁剂,包括助溶剂系统,氟化溶剂和溴化溶剂。工艺开发是多步骤的。最初的过程允许更换ODC,但对于组装商而言既昂贵又麻烦。 Litton已测试并实施了其他清洁程序,其中包括由正丙基溴(nPB)配制的清洁剂。新工艺可提供有效,可靠的清洁。此外,清洗过程的时间减少了40%以上,清洗剂的使用量基本上减少了原始ODC更换过程中使用的溶剂总量的三分之一。重要的是要注意并阐明,使用蒸汽脱脂级nPB清洁配方(VG)在本研究中获得的清洁性能数据并不表示任何其他nPB类型的配方都具有相同的性能。这是由于要清洁的零件的独特组成,包括构造材料的配置和组合,以及清洁剂配方的特殊性能和精心调整的特性。尝试在类似应用中使用其他配方之前,必须进行大量的资格测试。

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