首页> 外文期刊>Quality and Reliability Engineering International >MAINTENANCE-FREE OPERATING PERIODS -THE DESIGNER'S CHALLENGE
【24h】

MAINTENANCE-FREE OPERATING PERIODS -THE DESIGNER'S CHALLENGE

机译:免维护的经营时期-设计师的挑战

获取原文
获取原文并翻译 | 示例
       

摘要

It is generally accepted that a major hurt for the aerospace industry is the need for unscheduled maintenance. For a military aircraft operator this can affect operational availability and degrade the ability of an airforce to carry out its function. Maintenance-free operating periods (MFOPs) are not a new concept to the aerospace industry-the goal of MFOP attainment has been with us for many years; what has changed is the drive form customers of our products to reduce life-cycle costs(LCCs). The military aircraft customer is expected in future to demand a period of operations during which the availability of the air system can be guaranteed. This represents a paradigm shift in the way in which system designers approach the issues of reliability and availability. Traditional thinking on reliability has been centered around the measurement unit of mean time between failures(MTBF). The use of MTBF `budgets' confers an attitude of an acceptable level of failures. The designers will have to design their system form the outset to meet the MFOP requirement of the aircraft. The designers will have to design their system from the outset to meet the MFOP requirement of the aircraft. The challenge lies in the methodology and tools required to produce a system architecture that will reach the target MFOP `options' are currently perceived to be (a) inherent reliability, (b) redundancy, (c) reconfigurability, (d) prognostics(the prediction of failure) and diagnostics and (e) lifting policy. When examining the required functionality of the system, a designer would assess each part of the system which contributes to that functionality (be it a valve, pump or transducer). The a determination must be made of which MFOP `option ' is the most suitable to maintain that functionality. This paper will examine the concept of MFOPs and how the system designer can respond to the challenge to achieve the MFOP aircraft required for the 21st century.
机译:人们普遍认为,对航空航天业的主要伤害是需要进行计划外的维护。对于军用飞机运营商而言,这可能会影响运营可用性并降低空军执行其职能的能力。免维护运行时间(MFOP)并不是航空航天工业的一个新概念-达到MFOP的目标已经有很多年了。发生了变化的是,我们的产品驱动了客户以减少生命周期成本(LCC)。预计未来军用飞机客户会要求一定的运行时间,在此期间可以确保航空系统的可用性。这代表着系统设计人员处理可靠性和可用性问题的方式发生了范式转变。关于可靠性的传统思想一直围绕平均故障间隔时间(MTBF)的度量单位。 MTBF“预算”的使用赋予了可接受的故障水平的态度。设计人员必须从一开始就设计其系统,以满足飞机的MFOP要求。设计人员必须从一开始就设计其系统,以满足飞机的MFOP要求。挑战在于产生将达到目标MFOP``选项''的系统架构所需的方法和工具,目前认为这是(a)固有可靠性,(b)冗余,(c)可重新配置性,(d)预后(故障的预测)和诊断,以及(e)解除政策。在检查系统所需的功能时,设计人员将评估有助于该功能的系统的每个部分(无论是阀,泵还是变送器)。必须确定哪种MFOP'option'最适合维护该功能。本文将研究MFOP的概念,以及系统设计人员如何应对挑战以实现21世纪所需的MFOP飞机。

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