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The evolution of composite patch repair technology at CTAS in meeting the challenges of the C141-B Drop-In-Repair program for WRALC

机译:CTA综合补丁修复技术的演变在满足W141-B型维修计划中挑战WRALC的挑战

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This paper describes the unique experience gained by Chrysler Technologies Airborne Systems, Inc. (CTAS) in the development of composite patch repair techniques through an internally funded research and development program (IRAD) prior to the award of the C141-B Drop-In-Repair (DIR) Contract and subsequently in supporting the various activities of fulfilling the contractual requirements after the contract award, for Warner-Robins Air Logistics Center (WRALC) during August 1993 through October 1994. The mobility of the U.S. Air Force was threatened when more than 65% of the C141-B aircraft fleet faced grounding due to the discover of cracking riser weep holes in the lower in-board wing structure, severely restricting the service life of the aircraft from reaching 45,000 SLA-II equivalent flight hours. WRALC had decided to repair most of the weep holes (limited to a maximum of fifteen holes per wing), using Boron/epoxy composite patch doublers, as a near-term remedial measure, in lieu of full wing plank replacement. This option of using Boron/epoxy patches to repair cracked weep holes was attractive to WRALC due to reduced downtime anticipated for the repairs. This paper elaborates the details of CTAS's IRAD work in collaboration with Texas A&M University, in the use of Boron and Graphite/epoxy patch repairs, including the patch design, surface preparation technique, and analytical and experimental data obtained prior to the award of the C141-B DIR contract. Although the overall C141-B DIR Program involved other repair and maintenance work, CTAS was able to respond to the challenges of the program on short notice, due to the groundwork laid with the composite patch repair technology through the IRAD Program. Also this paper describes the quality assessment of the manufactured and the installed Boron/epoxy patches through the non-destructive inspection (NDI) data acquired for the patches before and after installation on the aircraft.
机译:本文介绍了Chrysler Technologies Airborge Systems,Inc。(CTAS)通过内部资助的研究和开发计划(IRAD)在C141-B删除之前(IRAD)开发了独特的经验。修理(DIR)合同,随后支持在1993年8月至1994年10月期间支持合同奖励合同奖的合同要求的各种活动。美国空军的移动性在更多的时候受到威胁由于在载入底部机翼结构的裂缝裂解裂孔裂缝中,超过65%的C141-B飞机舰队面对接地,严重限制飞机的使用寿命达到45,000 SLA-II等效飞行时间。 WRALC已经决定修复大部分脉洞(限制为每翼最多的十五孔),使用硼/环氧复合贴片倍增倍频器作为近期补救措施,代替全翼板替代。这种选择使用硼/环氧贴片修复破裂的哭泣孔对WRALC具有吸引力,因为减少了维修的停机时间。本文阐述了CTA的伊拉德工作与德克萨斯州A&M大学合作,在使用硼和石墨/环氧贴片修复时,包括贴片设计,表面准备技术和在奖励之前获得C141的分析和实验数据-b dir合同。虽然整体C141-B DIR计划涉及其他维修和维护工作,但由于通过IRAD计划的组合补丁修复技术奠定了基础,CTA能够应对方案的挑战。此文介绍了通过在飞机上安装之前和之后获得的贴片的非破坏性检查(NDI)数据的制造和安装的硼/环氧斑块的质量评估。

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