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High Temperature Cyclic Pressurization Of Titanium Ducts For Use In Aircraft Pneumatic Systems

机译:飞机气动系统中钛管的高温循环加压

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摘要

During service operation, the pneumatic system of a commercial aircraft is subjected to hot air pressure cycles, causing the stresses developed in the material to be of cyclic nature. Commercially pure titanium is one of the various metallic materials selected for use in the pneumatic system components. In order to provide information concerned with the service performance of the titanium ducts and their effects on material behavior, it was developed a pneumatic workbench capable of reproducing the temperature and pressure cycles found in flight conditions. This work has shown that it is feasible to conduct laboratory tests aimed at simulating the aging process suffered by the pneumatic system ducts. Their tensile and fatigue properties were observed to change in response to pressurization tests, and these changes were not related to chemical composition or surface degradation. The fractographic analysis of a failed duct revealed that fatigue cracks can nucleate in the vicinities of welding flaws and grow through the wall, causing a pressure drop due to air leakage.
机译:在维修操作期间,商用飞机的气动系统会经受热空气压力循环,从而使材料中产生的应力具有周期性。商业上纯钛是选择用于气动系统部件的各种金属材料之一。为了提供有关钛管的使用性能及其对材料性能影响的信息,开发了一种能够再现飞行条件下的温度和压力循环的气动工作台。这项工作表明,进行旨在模拟气动系统管道遭受的老化过程的实验室测试是可行的。观察到它们的拉伸和疲劳性能随压力测试而变化,并且这些变化与化学成分或表面降解无关。断裂管道的分形分析表明,疲劳裂纹会在焊接缺陷附近成核并穿过壁增长,从而由于漏气而导致压降。

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