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首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Alternate Environmentally Friendly De-Painting Process for Aircraft Structures-Atmospheric Plasma
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Alternate Environmentally Friendly De-Painting Process for Aircraft Structures-Atmospheric Plasma

机译:用于飞机结构 - 大气压等离子体的替代环​​保脱墨工艺

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During the lifetime of aircraft structures, paint removal and re-application cycles are conducted to restore appearance and to enable inspection for fatigue cracks and corrosion damages. Current paint removals processes, including chemical and abrasive media blasting, yield large amounts of volatile organic compounds and hazardous air pollutants, and generate large quantities of waste which require proper disposal/treatment. They also have the potential to mask surface cracks and decrease the effectiveness of Liquid Penetrant Inspections (LPI). This study compares current paint stripping methods to a novel Atmospheric Plasma (AP) system, which claims to be a more environmentally friendly method. Aluminium and steel coupons were prepared with military aircraft quality topcoat and primer paint schemes and subjected to the three aforemen-tioned paint stripping processes. The results were then characterized in terms of paint removal effectiveness, potential damages to the metallic substrates, and effect on the LPI process. Hardness and conductivity measurements as well as metallographic sectioning and microscopy, were used to characterize the stripped samples. The results indicated that AP had no negative ramifications on detecting fatigue cracks in the substrates, and did not alter the temper, mechanical properties of the aerospace alloys studied. The AP process has the potential to replace current hazardous and less environmentally friendly paint removal methods; though a full systematic qualification and evaluation process is still required for it to be considered as an accepted industrial paint removal process.
机译:在飞机结构的寿命期间,进行涂料去除和再施加循环以恢复外观,并为疲劳裂缝和腐蚀损坏进行检查。目前的涂料除去方法,包括化学和磨料介质喷砂,产生大量的挥发性有机化合物和有害空气污染物,并产生大量的废物,需要适当的处置/处理。它们还具有掩盖表面裂缝并降低液体渗透检查(LPI)的有效性。该研究将当前涂料剥离方法与新型大气等离子体(AP)系统进行比较,这声称是一种更环保的方法。用军用飞机质量面漆和底漆涂料方案制备铝和钢优惠券,并进行三种上述三个涂料剥离过程。然后将结果表征在涂料去除效果,对金属底物的潜在损害以及对LPI过程的影响。硬度和电导率测量以及金相切片和显微镜,用于表征被剥离的样品。结果表明,AP在检测底物中的疲劳裂缝上没有阴性后果,并且没有改变所研究的航空航天合金的脾气性。 AP工艺具有替代电流危险和更少环保的涂料去除方法;虽然仍然需要完整的系统资格和评估过程,但被视为被视为已接受的工业涂料去除过程。

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