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Dependence of Incidence Angle and Flux Density in the Damage Effect of Atomic Oxygen on Kapton Film.

Polymers (Basel) · 2022 · PMC9781240 · PMID 36559810

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a decreasing trendno p-value reported
As the simulation time grew, the mass changes at different dose rates showed a decreasing trend.

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an increasing trendno p-value reported
The mass loss at all incidence angles showed an increasing trend with increasing flux density, which is consistent with the results of Kim et al. regarding the variation in dose rate parameters [ 16 ].

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showed a trendno p-value reported
The mass of the material at all incidence angles showed a trend of increasing and then decreasing, which is the same as in the results of the atomic oxygen tests and simulations of Kapton materials performed by other researchers [ 21 , 36 ].

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Quoted from the open-access full text in Europe PMC under the licence the publisher applied. The sentence is reproduced exactly as published; the emphasis is ours.