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首页> 外文期刊>Tribology in Industry >Acid Aging Effects on Surfaces of PTFE Gaskets Investigated by Fourier Transform Infrared Spectroscopy
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Acid Aging Effects on Surfaces of PTFE Gaskets Investigated by Fourier Transform Infrared Spectroscopy

机译:傅立叶变换红外光谱法研究酸老化对PTFE垫片表面的影响

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This paper investigates the effect of a prolonged acid and thermal attack, on the surface of PTFE by Fourier Transform Infrared Micro-Spectroscopy (?FT-IR). The materials are commercialized by two alternative producers in form of Teflon tapes. These tapes are installed in process plants where tires moulds are cleaned inside a multistage ultrasonic process. In these cases, Teflon tapes, having a role of gaskets, show inexplicably phenomena of degradation in relatively short operation periods. Even considering that these gaskets are exposed to the combined effect of ultrasonic waves, temperature, humidity and acid attack, the PTFE properties of resistance nominally exclude the possibility of these severe erosion phenomena. An interesting explanation can be related to the potential presence in the cleaning solution, mainly based on sulfamic acid, of highly reactive chemical compounds, as chlorides and fluorides, originated by the disaggregation of elements from the tire composition and/or additives used as processing aids and/or by catalytic effect generated by fluorine produced by PTFE degradation. In general, up to 300 different chemical elements, both organic and inorganic, natural and synthetic, are merged in a tire. Since this composition is practically unknown, especially regarding additives and “unusual elements”, representing a secrecy of each tire manufactures, it is really complex to define the chemical composition of the cleaning solution with an appropriate precision. As a consequence, the gaskets have been treated with different mixtures of acids in the way to combine a larger range of possibilities. Thus, the ?FT-IR experimental characterization of PTFE surface properties followed an appropriate accelerated aging, aiming at actuating the specific mechanics of wearing as in industrial use. The different acid treatments adopted for accelerating the aging of gaskets have highlighted the different behaviour of the PTFE matrix, but also differences between manufacturers.
机译:本文通过傅立叶变换红外光谱(FT-IR)研究了长时间的酸和热侵袭对PTFE表面的影响。该材料由两家替代生产商以聚四氟乙烯胶带的形式商业化。这些胶带安装在加工厂中,在此工厂中,在多阶段超声过程中清洁轮胎模具。在这些情况下,具有垫圈作用的特氟龙胶带在相对较短的工作时间内就会出现莫名其妙的降解现象。即使考虑到这些垫圈都受到超声波,温度,湿度和酸侵蚀的综合影响,电阻的PTFE特性名义上仍排除了这些严重腐蚀现象的可能性。一个有趣的解释可能与清洁溶液中可能主要存在于氨基磺酸中的高反应性化合物(如氯化物和氟化物)的潜在存在有关,这是由于轮胎成分和/或用作加工助剂的添加剂分解产生的和/或通过PTFE降解产生的氟所产生的催化作用。通常,轮胎中会融合多达300种不同的化学元素,包括有机和无机,天然和合成。由于这种成分实际上是未知的,尤其是对于添加剂和“异常元素”而言,代表了每个轮胎制造商的机密性,因此以适当的精度定义清洗液的化学成分确实很复杂。结果,垫圈已经用不同的酸混合物处理过,以结合更大范围的可能性。因此,对PTFE表面性能的FT-IR实验表征是在适当加速老化之后进行的,目的是像在工业应用中那样激活特定的磨损机理。加快垫片老化所采用的不同酸处理方法突出了PTFE基体的不同性能,但也说明了制造商之间的差异。

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