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Erosion behavior of hydrophobic polytetrafluoroethylene (PTFE) coatings with different thicknesses

机译:不同厚度疏水聚四氟乙烯(PTFE)涂层的侵蚀行为

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摘要

The main purpose of the study is to explore the usage of polytetrafluoroethylene (PTFE) coatings to enhance slurry erosion (SE) resistance of hydro-machinery components. Although PTFE doesn't have enough hardness, however its hydrophobicity and good impact strength make it an interesting material to evaluate whether these properties could help in developing SE resistance in the parent hydro-machinery materials. Polytetrafluoroethylene (PTFE) is one of the leading materials for developing hydrophobic surfaces, which has numerous desirable properties like low friction coefficient, chemically neutral, and considerable thermal firmness. Therefore, in the present study, hydrophobic coatings of PTFE having three different thicknesses were produced (by sintering process) on a hydro-machinery steel SS410. The effect of thickness of hydrophobic coatings on the SE was analysed by conducting SE tests on the coated and uncoated steel SS410 with different combinations of operating parameters; namely average erodent particle size, slurry concentration, impingement angle and impact velocity. A relative study of different thickness of PTFE coatings vis-a-vis the bare steel SS410 was also conducted with respect to hydrophobicity. PTFE coating with minimum thickness showed the lowest erosion rate as compared to its counterparts. Moreover, the PTFE coating with minimum thickness showed superhydmphobic behavior with a contact angle of 159 degrees, which might have also imparted the best SE resistance. With regard to SE of all the candidate materials, impact velocity was found to be the most influencing operating parameter.
机译:该研究的主要目的是探讨聚四氟乙烯(PTFE)涂层的用途,以提高水机械组分的浆料腐蚀(SE)抗性。虽然PTFE没有足够的硬度,但是其疏水性和良好的冲击强度使其成为评估这些性质是否有助于在母体水力机械材料中发育硒抗性的有趣材料。聚四氟乙烯(PTFE)是用于开发疏水性表面的主要材料之一,其具有许多理想的性质,如低摩擦系数,化学中性和相当大的热力。因此,在本研究中,在水力机械钢SS410上产生(通过烧结过程)的PTFE的疏水涂层。通过用不同的操作参数的不同组合在涂覆的和未涂覆的钢SS410上进行SE试验,分析疏水涂层厚度对SE的影响;即平均侵蚀粒度,浆料浓度,撞击角和冲击速度。相对于疏水性,还对疏水性进行了不同厚度的PTFE涂层不同厚度的相对研究。与其对应物相比,具有最小厚度的PTFE涂层显示出最低的侵蚀率。此外,具有最小厚度的PTFE涂层显示出具有159度的接触角的超高步行为,这也可能赋予最佳的SE电阻。关于所有候选材料的SE,发现冲击速度是影响最大的操作参数。

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