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Study into mechanical and electrochemical propertiesudof coating deposits and welded-coated componentsudusing the HVOF (High Velocity Oxy-Fuel) process.

机译:研究机械和电化学性能 ud涂层沉积物和焊接涂层组件 ud使用HVOF(高速氧燃料)工艺。

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摘要

The present study examines the metallurgical, mechanical and corrosion properties of High Velocity Oxy-Fuel (HVOF) thermal spray coatings of Inconel 625 powders on plain and welded surfaces of mild carbon and stainless steel (304). The research work carried out focused on coating adherence to base substrate, coating integrity and mechanical behavior of coating at the weld-substrate interface when subjected to tensile and fatigue loads. The solid bar and sheet specimens were tested and prepared in accordance with the test standards "Standard Test Method for Adhesion or Cohesion Strength of Thermal Spray Coatings". The specimens were tensile and fatigue tested pre and post exposure to brine. SEM and EDS analysis were carried out to examine the surface morphology and microstructure of the coatings.ududThe specimens that were subjected to a corrosion environment for an extended period of three weeks failed at a lower tensile load than those that were not exposed to corrosive environment. Shear deformation of the adjacent zones at the coating-substrate interface resulted in the total failure of the coating. However, in some cases, the coating was almost free from voids or pores and was impervious to electrolytic or any other contaminants. This result was observed from tests performed on different sets of specimens to identify brine exposure effects on coating adherence to the substrate. Foreign materials were observed beneath the coating due to improper surface preparation during the specimen preparation prior to coating. From tensile tests results it was observed that the bond strength of the coating reduced due to corrosion effect which caused degradation of the coating adhesion to the specimen's surface. This is probably due to the formation of oxides on carbon steel surfaces during coating. Due to expected progressive oxidation, coating adherence was continuously degraded with lowering bond strength. Fatigue results revealed that an excess of 15 thousand cycles without cracking was demonstrated by the stainless steel coated specimens assuring the fatigue strength. The fatigue life resistance of the stainless steel coated specimens exceeded .that of the coated carbon steel specimens. Moreover, the imperfection at the interface resulted during coating could cause early initiation of cracks in the coating, therefore, thus lowering the fatigue strength.
机译:本研究研究了在低碳和不锈钢(304)的平整表面和焊接表面上使用Inconel 625粉末的高速氧燃料(HVOF)热喷涂涂层的冶金,机械和腐蚀性能。研究工作的重点是涂层在基础和基底上的附着力,涂层完整性以及在承受拉伸和疲劳载荷时在焊接-基底界面处的涂层机械性能。根据测试标准“热喷涂涂层的附着力或内聚强度的标准测试方法”,测试并准备了固态棒状和片状样品。在暴露于盐水之前和之后,对样品进行拉伸和疲劳测试。进行了SEM和EDS分析,以检查涂层的表面形态和微观结构。 ud ud与未暴露于腐蚀环境的样品相比,在腐蚀环境下持续了三周的拉伸样品在较低的拉伸载荷下失效腐蚀性环境。涂层-基材界面处相邻区域的剪切变形导致涂层完全失效。但是,在某些情况下,涂层几乎没有空隙或孔隙,并且不能渗透电解或任何其他污染物。从对不同组样品进行的测试中可以观察到该结果,以识别盐水暴露对涂层对基材粘附的影响。由于在涂层之前样品制备过程中表面处理不当,在涂层下面观察到异物。从拉伸试验结果可以看出,涂层的粘结强度由于腐蚀作用而降低,腐蚀作用导致涂层对样品表面的粘附力下降。这可能是由于在涂覆过程中碳钢表面上形成了氧化物。由于预期的渐进氧化,涂层附着力随着粘合强度的降低而不断降低。疲劳结果表明,通过确保疲劳强度的不锈钢涂层试样,证明了超过1.5万次循环而没有开裂。不锈钢涂层试样的疲劳寿命超过了涂层碳钢试样的疲劳寿命。此外,在涂覆过程中在界面处产生的缺陷会导致涂层中裂纹的早期产生,因此降低了疲劳强度。

著录项

  • 作者

    Boudi Adnan Abdullatif;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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