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Some Considerations For The Routine Testing Of Thermal Sprayed Coatings

机译:热喷涂层常规测试的一些注意事项

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Revealing the true properties is of utmost importance for the optimized use of thermal sprayed coatings and for the realization of the ultimate spray booth. The necessity of the true properties for a successful correlation as well as development of process windows for on-line control cannot is emphasized. Only the true properties can be expected to correlate to the spray parameters or the particle properties in the flame. What is actually meant when stating the following? 1. The coating has 5% porosity 2. Tensile bond is 50MPa 3. Hardness is 1000HV 4. Coating thickness is 100 μm Different loopholes during the steps of metallographic preparation, hardness and tensile bond strength testing are highlighted and discussed. The microstructure of a thermally sprayed coating typically consists of a multiphase matrix (often a mix between hard, soft and amorphous), pores, oxides, delaminations, cracks, grit residues and unmelted particles. Due to this complexity in the structure there are a number of possible errors that often can be made in metallographic laboratories. Several examples and explanations are given. It is shown that improper handling in the materials laboratory may lead to smearing and pullouts etc. This will ruin the results and effectively hide the true microstructure. Furthermore the use of different epoxies and curing methods effectively varies the tensile bond strength test results by more than 300% for various coatings. By using different preparation routines the micro hardness can be varied by more than HV_(0.3) 100.
机译:对于热喷涂涂层的优化使用和最终喷涂室的实现,揭示真实特性至关重要。不能强调必须具有用于成功关联的真实属性以及开发用于在线控制的过程窗口的必要性。只能预期真实特性与火焰中的喷雾参数或颗粒特性相关。说明以下内容实际上是什么意思? 1.涂层的孔隙率为5%。2.拉伸强度为50MPa。3.硬度为1000HV。4.涂层厚度为100μm。着重讨论了金相制备,硬度和拉伸强度测试中的不同漏洞。热喷涂涂层的微观结构通常由多相基质(通常是硬质,软质和非晶质之间的混合物),孔隙,氧化物,分层,裂纹,砂砾残留物和未熔融颗粒组成。由于结构的这种复杂性,在金相实验室中经常会出现许多可能的错误。给出了几个示例和说明。结果表明,材料实验室处理不当可能会导致涂污和拉出等现象。这将破坏结果并有效隐藏真实的微观结构。此外,对于各种涂料,使用不同的环氧树脂和固化方法可以有效地将拉伸粘合强度测试结果相差300%以上。通过使用不同的制备程序,显微硬度的变化可以超过HV_(0.3)100。

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