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Effect of corrosive environment on the delamination strength of WC-Co coating deposited by high-velocity flame spraying

机译:腐蚀性环境对高速火焰喷涂沉积WC-CO涂层分层强度的影响

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摘要

WC-Co cermet was coated on the smooth tensile specimens of annealed tool steel (JIS:SKD5) by high-velocity flame spraying. For some specimens, the pores in the coating were sealed by Zn-plating. After the specimens were immersed into tap water or3%NaCl water, the tensile tests, where the load was applied parallel to the coating, were carried out in air to examine the change of interfacial energy by corrosive environments. With increasing tensile load, the coating is divided by several cracks andthe interval of cracks is decreased by the repeating process of division, and the delamination of coating occurs after the crack division has finished. The interfacial energy decreases with an increase in immersion time, and the degree of decrease islarger in the specimen immersed in 3%NaCl water than in tap water. The interfacial energy of the Zn-plated specimen is almost the same as the no-immersed specimen up to the immersion time of about 1000ks in 3%NaCl water, but it quickly decreases to reachthe same value as the no-plated specimen when the immersion time exceeds 1500ks. The interfacial energy is almost inversely proportional to the crack interval.
机译:通过高速火焰喷涂涂布WC-Co Cermet在退火工具钢(JIS:SKD5)的光滑拉伸标本上。对于一些标本,通过Zn电镀密封涂层中的孔。将样品浸入自来水或3%NaCl水中后,在空气中进行拉伸试验,其中载荷平行于涂层施加,以检查腐蚀环境的界面能量的变化。随着抗拉载荷的增加,涂层除以几个裂缝,并且通过分割的重复过程降低了裂缝的间隔,并且在裂纹分裂完成后发生涂层的分层。界面能量随着浸入时间的增加而降低,并将样品中的减少胰岛载体浸入3%NaCl水中而不是自来水。 Zn镀样试样的界面能量与浸入3%NaCl水中约1000ks的无浸渍时间几乎相同,但在浸入时迅速降低以达到与无镀样的标本相同的值时间超过1500ks。界面能量几乎与裂缝间隔成反比。

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