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Isothermal Lcf Behavior In Aluminide Diffusion Coated Rene 80 Near The Dbtt

机译:在Dbtt附近的铝化物扩散涂层的Rene 80中的等温Lcf行为

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摘要

Ni-base superalloys such as Rene 80 are widely used for aircraft turbine blades manufacture, due to possesses suitable mechanical, oxidation and hot corrosion properties. It is usually coated in order to increase its wear, oxidation, erosion and hot corrosion properties against environmental degradation. One the most important properties of coatings is its DBTT. In this paper the behavior of uncoated and coated (CODEP-B) Rene 80 has been studied near the DBTT (871 ℃), R = (ε_(min)/ε_(max)) = 0 and strain rate of about 2 × 10~(-3) s~(-1). Experimental results show that in coated specimens while the total cyclic strain is lower than 1%, coating leaves longer fatigue life, at this condition the nucleation of the cracks occurs merely in substrate, but in strains more than 1% as a result of nucleation of cracks in the coating surface, diffusion layer and substrate simultaneously, fatigue life time of the coated specimens is lower than that of uncoated specimens.
机译:镍基超合金(如Rene 80)由于具有合适的机械,氧化和热腐蚀性能而被广泛用于飞机涡轮叶片的制造。通常对其进行涂层处理,以增加其抗磨损,抗氧化,抗腐蚀和抗热腐蚀性能,以防止环境退化。涂料最重要的性能之一是其DBTT。本文研究了在DBTT(871℃)附近,R =(ε_(min)/ε_(max))= 0,应变率约为2×10时,未涂覆和涂覆(CODEP-B)Rene 80的行为。 〜(-3)s〜(-1)。实验结果表明,在涂层试样中,虽然总循环应变低于1%,但涂层具有更长的疲劳寿命,在这种情况下,裂纹的形核仅发生在基体中,而在超过1%的应变中,则是由于形核的结果。涂层表面,扩散层和基材同时出现裂纹,涂层试样的疲劳寿命比未涂层试样的疲劳寿命低。

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