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Thermal barrier coatings with high fracture toughness underlayer for improved impact resisitance

机译:具有高断裂韧性底层的隔热涂层,可提高抗冲击性

摘要

A reduced thermal conductivity thermal barrier coating (26) having improved impact resistance for an underlying substrate (14) of articles (10) that operate at, or are exposed to, high temperatures. This coating (22) comprises an inner high fracture toughness layer (26) nearest to the underlying substrate (14) and having a thickness up to 127 microns sufficient to impart impact resistance to the thermal barrier coating, and comprises a zirconia-containing ceramic composition having a c/a ratio of the zirconia lattice in the range of from about 1.011 to about 1.016 and stabilized in the tetragonal phase by a stabilizing amount of a stabilizing metal oxide selected from the group consisting of yttria, calcia, ceria, scandia, magnesia, india, lanthana, gadolinia, neodymia, samaria, dysprosia, erbia, ytterbia, europia, praseodymia, and mixtures thereof. The thermal barrier coating further includes an outer thermal insulating layer adjacent to and overlaying the inner layer and comprising a ceramic thermal barrier coating material. Thermal barrier coating (22) can be used to provide a thermally protected article (10, 110) having a substrate (e.g., metal substrate) (14) and optionally a bond coat layer (18) adjacent to and overlaying the substrate (14). The thermal barrier coating (22) can be prepared by forming the inner high fracture toughness layer (26), followed by forming on the inner layer (26) the outer thermal insulating layer (30).
机译:具有降低的热导率的隔热涂层(26),其对在高温下或暴露于高温下的制品(10)的下层基材(14)具有改进的抗冲击性。该涂层(22)包括最接近下面的基底(14)的内部高断裂韧性层(26),其厚度最大为127微米,足以赋予隔热涂层以抗冲击性,并包含含氧化锆的陶瓷组合物。氧化锆晶格的ac / a比率在约1.011至约1.016的范围内,并通过稳定量的稳定金属氧化物稳定在四方相中,所述稳定金属氧化物选自氧化钇,氧化钙,二氧化铈,scan,氧化镁,印度,lanthana,gadolinia,neodymia,samaria,dysprosia,erbia,ytterbia,europia,praseodymia及其混合物。隔热涂层还包括外部隔热层,该隔热层邻近并覆盖内层并且包含陶瓷隔热涂层材料。隔热涂层(22)可用于提供热保护制品(10、110),其具有基底(例如,金属基底)(14)以及任选地邻近并覆盖基底(14)的粘结涂层(18)。 。可以通过形成内部高断裂韧性层(26),然后在内部层(26)上形成外部隔热层(30)来制备隔热涂层(22)。

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