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Influence of heat treatment on microstructure and tensile properties of conventionally cast and directionally solidified superalloy CM247LC

机译:热处理对常规铸造和定向凝固高温合金CM247LC的组织和拉伸性能的影响

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摘要

The influence of heat treatment on the evolution of γ' and tensile properties of the conventionally cast (CC) and the directionally solidified (DS) superalloy CM247LC has been extensively investigated. The tensile strength of the CC and the DS alloys is dependent upon aging and solution treatment condition. In the case of the CC specimen, the aged condition (HTA condition) has higher strength than the solution treated and aged condition (HTSA condition) at low temperature (at and below 650 ℃). On the contrary, HTSA specimen shows higher strength at high temperature (at and above 871 ℃). Shearing of γ' by coupled dislocations is a principal deformation process at the low temperature, and cutting of fine secondary γ' plays an important role at an early stage of deformation in the CC specimen. The HTSA condition exhibits higher strength than HTA condition in the DS specimen in all temperature range. High tensile strength of the HTSA specimen at high temperature is found to be attributed to the rafting of γ'.
机译:已经广泛研究了热处理对常规铸造(CC)和定向凝固(DS)高温合金CM247LC的γ'演变和拉伸性能的影响。 CC和DS合金的拉伸强度取决于时效和固溶处理条件。对于CC样品,在低温(650℃及以下)下,时效条件(HTA条件)比固溶处理时效条件(HTSA条件)强度更高。相反,HTSA试样在高温(871℃及以上)下显示出更高的强度。耦合位错对γ'的剪切是低温下的主要变形过程,而细小二次γ'的切割在CC试样变形的早期阶段起着重要的作用。在所有温度范围内,DS样品中的HTSA条件显示出比HTA条件更高的强度。发现高温下HTSA样品的高抗拉强度归因于γ'的漂流。

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