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Effects of environment on creep behavior of two oxide/oxide ceramic–matrix composites at 1200 °C

机译:环境对两种氧化物/氧化物陶瓷基复合材料在1200°C时蠕变行为的影响

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摘要

The tensile creep behavior of two oxide/oxide ceramic–matrix composites (CMCs) was investigated at 1200 °C in laboratory air, in steam, and in argon. The composites consist of a porous oxide matrix reinforced with laminated, woven mullite/alumina (Nextel™720) fibers, have no interface between the fiber and matrix, and rely on the porous matrix for flaw tolerance. The matrix materials were alumina and aluminosilicate. The tensile stress–strain behavior was investigated and the tensile properties were measured at 1200 °C. Tensile creep behavior of both CMCs was examined for creep stresses in the 80–150 MPa range. Creep run-out defined as 100 h at creep stress was achieved in air and in argon for stress levels ≤100 MPa for both composites. The retained strength and modulus of all specimens that achieved run-out were evaluated. The presence of steam accelerated creep rates and reduced creep life of both CMCs. In the case of the composite with the aluminosilicate matrix, no-load exposure in steam at 1200 °C caused severe degradation of tensile strength. Composite microstructure, as well as damage and failure mechanisms were investigated. Poor creep performance of both composites in steam is attributed to the degradation of the fibers and densification of the matrix. Results indicate that the aluminosilicate matrix is considerably more susceptible to densification and coarsening of the porosity than the alumina matrix.
机译:在实验室空气,蒸汽和氩气中,在1200°C下研究了两种氧化物/氧化物陶瓷基复合材料(CMC)的拉伸蠕变行为。该复合材料由多孔氧化物基体组成,该基体由层压的机织莫来石/氧化铝纤维(Nextel™720)增强,在纤维和基体之间没有界面,并且依靠多孔基体具有耐缺陷性。基质材料是氧化铝和铝硅酸盐。研究了拉伸应力-应变行为,并在1200°C下测量了拉伸性能。在80-150 MPa范围内,检查了两种CMC的拉伸蠕变行为的蠕变应力。对于两种复合材料,在空气和氩气中达到≤100MPa的应力水平时,在蠕变应力下均达到了100 h的蠕变跳动。评估了所有跳动的样品的保留强度和模量。蒸汽的存在加快了两个CMC的蠕变速率并降低了其蠕变寿命。对于具有铝硅酸盐基质的复合材料,在1200°C的蒸汽中无负荷暴露会导致拉伸强度严重降低。研究了复合材料的微观结构,以及破坏和破坏机理。两种复合材料在蒸汽中的蠕变性能差归因于纤维的降解和基质的致密化。结果表明,铝硅酸盐基体比氧化铝基体更容易致密化和孔隙率变粗。

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