Evolution of Damage in All-Oxide Ceramic Matrix Composite After Cyclic Loading

被引:11
|
作者
Kupsch, Andreas [1 ]
Laquai, Rene [1 ,2 ]
Mueller, Bernd R. [1 ]
Paciornik, Sidnei [1 ,3 ]
Horvath, Juergen [4 ]
Tushtev, Kamen [4 ]
Rezwan, Kurosch [4 ,5 ]
Bruno, Giovanni [1 ,6 ]
机构
[1] Bundesanstalt Materialforsch & Prufung, BAM, Unter Eichen 87, D-12205 Berlin, Germany
[2] Phys Tech Bundesanstalt, PTB, Bundesallee 100, D-38116 Braunschweig, Germany
[3] PUC Catholic Univ Rio de Janeiro, Dept Chem & Mat Engn, Rua Marques de Sao Vicente 225, BR-22451900 Rio De Janeiro, RJ, Brazil
[4] Univ Bremen, Adv Ceram, Biol Garten 2, D-28359 Bremen, Germany
[5] Univ Bremen, MAPEX Ctr Mat & Proc, Biol Garten 2, D-28359 Bremen, Germany
[6] Univ Potsdam, Inst Phys & Astron, Karl Liebknecht Str 24-25, D-14476 Potsdam, Germany
关键词
ceramic matrix composites; homogenization schemes; microcracking; nonlinear behaviors; synchrotron X-ray refraction radiography; X-RAY REFRACTION; MECHANICAL-BEHAVIOR; CRACK DEFLECTION; MODEL; MICROSTRUCTURE; MICROCRACKING; INTERFACES; DENSITY; TENSILE; TOLERANT;
D O I
10.1002/adem.202100763
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
While structural ceramics usually display a brittle mechanical behavior, their composites may show nonlinearities, mostly due to microcracking. Herein, the stiffness evolution of a sandwich-like laminate of an Al2O3-15%vol. ZrO2 matrix reinforced with Nextel 610 fibers is studied as a function of number of cycles N in tension. The stiffness of the composite degrades with increasing N, indicating microcracking. However, synchrotron X-ray refraction radiography shows that the internal specific surface of such cracks varies differently. A modeling strategy is developed for the calculation of the equivalent stiffness of mixtures (first the matrix and then the sandwich), based on the Voigt and Reuss schemes. The Bruno-Kachanov model is then used to estimate the initial microcrack density in the matrix (due to the thermal expansion mismatch) and the amount of microcracking increase upon cyclic loading. The stiffness in the composite degrades dramatically already after 20 000 cycles but then remains nearly constant. The combination of mechanical testing, quantitative imaging analysis, and modeling provides insights into the damage mechanisms acting: microcrack propagation is more active than microcrack initiation upon cyclic loading, but the second also occurs. This scenario is similar but not equal to previous results on porous and microcracked ceramics.
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页数:13
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