Multi-phase materials are key for modern engineering applications. They are generally characterized by a high strength and ductility. Many of these materials fail by ductile fracture of the, generally softer, matrix phase. In this work we systematically study the influence of the arrangement of the phases by correlating the microstructure of a two-phase material to the onset of ductile failure. A single topological feature is identified in which critical levels of damage are consistently indicated. It consists of a small region of the matrix phase with particles of the hard phase on both sides in a direction that depends on the applied deformation. Due to this configuration, a large tensile hydrostatic stress and plastic strain is observed ...
Multi-phase material are frequently applied in a wide variety of products, as they posses a unique s...
Multi-phase material are frequently applied in a wide variety of products, as they posses a unique s...
The precise mechanisms underlying the failure of multi-phase materials may be strongly dependent on ...
Multi-phase materials are key for modern engineering applications. They are generally characterized ...
Multi-phase materials are key for modern engineering applications. They are generally characterized ...
Multi-phase materials are key for modern engineering applications. They are generally characterized ...
Multi-phase materials are key for modern engineering applications. They are generally characterized ...
Multi-phase materials are key for modern engineering applications. They are generally characterized ...
Multi-phase materials are key for modern engineering applications. They are generally characterized ...
AbstractMulti-phase material are frequently applied in a wide variety of products, as they posses a ...
Multi-phase material are frequently applied in a wide variety of products, as they posses a unique s...
Multi-phase material are frequently applied in a wide variety of products, as they posses a unique s...
AbstractMulti-phase material are frequently applied in a wide variety of products, as they posses a ...
Our goal is to unravel the mechanisms that lead to failure of a ductile two-phase material - that co...
Multi-phase materials are of great importance for engineering applications, because of their favorab...
Multi-phase material are frequently applied in a wide variety of products, as they posses a unique s...
Multi-phase material are frequently applied in a wide variety of products, as they posses a unique s...
The precise mechanisms underlying the failure of multi-phase materials may be strongly dependent on ...
Multi-phase materials are key for modern engineering applications. They are generally characterized ...
Multi-phase materials are key for modern engineering applications. They are generally characterized ...
Multi-phase materials are key for modern engineering applications. They are generally characterized ...
Multi-phase materials are key for modern engineering applications. They are generally characterized ...
Multi-phase materials are key for modern engineering applications. They are generally characterized ...
Multi-phase materials are key for modern engineering applications. They are generally characterized ...
AbstractMulti-phase material are frequently applied in a wide variety of products, as they posses a ...
Multi-phase material are frequently applied in a wide variety of products, as they posses a unique s...
Multi-phase material are frequently applied in a wide variety of products, as they posses a unique s...
AbstractMulti-phase material are frequently applied in a wide variety of products, as they posses a ...
Our goal is to unravel the mechanisms that lead to failure of a ductile two-phase material - that co...
Multi-phase materials are of great importance for engineering applications, because of their favorab...
Multi-phase material are frequently applied in a wide variety of products, as they posses a unique s...
Multi-phase material are frequently applied in a wide variety of products, as they posses a unique s...
The precise mechanisms underlying the failure of multi-phase materials may be strongly dependent on ...