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We also study piezoelectric fields induced by inclusions in materials with cubic and hexagonal lattices.
The threshold frequencies of acoustic and rotational waves in some crystalline materials with cubic symmetry are estimated.
Open cell materials with cubic anisotropy and structures made thereof are investigated with respect to their linear viscoelastic properties, in particular their relaxation behavior.
Existing strain-rate potentials (phenomenological or texture-based) are applicable only to the description of the plastic behavior of materials with cubic crystal structure.
These modules are then combined and solved to maximize bulk modulus and permeability in periodic materials with cubic elastic and isotropic flow symmetries.
The derivation employs the hyperspherical harmonic expansion for orientation distributions, and an explicit solution is presented for materials with cubic crystal symmetry and arbitrary textures.
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In this work, we develop an amorphous P (αP) anode material with cubic boron nitride (c-BN) as a mechanical skeleton wrapped by nanoporous graphene (pGra) networks, which can combine synergistically the advantages of pGra and c-BN, and hence simultaneously solve the challenges for the P-based anodes.
This means that materials with a cubic or pseudocubic structure will normally form isotropic particles in a thermodynamic decided process.
On the other hand, materials with the cubic structure such as GaAs and InP are exhibited only single "pop-in" characteristic [22].
Primary particles of both materials were crystalline with cubic lattice as it is the characteristic for cerianite and had irregular, but roughly globular shapes.
The results reveal for both aluminium alloys that the fatigue strength decreases with increasing number of cycles, which is known for materials with face-centred cubic lattice.
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