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The improvement is mainly characterized by (1) a much stronger mechanical strength, (2) an essentially homogeneous morphology with the liquid crystalline component uniformly dispersed, and (3) an enlarged liquid crystalline phase in some cases.
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Since bone is much stronger in compression, this creates another mechanical advantage for locking plates, which may be particularly useful for low-density bone where screw cut out is a problematic failure mode.
Mechanically, bioceramics are much stronger than polymers and play a critical role in providing mechanical stability to construct prior to synthesis of new bone matrix by cells.
Problems that include thermal and mechanical contact, such as the contact between the fuel and cladding in the fuel simulation, exhibit much stronger two-way feedback between the thermal and mechanical solutions, and as a result, are better solved using a tight coupling strategy.
This is one of the disadvantages of Si nanowall; however, the Si nanowall is much stronger than Si nanowire from the viewpoint of mechanical strength.
The study revealed that metakaolin exhibits much stronger pozzolanic activity than brick dust, and that the mechanical properties of pastes are not necessarily enhanced by the addition of pozzolans.
In comparison with the Mg-composites with large size Ni Mn Ga particles, the composites with small size particles would have a much stronger interfacial reactions, which was detrimental to the phase transformation and mechanical ductility of the composites.
Quantum mechanical theory makes it possible to calculate from vibrational spectra just how much stronger the bond to the heavier isotope is.
Cellulose-based ACFs possess much weaker mechanical properties than CFs although the adsorption ability of the former is much stronger than the latter [3].
The improvement is due to the enhanced interfacial bonding between the polymer and fibers, which was much stronger than that between the inorganic phase and fibers, making the fibers adequately contribute to the mechanical strength of the three-component composite.
The mechanical strength in the case of the alloy method was estimated to be 2 GPa which was much stronger than 500 MPa in the case of the carbon method.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com