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The creep and stress relaxation behaviour of the composite material was analysed to identify an optimal composition for bone tissue engineering.
Two different sizes of particle composition enabled significant increase in fracture behaviour of the composite for a given constant volume fraction.
Experiments are conducted to determine mechanical behaviour of the composite.
According to Brandt et al.[13], irradiance, more than radiance exposure, determines the behaviour of the composite after ethanol storage.
The behaviour of the composite material under thermal, thermo-chemical and mechanical loads is studied.
Quasi-static axial crushing behaviour of the composite keel beam is investigated experimentally.
A residual stiffness model, which describes the fatigue damage behaviour of the composite material, was adopted.
Dry sliding wear behaviour of the composite was tested and compared with Al/SiCp composite.
Coarse aggregates are not used as they tend to increase fracture toughness which adversely affects the unique ductile behaviour of the composite.
All these characteristics may account for the good behaviour of the composite in terms of hot rolling capability.
Analysis of variance (ANOVA) was also employed to investigate which design parameters significantly affected the wear behaviour of the composite.
More suggestions(15)
behaviour of the strong
behaviour of the compounds
behaviour of the political
characteristics of the composite
behaviour of the composed
behaviour of the different
behaviour of the African
behaviour of the outgoing
behaviour of the central
behaviour of the unified
behaviour of the heterogeneous
behaviour of the iterative
behaviour of the dynamic
behaviour of the solid
behaviour of the natural
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