Examples of 'matrix phase' in a sentence
Meaning of "matrix phase"
matrix phase: a phase in which complex situations or patterns overlap
How to use "matrix phase" in a sentence
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matrix phase
Composites are classified according to their matrix phase.
It is preferred that the matrix phase is a propylene homopolymer.
The matrix phase can be amorphous or partly crystalline.
By continuous phase is meant the matrix phase in a heterogeneous blend.
The homopolymer matrix phase of the heterophasic copolymer is predominantly propylene homopolymer.
Heterophasic polymers are polymers having a matrix phase and a dispersed phase.
Preferably the matrix phase is bimodal in view of the comonomer content.
In this way a high stiffness of the matrix phase can be achieved.
Its majority matrix phase is the close packed hexagonal alpha phase of titanium.
There is no debonding between the dispersed phase and the matrix phase.
The crystalline thermoplastic resin matrix phase can be a polyphenylene sulfide.
The drops can not be leached because they are enveloped by the matrix phase.
The particles comprise a vitreous matrix phase containing a crystalline alumina phase.
Compatibility between the polymers means that the dispersed phase adheres to the matrix phase.
Peak melting points of the matrix phase and oriented phase were thereby determined.
See also
Upon cooling, the material possesses a metastable martensitic matrix phase.
These matrix phase and grafted copolymers will have about the same composition for a given formulation.
The propylene impact copolymer composition comprises a matrix phase and a dispersed phase.
Preferably, a unimodal matrix phase is polymerized as a slurry polymerization.
A filled polymer having a nanoscale filler chemically bonded to a matrix phase may be additionally present.
Step of forming a matrix phase out of silicon carbide ; and.
In addition, problems in dispersing the rubber in the matrix phase are encountered.
A third, matrix phase may also be provided in some embodiments.
FTIR is a preferred method when the matrix phase contains no comonomer.
Also, the matrix phase of the polymeric components must be miscible.
Also, small magnetic field change magnetization of matrix phase only, and it is reversible.
The matrix phase of the heterophasic propylene copolymer may be a propylene homo - or copolymer.
Suitable materials for the matrix phase include solvents, glasses and polymers.
In another embodiment, the polymer particles may form a second, continuous matrix phase.
In preferred embodiments, the matrix phase comprises at least two propylene polymer components.
Also, a weak magnetic field shifts the magnetization of the matrix phase only and is reversible.
In such a system, the matrix phase properties typically dominate the properties of the blend.
Further, Cu contributes also to improvement of the quenchability of the matrix phase.
A matrix phase obtained by a liquid process, such as a resin coke, has relatively low thermal conductivity.
It is especially preferred that the comonomer units in matrix phase ( A ) are ethylene comonomer units.
Hence, the matrix phase is preferably multimodal, more preferably bimodal.
Preferably the failure strain of the matrix phase is at least 5 %.
Alternatively, the matrix phase may be combined by mechanical ( melt ) blending different propylene polymer components.
However, it is preferred that the propylene homo - or copolymer matrix phase ( M ) is unimodal.
In a preferred embodiment matrix phase ( A ) consists of a single propylene random copolymer.
According to another embodiment of the present invention, the matrix phase ( M ) is a propylene homopolymer.
The matrix phase 1 is not uniform and is composed of two very distinct regions 7 and 8,.
The propylene homo - or copolymer matrix phase ( M ) can be unimodal or multimodal, like bimodal.
Conventional heterophasic polypropylene polymers are based on a matrix phase and a partly amorphous C3/C2 phase.
Preferably, the unimodal matrix phase ( M ) is polymerized as a slurry polymerization.
In a preferred embodiment, the resin consists of the matrix phase ( A ) and the dispersed phase ( B ).
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