Examples of 'amorphous polymers' in a sentence
Meaning of "amorphous polymers"
This phrase refers to a type of polymer material that lacks a definite or ordered molecular structure. Amorphous polymers do not have a regular arrangement of atoms or molecules, giving them unique properties such as transparency, flexibility, and an absence of melting point. They are used in a variety of applications including packaging, coatings, and adhesives
How to use "amorphous polymers" in a sentence
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amorphous polymers
Amorphous polymers are good in warpage and transparency.
Determination of glass transition temperature for amorphous polymers.
Amorphous polymers consist of randmoly ordered tangled chains.
The films deposited are inorganic and amorphous polymers.
Amorphous polymers biodegrade better than crystalline polymers.
This method is also employed for amorphous polymers.
Amorphous polymers consist of randomly ordered tangled chains.
Process for the preparation of amorphous polymers of propylene.
Amorphous polymers are generally transparent.
The preferred materials are amorphous polymers.
Amorphous polymers are usually transparent.
Suitable polyesters are linear thermoplastic crystalline or amorphous polymers.
The cavity nucleation in amorphous polymers has been also studied.
The amorphous polymers can have different molecular weights.
Mechanical properties of amorphous polymers.
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Only some amorphous polymers approach this level of performance.
The wet process is suitable for both crystalline and amorphous polymers.
These classes are called amorphous polymers and crystalline polymers.
The amorphous polymers of the invention do not show this type of transition.
These data indicate these are amorphous polymers with very low crystallinity.
Amorphous polymers are characterized in that they become progressively softer as temperature increases.
A major disadvantage of amorphous polymers is their low solvent resistance.
Suitable carbonising polymers are semi-crystalline or amorphous polymers.
Examples of amorphous polymers include polyvinyl acetate and polystyrene.
Yielding and necking were generally atypical for thermoplastic amorphous polymers at ambient conditions.
Elastomers are amorphous polymers that possess elasticity and viscosity properties.
Substantially non-crystalline or amorphous polymers are preferred.
Tg for amorphous polymers is highly correlated with HDT.
Other studies have elucidated the structures of amorphous polymers that form under prebiotic conditions.
Generally, amorphous polymers used without additives are transparent.
In equilibrium, the molecules of the amorphous polymers assume an entangled shape.
However, amorphous polymers are preferred over crystalline polymers.
In the case of thermosetting powder paints, amorphous polymers are mostly used.
That is, amorphous polymers are highly disordered and intertwined with other molecules.
Utilizable styrene polymers are all the amorphous polymers and copolymers having thermoplastic nature.
Generally such polyamides are semi-crystalline polymers, rather than amorphous polymers.
The resulting polymers are amorphous polymers and particularly transparent and heat resistant.
Commercial polyimide films are not semi-crystalline but ordered amorphous polymers.
The present invention relies on modifying the amorphous polymers to introduce a desired degree of crystallinity.
Amorphous polymers are also referred to as non-crystallizing polymers and high-viscosity liquids.
Heat resistance is thus given for amorphous polymers just below the glass transition temperature.
Thus, amorphous polymers do not have a distinct melting point but rather a softening or melting range.
Suitable transparent polymers are selected from the amorphous polymers of the above-mentioned list.
Additionally, amorphous polymers may be utilised where ultra-filtration membranes are required.
From a practical standpoint, this is the temperature at which amorphous polymers lose their load-bearing properties.
Other examples of suitable amorphous polymers include polyethersulfone, polycarbonate, polyetherimide, and polymethylmethacrylate.
All semicrystalline polymers exhibit a melting point, whereas the melting point is absent for amorphous polymers.
However, if amorphous polymers are employed, they are compatible and transparent films may be cast.
The aforementioned polymers (a) are preferably amorphous polymers.
Under such light, amorphous polymers appear dark and crystalline polymers appear bright.
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