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ANALYSIS OF THE THERMAL BEHAVIOR OF CERTAIN BABY TEATS
by
Alistar, Ana-Maria
, Lisa, Gabriela
, Mihailă, Andreea
, Florea, Roxana
in
Baby care products
/ Butadiene
/ Differential scanning calorimetry
/ Glass transition temperature
/ Heat transmission
/ Heat treating
/ Latex
/ Melt temperature
/ Polydimethylsiloxane
/ Rubber
/ Teats
/ Temperature effects
/ Thermal analysis
/ Thermodynamic properties
2017
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ANALYSIS OF THE THERMAL BEHAVIOR OF CERTAIN BABY TEATS
by
Alistar, Ana-Maria
, Lisa, Gabriela
, Mihailă, Andreea
, Florea, Roxana
in
Baby care products
/ Butadiene
/ Differential scanning calorimetry
/ Glass transition temperature
/ Heat transmission
/ Heat treating
/ Latex
/ Melt temperature
/ Polydimethylsiloxane
/ Rubber
/ Teats
/ Temperature effects
/ Thermal analysis
/ Thermodynamic properties
2017
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Do you wish to request the book?
ANALYSIS OF THE THERMAL BEHAVIOR OF CERTAIN BABY TEATS
by
Alistar, Ana-Maria
, Lisa, Gabriela
, Mihailă, Andreea
, Florea, Roxana
in
Baby care products
/ Butadiene
/ Differential scanning calorimetry
/ Glass transition temperature
/ Heat transmission
/ Heat treating
/ Latex
/ Melt temperature
/ Polydimethylsiloxane
/ Rubber
/ Teats
/ Temperature effects
/ Thermal analysis
/ Thermodynamic properties
2017
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Journal Article
ANALYSIS OF THE THERMAL BEHAVIOR OF CERTAIN BABY TEATS
2017
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Overview
The main advantages of thermal analysis methods are: small sample size (3-10 mg), a wide range of temperature variation programs that can be used, the samples under analysis can be in solid, liquid or gel state and relatively short experimental time. For the sample marked B3, Figure 3 also shows a detail with the variation of the heat flow within the 10 - 70°C range, in order to highlight the existence of the glass transition temperature at 34°C. By analyzing the melting (Tm) and glass transition (Tg) temperatures, one may gather information about the components found in the structure of the materials which the baby teats are made of. According to literature [712], these melting temperature values confirm the presence of polydimethylsiloxane in these samples. For sample B3 made of latex, we see in Figure 3 the existence of two glass transition temperatures Tg1=-60°C and Tg2=34°C. The analysis of literature [7] indicates the presence in this sample of butadiene-styrene rubber (Tg=-59.61°C) and possibly of 2-tert-butylaminoethyl methacrylate (Tg=33°C).
Publisher
Matrix Rom
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