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Thermogravimetric analysis, additive

This phenomenon can be demonstrated by both measuring the changes of the thermal properties of the ECA homopolymer and in adhesion tests. The addition of only 1 wt.% of 9 to a sample of the ECA homopolymer significantly increases the onset of decomposition in the thermogravimetric analysis (TGA) of the polymer, as seen in Fig. 9 [29]. [Pg.860]

The modified NBR samples were characterized by differential scanning calorimetry [11,78-80,98]. The glass-transition temperature (T ) decreased with the level of hydrogenation. In the case of HFNBR, Tg increased with an increase in the addition of aldehyde groups to the polymer chain. Thermogravimetric analysis of the modified polymers have also been carried out [15]. [Pg.570]

V,iV -diphenylthiourea (H2L) has been reacted with Ni11 to give the neutral complex [Ni(HL)2], which has been characterized using spectroscopic and thermogravimetric analysis. In addition, the stability constants for [Ni(HL)]+ and [Ni(HL)2] have been determined spectrophotometrically.1013... [Pg.337]

Cobalt-on-alumina catalysts with increased dispersion and catalytic activity are prepared by addition of mannitol to the cobalt nitrate solution prior to impregnation. Thermogravimetric analysis (TGA) and in situ visible microscopy of the impregnation solution show that the organic compound reacts with cobalt nitrate, forming a foam. The foam forms because significant amounts of gas are released through a viscous liquid. The structure of the foam is retained in the final calcined product. It is this effect that is responsible for the increased dispersion. [Pg.1]

Chemical, Physical, and Mechanical Tests. Manufactured friction materials are characterized by various chemical, physical, and mechanical tests in addition to friction and wear testing. The chemical tests include thermogravimetric analysis (tga), differential thermal analysis (dta), pyrolysis gas chromatography (pgc), acetone extraction, liquid chromatography (lc), infrared analysis (ir), and x-ray or scanning electron microscope (sem) analysis. Physical and mechanical tests determine properties such as thermal conductivity, specific heat, tensile or flexural strength, and hardness. Much attention has been placed on noise /vibration characterization. The use of modal analysis and damping measurements has increased (see Noise POLLUTION AND ABATEMENT). [Pg.275]

Recently, PU/PDMS hybrid materials (with different PDMS content) were synthesized by a two-step addition reaction.29 Thermogravimetric analysis indicated that no enhancement in the thermal... [Pg.188]

Thermogravimetric analysis (DTG) confirmed the results of the CHN analysis regarding the content of organic substances and additionally gave information about the... [Pg.89]

In addition a thermogravimetric analysis of these polymers was carried out. Their thermal stability was evaluated in the following sequence of the onset decomposition temperature P(cgTFSI) (T = 389°C) > P(dgTFSI) (T = 382°C) > P(egTFSI) T=3Sl°C) > P(bgTFSI) (T=371°C). From these results the IL-type polymer brushes were determined to be thermally stable up to around 400°C. This is an excellent property for application to electrochemical devices. [Pg.367]

A recent study on the stability of various indium alkyl derivatives has been performed using differential scanning calorimetry (DSC), which provides a comprehensive thermal fingerprint of the compounds. In addition, when this method of thermal analyses is used in conjunction with thermogravimetric analysis coupled to FTIR and/or GCMS evolved gas analysis, it can provide a complete mechanism for the decomposition pathway of prospective compounds. ... [Pg.1696]


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See also in sourсe #XX -- [ Pg.108 , Pg.109 ]




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Thermogravimetric analysis

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