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Substrate priming

Polished steel substrates primed with plasma polymerized acetylene films were immersed into a stirred mixture of these materials at a temperature of 155 5°C to simulate the curing of rubber against a primed steel substrate. During the reaction, the mixture was continuously purged with nitrogen to reduce oxidation. At appropriate times between 1 and 100 min, substrates were removed from the mixture, rinsed with hexane ultrasonically for 5 min to remove materials that had not reacted, dried, and examined using RAIR. The RAIR spectra obtained after reaction times of 0, 15, 30, and 45 min are shown in Fig. 13. [Pg.256]

Surface protection A thin protective metal oxide layer can be formed on the surface of organic or inorganic substrates Priming of the substrate by solutions of titanium/zirconate or by partial hydrolyzing and heating or chemical vapor deposition... [Pg.192]

Not all enzyme interactions are competitive. One cooperative enzyme reaction takes place when a substrate primes an enzyme with multiple reactive sites to accept additional substrate molecules. Thus, the presence of substrate enhances the enzyme and makes it more effective. [Pg.137]

The CKI family is highly conserved monomeric serine-threonine protein kinases. Mammalian contain several CKI isoforms, which are a, p, Y/ 8 and e. CKI prefer substrates primed by prior phosphorylation and works closely with other kinases in the Wnt pathway (Cheong Virshup, 2011) First, CKI is itself regulated by posttranslational modification... [Pg.71]

Cathodic Protection Systems. Metal anodes using either platinum [7440-06 ] metal or precious metal oxide coatings on titanium, niobium [7440-03-17, or tantalum [7440-25-7] substrates are extensively used for impressed current cathodic protection systems. A prime appHcation is the use of platinum-coated titanium anodes for protection of the hulls of marine vessels. The controUed feature of these systems has created an attractive alternative... [Pg.119]

Electrical Properties. Polysulfones offer excellent electrical insulative capabiUties and other electrical properties as can be seen from the data in Table 7. The resins exhibit low dielectric constants and dissipation factors even in the GH2 (microwave) frequency range. This performance is retained over a wide temperature range and has permitted appHcations such as printed wiring board substrates, electronic connectors, lighting sockets, business machine components, and automotive fuse housings, to name a few. The desirable electrical properties along with the inherent flame retardancy of polysulfones make these polymers prime candidates in many high temperature electrical and electronic appHcations. [Pg.467]

Fleece-Back Sheet. A fleece-back sheet is a nonreinforced polymeric membrane that has had a nonwoven mat made of polyester, weighing 101.7—203.4 g/m, laminated to the back of the sheet. The prime use of the fleece-back sheet is in the fully adhered roofing systems. The fleece provides the chemical separator, which eliminates the need for an adhesive that is compatible with the specific membrane or a compatible substrate. [Pg.213]

Tsai et al. have also used RAIR to investigate reactions occurring between rubber compounds and plasma polymerized acetylene primers deposited onto steel substrates [12J. Because of the complexities involved in using actual rubber formulations, RAIR was used to examine primed steel substrates after reaction with a model rubber compound consisting of squalene (100 parts per hundred or phr), zinc oxide (10 phr), carbon black (10 phr), sulfur (5 phr), stearic acid (2 phr). [Pg.255]

One of the biggest challenges in this industry is the wide variety of substrates that can be encountered for any given application. Not only can the materials be substantially different in their chemical make up, but they may also be quite different in surface roughness, surface curvature and thermal expansion behavior. To help adhesion to these substrates, preparation of the surface to be bonded may be critical. This preparation may be as simple as a cleaning step, but may also include chemical priming and sanding of the surface. [Pg.515]

Cure systems based on hydrosilylation can be formulated as one and two-part silicone products, that can be either flowing or non-flowing. These formulations provide fast thermal cure rates, they are resistant to humid and other harsh environments, and they have good dielectric properties. These formulations can be self-priming or alternatively the substrate may require priming before application of the silicone. [Pg.687]

An unprimed silicone adhesive implies that it is free of any adhesion promoter and that the substrate does not need to be activated or primed i.e. adhesion relies mainly on chemical and/or mechanical mechanisms. The chemical adhesion... [Pg.689]


See other pages where Substrate priming is mentioned: [Pg.298]    [Pg.465]    [Pg.466]    [Pg.362]    [Pg.111]    [Pg.946]    [Pg.104]    [Pg.499]    [Pg.55]    [Pg.298]    [Pg.465]    [Pg.466]    [Pg.362]    [Pg.111]    [Pg.946]    [Pg.104]    [Pg.499]    [Pg.55]    [Pg.46]    [Pg.337]    [Pg.311]    [Pg.319]    [Pg.536]    [Pg.430]    [Pg.113]    [Pg.414]    [Pg.435]    [Pg.436]    [Pg.438]    [Pg.438]    [Pg.439]    [Pg.442]    [Pg.444]    [Pg.512]    [Pg.563]    [Pg.687]    [Pg.689]    [Pg.690]    [Pg.690]    [Pg.691]    [Pg.995]    [Pg.6]    [Pg.335]    [Pg.358]    [Pg.617]    [Pg.624]    [Pg.137]   
See also in sourсe #XX -- [ Pg.466 ]




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Prime

Substrate, Surface Preparation, and Priming

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