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Window formulation

Over 68 aerosol products containing isopropyl alcohol solvent have been reported (145). Aerosol formulations include hair sprays (146), floor detergents (147), shoe poHshes (148), insecticides (149,150), bum ointments (151), window cleaners, waxes and poHshes, paints, automotive products (eg, windshield deicer), insect repellents, flea and tick spray, air refreshers, disinfectants, veterinary wound and pinkeye spray, first-aid spray, foot fungicide, and fabric-wrinMe remover (152) (see Aerosols). [Pg.113]

One reason for the success of PVC is its formulation versatility. Products range from rigid piping and window frames to soft flexible foams, with such diverse materials as vinyl leathercloth, flexible sheeting and playballs somewhere in between. [Pg.356]

The optimum PVC that provides the best corrosion protection for the substrate is a strong function of the corrosion protecting mechanism. Figs. 8-10 represent primer films based on three different protection mechanisms, and indicate the appropriate formulating windows for each type of primer. [Pg.457]

With these criteria, Chu [10] has suggested that the first step in designing a PSA is to formulate the adhesive to a predetermined target Tg and modulus window. This is discussed further in Section 7.1.5. [Pg.467]

The net effect is that tackifiers raise the 7g of the blend, but because they are very low molecular weight, their only contribution to the modulus is to dilute the elastic network, thereby reducing the modulus. It is worth noting that if the rheological modifier had a 7g less than the elastomer (as for example, an added compatible oil), the blend would be plasticized, i.e. while the modulus would be reduced due to network dilution, the T also would be reduced and a PSA would not result. This general effect of tackification of an elastomer is shown in the modulus-temperature plot in Fig. 4, after the manner of Class and Chu. Chu [10] points out that the first step in formulating a PSA would be to use Eqs. 1 and 2 to formulate to a 7g/modulus window that approximates the desired PSA characteristics. Windows of 7g/modulus for a variety of PSA applications have been put forward by Carper [35]. [Pg.477]

Typical additive packages for engineering thermoplastics have been described by Titzschkau [9], such as processing aids for PA, PP, or PET/PBT, three-component additive packages for polyamides and polyesters (nucleating agent, lubricant and process heat stabiliser) and coated copper stabilisers for polyamides. Additive packages or combinations of up to five or more additives are quite common. A typical white window PVC profile formulation comprises an acrylic impact modifier, TiC>2, CaCC>3, calcium stearate, a... [Pg.7]

However, some areas of future research need to be highlighted (1) noble metal-based formulations which do not form N20, (2) novel catalyst formulations which decompose/reduce N20 below 300°C, (3) on-board routes to form oxygenated reductants, (4) NTP technologies, (5) maintain catalyst within peak operating temperature window and (6) techniques for storing NO, emissions during cool exhaust conditions followed by re-injection of the stored NO when the catalyst has achieved light-off conditions. There is already an active research on these topics, but a further intensification would be necessary. [Pg.8]

We find polyvinyl chloride in so many applications because we can formulate it to be rigid, flexible, or any intermediate hardness required. Rigid polyvinyl chloride is used to manufacture siding, pipes, fences, gutters, window and door frames, credit cards, and many other extruded... [Pg.349]

The dehumidification rate for the Prototype Unit was measured and compared with an unmodified dehumidifier. The Prototype Unit and dehumidifier appliance were placed in a 60 m2 room with open windows. The test was conducted at an ambient temperature of 23 °C and relative humidity of 80 %. The amount of water collected after 8 h was weighed and dehumidification rates of 0.14 Kg/h and 0.13 Kg/h were obtained for the Prototype Unit and unmodified dehumidifier, respectively. This indicates that coating the formulated catalysts onto the desiccant wheel does not significantly affect its dehumidification function. [Pg.398]

The anodic limit for the electrochemical stability of these carbonate mixtures has been determined to be around 5.5 V in numerous studies.Thus, new electrolyte formulations are needed for any applications requiring >5.0 V potentials. For most of the state-of-the-art cathode materials based on the oxides of Ni, Mn, and Co, however, these carbonate mixtures can provide a sufficiently wide electrochemical stability window such that the reversible lithium ion chemistry with an upper potential limit of 4.30 V is practical. [Pg.108]

With regard to the systemic administration of smaller proteins (<20 kDa), the development of insulin for inhalation has shown that the pulmonary route is a feasible route of administration. However, advanced inhalation devices and formulations were required to obtain a reproducible lung deposition. It will be especially necessary to deal with the problems that occur when drugs with a small therapeutic window are administered. To enable widespread use of the lung as port of entry for these small proteins, future developments should be directed towards more simple inhalation devices which still give a high and reproducible lung deposition. The formulations that will be required for these proteins are likely to be much more complex and advanced than those that are currently used. Examples are formu-... [Pg.83]

Sensitization of the respiratory tract has followed chronic exposure to fumes or dust of TETA, manifested by bronchial asthma. One worker developed asthma after working with an epoxy resin-TETA formulation for 6 months in a job laminating aircraft windows. In an environmental chamber, the worker developed flulike symptoms and asthmatic breathing after simulating the job conditions for 2 hours with the resin-TETA mixture. Similar exposure to the resin alone did not produce the symptoms. [Pg.708]

A modified concept for the generation of partially crosslinked expanded PP films and sheets for use in automotive applications is presented. An optimised formulation window for the organosilane crosslinking of selected PP copolymers is described in detail. 5 refs. [Pg.73]


See other pages where Window formulation is mentioned: [Pg.549]    [Pg.253]    [Pg.545]    [Pg.454]    [Pg.507]    [Pg.297]    [Pg.30]    [Pg.357]    [Pg.410]    [Pg.479]    [Pg.493]    [Pg.350]    [Pg.96]    [Pg.848]    [Pg.1058]    [Pg.289]    [Pg.211]    [Pg.119]    [Pg.447]    [Pg.54]    [Pg.499]    [Pg.109]    [Pg.279]    [Pg.257]    [Pg.265]    [Pg.524]    [Pg.181]    [Pg.101]    [Pg.313]    [Pg.14]    [Pg.277]    [Pg.533]    [Pg.212]    [Pg.667]    [Pg.246]    [Pg.450]    [Pg.413]    [Pg.91]   
See also in sourсe #XX -- [ Pg.167 ]




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