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Flexible materials for

Bonding of rigid, weakly deformable materials with plastic, flexible materials, for example, metal-rubber In this case, choose adhesives that develop flexible, deformable adhesive layers, for example, low crosslinked polyurethanes, contact adhesives. [Pg.103]

The first example is a technology originally patented by S. Suzuki et al., Hitachi Ltd., Japan [49]. Their solution for absolute pressure sensors, as well as for relative pressure sensors, is shown in a cross-sectional view in Figure 5.1.15. The piezoresistive silicon sensor element is anodically bonded to a thick glass part that constitutes the vacuum reference volume in the absolute pressure sensor or that contains a hole as a pressure inlet port for the relative pressure sensor. The pressure sensor die is typically housed in a cavity package with pressure inlet ports as part of the body. The surface of the sensor element is usually protected with a gel or other flexible material for corrosion resistance. [Pg.87]

Screw feeders are normally of metallic construction because of the cost/strength requirements for industrial applications. Some small feeders are constructed of non-ferrous materials to allow metal detectors to be used around the casing, rather than on the free fall of the flow stream. There are also casings made of flexible materials, for vibrators or oscillating pads to deform the walls in order to stimulate flow. While these are usually successful in promoting flow, the regime of flow that is created is generally uncertain and in most cases definitely not of a mass flow nature. [Pg.73]

EXAMPLES OF FORMULATIONS Soft, flexible materials for nurser bottle having good grip... [Pg.210]

In contrast to gases and liquids, solids present a number of samplehandling problems, as there are few occasions when they can be run without some preliminary work being done on them. In transmission work, the easily run samples are usually limited to thin films in reflectance work, they are normally limited to small samples for specular-reflection, and flexible materials for ATR or FMIR accessories. [Pg.329]

Elastomeric shield materials (ESM) have been developed as low density flexible ablators for low shear appHcations (49). General Electric s RTV 560 is a foamed silicone elastomer loaded with silicon dioxide [7631-86-9] and iron oxide [1317-61 -9] particles, which decomposes to a similar foam of Si02, SiC, and EeSiO. Silicone resins are relatively resistant to thermal decomposition and the silicon dioxide forms a viscous Hquid when molten (50) (see... [Pg.6]

Ferroelectric Ceramic—Polymer Composites. The motivation for the development of composite ferroelectric materials arose from the need for a combination of desirable properties that often caimot be obtained in single-phase materials. For example, in an electromechanical transducer, the piezoelectric sensitivity might be maximized and the density minimized to obtain a good acoustic matching with water, and the transducer made mechanically flexible to conform to a curved surface (see COMPOSITE MATERIALS, CERAMiC-MATRix). [Pg.206]

Some heavier gauge flexible materials, usually containing nylon, are thermoformed, ie, heated and formed into three-dimensional shapes. Such stmctures are used to provide high gas-barrier, heat-sealable containment for processed meat or cheese. [Pg.453]

Toluene Diisocyanate. Toluene diisocyanate is the basic raw material for production of flexible polyurethane foams. It is produced by the reaction sequence shown below, in which toluene is dinitrated, the dinitrotoluene is hydrogenated to yield 2,4-diaminotoluene, and this diamine in turn is treated with phosgene to yield toluene 2,4-diisocyanate. [Pg.190]

Not every polymer can be manufactured successfully into a contact lens. Several important properties for both ocular physiology and patient handling are required of a material for a contact lens appHcation (1,11). In addition, the type of lens appHcation, ie, rigid, flexible, or soft, will dictate the range and importance of the key properties. [Pg.100]

The flexible element coupling requires no lubrication, which is a distinct advantage. The need for lubrication is always a problem with gear couplings. This advantage is partially offset in the flexible element by the need for corrosion-resistant materials for the normal chemical plant atmosphere. Inconel 718 and 15-5 PH have been used and have been rea-... [Pg.338]

Cross-linkable rubbery polyesters have been produced but are now no longer produced. Rubbery polyester-amides were introduced by ICI under the trade name Vulcaprene as a leathercloth material but later were used primarily as leather adhesives and as flexible coatings for rubber goods. A typical polymer may be made by condensing ethylene glycol, adipic acid and ethanolamine to a wax with a molecular weight of about 5000. [Pg.742]

Polyurethanes. This material is available in three forms - rigid foam, flexible foam and elastomer. They are characterised by high strength and good chemical and abrasion resistance. The rigid foam is widely used as an insulation material, the flexible foam is an excellent cushion material for furniture and the elastomeric material is used in solid tyres and shock absorbers. [Pg.17]

Schlauch, m. tube, tubing, pipe (of flexible material), hose skin (for holding something) (Mining) ore pipe, ore chimney j drimkard glutton. [Pg.389]

Finally, one development results from returning to a basic idea from the dawn of the lead-acid battery, wherein the functions of support for the positive active material and of the separator are combined into one component the gauntlet separator [84] consisting of a coarsely porous, flexible support structure coated with micropo-rous polyethylene material for separation. The future has to show whether this approach will be able to meet all demands. [Pg.273]


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See also in sourсe #XX -- [ Pg.23 , Pg.312 , Pg.313 , Pg.314 , Pg.315 , Pg.316 , Pg.317 , Pg.318 , Pg.319 , Pg.320 , Pg.321 ]




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Flexible materials

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