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Water resistivity

Lime with tallow-derived fatty acids they are the so-called calcium greases that are often used as subframe greases and water-resistant greases. [Pg.281]

Ethylene. Under the influence of pressure and a catalyst, ethylene yields a white, tough but flexible waxy sohd, known as Polythene. Polyethylene possesses excellent electric insulation properties and high water resistance it has a low specific gravity and a low softening point (about 110°). The chemical inertness oi Polythene has found application in the manufacture of many items of apparatus for the laboratory. It is a useful lubricant for ground glass connexions, particularly at relatively high temperatures. [Pg.1015]

Both melamine—formaldehyde (MF) and resorcinol—formaldehyde (RF) foUowed the eadier developments of phenol—, and urea—formaldehyde. Melamine has a more complex stmcture than urea and is also more expensive. Melamine-base resins requite heat to cure, produce colorless gluelines, and are much more water-resistant than urea resins but stiU are not quite waterproof. Because of melamine s similarity to urea, it is often used in fairly small amounts with urea to produce melamine—urea—formaldehyde (MUF) resins. Thus, the improved characteristics of melamine can be combined with the economy of urea to provide an improved adhesive at a moderate increase in cost. The improvement is roughly proportional to the amount of melamine used the range of addition may be from 5 to 35%, with 5—10% most common. [Pg.378]

The primary adhesive used ia hardwood plywood is urea—formaldehyde (UF) mixed with wheat flour as an extender to improve spreadabiUty, reduce penetration, and provide dry-out resistance. A catalyst may also be added to UF resias to speed the cure or to cause the UF to cure. Scavengers also may be added to reduce formaldehyde emissions from finished panels. If more water-resistance is requited using a UF bond, small amounts of melamine maybe added, producing a melamine—urea—formaldehyde (MUF) adhesive. [Pg.382]

Structural Insulation Boards. Stmctural iasulation boards are made by a process similar to that used for iasulation board, with the exception of another additive which provides additional weight, strength, and water resistance. The additive is normally asphalt, which is added ia a... [Pg.385]

Secondary Treatments and Uses. Because hardboard products are utilized in a myriad of different ways, the variety of secondary treatments used by customers are practically unlimited. Hardboards are used in furniture, cabinets, paneling, doors, toys, and a host of other uses. Post-treatments may include cutting-to-size, finishing treatments with roU-appHed patterns, melamine overlays, printed paper overlays, paints, and even some extremely durable and water-resistant coatings used in tub and shower linings or other uses where water contact is frequent and extreme. [Pg.390]

Rubber. Both natural and synthetic rubber are used as bonding agents for abrasive wheels. Rubber-bond wheels are ideal for thin cut-off and slicing wheels and centerless grinding feed wheels. They are more flexible and more water-resistant than resinoid wheels. [Pg.15]

Pentaerythritol in rosin ester form is used in hot-melt adhesive formulations, especially ethylene—vinyl acetate (EVA) copolymers, as a tackifier. Polyethers of pentaerythritol or trim ethyl ol eth an e are also used in EVA and polyurethane adhesives, which exhibit excellent bond strength and water resistance. The adhesives maybe available as EVA melts or dispersions (90,91) or as thixotropic, one-package, curable polyurethanes (92). Pentaerythritol spko ortho esters have been used in epoxy resin adhesives (93). The EVA adhesives are especially suitable for cellulose (paper, etc) bonding. [Pg.466]

Since PVA fiber as spun is soluble in water, it is necessary to improve the water resistance of the as-spun fiber (10). Heat treatment followed by acetalization is a classic method to provide high water resistance. [Pg.337]

Foaming polystyrene resin prepared by blending with gas deHvers an opaque, low density sheet useful for beverage-bottle and plastic can labels as a water-resistant paper substitute (see Styrene polymers). [Pg.452]

Ionomers are generally shipped in pellet form in the standard containers developed for large-volume polyolefins, eg, 500-kg boxes. Water-resistant liners are used to keep the products dry during shipment and storage. [Pg.408]

Base Texture Dropping Max temp for point, °C continuous use, °C Water resistant Mechanical stabiHty... [Pg.247]

Synthetic Marble. Synthetic marble-like resin products are prepared by casting or molding a highly filled monomer mixture or monomer—polymer symp. When only one smooth surface is required, a continuous casting process using only one endless stainless steel belt can be used (52,53). Typically on the order of 60 wt % inorganic filler is used. The inorganic fillers, such as aluminum hydroxide, calcium carbonate, etc, are selected on the basis of cost, and such properties as the translucence, chemical and water resistance, and ease of subsequent fabrication (54,55). [Pg.265]

Fiber dmms can be produced to meet a wide variety of requirements. They can be constmcted with adhesives for water resistance, their interiors can be coated, their walls and ends can incorporate metal foil or asphalt-impregnated pHes, and their exteriors can be decorated by painting, varnishing, and silk screening for both ornamental and functional purposes. [Pg.513]

H3 water-resistant woven plastic bag 6PB2 within an aluminum crate or box... [Pg.514]

L3 water-resistant textile bag 6PG1 within a fiber dmm... [Pg.514]


See other pages where Water resistivity is mentioned: [Pg.285]    [Pg.310]    [Pg.148]    [Pg.148]    [Pg.458]    [Pg.560]    [Pg.1065]    [Pg.378]    [Pg.378]    [Pg.386]    [Pg.390]    [Pg.392]    [Pg.13]    [Pg.234]    [Pg.339]    [Pg.22]    [Pg.23]    [Pg.312]    [Pg.337]    [Pg.338]    [Pg.452]    [Pg.362]    [Pg.452]    [Pg.358]    [Pg.252]    [Pg.327]    [Pg.27]    [Pg.28]    [Pg.85]    [Pg.176]    [Pg.247]    [Pg.294]    [Pg.2]    [Pg.515]    [Pg.518]   
See also in sourсe #XX -- [ Pg.331 ]




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Apparent water resistivity

Coating ability and water resistance test

Coating water resistance test using

Coating water resistance test using controlled condensation

Composite water-resistance behavior

Corrosion Resistance in Supercritical Water

Electrical resistance industrial waters

Environmental resistance water concentration effects

Epoxies water resistance

Evaluation of Water Resistance

Grease water resistance

High resistivity water

Magnesium oxychloride water resistance

Ohmic drop water resistivity measurements

PVAC-modified water resistance

Plant resistance, water flow

Pure water, resistivity

Rain water resistivity

Resistance distilled water

Resistance to Waters

Resistance to water flow

Resistance water phase

Resistance water surface

Resistant Auto Polish, Oil in Water Emulsion

Resistivity of waters

Resists water-processable

Rotary connections water resistance

Specific electrical resistivity water

Specific electrical resistivity water, concentration

Stabilizers water resistance

Supercritical water, corrosion resistance

Water (Cont resistivity

Water continued resistivity

Water disbonding resistance

Water extraction resistance

Water penetration resistance

Water repellent/resistant

Water resistance

Water resistance

Water resistance (also

Water resistance of coatings using

Water resistance of coatings using controlled condensation

Water resistance, design procedure

Water resistant

Water resistant bond

Water resistant detonator

Water resistant epoxy resin development

Water resistant gypsum binders

Water resistivity measurement

Water side resistance

Water stress resistance

Water vapor mass transfer resistance

Water, environmental resistance affected

Water-Processable Resists (Casting and Development)

Water-processable resist

Water-resistant acrylate

Water-resistant coating

Water-resistant polymers

Water-vapor resistance

Water-vapor resistivity

Waterproofness and Water Resistance

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