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Plastics, reinforcements

CARP Recommended Practice for Acoustic Emission Testing of Pressurized Highway Tankers made of Fiberglass Reinforced Plastic with Bolsa Cores. (ASNT)... [Pg.44]

The modern Russian MIA flaw detectors use pulse version of the method [1-3], which peirnits to produce very portable (0.7 - 1.5 kg) and simple instruments, convenient especially for in-service testing. The objects to be tested are multilayer structures of reinforced plastics, metals and other materials honeycomb panels, antenna fairings, propellers, helicopter rotors and so on. In mentioned instruments amplitude-frequency analog signal processing is used. [Pg.827]

Reindeer milk Reinforced carbon Reinforced plastics... [Pg.847]

The industrial value of furfuryl alcohol is a consequence of its low viscosity, high reactivity, and the outstanding chemical, mechanical, and thermal properties of its polymers, corrosion resistance, nonburning, low smoke emission, and exceUent char formation. The reactivity profile of furfuryl alcohol and resins is such that final curing can take place at ambient temperature with strong acids or at elevated temperature with latent acids. Major markets for furfuryl alcohol resins include the production of cores and molds for casting metals, corrosion-resistant fiber-reinforced plastics (FRPs), binders for refractories and corrosion-resistant cements and mortars. [Pg.80]

Corrosion Resistant Fiber-Reinforced Plastic (FRP). Fiber glass reinforcement bonded with furfuryl alcohol thermosetting resias provides plastics with unique properties. Excellent resistance to corrosion and heat distortion coupled with low flame spread and low smoke emission are characteristics that make them valuable as laminating resins with fiber glass (75,76). Another valuable property of furan FRP is its strength at elevated temperature. Hand-layup, spray-up, and filament-win ding techniques are employed to produce an array of corrosion-resistant equipment, pipes, tanks, vats, ducts, scmbbers, stacks, and reaction vessels for industrial appHcations throughout the world. [Pg.81]

Almost all of the OX that is recovered is used to produce phthaUc anhydride. PhthaUc anhydride is a basic building block for plasticizers used in flexible PVC resins, for polyester resins used in glass-reinforced plastics, and for alkyd resins used for surface coatings. OX is also used to manufacture phthalonitrile, which is converted to copper phthalocyanine, a pigment. [Pg.424]

Dry chlorine has a great affinity for absorbing moisture, and wet chlorine is extremely corrosive, attacking most common materials except HasteUoy C, titanium, and tantalum. These metals are protected from attack by the acids formed by chlorine hydrolysis because of surface oxide films on the metal. Tantalum is the preferred constmction material for service with wet and dry chlorine. Wet chlorine gas is handled under pressure using fiberglass-reinforced plastics. Rubber-lined steel is suitable for wet chlorine gas handling up to 100°C. At low pressures and low temperatures PVC, chlorinated PVC, and reinforced polyester resins are also used. Polytetrafluoroethylene (PTFE), poly(vinyhdene fluoride) (PVDE), and... [Pg.510]

Reinforcement. PVA fiber in the form of short cut chips having a length of several millimeters to several tens of millimeters is widely used as raw material for paper and for reinforcing plastics, cement, and the like, and has been acquiring more and more significance. [Pg.342]

Fiber-Reinforced Plastics. PVA fiber, with its high strength and toughness, has become widely used as reinforcement fiber for FRP. Strength as high as 1.8 N/tex (18 gf/dtex) has been reported (32,41). Penetration in this field will therefore become more active. [Pg.342]

HDPE, high density polyethylene PP, polypropylene EVA, ethylene—vinyl alcohol SMC, sheet-molding compound ERP, fiber-reinforced plastic LDPE, low density polyethylene PE, polyethylene BMC, bulk mol ding compound TPE, thermoplastic elastomer. [Pg.369]

R. C. Nametz and R. S. Nulph, Proceedings of the 20th Anniversay Technical Conference of the Society of Plastic. Industrial, Reinforcement, Plastics Division, Section 11-C, Chicago, lU., 1965. [Pg.473]

Many cellular plastic products are available with different types of protective faces, including composite metal and plastic foils, fiber-reinforced plastic skins, and other coatings. These reduce but do not eliminate the rate of aging. For optimum performance, such membranes must be totally adhered to the foam, and other imperfections such as wrinkles, cuts, holes, and unprotected edges should be avoided because they all contribute to accelerated aging. [Pg.334]

Laminates aie materials made up of plies or laminae stacked up like a deck of cards and bonded together. Plywood is a common example of a laminate. It is made up of thin pHes of wood veneer bonded together with various glues. Laminates ate a form of composite material, ie, they ate constmcted from a continuous matrix and a reinforcing material (1) (see also Reinforced plastics). [Pg.531]

High performance composites may be laminates wherein veils of carbon fiber ate treated with an epoxy resin, stacked up to the desired final product thickness, and then laminated together under heat and pressure (see Composite materials Carbon and graphite fibers). Simply mixing together carbon or glass fibers and polymeric resins to form a reinforced plastic leads to a composite material, but this is not a laminate if not constmcted from discrete phes. [Pg.531]


See other pages where Plastics, reinforcements is mentioned: [Pg.174]    [Pg.234]    [Pg.343]    [Pg.352]    [Pg.120]    [Pg.126]    [Pg.181]    [Pg.246]    [Pg.400]    [Pg.401]    [Pg.401]    [Pg.436]    [Pg.442]    [Pg.513]    [Pg.597]    [Pg.636]    [Pg.809]    [Pg.825]    [Pg.856]    [Pg.860]    [Pg.860]    [Pg.984]    [Pg.1004]    [Pg.1068]    [Pg.1073]    [Pg.81]    [Pg.232]    [Pg.491]    [Pg.502]    [Pg.515]    [Pg.310]    [Pg.316]    [Pg.368]    [Pg.54]    [Pg.312]    [Pg.523]    [Pg.523]   
See also in sourсe #XX -- [ Pg.478 , Pg.479 , Pg.480 ]

See also in sourсe #XX -- [ Pg.478 , Pg.479 , Pg.480 ]




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Abrasion resistance, reinforced plastics

Adhesive joints fiber-reinforced plastics

Advanced reinforced plastics

Aerospace industry glass fiber reinforcement plastics

Analysis of Reinforced Plastics

Applications of Reinforced Plastics

Aramid fiber reinforced plastic

Aramid fiber reinforced plastic AFRP)

Blow molding extruder, reinforced plastic

Boeing 777, reinforced plastics

Bonding fiberglass-reinforced plastics

Boron fiber reinforced plastice

CARBON FIBRE-REINFORCED PLASTIC

Carbon Fibre Reinforced Nanocomposite Plastics

Carbon fiber reinforced plastics CFRP)

Carbon fibre reinforced plastic CFRP)

Carbon fibre-reinforced plastic composites

Carbon filament reinforced plastics

Carbon nanotubes reinforced plastics

Carbon reinforced plastic

Carbon-fiber-reinforced plastics

Carbon-particles glass-fiber reinforced plastics

Characterizing Fatigue Behavior in Fiber Reinforced Plastics

Chemical Resistance of Glass Fiber Reinforced Plastics

Composite materials fibre-reinforced plastics

Composites Fibre-reinforced plastic

Creep Behaviour of Fibre Reinforced Plastics

Deformation Behavior of Fiber-Reinforced Plastic

Deformation Behaviour of Reinforced Plastics

Design concept reinforced plastic

Design pipe-reinforced plastic

Design reinforced plastic theory

Environment reinforced plastics

FIBRE-REINFORCED PLASTIC

Fatigue Behavior in Fiber-Reinforced Plastics

Fatigue Behaviour of Reinforced Plastics

Fatigue behavior of reinforced plastics

Fatigue reinforced plastics

Fiber Reinforced Plastic Materials

Fiber glass reinforced plastics

Fiber reinforced plastics

Fiber reinforced plastics strength properties

Fiber-reinforced biodegradable plastics

Fiber-reinforced plastic pipe

Fiber-reinforced plastics deformation behavior

Fiber-reinforced plastics fracture

Fiberglass Reinforced Plastics (FRP)

Fiberglass reinforced plastic pressure vessels

Fiberglass reinforced plastics

Fibre-Reinforced Plastics (FRPs)

Fibre-reinforced plastic composite deformability

Fibre-reinforced plastic composite mechanical properties

Fibre-reinforced plastic composite shear strength

Fibre-reinforced plastic composite types

Fibre-reinforced plastic composite using

Fibre-reinforced plastics applications

Fibre-reinforced plastics fibres

Fibre-reinforced plastics pipes

Fibre-reinforced plastics polyester composite

Fibre-reinforced plastics rebars

Fibre-reinforced plastics shells

Fibre-reinforced thermoset plastic

Fibre-reinforced thermoset plastic composites

Fibres in reinforcing plastics

Flax fiber reinforced plastics

Foamed plastics continued reinforced

Foams and reinforced plastics

Foams reinforced plastic

Forming of reinforced plastics

Fracture of Fiber-Reinforced Plastics

Fracture reinforced plastics

From Reinforced Plastics to Composite Materials

GLASS FIBRE-REINFORCED PLASTIC

Glas-reinforced plastics

Glass Fiber-Reinforced Plastics Aerospace Applications

Glass Fibre Reinforced Plastic (GFRP

Glass fiber reinforced plastic processes/properties

Glass fiber reinforced plastics, fatigue

Glass fiber reinforcement plastics

Glass fiber-reinforced plastics (GFRPs

Glass fibre reinforced plastic panels

Glass fibre-reinforced plastic composites

Glass fibre—reinforced plastics reinforcement layers

Glass reinforced plastics

Glass-fiber reinforced plastics, compression

Glass-fibre reinforced plastics (GRP)

Glass-fibre reinforced plastics structures

Glass-reinforced plastic composites

Glass-reinforced plastic composites flame retardancy

Glass-reinforced plastics (GRP

Glass-reinforced plastics, agricultural

Graphite fiber reinforced plastic

Graphite-Reinforced Plastics

High-pressure reinforced plastics

Impact Behaviour of Reinforced Plastics

Impact behavior of reinforced plastics

Injection molding reinforced plastic

Jute reinforced plastic

Jute/polyester composites fiber reinforced plastics

Kevlar fibre reinforced plastics

Long-Term Mechanical Behavior of Fiber Reinforced Plastics

Marco reinforced-plastic process

Matrix in reinforced plastics

Mechanical Behavior of Fiber Reinforced Plastics

Mechanical Properties of Reinforced Plastics

Mechanical properties graphite-reinforced plastics

Mechanical properties reinforced plastics

Methods for Reinforced Plastics

NATURAL FIBRE-REINFORCED PLASTIC

Natural fiber reinforced plastics

PST 4 Glass-reinforced Plastics (GRP)

Packaged, fiberglass-reinforced plastic

Phenolics reinforced plastics

Plastic Reinforcement n and

Plastic pipe reinforced-thermosetting-resin

Plastic reinforced concrete

Plastic self-reinforcing

Plastics additives reinforcements

Plastics continuous fiber reinforcements

Plastics reinforced

Polyester Laminates—Haysite Reinforced Plastics

Polyester reinforced urethane plastic

Properties of Reinforced Plastics

Radiation Resistance of Unreinforced and Reinforced Plastics

Reinforced Foamed Plastic

Reinforced Plastic Analysis

Reinforced Plastic Successes

Reinforced Plastics and Composites

Reinforced plastic continued

Reinforced plastic continued glass content

Reinforced plastic continued injection molding

Reinforced plastic continued methods

Reinforced plastic continued performance

Reinforced plastic continued processes

Reinforced plastic continued properties

Reinforced plastic continued reinforcements

Reinforced plastic continued resins used

Reinforced plastic continued strength

Reinforced plastic continued thermoplastics

Reinforced plastic continued thermosets

Reinforced plastic definition

Reinforced plastic designing with

Reinforced plastic directional property

Reinforced plastic fatigue testing

Reinforced plastic flexible

Reinforced plastic interlaminar

Reinforced plastic moldings, finishing

Reinforced plastic mortar

Reinforced plastic processing

Reinforced plastic resin-rich

Reinforced plastic spring

Reinforced plastic symmetrical

Reinforced plastics advantages

Reinforced plastics applications

Reinforced plastics businesses

Reinforced plastics continuous pultrusion

Reinforced plastics conventional

Reinforced plastics fatigue behavior

Reinforced plastics fiber manufacture

Reinforced plastics fibrous reinforcements

Reinforced plastics filament winding

Reinforced plastics filled systems

Reinforced plastics graphite carbon fibers

Reinforced plastics growth rate

Reinforced plastics impact behavior

Reinforced plastics implementations

Reinforced plastics industry

Reinforced plastics interface aspects

Reinforced plastics limitations

Reinforced plastics materials properties/processes

Reinforced plastics matrix

Reinforced plastics molding methods

Reinforced plastics overview

Reinforced plastics performance, 248 processing

Reinforced plastics performances

Reinforced plastics preparation methods

Reinforced plastics prepreg molding

Reinforced plastics reinforcement

Reinforced plastics reinforcement

Reinforced plastics specific properties

Reinforced plastics spray

Reinforced plastics structures

Reinforced plastics thermosetting resins used

Reinforced plastics types

Reinforced plastics/Composites Institute

Reinforced plastics/composites

Reinforced plastics/thermosets

Reinforced thermoset plastics

Reinforced-plastic SCRIMP process

Reinforced-plastic autoclave molding

Reinforced-plastic bag molding

Reinforced-plastic binder

Reinforced-plastic bulk-molding

Reinforced-plastic bulk-molding compound

Reinforced-plastic characterization

Reinforced-plastic charring

Reinforced-plastic compaction

Reinforced-plastic contact molding

Reinforced-plastic cost

Reinforced-plastic coupling agent

Reinforced-plastic cutting

Reinforced-plastic fiber content

Reinforced-plastic fiber direction

Reinforced-plastic fiber pattern

Reinforced-plastic fiber percent

Reinforced-plastic fiber wash

Reinforced-plastic gel coat

Reinforced-plastic glassiness

Reinforced-plastic ignition loss

Reinforced-plastic lay

Reinforced-plastic material

Reinforced-plastic material with

Reinforced-plastic micro property

Reinforced-plastic microcracking

Reinforced-plastic micromechanics

Reinforced-plastic moisture content

Reinforced-plastic mold, elastomeric

Reinforced-plastic molding

Reinforced-plastic molding compound

Reinforced-plastic molding fiber

Reinforced-plastic molding fiber shrinkage

Reinforced-plastic molding match-metal

Reinforced-plastic nesting

Reinforced-plastic peel ply

Reinforced-plastic pipe

Reinforced-plastic pregel

Reinforced-plastic preimpregnation

Reinforced-plastic prepreg

Reinforced-plastic pressure bag

Reinforced-plastic pressure bag molding

Reinforced-plastic pressure-curing

Reinforced-plastic process

Reinforced-plastic processing vent

Reinforced-plastic pultrusion

Reinforced-plastic pultrusion fiber

Reinforced-plastic reaction-injection molding

Reinforced-plastic resin transfer

Reinforced-plastic resin transfer molding

Reinforced-plastic rotational molding

Reinforced-plastic soluble-core

Reinforced-plastic soluble-core molding

Reinforced-plastic surfacing veil

Reinforced-plastic vacuum-bag

Reinforced-plastic vacuum-bag molding

Reinforced-plastic void content

Reinforcements in plastics

Short fiber-reinforced plastic composites

Solvents reinforced plastics/thermosets

Standard Test Methods for Compressive Properties of Unreinforced and Reinforced Plastic Lumbers

Standard Test Methods for Flexural Properties of Unreinforced and Reinforced Plastic Lumbers

Test Methods for Tensile Properties of Reinforced Thermosetting Plastics Using Straight-Sided Specimens

Thermal Properties of Reinforced Plastics

Thermosets, Reinforced Plastics, and Composites

Various Glass-Reinforced Resins—Celanese Plastics

Viscoelastic properties, reinforced plastics

WOOD FIBRE-REINFORCED PLASTIC

Wear, reinforced plastics

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