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Pipes fiberglass

Reinforced Thermosetting Piping Fiberglass Pipe Institute/Composites Institute, a Division of the Society of the Plastics Industry, 355 Lexington Avenue, New York, NY 10017 The Materials Technology Institute of the Chemical Process Industries, Inc., 12747 Olive St. Rd., Suite 203, St. Louis, MO 63141-6269... [Pg.774]

Other civil engineering examples of polymers and composites are geotechnical fabric for soils, polymer natural gas pipe, fiberglass reinforcing-bar (re-bar), composite I-beams, as well as the aforementioned decking for bridges. [Pg.7]

Fiberglass Reinforced Piping Systems for Chemical andindustrialApplications, Smith Eiberglass Products, Inc., Litde Rock, Ark., 1993 to 1994. [Pg.67]

Carbon steel Sch. 40 Fiberglass reinforced polyester Fiberglass reinforced vinylester Glass pipe Aluminum Sch. 40 304 stainless steel Sch. 5 Saran-lined steel Polypropylene- lined steel Rubber-linedsteel Sch. 40 316 stainless steel Sch. 5 304 stainless steel Sch. 40 Kynar-Ifned steel 316 stainless steel Sch. 40 Alloy 20 Sch. 5 FEP Teflon-lined steel PFA Teflon-lined steel Armored-glass pipe PTFE Teflon-lined steel Monel 400 Sch. 5 Nickel 200 Sch. 5 Alloy 20 Sch. 40 Monel 400 Sch. 40 Inconel 600 Sch. 5 Titanium Sch. 5 Nickel 200 Sch. 40 Titanium Sch. 40 Inconel 600 Sch. 40 Glass-lined steel Sch. 40 Hastelloy C-276 Sch. 5 Zirconium Sch. 5 Hastelloy B Sch. 5 Zirconium Sch. 40 Hastelloy C-276 Sch. 40 Hastelloy B Sch. 40 Tantalum-lined steel Sch. 5 Tantalum-lined steel Sch. 40... [Pg.1012]

Many additives are used with phenolic resins such as wood flour, oils, asbestos, and fiberglass. Fiberglass piping made with phenolic resins can operate at 150°C and pressure up to 150 psi. ... [Pg.348]

Therefore, before a final wall structure can be selected, it is necessary to conduct a combined strain analysis in both the longitudinal and hoop directions. This analysis will consider thermal contraction strains, the internal pressure, and the pipe s ability to bridge soft spots in the trench s bedding. In order to do this we must know more about the inherent properties of the material we are dealing with that is a structure made up of successive layers of continuous filament-wound fiberglass strands embedded within a plastic matrix. We must know the modulus of the material in the longitudinal direction and the... [Pg.213]

Ten 10 cm diameter by 305 cm long polyvinyl chloride pipes were supported on wooden frames In the greenhouse. Fifty seven 3.5 cm diameter holes were drilled In a line along the length of each pipe. One end of each pipe was fitted with a fiberglass screen the other end was fitted with an elbow... [Pg.235]

Flat laminated panels are manufactured using fluorinated sheet substrates. The manufacturing of these test panels simulates the production process used to manufacture the fiberglass-reinforced pipes. The BS6464 test prescribes a minimum adhesive shear and peel strength of 7 MPa and 7 N/mm, respectively. Representative values for both tests are given in Tables 16.9 and 16.10 below. [Pg.253]

Fiberglass reinforced plastic (FRP) is used in composite systems. It is particularly important in the process industry because of its corrosion resistance and light weight. The epoxy resin in the FRP matrix begins to melt at approximately 150°C (302°F). This may be used as a first-order failure criterion. Failure of empty 5-mm thick FRP pipes in 2-6 minutes has been reported (SINTEF,... [Pg.88]

Solving for yields an estimated steady-state temperature of 249°C (480°E). Because this temperature exceeds the first-order failure criterion for fiberglass of 150°C and the fire burns for 10 minutes, which is longer than the reported 2-6 minutes failure time for empty fiberglass pipes, the process line will be compromised. [Pg.98]

Materials acceptable for underground piping use include ductile iron, fiberglass-reinforced epoxy plastic, polyethylene, polyvinyl chloride, reinforced concrete, and carbon steel. Plastic pipes are not acceptable in areas subject to solvent exposure. [Pg.172]

Carbon steel Sch, 40 Fiberglass reinforced polyester Fiberglass reinforced vinylester Glass pipe Aluminurn Sch. 40 304 Stainless steel Sch. 5 Saran lined steel Polypropylene- (tned steel Rijbbe -lined steel Seh. 40 316 stainless steel Sct>, 5 304 stainless steel Sch. 40 Kynar-linied steel 316 stainless steel Scb. 40... [Pg.136]

The storage and transfer of raw chemicals requires special considerations relative to the equipment that come into contact with epoxy resins. Carbon steel is generally satisfactory for pipe and tank construction and will not rust beneath the epoxy resin. Rust occuring above the level of the epoxy and accidentally introduced into the resin may be removed by filters. Epoxy coated steel pipe, aluminum or stainless steel pipe, or epoxy fiberglass composite tubing is used to prevent rusting downstream of the filter. [Pg.393]

D 5686 Standard Specification for Fiberglass (Glass Fiber Reinforced Thermosetting Resin) Pipe and Pipe Fittings, Adhesive Bonded Joint Type Epoxy Resin, for Condensate Return Lines... [Pg.516]

RO permeate distribution piping considerations need to be mindful of the fact that the permeate is highly corrosive. Retrofitting an RO system into a facility with carbon steel permeate piping is difficult, as the piping will corrode. Nonmetallic materials such as plastics and fiberglass are recommended for low-pressure RO product distribution piping. [Pg.114]


See other pages where Pipes fiberglass is mentioned: [Pg.1132]    [Pg.183]    [Pg.387]    [Pg.1132]    [Pg.183]    [Pg.387]    [Pg.515]    [Pg.451]    [Pg.451]    [Pg.676]    [Pg.277]    [Pg.277]    [Pg.794]    [Pg.711]    [Pg.384]    [Pg.34]    [Pg.32]    [Pg.128]    [Pg.129]    [Pg.211]    [Pg.212]    [Pg.1060]    [Pg.84]    [Pg.100]    [Pg.105]    [Pg.126]    [Pg.335]    [Pg.27]    [Pg.108]    [Pg.152]    [Pg.216]    [Pg.275]    [Pg.203]   
See also in sourсe #XX -- [ Pg.219 ]




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