By D.V. Scott
Hardbound. quick evolution is happening within the water industry around the world - pushed via elevated purchaser call for allied to the rarefraction of fresh water. The inherent features of composites fabrics linked to present fabrics and construction expertise is permitting the elevated use of formerly excessive fee fabrics and approaches at ever lowering charges. The guide is designed to convey specifiers up to the mark with those fabrics and the recent components of software linked to them, exploring the scope, functionality, rate effectiveness and environmental and legislative outcomes in their use.
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Additional info for Advanced Materials for Water Handling: Composites and Thermoplastics
These problems have largely been resolved with the introduction of new and improved systems, although of course the service temperatures which can be envisaged remain well below those attainable with amine-cured systems. In applications which do not require a service temperature above 80~ anhydride-cured systems are generally more than adequate for handling water, and do allow significant financial advantages. Typical anhydride curing agents are hexahydrophthalic anhydride (HHPA) and phthalic anhydride (PA), and a few of the major pipe manufacturers have developed their own in house systems and procedures which allow extremely rapid curing cycles, sometimes as low as 20 minutes.
18 PTFE m polytetrafluoroethylene Discovered in 1941, the original fluorocarbon resin shows exceptional chemical resistance, but is handicapped by limited transformation possibilities when compared to the more recent fluorocarbon resins described in this chapter. 19 PVC m polyvinyl chloride (PVC-U m unplasticised PVC) This material was initially identified as far back as 1838, although the development of the principles of an industrial manufacturing process took another 70 years. Large-scale industrial production actually started in 1938.
Materials 39 9 E-glass (electrical), the most commonly used type of glass in the industry, is less expensive and has good mechanical properties. This type of glass is used throughout all structural laminates. 9 ECR-glass (electric corrosion resistant) offers improved chemical resistance over E-glass in many applications, is more expensive than Eglass and may be specified throughout the total laminate for some type of applications, usually in very severe conditions. 9 D-glass (dielectric) is, because of particularly good dielectric characteristics, used mainly in the electronics industry.