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Polyethylene alloys

This material has the metallic type of conductivity and extremely flexible crystalline lattice (the lattice can expand along the c axis, doubling the parameter), and can be easily pressed into pellets. The degree of lithium-ion reduction is about 0.7 (i.e., lithium in the crystal is present in 70 % as atoms and 30 % as ions). Thus, layered niobium diselenide is the perfect material for testing the proposed models. In order to eliminate the pores, pellets have been impregnated with molten paraffin-polyethylene alloy imder vacuum in all cited works. [Pg.50]

The materials used in a total joint replacement ate designed to enable the joint to function normally. The artificial components ate generally composed of a metal piece that fits closely into bone tissue. The metals ate varied and include stainless steel or alloys of cobalt, chrome, and titanium. The plastic material used in implants is a polyethylene that is extremely durable and wear-resistant. Also, a bone cement, a methacrylate, is often used to anchor the artificial joint materials into the bone. Cementiess joint replacements have mote tecentiy been developed. In these replacements, the prosthesis and the bone ate made to fit together without the need for bone cement. The implants ate press-fit into the bone. [Pg.187]

Shipment ndStora.ge. The crystalline material is shipped as a nonha2ardous material, in polyethylene-lined fiber dmms. The solution can be shipped in dmms or bulk. Suitable materials of constmction for handling ammonium thiocyanate are aluminum, 316 stainless steel, mbber, poly(vinyl chloride), and glass-reinforced epoxy. Steel, 304 stainless steel, and copper alloys should be avoided (375,376). [Pg.152]

Corrosion. Aqueous solutions of citric acid are mildly corrosive toward carbon steels. At elevated temperatures, 304 stainless steel is corroded by citric acid, but 316 stainless steel is resistant to corrosion. Many aluminum, copper, and nickel alloys are mildly corroded by citric acid. In general, glass and plastics such as fiber glass reinforced polyester, polyethylene, polypropylene, poly(vinyl chloride), and cross-linked poly(vinyl chloride) are not corroded by citric acid. [Pg.181]

An aluminum alloy cooling water conduit section was removed from a machine that made polyethylene sheeting. A large hole had formed just below a in. (1.9 cm) cooling water orifice. The designed orifice is shown in Fig. 8.11, with the elliptically shaped corroded hole just below. [Pg.195]

Polycarbonate-polyethylene terephthalate (PC-PET) alloys have also recently been announced by DSM. [Pg.579]

Property Polyethylene Polyolefin copolymer Polyolefin PPA 65 alloys P.V.C. Nylon P.V.D.F. [Pg.754]

Surprisingly the water consumption of a starter battery, provided it contains anti-monial alloys, is affected by the separator. Some cellulosic separators as well as specially developed polyethylene separators (e.g., DARAMIC V [76]) are able to decrease the water consumption significantly. The electrochemical processes involved are rather complex and a detailed description is beyond the scope of this chapter. Briefly, the basic principle behind the reduction of water loss by separators is their continuous release of specific organic molecules, e.g., aromatic aldehydes, which... [Pg.270]

Because of the increased shedding with these alloys, pure leaf separation is hardly suitable. Separations with supporting glass mats or fleeces as well as microfiber glass mats provide technical advantages, but are expensive and can be justified only in special cases. Also under these conditions of use the microporous polyethylene pocket offers the preferred solution [40]. Lower electrical properties at higher temperatures, especially decreased cold crank duration, are battery-related the choice of suitable alloys and expanders gains increased importance. [Pg.271]

Aortal Aery Me ABS Alkyd Alloy /Blands Barrier Resin CeliAwie Diallyl Phthalates Engineering Plastics Epoxies Fluorepdlymars Liquid Crystal Melamine Nitrile Resins Nylon Phenolic Polyamlde-lmide Polycarbonate polyester Polyethylene Polyimictes Polypropylene Polyurethanes PVC... [Pg.12]

Specific family or group of plastics (polyethylene, polyvinyl chlorides, etc.) are compounded or alloyed to provide different properties and/or processing behaviors. Thus a plastic listed in Fig. 5-6 could have different heat resistance properties. [Pg.319]

Fluoropolymers utilizing high molecular weights and copolymerized and alloyed with polyethylene, should be used in most radiation applications. High-dose-rate E-beam processing may reduce oxidative degradation. When irradiated, PTFE and PFA are... [Pg.405]

NPN is completely compatible with the following materials hard copper, ST aluminum alloy, 2S soft aluminum, K Monel, 303 stainless steel and polyethylene. The compatibility limit for 10-20 cold-rolled steel is one year (Ref 4). However, according to Harvey (Ref 3a), addn of as little as 0.05% of a polyhydric ale such as glycerol to NPN will prevent the corrosion of steel... [Pg.958]

Chlorosulfonated polyethylene Elastomeric alloys Polychloroprene EPDM... [Pg.151]

Chattopadhyay S., Chaki T.K., and Bhowmick A.K., New thermoplastic elastomers from poly(ethyle-neoctene) (engage), poly(ethylene-vinyl acetate) and low-density polyethylene by electron beam technology structural characterization and mechanical properties. Rubber Chem. TechnoL, 74, 815, 2001. Roy Choudhury N. and Dutta N.K., Thermoplastic elastomeric natural rubber-polypropylene blends with reference to interaction between the components. Advances in Polymer Blends and Alloys Technology, Vol. 5 (K. Finlayson, ed.), Technomic Publishers, Pensylvania, 1994, 161. [Pg.156]

We previously reported that brominated aromatic phosphate esters are highly effective flame retardants for polymers containing oxygen such as polycarbonates and polyesters (9). Data were reported for use of this phosphate ester in polycarbonates, polyesters and blends. In some polymer systems, antimony oxide or sodium antimonate could be deleted. This paper is a continuation of that work and expands into polycarbonate alloys with polybutylene terephthalate (PBT), polyethylene terephthalate (PET) and acrylonitrile-butadiene-styrene (ABS). [Pg.255]

A variety of materials are used when manufacturing a cover, including reinforced concrete, steel, aluminum, polypropylene, chlorosulfonated polyethylene, or ethylene interpolymer alloys. There are several factors that affect a reservoir cover s effectiveness and thus its ability to protect the stored water. These factors include the following ... [Pg.193]

Polyethylene and VAE or EBA copolymers such as LED PE geomembrane pond liners, HD PE alloy geomembrane liners, lightweight tarps and containment liners. Beware of low elongations at yield and the stress cracking sensitivity of certain polyethylenes. [Pg.85]

Polyolefins are well adapted to the mono-material concept talc-filled polypropylene and LFRT for structural parts, foamed polyethylene and polypropylene for damping, polypropy-lene/EPDM alloys or copolymers for skins. Some other functions need incompatible polymers with specific characteristics such as optical properties. Without claiming to be exhaustive, the other thermoplastic materials are ... [Pg.96]


See other pages where Polyethylene alloys is mentioned: [Pg.110]    [Pg.110]    [Pg.165]    [Pg.514]    [Pg.234]    [Pg.188]    [Pg.189]    [Pg.333]    [Pg.139]    [Pg.262]    [Pg.55]    [Pg.170]    [Pg.225]    [Pg.132]    [Pg.236]    [Pg.1345]    [Pg.253]    [Pg.108]    [Pg.959]    [Pg.173]    [Pg.1033]    [Pg.1050]    [Pg.227]    [Pg.253]    [Pg.557]    [Pg.868]    [Pg.100]   
See also in sourсe #XX -- [ Pg.20 , Pg.26 , Pg.29 , Pg.36 , Pg.43 ]




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Applications of Recycled Polyethylene Terephthalate in Alloys, Blends and Compounds

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