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Surface treatment plastic coatings

Plastic packagiag materials are thermoplastic, ie, reversibly fluid at high temperatures and soHd at ambient temperatures. These materials may be modified by copolymerization, additives ia the blead, aHoyiag, and surface treatment and coating. Properties of principal plastic packagiag materials are givea ia Table 1. [Pg.451]

Plasma processing technologies ate used for surface treatments and coatings for plastics, elastomers, glasses, metals, ceramics, etc. Such treatments provide better wear characteristics, thermal stability, color, controlled electrical properties, lubricity, abrasion resistance, barrier properties, adhesion promotion, wettability, blood compatibility, and controlled light transmissivity. [Pg.434]

Fig. 8.21 Electroless nickel-PTFE deposition, (a) The deposit contains up to 23% by volume of PTFE as dispersed particles. The deposit has a typical composition of Ni 87%-P 7%-PTFE 6% wt. (b) Engineering applications utilize the low-friction corrosion resistance and self-lubricating properties. In addition to the threaded and grooved components shown, examples include ball and butterfly valves, pistons and moulds for plastics or rubbers. (Courtesy Ionic Surface Treatments. lonlube coatings by Dudley Division.)... Fig. 8.21 Electroless nickel-PTFE deposition, (a) The deposit contains up to 23% by volume of PTFE as dispersed particles. The deposit has a typical composition of Ni 87%-P 7%-PTFE 6% wt. (b) Engineering applications utilize the low-friction corrosion resistance and self-lubricating properties. In addition to the threaded and grooved components shown, examples include ball and butterfly valves, pistons and moulds for plastics or rubbers. (Courtesy Ionic Surface Treatments. lonlube coatings by Dudley Division.)...
An important newer use of fluorine is in the preparation of a polymer surface for adhesives (qv) or coatings (qv). In this apphcation the surfaces of a variety of polymers, eg, EPDM mbber, polyethylene—vinyl acetate foams, and mbber tine scrap, that are difficult or impossible to prepare by other methods are easily and quickly treated. Fluorine surface preparation, unlike wet-chemical surface treatment, does not generate large amounts of hazardous wastes and has been demonstrated to be much more effective than plasma or corona surface treatments. Figure 5 details the commercially available equipment for surface treating plastic components. Equipment to continuously treat fabrics, films, sheet foams, and other web materials is also available. [Pg.131]

Corrosion. Ammonium bifluoride dissolves in aqueous solutions to yield the acidic bifluoride ion the pH of a 5% solution is 3.5. In most cases, NH4HF2 solutions react readily with surface oxide coatings on metals thus NH4HF2 is used in pickling solutions (see Metal surface treatments). Many plastics, such as polyethylene, polypropylene, unplasticized PVC, and carbon brick, are resistant to attack by ammonium bifluoride. [Pg.148]

Inorganic waste with metals from metal treatment and the coating of metals non-ferrous hydro-metallurgy Wastes from shaping and surface treatment of metals and plastics Oil wastes (except edible oils, 0500 and 1200)... [Pg.520]

Plasma surface treatment of many polymers, including fabrics, plastics, and composites, often occurs. The production of ultra-thin films via plasma deposition is important in microelectronics, biomaterials, corrosion protection, permeation control, and for adhesion control. Plasma coatings are often on the order of 1 100 nm thick. [Pg.202]

Sometimes primers can take the place of surface treatments. Two examples are with porous substrates and with certain plastic substrates. With weak porous substrates, such as wood, cement, or porous stone, the primer can be formulated to penetrate and bind weakly adhering material to provide a new, tightly anchored surface for the adhesive. Chlorinated polyolefin primers will increase the adhesion of coatings and adhesives to polypropylene and to thermoplastic olefins. The chlorine atoms in the outer surface of the primer increase surface energy and enhance adhesion of adhesives, sealants, and paints. [Pg.197]

Plasma treatments using various gases can introduce different functional groups to wood surfaces. They may also be used to improve the adhesive properties of plastic coatings. For example, plasma treatments are used industrially as a method of coating automobile bumpers. However, there are some problems in applying plasma treatments to wood. First, the equipment required for plasma treatments is expensive. Second, it is difficult to treat porous woods with plasma under reduced pressures. The latter problem has led to the investigation of normal pressure plasma treatments of wood. [Pg.204]

Historically, surface treatments to improve adhesion of coatings to plastics consisted of mechanical abrasion, solvent wiping, solvent swell that was followed by acid or caustic etching, flame treatment, or corona surface treatment. Each of these treatments has limitations, thus providing a strong driving force for the development of alternative surface preparation methods. Many of the common methods mentioned are accompanied by safety and environmental risks, increased risk of part damage, and expensive pollution and disposal problems. [Pg.198]


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See also in sourсe #XX -- [ Pg.381 ]




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