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Mineral-filled polyamides

As already seen, the use of mineral fillers not only has economic advantages but also technical advantages (see Table 3.21 showing the performance indices of mineral-filled polyamide) such as ... [Pg.215]

Table 3.21 Performance indices of mineral-filled polyamide linked to the same performances of neat PA... Table 3.21 Performance indices of mineral-filled polyamide linked to the same performances of neat PA...
Figure 4.63 highlights the different behaviours of neat and glass fibre or mineral-filled polyamides 46. [Pg.403]

Table 5 provides average properties of mineral filled polyamide. In reviewing the general properties of this polymer, note the use of the following legend A = amorphous - Cr = crystalline - C = clear - E = excellent - G = good - P = poor -O = opaque - T = translucent- R = Rockwell - S = Shore. [Pg.225]

Staramide-Mineral Mineral-filled polyamide-6, PA-6 Ferro Corp. [Pg.2338]

Description Anhydrous aluminium silicates, aminosilane surface-treated mineral-filled polyamides low warpage/hlgh Impact ... [Pg.376]

Description Aminosilane surface-treated grades, giving improvements in physical properties compared with untreated fillers, esp. low warpage, high impact strength specially developed for mineral-filled polyamides can also be used in polyesters, urethane, PVC and other thermoplastics white colour ... [Pg.377]

Minor phase impact modifier Matrix mineral filled polyamide 6... [Pg.276]

In general, plastics are superior to elastomers in radiation resistance but are inferior to metals and ceramics. The materials that will respond satisfactorily in the range of 1010 and 1011 erg per gram are glass and asbestos-filled phenolics, certain epoxies, polyurethane, polystyrene, mineral-filled polyesters, silicone, and furane. The next group of plastics in order of radiation resistance includes polyethylene, melamine, urea formaldehyde, unfilled phenolic, and silicone resins. Those materials that have poor radiation resistance include methyl methacrylate, unfilled polyesters, cellulosics, polyamides, and fluorocarbons. [Pg.31]

Loctite 3567/ Loctite Epoxy liquid underfill, mineral filled 1 Silicon, ceramics, laminates Dispense, capillary underfill Flip-chip (polyamide passivation), BGAandCSP... [Pg.293]

Melamine cyanurate, Melapur MC, is less successful in glass filled polyamide compounds than Melapur 200, but works well in uiu-einforced PA66 or a mineral-filled formulation, achieving V-0 at 6-10% loading for the former, and at 13-15% in the latter. [Pg.52]

Akuloy RM Polyamide-6 or polyamide-66 blend with functionalized-PP glass fiber or mineral filled or not DSM Plastics Int. [Pg.2283]

Ultramid T Semi-aromatic polyamide-6/66, PA-66 T, or PARA with elastomer 30 wt% glass fiber or mineral filled BASF Plastics... [Pg.2346]

Polyamide 6/6 40% mineral filled Under-bonnet mechanical parts... [Pg.171]

Mineral filled, flame retardant polyamide-6 STRUCTURE Dispersed... [Pg.280]

Blends of ethylene copolymers (such as ethylene-vinyl acetate, ethylene-ethyl acrylate, ethylene-acrylic acid copolymers) have been typically added to LDPE, HDPE and LLDPE to improve filler and additive acceptance, balance film properties, improve environmental stress crack resistance, tear resistance, toughness and surface properties. These blends are particularly prevalent in film formulations and as such are rarely disclosed by the manufacturer. Equistar has introduced functionalized polyolefins (Integrate ) to improve dispersion and adhesion in wood fiber filled and mineral filled polyolefin composites. Arkema Group offers Lotryl ethylene-acrylate (methyl, butyl and 2-ethyl hexyl) copolymers and notes the wide range of compatibility with other polyolefins as well as polyamides and polyesters. [Pg.388]

The selected scenario comprises the conceptual design of a polymerization process for the production of Polyamide-6 (PA6) from caprolactam [99, 104]. PA6 is a thermoplastic polymer with a world production capacity of more than 4 million tons per year (as of 2006). The most frequent use of PA6 is the production of fibers, which are used in home textiles, bath clothing and for carpet production. In addition, PA6 is used as an engineering construction material if high abrasion resistance, firmness, and solvent stability are required. Glass-fiber reinforced and mineral material-filled PA6 is a preferred construction material if a combination of rigidity, elasticity and refractory quality characteristics are required. [Pg.7]


See other pages where Mineral-filled polyamides is mentioned: [Pg.557]    [Pg.82]    [Pg.605]    [Pg.654]    [Pg.56]    [Pg.557]    [Pg.82]    [Pg.605]    [Pg.654]    [Pg.56]    [Pg.432]    [Pg.406]    [Pg.129]    [Pg.391]    [Pg.108]    [Pg.295]    [Pg.172]    [Pg.179]    [Pg.64]    [Pg.626]    [Pg.31]    [Pg.107]   
See also in sourсe #XX -- [ Pg.82 ]




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