By D. M. Brewis, I. Mathieson
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Additional resources for Adhesion and Bonding to Polyolefins (Rapra Review Reports)
The 2 min helium plasma treatment was shown to etch the surface of the fibre, resulting in a 70% increase of fibre/epoxy resin interfacial shear strength(IFSS) over the control and 1 min treated group. The increase of IFSS was mainly due to the etching of the fibre surface that created grooves of about 200 nm width. 14 refs. Conference proceedings. Dallas, Texas, 6th-10th May, 2001, paper 445 ADHESION OF POLYETHYLENE TO POLYPROPYLENE IN MULTI-LAYER FILMS Poon B; Chang A; Chum S P; Tau L; Volkenburgh W R; Hiltner A; Baer E Case Western Reserve University; Dow Chemical Co.
8). , the corona discharge method. As noted in Section 4, there have been many detailed studies relating to the pretreatment of plastics. Much is now known about these pretreatments including the chemical groups introduced, their concentrations and the depth of chemical modification. In contrast, the number of studies involving elastomers is much lower and in general the studies have been much less informative. One of the reasons for this is that elastomers usually contain several additives often in relatively high concentrations.
SPE) It has previously been proposed that oxidation of linear low density polyethylene, by heating the polymer to high temperatures, enhances the adhesion to polar substrates such as aluminium foil during the extrusion coating process. The peel strength increases with increasing time in the air gap, attributed to increased oxidation of the melt curtain. Acid copolymers behave similarly. Experiments were conducted to clarify the mechanism: acid copolymers and LDPE were treated with ozone as they were coated onto foil, and the peel strength determined; the influence of antioxidant additions to the peel strength of LDPE was studied; the influence of processing temperature on peel strength was evaluated; and the influence of orientation on peel strength was measured.
Adhesion and Bonding to Polyolefins (Rapra Review Reports) by D. M. Brewis, I. Mathieson