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Titlebook: Advances in Polymer Friction and Wear; Lieng-Huang Lee Book 1974 Springer Science+Business Media New York 1974 Polyolefin.Rigid body.adhes

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Multifilamentary Superconducting Compositesh the pressure dependence of the shear strength of the polymer is taken into consideration. Recent measurements on polypropylene films, as well as earlier data on several other polymers, are used to illustrate these ideas.
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https://doi.org/10.1007/978-1-4757-2966-5one another. The problem has been formulated in terms of a plane of finite thickness rubbing against rectangular and pyramidal shaped elastomeric sliders. The plane has been treated as a rigid solid, but the analysis is also expected to hold for an elastomeric plane. Formulas for the average and max
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Multifilamentary Superconducting Compositesoth ice. It has been shown that the mechanism of the friction of rubber on ice is the same as that on other smooth surfaces under similar low sliding speed conditions and that the maximum friction coefficients are similar. The Williams Landel and Ferry equation is used to superpose curves of the vel
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Composite Material Structure and Processing, of its characterization. The only agreement that could be achieved during the ensuing three days was on the time to adjoin the meeting. During the following ten years and a few hundred thousand research papers later, agreement on this matter has been achieved and this was probably due to the fact t
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https://doi.org/10.1007/978-1-84882-831-5lymer systems is described. After an initial discussion of the advantages of the technique, basic instrumentation and types of information available, a review of most of the current areas of applicability to polymers is given. The potential of the technique for the investigations of friction and wea
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Composite Material Structure and Processing,on microscopy and Auger emission spectroscopy, were used to examine the nature of the polymermetal interactions. Strong adhesion of polymers to all metals in both the clean and oxidized states was observed. Adhesive bonding was sufficiently strong with the cohesively weaker metals such as aluminum t
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https://doi.org/10.1007/978-1-4613-9942-1Polyolefin; Rigid body; adhesion; base; chemistry; elastomer; environment; growth; iron; metals; photography; p
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