841 - 849 |
A new laboratory method to determine the traction and wear properties of tire tread compounds - Part II: Wear evaluation Grosch KA |
852 - 856 |
Diffusion, of water vapour in polymer lining materials, especially synthetic rubber linings Subat G |
857 - 860 |
Effect of storage of natural rubber latex concentrate on properties of prevulcanized latex film Claramma NM, Varghese L, Mathew NM |
861 - 867 |
Mechanical properties, crosslink density and surface morphology of SBR/silicone rubber blends Popovic RS, Plavsic M, Popovic RG, Milosavljevic M |
868 - 870 |
Poly(siloxane) network of ultra-high elongation Kohjiya S, Urayama K, Ikeda Y |
873 - 880 |
Carboxylic anhydride groups and carboxylic acid groups in polyamide melts P Part 2. Transfer of the decomposition mechanism to so-called macromolecular decomposition agents for the formation of graft copolymers Lehmann D, Eichhorn KJ, Voigt D, Schulze U |
881 - 889 |
Investigations concerning the reaction silica/organosilane and organosilane/polymer - Part 1: Reaction mechanism and reaction model for silica/organosilane Hunsche A, Gorl U, Muller A, Knaack M, Gobel T |
890 - 898 |
Characterization of rubber-solvent interaction by inverse gas-chromatography Schuster RH, Issel HM, Peterseim V |
900 - 902 |
Extrusion of rubber: Prediction of die swell Thomas MDH, Dolbey PC, Binding DR, Cassidy M |
903 - 903 |
ACS rubber division - 152nd fall technical meeting and rubber exhibition - Cleveland, OH, October 21-23, 1997 Rigbi Z |