Hergenrother et al., 1991 - Google Patents
Tensile retraction measurements. IV. Determination of loose end pullout in gum vulcanizatesHergenrother et al., 1991
- Document ID
- 14431465430445823403
- Author
- Hergenrother W
- Doshak J
- Publication year
- Publication venue
- Journal of applied polymer science
External Links
Snippet
Tensile retraction measurements have been made on unfilled rubbers cured with either sulfur or dicumyl peroxide to different levels of crosslink density. The rubbers chosen were emulsion and solution polymerized anionic SBRs, cis‐polybutadiene, natural rubber, and …
- 238000005259 measurement 0 title abstract description 19
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N2203/00—Investigating strength properties of solid materials by application of mechanical stress
- G01N2203/02—Details not specific for a particular testing method
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N3/00—Investigating strength properties of solid materials by application of mechanical stress
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Vennemann et al. | Crosslink density of peroxide cured TPV | |
Mullins | Effect of stretching on the properties of rubber | |
Truss et al. | The dependence of yield behavior on temperature, pressure, and strain rate for linear polyethylenes of different molecular weight and morphology | |
Cross et al. | Orientation hardening of PVC | |
Hergenrother et al. | Tensile retraction measurements. IV. Determination of loose end pullout in gum vulcanizates | |
Chiu et al. | Effect of Diluent on the Stress-Strain Isotherms and Ultimate Properties of a Crystallizable Polymer Network | |
Muller et al. | Polymer chain conformation in the melt during steady elongational flow as measured by SANS. Temporary network model | |
Bertilsson et al. | The limits of linear viscoelasticity in poly (methyl methacrylate) and poly (ethyl methacrylate) | |
Borders et al. | Correlation of Tensile Strength with Brittle Points of Vulcanized Diene Polymers. | |
Nielsen | Mechanical behavior of some lightly crosslinked rubbers | |
Tamura et al. | The determination of network chain density and the chemical stress relaxation of crosslinked polymers | |
Wood et al. | Creep and other tensile properties of rubber cross‐linked by dicumyl peroxide | |
Kalfoglou et al. | Structure‐property relationships of chlorinated polyethylenes | |
Fasce et al. | Evaluation of impact fracture toughness of polymeric materials by means of the J‐integral approach | |
Nakajima et al. | Effect of polar solvents on dynamic moduli of concentrated solutions of polyethylacrylate | |
Gehling et al. | Influence of the curing state on the fatigue behavior of nitrile butadiene rubber | |
Mathew et al. | Physical and technological properties of natural rubber | |
Manzur et al. | Strain-induced crystallization in cis-and trans-polyisoprene blends | |
Gehman¹ | Rubber structure and properties | |
Porzucek et al. | Low temperature slow rate penetration test: evidence for its sensitivity to the thermomechanical relaxations in the case of ethylene–vinyl acetate copolymers | |
Walluch et al. | Correlation of crosslinking degree and dynamic mechanical properties of rubber parts | |
Flisi et al. | Thermoelasticity and Stress Induced Crystallization of EPDM Elastomers | |
Kontou et al. | Elastic behavior of natural rubber filled vulcanizates | |
Rodriguez et al. | Fatigue cut growth of thermoplastic polyurethanes | |
Hergenrother et al. | Determination of the entanglement molecular weight of thermoplastic elastomers by tensile retraction measurements |