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Volumn 101, Issue 9, 2010, Pages 3280-3286
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Creep behavior of bagasse fiber reinforced polymer composites
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Author keywords
Bagasse; Composite; Creep; Modeling; Plastics; Time temperature superposition
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Indexed keywords
BAGASSE FIBERS;
BAGASSE-COMPOSITES;
BURGERS MODEL;
COMPOSITE;
CONSTANT LOADS;
CREEP BEHAVIORS;
CREEP CURVES;
CREEP DATA;
CREEP MODEL;
CREEP RATES;
CREEP RESPONSE;
HDPE COMPOSITE;
HIGHER TEMPERATURES;
LOADING LEVEL;
LONG TERM CREEP;
LOW TEMPERATURES;
POWER LAW MODEL;
PVC COMPOSITES;
TEMPERATURE DEPENDENCE;
TIME TEMPERATURE SUPERPOSITION;
BAGASSE;
CHLORINE COMPOUNDS;
CREEP;
ELASTOMERS;
FIBER REINFORCED PLASTICS;
HIGH DENSITY POLYETHYLENES;
PLASTICITY;
POLYVINYL CHLORIDES;
CREEP RESISTANCE;
BAGASSE;
POLYETHYLENE;
POLYMER;
POLYVINYLCHLORIDE;
ACCURACY ASSESSMENT;
COMPOSITE;
CREEP;
DEFORMATION MECHANISM;
NUMERICAL MODEL;
PARAMETERIZATION;
PLASTIC;
POLYMER;
SUGAR CANE;
TEMPERATURE EFFECT;
WASTE;
ANALYTICAL PARAMETERS;
ARTICLE;
BURGERS MODEL;
CONTROLLED STUDY;
CREEP;
FINDLEYS POWER LAW MODEL;
HIGH TEMPERATURE;
LOW TEMPERATURE;
PHYSICAL MODEL;
PHYSICAL PHENOMENA;
PRIORITY JOURNAL;
STRESS STRAIN RELATIONSHIP;
TEMPERATURE DEPENDENCE;
TIME TEMPERATURE SUPERPOSITION;
TWO PARAMETER POWER LAW MODEL;
CELLULOSE;
MATERIALS TESTING;
MECHANICAL PHENOMENA;
MODELS, CHEMICAL;
POLYVINYL CHLORIDE;
TEMPERATURE;
TIME FACTORS;
BAGASSE;
CHLORINE COMPOUNDS;
COMPOSITES;
CREEP;
ELASTOMERS;
PLASTICITY;
PLASTICS;
POLYETHYLENE;
POLYVINYL CHLORIDE;
RESISTANCE;
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EID: 74649085204
PISSN: 09608524
EISSN: None
Source Type: Journal
DOI: 10.1016/j.biortech.2009.12.072 Document Type: Article |
Times cited : (162)
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References (15)
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