Thermal and Mechanical Properties of High-Performance Polyester Hybrid Nanobiocomposites Reinforced with Pre-treated Short Pineapple Leaf Fibers for Automotive Applications. [PDF]
Arumugam GS +5 more
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AI-powered non-destructive testing for smart manufacturing of carbon-negative biopolymer-bound soil composite. [PDF]
Miao BH +5 more
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Functional anisotropy of the elephant trunk skin: A biological blueprint for grasping, protection, and tactile sensing. [PDF]
Lo Preti M +6 more
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Arthroscopic Bankart Repair Using the Labral Bridge Technique Reveals Excellent Outcomes at a Minimum Follow-up of 2 Years: A Retrospective Case Series. [PDF]
Schanda JE +4 more
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Smart biocomposite hydrogels in action: unraveling the roles of lignin, temperature, and crosslinker on drug release. [PDF]
Wolff M, Davis EM.
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Optimizing the drilling performance of Syagrus romanzoffiana fiber biocomposites: minimizing delamination with RSM and ANN modeling. [PDF]
Ferfari O +4 more
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Development of Sustainable Red Algae-Sisal Fiber Composite Films via Doctor Blading. [PDF]
Richards M +4 more
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Modeling and kinetic analysis of structural disintegration and biodegradation of biocomposite cultivating pots from agricultural waste. [PDF]
Elashry ME, Khater EG, Ali SA.
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Effect of Multiple Mechanical Recycling Cycles on the Structure and Properties of PHBV Biocomposites Filled with Spent Coffee Grounds (SCG). [PDF]
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Composite materials consist of two or more distinct phases of base/primary materials: a primary phase consisting of a matrix polymer and a secondary phase consisting of a reinforcing filler. Composites’ properties reflect the properties of both phases and are primarily created to improve strength, stiffness, and/or density.
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