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- W2106106878 abstract "A novel ordered-reinforced microscale polymer matrix composite based on electrophoresis and surface micromachining technologies has been proposed in the present work. The braid angle, volume content and width of the reinforcement in the composite has been designed and simulated by ANSYS finite element software. Based on the simulation and optimization, the Ni fibers reinforced polymer matrix composite sample (3 mm length × 0.6 mm width × 0.04 mm thickness) was successfully fabricated utilizing the surface micromachining process. The fabricated samples were characterized by microtensile test on the dynamic mechanical analysis (DMA) equipment. It is indicated that the tested tensile strength and Young's modulus are 285 MPa and 6.8 GPa, respectively. In addition, the fracture section of the composite sample has been observed by scanning electron microscope (SEM) and the corresponding fracture process was also explained and analyzed in detail. The new presented composite is promising for hot embossing mold in microfluidic chip and several transducers used in accurately controlled biomedical systems." @default.
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- W2106106878 date "2011-10-01" @default.
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- W2106106878 title "MICROTENSILE TEST OF AN ORDERED-REINFORCED ELECTROPHORETIC POLYMER MATRIX COMPOSITE FABRICATED BY SURFACE MICROMACHINING" @default.
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- W2106106878 doi "https://doi.org/10.1142/s0218625x11014667" @default.
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