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Wenli Ye
Researcher at Jilin University
Publications - 19
Citations - 437
Wenli Ye is an academic researcher from Jilin University. The author has contributed to research in topics: Nozzle & Ultimate tensile strength. The author has an hindex of 7, co-authored 15 publications receiving 258 citations.
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Effects of extrusion speed and printing speed on the 3D printing stability of extruded PEEK filament
TL;DR: In this article, the effects of extrusion speed and printing speed on the microstructure and dimensions of an extruded PEEK filament in 3D printing were investigated and a control algorithm that mathematically replaces the nozzle diameter with the diameter of the extruded filament was proposed.
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Influence of Layer Thickness, Raster Angle, Deformation Temperature and Recovery Temperature on the Shape-Memory Effect of 3D-Printed Polylactic Acid Samples.
TL;DR: The results showed that the shape-memory effect of 3D-printed PLA parts depended strongly on recovery temperature, and depended more weakly on the deformation temperature and3D-printing parameters.
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Separated 3D printing of continuous carbon fiber reinforced thermoplastic polyimide
TL;DR: In this paper, the relationship between the drying time of pure TPI 3D printed filaments and the tensile strength of 3D-print specimens was studied, and the effects of the 3D printing speeds, layer thicknesses, and filling rates of the printed parts were investigated.
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3D printing of carbon nanotubes reinforced thermoplastic polyimide composites with controllable mechanical and electrical performance
TL;DR: In this article, the effects of different carbon nanotube (CNT) contents on the thermal and electrical properties of 3D printed composites were investigated, and the relationship between the electrical conductivity, tensile properties, bending properties, resistivity and cyclic bending deformation was studied.
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3D printing of thermoplastic PI and interlayer bonding evaluation
TL;DR: In this article, the thermal stability of TPI raw materials and 3D printing filaments were analyzed and the relationship between the Tf of the 3D filament and the starting printing temperature was studied.