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Effect of loading strain rate on nano-indentation response of an aerospace grade epoxy polymer
Published 2023-06-01Subjects: Get full text
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242
Experimental investigation and optimization of epoxy composites reinforced with jute fiber and alumina using the Jaya ANFIS approach
Published 2025-08-01Subjects: Get full text
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243
Creation of fully degradable poly(lactic acid) composite by using biosourced poly(4-hydroxybutyrate) as bioderived toughening additives
Published 2022-09-01Subjects: Get full text
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244
High-density polyethylene/EPDM rubber blend composites of boron compounds for neutron shielding application
Published 2022-06-01Subjects: Get full text
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245
Effect of a new surface-grafting method for nano-hydroxyapatite on the dispersion and the mechanical enhancement for poly(lactide-co-glycolide)
Published 2014-02-01Subjects: Get full text
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246
Exploring a novel multifunctional agent to improve the dispersion of short aramid fiber in polymer matrix
Published 2012-04-01Subjects: Get full text
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247
Optimization of the technology for producing titanium products
Published 2025-09-01Subjects: Get full text
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248
Toughening Mechanism of CaAl<sub>12</sub>O<sub>19</sub> in Red Mud–Al<sub>2</sub>O<sub>3</sub> Composite Ceramics
Published 2024-10-01Subjects: Get full text
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249
Accelerated weathering of PP based nanocomposites: Effect of the presence of maleic anhydryde grafted polypropylene
Published 2013-08-01Subjects: Get full text
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250
The role of lignin extracted from patchouli fiber waste in sustainable ternary biopolymer blends
Published 2025-06-01Subjects: Get full text
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251
Biodegradable scaffold: integration of polylactic acid, hydroxyapatite, and graphene oxide via FDM 3D printing
Published 2024-06-01Subjects: Get full text
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252
Aggregate Packing Density Approach for Sustainable SCC using Un-Processed Coarse Recycled Concrete Aggregates
Published 2024-12-01Subjects: “…self compacting concrete, coarse recycled concrete aggregate, aggregate packing density, flow properties, and mechanical properties…”
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253
Quantification of the Mechanical Properties in the Human–Exoskeleton Upper Arm Interface During Overhead Work Postures in Healthy Young Adults
Published 2025-07-01“…However, the human–exoskeleton interaction remains poorly understood, and the mechanical properties of the pHEI are not well characterized. …”
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254
Influence of Friction-Stir-Processing Parameters on the Microstructure and Local Mechanical Properties of an Aluminium-6% Magnesium-H18 Alloy
Published 2025-06-01“…This study examined the effect of tool travel speed on the microstructural evolution and mechanical properties of a new-generation Al-6Mg alloy. …”
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255
Investigating the microstructure and mechanical properties of L-shaped structure of TM-B9 HSLA steels using WAAM process
Published 2025-08-01Subjects: Get full text
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256
Systematic review and meta analysis of mechanical properties of 3D printed denture bases compared to milled and conventional materials
Published 2025-08-01“…Although 3D-printed denture bases offer customization and production efficiency, their mechanical properties remain inferior to milled alternatives. …”
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257
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Enhancing mechanical properties and freeze-thaw durability of xanthan-stabilized kaolinite clay with randomly distributed animal-based fibers
Published 2025-09-01“…SEM and EDS analyses further validated the mechanical testing results from a micromechanical perspective. …”
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259
Effect of laser defocus on microstructural and mechanical properties of 316L stainless steel manufactured by laser powder bed fusion
Published 2025-09-01Subjects: Get full text
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260
Damage modes and mechanical properties of Ti6Al4V lattice structures under transverse impact loading
Published 2025-07-01“…The development of Laser Powder Bed Fusion (L-PBF) technology has enabled the easy fabrication of lattice structure materials, which exhibit exceptional mechanical properties. The present study investigates the mechanical properties and deformation processes of ten Ti6Al4V lattice structures (Primitive, Diamond, Fischer-Koch, I-WP, Gyroid; 6-Layered Plate, 4-Layered Plate, Truss Plate; Auxetic honeycomb X, and Auxetic honeycomb Y) under a transverse impact loading. …”
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