Results 301 to 310 of about 7,458,524 (401)
The structure of near misses and occupational accidents in the polish construction industry. [PDF]
Woźniak Z, Hoła B.
europepmc +1 more source
Direct Consolidation of Copper–Graphene Composite by Rotary Swaging
The applicability of the rotary swaging method for preparation of electroconductive copper–graphene composite by direct consolidation of powders is proven. The consolidated material features advantageous microstructure featuring fine grains and twins, with homogeneous distribution of graphene, primarily along the twin boundaries, which contribute to ...
Radim Kocich+2 more
wiley +1 more source
Application of nanosilica in the construction industry: A bibliometric analysis using Methodi Ordinatio. [PDF]
Hernández-Contreras M+4 more
europepmc +1 more source
A CASE STUDY ON THE HYUMAN RESOURCE DEVELOPMENT OF ENGENEER AT CONSTRUCTION INDUSTRIES(Education)
Takeshi Igarashi+2 more
openalex +2 more sources
This study investigates the mechanical properties of Carbon/Aramid intraply hybrid fiber‐reinforced Elium composites under 6 months of water aging. After aging, flexural strength decreases by 25.89%, tensile strength by 4.40%, and fracture toughness by 21.56%.
Muhammed Huseyin Guzel, Gurol Onal
wiley +1 more source
3D‐Printed Architected Material for the Generation of Foam‐Based Protective Equipment
This study investigates 3D‐printed architected structures as alternatives to traditional foams in protective gear. It focuses on customizing impact strength and damping through design and manufacturing integration. Testing shows these structures outperform conventional foams, offering enhanced customizability, lower weight, and tunable performance ...
Ali Zolfagharian+5 more
wiley +1 more source
The potential of construction robotics to reduce airborne virus transmission in the construction industry in the UK and China. [PDF]
Li L+8 more
europepmc +1 more source
The share of technical thermoplastics is expected to grow further in the e‐mobility segment. In this study, a detailed temperature‐based tribological characterization of technical thermoplastics is performed. The tribological properties are discussed in terms of the dynamic mechanical properties of polymers at different ambient temperatures. A proof of
Harsha Raghuram+2 more
wiley +1 more source