Results 141 to 150 of about 53,986 (258)
Image-based Evaluation of Cutting Forces During Ultrasonic Cutting of Bone. [PDF]
Marek A, Li X, Lucas M, Pierron F.
europepmc +1 more source
Mg–Zn composites with a thickness of 0.21 mm were fabricated using roll bonding of a kirigami‐patterned Mg alloy inlay within a Zn matrix. Thermal activation following this process led to the formation of tailored intermetallic structures, which provided the composite with enhanced flexural strength.
Yaroslav Frolov +4 more
wiley +1 more source
Modeling and experimental study of cutting forces of a variable pitch ball-end cutter in five-axis milling. [PDF]
Tian W, Zhou J, Ren J, Wang Y, Bai Z.
europepmc +1 more source
Cutting Forces Assessment in CNC Machining Processes: A Critical Review. [PDF]
Sousa VFC +6 more
europepmc +1 more source
A simplified thermoplastic pultrusion model is developed to predict thermal fields in glass fiber/polyethylene terephthalate (GF/PET) composites with reduced computational cost. By combining effective material homogenization, validation against literature data, and Gaussian‐process‐based optimization, the study reveals how heating limits, pulling speed,
Elder Soares +3 more
wiley +1 more source
Evaluation of Cutting Forces and Roughness During Machining of Spherical Surfaces with Barrel Cutters. [PDF]
Reznicek M, Horava C, Ovsik M.
europepmc +1 more source
Parameter Identification of Cutting Forces in Crankshaft Grinding Using Artificial Neural Networks. [PDF]
Pavlenko I +6 more
europepmc +1 more source
Phase‐field simulations coupled with dislocation‐density‐based crystal plasticity modeling reproduce γ′ rafting behavior in single‐crystal Ni‐based superalloys under varied loading conditions. The model captures both macroscopic creep and microscopic morphology evolution, with results matching high‐temperature creep experiments.
Micheal Younan +5 more
wiley +1 more source
Side Oscillation Milling: Modeling, Analysis, and Compensation of Cutting Forces Through Feed Optimization. [PDF]
Gdula M, Żurek P.
europepmc +1 more source
Phase Field Failure Modeling: Brittle‐Ductile Dual‐Phase Microstructures under Compressive Loading
The approach by Amor and the approach by Miehe and Zhang for asymmetric damage behavior in the phase field method for fracture are compared regarding their fitness for microcrack‐based failure modeling. The comparison is performed for the case of a dual‐phase microstructure with a brittle and a ductile constituent.
Jakob Huber, Jan Torgersen, Ewald Werner
wiley +1 more source

