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Then, a third-scale mobile loading simulator (MMLS3) that can simulate practical traffic load on a lab scale is used.
The structures are subjected to impulsive loads of different intensities using a novel new projectile-impact-based facility called the Underwater Shock Loading Simulator (USLS).
Real-time electro-hydraulic hybrid system (REHS) with shaking table and force loading simulator is an essential experimental facility for evaluating structural performance subjected to simultaneously vibration excitation and force loading.
The compressive response of sandwich plates with polyvinyl chloride (PVC) foam cores and aluminum facesheets to water-based impulsive loading is analyzed using an instrumented impulsive loading apparatus called the underwater shock loading simulator (USLS) and a fully-dynamic 3-D computational framework.
The femur and tibia were rigidly attached to their respective attachment points in a dynamic loading simulator using bone cement (Palacos, Heraeus Medical GmbH, Hanau, Germany).
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The Model Mobile Load Simulator (MMLS3) was used to simulate the effect of traffic load on the skid-resistance of compacted mixes.
Simulation results indicate that the proposed method can be successfully used to carry out the static and kinetic friction simulation with an electro-hydraulic load simulator.
In this research, both laboratory Model Mobile Load Simulator (MMLS) tests and Finite Element (FE) simulation were performed to assess the effects of several factors influencing the dynamic response of Hot Mix Asphalt (HMA) slabs that include material properties, wheel loading speed, top-down cracking and thickness of the slab.
A dynamic physiologic-loading simulator according to Hofmann et al. [ 15] was used to simulated extension motions of the of the knee joint from approximately 120° flexion to full extension, similar to the motion occurring when a subject moves from a deep squatting to a standing posture.
A load simulator must maintain a large number of simultaneous but low density input streams.
This paper studies a nonlinear robust control algorithm of the electro-hydraulic load simulator (EHLS).
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