Sentence examples for material volumetric from inspiring English sources

Exact(3)

First, the simplified formulas about mean residence time (MRT) and material volumetric flow (MVF) are derived by incorporating statistic-averaged analysis on all repeated excursions of solids within kiln into PTM.

It is encouraging that, with the exception of marrow space diameter and cortical porosity, that apparent and material volumetric bone mineral density, as well as, several macro- and microstructure parameters in this novel mid-shaft region can be assessed with very high precision (RMSCV% < 2) using HR-pQCT, in vivo.

The application of volume-specific surface area (VSSA) [see Supplemental Material, "Volumetric Specific Surface Area (VSSA)—A Surface Area Approach," p. 3] was also acknowledged as an agglomerate-tolerant proxy (Kreyling et al. 2010) to identify potential materials; however, number size distributions are to prevail (EC 2011a, 2011b).

Similar(57)

The approach consists of three major algorithms: firstly, an algorithm is developed to convert the given multi-material volumetric data into a Ray-rep for heterogeneous solid; secondly, filtering algorithm is exploited to process the rays of heterogeneous solid in parallel; and lastly, the adaptive mesh surfaces are generated from the Ray-rep through a dual-contouring like algorithm.

Aluminum is used because of its numerous applications as an energetic material, high volumetric heat of combustion (HoC), high thermal conductivity, excellent surface absorption, and low melting/ignition temperatures.

The stress strain relationship is derived using closed loading/unloading surfaces, associated flow rule and isotropic hardening rule, to reflect the pressure-sensitive behaviour of the material with volumetric plastic strains.

In the embedded piezoresistive microcantilever (EPM) sensor, a tiny piezoresistive microcantilever is embedded or partially embedded into an active sensing material whose volumetric response to the presence of an analyte is recorded as a strain in the cantilever, and subsequent change in the resistance of the cantilever.

This study presents a finite element (FE) model capable of predicting the final residual stress field in an inertia friction welded component of a CrMoV steel considering the elastic and inelastic components of strain resulting from mechanical deformation, temperature changes in the material and volumetric changes associated with phase transformations.

Since the density of these films is almost as large as graphite, these unheated materials have volumetric capacities near 1600 mAh/cm3 while the heated materials are near 1200 mAh/cm3.

Here we develop vasculatures for smart materials with volumetric cooling capability under time-varying conditions.

These numerical results are beneficial for the design of optimized materials for volumetric receivers.

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