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In earlier in vivo studies, porous magnesium scaffolds have been demonstrated that can enhance bone formation. However, studies investigating bone response to open-porous magnesium scaffolds with different pore size are scarce. In this study, based on the analysis of micro-CT and histology, we found that under similar porosity, magnesium scaffolds with larger pore size elicit a higher level of osteoblastic activity and up-regulated collagen type 1 and OPN expression, leading to higher bone mass and more mature bone formation in the implant site. Although the specific mechanisms underlying these differences are not fully understood, we can get some potential information to illustrate that according to our results.

Sumithra, S., Takas, N. J., Misra, D. K., Nolting, W. M., Poudeu, P. & Stokes, K. L. Enhancement in thermoelectric figure of merit in nanostructured Bi2Te3 with semimetal nanoinclusions. Adv. Energy Mater 1, 1141–1147 (2011).

Don’t forget about waxed paper capacitors. They were made of layers of conductive foil and waxed paper, rolled up. They’re found in a lot of pre-1970s electronics, in places where we would now use mylar or ceramic capacitors. They were large and would become leaky as they adsorbed moisture from the air.

Composite camshafts are gaining in importance, as they decrease in weight, offering more opportunities for automotive manufacturers. Thanks to the new SFC 600 heat-shrink machine from EMAG, the heat-shrink process achieves new levels of flexibility.

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SH polarization is described by PSH,i = χijk(2)Ej(ω)Ek(ω), where PSH,i and χijk(2) are the SH polarization and SH susceptibility tensor, and the subscripts i, j, and k, refer to the axes of the sample. The space group Pna21 of ε-Fe2O3 has a crystallographic term in the second-order nonlinear susceptibility35. When the nanoparticles are oriented by electric and magnetic fields as (electric polarization) //z-axis (c-axis) and (magnetic polarization) //x-axis (a-axis), the nonzero elements in χijk(2) are , , , and . Additionally, below TC, the magnetic polarization generates a magnetic term in the Pna21 magnetic space group, that is, , , , and . The nonzero tensor elements in χijk(2) are described by the sum of and by the following tensor.

Good morning. Can you guys talk about how the partnership with the large European automotive company is going?

To demonstrate the surface-agnostic nature of the MXene multilayers, we assembled the coatings by alternate immersion onto indium tin oxide (ITO)–coated glass, poly(ethylene terephthalate) (PET) film, In2O3/Au/Ag-coated PET, kirigami-patterned PET, poly(dimethylsiloxane) (PDMS), and nylon fibers (Fig. 2, A to C, and movie S1). These surfaces span different chemistries (oxide, organic, hydrophilic, and hydrophobic) and different geometries (flat versus textured fiber). Figure 2 (A and B) shows the successful deposition of the multilayer onto all of these surfaces, which is impressive considering that this could not have been achieved by other means (for example, vacuum filtration and dip-coating). It is also demonstrated that these coatings retain their conductive nature. Figure 2C shows that the nylon fiber was rendered conductive by the multilayer coating. Figure 2D quantifies the sheet resistance with the number of layers pairs. A five-layer-pair multilayer had a sheet resistance of 17 kilohm per square, which decreased and stabilized to 5 to 8 kilohm per square because more layer pairs were deposited. This is because more continuous pathways for charge transport developed as additional layer pairs were added. The sheet resistance values here were higher than that of pure Ti3C2 MXene sheets (7, 8) because of the presence of insulating PDAC in the multilayer coatings. To demonstrate conductivity, the multilayer coating on PET operated an LED even under extreme bending and folding from 180o to 0o (Fig. 2E and movie S2).

From a simple mechanics perspective, the main difference between the uniaxial pressing and DAC systems should be a deviatoric component of the stress. We set out to investigate the idea that this could lead to slipping of the nanosheets. Because this shear would be at a maximum at the powder/die interfaces in the uniaxial system, we attempted to characterize the internal structure of the discs as well, where these stresses are not as high. Because the x-ray penetration depth is small compared to the thickness of the discs, this was accomplished by scraping thin layers off of the discs with a razor and then running XRD on the newly exposed surfaces (the depth of material removed was determined by comparing the difference obtained from height alignments in the diffractometer). From Fig. 3A, it is clear that even in the case of 0% RH, there is high preferential orientation (along the basal direction) at the surface compared to the bulk (Fig. 3A). This alignment effect is known and discussed in the literature (22). However, the peak corresponding to ~10 Å persists deep within the disc, although with reduced intensity. On the other hand, the 100% RH sample’s peak corresponding to a basal spacing of ~15 Å (Fig. 3B) disappears between 20 and 40 μm from the surface, with no traces of other peaks, suggesting that the ordering of the material along [001] is quite strong only at the surface (in contact with the die) and that the bulk of the pressed disc is highly variable in basal spacing. From these results, it is clear that the observed behavior is primarily a surface effect, where the multilayered particles interact with the steel die. Further evidence for this effect is in the form of material ejected through a seam and up the side of the die wall (as shown in fig. S3A). This material was carefully collected, and XRD (fig. S3B) revealed that it also had an expansion to 15 Å, despite the fact that this part of the material was oriented orthogonally to the direction of pressure and was outside of the main die body; however, because of the small size of the seam, it would certainly have experienced high shear forces.

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The MoLa alloy comprising 1.1wt % Lanthana exhibits strong warpage-resistance, high strength properties, and has the highest creep resistance of all grades offered by H.C. Starck. Its strength is five folds higher than pure molybdenum at 1500°C and higher than that of the TZM alloy above 1400°C. MoLa alloys deliver superior performance in applications requiring high-temperature dimensional stability and sag resistance such as furnace elements, sintering boats, and setter tiles.

What about a printed super thin wall, providing the sealed structure with a carbon fiber sock wrapped around it to provide strength? kind of like the way flexible plumbing pipes are made. The inner rubber provides the waterproofing while the outer stainless mesh holds the pressure. I am sure carbon fiber (and the resins) provides some interesting challenges at -187 degrees Celsius.

Estimation of the market potentials, existing product quality, and market size determination is also carried out in details. The Global Pickups Market report presents the product specification, segmentation analysis, and projection of production cost during the forecast period 2019-2024. Through primary and secondary analysis, the report describes the Pickups industry with market drivers, challenges, dynamics, and restraints. The report also figures out Production/Consumption value, Revenue, CAGR, and market distribution channels.

The Minisart® PES offers a combination of PES membrane and PP housing and has a higher chemical compatibility than PES in MBS housing. Sartorius Minisart syringe filters with acrylic-based housing are perfect for liquid cleanup and sterilisation, filter sterilisation being the fastest solution for removing bacterial cells from liquids while leaving the ingredients unaffected.


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