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The stiffnesses of the reinforcing materials decrease in the following order: MS, SWG, PP, HDPE and PET.
Also, the reverse scan of Pt/C electrocatalyst showed a peak around −0.3 V which was attributed to reduced PtOx species and with the increase in Rh content on PtRh/C materials, decrease the intensity of this peak.
The results of aging test reveal that the mechanical properties of EPDM seal materials decrease with time, but multilayered vulcanizates still have lower compression set than blended one after aging.
On the other hand, the use of water deluge systems or passive fire protection (PFP) materials decrease heat flow to the vessel contents and can reduce or eliminate the risk of a BLEVE from occurring.
The flexural strength and fracture toughness of the ultrafine-grained WC Co materials decrease in different extent with increasing of annealing temperature, whereas the hardness does not change obviously.
In general, compressive strength and directional modulus of materials decrease as the weight of the specimen decreases, while the insulation effect increases; the results in Fig. 9 demonstrate the effect of the weight loss of the specimen on the material properties, and the anisotropic insulation can be utilized to optimize this phenomenon.
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Under tension, the temperature of elastic materials decreases.
Thus, the efficient CL emission to photoactive materials decreases.
The crystalline melt of the materials decreased by 15 °C.
Utilization of HNO3 washed materials decreases ΔEp value in the case of DWCNT-GCPE and GCPE.
All magnesium-based materials decreased the amount of Ca2+ in this study.
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