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Al-rich TiAl alloy system has recently become a focus of interest due to its higher oxidation resistance, 20% lower density and higher (200 °C more) operating temperature application possibility over conventional Ti-rich TiAl alloys.
In short, due to better oxidation resistance, 20% lower density and higher (about 150 °C more) operating temperature possibility of Al-rich Ti-Al alloys over Ti-rich side, they have recently become a focus of interest (Austin 1999; Palm et al. 2012; Sturm et al. 2009).
Due to higher oxidation resistance, 20% lower density and higher (about 150 °C more) operating temperature possibility of Al-rich TiAl alloys over Ti-rich side, phases from the Al-rich region of this alloy system are considered to be highly potential candidates for high temperature structural applications.
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Consequently, this paper explores the use of hydrogenated amorphous silicon (a-Si H) a-Si Hassorber maneriabsorberVT in an effort to material higher and more fororable oPVTating temperanureffort toe thermaintainem.
However, according to the novel method of approach used here, the more appropriate operating temperatures would be 52 °C for free and 42 °C for immobilized inulinases, showing that the working temperature is not necessarily the same as the maximum reaction rate temperature, but preferably a lower temperature where the enzyme is much more stable.
OPERATING CONDITIONS Operating temperature 0℃ to 40℃ Operating humidity 10%to80%0%.
However, despite their improved advantageous characteristics, these sensors still suffer from several shortcomings more or less, such as high operating temperature (more than 100 °C) [8, 11, 16 18], baseline drift [9], and long recovery time [16].
Turbocharger installation is simplified, and the loss of exhaust heat is reduced, helping the catalytic converter reach operating temperature more quickly.
This limitation is more pronounced as the operating temperature increases.
Further, higher be the operating temperature more is the efficiency of system.
The DT model was shown to be more effective for higher operating temperature and the tube length.
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