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holding temperature 保溫溫度。

holding time

Aimed at the high temperature at furnace roof and wall , great lost of body heat radiation , poor leading heating ability and long soaking time , the compound ceramic fiber coating is used to hold temperature of furnace roof and wall , make the heating loss dropped , shorten soaking time , improve heating ability and reduce evergy consumption 摘要針對環形爐爐頂爐墻表面溫度高、爐體散熱損失大、導致加熱能力低、待溫時間偏長的問題,選用了復合陶瓷纖維保溫涂料,使爐體散熱損失減少,待溫時間縮短,加熱能力提高,且能耗降低。

There was a critical temperature tm between 1200 ~ 1215 . above the tm the relationship between the temperature and the extent of reaction of cu2o and al , which would react completely by keeping the time of holding temperature longer or rising temperature higher , is of liner relation . 3 Cu _ 2o與al的反應存在一個臨界溫度,這個臨界溫度為1200 1215之間的某一溫度t _ m ,高于t _ m ,熔液溫度的提高與cu _ 2o與al的反應進行的程度呈線性關系,并且延長保溫時間或者繼續升高反應溫度最終都能使反應完全。

Through ascension to another biochemistry that was present pre - atlantis when the equator held temperatures to this degree , then one quite naturally resonates and as such does not burn up , but feels quite comfortable as one ' s body temperature matches the temperature upon the land 藉由提升到早于亞特蘭蒂斯的另一個生化體中? ?那時赤道就持有這么高的溫度,你就能很自然地共振而并不灼燒,并且還感覺非常舒適,因為你的體溫與大地的溫度相吻合。

3 . at the same holding time , when the holding temperature changed , the number of the long equal - area - circle diameter grain increased , and the average of the equal - area - circle diameter lengthened , the average of the roundness heightened 3 、相同保溫時間條件下,改變等溫溫度,等積圓直徑大的晶粒隨溫度的升高而增加,球狀化程度高的晶粒數增多,平均等積圓直徑和平均球化度同時增大。

Ill 2 , xi ' an university of technology 2 . at the same holding temperature , when the holding time increased , the equal - area - circle diameter trended to uniform , and the distribution of the roundness approached to gaussian distribution 2 、相同等溫溫度條件下,改變等溫時間,等積圓直徑的分布隨時間的延長趨向均勻,晶粒球化度接近于正態分布。

When the preformed magnesium alloy ' s texture was globalizing , there were two important control factors , which were holding temperature and holding time , affecting the globalization processing 研究結果表明: 1 、等溫溫度和保溫時間是形變鎂合金組織球狀化的兩個重要控制因素。

The relationship between the holding temperature and the average of the equal - area - circle diameter or the average of the roundness was parabolic 而等溫溫度對最終球化組織的平均等積圓直徑和平均球化度的影響呈拋物線關系。

The semi - solid recrystallization velocity was run - up when the holding temperature risen and the heating velocity accelerated . 5 保溫溫度升高和連續加熱速度加訣都會使半固態再結晶的速度提高。

With the holding temperature going up , the globalization velocity accelerated gradually 隨著保溫溫度的升高,獲得半固態球狀組織所需的等溫時間逐步縮短。