austenite

austenite

austenite是一個英語單詞,主要用作名詞。作名詞時意思是“奧氏體”等。

基本介紹

  • 外文名:austenite
  • 詞性:名詞
  • 英式音標:[ˈɒstɪnaɪt; ˈɔː-]
  • 美式音標:[ˈɔːstənˌaɪt]
單詞釋義,短語搭配,雙語例句,

單詞釋義

英 [ˈɒstɪnaɪt; ˈɔː-] 美 [ˈɔːstənˌaɪt]
n. [材] 奧氏體

短語搭配

retained austenite 殘留奧 ; [機] 殘留奧氏體 ; 殘留活斯田鐵 ; [機] 殘餘奧氏體
Austenite steel 奧氏體鋼
Austenite Carbon Steel 奧氏體碳鋼
Krupp Austenite Steel 奧氏體鉻鎳合金鋼
austenite matrix 奧氏體晶體
proeutectic austenite 初晶活斯田鐵 ; 初晶沃斯田鐵 ; [冶] 先共晶奧氏體 ; 初晶沃斯田鐵英語
austenite welding 不鏽鋼焊接 ; 不鏽鋼焊條焊接
austenite region 奧氏體區域
austenite structure 奧氏體組織

雙語例句

  • The interface of austenite and martensite is somewhat straight. 奧氏體和馬氏體之間的界面為較平直的界面。
  • An austenite shell is formed over the entire surface of the graphite nodules. 在石墨球的整個表面形成了一層奧氏體殼。
  • The structure of the studied steels was bainite, martensite and retained austenite. 研究用鋼的室溫組織為貝氏體、馬氏體、少量殘餘奧氏體。
  • However, the rapid cooling of austenite postpones dynamic transformation remarkably. 但奧氏體快速冷卻明顯推遲了動態相變的發生。
  • Only strip austenite substructure and stacking fault were observed around the carbides. 在碳化物顆粒附近只觀察到奧氏體變體和層錯。
  • Some methods of retained austenite measurement on high chromium cast iron were compared. 對高鉻鑄鐵殘餘奧氏體測定的幾種方法進行了比較。
  • These lath martensite first nucleates in parent austenite intergranular and twin boundary. 應變誘發馬氏體首先在原奧氏體晶界和孿晶界形核。
  • Effect of Manganese on austenite cooling transformation of high Chromium cast iron is investigated. 研究了錳對高鉻鑄鐵奧氏體冷卻轉變過程的影響。
  • As before, any remaining austenite transforms to pearlite upon slow cooling through this temperature. 就像以前說的一樣,當緩慢冷卻到這溫度時所有剩餘奧氏體轉化為珠光體。
  • Spheroidal austenite and acicular austenite can be seen during the austenitizing courses at low speed. 慢速加熱奧氏體化過程中,觀察到球狀奧氏體和針狀奧氏體。
  • The stable reverted austenite formed during heat treatment would be positive to the fracture toughness. 熱處理形成的穩定的逆轉變奧氏體對斷裂韌度起到積極作用。
  • The decomposition and transformation of the retained austenite in bainite differ from that in martensite. 貝氏體中的殘餘奧氏體分解和轉變的行為與馬氏體中的不同。
  • The corrosion behavior of austenite stainless steel weld joint in the different acidic medium was studied. 研究了奧氏體不鏽鋼焊接接頭在不同酸性介質中的腐蝕行為。
  • A new method for showing the prior austenite crystal boundary corrosion, of pipeline steel has been also supposed. 同時探索出一種新的管線鋼原奧氏體晶界腐蝕方法。
  • Retained austenite reduction and carbide precipitations in the martensite are anticipated by the tempering process. 減少殘餘奧氏體和馬氏體碳化物的降水預計的回火工藝。
  • At the upper temperatures, only austenite is present, the 0.77% carbon being dissolved in solid solution with the iron. 在較高溫度時,只存在奧氏體,0.77%的碳溶解在鐵里形成固溶體。
  • The effect of austenite deformation on nucleation rate of ferrite is discussed with classical nucleation theory as well. 最後在經典形核理論的前提下討論了奧氏體形變對鐵素體形核率的影響。
  • The process investigation on hybrid YAG - MAG laser arc welding of austenite stainless steel is systematically developed. 針對奧氏體不鏽鋼材料,系統地開展了YAG-MAG雷射電弧複合焊工藝研究。
  • During the tempering process, the austenite in bainite decomposed into ferrite and cementite by diffusion transformation. 在回火過程中,貝氏體中的奧氏體以擴散轉變方式分解為鐵素體和滲碳體。
  • This article mainly studies one kind improved two person two-sided synchronized GTAW process for the austenite stainless steel. 介紹了一種改進的奧氏體不鏽鋼的雙人雙面同步鎢極氬弧焊工藝。
  • Meanwhile the initial strain rate and strain temperature affect the austenite grain size and distribution of precipitation phase. 同時,初始應變速率和變形溫度影響奧氏體晶粒尺寸和析出相的分布。
  • Carbon-poor area forms by way of random fluctuation and carbon atom diffusion. Bainitic ferrites nucleate in carbon-poor austenite. 依靠隨機漲落,形成貧碳區,貝氏體鐵素體在貧碳的奧氏體中形核。
  • Tie-line and level-law calculations show that low-carbon ferrite nucleates and grows, leaving the remaining austenite richer in carbon. 由截線及槓桿定律分析可知,低碳鐵素體成核並長大,剩下含碳量高的奧氏體。
  • The stabilization of austenite depends on the chemical stabilization, the particle sige effect and the austenite thermal stabilization. 奧氏體穩定化取決於化學穩定化、尺寸穩定化和熱穩定化;
  • In composites contained 1.5%C, VC particles were along austenite crystal boundary, while others of 3%C content were distributed uniformly. 在含碳量1.5%的鐵基體中主要沿晶界分布;在含碳量3%的基體中呈均勻分布。
  • Influences of carbon, silicon and aluminium on the surface reaction of austenite stainless steel powder during sintering have been studied. 研究了碳、矽和鋁合金元素對水霧化奧氏體不鏽鋼粉末燒結時的表面反應的影響。
  • This paper analyzes the influences of carbon, silicon and aluminium on the surface reaction when sintering austenite stainless steel powder. 研究了碳、矽和鋁合金元素對水霧化奧氏體不鏽鋼粉末燒結時的表面反應的影響。
  • At high temperatures, the material is entirely austenite, but upon cooling enters a region where the stable phases are ferrite and austenite. 在較高溫度時,這種材料全部是奧氏體,但隨著冷卻就進入到鐵素體和奧氏體穩定狀態的區域。

相關詞條

熱門詞條

聯絡我們