Solid-State Phase Transformation and Mechanical Properties of Ultrafine-Grained Steels
暫譯: 超細晶鋼的固態相變化與機械性質
Liu, Yongning
- 出版商: CRC
- 出版日期: 2026-05-05
- 售價: $7,350
- 貴賓價: 9.5 折 $6,982
- 語言: 英文
- 頁數: 298
- 裝訂: Hardcover - also called cloth, retail trade, or trade
- ISBN: 104120308X
- ISBN-13: 9781041203087
-
相關分類:
材料科學 Meterials
尚未上市,無法訂購
商品描述
This book presents groundbreaking findings on how grain refinement affects phase transformations and the mechanical properties of ultrafine-grained steels.
Grain refinement can significantly improve the strength and toughness of metals. Although the effect of grain refinement on material strength has been extensively studied, its impact on solid-state phase transformation in metals is not yet well understood. This book provides a systematic introduction to how grain size affects the solid-phase transformation of steels. This includes the pearlite, martensite, bainite and tempering transformations. A critical discovery is revealed that opens up a new approach to designing and producing high-strength steels at low cost: when grain size falls below 4 m, traditional phase transition patterns change dramatically. Rather than forming lamellar structures, the pearlite transition produces granular cementite in a ferrite matrix, and the martensite transition shifts from twin to dislocation structures. This breakthrough enables the development of high-strength steels (2500-2600 MPa) with good ductility (11-7% elongation) using minimal alloying elements, offering a cost-effective approach to producing super-strong steels.
This work will be an invaluable resource for academics and students of materials science, physics and mechanics, as well as engineers, technicians and researchers working in metallurgy and materials development.
商品描述(中文翻譯)
這本書介紹了關於晶粒細化如何影響相變化和超細晶粒鋼的機械性能的突破性發現。
晶粒細化可以顯著提高金屬的強度和韌性。儘管晶粒細化對材料強度的影響已被廣泛研究,但其對金屬固態相變化的影響尚未得到充分理解。本書系統地介紹了晶粒大小如何影響鋼的固相變化,包括珠光體、馬氏體、貝氏體和回火變化。一項關鍵的發現揭示了一種新的設計和生產高強度鋼的低成本方法:當晶粒大小降至4微米以下時,傳統的相變化模式會發生劇變。珠光體轉變不再形成層狀結構,而是在鐵素體基體中產生顆粒狀的水泥石,馬氏體轉變則從雙晶結構轉變為位錯結構。這一突破使得能夠以最少的合金元素開發出具有良好延展性(11-7% 延伸率)和高強度(2500-2600 MPa)的鋼,提供了一種經濟有效的超強鋼生產方法。
這項工作將成為材料科學、物理學和力學的學者和學生,以及從事冶金和材料開發的工程師、技術人員和研究人員的重要資源。
作者簡介
Yongning Liu is a Professor at Xi'an Jiaotong University in China. His research interests focus on high-strength steels and energy materials.
作者簡介(中文翻譯)
劉永寧是中國西安交通大學的教授。他的研究興趣集中在高強度鋼材和能源材料上。