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退火溫度對退火馬氏體基TRIP鋼顯微組織和力學性能的影響

Effects of annealing temperature on the microstructure and mechanical properties of TRIP steel with annealed martensitic matrix

  • 摘要: 將C-Si-Mn系TRIP鋼通過完全淬火和兩相區退火相結合的工藝,得到一種以退火馬氏體為基體的TRIP鋼(簡稱TAM鋼),并對比分析了TAM鋼在不同溫度退火后的顯微組織和力學性能.結果表明,TAM鋼經退火后的顯微組織特征為精細規整的板條退火馬氏體基體、片狀殘余奧氏體和貝氏體/馬氏體組成的混合組織.這種組織降低了基體的硬度以及基體和第二相之間的強度比,減少了基體的位錯密度.隨著退火溫度的提高,退火馬氏體基體的板條形態逐漸消失,新生馬氏體/貝氏體的團狀混合組織逐漸增多.當退火溫度為780℃時,綜合力學性能優異,抗拉強度為1130 MPa,延伸率可達20%,強塑積為22600 MPa·%.當退火溫度較低時,殘余奧氏體主要以片狀存在于退火馬氏體板條間,有利于TRIP效應的發生.

     

    Abstract: Special TRIP steel with annealed martensite matrix (TAM steel) was produced by fully quenching and annealing in the two-phase region with the C- Si- Mn chemical composition of common TRIP steel. The microstructure and mechanical properties of TAM steel annealed at different temperatures were investigated by thermal dilatometry, tensile testing, optical microscopy, scanning electron microscopy, transmission electron microscopy, and X-ray diffraction. It is found that the microstructure of TAM steel consists of a uni-form fine annealed martensite matrix and an interlath second phase of retained austenite and bainite/martensite, which contribute to lowering the matrix's hardness and the strength ratio of matrix to second phase as well as decreasing the dislocation density. As the an-nealing temperature rises, the mixed blocky microstructure of newly formed martensite/bainite gradually increases, while the lath-like morphology of annealed martensite progressively disappears. Excellent mechanical properties are obtained when the annealing tempera-ture is 780℃, with the tensile strength, the elongation, and the product of strength and ductility up to 1130 MPa, 20%, and 22600 MPa·%, respectively. When the annealing temperature is relatively low, retained austenite mainly exists between annealed martensite laths in film-form and is conducive to the occurrence of TRIP effect.

     

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