Effect of microstructure on the cleavage fracture stress of high-speed railway wheel steel
-
摘要: 利用不同奧氏體化溫度和冷卻速率對碳質量分數為0.54%高速車輪鋼進行熱處理,得到具有不同晶粒尺寸和珠光體片間距微觀組織的試樣.在-120~20℃溫度下對具有不同微觀組織的拉伸試樣和三點彎曲(3PB)缺口試樣進行測試;采用二維平面應變有限元計算三點彎曲缺口試樣缺口前的應力分布;利用掃描電鏡對3PB試樣斷口進行觀察并測量解理起裂源的位置;測定不同微觀組織車輪鋼試樣的解理斷裂應力.在擴展控制斷裂機制下,微觀組織對車輪鋼的解理斷裂應力具有明顯影響,晶粒尺寸和珠光體片間距越小解理斷裂應力越高.細化晶粒使未擴展微裂紋的特征長度減小,細化珠光體片間距有助于提高珠光體的有效表面能,從而使得解理斷裂應力提高.Abstract: The microstructures with different grain sizes and pearlite interlamellar spacings of high-speed railway wheel steel with a carbon mass fraction of 0.54% were achieved by heat treatment at different austenitizing temperatures and cooling rates. Notched 3-point bending(3PB) bars and tensile specimens with different microstructures were tested at temperatures from -120 ℃ to 20 ℃. The stress distribution ahead of the notch tip was calculated by a two-dimensional plane strain finite element method. The fracture surfaces of the 3PB specimens were observed by scanning electron microscopy and the cleavage initiation site was located. The cleavage fracture stress of specimens with different microstructures was measured. It is shown that the cleavage fracture stress depends on the microstructure when the cleavage critical event is propagation-controlled. The characteristic size of un-propagated microcracks decreases by grain refinement,the decrease of pearlite interlameller spacing is be propitious to increase the effective surface energy of the pearlite microstructure,so the cleavage fracture stress increases with decreasing grain size and pearlite interlameller spacing.
-
Key words:
- wheel steel /
- microstructure /
- cleavage fracture /
- fracture stress
-

計量
- 文章訪問數: 251
- HTML全文瀏覽量: 42
- PDF下載量: 17
- 被引次數: 0