Wang Qiudong, Shi Shanchun, Yao Yue, Wang Zhiqiang, Fu Zhongqiu
College of Civil Engineering, Nanjing Forestry University, Nanjing 210037, China.
College of Construction Engineering, Jiangsu Open University, Nanjing 210000, China.
Materials (Basel). 2023 Oct 19;16(20):6760. doi: 10.3390/ma16206760.
Effective notch stress (ENS) approaches have many application prospects in fatigue damage assessments; however, an ENS can only be obtained by conducting complex and time-consuming numerical analyses, deterring many engineers from applying such an approach. In terms of the rib-deck weld in orthotropic steel decks (OSDs), predictive formulae for determining the ENS concentration factors (ENS-based SCFs) have been proposed; however, the effect of asphalt surfacing is not involved, which limits their applications in practical engineering. In the present study, refined finite element (FE) models, including asphalt surfacing, were developed to obtain the ENS-based SCFs which could be applied to practical engineering. Parametric analyses were conducted to investigate the effect of the transverse loading position, the combined effect of the transverse loading position and asphalt surfacing, and the effect of the temperature of the asphalt surfacing. The amplification coefficients (, , and ) were introduced to determine the ENS-based SCFs on the basis of the predictive formulae without considering the effect of asphalt surfacing. Results show that the ENS-based SCFs of the rib-deck weld is considerably affected by the transverse position of wheel loading and the asphalt surfacing. The cubic polynomial function could be employed to fit the numerical results of the ENS-based SCFs and amplification coefficients (, , and ) with high fitting precision. Predictive formulae for determining the ENS-based SCFs corresponding to arbitrary transverse loading position and temperature of asphalt surfacing are proposed. The validation investigation turns out that the relative error of the proposed formulae is within 10%, indicating the feasibility of using this approach for engineering applications.
有效缺口应力(ENS)方法在疲劳损伤评估中有许多应用前景;然而,ENS只能通过进行复杂且耗时的数值分析来获得,这使得许多工程师不愿应用这种方法。对于正交异性钢桥面板(OSD)中的纵肋 - 桥面板焊缝,已经提出了用于确定ENS集中系数(基于ENS的应力集中系数)的预测公式;然而,未考虑沥青铺装层的影响,这限制了它们在实际工程中的应用。在本研究中,开发了包括沥青铺装层的精细有限元(FE)模型,以获得可应用于实际工程的基于ENS的应力集中系数。进行了参数分析,以研究横向加载位置的影响、横向加载位置与沥青铺装层的联合影响以及沥青铺装层温度的影响。引入放大系数(、和),以便在不考虑沥青铺装层影响的情况下,基于预测公式确定基于ENS的应力集中系数。结果表明,纵肋 - 桥面板焊缝的基于ENS的应力集中系数受车轮荷载横向位置和沥青铺装层的显著影响。三次多项式函数可用于拟合基于ENS的应力集中系数和放大系数(、和)的数值结果,拟合精度较高。提出了用于确定对应于任意横向加载位置和沥青铺装层温度的基于ENS的应力集中系数的预测公式。验证研究表明,所提出公式的相对误差在10%以内,表明使用这种方法进行工程应用的可行性。