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为研究试样厚度对船用钢疲劳裂纹扩展速率的影响,设计并实施两组不同厚度的紧凑拉伸试样进行疲劳裂纹扩展速率试验,同时建立了三维疲劳裂纹扩展有限元模型,分别基于线弹性理论和弹塑性理论对应力强度因子进行了计算,并分析了试样厚度对裂纹扩展速率的影响。试验与计算结果的综合分析表明:相同应力水平下,薄试样裂纹尖端的塑性区明显大于厚试样,且裂纹尖端应力强度因子值大于理论经验计算结果可达23.25%,因此,在材料裂纹扩展速率试验前,特别是试样厚度尺寸较小时,应充分考虑试样的厚度效应,参考基于弹塑性理论计算得到的应力强度因子结果,同时有必要针对当前试样及材料进行专门的裂纹扩展速率试验,以得到准确裂纹扩展参数结果。 相似文献
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Sandwich plate systems (SPS) are advanced materials that have begun to receive extensive attention in naval architecture and
ocean engineering. At present, according to the rules of classification societies, a mixture of shell and solid elements are
required to simulate an SPS. Based on the principle of stiffness decomposition, a new numerical simulation method for shell
elements was proposed. In accordance with the principle of stiffness decomposition, the total stiffness can be decomposed
into the bending stiffness and shear stiffness. Displacement and stress response related to bending stiffness was calculated
with the laminated shell element. Displacement and stress response due to shear was calculated by use of a computational code
write by FORTRAN language. Then the total displacement and stress response for the SPS was obtained by adding together these
two parts of total displacement and stress. Finally, a rectangular SPS plate and a double-bottom structure were used for a
simulation. The results show that the deflection simulated by the elements proposed in the paper is larger than the same simulated
by solid elements and the analytical solution according to Hoff theory and approximate to the same simulated by the mixture
of shell-solid elements, and the stress simulated by the elements proposed in the paper is approximate to the other simulating
methods. So compared with calculations based on a mixture of shell and solid elements, the numerical simulation method given
in the paper is more efficient and easier to do. 相似文献
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The stress combination method for the fatigue assessment of the hatch corner of a bulk carrier was investigated based on equivalent waves.The principles of the equivalent waves of ship structures were given,including the determination of the dominant load parameter,heading,frequency,and amplitude of the equivalent regular waves.The dominant load parameters of the hatch corner of a bulk carrier were identified by the structural stress response analysis,and then a series of equivalent regular waves were defined based on these parameters.A combination method of the structural stress ranges under the different equivalent waves was developed for the fatigue analysis.The combination factors were obtained by least square regression analysis with the stress ranges derived from spectral fatigue analysis as the target value.The proposed method was applied to the hatch corner of another bulk carrier as an example.This shows that the results from the equivalent wave approach agree well with those from the spectral fatigue analysis.The workload is reduced substantially.This method can be referenced in the fatigue assessment of the hatch corner of a bulk carrier. 相似文献
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小水线面双体船独特的片体结构使横向波浪载荷成为其最危险的波浪载荷.在小水线面双体船设计初期,片体间距的确定十分重要.本文根据工程中某小水线面双体船的相关资料,对其正常装载状态、满载状态和最大排水状态3种装载状态进行波浪载荷预报.采用三维频域计算方法,对不同片体间距的小水线面双体船进行波浪载荷预报,给出各横向波浪载荷分量的RAO值和长短期预报值,并将波浪载荷的长期预报值与ABS和CCS中载荷的规范值进行比较.通过比较不同片体间距小水线面双体船的载荷预报值,得到小水线面双体船片体间距对其波浪载荷的影响特性,为小水线面双体船的初步设计提供依据. 相似文献