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A new node-pairs contact algorithm is proposed to deal with a composite material or bi-material interface crack face contact and friction problem(e.g., resistant coating and thermal barrier coatings) subjected to complicated load conditions.To decrease the calculation scale and calculation errors, the local Lagrange multipliers are solved only on a pair of contact nodes using the Jacobi iteration method, and the constraint modification of the tangential multipliers are required. After the calculation of the present node-pairs Lagrange multiplier, it is turned to next contact node-pairs until all node-pairs have finished. Compared with an ordinary contact algorithm, the new local node-pairs contact algorithm is allowed a more precise element on the contact face without the stiffness matrix singularity. The stress intensity factors(SIFs) and the contact region of an infinite plate central crack are calculated and show good agreement with those in the literature. The contact zone near the crack tip as well as its influence on singularity of stress fields are studied. Furthermore, the frictional contacts are also considered and found to have a significant influence on the SIFs. The normalized mode-II stress intensity factors K?IIfor the friction coefficient decrease by 16% when f changes from 1 to 0.  相似文献   
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通过对30m波形钢腹板PC组合箱梁的模态特性进行有限元分析和试验研究,了解这种钢-混组合结构的固有振动特性,为波形钢腹板PC组合箱梁的动力响应分析与抗震设计提供依据.研究表明,波形钢腹板PC组合箱梁的动力特性与一般的混凝土梁相比存在很大的差异,波形钢腹板PC组合箱梁结构的横向刚度和扭转刚度都比较小,在设计中必需予以重视.波形钢腹板PC组合箱梁的固有振动频率公式计算的基频结果与模态试验结果十分吻合,可用来计算波形钢腹板PC组合箱梁的基频.  相似文献   
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