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Damage-Tolerance-Based Design of Bolted Composite Joints

机译:螺栓复合关节基于损伤容限的设计

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摘要

An approach based on damage tolerance is proposed for the design of bolted composite joints. The approach requires knowledge of failure processes and damage accumulation in composites under physical loading. Based on experimental observation, a progressive damage model was developed for predicting the accumulated damage and failure modes in composite joints. In order to utilize the model for design, a computer code, 3DBOLT, has been developed. The code is based on the progressive damage model, and it interfaces with the commercial finite-element code AB AQUS to perform calculations of three-dimensional stresses, strains, and deformations of the joints for a given load. For a given joint configuration, ply orientation, and loading condition, the code can predict the response of the joint from the initial loading to final failure, estimate accumulated damage in the joint as a function of applied load, and predict the joint deformations. In order to verify the proposed damage model, the data obtained from the experiments were compared with the predictions from the 3DBOLT/AB AQUS code. Based on the code, a parametric study was performed to characterize several important factors that can significantly influence the design of bolted composite joints.
机译:提出了一种基于损伤容限的螺栓组合节点设计方法。该方法需要了解物理载荷下复合材料的破坏过程和损伤累积。基于实验观察,开发了一种渐进式损伤模型,用于预测复合材料接头中累积的损伤和破坏模式。为了将模型用于设计,已经开发了计算机代码3DBOLT。该代码基于渐进式损伤模型,并且与商业有限元代码AB AQUS进行接口,以计算给定载荷下关节的三维应力,应变和变形。对于给定的接头配置,层定向和加载条件,该代码可以预测接头从初始载荷到最终破坏的响应,根据所施加的载荷估算接头中累积的损坏,并预测接头变形。为了验证提出的损伤模型,将从实验获得的数据与3DBOLT / AB AQUS代码的预测结果进行比较。基于该代码,进行了参数研究,以表征可以显着影响螺栓连接组合设计的几个重要因素。

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