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Reduction of Overwelding and Distortion for Naval Surface Combatants. Part 2: Weld Sizing Effects on Shear and Fatigue Performance

机译:减少海军水面作战人员的过度焊接和变形。第2部分:焊缝尺寸对剪切和疲劳性能的影响

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摘要

As high-strength thinner-steel implementation in ship designs increase, dimensional management becomes critical to control construction costs and schedule in ship production. In the U.S. shipbuilding industry, improvements to shipbuilding facilities and processing technology have not kept pace with the rate of change in ship design. Additionally, new designs using thinner steels are subject to legacy weld sizing criteria possibly leading to inappropriately sized welds on lightweight materials. These two factors result in widespread overwelding, causing severe plate deformation in naval vessels during construction and nonvalue added labor to correct as needed for fit-up tolerances. Historically, shear and fatigue strength data has been focused on the larger welds and thicker steel plates typical of the state of the practice when these legacy weld sizing criteria were developed. In order to optimize weld design and production in modern, lightweight naval surface vessels, there is a need to develop more accurate data about the performance of precision fillet welds for thin steels.
机译:随着船舶设计中高强度薄钢实施的增加,尺寸管理对于控制建造成本和船舶生产进度至关重要。在美国造船业中,造船设施和加工技术的改进未能跟上船舶设计变化的速度。此外,使用较薄钢的新设计必须遵守旧的焊接尺寸标准,这可能导致在轻质材料上焊接尺寸不合适。这两个因素导致广泛的过度焊接,在建造期间在海军舰船中造成严重的板形变形,并且为配合公差所需要的非增值劳动进行校正。从历史上看,抗剪强度和疲劳强度数据一直集中在制定这些传统焊缝尺寸标准时在实践状态下典型的较大焊缝和较厚钢板上。为了优化现代轻型海军水面舰船的焊接设计和生产,需要开发有关用于薄钢的精密角焊缝性能的更准确数据。

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