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Understanding the mechanical response of built-up welded beams made from commercially pure titanium and a titanium alloy

机译:了解由商业纯钛和钛合金制成的组合式焊接梁的机械响应

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摘要

During the last two decades, titanium has gradually grown in stature, strength and significance to take on the recognition of being a modern and high performance metal that is noticeably stronger and concurrently lighter than the most widely chosen and used steels in a spectrum of industrial applications. Technological innovations have necessitated reduction of part weight, cost and lead time, including concurrent enhancement of performance of structural parts and components made using titanium and its alloys. This has provided the impetus to develop economically viable structural design methodologies and specifications, while at the same time bringing forth innovative and economically affordable manufacturing and fabricating techniques with the primary purpose of both producing and promoting the use of cost-effective titanium structures. The experimental results of a recent study on built-up welded beams are presented in this paper with the primary objective of enabling design, facilitating fabrication, and implementation of large structural members for potential applications in the structural and defense-industry.
机译:在过去的二十年中,钛的地位,强度和重要性逐渐提高,以承认它是一种现代高性能金属,其在各种工业应用中比最广泛选择和使用的钢明显更坚固,同时更轻。技术创新需要减少零件重量,降低成本和缩短交货时间,包括同时提高使用钛及其合金制成的结构零件和组件的性能。这为开发经济上可行的结构设计方法和规格提供了动力,同时又提出了创新和经济上可承受的制造和制造技术,其主要目的是生产和推广具有成本效益的钛结构。本文介绍了最近对组合式焊接梁的研究的实验结果,其主要目的是使大型结构构件的设计,简化制造和实施成为可能,以便在结构和国防工业中潜在应用。

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