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Changes in industrial leadership and catch-up by latecomers in shipbuilding industry

机译:行业领导力的变化和造船业后来者的追赶

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摘要

This study considers the shipbuilding industry to explain the successive changes in leadership from the Schumpeterian perspective. The window of opportunity for Japan to forge ahead of the UK was the arrival and employment of new technologies, a method referred to as welding block. The Japanese firms also adopted path-creation, a strategy that involves the use of innovations more promptly than the incumbent UK, which had delayed adoption due to the opposition of labour unions. The leadership shift from Japan to Korea also represents path-creation given that Korean firms responded quickly to the rise of a new window of opportunity (i.e. systematised 3D computer-aided design technologies) and met the newly rising demand in large vessels that was the second window of opportunity. Both of these cases of path-creation are an adoption and follow-on innovation mode because the latecomers not only adopted new technologies, but also reinvented them further into a new system of production. This study also finds the unique, institutional nature of the source of the incumbent trap in the shipbuilding industry, which is different from that associated with the relative costs and benefits of new versus old technologies. In addition, this study identifies the peculiarity of the technological regimes of the shipbuilding sector and the associated unique nature of the technological window of opportunity, which are not merely competence-destroying innovations of component technologies but a consolidation of a new systematised technology that has changed the entire process of shipbuilding.
机译:这项研究认为造船业可以从熊彼特的角度解释领导力的连续变化。日本取得英国领先地位的机会之窗是新技术的出现和采用,这种新技术被称为焊接块。日本公司还采用了“创造路径”的策略,该策略涉及的创新要比现任英国更快地使用创新,而英国由于工会的反对而推迟了创新。领导者从日本转移到韩国也代表着道路的建立,因为韩国公司对新的机会窗口(即系统化的3D计算机辅助设计技术)的出现迅速做出了回应,并满足了大型船舶的新需求。机会之窗。这两种创建路径的案例都是采用和后续创新的模式,因为后来者不仅采用了新技术,而且还将它们重新发明为新的生产系统。这项研究还发现造船业现有陷阱的来源具有独特的制度性,这与新技术和旧技术的相对成本和收益相关。此外,本研究还确定了造船业技术体制的特殊性和机会的技术窗口的独特性质,这些机会不仅是构成组件技术的破坏能力的创新,而且还改变了已经改变的新系统化技术造船的全过程。

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