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DAMASK STEEL - UNALLOYED CARBIDE CLASS STEEL

机译:DAMASK钢-硬质合金类钢

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Once, the question was posed: "What is damask steel - special steel or technology?" and 1 could not answer. Everything is simple and simultaneously complicated. People have used damask steel for a thousand years. Legends are made up about it. Today secrets of the microworld are being opened up, but damask steel micro structure, determining its properties, has remained in the shade of its reputation. However, only composition and structure govern steel properties. Any steel is prepared by specific technology. There is technology for preparing die steels (X12), and there is technology for preparing highspeed steels (R18), and consequently there should also be technology for preparing damask steel. As a result of searching for technology for preparing damask steel, it has become known that for the very best damask steels the amount of carbon within their composition approaches that of cast iron. With high-temperature treatment of these alloys, there is a risk of forming free graphite, as a result of which there is inevitable loss of toughness. A condition for forming graphite is the presence of crystallization centers (silicon compounds). Composition purity is a starting factor for revealing the main structural components governing damask steel properties. So, in order to understand today why blade sharpness is combined with high elasticity it is necessary to reveal the true structure of damask steel and to establish the underlying features of its individual properties. Experimental study of the structure makes it possible to determine what all of them are in the field of unalloyed carbide class steels.
机译:曾经提出一个问题:“什么是锦缎钢-特种钢或技术?”和1个无法回答。一切都很简单,同时又很复杂。人们使用锦缎钢已有一千年了。传说是关于它的。如今,微世界的秘密已经被揭开,但是锦缎钢的微观结构(决定其性能)却一直保持其声誉。但是,只有成分和组织决定钢的性能。任何钢材都是通过特定技术制备的。有模具钢(X12)的制备技术,有高速钢(R18)的制备技术,因此,也应该有锦缎钢的制备技术。通过寻找制备锦缎钢的技术的结果,众所周知,对于最好的锦缎钢,其成分中的碳含量接近铸铁。通过对这些合金进行高温处理,存在形成游离石墨的风险,结果不可避免地损失了韧性。形成石墨的条件是存在结晶中心(硅化合物)。组成纯度是揭示控制锦缎钢性能的主要结构成分的起始因素。因此,为了今天了解为什么叶片锋利度与高弹性相结合,有必要揭示锦缎钢的真实结构并确定其个别性能的基本特征。通过对结构的实验研究,可以确定在非合金硬质合金钢领域中所有这些都是什么。

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