Tool steels for shear blades is a malleable alloy of iron with carbon and other elements. This is an essential material for the manufacture of measuring and cutting tools, the various parts of machines regularly experiencing dynamic loads. Tool steels shear blades are divided into two main types in terms of chemical composition.
Fe alloy of iron with carbon C – this is carbon steel, where the carbon content is approximately equal to 2% of other chemical impurities (phosphorus, silicon, etc.) doped elements that improve the high quality of steel. Alloy Steel is divided into instrumental and structural tools. Impurity content is a concise definition of stainless steel.
Carbon steel is much inferior in quality of stainless steel. Products manufactured from stainless steel are durable and valuable. Uses of Stainless steel increases productivity.
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Application alloy and carbon steels
Variety of steels used in various activities, such as:
Tool Steel for shear blades is a very practical material used to produce a variety of products. Carbon or alloy steel used for cutting and measuring tools, dies of cold and hot deformation, as well as parts of machines. Tool steel is classified into four categories:
Tool steel comprises carbon of 0.7% and more, has high strength, hardness, and low cost, but low heat resistance and low wear resistance. Tool steel chemical composition divided by qualitative (sulfur content 0.03% phosphorus – 0.035%) and high (0.02% sulfur, phosphorus, – 0.03%).
Carbon tool steel is divided by purpose:
By the method of treatment in the future, it will be mechanically (cold) processed (milling, shaping, etc.) and for hot forming (planting, precipitation), cold drawing. In this treatment provides hot forged and hot-rolled products.
Alloy tool steel shear blades – is steel, which contains impurities in addition to traditional elements, especially added for certain parameters of the mechanical and physical properties, which are called doped. They increase the corrosion resistance and strength of the material, while reducing its fragility among the alloying elements nickel, chromium, nitrogen, copper, vanadium, etc.
Alloy tool steel is classified by purpose, the volume of alloying elements (high-, medium-and low-alloy), by way of further processing, manufacturing quality (high quality and regular) and surface finishing with appropriate labelling.
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