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Shearing blades are essential components in shearing machines widely employed across various industries, including light industry, aviation, shipbuilding, metallurgy, instrumentation, electrical appliances, and construction. The blades are constructed from high-quality materials such as T10, 9CrSi, 6CrW2Si, Cr12MoV, H13, and alloy steel, tailored for different shearing applications. The shearing machine operates using a moving upper blade and a fixed lower blade, creating a precise blade gap to exert shearing force on metal sheets of diverse thicknesses. This ensures clean breaks and separations in accordance with required dimensions. Additionally, shearing blades are optimized for various material types, including carbon-bonded tool steel, low-alloy tool steel, and alloy tool steel, each with specific properties suited for distinct cutting needs. The functionality extends to cutting blanks with straight edges while maintaining straightness and parallelism, thereby minimizing distortion and ensuring high-quality output. High-performance blades significantly enhance productivity, making them a vital asset for metal processing industries.

Key Features

Features Description
Blade Material T10, 9CrSi, 6CrW2Si, Cr12MoV, H13, alloy steel
Application Industries Light industry, aviation, shipbuilding, metallurgy, instrumentation, electrical appliances, construction
Shearing Process Moving upper blade and fixed lower blade for precise metal sheet cutting
Blade Types Carbon-bonded tool steel, low alloy tool steel, alloy tool steel
Heat Treatment Hardness HRC57-59 for carbon-bonded; HRC58-62 for low-alloy; high resistance for alloy steel
Cutting Capability Ideal for ordinary low-carbon cold-rolled plates, hot-rolled stainless steel, and medium-thick plates
Dimensional Accuracy Ensures straightness and parallelism with minimal distortion
Attributes Description
Carbon-bonded Tool Steel Materials like 65, 75 steel, T8, T10 suitable for low-carbon cold-rolled plates
Low Alloy Tool Steel Materials such as 6Crw2sI, Cr5Mo1V, 9CrSi for stainless steel and medium-thick plates
Alloy Tool Steel Materials like H13, 4Cr5MoSiV1 (H13K) for hot-rolled steel billets
Shearing Machine Types Pedal type, mechanical type, hydraulic swing type, hydraulic brake type
Bending Radius Minimum radius of shearing process ensured based on material thickness
Operating Temperature Resistance Designed for hot cutting applications

Key Words

*Disclaimer: The above description has been AI-generated and has not been audited or verified for accuracy. It is recommended to verify product details independently before making any purchasing decisions.

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Country Of Origin: India

The blade material of the shearing machine is generally T10, 9CrSI, 6CrW2Si, Cr12MoV, H13, alloy steel and other materials. Products are widely used in: light industry, aviation, shipbuilding, metallurgy, instrumentation, electrical appliances, stainless steel products, steel structure construction and decoration industries. The shearing process should be able to ensure the straightness and parallelism requirements of the sheared surface of the cut sheet, and minimize the distortion of the sheet to obtain a high-quality workpiece.The shearing machine uses a moving upper blade and a fixed lower blade, and uses a reasonable blade gap to apply shearing force to metal sheets of various thicknesses to make the sheets break and separate according to the required size.
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The blade material of the shearing machine is generally T10, 9CrSI, 6CrW2Si, Cr12MoV, H13, alloy steel and other materials. Products are widely used in: light industry, aviation, shipbuilding, metallurgy, instrumentation, electrical appliances, stainless steel products, steel structure construction and decoration industries.

The shearing machine uses a moving upper blade and a fixed lower blade, and uses a reasonable blade gap to apply shearing force to metal sheets of various thicknesses to make the sheets break and separate according to the required size. The shearing machine is a kind of forging machinery, and its main function is the metal processing industry. General shearing machine can be divided into: pedal type (manpower), mechanical type, hydraulic swing type, hydraulic brake type.

Shearing machines are often used to cut blanks with straight edges. The shearing process should be able to ensure the straightness and parallelism requirements of the sheared surface of the cut sheet, and minimize the distortion of the sheet to obtain a high-quality workpiece.

Material

The materials selected for the shear blades are divided into three categories: carbon-bonded tool steel, low alloy tool steel, alloy tool steel, etc.

1. Carbon-bonded tool steel: Carbon-bonded steel generally chooses 65, 75 steel, T8, T10 and other materials. The heat treatment hardness of the blades produced by this material is within the range of HRC57-59 degrees, which is suitable for ordinary low-carbon cold-rolled plates and ordinary A3 plates. Compared with the recycling and cutting of waste materials, this feature is low cost and reasonable product price.

2. Low-alloy tools: The commonly used materials for the blades of low-alloy tool steel are: 6Crw2sI, Cr5Mo1V, 9CrSi, Cr12MoV, etc. The heat treatment hardness of the blade is within the range of HRC58-62 degrees. It is specially cut stainless steel, suitable for hot-rolled plates, stainless steel, Shearing of medium and thick plates.

3. Alloy tool steel: The shear blade materials of alloy tool steel are: 4Cr5MoSiV1 (H13K), 7Cr7Mo2V2Si9 (LD), W6Mo5Cr4V2 (6542), H13, etc. The blade of this material is used for hot-rolled steel billets, hot-cutting medium and thick steel plates, etc. This feature is high temperature resistance, not easy to anneal, and is used for hot rolling and hot shearing processes in steel mills.



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