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Hoja de corte para varillas de refuerzo

Información adicional

Otros nombres

1TP1Cuchillas quirúrgicas, 1TP1Cuchilla quirúrgica

Lugar de origen

Porcelana

Solicitud

Metallurgy, Líneas de decapado, Plantas de laminación en frío, Plantas de acero inoxidable, Plantas de acero eléctrico, Plantas de galvanizado en caliente

Material

H13, H13K, LD

Número de modelo

MT-MB

Servicio OEM

Disponible

Términos de pago

LC, T/T, Western Union

Paquete

Caja de cartón, En cajas de madera.

El tiempo de entrega

7-20 días

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What do Rebar Shear Blades Mean?

The term “Rebar Shear Blade” refers to a heavy-duty cutting tool specifically designed for shearing or cutting steel reinforcing bars (rebar). These blades are essential components in rebar cutting machines, which are used on construction sites, prefabrication plants, and steel processing facilities to cut rebar to the required lengths for concrete reinforcement. Rebar Shear Blades are engineered to withstand the high tensile strength and hardness of rebar, delivering clean and efficient cuts. They typically come in pairs, with a fixed lower blade and a moving upper blade that applies significant force to shear the rebar. The design emphasizes durability, strength, and precise cutting edges to ensure accurate and safe rebar processing. Rebar Shear Blades are also sometimes referred to as “rebar cutting blades,” “steel bar shear blades,” “reinforcing bar cutter blades,” “rebar guillotine blades,” or “hydraulic shear blades (for rebar),” depending on the type of rebar cutting machine they are used in.

Uses and Applications of Rebar Shear Blades

Rebar Shear Blades are primarily used in the construction and steel processing industries for cutting steel reinforcing bars to specified lengths. Their robust design and powerful cutting action make them indispensable for various applications, including:

  • Construction Sites: Used in portable or stationary rebar cutting machines to prepare rebar for concrete structures, ensuring accurate lengths for columns, beams, slabs, and foundations.
  • Prefabrication Plants: Employed in automated rebar processing lines to cut and bend rebar cages and assemblies according to project specifications.
  • Steel Reinforcement Processing Facilities: Used in high-volume operations to cut large quantities of rebar for distribution to construction sites.
  • Bridge and Infrastructure Projects: Essential for preparing rebar used in the construction of bridges, tunnels, highways, and other infrastructure projects.
  • Concrete Product Manufacturing: Used to cut rebar for reinforcement in precast concrete elements such as pipes, barriers, and structural components.
  • Scrap Metal Recycling: Heavy-duty Rebar Shear Blades in large industrial shears can also be used to cut down scrap rebar for recycling.

The size and design of the Hoja de corte para varillas de refuerzo, as well as the power of the shearing machine, determine the maximum diameter and grade of rebar that can be cut.

Common Materials for Rebar Shear Blades

The materials used in the manufacturing of Rebar Shear Blades are critical for their ability to withstand the immense forces and abrasive nature of cutting steel reinforcing bars. These materials must offer high hardness, toughness, and wear resistance. Common materials include:

  • Aleaciones de acero con alto contenido de carbono: These steels provide a good balance of hardness and toughness, suitable for cutting lower grades and smaller diameters of rebar.
  • High Chromium Tool Steels (e.g., D2, A8): These steels offer superior wear resistance, making them ideal for cutting higher grades and larger diameters of rebar, as well as for high-volume operations.
  • Shock-Resisting Tool Steels (e.g., S7): These steels are designed to withstand high impact and shock loads, providing excellent toughness for demanding rebar cutting applications.
  • Aceros para la industria de la pulpa 1TP1 (aceros PM): These advanced steels offer exceptional homogeneity and can be engineered with specific combinations of high hardness, toughness, and wear resistance, resulting in high-performance Rebar Shear Blades with extended service life.

Heat treatment to achieve optimal hardness and toughness is a crucial step in the manufacturing process of Rebar Shear Blades. The specific heat treatment process is tailored to the steel alloy used and the intended application.

Common Shapes of Rebar Shear Blades

Rebar Shear Blades typically come in pairs, consisting of an upper (moving) blade and a lower (fixed) blade. The geometry of the cutting edges is crucial for a clean and efficient shear. Common shapes and features include:

  • Cuchillas planas: The most common type, with straight cutting edges. The angle of the shear (the angle between the upper and lower blades) is critical for effective cutting.
  • Angled Blades (Beveled Edges): Some blades feature beveled cutting edges to improve the shearing action and reduce the force required. The angle of the bevel is precisely engineered.
  • Square or Rectangular Blades: These are standard shapes for both the upper and lower blades, designed for durability and ease of manufacturing.
  • Blades with Multiple Cutting Edges: Some larger or specialized blades may feature multiple cutting edges that can be indexed or rotated to extend the blade’s lifespan.
  • Blades with Guide Grooves or Notches: These features can help to position the rebar accurately for a precise cut.
  • Bolt Holes or Mounting Features: Blades are designed with specific mounting holes or features to securely attach them to the rebar shearing machine.

The specific shape and angle of the cutting edges, as well as the overall dimensions and mounting configuration of the Rebar Shear Blade, are determined by the type and capacity of the rebar cutting machine and the range of rebar sizes it is designed to handle.

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