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Lame de Coupe Circulaire pour Caoutchouc

Informations Complémentaires

Autres Noms

Lame de machines en caoutchouc

Lieu d'Origine

Chine

Application

Marbre

Matériau

HSS

Numéro de Modèle

RB-RR

Service OEM

Disponible

Conditions de Paiement

L/C, T/T, Western Union

Emballage

Boîte en Carton, Caisses en Bois

Délai de Livraison

7-20 Jours

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What do Rubber Round Cutting Blades Mean?

The term “Rubber Round Cutting Blade” refers to a circular cutting tool specifically designed for slicing, slitting, or trimming rubber materials. These blades are characterized by their circular shape, which allows for continuous cutting when rotated, often in automated machinery. Rubber Round Cutting Blades are engineered to efficiently cut through the elasticity and varying densities of different types of rubber, including natural rubber, synthetic rubber, foam rubber, and rubber composites. They are used in a wide range of industrial applications, from manufacturing rubber products to processing rubber for recycling. The design of the blade, including its diameter, thickness, edge profile, and the material it’s made from, is crucial for achieving clean and precise cuts without tearing or snagging the rubber. Rubber Round Cutting Blades are also sometimes referred to as “circular rubber cutter blades,” “rotary rubber knives,” “rubber slitting blades (circular),” “rubber gasket cutting blades (if used for gaskets),” or “die cutting rotary blades (for rubber shapes),” depending on the specific application and the type of rubber being processed.

Uses and Applications of Rubber Round Cutting Blades

Rubber Round Cutting Blades are essential tools in various industries that manufacture, process, or recycle rubber materials:

  • Rubber Product Manufacturing: Used for cutting hoses, seals, gaskets, tires (in recycling), and other molded or extruded rubber products to specific lengths or shapes.
  • Gasket Cutting: Employed in automated gasket cutting machines to produce precise rubber gaskets for automotive, plumbing, and industrial applications.
  • Foam Rubber Processing: Used for slicing foam rubber sheets into various thicknesses for mattresses, upholstery, and packaging.
  • Rubber Recycling: Utilized in machinery that shreds or cuts rubber tires and other rubber waste into smaller pieces for recycling and material recovery.
  • Industrie automobile : Cutting rubber components for vehicles, such as weather stripping, hoses, and interior parts.
  • Fabrication de dispositifs médicaux : Cutting specialized rubber or silicone tubing and components for medical devices.
  • Industrie de l'Emballage : Cutting rubber or foam rubber for protective packaging and inserts.
  • Textile Industry (for rubberized fabrics): Used for cutting rubber-coated textiles or elastic materials.

The specific type of Rubber Round Cutting Blade (size, thickness, edge geometry, material) is selected based on the type and thickness of the rubber being cut, the speed of the cutting operation, and the required precision and edge quality.

Common Materials for Rubber Round Cutting Blades

The materials used in the manufacturing of Rubber Round Cutting Blades are chosen for their sharpness, wear resistance to withstand the friction and elasticity of rubber, and sometimes corrosion resistance depending on the application. Common materials include:

  • Acier à Haute Teneur en Carbone : Can be ground to a very sharp edge, suitable for cutting softer rubbers. May require coatings for increased wear and corrosion resistance.
  • Aciers à outils (par exemple, D2, M2, A2) : Offer a superior balance of hardness, toughness, and wear resistance, ideal for a wider range of rubber types, including denser or more abrasive compounds.
  • Acier inoxydable (différentes nuances, par exemple 440C) : Provides good corrosion resistance and can be hardened to achieve a sharp and durable cutting edge, important in environments where moisture or chemicals are present.
  • Carbure de Tungstène : Offers exceptional hardness and wear resistance, ideal for high-speed cutting of abrasive or filled rubbers and for extended blade life. Often used as tips or inserts on steel blades.
  • Matériaux céramiques : In specialized applications, ceramic blades can offer very sharp edges and excellent wear resistance, particularly for thin or delicate rubber materials.

Coatings are often applied to Rubber Round Cutting Blades to further enhance their performance and longevity. Common coatings include:

  • Nitrure de titane (TiN) : Increases surface hardness and reduces friction, preventing rubber from sticking to the blade.
  • Nitrure de chrome (CrN) : Offre une excellente résistance à l'usure et à la corrosion.
  • Carbone de type diamant (DLC) : Provides very low friction and high hardness, beneficial for clean cutting and preventing material buildup.

The selection of the blade material and coating depends on the specific type of rubber being processed, the cutting speed, and the desired blade lifespan and cut quality.

Common Shapes of Rubber Round Cutting Blades

Rubber Round Cutting Blades primarily feature a circular shape, but variations in design optimize performance for specific cutting methods:

  • Flat Circular Blades: The most common type, with a flat profile and a sharpened outer edge.
  • Lames à bord biseauté : The cutting edge is angled to provide a sharper cut and reduce drag. The bevel angle varies depending on the rubber type and thickness.
  • Scalloped Edge Blades: Feature a series of rounded or pointed scallops along the cutting edge, often used for softer or more flexible rubbers to prevent tearing.
  • Perforated Blades: Have small holes or notches along the edge to create perforations in the rubber.
  • Toothed or Serrated Blades: Feature small teeth along the cutting edge, providing a sawing action that can be effective for thicker or tougher rubbers.
  • Dished or Concave Blades: Have a curved profile, often used in specific machinery for contour cutting or slitting.

The diameter and thickness of the Rubber Round Cutting Blade are determined by the size and capacity of the cutting machine and the requirements of the application. The blade also features a central bore for mounting onto the machine’s spindle, with the bore size and any keyways or mounting features varying depending on the equipment.

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