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Lame de découpe de tissu soufflé par fusion

Informations Complémentaires

Autres noms

Lame de refente en cuir, lame de refente en papier, lame de refente en tissu fondu, refendeuses supérieures et inférieures

Lieu d'origine

Chine

Application

Cuir, papier, tissu fondu

Matériel

65Mn,9CrSi,Cr12MoV,SKD-11,HSSl

Numéro de modèle

ST-MC

Service OEM

Disponible

Modalités de paiement

LC, T/T, Western Union

Emballer

Boîte en carton, Dans des caisses en bois

Délai de livraison

7-20 jours

Partager à:

What do Meltblown Cloth Slitter Blades Mean?

The term “Meltblown Cloth Slitter Blade” refers to a specialized cutting tool designed for precisely slitting or cutting meltblown nonwoven fabric. Meltblown cloth is a critical material used in filtration products, such as face masks and air filters, due to its fine fiber structure and filtration efficiency. Meltblown Cloth Slitter Blades are engineered to cut this delicate material cleanly and accurately without causing fraying, tearing, or compromising its filtration properties. These blades are essential in the manufacturing and converting processes of meltblown cloth into various end products. The design often focuses on extreme sharpness, minimal drag, and precise edge geometry to handle the unique characteristics of meltblown fabric. Meltblown Cloth Slitter Blades are also sometimes referred to as “nonwoven slitting blades (meltblown),” “filtration fabric cutting blades,” “mask material slitter blades,” “fine fiber cutting blades,” or “meltblown web slitting knives,” depending on the specific application and industry.

Uses and Applications of Meltblown Cloth Slitter Blades

Meltblown Cloth Slitter Blades are crucial in the manufacturing and converting of meltblown nonwoven fabric for a variety of applications, primarily in filtration and hygiene products. Key uses and application scenarios include:

  • Mask Manufacturing: Used in slitting machines to cut wide rolls of meltblown fabric into the specific widths required for surgical masks, N95 respirators, and other face coverings. Clean, precise cuts are essential for the integrity and fit of the masks.
  • Air Filter Production: Employed to slit meltblown media into the dimensions needed for various types of air filters used in HVAC systems, automotive cabins, and industrial filtration.
  • Wipe Manufacturing: Used to cut meltblown fabric into rolls or sheets for industrial and consumer wipes, where absorbency and filtration are important.
  • Medical and Hygiene Products: Utilized in the production of absorbent pads, wound dressings, and other medical textiles that incorporate meltblown layers for filtration or barrier properties.
  • Industrial Filtration: Applied in the converting of meltblown cloth for specialized industrial filters used in liquid and gas filtration processes.
  • Spill Control Products: Used to cut meltblown materials into specific shapes and sizes for absorbent booms, pads, and rolls used in spill cleanup.
  • Laminating and Composites: Employed in processes where meltblown fabric is laminated with other materials, requiring precise cutting of the composite.

The specific design, material, and edge geometry of the Meltblown Cloth Slitter Blade are determined by the thickness and density of the meltblown fabric, the speed of the slitting machinery, and the required edge quality to prevent unraveling or performance degradation.

Common Materials for Meltblown Cloth Slitter Blades

The materials used in the manufacturing of Meltblown Cloth Slitter Blades are selected for their ability to achieve and maintain extreme sharpness, resist wear from the potentially abrasive nature of the nonwoven fibers, and minimize friction to prevent snagging or tearing of the delicate meltblown fabric. Common materials include:

  • Acier à haute teneur en carbone: Can be ground to a very sharp edge, suitable for applications where blade changes are frequent or for softer meltblown materials. Coatings can improve wear resistance.
  • Tool Steels (e.g., D2, M2, A2): Offer a better balance of hardness, toughness, and wear resistance, suitable for higher volume production and more demanding meltblown fabric types.
  • Acier inoxydable (différentes nuances, par exemple 440C) : Provides excellent corrosion resistance and can be hardened to achieve a very sharp and durable cutting edge. Important for maintaining hygiene and preventing contamination of the filtration media.
  • Solid Carbide: Offers exceptional hardness and wear resistance, ideal for high-speed slitting of denser or more abrasive meltblown materials, ensuring a long blade life.
  • Ceramic Materials (e.g., Zirconia): Provide extreme hardness, wear resistance, and chemical inertness, beneficial for specialized meltblown fabrics and applications where metal contamination is a concern.

Coatings are frequently applied to Meltblown Cloth Slitter Blades to further enhance their performance. Common coatings include:

  • Nitrure de titane (TiN) : Augmente la dureté de la surface et réduit la friction.
  • 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, ideal for delicate meltblown fabrics.

The selection of the blade material and coating depends on the specific meltblown cloth being processed, the production speed, and the desired blade lifespan and cut quality.

Common Shapes of Meltblown Cloth Slitter Blades

Meltblown Cloth Slitter Blades are primarily used in rotary slitting operations and thus typically feature a circular shape. The edge geometry is critical for achieving a clean cut on the fine fibers of meltblown fabric. Common shapes and features include:

  • Rotary Slitter Blades (Circular): The most common type, with diameters ranging to fit various slitting machines.
  • Razor-Sharp Edges: Blades are often honed to an extremely fine edge to cleanly shear the meltblown fibers without tearing.
  • Single Bevel Edges: Provide maximum sharpness for clean cutting of thin materials.
  • Double Bevel Edges: Offer a balance of sharpness and durability.
  • Thin Cross-Sections: Minimize drag and distortion of the delicate meltblown fabric during cutting.
  • Precision Grinding and Polishing: Ensures a smooth, clean cutting edge that reduces friction and prevents fiber snagging.
  • Custom Edge Geometries: Some blades are designed with specific edge angles or profiles to optimize cutting for particular types of meltblown cloth.
  • Slotted or Keyed Bores: Ensure secure and accurate mounting on the slitting machine shaft.

The precise shape and, most importantly, the sharpness and finish of the cutting edge are paramount for effective and damage-free slitting of meltblown cloth. Maintaining the integrity of the fabric’s filtration properties is a key consideration in blade design and selection.

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