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Rouleau pour Masques Médicaux N95

Informations Complémentaires

Autres Noms

Lame pour machine à masquer, moule pour masque, rouleau pour masque

Lieu d'Origine

Chine

Application

Machine à masque

Matériau

Acier Carbone

Numéro de Modèle

MD-MR

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 N95 Medical Mask Rollers Mean?

The term “N95 Medical Mask Roller” likely refers to a cylindrical component or a roller blade used within the automated production of N95 medical masks. Given the complexity of N95 mask manufacturing, which involves multiple layers of nonwoven fabrics (including the crucial meltblown layer), precise shaping, sealing, and the creation of folds or pleats, a roller in this context could serve various functions. If it’s a N95 Medical Mask Roller Blade, it would be a rotary cutting tool used to slit or trim the fabric layers to specific dimensions or to create features like ear loop slots or shaping the mask body. Alternatively, “roller” might refer to a forming roller that helps to create the three-dimensional shape of the mask, including the nose bridge area and the overall contour designed for a tight facial seal. The “N95 Medical Mask” part of the name specifies that this roller or blade is designed for the precise requirements of producing masks that meet the N95 filtration standard and medical-grade criteria. Depending on its specific function, a N95 Medical Mask Roller Blade could also be called a “rotary die cutter for N95 masks,” “meltblown fabric slitting roller,” “mask shaping roller blade,” or “N95 mask forming roller.”

Uses and Applications of N95 Medical Mask Rollers (Roller Blade)

If the “N95 Medical Mask Roller” is a blade, its uses and applications within the N95 mask manufacturing process would be critical for shaping and sizing the mask components:

  • Meltblown Fabric Slitting: Precisely cutting the meltblown layer, which is essential for the N95 filtration efficiency, into the required widths for integration into the mask structure.
  • Outer and Inner Layer Trimming: Cutting the outer spunbond and inner comfort layers to the specific dimensions of the mask.
  • Creating Ear Loop or Headband Slots: Precisely cutting slots or perforations where ear loops or headbands will be attached to the mask body.
  • Shaping the Mask Body: Rotary die-cutting the overall shape of the mask from the layered fabric, including the contours around the nose and chin.
  • Creating Folds or Pleats: If the roller blade has a specific profile, it might be used in conjunction with other rollers to create the folds or pleats that allow the mask to expand and fit the face.
  • Edge Trimming and Sealing Preparation: Ensuring clean and precise edges for subsequent ultrasonic welding or sealing processes.
  • Nose Bridge Wire Cutting (if integrated): In some designs, a roller blade might be involved in cutting the metal nose bridge wire to the correct length before it’s embedded in the mask.

The precision and durability of the N95 Medical Mask Roller Blade are crucial for maintaining the quality and filtration efficiency of the final N95 mask product, especially in high-speed automated production lines.

Common Materials for N95 Medical Mask Roller Blades

Given the need for precision, durability, and the hygienic requirements of medical device manufacturing, N95 Medical Mask Roller Blades would likely be made from high-quality materials that can maintain a sharp edge and resist wear. Common materials include:

  • Acier à Haute Teneur en Carbone : Can be ground to a very sharp edge, suitable for cutting nonwoven fabrics. May require coatings for enhanced wear and corrosion resistance.
  • Tool Steels (e.g., D2, M2): Offer a superior balance of hardness, toughness, and wear resistance, ideal for high-volume production and potentially more abrasive fabric layers.
  • Acier inoxydable (différentes nuances, par exemple 440C) : Provides excellent corrosion resistance and can be hardened to achieve a sharp and durable cutting edge, crucial for maintaining hygiene in medical product manufacturing.
  • Solid Carbide: Offers exceptional hardness and wear resistance, suitable for very high-speed slitting and for maintaining a precise edge over long production runs.

Coatings such as Titanium Nitride (TiN) or Chromium Nitride (CrN) might be applied to further enhance the blade’s hardness, reduce friction, and extend its lifespan, ensuring consistent cutting performance.

Common Shapes of N95 Medical Mask Roller Blades

As circular rotary cutting tools, N95 Medical Mask Roller Blades would typically have a circular shape, but the edge profile and any additional features would be tailored to their specific cutting or shaping function:

  • Circular Blades with Sharp Edges: For slitting the various fabric layers to width. The edge can be a single bevel or double bevel depending on the material and desired cut.
  • Rotary Die Cutters with Specific Profiles: For cutting the overall shape of the mask, these blades would have a contoured outer edge matching the mask design, potentially including features for nose bridge shaping or ear loop slots.
  • Perforating Rollers: If creating tear lines or attachment points, the roller blade might have small teeth or protrusions.
  • Scoring Rollers: For creating fold lines, the roller might have a rounded or knife-edge profile to indent the fabric without cutting through.
  • Anvil Rollers (used in conjunction): These smooth rollers would support the fabric against the cutting blade, ensuring a clean cut.

The precision of the blade’s diameter, thickness, and the accuracy of its edge profile are critical for the consistent production of N95 medical masks that meet stringent quality standards.

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