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종이 절단 칼, 종이 단두대 블레이드, 단두대 칼, 단두대 기계 칼

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

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GP-GB

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L/C, T/T, 웨스턴 유니온

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7-20일

공유하기:

What do Guillotine Blades Mean?

Guillotine blades, also known as guillotine knives or straight cutting blades, are long, straight cutting tools used in guillotine cutters or shearing machines. These machines are designed to make straight, precise cuts across a wide range of materials, most commonly paper, cardstock, and thin boards in the printing and paper converting industries, but also metals, plastics, and other materials in industrial shearing applications. The term “guillotine blades” refers to the straight blade or set of blades that descend in a shearing motion to cut the material held firmly in place.

Uses and Applications of Guillotine Blades

Guillotine blades are essential tools in various industries for making clean, straight cuts. Key applications include:

  • Printing and Paper Converting: Precisely cutting stacks of paper, cardstock, labels, and other printed materials to final sizes using paper cutters or guillotines. This is crucial for books, brochures, posters, and other printed products.
  • 포장 산업: Cutting cardboard, corrugated board, and other packaging materials to create blanks or finished packaging.
  • Sign Making: Cutting large format prints, vinyl, and other sign materials to specific dimensions.
  • Leather Industry: Cutting large pieces of leather for various applications.
  • 섬유 산업: Cutting stacks of fabric or rolled textiles into specific sizes.
  • Metalworking: Shearing thin metal sheets and plates to size in some industrial applications.
  • Plastics Industry: Cutting plastic sheets and films.
  • 식품 가공: Specialized guillotine blades can be used for cutting large blocks of cheese or other food products.

Common Materials for Guillotine Blades

The materials used for guillotine blades must be durable, wear-resistant, and capable of maintaining a sharp, straight cutting edge to ensure clean and accurate cuts over extended use. Common materials include:

  • 탄소강: Often used for cutting softer materials like paper and cardboard, where cost is a primary concern. Different grades offer varying levels of hardness.
  • 고속도강 (HSS) Provides improved wear resistance and can maintain sharpness longer than carbon steel, suitable for cutting thicker paper stocks, laminates, and some thin plastics.
  • Alloy Tool Steel (e.g., D2, A2): Offers excellent wear resistance and is ideal for high-volume cutting of various materials, including thicker paperboard, plastics, and even thin metals, ensuring consistent cut quality. D2 steel is particularly known for its durability and edge retention.
  • 카바이드 팁 블레이드: Feature tungsten carbide inserts at the cutting edge, providing exceptional hardness and wear resistance for cutting very abrasive materials or for extremely high production volumes, significantly extending blade life.

The blades are precision ground and often hardened and tempered to achieve the optimal balance of sharpness and durability. The bevel angle of the cutting edge is critical for the specific material being cut, ensuring a clean shear without tearing or crushing.

Common Guillotine Blade Shapes

Guillotine blades are typically long and straight, but variations exist in their edge profiles and overall design depending on the application and the material being cut:

  • Straight Edge Blades: The most common type, featuring a simple, straight cutting edge. The bevel (the angled surface that forms the cutting edge) can be single or double, depending on the material and cutting requirements.
  • 베벨 모서리 블레이드: The cutting edge is formed by one or two angled surfaces. The angle of the bevel influences the cutting force required and the quality of the cut edge. Steeper angles are often used for harder materials.
  • Hollow Ground Blades: The sides of the blade are concave, resulting in a very sharp but potentially more fragile edge, often used for precision cutting of paper and thin materials.
  • Notched Blades: Some guillotine blades have notches along the cutting edge to aid in gripping the material or to create specific cut patterns.
  • Perforating Blades: Feature teeth or специально designed edges to create lines of perforations in materials like paper or labels.

The working principle of guillotine blades involves a powerful downward shearing motion against a stationary bed or anvil. The material to be cut is held firmly in place by a clamp, and the sharp, straight blade descends with significant force, cleanly severing the material. The length and thickness of the blade, the angle of the bevel, the force applied, and the rigidity of the machine all contribute to the quality and accuracy of the cut. Proper sharpening and alignment of the guillotine blades are essential for optimal performance and safety.

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