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尖頭ナイフ

追加情報

その他の名称

スロッティングマシン刃 超硬溝入れカッター替刃

原産地

中国

用途

プラスチック、紙、カーペット、Metal、ゴム、アルミニウム、ケーブル、銅、シュレッド、タイヤ、WEEE

材料

トイレ

モデル番号

CB-GC

OEMサービス

利用可能

支払い条件

L/C、T/T、ウェスタンユニオン

包装

段ボール箱, 木製ケース

納期

7-20日

シェア先:

What do Pointed Tip Knives Mean?

The term “Pointed Tip Blades” refers to a broad category of cutting tools characterized by a sharp, tapered end or point. This design feature allows for precise piercing, intricate cutting, detailed trimming, and access to tight or confined spaces. The specific shape and angle of the point can vary significantly depending on the intended application, ranging from extremely fine needles for delicate work to more robust points for piercing thicker materials. Pointed Tip Knives are utilized across a wide spectrum of industries and crafts, wherever accuracy and the ability to initiate cuts or manipulate materials at a specific point are required. They stand in contrast to blades with straight or rounded cutting edges designed for more linear or broader cutting actions. Pointed Tip Knives are also sometimes referred to as “needle point blades,” “precision point blades,” “fine tip blades,” “piercing blades,” or “detail blades,” depending on the specific application and industry.

Uses and Applications of Pointed Tip Knives

Pointed Tip Knives are versatile tools with a wide range of applications that leverage their sharp, focused cutting ability. Key uses and application scenarios include:

  • Crafting and Hobby Work: Essential for intricate paper cutting, model making (cutting and scoring), vinyl weeding, jewelry making (fine detailing), and various other crafts requiring precise manipulation and cutting.
  • Surgical and Medical Applications: Used in scalpels and other surgical instruments for precise incisions, dissections, and tissue manipulation. The sharpness and control offered by Pointed Tip Knives are critical in medical procedures.
  • Textile and Garment Industry: Employed for detailed trimming of threads, making small cuts, and pattern alterations. Fine pointed blades allow for accuracy without damaging the fabric.
  • Electronics Manufacturing and Repair: Used for delicate cutting of wires, insulation, and circuit board materials, as well as for precision scraping and cleaning.
  • Leatherworking: Utilized for fine trimming, creating stitch marks, and initiating cuts for intricate designs.
  • Taxidermy and Specimen Preparation: Essential for detailed skinning, trimming, and shaping of tissues.
  • 食品加工: Specialized pointed tip knives are used for delicate tasks like deveining shrimp, trimming vegetables, and creating intricate garnishes.
  • Industrial Prototyping and Model Making: Used for precise cutting and shaping of various materials in the creation of prototypes and models.
  • General Utility: For tasks requiring a sharp point for piercing or initiating cuts in various materials, such as opening packages cleanly or scoring surfaces.

The specific shape, size, angle, and material of the Pointed Tip knife are chosen based on the material being worked, the level of precision required, and the force to be applied.

Common Materials for Pointed Tip Knives

The materials used in the manufacturing of Pointed Tip Knives are selected for their ability to achieve and maintain a sharp point, as well as for their durability and resistance to bending or breaking under the intended use. Common materials include:

  • 高炭素鋼: Known for its ability to take and hold an extremely sharp edge, making it a popular choice for many precision Pointed Tip Knives. May require more care to prevent rust.
  • Stainless Steel (various grades, e.g., 420, 440, 304): Offers good corrosion resistance and can be hardened to achieve a very sharp and durable point. Different grades provide varying levels of hardness and edge retention. Often preferred for medical and food-related applications.
  • Tool Steels (e.g., O1, A2, D2): Provide a good balance of hardness, toughness, and wear resistance, suitable for more demanding applications where the point needs to withstand some lateral force or repeated use.
  • Ceramic Materials (e.g., Zirconia): Offer extreme hardness and can be sharpened to a very fine, long-lasting point. Also chemically inert and non-magnetic, making them suitable for specialized applications.
  • Specialty Alloys (e.g., Tungsten Alloys): Used in applications requiring exceptional stiffness or resistance to wear, particularly in industrial or scientific instruments.

The selection of the appropriate material depends on the intended use of the Pointed Tip Knife, the material being worked, and the desired balance between sharpness, durability, and corrosion resistance.

Common Shapes of Pointed Tip Knives

The defining characteristic is the pointed tip, but the overall blade shape and the geometry of the point itself can vary significantly:

  • Straight Blades with a Sharp Point: The most common type, used for general precision cutting and piercing. The angle of the point can range from acute for delicate work to more obtuse for strength.
  • Curved Blades with a Pointed Tip: Allow for slicing motions while still offering a precise point for initiating cuts or reaching specific areas. Common in surgical scalpels and some crafting knives.
  • Hooked Blades with a Pointed Tip: Designed for specific tasks like cutting straps, opening boxes without damaging contents, or scoring materials.
  • Spear Point Blades: Symmetrical blades with a point that aligns with the centerline of the blade, offering good piercing ability and control.
  • Clip Point Blades: Feature a concave curve on the spine near the tip, creating a thinner, sharper point often used for detailed work.
  • Needle Point Blades: Extremely fine and slender points designed for very delicate work, such as fine paper cutting, electronics repair, or surgical procedures.
  • Angled Point Blades: The point may be offset or angled relative to the main blade body for specific cutting angles or access to awkward areas.

The specific shape of the Pointed Tip Knives is dictated by the application, allowing for optimization of piercing ability, cutting efficiency, maneuverability in tight spaces, and the level of control required for the task.

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