Knives, Cutting Tools

Image Part Number Description / PDF Quantity Rfq
XNB103B

XNB103B

Xcelite

REPLCMT BLADE FINE POINTED 1PC

0

XN300

XN300

Xcelite

KNIFE PRECISION WITH BLADE

0

XNB105

XNB105

Xcelite

REPLACEMENT BLADE KNIFE STENCIL

0

XN200

XN200

Xcelite

KNIFE PRECISION WITH BLADE

82

WK8V

WK8V

Xcelite

KNIFE UTILITY WITH 3 BLADES

53

XNB203

XNB203

Xcelite

REPLCMT BLADE GEN PURPOSE 1PC

0

XN100B

XN100B

Xcelite

KNIFE PRECISION WITH BLADE

0

XN210

XN210

Xcelite

KNIFE CABLE STRIPPING WITH BLADE

0

XNB301

XNB301

Xcelite

REPLCMT BLADE STRT CARVING 1PC

0

XNB101

XNB101

Xcelite

REPLACEMENT BLADE KNIFE STANDARD

0

XNS100

XNS100

Xcelite

KNIFE SET 10 BLADES 2 HANDLES

165

86NCG

86NCG

Xcelite

CUTTER SHEARS TAPERED SHEAR 6.5"

12

XNB205

XNB205

Xcelite

REPLACEMENT BLADE KNIFE POINTED

0

XNB103

XNB103

Xcelite

REPLCMT BLADE KNIFE FINE POINT

554

2106

2106

Xcelite

REMV SCRPR&STCKR ALL PURP

0

XN100

XN100

Xcelite

KNIFE PRECISION WITH BLADE

483

XNB201

XNB201

Xcelite

REPLACEMENT BLADE KNIFE CHISEL

36

WK500V

WK500V

Xcelite

KNIFE UTILITY INCLUDES 1 BLADE

0

W30

W30

Xcelite

SHEAR,10-3/8",STRAIGHT HNDL,HVY

0

0090FC

0090FC

Xcelite

GENERAL PURPOSE, CENTER CUT CUTT

0

Knives, Cutting Tools

1. Overview

Cutting tools are precision instruments designed to cut, slice, or shape materials through controlled force application. This category includes knives, blades, and specialized cutting devices used across industrial, commercial, and consumer sectors. Modern advancements in material science and manufacturing have significantly enhanced their durability, precision, and application-specific performance, making them critical components in fields ranging from surgical operations to aerospace engineering.

2. Major Types & Functional Classification

TypeFunctional CharacteristicsApplication Examples
Utility KnivesReplaceable blades, ergonomic handles, adjustable depth controlPackaging, drywall cutting, general maintenance
Industrial ShearsHydraulic/pneumatic actuation, reinforced blades, high-torque cuttingSteel plate shearing, automotive recycling, metal fabrication
Surgical ScalpelsDisposable stainless steel blades, sterile packaging, precise tip geometryMedical surgeries, pathological tissue sectioning
Rotary CuttersRotating circular blades, safety guards, adjustable pressureTextile cutting, vinyl sign making, craft applications
Band Saw BladesContinuous toothed metal bands, variable tooth pitch, heat-resistant coatingsWoodworking, metallography, food processing

3. Structural & Technical Composition

Typical cutting tools feature: - Blade Core: High-carbon steel, tool steel, or ceramic materials with engineered edge geometry - Coatings: Titanium nitride (TiN), diamond-like carbon (DLC) for wear resistance - Handle/Ergonomic Design: Textured polymer grips with vibration dampening - Actuation Mechanism: Manual, electric, or pneumatic systems with force amplification - Safety Features: Blade guards, automatic retraction, non-slip surfaces

4. Key Technical Specifications

ParameterValue RangeImportance
Blade Hardness (HRC)45-68Determines wear resistance and edge retention
Cutting Length10-3000mmDefines operational scale and material capacity
Edge Bevel Angle15 -40 Affects cutting efficiency and durability
Corrosion ResistanceRatings: 1-5 (ASTM B117)Critical for chemical/environmental exposure
Operating Temperature-50 C to 600 CMaterial stability under thermal stress

5. Application Fields

  • Food Processing: Meat slicing machines, vegetable choppers
  • Aerospace: Composite material cutting tools for carbon fiber layup
  • Healthcare: Electrosurgical scalpels with simultaneous cauterization
  • Manufacturing: CNC lathe cutting tools for precision machining
  • Construction: Diamond-tipped concrete saws for structural modifications

6. Leading Manufacturers & Products

ManufacturerRepresentative ProductKey Innovation
Olfa CorporationKN-500 Rotary CutterAuto-retracting safety mechanism
Carlisle Foodservice4125 Series Utility KnifeTextured grip with blade depth control
Sandvik CoromantCoroCut QDDouble-sided inserts for extended tool life
Walter AGTiger tec Coated BladesHigh-performance coating for metal cutting
Intuitive Surgicalda Vinci Surgical System BladesRobotic-assisted precision cutting

7. Selection Recommendations

Key considerations include: - Material compatibility (e.g., stainless steel blades for acidic environments) - Cutting force requirements (manual vs. powered tools) - Safety certifications (ISO 28350 for medical devices) - Maintenance accessibility (blade replacement frequency) - Ergonomic compliance (EN 614-2 standards)

Case Study: Automotive manufacturers prefer pneumatic shears with tungsten carbide blades for recycling operations due to their 30% higher throughput compared to traditional tools.

8. Industry Trends

Emerging developments include: - Integration of smart sensors for real-time wear monitoring - Nanocomposite coatings reducing friction by 40% - Additive manufacturing enabling complex blade geometries - Sustainable blade recycling programs (e.g., Stanley Black & Decker's circular economy initiative) - AI-powered cutting optimization in industrial settings

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