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4T6381 CAT Dozer cutting edges for D8 D9

    4T6381 CAT Dozer cutting edges for D8 D9

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  • Part Number: 4T6381
    Machine Model : CAT D8 D9
    Material : 16Mn or 30MnB
    Unit Weight : 97.7KGS
    Size : Cutting Edge 1353*330*30 9*1"
    Number of Holes: 9 Holes
    Color : Yellow ,Black ,Green ,Red ,Blue
    Relative Parts : 4J9208 2J3507
    Contact us Inquiry
  • WhatsApp:8615857482399

cutting edges and end bits are to suit dozers, scrapers, graders, loaders and excavators


TIGERLEVEL have a complete range of blades, edges and end bits, shanks, teeth, ripper tynes, router bits and plow bolts and nuts to suit virtually every machine. Customer parts can be made to suit specialist requirements.We stock a complete range of thicknesses in standard and heavy duty.Our bits and edges are heat treated through hardened, quenched and tempered alloy steel.

A wide range of grader blades is available in two specifiions
High Carbon steelC80, and 30MnB  for

 Double bevelled curved

 Double bevelled flat
Flat Grader Blades
· Curved Grader Blades
· Serrated Grader Blades

 

A wide range of cutting edges  is available in two specifiions

16Mn, and 30MnB  for

 Double bevelled Flat

 Single bevelled flat 

End bits

Blades and cutting edges are the frontline, wear components attached to the leading edges of buckets, blades, and other digging or grading attachments on heavy machinery like excavators, loaders, and bulldozers. They are the primary points of contact with abrasive materials like soil, rock, and rubble, designed to penetrate, cut, and slice through the ground efficiently while protecting the much more expensive base attachment from rapid wear.


Mining Blades and Cutting Edges


 

1. Key Functions and Importance

Penetration and Efficiency: A sharp, robust cutting edge concentrates force onto a narrow area, significantly reducing the energy required to dig into compacted or frozen material, thereby improving machine productivity and fuel efficiency.

Material Protection: They act as a sacrificial wear part. Instead of the bucket's main body wearing down, the relatively inexpensive and easily replaceable cutting edge absorbs the abrasion.

Load Retention: Properly maintained edges help create a clean cut, allowing the bucket to fill more completely and retain material better during lifting and transport.

Specialized Tasks: Different profiles (e.g., straight, spade-nose, serrated) are optimized for specific applications like grading, trenching, or rock digging.

 

2. Materials and Manufacturing

Cutting edges and blades are typically made from **high-strength, abrasion-resistant steel (AR steel)**. This steel is alloyed and heat-treated to achieve an optimal balance of:

Surface Hardness: To resist abrasive wear (measured on the Brinell or Rockwell scale).

Core Toughness: To withstand high-impact loads without cracking or breaking.

Manufacturing processes like quenching and temperingare critical to achieving these properties. Some advanced edges may also feature hardfacing—a layer of extremely hard weld material applied to critical wear zones for extended life.

 

3. Maintenance and Economics

Regular Inspection and Rotation: Straight cutting edges can often be rotated (flipped top to bottom) to utilize both wear surfaces before replacement. End bits and teeth should be checked for excessive wear or breakage.

Timely Replacement: Worn-out edges dramatically increase digging resistance, strain the machine's hydraulic system, accelerate wear on the base bucket, and lead to higher fuel consumption. Replacing them on schedule is a key cost-saving maintenance practice.


Mining Blades and Cutting Edges are critical components in heavy machinery used for mining, quarrying, and material handling. They form the main contact surface between equipment such as loaders, excavators, and bulldozers and the mined material. High-quality blades and cutting edges improve operational efficiency, reduce equipment wear, and extend the service life of machinery in harsh mining environments.


1. Importance of Mining Blades

Mining operations involve abrasive materials like ore, gravel, and rocks. Cutting edges play a key role in:

  • Efficient Material Penetration: Sharp, durable blades allow heavy machinery to cut through hard materials easily.

  • Equipment Protection: Cutting edges absorb wear and prevent damage to the loader or excavator bucket.

  • Operational Efficiency: Well-maintained edges reduce downtime and improve fuel efficiency.

  • Safety and Reliability: Consistent cutting performance ensures stable operation and protects machinery from sudden failures.

Selecting the right blade type and material is essential for achieving long-term performance in mining operations.


Mining Blades and Cutting Edges



2. Material Selection and Performance

Mining blades and cutting edges are exposed to high abrasion, impact, and friction. Material selection is critical to ensure durability. The following table summarizes common materials:

MaterialHardness (HRC)ToughnessWear ResistanceImpact ResistanceProcessing
Carbon Steel45-50MediumMediumHighEasy
Alloy Steel50-55HighHighHighModerate
Boron Steel55-60Medium-HighVery HighMediumModerate
Heat-Treated Steel50-60HighVery HighHighModerate
Cast Steel45-50MediumMediumMediumEasy

Notes:

  • Boron steel and heat-treated steel are ideal for heavy-duty mining operations due to superior wear resistance.

  • Alloy steel provides a balance between toughness and durability, suitable for general mining tasks.

  • Carbon steel is cost-effective but may require more frequent replacements in abrasive conditions.


3. Types of Mining Blades and Cutting Edges

  1. Straight Cutting Edges – Standard design for general material handling.

  2. Curved Cutting Edges – Improve penetration and reduce spillage of loose materials.

  3. bolt-on cutting edges – Allow easy replacement and extend bucket life.

  4. Reversible Edges – Can be rotated to maximize service life.

  5. Heavy-Duty Industrial Edges – Designed for rock, ore, and extremely abrasive materials.

Selecting the right blade type depends on the mining conditions, material hardness, and equipment type.


Mining Blades and Cutting Edges



4. Maintenance Best Practices

Proper maintenance is crucial for performance and longevity:

  • Inspect edges regularly for wear, cracks, and deformation.

  • Replace worn edges promptly to prevent bucket or machine damage.

  • Ensure proper installation and alignment to avoid uneven wear.

  • Choose blade material according to operational conditions for optimal durability.

Well-maintained mining blades improve operational efficiency, reduce equipment downtime, and ensure safe and reliable mining operations.




Mining blades and cutting edges are essential for heavy machinery in mining, quarrying, and material handling. Proper selection of materials such as boron steel and heat-treated steel, combined with appropriate blade type and regular maintenance, ensures extended service life, excellent wear resistance, and reliable cutting performance. These components are vital for productivity, safety, and durability in demanding mining environments.

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