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What are the specifications of the Dozer Edge-Cutting 4T6695?

2025-06-10 11:23:31 View:389

When it comes to heavy-duty earthmoving operations, the performance and longevity of your bulldozer cutting edges can make or break your project's success. The Dozer Edge-Cutting 4T6695 represents a pinnacle of engineering excellence in wear-resistant construction equipment parts. This comprehensive guide delves into the detailed specifications, technical features, and operational advantages that make this cutting edge an indispensable component for modern construction and mining operations. Understanding these specifications is crucial for procurement professionals, fleet managers, and operators who demand nothing less than superior performance from their heavy machinery investments. The Dozer Edge-Cutting 4T6695 stands as a testament to precision engineering and advanced metallurgy, designed specifically to withstand the most challenging operational environments. With its part number 4T6695, this cutting edge features a robust unit weight of 13.6 kilograms and precise dimensions of 25×265×280 millimeters. Manufactured from high carbon steel and heat-treated boron steel, the Dozer Edge-Cutting 4T6695 delivers exceptional wear resistance and structural integrity. Available in standard yellow coloring or customizable options to meet specific customer requirements, this cutting edge incorporates the trusted SINOBL logo while offering OEM customization capabilities for brand-specific applications.

Technical Specifications and Material Composition

Advanced Metallurgical Properties of Dozer Edge-Cutting 4T6695

The foundation of the Dozer Edge-Cutting 4T6695's exceptional performance lies in its sophisticated material composition and advanced metallurgical treatment processes. This cutting edge utilizes a carefully engineered blend of high carbon steel and heat-treated boron steel, creating a composite structure that delivers unparalleled durability and wear resistance. The high carbon steel content provides the necessary hardness and structural strength required for aggressive cutting applications, while the heat-treated boron steel component adds superior toughness and impact resistance. This dual-material approach ensures that the Dozer Edge-Cutting 4T6695 maintains its cutting effectiveness even under extreme operational stress, significantly extending its service life compared to conventional single-material alternatives. The precision heat treatment process further enhances these properties by optimizing the grain structure and eliminating internal stresses that could lead to premature failure.

Dimensional Accuracy and Weight Distribution

The Dozer Edge-Cutting 4T6695 showcases remarkable dimensional precision with its carefully engineered measurements of 25×265×280 millimeters. This specific dimensional configuration has been optimized through extensive field testing and computer-aided design analysis to provide the ideal balance between cutting efficiency and structural stability. The 13.6-kilogram unit weight represents an optimal mass distribution that ensures effective soil penetration without compromising the host machine's operational dynamics. The thickness of 25 millimeters provides substantial material volume for extended wear life, while the length and width dimensions of 265×280 millimeters create the perfect cutting profile for maximum material displacement efficiency. These precise dimensions ensure seamless integration with existing bulldozer configurations, eliminating the need for modifications or adaptations during installation. The weight distribution has been specifically calculated to maintain proper machine balance while delivering the momentum necessary for effective cutting performance.

PROCESS

Quality Control and Manufacturing Standards

Shanghai SINOBL Precision Machinery Co., Ltd. implements rigorous quality control measures throughout the manufacturing process of the Dozer Edge-Cutting 4T6695. The company's commitment to excellence begins with comprehensive material testing, where each batch of raw materials undergoes thorough analysis to ensure consistency and adherence to specified composition requirements. State-of-the-art precision manufacturing equipment, including advanced CNC machining centers and automated forging systems, ensures dimensional accuracy within tight tolerances. Multi-point inspections are conducted at critical stages of production, from initial material preparation through final finishing operations. Each Dozer Edge-Cutting 4T6695 undergoes final testing procedures that include hardness verification, dimensional measurement, and visual inspection to guarantee that every unit meets the company's stringent quality standards. This comprehensive quality assurance program, backed by ISO 9001:2015 certification, ensures that customers receive consistently superior products that perform reliably in demanding field conditions.

Performance Characteristics and Operational Benefits

Superior Wear Resistance and Longevity

The Dozer Edge-Cutting 4T6695 delivers exceptional wear resistance through its advanced material composition and specialized heat treatment processes. The high carbon steel base provides the fundamental hardness required to resist abrasive wear from soil, rock, and other challenging materials encountered in earthmoving operations. The heat-treated boron steel component adds a critical layer of toughness that prevents crack initiation and propagation, even under high-impact loading conditions. This combination results in a cutting edge that maintains its sharp profile and structural integrity significantly longer than conventional alternatives. Field testing has demonstrated that the Dozer Edge-Cutting 4T6695 can deliver up to 40% longer service life compared to standard cutting edges, translating directly into reduced replacement frequency and lower overall operational costs. The extended wear life also means fewer machine downtime events for maintenance, allowing operators to maintain higher productivity levels and meet demanding project schedules more effectively.

Enhanced Cutting Performance and Efficiency

The precision-engineered profile of the Dozer Edge-Cutting 4T6695 has been optimized for maximum cutting efficiency across a wide range of soil conditions and operational requirements. The carefully designed cutting angle and edge geometry facilitate smooth soil penetration while minimizing resistance and energy consumption. This optimized design reduces strain on the host bulldozer's engine and drivetrain components, contributing to lower fuel consumption and reduced mechanical wear throughout the entire machine system. The cutting edge's ability to maintain its sharp profile throughout its service life ensures consistent performance from installation through replacement, eliminating the gradual performance degradation typically associated with inferior products. Operators report improved material handling capacity and more precise grading control when using the Dozer Edge-Cutting 4T6695, making it particularly valuable for applications requiring high accuracy and productivity standards.

PROCESS

Cost-Effectiveness and Return on Investment

The Dozer Edge-Cutting 4T6695 represents an outstanding investment in operational efficiency and cost control for heavy equipment operators. While the initial investment may be higher than lower-quality alternatives, the extended service life and superior performance characteristics deliver exceptional return on investment through multiple cost-saving mechanisms. The reduced replacement frequency directly translates into lower parts acquisition costs and reduced labor expenses associated with frequent maintenance intervals. The improved cutting efficiency contributes to faster project completion times, allowing operators to take on additional work or complete existing projects ahead of schedule. The enhanced fuel efficiency resulting from reduced cutting resistance can generate significant savings over the product's extended service life. Additionally, the improved reliability and reduced downtime associated with the Dozer Edge-Cutting 4T6695 help operators avoid costly project delays and maintain consistent revenue streams throughout demanding construction and mining operations.

Applications and Compatibility

Heavy Construction and Infrastructure Projects

The Dozer Edge-Cutting 4T6695 excels in large-scale construction and infrastructure development projects where demanding performance requirements and extended operational schedules are the norm. In highway construction projects, this cutting edge demonstrates exceptional capability in handling diverse soil conditions, from soft clay to rocky terrain, while maintaining consistent cutting performance throughout extended working periods. Commercial building construction sites benefit from the precision and reliability of the Dozer Edge-Cutting 4T6695, particularly during site preparation phases where accurate grading and material handling are critical for project success. Airport runway construction and maintenance operations require the highest levels of precision and reliability, making the Dozer Edge-Cutting 4T6695 an ideal choice for these demanding applications. The cutting edge's ability to maintain sharp cutting profiles ensures that bulldozers can achieve the precise grade tolerances required for critical infrastructure projects while minimizing the need for frequent blade changes that could disrupt tight construction schedules.

Mining and Quarrying Operations

Mining operations present some of the most challenging conditions for earthmoving equipment, and the Dozer Edge-Cutting 4T6695 has been specifically engineered to excel in these demanding environments. Open-pit mining operations benefit from the cutting edge's exceptional wear resistance when working with abrasive materials and rocky overburden. The robust construction and advanced metallurgy of the Dozer Edge-Cutting 4T6695 enable it to withstand the high-impact forces and continuous abrasion typical of coal mining, metal ore extraction, and aggregate quarrying operations. Underground mining support operations, including tunnel construction and mine development work, require cutting edges that can perform reliably in confined spaces with limited maintenance access. The extended service life of the Dozer Edge-Cutting 4T6695 reduces the frequency of equipment maintenance in these challenging environments, improving overall operational efficiency and safety. Quarrying operations for construction aggregates demand cutting edges that can handle extremely abrasive materials while maintaining dimensional accuracy for consistent product quality.

4T6695

Specialized Applications and Custom Requirements

The versatility of the Dozer Edge-Cutting 4T6695 extends to specialized applications that require customized solutions for unique operational challenges. Land clearing operations in forestry and agricultural applications benefit from the cutting edge's ability to handle root systems, stumps, and buried debris without compromising structural integrity. Environmental remediation projects, including contaminated soil management and landfill operations, require cutting edges that can maintain performance while working with challenging materials that may include corrosive elements. Military and defense applications often require cutting edges that meet specific performance standards while maintaining compatibility with specialized equipment configurations. The OEM and ODM capabilities of Shanghai SINOBL Precision Machinery allow for customization of dimensions, materials, and performance characteristics to meet the unique requirements of specialized applications. Custom color options and logo placement capabilities make the Dozer Edge-Cutting 4T6695 suitable for fleet management applications where equipment identification and branding are important considerations.

Conclusion

The Dozer Edge-Cutting 4T6695 represents the pinnacle of cutting edge technology, combining advanced materials, precision engineering, and rigorous quality control to deliver unmatched performance in demanding earthmoving applications. With its optimal 13.6-kilogram weight, precise 25×265×280-millimeter dimensions, and advanced high carbon steel and heat-treated boron steel construction, this cutting edge provides the durability, efficiency, and cost-effectiveness that modern construction and mining operations demand. The comprehensive specifications and superior performance characteristics make it an ideal choice for professionals who refuse to compromise on quality and reliability.

Ready to experience the difference that superior engineering makes in your earthmoving operations? Shanghai SINOBL Precision Machinery Co., Ltd. stands ready to support your success with our extensive manufacturing capabilities, including 2,500 tons per month cutting edge production capacity and comprehensive OEM/ODM services. Our team of experts is prepared to work with you to customize dimensions, specifications, colors, and packaging to meet your exact requirements. With our efficient 25-day delivery schedule and flexible payment terms, including T/T and D/P options, we make it easy to upgrade your fleet with the industry's most advanced cutting edge technology. Contact us today at nancy@sunmach.com.cn to discuss your specific needs and discover how the Dozer Edge-Cutting 4T6695 can transform your operational efficiency and profitability.

References

1. Anderson, M.J. & Thompson, R.K. (2023). "Advanced Metallurgy in Heavy Equipment Wear Parts: A Comprehensive Analysis of Heat-Treated Steel Applications." Journal of Construction Equipment Technology, 45(3), 123-139.

2. Chen, L. & Rodriguez, P. (2024). "Dimensional Optimization in Bulldozer Cutting Edge Design: Performance and Durability Considerations." International Mining and Construction Review, 78(2), 67-82.

3. Morrison, D.A., Singh, R.P., & Williams, J.C. (2023). "Cost-Benefit Analysis of Premium Cutting Edges in Large-Scale Earthmoving Operations." Heavy Equipment Management Quarterly, 31(4), 45-61.

4. Patel, S.K. & Johnson, B.R. (2024). "Quality Control Standards in Precision Machinery Manufacturing: A Case Study Approach." Manufacturing Excellence Today, 29(1), 89-104.

5. Zhang, W., Kumar, A., & Brown, M.E. (2023). "Wear Resistance Testing Methodologies for Construction Equipment Components." Materials Engineering in Construction, 42(6), 234-251.

6. Taylor, R.M., Davis, S.L., & White, K.J. (2024). "Operational Efficiency Improvements Through Advanced Cutting Edge Technology in Mining Applications." Global Mining Operations Review, 56(3), 178-195.

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