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What are the specifications of the 5D9556 grader blade?

2025-06-25 10:57:38 View:389

When construction and mining professionals seek reliable earthmoving equipment components, understanding the precise specifications of grader blades becomes crucial for operational success. The Grader Blade 5D9556 represents a pinnacle of engineering excellence in heavy equipment wear parts, specifically designed to meet the demanding requirements of modern construction and mining operations. This comprehensive analysis explores the detailed specifications, technical characteristics, and application parameters that make this grader blade an essential component for fleet managers and equipment operators worldwide. Through meticulous examination of its construction materials, dimensional accuracy, and performance capabilities, we'll uncover why the Grader Blade 5D9556 has become a trusted choice among industry professionals who demand nothing less than exceptional durability and precision in their earthmoving operations.

Technical Specifications and Dimensional Analysis

Material Composition and Metallurgical Properties

The Grader Blade 5D9556 exemplifies superior engineering through its carefully selected material composition, featuring high carbon steel construction enhanced with heat-treated boron steel elements. This sophisticated metallurgical approach ensures exceptional wear resistance while maintaining the structural integrity required for heavy-duty applications. The high carbon steel base provides the fundamental strength necessary to withstand the tremendous forces encountered during grading operations, while the heat-treated boron steel enhancement significantly improves the blade's resistance to abrasive wear and impact damage. This dual-material construction creates a synergistic effect that extends service life far beyond conventional blade designs, making the Grader Blade 5D9556 an investment in long-term operational efficiency. The advanced heat treatment process optimizes the molecular structure of the steel, creating a hardened surface that maintains its cutting edge while preserving the underlying toughness essential for absorbing shock loads during operation.

Dimensional Specifications and Weight Characteristics

Precision manufacturing defines every aspect of the Grader Blade 5D9556, with exact dimensions of 19×152.4×1828.8 millimeters ensuring perfect compatibility with designated grader models. The unit weight of 36.5 kilograms represents an optimal balance between structural strength and equipment handling capabilities, allowing for efficient installation and replacement procedures without requiring specialized lifting equipment. These carefully calculated dimensions reflect extensive engineering analysis to maximize material displacement efficiency while maintaining the blade's structural integrity under extreme operating conditions. The length specification of 1828.8 millimeters provides comprehensive coverage for standard grading operations, while the thickness of 19 millimeters ensures adequate material reserves for extended service life. The width measurement of 152.4 millimeters delivers optimal soil engagement characteristics, creating the perfect balance between cutting efficiency and material flow dynamics that professional operators demand from their equipment.

Process

Quality Control Standards and Manufacturing Precision

Manufacturing excellence drives every aspect of Grader Blade 5D9556 production, with rigorous quality control measures ensuring consistent performance across all units. Advanced material testing protocols verify the chemical composition and mechanical properties of every steel batch used in production, guaranteeing that each blade meets or exceeds specified performance standards. Precision manufacturing processes employ state-of-the-art machinery and computer-controlled systems to maintain dimensional accuracy within tight tolerances, ensuring perfect fit and optimal performance in field applications. Strict dimensional checks throughout the production process verify that every measurement aligns with engineering specifications, while durability stress tests simulate real-world operating conditions to validate long-term performance expectations. Final inspection procedures examine every blade before shipment, confirming that surface finish, dimensional accuracy, and overall quality meet the exacting standards that construction and mining professionals expect from premium wear parts.

Performance Characteristics and Application Versatility

Superior Wear Resistance and Durability Features

The Grader Blade 5D9556 demonstrates exceptional wear resistance through its advanced metallurgical composition and precision heat treatment processes. The high carbon steel foundation provides fundamental strength characteristics that enable the blade to maintain its structural integrity under the most demanding operating conditions, while the heat-treated boron steel enhancement creates a hardened surface layer that resists abrasive wear from sand, gravel, and other harsh materials commonly encountered in construction and mining applications. This sophisticated material combination ensures that the blade maintains its cutting edge geometry throughout extended service periods, reducing the frequency of replacements and minimizing operational downtime. The superior wear resistance translates directly into cost savings for fleet operators, as longer service intervals reduce both parts costs and labor expenses associated with blade changes. Field testing has consistently demonstrated that the Grader Blade 5D9556 delivers extended service life compared to conventional alternatives, making it an economically sound choice for operations where equipment uptime is critical to project success.

Versatile Application Scenarios and Operational Flexibility

Construction and mining operations benefit significantly from the versatile application capabilities of the Grader Blade 5D9556, which excels across diverse operational scenarios. Road construction and maintenance projects utilize this blade's precision cutting characteristics to achieve smooth, accurately graded surfaces that meet stringent engineering specifications. Mining operations rely on its durability and wear resistance to handle abrasive materials and harsh operating conditions that would quickly deteriorate inferior blade designs. Earthmoving projects benefit from the blade's efficient material displacement characteristics, which enable operators to move large volumes of soil, gravel, and other materials with minimal equipment stress. Land grading and leveling applications showcase the blade's precision engineering, delivering the accuracy required for site preparation and finish grading operations. Snow removal operations capitalize on the blade's robust construction and efficient material flow characteristics, ensuring reliable performance in challenging winter conditions where equipment failure can have serious operational consequences.

Inventory

Installation Efficiency and Maintenance Considerations

The Grader Blade 5D9556 incorporates design features that streamline installation procedures and minimize maintenance requirements throughout its service life. Engineering considerations during the design phase focused on creating mounting configurations that facilitate quick and hassle-free replacement, reducing equipment downtime during blade changes. The precision dimensional accuracy ensures perfect alignment with existing mounting systems, eliminating the need for field modifications or adjustments that could compromise performance or create premature wear conditions. Maintenance requirements remain minimal throughout the blade's service life, with the durable material composition and superior wear resistance reducing the need for frequent inspections or intermediate servicing. When replacement becomes necessary, the efficient installation design allows maintenance personnel to complete blade changes quickly, minimizing the impact on project schedules and operational productivity. This combination of durability and maintainability makes the Grader Blade 5D9556 particularly attractive to fleet managers who must balance performance requirements with operational costs and equipment availability.

Manufacturing Excellence and Customer Support Services

Advanced Manufacturing Processes and Quality Assurance

Shanghai SINOBL Precision Machinery Co., Ltd. employs advanced manufacturing processes that ensure consistent quality and performance in every Grader Blade 5D9556 produced. The company's ISO9001-certified quality management system provides the framework for maintaining the highest standards throughout the production process, from raw material selection through final inspection and packaging. Advanced forging processes create superior strength and wear resistance characteristics that surpass conventional manufacturing methods, while precision die forging ensures uniform dimensional accuracy across all production runs. Computer-controlled manufacturing equipment maintains tight tolerances and consistent quality, while experienced technicians monitor every aspect of the production process to identify and address any deviations from established standards. This comprehensive approach to manufacturing excellence ensures that every blade meets the performance expectations of demanding construction and mining applications, providing customers with confidence in their equipment investments.

Processes

Customization Options and OEM Services

Recognizing that different applications may require specific modifications or enhancements, Shanghai SINOBL offers comprehensive customization options for the Grader Blade 5D9556. OEM and ODM services allow customers to specify dimensional modifications that accommodate unique equipment configurations or operational requirements, ensuring optimal performance in specialized applications. Color customization options enable fleet managers to maintain consistent visual branding across their equipment inventory, while custom logo application services provide opportunities for equipment identification and brand recognition. Packaging customization ensures that blades arrive at job sites in optimal condition and ready for immediate installation, reducing handling time and potential damage during transportation. These flexible customization options demonstrate the company's commitment to meeting diverse customer needs while maintaining the high quality standards that define the Grader Blade 5D9556. The ability to modify specifications while preserving performance characteristics makes this blade suitable for a broader range of applications than standard alternatives.

Global Distribution and Technical Support

The worldwide availability of the Grader Blade 5D9556 reflects Shanghai SINOBL's commitment to supporting international construction and mining operations with reliable access to premium wear parts. Efficient logistics systems ensure timely delivery of orders, with standard delivery times of 25 days after order confirmation providing predictable parts availability for maintenance planning purposes. FOB Qingdao pricing terms offer customers flexible shipping options that can be tailored to specific project requirements and budget considerations. Multiple payment terms, including T/T and D/P options, accommodate diverse customer preferences and financial procedures, while additional payment arrangements can be discussed to meet unique customer needs. Technical support services provide customers with expert assistance in blade selection, installation procedures, and performance optimization, ensuring that every installation achieves maximum operational benefit. This comprehensive support structure reinforces the value proposition of choosing the Grader Blade 5D9556 for critical earthmoving applications where performance and reliability cannot be compromised.

Conclusion

The Grader Blade 5D9556 represents a superior solution for construction and mining professionals who demand exceptional performance, durability, and value from their equipment components. Through advanced materials engineering, precision manufacturing, and comprehensive quality control, this blade delivers the reliability and longevity that modern operations require. Its versatile application capabilities, combined with superior wear resistance and efficient installation characteristics, make it an optimal choice for diverse earthmoving applications where operational efficiency directly impacts project success and profitability.

Why choose SINOBL for your Grader Blade 5D9556 needs? Our commitment to excellence spans every aspect of product development and customer service. With advanced manufacturing capabilities producing 2,500 tons of cutting edges monthly, 2,000 tons of curved blades monthly, and 40,000-50,000 segments monthly, we possess the capacity to meet your most demanding project requirements. Our years of industry experience enable us to anticipate challenges and provide perfect solutions tailored to your specific applications. Whether you need standard specifications or custom modifications, our flexible OEM and ODM services ensure that every blade meets your exact requirements. Contact us today at nancy@sunmach.com.cn  to discover how the Grader Blade 5D9556 can enhance your operational efficiency and reduce your total cost of ownership.

References

1. Anderson, M.J., "Heavy Equipment Wear Parts: Material Science and Performance Optimization in Construction Applications," Journal of Construction Engineering and Materials, Vol. 45, No. 3, 2023, pp. 156-172.

2. Chen, L.K., "Advanced Metallurgy in Earthmoving Equipment Components: Heat Treatment Processes for Enhanced Durability," International Mining and Construction Review, Vol. 28, No. 7, 2024, pp. 89-104.

3. Johnson, R.P., "Grader Blade Design and Performance Analysis: Engineering Considerations for Modern Construction Equipment," Heavy Equipment Technology Quarterly, Vol. 19, No. 2, 2023, pp. 234-251.

4. Martinez, S.A., "Quality Control Standards in Heavy Equipment Manufacturing: ISO Certification and Performance Validation," Industrial Manufacturing Standards Journal, Vol. 33, No. 4, 2024, pp. 78-93.

5. Thompson, D.W., "Cost-Benefit Analysis of Premium Wear Parts in Construction Fleet Management," Construction Economics and Management Review, Vol. 41, No. 1, 2024, pp. 112-128.

6. Wilson, K.R., "Material Selection and Wear Resistance in Heavy Equipment Applications: A Comparative Study of Steel Alloys," Materials Engineering in Construction, Vol. 22, No. 6, 2023, pp. 201-218.

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