
Open Housing Slew Drive S17 The Ultimate Solution for High Performance Rotation
What Is Open Housing Slew Drive S17
Open Housing Slew Drive S17 is an advanced drive system engineered to deliver precision and durability in demanding rotational applications. It consists of three main components: a robust base, a sophisticated worm shaft, and a worm wheel. This design allows the S17 to efficiently handle axial loads, radial loads, and tilting moments, making it a versatile solution for diverse mechanical systems. Its open-shell construction enhances accessibility for maintenance and customization while maintaining high structural integrity.
Split Slewing Bearing Design
A key feature of the Open Housing Slew Drive S17 is its split slewing bearing design. This innovative configuration allows for easier installation and servicing, as the bearing can be disassembled without removing the entire drive unit. The split design also improves load distribution, reducing wear and extending operational life. This makes the S17 particularly suitable for heavy-duty applications where frequent maintenance or adjustments are required.
Open Housing Slew Drive S17 Technical Specifications
The Open Housing Slew Drive S17 boasts impressive technical parameters that ensure superior performance:
Output Torque: 10 kN·m
Tilting Moment Torque: 135.6 kN·m
Holding Torque: 72.3 kN·m
Transmission Ratio: 102:1
Tracking Accuracy: ≤0.15°
These specifications highlight the S17’s ability to handle high loads with exceptional precision, making it ideal for applications requiring reliable and accurate rotational movement.
Features of Open Housing Slew Drive S17
The Open Housing Slew Drive S17 offers several standout features:
High Load Capacity: Capable of managing axial, radial, and tilting moments efficiently.
Precision Tracking: Ensures accurate positioning with minimal deviation.
Modular Design: Simplifies integration into various mechanical systems.
Easy Maintenance: The open-shell and split bearing design facilitate quick servicing.
Durability: Built with high-quality materials to withstand harsh operating conditions.
These features make the S17 a preferred choice for industries requiring robust and reliable slewing drive solutions.
Applications of Open Housing Slew Drive S17
The Open Housing Slew Drive S17 is widely used in industries that demand high-performance rotational mechanisms, including:
Solar Tracking Systems: Ensures precise alignment of solar panels for optimal energy capture.
Construction Machinery: Provides reliable rotation for cranes, excavators, and other heavy equipment.
Wind Turbines: Supports the yaw and pitch control mechanisms for efficient power generation.
Industrial Automation: Enhances the performance of robotic arms and rotating platforms.
Marine Equipment: Used in deck cranes and other maritime applications requiring durable rotation solutions.
Its versatility and reliability make the S17 suitable for both stationary and mobile applications.
Factors Affecting Open Housing Slew Drive S17 Pricing
The price of the Open Housing Slew Drive S17 is influenced by several factors:
Material Quality: High-grade materials increase durability but also cost.
Production Complexity: Advanced manufacturing processes and precision engineering contribute to higher prices.
Customization: Tailored solutions for specific applications may incur additional costs.
Market Demand: Fluctuations in demand can impact pricing.
Supplier Pricing Policies: Different suppliers may offer varying prices based on their business models.
Understanding these factors helps buyers make informed decisions when selecting a slewing drive.
Supplier of Open Housing Slew Drive S17
LYRADRIVE is a leading supplier of high-performance slewing drives, including the Open Housing Slew Drive S17. Leveraging extensive engineering expertise and advanced manufacturing capabilities, LYRADRIVE focuses on delivering robust, reliable, and precise slewing solutions tailored to meet the demanding requirements of diverse industrial sectors such as renewable energy, heavy machinery, automation, and communications.