KLC Series Stainless Steel Male Threaded Quick Connect Coupling

Hered KLC Series Stainless Steel Male Threaded Quick Connect Coupling: High-performance fitting for efficient fluid transfer in pneumatic and hydraulic systems. Constructed from durable 304 or 316 stainless steel for superior corrosion resistance. Features male BSP threads in sizes 1/4″ to 1/2″. Operates at up to 15 bar (217 psi) pressure and -10°C to 80°C temperature range. Quick connect push-pull design allows for rapid, tool-free connections. Ideal for industrial applications, hydraulic systems, pneumatic tools, and fluid transfer setups. Combines safety features to prevent accidental disconnection with versatile sizing options. Enhances efficiency in system changes and maintenance while ensuring secure operation. Perfect for businesses seeking reliable, easy-to-use couplings to improve safety and performance in diverse industrial fluid and gas transfer applications.

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Product Overview

The Hered KLC Series Stainless Steel Male Threaded Quick Connect Coupling is a high-performance fitting designed for efficient and reliable fluid transfer in pneumatic and hydraulic systems. This innovative coupling combines durability, ease of use, and versatility, making it an essential component for various industrial applications.

Key Specifications

Feature Specification
Material High-quality stainless steel (304 or 316)
Thread Type Male BSP (British Standard Pipe)
Common Sizes 1/4″ to 1/2″ BSP
Max Working Pressure 15 bar (217 psi)
Temperature Range -10°C to 80°C (14°F to 176°F)
Connection Mechanism Quick connect push-pull design

Key Features

  • Corrosion Resistance: Made from high-grade stainless steel for superior durability in harsh environments.
  • Quick Connect Design: Allows for rapid, tool-free connections and disconnections.
  • Male Threaded End: Ensures secure attachment to female threaded components or hoses.
  • Versatile Sizing: Available in various thread sizes to accommodate different system requirements.
  • High Pressure Capacity: Suitable for use in systems up to 15 bar (217 psi).
  • Wide Temperature Range: Performs efficiently in various environmental conditions.
  • Safety Features: Includes mechanisms to prevent accidental disconnection during operation.

Applications

Hered KLC Series Stainless Steel Male Threaded Quick Connect Couplings are ideal for use in:

  • General industrial applications
  • Hydraulic systems
  • Pneumatic tools and equipment
  • Cooling systems
  • Pressure testing setups
  • Manufacturing and maintenance environments
  • Fluid and gas transfer systems

Advantages

  • Enhanced Efficiency: Quick connect/disconnect mechanism saves time during system changes or maintenance.
  • Improved Safety: Designed to prevent accidental disconnections, ensuring secure operation.
  • Versatile Application: Suitable for various fluids and gases in different industrial settings.
  • Durable Performance: Stainless steel construction ensures long-lasting reliability.
  • Easy Installation: Male threaded design allows for straightforward integration into existing systems.
  • Low Maintenance: High-quality materials and construction reduce the need for frequent replacements.

Installation Tips

For optimal performance of Hered KLC Series Stainless Steel Male Threaded Quick Connect Couplings:

  • Ensure proper thread matching when connecting to female components.
  • Use appropriate thread sealant or PTFE tape for a leak-free connection.
  • Verify that the quick connect mechanism is fully engaged before pressurizing the system.
  • Regularly inspect couplings for signs of wear or damage.
  • Follow manufacturer guidelines for specific installation and maintenance requirements.

The Hered KLC Series Stainless Steel Male Threaded Quick Connect Coupling represents a significant advancement in fluid transfer technology. Its robust design, user-friendly operation, and versatile application range make it an essential component for businesses seeking to enhance the efficiency, safety, and reliability of their industrial fluid and pneumatic systems.