Sapphire Optics

Single Crystal Sapphire Rods For Piston Plunger HPLC System

Sapphire piston/plunger rods are widely used in medical devices, precision machinery, and inspection instruments due to their exceptional mechanical, optical, thermal, and chemical properties. These high-performance sapphire rods offer extreme hardness, high strength, scratch resistance, temperature resilience, chemical stability, and superior radiation resistance, making them ideal for demanding applications.

Sapphire piston/plunger rods

Sapphire piston/plunger rods

Why do Sapphire Rods have such high performance?

  • Sapphire rods are the ideal choice for high-pressure containers and transport plumbing in demanding systems. With exceptional strength and transparency, sapphire tubes withstand extreme pressures while enabling safe observation and spectral analysis of fluids and gases.
  • Designed for harsh environments, sapphire tubes effectively house and protect sensitive sensors from pressure and mechanical damage.
  • Sapphire rods excel in rod bearing and standoff applications, offering superior abrasion and wear resistance while maintaining excellent dimensional stability.
  • Typical application of various sapphire rods are:

  • cracking units
  • combustion reactors
  • chemical industry
  • semiconductor industry
  • glass industry
  • Notes

  • AOG SAPPHIRE is a leading custom sapphire glass parts manufacturer specializing in the production of custom sapphire crystal parts. Our comprehensive solutions for custom sapphire optical parts fabrication encompass shaping, grinding, drilling, and polishing. Additionally, we offer coating solutions tailored to enhance and optimize performance across a wide spectrum of applications.
  • Backed by over 20 years of diverse experience, AOG SAPPHIRE offers effective methods for polishing custom sapphire parts, ensuring low roughness, high surface quality, and precise surface accuracy.
  • If need other specifications and quantities products, please contact us(sales@sapphire-window.com).