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The Sapphire Rod is a precision-fabricated, high-purity single-crystal sapphire component designed to meet the demanding requirements of advanced optical, mechanical, and scientific applications. Crafted from single-crystal aluminum oxide (Al₂O₃), this rod exhibits exceptional hardness, optical transparency, thermal stability, and resistance to wear, corrosion, and high pressure.
What sets this particular sapphire rod apart is its customized geometry, including a finely tapered or conical tip—indicating it is designed for niche applications requiring both dimensional accuracy and extreme durability. With a hardness second only to diamond (Mohs 9), sapphire rods are often chosen over glass or quartz in high-stress environments where failure is not an option.
These rods are widely used across multiple industries such as aerospace, semiconductor processing, metrology, photonics, biomedical devices, and high-temperature processing, where consistent performance under extreme conditions is required.
The manufacturing of a sapphire rod involves advanced crystal growth and precision machining technologies to ensure exact specifications and defect-free surfaces. The two most common methods used to grow sapphire crystals for rod production are:
The KY method is widely adopted for growing large, high-quality bulk sapphire crystals. It involves slowly pulling a seed crystal from molten aluminum oxide (Al₂O₃) inside a high-temperature furnace. The process is carefully controlled to regulate the temperature gradient, pulling rate, and rotational speed, producing an optically isotropic and structurally stable sapphire boule. Once solidified, the sapphire boule is oriented, cut, and machined into rods.
The EFG method is ideal for producing sapphire rods, tubes, and profiles with pre-defined shapes. In this technique, a die (or shaper) is submerged in a crucible filled with molten sapphire. The molten material is drawn upward through the die by capillary action and crystallizes into a solid rod. This allows for continuous production of rods with tight dimensional tolerances and minimal post-processing.
After crystal growth, the sapphire rods are cut to length using diamond saws and polished using ultra-fine abrasives to achieve optical-grade finishes and precise geometrical features like sharp or rounded tips, grooves, or step transitions.
-High Strength, High Rigidity, High Anti-Abrasion, High Anti-Heat, High AntiCorrosion Characteristics, and High Anti-Plasma Characteristics.
Because of these characteristics, Single Crystal Sapphire is widely used for precision mechanical parts.
-Stable Dielectric Constant, Very Low Dielectric Loss, Good Electrical Insulation.
Single Crystal Sapphire is used as a material for substrates in super-high frequency regions. It is also used as an insulation material and microwave window. Single Crystal Sapphire has become indispensable in the Electronics Industries.
-Excellent Light Transmission.
Single Crystal Sapphire is used for various kinds of vacuum equipment, windows in reaction furnaces, scanner windows, and caps for optical communication due to its excellent mechanical characteristics and heat resistance.
-Good Thermal Conductivity and High Heat Resistance.
Excellent thermal conductivity at low temperatures allows Single Crystal Sapphire as a transparent material to be used in many diverse fields requiring thermal conduction and heat radiation.
Size | Dia0.8mm to 50mm round, customize available |
Length | 10mm to 150mm, customize available |
Tolerance | +/-0.01 for Diameter and +/-0.1mm for length, customize available |
Surface Quality | 40/20 or 20/10 for end surface, 60/40 or 40/20 for cylinder |
Flatness | 1/4 lambda per inch @633nm, 1/8 lambda per inch @633nm |
Conicity | < 1/100 |
Chamfer | fine ground, commercial polished |
Material | synthetic sapphire monocrystal |
Sapphire customized rods are deployed in a wide variety of cutting-edge fields due to their unique combination of physical, thermal, and optical characteristics:
Q1: What makes sapphire rods superior to quartz, glass, or ceramic rods?
A1: Sapphire offers a unique combination of properties: extreme hardness (Mohs 9), high optical transmission from UV to mid-IR, excellent chemical resistance, and superior thermal conductivity. It outperforms quartz and ceramics in applications where optical clarity and structural integrity are both required.
Q2: Can the sapphire rod be customized in shape, length, or diameter?
A2: Yes. Sapphire rods can be customized in terms of outer diameter (typically 0.3 mm to 20 mm), length (up to 200 mm or more), and end-face geometry (flat, dome, conical, threaded). Surface finish, tolerance, and orientation (C-plane, A-plane, R-plane) can also be tailored.
Q3: Is the sapphire rod optically polished or just mechanically ground?
A3: Depending on the application, rods can be supplied in either mechanically ground or optically polished states. For optical or laser applications, we recommend double-side optical polishing with flatness better than λ/10.
Q4: What kind of environments can sapphire rods operate in?
A4: Sapphire rods can withstand high vacuum, cryogenic temperatures, corrosive acids and bases, high radiation fields, and temperatures up to 2000°C. They are ideally suited for extreme environments.
Q5: Are these rods compatible with infrared or ultraviolet systems?
A5: Absolutely. Sapphire transmits wavelengths from approximately 150 nm (UV) up to 5.5 µm (mid-IR), making it a popular choice for both IR and UV optical systems.
Q6: How long does it take to produce a custom sapphire rod?
A6: Standard production time for custom rods is typically 2–4 weeks depending on complexity, quantity, and finishing requirements. Rush services may be available.
Q7: What tolerances can you achieve?
A7: Dimensional tolerances of ±0.01 mm and surface roughness <5 nm Ra are achievable for high-precision applications.
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ZMSH specializes in high-tech development, production, and sales of special optical glass and new crystal materials. Our products serve optical electronics, consumer electronics, and the military. We offer Sapphire optical components, mobile phone lens covers, Ceramics, LT, Silicon Carbide SIC, Quartz, and semiconductor crystal wafers. With skilled expertise and cutting-edge equipment, we excel in non-standard product processing, aiming to be a leading optoelectronic materials high-tech enterprise.
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