Customizable Alumina Long Light Plate – High Flatness Precision
Ceramic Substrate
Product Overview
Alumina long light plate is a precision ceramic plate manufactured
from high-purity alumina (Al₂O₃ content ≥99%) through advanced
forming processes including dry pressing or isostatic pressing,
followed by high-temperature sintering. The surface undergoes
precision grinding and polishing to achieve a mirror-like glossy
finish. Characterized by exceptional hardness, density, and
dimensional stability, this product can be customized in various
lengths, widths, and thicknesses to meet specific application
requirements. It is extensively used in high-precision
manufacturing sectors including semiconductor equipment, laser
devices, and medical instruments.
Core Applications
| Application Field | Specific Uses | Core Advantages |
|---|
| Semiconductor/Electronics | Lithography machine substrates, wafer handling platforms, packaging
mold backing plates | High flatness ensures processing precision, excellent electrical
insulation performance |
| Laser/Optics | Laser equipment bases, optical platforms, mirror brackets | Good thermal stability, not easily deformed |
| Medical/Biological | Medical testing instrument structural components, sterile operating
table panels | Corrosion resistant, easy to clean, pollution-free |
| Mechanical/Mold | High-temperature mold backing plates, wear-resistant slide rails,
fixture bases | High hardness wear resistance, long service life |
Core Advantages
- Ultra-High Hardness, Wear and Scratch Resistant: Alumina ceramic hardness reaches HRA 84-92, Mohs hardness 9,
second only to diamond. The polished surface is dense and smooth,
resistant to scratches during long-term use.
- Mirror Finish, Consistent Flatness: Precision grinding and polishing achieve surface roughness Ra ≤
0.1μm with high flatness meeting strict equipment requirements.
- Size Customization, Flexible Matching: Customizable according to drawings with lengths up to 1650mm and
thickness from 1mm to 240mm.
- Insulation and Voltage Resistance, Stable Performance: Excellent electrical insulation properties, high withstand
voltage, and volume resistivity suitable for high-voltage
environments.
- Temperature and Corrosion Resistant, Strong Adaptability: Stable performance in high-temperature environments, resistant to
acids and alkalis (except hydrofluoric acid).
- Good Rigidity, Not Easily Deformed: High elastic modulus, flexural strength up to 300-350MPa, strong
load-bearing capacity with shape stability.
Specification Parameters
| Parameter | Typical Value/Range | Customization Notes |
|---|
| Alumina Content | 99% - 99.8% | Purity grade selectable according to requirements |
| Hardness | HRA 84 - 92 | Related to purity and sintering process |
| Bulk Density | 3.81 - 3.93 g/cm³ | High density ensures performance |
| Flexural Strength | 300 - 350 MPa | Strong load-bearing capacity |
| Surface Roughness | Ra ≤ 0.1μm (customizable) | Mirror polishing effect |
| Flatness | ≤ 0.05mm/100mm (customizable) | High precision processing guarantee |
| Dimensions | Length: ≤1650mm; Width: ≤300mm; Thickness: 1-240mm | Dimensions customizable, consult for larger specifications |
| Operating Temperature | ≤ 1500℃ (long-term) | Excellent high-temperature performance |
Manufacturing Process
- Powder Preparation: Selection of high-purity alumina powder with sintering aids,
processed through ball milling and spray granulation.
- Forming: Dry pressing or isostatic pressing based on customized dimensions
to ensure uniform green body density.
- High-Temperature Sintering: Atmosphere sintering in high-temperature kilns up to 1600℃ for
densification and mechanical properties.
- Precision Grinding: Surface grinding for rough and fine grinding to control thickness
tolerance and flatness.
- Mirror Polishing: Multiple polishing processes to achieve mirror finish with
required roughness.
- Dimension Finishing: Precision machining including cutting, hole opening, chamfering
per customer drawings.
- Quality Inspection: Comprehensive dimensional measurement, flatness inspection, and
appearance checking.
Operating Instructions
- Installation Notes: Avoid local stress or impact during installation. Use soft gaskets
at contact surfaces and tighten evenly.
- Cleaning and Maintenance: Use alcohol or neutral cleaners for daily cleaning. Avoid strong
corrosive solvents like hydrofluoric acid.
- Usage Environment: Avoid rapid temperature changes to prevent thermal shock cracking.
- Storage Requirements: Store flat, avoid high stacking. Maintain dry and clean storage
environment.
After-Sales Service
- Customization Service: Full-process customization from drawings to finished products with
free technical consultation.
- Warranty Commitment: 12-month warranty from delivery date with free repair or
replacement for quality issues.
- Technical Support: 7x24 hour professional technical team assistance.
- Fast Delivery: Standard specifications in stock, customized products delivered
per contract cycle.
Frequently Asked Questions
Q: Can alumina long light plates be customized to non-standard
sizes?
A: Absolutely. We have mature customization capabilities and can
produce products of different lengths, widths, and thicknesses
according to customer requirements, with maximum length up to
1650mm. Please provide drawings or technical requirements for
consultation.
Q: How high a flatness can the light plate surface achieve?
A: Through precision grinding and polishing, we can achieve surface
roughness Ra ≤ 0.1μm and flatness up to 0.05mm/100mm. Specific
precision can be customized according to your equipment
requirements.
Q: Is alumina ceramic plate brittle? Is it easy to break?
A: Alumina ceramic is a hard and brittle material with high
hardness but relatively lower impact resistance compared to metals.
However, under normal use, its flexural strength of 300-350MPa is
sufficient for load-bearing requirements. Avoid local impact and
hard object collision during use.
Q: Can the product be processed with holes or steps?
A: Yes. We have mature ceramic precision machining capabilities and
can perform complex processing including hole opening, grooving,
chamfering, and stepping according to drawing requirements to meet
your assembly needs.