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Ceramic laser reflector
Alumina Ceramic Laser Reflector Alumina Ceramic Laser Reflector Alumina Ceramic Laser Reflector Alumina Ceramic Laser Reflector Alumina Ceramic Laser Reflector Alumina Ceramic Laser Reflector

Alumina Ceramic Laser Reflector

CS CERAMIC is committed to delivering high-quality alumina ceramic laser reflector tailored to your exact specifications.
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Alumina Ceramic Laser Reflector


Descriptions

Reflector is an important part of the laser, used to bounce the laser beam back to the medium for many times, so that the laser has an amplification effect, to generate laser beam with high energy and high monochromaticity and then emits out. The reflector can achieve a higher reflectivity to a specified wavelenght beam by coating technology.


Advantages

1. High Reflectivity: Alumina ceramic reflectors exhibit excellent reflectivity across a wide range of wavelengths, including visible light, infrared, and ultraviolet.

2. Thermal Stability: One of the most significant advantages of alumina ceramic reflectors is their exceptional thermal stability.

3. Mechanical Strength: Alumina ceramic is renowned for its high mechanical strength and hardness.

4. Chemical Inertness: Alumina ceramic is chemically inert and resistant to corrosion, making ceramic reflectors suitable for use in harsh chemical environments or when exposed to corrosive substances. This resistance ensures the reflectors' longevity and stability in challenging operating conditions.

5. Abrasion Resistance: Due to their hardness and abrasion resistance, alumina ceramic reflectors maintain their optical performance even when subjected to abrasive materials or harsh environmental conditions.

6. Uniformity and Precision: Alumina ceramic reflectors can be manufactured with precise geometries and surface finishes, ensuring uniform light reflection and predictable optical performance.

7. Customizability: Alumina ceramic reflectors can be customized to meet specific application requirements, including various shapes, sizes, and surface coatings. This flexibility allows for tailored solutions to optimize light reflection and enhance overall system performance.

8. Cost-Effectiveness: Despite their advanced properties, alumina ceramic reflectors can offer cost-effective solutions compared to alternative materials over the long term.


Size details

Item No. Item length (mm) Hole height (mm) Hole width (mm)
CS-YHL-FS001 71.5 / /
CS-YHL-FS002 92 / /
CS-YHL-FS003 101 14.5 30
CS-YHL-FS004 100 17 45
CS-YHL-FS005 130 17 45
CS-YHL-FS006 150 17 45
CS-YHL-FS007 160 17 45
CS-YHL-FS008 170 17 45
CS-YHL-FS009 100 16 28
CS-YHL-FS010 100 14 42
CS-YHL-FS050 64 8 16.5
CS-YHL-FS051 89 9.3 19.3
CS-YHL-FS052 97 12 22
CS-YHL-FS053 97 15 27.7
CS-YHL-FS054 97 12 22
CS-YHL-FS055 100 14.4 28.4
CS-YHL-FS056 100 17 32
CS-YHL-FS057 100 18 34
CS-YHL-FS058 115 12 22
CS-YHL-FS059 117 12 22
CS-YHL-FS060 120 14.4 28.4
CS-YHL-FS061 120 16 43

Requirements for Custom Design

1. The type of pump chamber, single lamp single rod pump chamber or double lamp single rod pump chamber

2. Size of reflector (drawing shall be provided) and specification requirements.



Applications

1. Optical Systems: Alumina ceramic reflectors are used in optical systems such as telescopes, microscopes, spectrometers, and cameras to efficiently reflect and redirect light.

2. Laser Technologies: In laser systems, alumina ceramic reflectors are employed as mirrors and beam splitters to control and manipulate laser beams.

3. Solar Concentrators: In solar energy applications, alumina ceramic reflectors are used in solar concentrators to redirect sunlight onto photovoltaic cells or thermal receivers.

4. Medical Devices: Alumina ceramic reflectors are employed in medical devices such as surgical lasers, diagnostic instruments, and biomedical imaging systems.

5. Industrial Processes: In industrial applications, alumina ceramic reflectors are utilized in equipment such as infrared heaters, furnace systems, and thermal processing chambers.

6. Communication Systems: Alumina ceramic reflectors are used in communication systems, including optical fibers, laser-based communication networks, and satellite communications.


Parameters of Alumina Ceramic

Item Test Condition 95% Al2O3 99% Al2O3 99.5% Al2O3
Physical properties Density g/cm3 >3.6 3.89 3.96
Moisture absorption % 0 0 0
Mechanical properties ROHS Hardness ≥85 ≥89 ≥89
Flexural strength psiX103 20℃ 358 550 550
Compressive strength psiX103 20℃ 2068(300) 2600(377) 2600(377)
Fracture toughness Mpa.m3/2 K(l c) 4.3 5.6 6
Thermal properties Maximum use temperature 1450 1600 1650
Thermal expansion coefficient 1X10-6/℃ (25-1000℃) 7.6 7.9 8.2
Thermal shock resistance Tc 250 200 200
Thermal conductivity w/mok 20℃ 16 30 30.4
Electrical properties Volume resistivity Ohm/cm2 100℃ >1013 >1014 >1014
Dielectric breakdown strength KV/mm 8.7(220) 8.7(220) 8.7(220)
Dielectric constant (E) 1MHz25℃ 9 9.7 9.7
Dielectric constant (100MHz) (E) 9.5



FAQ

Q1. What are alumina ceramic reflectors?

Alumina ceramic reflectors are precision-engineered components made from alumina ceramic material.

Q2. How do alumina ceramic reflectors compare to other reflective materials?

Compared to other reflective materials, alumina ceramic reflectors offer superior optical properties, thermal stability, and durability.

Q3. How durable are alumina ceramic reflectors?

Alumina ceramic reflectors are highly durable due to their high mechanical strength, hardness, and resistance to abrasion.

Q4. Can alumina ceramic reflectors be customized?

Yes, alumina ceramic reflectors can be customized to meet specific application requirements, including various shapes, sizes, and surface coatings.


Quality testing standards

1. Visual Inspection: Start by visually inspecting the ceramic reflector for any visible defects, such as cracks, chips, scratches, or surface irregularities. Use proper lighting and magnification tools if necessary to identify any imperfections.

2. Dimensional Inspection: Measure the dimensions of the ceramic reflector using precision calipers or other suitable measuring instruments.

3. Surface Finish Inspection: Evaluate the surface finish of the ceramic reflector for smoothness and uniformity.

4. Optical Reflectivity Measurement: Use an optical reflectometer or spectrophotometer to measure the reflectivity of the ceramic surface across the desired wavelength range. Verify that the reflector exhibits the specified reflectivity characteristics for its intended application.

5. Adherence to Specifications: Compare the inspection results to the specified requirements and acceptance criteria for the ceramic reflector. Ensure that the reflector meets all specified performance, dimensional, and quality standards.



Packing way





Production Process





Why Choose us?

1. We supply personalized and customized services to contact your personal needs.

2. We are experienced professionals with a good record of success.

3. We provide superior client service and promptly respond to all inquiries.

4. We provide militant prices and strive to ensure that your funds receive the best value.

5. We use the latest technologies and tools to ensure that your project is completed to the highest standards.

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    Alumina Ceramic Laser Reflector CS-YHL-FS001
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