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TGA al2o3 Tube Alumina Ceramic Tubes
Laboratory TGA Alumina Ceramic Pipes Alumina Ceramic Tubes Laboratory TGA Alumina Ceramic Pipes Alumina Ceramic Tubes Laboratory TGA Alumina Ceramic Pipes Alumina Ceramic Tubes Laboratory TGA Alumina Ceramic Pipes Alumina Ceramic Tubes Laboratory TGA Alumina Ceramic Pipes Alumina Ceramic Tubes

Laboratory TGA Alumina Ceramic Pipes Alumina Ceramic Tubes

Laboratory TGA alumina ceramic tubes are high-quality, durable tubes designed for use in laboratory Thermal Gravimetric Analysis (TGA) systems.Available in a variety of sizes and shapes.

  • item no. :

    CS-TGT-163
  • Color :

    White
    • Purity Available

      99.5% 99.7% 99%

    • Material : Alumina ceramic

    • Length : 5mm--1250mm

    • Shape : One hole

    • Size : OEM

  • description

Laboratory TGA Alumina Pipes Alumina Ceramic Tubes


Advantages

1. Alumina tubes with low coefficient of thermal expansion of 10.3 x 10-6/K,  ideal for use thermal stability in applications.

2. Alumina tubes have a low thermal conductivity of approximately 25 W/mK 

3. Alumina tubes with high tensile strength and a modulus of elasticity of up to 200 GPa.

4. Alumina tubes resistance to corrosion and chemical attack, making them ideal for use in harsh environments. 

5. Alumina tubes are non-toxic and do not release any hazardous substances, making them ideal for use in medical and food-grade applications.

6. High temperature resistance, 1600℃ in long use,1800℃ in short use (Al2O3≥99%).



Product description

1. Laboratory TGA alumina ceramic tubes are high-quality, durable tubes designed for use in laboratory Thermal Gravimetric Analysis (TGA) systems.

2. These tubes are made of robust alumina ceramic materials that can withstand extreme temperatures and provide reliable results.

3. They are lightweight, easy to handle, and come in a variety of sizes to meet the needs of any laboratory.



Size details





Alumina Tube (One side open)
Item NO.
Outer diameter*
Inner diameter
(mm)
Length & Purity Item NO.
Outer diameter*
Inner diameter
(mm)
Length & Purity Item NO.
Outer diameter*
Inner diameter
(mm)
Length & Purity
CS-AT-047 2.0*1.0
L≤1500mm
Al2O3=99.5%
CS-AT-066 19.05*14.3
L≤2500mm
Al2O3=95%
Al2O3=99%
Al2O3=99.5%
CS-AT-10240 32*26
20≤L≤2000
Al2O3=99%
CS-AT-048 3.0*2.0 CS-AT-061 20.0*15.0 CS-AT-10241 32*27
CS-AT-049 4.0*2.5 CS-AT-062 22.23*15.88 CS-AT-10242 33*28
CS-AT-050 5.0*3.0 CS-AT-063 23.83*17.48 CS-AT-10243 34*18
CS-AT-051 6.0*3.5 CS-AT-064 25*18.8 CS-AT-10244 34*22
CS-AT-052 6.35*3.96
L≤2500mm
Al2O3=95%
Al2O3=99%
Al2O3=99.5%
CS-AT-065 25.4*19.05 CS-AT-10245 34*23
CS-AT-053 7.95*4.78 CS-AT-066 26.0*20.0 CS-AT-10246 34*30
CS-AT-054 8.0*5.5 CS-AT-067 28.0*22.0 CS-AT-10247 35*27
CS-AT-055 9.53*6.35 CS-AT-068 30.0*23.0 CS-AT-10248 35*29.5
CS-AT-056 10.0*6.0 CS-AT-10230 30*15
20≤L≤2000
Al2O3=99%
CS-AT-10249 36*30
CS-AT-057 10.0*7.0 CS-AT-10231 30*20 CS-AT-10250 36*31
CS-AT-058 11.13*7.95 CS-AT-10232 30*21 CS-AT-10251 37*29
CS-AT-059 12.0*8.0 CS-AT-10233 30*22 CS-AT-10252 37*31.5
CS-AT-060 12.7*8.9 CS-AT-10234 30*24 CS-AT-10253 37*32
CS-AT-061 14.0*10.0 CS-AT-10235 30*26 CS-AT-10254 38*31
CS-AT-062 15.0*10.0 CS-AT-10236 31*23 CS-AT-10255 45*38.5
CS-AT-063 15.0*11.0 CS-AT-10237 31*25 CS-AT-10256 46*38.5
CS-AT-064 16.0*12.0 CS-AT-10238 31*26 CS-AT-10257 60*30 20≤L≤1000
CS-AT-065 17.48*12.7 CS-AT-10239 31*27
OEM/ODM is acceptable. Your goods will be produced exactly according to your drawings or inquiry
More sizes click here.



Applications

1. They can be used in laboratory exhaust systems to reduce noise levels and improve ventilation efficiency.

2. Laboratory TGA alumina tubes can be used as a substrate for microelectronic devices, such as semiconductors, due to their low thermal expansion and high electrical insulation properties.

3. They can be used in laboratory burners to increase the efficiency of the combustion process and reduce the risk of fire.

4. They can be used as a support structure for laboratory experiments, such as chemical reactions, due to their high temperature resistance and stability.

5. Laboratory TGA ceramic tubes can be used as a protective barrier against corrosive substances in laboratory environments.



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




FAQs


Q1. What information should we supply to get a quote?

Please offer the specification of ceramic tube for furnace, such as shape, dimension, quantity, application etc.


Q2: What are the benefits of using laboratory TGA alumina ceramic tubes?

Laboratory TGA alumina ceramic tubes offer high temperature accuracy and repeatability, as well as excellent thermal shock resistance. They are also durable, non-reactive, and can be used to measure a wide range of temperatures.


Q3: How are laboratory TGA alumina ceramic tubes used?

Laboratory TGA alumina ceramic tubes are typically used in a TGA experiment to measure the weight change of a sample when exposed to different temperatures over time. The sample is placed inside the tube, which is then sealed and heated. The weight change is then measured and recorded in the laboratory’s data log.


Q4: What are the advantages of laboratory TGA alumina ceramic tubes over other laboratory TGA materials?

Laboratory TGA alumina ceramic tubes offer a number of advantages over other TGA materials, including higher temperature accuracy and repeatability, excellent thermal shock resistance, and durability. They are also non-reactive, making them ideal for use in sensitive experiments.



How to clean alumina tube

1. Begin by vacuuming the outside of the tube to remove any debris or dust. 

2. Use a mild detergent and scrub the tube with a soft cloth or brush.

3. Use a mild abrasive or a toothbrush to scrub the inside of the tube.

4. Rinse the inside and outside of the tube with warm water and a soft cloth. 

5. Use a clean, lint-free cloth to dry it.



Quality testing standards

1. Visual inspection of the tube for any signs of damage or irregularities.

2. Measurement of the length, width, and thickness of the tube to check for accuracy.
3. Checking for any leaks or pinhole defects in the tube.
4. Testing for proper adhesion of the end cap to the tube.
5. Verification of the material and chemical composition of the tube.



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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