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Read Moreitem no. :
CS-THG-GS002Port :
Any ports of Chinalead date :
5-7 daysMaterial : Silicon Carbide
Purity : 99%
Shape : Round
Original Country : Made in China
1. Has excellent thermal stability and high temperature resistance, and its melting point is as high as 2800℃.
2. Has high hardness, second only to diamond, and its wear resistance is much higher than other materials.
3. Has high strength at high temperatures, and its strength at high temperatures is much better than that of other materials.
4. Has excellent corrosion resistance, and its corrosion resistance is much better than that of other materials.
5. Non-toxic and odorless, and it has no environmental pollution.
6. Has excellent electrical performance, and its dielectric loss is very low.
7. Has excellent thermal shock resistance, and its thermal shock resistance is much better than that of other materials.
Sic Pipe Applications
Silicon Carbide pipes are used in a wide range of applications, such as chemical processing, food processing, mining, power generation and fuel cell production. Silicon Carbide pipes can be used in a variety of industries to deliver fluids and gasses at high temperatures, including:
1. Chemical Processing: Silicon Carbide pipes are used for transporting corrosive and reactive chemicals, as well as for transferring high-temperature fluids in chemical processing plants.
2. Food Processing: Silicon Carbide pipes are used in food processing plants to transport hot liquids, such as milk, and to transfer food products between process stages.
3.Mining: Silicon Carbide pipes are used in mining operations to transport abrasive slurries and corrosive gases.
4.Power Generation: Silicon Carbide pipes are used to transfer superheated steam and other high-temperature gases in power plants.
5.Fuel Cell Production: Silicon Carbide pipes are used to transport and store reactive gases in fuel cell production plants.
PROPERTIES
UNIT
VALUE
Color
/
Gray
Hardness
Mohs
9.5
Density
g/cm3
3
Thermal conductivity at
Btu/fthF @300℃
50
Compressive Strength
PSI
500,000
Flexural Strength
PSI
70,000
Max service temperature
℃
1600
Linear Coe. Of thermal Expansion (25C-600C)
10-6/℃
4
ITEM | OD / MM | ID / MM | Length / MM | Purity |
CS-THG-GS002 | 10 | 4 | customize | 99 |
CS-THG-GS003 | 12 | 6 | customize | 99 |
CS-THG-GS004 | 13 | 7 | customize | 99 |
CS-THG-GS005 | 16 | 12 | customize | 99 |
CS-THG-GS006 | 18 | 14 | customize | 99 |
CS-THG-GS007 | 22 | 10 | customize | 99 |
CS-THG-GS008 | 25 | 15 | customize | 99 |
CS-THG-GS009 | 28 | 16 | customize | 99 |
CS-THG-GS010 | 35 | 8 | customize | 99 |
CS-THG-GS011 | 60 | 8 | customize | 99 |
CS-THG-GS012 | 14 | 10.8 | customize | 99 |
Carbide Pipe Test Standards
1.The most commonly used standard for testing the performance of Silicon Carbide pipes is ASTM C1451.
2.This standard outlines the requirements for the composition, mechanical properties, physical properties, and electrical resistivity of Silicon Carbide pipes.
3.It also outlines the test procedures and acceptance criteria for these materials.
4.Other industry standards, such as ASTM C1452 and ASTM C1453, may be used as well.
5.Other testing standards for Silicon Carbide pipes include ISO 4206 and ISO 9001. ISO 4206 outlines the requirements for the mechanical and physical properties of Silicon Carbide pipes.
6.ISO 9001 outlines the requirements for the quality assurance of Silicon Carbide pipes, including test methods and acceptance criteria.
Ceramic insulation tube Use/Maintenance Methods
(1) acid and alkali resistance: in acid resistance, alkali resistance, oxidation resistance, silicon carbide due to the protective film of silicon dioxide, strong acid resistance, alkaline resistance is slightly poor.
(2) oxidation resistance: When silicon carbide material is heated to 1300℃ in the air, the surface of silicon carbide crystal begins to form a protective layer of silicon dioxide. With the thickening of the protective layer, the continuous oxidation of the internal silicon carbide is prevented, so that the silicon carbide has better oxidation resistance.
(3)When the temperature reaches 1900K(1627℃) above, the protective film of silicon dioxide begins to be destroyed, and the oxidation of silicon carbide is intensified, so 1900K is the high working temperature of silicon carbide in the atmosphere containing oxidant.
Thermocouple Protection Pipe Packing & Shipping
1. 5-50 pieces in a wooden box (fully enclosed, safe, and secure)
2.800kg~1000kg /wooden box.
3. Anti-collision protection such as foam board The 4.3-layer wood composite panel is sturdy, impact resistant, drop resistant.
4.Professional car transport to various ports in China, then loaded by professional shipping company.
5. Competitive sea freight and short transit time.
Pipe Requirements for Customization
Conventional product specifications: outside diameter, inside diameter, length, purity profiled product specifications: Slot size, extension diameter, height details:
1: required temperature resistance ;
2: product use ;
3: Test materials can provide customers with the most favorable and practical products according to the use scenario.
Why Choose Us
As a professional industrial ceramic supplier, we have a series of advantages that guarantee our market share in the international trade market.
1.Reliable quality control, complete specifications, support customization of non-standard products.
2.Professional and committed service team.
3.Multiple protection of packaging, secure and reliable.
4.Highly efficient delivery channel, safe and rest-assured.
FAQ
1.Q: What are the advantages of using a Silicon Carbide pipe?
A: Silicon Carbide pipes offer a number of advantages over traditional materials. They are highly resistant to corrosion and heat, making them ideal for use in high-temperature and corrosive environments. They also require less maintenance than traditional materials, which can save time and money in the long run. Additionally, Silicon Carbide pipes are lightweight and easy to install, making them a preferred choice for many applications.
2.Q: How is Silicon Carbide pipe made?
A: Silicon Carbide pipes are made by melting silicon and carbon together, then allowing the mixture to cool and solidify into a pipe shape. The process involves carefully controlling the temperature and pressure to ensure the proper composition of the material. The finished product is then inspected for quality and any imperfections are eliminated.
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