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High temperature resistant sealant product characteristics: This product is a one-component, high-temperature resistant sealant, unique formula technology added special additives, mixed modulation of high temperature resistant inorganic structural adhesive, continuous use of high temperature resistance 538, short-term high temperature resistance 550, low temperature resistance -18It has the special effect of superior fire retardant and flame retardant, and the effect of anti-displacement and high-strength permanent bonding is remarkable.
North America's unique formula technology, the world's first; It has excellent high temperature resistance and fire resistance, and will not fall or shrink due to cold and hot changes.
Applications: 1. Repair of high-temperature industrial boilers and industrial electrode furnaces, permanent repair and filling cracks at high temperatures such as fireplaces, kilns and chimneys.
2. Bonding of high-temperature instruments, electronic measuring cells, high-temperature metal parts and sealing of high-temperature pipelines.
3. Production bonding and sealing of industrial products such as automobile lamps, sensors, high-temperature ovens, electric irons, rice cookers, electric fryers, heating pipes, high-temperature air filters, steam irons, etc.
4. The sealing of electric heating pipe fittings and the fixing of ceramic heating elements.
5. Adhesive sealing of automobile and motorcycle exhaust system and high temperature system equipment.
6. Adhesive sealing of oven and oven system equipment.
Physical Indicators: Specific Gravity:; Tensile Strength:
8mpa;Properties: paste; Shear Strength:; Shore hardness:
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6000 High Temperature Resistant Materials Are:
1. Refractory materials, refractory materials include tungsten, chromium, titanium and other refractory metals and boride and other rare earth metals.
Capable of temperatures above 1580 °C.
2. Heat-resistant materials, such as rocket structural elements and ignition electrodes, can be used as high-temperature resistant film insulating materials.
and high-temperature resistant coatings, etc.
The temperature resistance characteristics of foam glue are:
1. It is not resistant to high temperatures.
Foam glue is not resistant to high temperature, foam glue, also known as sponge rubber, is a non-corrosive foam model, belongs to a rubber product, so foam glue can not withstand high temperatures, and will also show a burning state at high temperatures, the maximum withstand temperature is only 150 degrees.
2. Material characteristics.
Foam glue is a vulcanized rubber with a porous structure.
Material, so it has the effect of shockproof, sound insulation, etc., and the foam glue is lighter, has strong corrosion resistance, and is mostly used in industrial production, such as automobiles and aircraft manufacturing, and is also widely used in thermal insulation and shockproof materials.
3. Removal method.
Foam glue adheres to clothes using banana water.
To wash, first remove part of the foam glue on the clothes, then apply banana water to the foam glue of the clothes, then use a brush to wipe slowly, and rinse with water after the foam glue comes off.
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There is no material that can withstand high temperatures of 6000. Refractory materials are used in various fields of the national economy such as steel, non-ferrous metals, glass, cement, ceramics, petrochemicals, machinery, boilers, light industry, electric power, military industry, etc., and are indispensable basic materials to ensure the production and operation of the above-mentioned industries and technological development, and play an irreplaceable and important role in the development of high-temperature industrial production.
Precautions for high-temperature resistant materialsAmong the high-temperature thermal insulation materials, when the temperature exceeds 1000, the thermal insulation performance of ceramic fibers is relatively good, including crystalline fibers, zirconium-containing fibers, high-alumina fibers, etc.; When the temperature is less than 1000, the thermal insulation performance of Good's energy-saving nano-microporous thermal insulation material is relatively good, and the thermal conductivity is as low as the hot surface).
Nano microporous thermal insulation material is currently known to be the best high-temperature thermal insulation material, Goode energy-saving nano microporous thermal insulation material using nano silica and infrared barrier material, thermal insulation performance is even 3 4 times that of traditional ceramic fiber thermal insulation materials.
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Stellite 6B cobalt-based superalloy.
The alloy is a cobalt-based alloy that is used in abrasive environments, anti-seizure, anti-wear, anti-friction. The alloy has a very low coefficient of friction and can slip with other metals, and in most cases does not wear out. Even in applications where lubricants are not used, or where lubricants cannot be used, the alloy minimizes seizure and wear.
The wear resistance of the alloy is inherent, and it does not rely on cold work or heat treatment, so it also reduces the heat treatment effort and the cost of subsequent processing.
The alloy is resistant to cavitation, impact, thermal shock and a variety of corrosive media. In the red-hot state, the alloy retains a high hardness (it can be restored to its original hardness after cooling).In environments where there is both wear and corrosion, alloys are very practical.
The applied alloy can be used in the manufacture of valve parts, pump plungers, steam engine corrosion covers, high temperature bearings, valve stems, food processing equipment, needle valves, hot extrusion dies, forming abrasives, etc.
Mechanical properties. Ultimate tensile strength 145ksi
Yield strength 90ksi
Elongation 12%.
Hardness Rockwell C36
Produced by forging method, the carbide network is broken, which has better plasticity and improved corrosion resistance; Good resistance to mechanical impact; It can be used as the sealing surface material of steam valve and chemical valve; sunken roller sleeve; parts and components that come into contact with hot steel; mold materials;
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G-218 high temperature wear-resistant tortoiseshell mesh composite pipe.
Features: This product is a composite pipe with metal as the matrix, inner welded tortoiseshell mesh as the skeleton, and corundum high wear-resistant lining material as the wear-resistant layer. It is especially suitable for the manufacture of large-diameter high-temperature and wear-resistant pipes.
It is mainly used in pulverized coal transportation in coal-fired power plants and material transportation systems for petrochemical, metallurgy, mining and other materials.
High temperature resistance, wear resistance, corrosion resistance. Strong thermal shock resistance and good machinability. There is no effect on the operating temperature between -50 degrees and 1500 degrees Celsius.
Material: 1Cr13 thick can be made according to user requirements) 1Cr18Ni9 thick can be made according to user requirements).
The thickness of ordinary carbon steel can be made according to user requirements).
1. Hexagonal assembly: no claws on the inner wall.
After the steel bar is stamped and formed, all the corners are unequal to cracks, and the bending radius r is less than or equal to 2mm
2. The size of each part: meet the requirements of the drawings All knots in the assembly should be firm and not loose.
3. The net height is 20mm Single weight: 16kg m2 25mm 20kg m2 The wrong edge of the two adjacent steel belts is not larger.
4. Knot form: opposite knot, the non-parallelism in the assembly per square meter is less than 3mm
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What are the 6000 high-temperature resistant materials?
Kiss! You're glad to answer your <>
So far, no high-temperature materials have been found that can withstand 6000 °C. At present, the high-temperature resistant coating technology includes organic series and inorganic series, and the carrier of the organic series of high-temperature resistant coatings is organic silicon, and the maximum temperature cannot exceed 400. The temperature of the inorganic series of high-temperature resistant coatings is between 1000 and 1500 °C.
At present, the most high-temperature resistant material is hafnium alloy, which has a melting point of 4215 at standard atmospheric pressure. 6000 High Temperature Resistant MaterialsHigh Temperature Resistant Materials include refractory materials and heat-resistant materials. Refractory materials include refractory metals such as tungsten, chromium, and titanium, and rare earth metals such as boride, which can withstand temperatures above 1580.
Heat-resistant materials include rocket structural elements and ignition electrodes, etc., which can be used as high-temperature film insulation materials and high-temperature resistant coatings. Is foam glue resistant to high temperaturesFoam glue is not resistant to high temperatures, foam glue belongs to a kind of rubber, which can withstand high temperatures of up to 150 degrees, foam glue, also known as sponge rubber, is a vulcanized rubber with a porous structure, which is lighter, and softer, mostly used for sound insulation, shockproof materials, if foam glue is attached to the clothes, you need to use banana water to clean it. Can foam glue withstand high temperature 1, not resistant to high temperature foam glue is not resistant to high temperature, foam glue, also known as sponge rubber, is a non-corrosive foam model, belongs to a rubber product, so foam glue can not withstand high temperature, and at high temperature, it will also present a burning state, the maximum withstand temperature is only 150 degrees.
Hope mine can help you <>
Do you have any other questions?
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What are the 6000 high-temperature resistant materials?
Hello dear, about your question 6000 What are the high-temperature resistant materials? What the teacher is here for you is: at present, the world's most high-temperature resistant material is hafnium alloy, that is, the compound of hafnium pentacarbide tetratantalum hafnium (Ta4HFC5), under the standard atmospheric pressure, the melting point is 4215, which is the highest melting point in the world today.
Even then, it will melt at a high temperature of 6000 degrees. The only thing that can withstand 6,000 degrees of heat is the field. A field is a special kind of substance, which is another form of material existence other than the physical object.
Physical objects are made up of particles, but fields are not. The field and the physical object go hand in hand, and the field also has energy and mass. The fields that are common in nature are electromagnetic fields and gravitational fields.
As you may know, during a nuclear reaction, the temperature of the reactants is very high, usually up to hundreds of millions of degrees. Nuclear fusion reactions carried out inside the Sun are constrained by gravity (gravitational constrainment), which is clearly not available on Earth. No container on Earth can withstand such high temperatures, so there is no other way around.
For this reason, scientists have come up with a method called magnetic confinement. During the nuclear reaction, the matter is in a plasma state, which provides the convenience of magnetic confinement. The magnet force in nature is too weak, and it is obviously not suitable for this work.
Fortunately, we have discovered superconductors, which can be used to generate super-strong magnetic fields. We use superconductors to make a cage, and when the electricity is applied, a super magnetic field can be formed, and the nuclear reactants can be placed in it to avoid direct contact with the container, so as not to damage the container. Tokamaks are cycloids that use magnetic confinement to achieve controlled nuclear fusion reactions.
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There is no substance known to mankind that can withstand temperatures of 6000 °.
At present, the world's high-temperature resistant material is hafnium alloy, that is, the compound of hafnium, five carbide tetratantalum hafnium (Ta4HFC5), at standard atmospheric pressure, the melting point is 4215, it is the highest melting point in the world today. Even then, it will melt at a high temperature of 6000 degrees.
Matter is usually made up of molecules or atoms. From a chemical point of view, the essence of melting is the breaking of chemical bonds, and different substances have different melting points and require different amounts of heat to melt.
The temperature at the Earth's core is more than 6,000 degrees Celsius, but its interior is still a solid metal, mainly composed of iron and nickel. It is known that at standard atmospheric pressure, iron has a melting point of 1538 degrees Celsius and a boiling point of 2862 degrees Celsius.
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As of March 12, 2021, no materials have been found to be resistant to 6000 high temperatures.
There are two series of high-temperature resistant coating early eggplant technology, organic series and inorganic series, of which most of the organic series of high-temperature resistant coatings are based on organic silicon, and their maximum temperature can not exceed 400 degrees Celsius, and carbonization or softening will occur if the temperature exceeds this temperature, while the inorganic series of high-temperature resistant coatings can withstand the high temperature of at least 1000 degrees Celsius in Qiaochun, and the coating can withstand 1500 or even higher temperatures.
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