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显示标签为“Refractory Products”的博文。显示所有博文

2017年11月10日星期五

The impact of sintering temperature and holding time for refractory materials

refractory
refractory
Sintering temperature and holding time is an important external sintering refractory material. With the increase of temperature, the vapor pressure of the material increases, the diffusion coefficient increases, and the viscosity of the liquid phase decreases, thus facilitating the process of material transfer such as evaporation-aggregation, diffusion of ions and vacancies, particle rearrangement, viscous and plastic flow. So that sintering speed. Prolonging the sintering time can also promote the completion of sintering. However, in the latter stage of sintering, unreasonably prolonging the sintering time can sometimes aggravate the secondary recrystallization, but can not obtain a sufficiently dense product.
The firing temperature of refractory products should be controlled within the sintering temperature range, at this temperature should maintain the appropriate sintering time to complete the sintering, if continue to increase the temperature deformation of the body.

The impact of the atmosphere:
Atmosphere directly affects the firing effect and product quality. Burning atmosphere can be divided into general oxidizing atmosphere, neutral atmosphere and reducing atmosphere. Different materials for the green body should choose a different atmosphere to ensure the physical and chemical reactions in the body smoothly. At the end of sintering, the atmosphere (the type of gas in the pores) has an influence on the sintering when the pores are closed. Study of Al2O3 sintering found that when the gas solubility in the lattice is small and slow diffusion, the isolated pores is not easy to discharge from the body. For example, Al2O3 is sintered in argon and air. On the contrary, when the diffusion rate of gas in the lattice is fast enough, the atmosphere has no effect on the sintering end. If the atmosphere to control the defect structure has a certain role, you can speed up the proliferation and conducive to sintering.

It must be pointed out that the influence of firing atmosphere depends on the material composition, sintering conditions, the type and amount of additives, and other factors. Therefore, specific analysis should be conducted for different temperatures.

In the actual sintering process, the impact of the above factors are interrelated and mutually restrictive. The factors that play a major role under different conditions may be different.


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2017年11月6日星期一

Cement rotary kiln refractory materials magnesium aluminum spinel brick

refractory materials
refractory materials
Magnesia-alumina spinel brick is high purity magnesia and pre-synthesized magnesium spinel as the main 6 material, the reasonable grading, high pressure molding, high temperature firing obtained products. Its characteristics are high, high strength, corrosion resistance, low coefficient of thermal expansion, thermal shock resistance, is the ideal transition from cement transition zone refractory materials for sale.
Magnesia-alumina spinel production of ingredients in the amount of magnesium aluminate spinel is not more good female, with the increase in the amount of spinel thermal shock resistance becomes better, but due to mismatch expansion will make g degrees (especially anti-fracture Strength) to Alz05 as the standard, the product A120: should not be large; 15% -20%, preferably 10% -18%, which is consistent with the experimental data of magnesia aluminum brick.
Magnesium aluminum tip stone brick main impurity is so z, should not exceed 1.5%.
Over the past twenty years, people have been seeking to replace magnesia-chrome bricks in addition to six valence-polluting technology, first of all, looking to the periclase spinel brick. The initial report was optimistic but gradually came the different message from the cement plant: "The kiln skin is not found." The eutectic temperature of the original spinel brick 4 cement is close to (slightly lower) the firing temperature of the cement. This is fatal, so spinel brick kiln lining in our cement kiln back to 15 ~ 20m to reach the transition zone, occupy the original high-alumina brick or ordinary magnesia-chrome brick position.
The academic community agreed that re20J affect the product's resistance to atmospheric changes, spinel brick in the transition zone is better than magnesia-chrome brick, one of the explanations is k205 content Below the M-K line, however, the addition of 4% re20J to spinel bricks improves the brittleness of bricks. When the expansion rate of only 113%, flexural strength 12MPa, will be. 05P kiln 38-40m area use 8 months wear 30mm, and commonly used spinel brick wear amount is 80 "120mm, and said that this high-speed rail bricks for burning belt can hang the kiln skin.
Spinel thermal shock resistance, anti-B 'alkali corrosion, acid gas erosion resistance, anti-atmospheric ability to change are better than ordinary magnesia chrome brick, but on the cement rotary kiln transition belt and discharge belt with refractory brick suppliers, Should also have a small thermal conductivity, good wear resistance, anti-shear fracture capacity, which determines the availability of spinel brick.
Wear resistance is poor, in the 2500t kiln can run stably for more than 8 months Feng Mao Wei angle.
China periclase spinel brick ingredients, the use of sintered high purity magnesia, mid-range magnesia and synthetic spinel sand (5i020 6% -20%), thermal shock resistance indicators are generally more than 10 times, the best of 2D Times or more. However, the high temperature flexural strength (1400Y, o.5h), roughly 2-3MPa, most products less than 3MPa, which is spinel brick to be improved technology. There are no national standards for the sharp stone blocks used in cement kilns, and all the manufacturing enterprises use each other for reference to form the spinel brick used in China's cement rotary kiln.
Spinel brick has the advantage of good thermal shock resistance, the use of clinker reaction during the spinel can form a thin layer of calcium aluminate protective layer, so that the liquid is not easy to penetrate, anti-spalling performance ratio Direct combination of magnesium chrome brick good. In the cement rotary kiln cooling zone and transition zone service life than the direct combination of magnesia-chrome brick to double. But slightly less resistant to erosion in the direct combination of magnesia-chrome brick. At the same time, spinel brick easy hydration, thermal conductivity larger kiln cylinder temperature than the use of direct combination of magnesia-chrome brick high.

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Coke oven repair with refractory materials

refractory materials
refractory materials
Coke oven repair with refractory materials
Coke oven refractory masonry minor repair is the preventive maintenance of coke oven masonry and routine repair. The project is small, generally do not stop production conditions, by the workshop repair personnel repair masonry defects. Ovens for minor repairs in coke ovens include: repair of gaps, cracks and holes, compacting of gaps between masonry and equipment, reworking of loose iron pieces embedded in masonry, replacement of adjustment equipment, opening of blocked ramps and burners Brick, replace the stove at the bottom with refractory brick, repair coke oven door refractory lining brick. Primary repair of coke oven masonry wet repair, semi-dry repair and dry repair three types.
Repair parts by the repair items are:
① roof area, including the top surface of the furnace roof sealing and renovation, flue cleaning, ramp opening, burner brick and conditioning brick replacement, stopper brick gunning and riser refractory lining material brick replacement.
③ Taiwan, including stoves, furnace walls and walls of the front wall to resist various types of damage to the repair and spraying, the furnace at the end of the refractory brick suppliers floor and door repair and replacement of furnace linings, furnace shoulder seam repair and so on. )
③ regenerator area includes both sides of the flue corridor and basement. Repair projects have refractory brick gas pipeline and dredging, sealing walls, gas pipe fittings and exchange switch and the furnace at the junction of the seal, a small amount of replacement and replacement of lattice bricks, regenerator wall furnace renovation of the furnace head and so on.
1. Wet repair wet method of making up mainly by gunning and wiping, these methods are used tools and operations are relatively simple, and the use of a wider range, regardless of hot, cold, or carbonization chamber walls, fire fighters Internal, regenerative room, ramp and furnace roof can be used in all parts. The main disadvantage of wet-fill furnaces is that while repairing old defects, they can cause new damage to the masonry.
(1) Spray gun Put the prepared mud into the shotcrete machine, use the pressure of the compressed air to press the mud out of the shotcrete machine and spray it on the damaged wall to repair the damaged parts. Spray a wide range of applications, regardless of the size of the cracks, peeling, Ma face, depression, etc., can be sprayed, can complement the red hot wall, but also make up for the lower temperature of the roof and regenerator area. The advantages are: simple operation, high speed and high efficiency, wide range of applications, can make the formation of scattered slurry sprayed on the masonry, the general requirements of the thickness of each layer of pulp is not more than 7mm, after the first layer of dry Second floor. The disadvantages of this method are as follows: the water content of mud is as high as 40%. When the mud touches the wall, the pressure of water vapor will affect the bonding between the mud and the wall due to the violent evaporation of water. At the same time, the sudden cooling of red-hot wall due to the mud with large water content caused the cracking of silica brick masonry and directly affected the life of the coke oven. Therefore, this method is currently not used, only for use with wiping or wiping more difficult to use.
(2) wiping first with a shovel shovel furnace wall to eliminate defects in the site of deposition of carbon, and compressed air purge, and then to be rubbed spray a layer of 3 ~ 5mm thick mud, and then use a large shovel to wipe the mud Press the wall of the defect site, stay for a few seconds and then slide the trowel along the parallel direction of the wall, each time the wall of the mud should not be too thick, so as not to mud due to gravity and fall off, mud After adhering to the wall, use a spatula to wipe the wall with the wiping layer.
Mud fill with mud water content than the mud is much smaller, so the side effects of masonry is relatively small. Wipe up is not suitable for smaller cracks, but for large cracks, holes, etc. make up quickly. Therefore, wiping is the current wet method of making up the main means. Wiping operation technology is more difficult to grasp, wiping well, hanging time can be long, therefore, need to repair hot in practice constantly sum up experience and find good methods of operation, in order to prolong a repair linked to the time.
2. Wet method of making up the mud
There are two main types of wet-fill muds; one is a siliceous or clay-based mud with water glass as the binder; the other is a clay mud with phosphate or phosphate as the binder. The former was widely used by various coking plants until the 1960s. Each time a subsidy was applied, the time was relatively short, usually two and a half months to one month or so. The latter started in the early 1960s. Due to its long hanging material (about the former 8 to 10 times), it is quickly adopted, instead of water glass mortar.
(1) Silicate Mortar Silicone mortar containing water-based glass absorbs CO2 and precipitates SiO2 gel at room temperature and high temperature. It not only adheres the mud material to the wall to be filled, but also has Higher intensity. In addition, Na2O (or K2O) in water glass can reduce the melting temperature of the clay to make it appear in advance of the liquid phase at high temperatures, and also promote the adhesion of the clay to the furnace wall. The bonding between the water glass gypsum and the wall is a physical combination. As the water in the gypsum is more watery, the water shrinks greatly after it evaporates, and the bond with the wall is not strong, so the hanging time is short.
Water glass preparation of clay fire clay, except for the mechanism of making up the same with the water glass of silicon fire mud, water glass at high temperatures, clay and clay brick can make kaolinite rapid formation of mullite crystals, thereby increasing the mud Strength and stability. However, clay prepared by using water glass must be used promptly. Otherwise, the SiO2 gel precipitated from water glass will lose its bonding ability with Al2O3. In the water glass mortar, by adding a certain amount of sodium carbonate (Na2CO3), the mud can appear early in the liquid phase at high temperatures, increasing the bond capacity of the mud.
Borax with a particle size of 0.2mm and talcum powder were mixed at a mass ratio of 3:10 and then mixed with a fine clay clinker powder in a mass ratio of 1: 6, and then prepared with a water glass solution having a density of 1.11 The required consistency. It will be better to use this clay to fill the furnace wall. ?
(2) phosphate cement phosphate (H3PO4) and refractories in aluminum, silicon and other oxides chemical reaction, can generate phosphate cementitious materials. The cementitious material has the advantages of plasticity, low temperature curing, high temperature sintering, high refractoriness, good thermal stability and strong adhesive force. Therefore, it is widely used in the hot repair of industrial furnaces.
In the coke oven repair mortar material, phosphoric acid as a binder clay material, with the most solid combination of silica brick masonry. Because of the action of phosphoric acid and Al2O3 in clay fire clay, a good cementitious material of aluminum phosphate cement is formed, which belongs to a fire-hardening binder that hardens when heated. Al2O3 (about 40%) in clay fire clay does not react with phosphoric acid at room temperature (has a slow action with Al2O3? 2H2O in the clay raw material) and dehydrates at about 200 DEG C to produce aluminum dihydrogen phosphate Al (H2PO4 ) 3 and aluminum phosphate (AlPO4) at 250-280 ° C to form an amorphous substance, which becomes H2 (AlP3O10) at 300-400 ° C and dehydrates to aluminum metaphosphate [Al (PO3) 3] at 500 ° C n, aluminum tetraphosphate [Al (PO3) 3] 4 is formed at 800 ° C, phosphorus pentoxide is partially decomposed and precipitated into cristobalite (AlPO4) at 1000-1200 ° C, while the major part Still tetra-aluminum trimetaphosphate [Al (PO3)
3〕 4, at 1300 ~ 1500 ℃ under the conditions of the reaction is relatively strong, long-term high temperature, AlPO4 will become pure corundum (Al2O3). The aluminum phosphate monobasic and the aluminum metaphosphate produced in the reaction of phosphoric acid and Al2O3 are good gelling materials. They are well integrated with the silica brick wall and gradually sintered to harden, and finally change the square quartz-shaped aluminum phosphate, not only high melting point, but also with a similar wall of silica brick crystal transition. When the temperature changes, it is relatively close to the expansion (or shrinkage) of the silica brick, which reduces the internal stress between the phosphoric acid mud layer and the silica brick wall, so that the repair layer can extend the hanging time.
Since phosphoric acid can work with impurities (MgO, CaO, Fe2O3 and other basic oxides) in clay fire clay at room temperature to form compounds such as magnesium phosphate, calcium phosphate and iron phosphate, the clay material has certain properties at room temperature Sticky. However, when the content of magnesium phosphate in the mud exceeds 1.5%, the mud will lose its plasticity at normal temperature, which is not conducive to the construction work of spraying and wiping. Therefore, it is usually required that the clay in the clay should be less than 0.5% MgO, CaO should be less than 1%, Fe2O3 the smaller the better. SiO 2 (about 50%) in clay fire clay and phosphoric acid at above 260 ° C will form SiO 2 [SiO (PO2) 2). Although SiO 2 and SiO 2 also belong to cementitious material , But they do not have the same crystalline conversion properties as silica bricks, so the bonding to silica bricks is far less than that of aluminum phosphate cementitious materials. Therefore, the current wet repair silica brick coke oven masonry using phosphate - clay mud instead of phosphate - siliceous mud.
Preparation of phosphoric acid-clay clay material: clay fire clay is prepared from clay clinker and raw materials. Clinker does not work with phosphoric acid at room temperature, so the low viscosity is not good for the spray and wipe, but its residual shrinkage is small, strength is good; raw material residual shrinkage, but the porosity is low, but also can improve the mud The adhesion, which is conducive to construction operations.
Clay sprinkler, generally 20% of the raw materials and 80% of the clinker with, and is the use of fine-grained mud; wiping mud with the ratio and size of the plant varies, Anshan Chemical The plant is made with 50% gunning material and 50% particle size less than 3mm clinker; while WISCO coking plant is made of 80% clay clinker with particle size less than 3mm and 20% clay raw material. Spray water content is generally 30% to 40%, while wiping material is about 17%.
Phosphoric acid in the amount of clay in the mud is: each 100kg spray material added to the relative density of 1.25 to 1.3 orthophosphoric acid solution (ie orthophosphoric acid and water diluted) 37 ~ 42kg; each 100kg wadding added relative density of 1.3 ~ 1.4 of orthophosphoric acid solution 26kg.
In the preparation of mud, in order to make full use of phosphoric acid and mud, and discharge the gas generated, the mud stir should be trapped after a day to use. But the test shows that the bonding strength of mud and silica brick decreased significantly with the storage time of the mud, so the mud should not be stored for too long after the modulation so as to prevent the mud from losing its chemical activity.
(3) Plastic Plastic Plastic is often used in the form of wiping and ramming for the repair of various industrial furnaces. Because it still needs to be mixed with liquid gelling agent before use, it still belongs to the type of wet wiping. Plastic materials can be divided into clay, aluminum, corundum, silicon, chromium, zirconium, silicon carbide, etc., of which clay and high aluminum used more generally. Plastic construction facilitation, repair part of the overall good, less gap, wear resistance, thermal stability, slag resistance, impact resistance are better. Its low thermal conductivity, but thermal storage ability.


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2017年10月25日星期三

The requirements of refractory materials for shaft kilns

refractory brick
refractory brick
① high temperature heat loss: refractoriness of not less than 1580 ℃ inorganic non-metallic materials and products called refractory materials. In the kiln under high temperature, do not soften, insoluble; in normal or abnormal circumstances, can maintain a certain structural strength and bulk density stability. This kind of refractory masonry lining of the kiln in order to maintain the normal operation and production.
② anti-acid and alkali chemical erosion: the material in the kiln of the calcination process, to go through a series of complex physical and chemical reactions, different parts of the acid gas or alkaline slag will erode the kiln lining. Especially in the firing zone, the reaction material in the high temperature liquid phase, the chemical effect of refractory material is more intense. So the material can not participate in chemical reactions, does not appear sticky phenomenon.
③ anti-material movement wear: shaft kiln calcination process, the material from top to bottom, from low temperature to high temperature, to the low temperature kept moving. The lining of the inner wall of the kiln body is always subjected to the movement of the material, especially the clinker formed after calcination is stronger and the wear of the lining is more serious. Therefore, masonry in the kiln body of the refractory material must have a strong anti-wear ability.
④ specifications of the size: refractory masonry quality of the kiln calcination process has an important impact. Shaft kiln is not round, calcined easily lead to "partial fire" phenomenon; brick surface uneven, contact is not close, in the kiln bottom position is unstable, due to thermal shock phenomenon will occur loose lining, reduce service life and kiln heat loss Increase and so on. Therefore, the shape and shape of the refractory brick must be standardized and accurate, which is to ensure the quality of the most basic conditions of masonry.

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Refractory materials for cement kilns

refractory brick
refractory brick
1,cement kiln working environment and the requirements of refractory
The new dry cement kiln is a large system. From raw materials preheating, decomposition, to high temperature calcination to produce clinker, until the cooling out of the material, before and after the total length of several hundred meters. And this is only the main system, there are a large auxiliary system, such as ventilation systems, waste heat power generation systems, are at high temperatures, need to protect the refractory material. However, such a large main and auxiliary system in addition to the work in a serious chemical erosive atmosphere, the other conditions are different, the temperature is not only different levels, there are varying degrees of variation and frequency. Force situation is different, have been washed by the air, there are raw clinker wear, there are mechanical stress. The air erosion strength, wear and mechanical stress and the size of the different, the situation is very complex. Therefore, the performance requirements for refractory materials is also very complex. It is not possible to use only one material to meet all requirements. Must use a series of refractory materials. In view of the above situation, cement kiln refractory use environment although vary widely, but in general there are a few common, that is: a serious chemical erosive atmosphere; greater mechanical stress and wear, strong thermal stress. The difference is mainly due to the difference in temperature. The main requirements for refractory materials are: resistance to chemical attack, high strength, wear resistance, thermal shock resistance, different parts of the refractoriness are quite different. If combined with the actual cement company repair work, it is best to early hardening easy early sintering high strength, it would be better.
2,several commonly used refractory performance comparison
Cement kiln refractory castables are the following: Alkaline castables, high-silicon castables, high-alumina castables.
Alkaline castable refers to the magnesium, magnesium aluminum spinel material based on a class of castables. This material is particularly alkaline resistance, the inadequacies of the thermal expansion coefficient is greater, less thermal shock resistance, such as to solve the thermal shock problem, the application effect in the cement kiln is also good.
High siliceous material refers to the alumina content of less than 30% of the aluminum siliceous material, such materials at a certain temperature and kiln materials and kiln gas in the alkali compounds in the surface of the material quickly formed a closed dense protective glaze Layer, to prevent the continued infiltration of alkali, so as to protect the material inside the alkali is no longer continue to attack, the formation of good resistance to alkaline. However, the weakness of such materials is that the soft temperature is low, low strength, poor wear resistance.
Performance of Alkaline Castables for Kiln Kiln
High alumina refractory brick refers to the formation of a class of alumina-based materials. Mainly including a variety of corundum mullite and so on. The common characteristics of these materials are high hardness, high wear resistance, the inadequacies are not alkali, because the alumina and (K, Na) 2O reaction can form β-alumina, resulting in volume expansion, destruction of material structure, when there is Silica material in the presence of nepheline can form, not only volume expansion, and the lower melting point, the use of a significant decline in performance.
3,Analysis of Damage Mechanism of Refractories for Cement Kiln
1: Alkaline peeling
2: Thermal shock cracks and mechanical stress damage
3: wear air erosion material wear
4: damage caused by non-material properties
Construction defects: construction caused by poor performance of the material caused by defects, poor mobility, material segregation, construction cracks, etc.
Maintenance did not meet the process requirements: baking, no sintering strength low auxiliary equipment: mixing machine, tire mold, vibration anchor welding, bandage, structure, set the size of each location
4, high strength and high wear resistance castable performance analysis
1: high strength and high wear resistance analysis: performance from the nature of the material itself. The cast material is made of high-alumina corundum material, corundum we all know that high hardness and high strength of the material, wear resistance is yes. But in the castable only grain wear is useless, but also must be binding agent and the same part of the matrix wear-resistant Caixing. In the matrix is ??added with corundum homogeneous material @ -AL2O3 powder, so the castable overall wear resistance is very good.
2: thermal shock resistance analysis: pure corundum material wear resistance is good, but the thermal shock is poor, but also part of the sio2, to produce part of the mullite, mullite thermal expansion coefficient of only magnesia three One by one, corundum half, coupled with the thermal expansion coefficient of corundum caused by the micro-cracks toughening effect, which improves the thermal shock resistance of the material.
3: alkali-resistant problem solving: If the corundum is also barely alkaline resistance in the past, mullite in alkaline conditions is very unstable. So ordinary high-alumina materials used in the cement kiln is certainly not work. But the high strength and high wear-resistant castable due to the formation of anti-alkaline protective film can be formed on the material, the corundum mullite from the protective effect, so the corundum mullite to maintain its excellent characteristics, but also have a very good Alkali resistance. Therefore, the full satisfaction of the cement kiln on the requirements of refractories.


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2017年10月24日星期二

Other refractory materials for industrial furnaces

refractory materials
refractory materials
Other industrial furnaces include boilers, gas stoves, heating furnaces. Building materials industry, the use of refractories furnace up, such as calcined cement industrial furnace and glass melting furnace.
Calcined cement rotary kiln working temperature in the firing zone for the 1450 ~ 1500 ℃, masonry subjected to high temperature and alkali erosion, the production of frequent rotation caused by masonry vibration, while the wear and impact of sports load, masonry Laying layer to make the brick temperature fluctuations, so the use of cement masonry with high refractoriness, good alkali resistance, high compressive strength, good thermal stability of refractories. Generally in the firing zone with the use of magnesia bricks or magnesia-alumina bricks, the calcining belt uses good quality high alumina bricks or phosphates high alumina bricks, and other places use clay tiles.
Glass kiln masonry suffered 1600 ~ 1700 ℃ high temperature role, with the material and glass chemical erosion and mechanical action, as well as dust, air erosion and so on. So the refractory material must have the ideal anti-erosion performance, and should avoid the glass in the stones, stripes, bubbles and other defects. According to this requirement glass melting furnace generally use high-quality silica brick, fused zirconia corundum brick, fused α-β corundum brick, thermal storage room using magnesia or magnesia chrome brick. Refractory industrial kiln, according to the calcined raw materials and firing products, common shaft kiln, rotary kiln, inverted flame kiln and tunnel kiln and so on. Shaft kiln masonry is subjected to high temperature and abrasive wear. Therefore, the refractory used should have substantially the same chemical properties as the calcined raw material, the refractoriness suitable for the calcination temperature of the raw material, and the good high temperature volumetric stability, mechanical strength and slag resistance. For example, calcined limestone and clay clinker can be used in clay kiln lining, calcined magnesite and dolomite shaft kiln lining magnesium, calcined bauxite with high alumina brick or high alumina brick.
Rotary kiln masonry due to rotation leaving the masonry vibration, while the movement of the charge also wear and impact masonry, masonry in addition to meet the requirements of the production process, but also should have high strength and wear resistance.
The flame-resistant kiln is affected by the high temperature effect and the scouring effect of the combustion air flow and the abrupt change in the temperature of the kiln cooling. Therefore, the refractory used has high refractoriness and mechanical strength as well as good thermal stability and high temperature volumetric stability Wait. Masonry use of refractory materials and firing products should be consistent, such as firing high-alumina refractory bricks and magnesia brick masonry using high alumina brick, magnesia brick and silicon brick.
Tunnel kiln due to the high temperature of the firing zone, masonry quality requirements. Therefore, the masonry should be used refractory, fire resistance, mechanical strength and load softening temperature are high, high temperature stability and good dimensional dimensions of the refractory material. At the same time the performance of masonry and firing performance should be adapted.

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2017年7月10日星期一

New trends of China refractory materials

refractory materials
New trends of China refractory materials
Refractory industry, a serious excess capacity is more prominent in the current situation. Therefore, we must resolutely control the production, firmly grasp the domestic and abroad markets. China is a large consumer of refractory material, refractory brick suppliers consumption accounts is about 60% of the total global consumption, is still the leading market for refractories. Therefore, no matter how the economic situation changes, the domestic market is still a large market for refractory consumption. At the same time, refractory production need to expand the international market.

Chinese refractory products exported to more than 150 countries and regions. It is noteworthy that Vietnam, Indonesia, the demand of refractory brick china is increasing. In 2016, the export volume of alkaline refractory materials up to 877,600 tons. refractory company  Silicate Alumina refractory material up to 662,400 tons. In this regard, refractory production and export enterprises need to stabilize the existing export market, at the same time, tracking changes of the international market timely, and further expand the market space, increase exports.

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New trends of China refractory materials

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2017年6月21日星期三

Refractory definition

Refractory material
Refractory material
Refractory material refer to inorganic nonmetallic materials with a refractoriness of not less than 1580 ° C.
Refractory materials are generally made of natural minerals and rocks of aluminum silicate as the main refractory raw material. Its basic processes and certain basic characteristics are similar to those of other products of the silicate system. Therefore, refractories are listed as one of the silicate systems Product and important part of the silicate industry. Refractory product same to cement, ceramics, glass and other silicate industry has a very important position and role in the national economy.
Because it has a special performance of resistance to high temperature  in the thermal equipment, then it occupies a very important position in the development of modern industry. With the discovery and need of science and technology, the use of refractory materials for furnace is expanding, from metallurgy (including steel and nonferrous metallurgy, etc.), silicate (cement, ceramics, etc.), chemical, power, machinery and other industries, extended to everything High-temperature operation of the industrial and mining enterprises, the kiln (combustion kiln, molten pool, fire, crucible) and other heat parts of thermal equipment, refractories are indispensable important building structural materials. In the field of cutting-edge science (such as rockets, atomic reactors, etc.) is also an indispensable high temperature resistant materials or parts.
As the refractory material used in a variety of different heating conditions of high temperature equipment, it is subject to high temperature and other different conditions, by the complex physical and chemical reactions and damage. Therefore, the refractory material must have the following important performance.
1.Refractory material is not easy to melt when in the case of high temperature
The working temperature of modern industrial kiln furnace is generally between 1000 ~ 1800 ℃, therefore the refractory for sale material must first be not easy to melt in this temperature.
2.Refractory material does not soften when in the case of high temperature pressure
The melting temperature of Most refractory material more than 1650 ~ 1700 ℃, but it reached the melting temperature before the deformation (softening), loss of structural strength, so the refractory material supply not only have a high melting temperature, but also with high temperature Under the conditions of the load does not occur deformation performance.
3.Volume stability in high temperature environment
Refractory materials used in high temperature conditions, due to physical and chemical reactions within the material and make the volume changes. Most of this change in refractory material is volume shrinkage, and a few are inflated. Whether it is volume shrinkage or expansion, such as beyond a certain range can cause damage to the furnace. So the refractory material is required to have good high temperature volumetric stability.
4.Refractory product can resist the sudden change and uneven heating of temperature to avoid damage to the furnace
In the intermittent operation of the kiln, the high temperature, the rapid changes in the various parts of the masonry heat uneven, brick body will produce stress inside the material cracking, resulting in furnace damage. So the refractory material should be able to withstand the rapid changes in furnace temperature and fluctuations do not crack the performance of thermal stability.
5.Refractory can resist the erosion of slag when in the case of high temperature
in the use of the process, due to disguised contact with fuel ash, molten slag and molten metal and other effects were eroded. Therefore, the refractory material should have the ability to resist this erosion. In the use of refractory materials, according to the main requirements of the use of various refractory materials and have the characteristics of a reasonable choice.

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Refractory definition

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