Bomba de purins WA de gran resistència
Què és la bomba de purins resistents?
La bomba de purins de la sèrie WA és en voladís, horitzontal, de cautxú natural o revestida de metall dur bombes centrífugues de purins. Estan dissenyats per a la manipulació de purins abrasius i d'alta densitat al departament de la metal·lúrgia, mineria, carbó, energia, materials de construcció i altres sectors.
Especificacions de la bomba de càrrega pesada
Mida: 1" a 22"
Capacitat: 3,6-5400 m3/h
Cap: 6-125 m
Lliurament de sòlids: 0-130 mm
Concentració: 0% -70%
Materials: aliatge hipercromat, cautxú, poliuretà, Ceràmica, acer inoxidable, etc.
AIER® WA Heavy Duty Slurry Pump
Característiques de la bomba de purins
1. La placa de marc per a les bombes de la sèrie WA té revestiments d'elastòmer de metall dur intercanviable o modelats a pressió. Els impulsors estan fets de metall dur o revestiments d'elastòmer modelat a pressió.
2. Els segells d'eix per a la sèrie WA poden ser un segell d'embalatge, un segell centrífug o un segell mecànic.
3. La branca de descàrrega es pot col·locar a intervals de 45 graus a petició i orientada a vuit posicions qualsevol per adaptar-se a instal·lacions i aplicacions. Hi ha molts modes d'accionament per a opcions, com ara corretja en V, acoblament flexible, caixa de canvis, acoblador hidràulic de freqüència variable, velocitat controlada per silici, etc. Entre ells, la unitat d'acoblament d'eix flexible i la corretja en V tenen un cost baix i una instal·lació fàcil.
4. In harsh conditions with sand, sludge, rocks and mud, ordinary slurry pumps tend to clog, wear and fail frequently.. But our heavy-duty slurry pumps are highly resistant to wear and corrosion, which means that the vida útil de les nostres bombes de purins és millor que les bombes d'altres fabricants.
Aplicacions típiques de bombes de gran resistència
Com que les nostres bombes de purins WA són molt resistents al desgast i a la corrosió, les bombes de gran resistència s'utilitzen en una àmplia gamma d'aplicacions.
1. Descàrrega del molí SAG, descàrrega del molí de boles, descàrrega de Rod mil.
2. Suspensió d'àcid Ni, sorra gruixuda, residus gruixuts, matriu de fosfats, concentrat de minerals.
3. Mitjans pesats, remolatxa sucrera, dragatge, cendres de fons/volars, mòlta de calç, sorres petrolieres, sorres minerals, residus fins, granulació d'escòries, àcid fosfòric, carbó, flotació, productes químics de procés, pasta i paper, FGD, alimentació de cicló, etc. .
Notació de bombes
| 200WA-ST: | 100WAJ-D: |
| 200: Diàmetre de sortida: mm | 100: Diàmetre de sortida: mm |
| WA: Tipus de bomba: revestiment d'aliatge de crom | WAJ: Tipus de bomba: folrada de cautxú |
| ST: Tipus de placa de marc | D: Tipus de placa de marc |
Per aprendre a resoldre els vostres problemes de bombeig, contacta amb nosaltres today! We are the slurry pump manufacturer that can help you solve your problems.
Disseny de la construcció
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Carcassa Les meitats de la carcassa dividida de ferro colat o dúctil contenen els revestiments de desgast i proporcionen capacitats d'alta pressió de funcionament.
Revestiments intercanviables de metall dur i elastòmer modelat |
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Impulsor L'impulsor pot ser d'elastòmer modelat o de metall dur. Les paletes de segellat lateral profundes alleugen la pressió del segell i minimitzen la recirculació. Els fils d'impulsor colats són més adequats per a purins. |
Mating faces in hard metal liners are tapered to allow positive alignment during assembly and allow components to be easily removed for replacement.
Material de la part de la bomba
| Nom de la part | Material | Especificació | HRC | Aplicació | Codi OEM |
| Revestiments i impulsor | Metall | AB27: 23%-30% ferro blanc cromat | ≥56 | S'utilitza per a condicions de desgast més altes amb pH entre 5 i 12 | A05 |
| AB15: 14%-18% ferro blanc cromat | ≥59 | S'utilitza per a condicions de desgast més altes | A07 | ||
| AB29: 27%-29% ferro blanc cromat | 43 | S'utilitza per a condicions de pH més baixes, especialment per a FGD. També es pot utilitzar per a instal·lacions de desulfuració i condicions baixes amb pH no inferior a 4 | A49 | ||
| AB33: 33%-37% ferro blanc cromat | Pot transportar purins oxigenats amb un pH no inferior a 1 com ara guix fosfor, àcid nítric, vitriol, fosfat, etc. | A33 | |||
| Goma d'esborrar | R08 | ||||
| R26 | |||||
| R33 | |||||
| R55 | |||||
| Expulsor i anell d'expulsió | Metall | B27: 23%-30% ferro blanc cromat | ≥56 | S'utilitza per a condicions de desgast més altes amb pH entre 5 i 12 | A05 |
| Ferro gris | G01 | ||||
| Caixa de farcir | Metall | AB27: 23%-30% ferro blanc cromat | ≥56 | S'utilitza per a condicions de desgast més altes amb pH entre 5 i 12 | A05 |
| Ferro gris | G01 | ||||
| Marc/placa de coberta, casa de coixinets i base | Metall | Ferro gris | G01 | ||
| Ferro dúctil | D21 | ||||
| Eix | Metall | Acer carboni | E05 | ||
| Màniga de l'eix, anell de llanterna/restrictor, anell de coll, cargol de glàndula | Acer inoxidable | 4Cr13 | C21 | ||
| 304 SS | C22 | ||||
| 316 SS | C23 | ||||
| Anells i segells d'unió | Goma d'esborrar | Butil | S21 | ||
| cautxú EPDM | S01 | ||||
| Nitril | S10 | ||||
| Hypalon | S31 | ||||
| Neoprè | S44/S42 | ||||
| Viton | S50 |
Disseny del mòdul de transmissió
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Eix de bomba de gran diàmetre, cilíndric Construcció de càrrega pesada, coixinet mètric amb lubricació amb oli o lubricació amb greix; obert en sèrie, les característiques de construcció de petit volum i alta fiabilitat. |
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Coixinet de l'eix Un eix de gran diàmetre amb un voladís curt minimitza la deflexió i la vibració. Els coixinets de rodets resistents estan allotjats en un cartutx de coixinets extraïble. Base de la bomba Fixeu la bomba a la base amb un nombre mínim de cargols i ajusteu l'impulsor en una posició convenient per sota de la carcassa del coixinet. La coberta a prova d'aigua evita que l'aigua de fuites vola. La coberta de protecció evita fuites d'aigua del suport del coixinet.
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Disseny del mòdul de segellat d'eix
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1. Caixa d'embalatge 2. Anell de llanterna frontal 3. Embalatge 4. Glàndula d'embalatge 5. Màniga d'eix |
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1. Glàndula d'alliberament 2. Expulsor 3. Embalatge 4. Junta d'embalatge 5. Anell de llanterna 6. Glàndula d'embalatge 7. Copa d'oli |
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Segell mecànic GRJ El tipus GRG s'utilitza per a líquids que no es permet diluir. Segell mecànic HRJ El tipus HRJ s'utilitza per al líquid diluït. S'adopten ceràmiques i aliades d'alta duresa per al material de les peces de fricció. Posseeix una alta resistència a l'abrasió i a prova de sacsejades per garantir que l'efecte de segellat pot ser satisfet pel client en diverses condicions.
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Corba de rendiment


Dimensions d'instal·lació

Selecció de l'impulsor de la bomba de purins
Slurry pump impeller is one of the most important parts of centrifugal slurry pumps. Depending on the application, slurry pump impeller selection is crucial to slurry pump performance. Slurry applications can be especially hard on the impeller of slurry pumps because of their abrasive nature. In order slurry pumps operates efficiently and stand up to the test of time, impeller has to be selected properly for slurry pumps.
1. Tipus d'impulsor de la bomba de purins
Hi ha tres tipus diferents d'impulsors de bombes de purins; obert, tancat i semiobert. Cadascun té els seus propis punts forts i febles, depenent de l'aplicació. Alguns són millors per a la manipulació de sòlids, altres són millors per a una alta eficiència.
Any type of impeller can be used in slurry applications, but closed slurry pump impellers are more common because they are high efficient and abrasion Resistance,. Open slurry pump impellers are usually used well for high concentration solids as they are less likely to clog. For example, the small fibers in paper stock which, in high densities, may have a tendency to clog the impeller. Pumping slurry can be difficult.

2. Mida de l'impulsor de la bomba de purins
The size of slurry pump impeller must be considered to ensure it holds up against abrasive wear. Slurry pump impellers are generally larger in size when compared to slurry pumps for less abrasive liquids. The more “meat” the impeller has, the better it will hold up to the task of pumping harsh slurry mixtures. Just think of slurry pump impeller as a football team’s offensive line. These players are usually large and slow. Throughout the whole game they are beaten up, over and over again, but expected to withstand the abuse. You wouldn’t want small players in this position, just like you wouldn’t want a small impeller on your slurry pumps.
3. Velocitat de la bomba de purins
Process speed doesn’t have anything to do with choosing slurry pump impeller, but it does have an effect on the life of slurry pump impeller. It is important to find the sweet spot that allows the slurry pump to run as slow as possible, but fast enough to keep solids from settling and clogging. If pumping too fast, the slurry can quickly erode the impeller due to its abrasive nature. This is why it is important to select a larger impeller if possible.
When dealing with slurry, you generally want to go bigger and slower. The thicker the impeller, the better it will hold up. The slower the pump, the less erosion will inflict on the impeller. However, the impeller isn’t the only thing to worry in slurry pump when dealing with slurry. Tough, durable materials of construction are necessary most of the time. Metal slurry pump liners and wear plates are common in slurry applications.
Instal·lació de la bomba de purins
Instal·lació de bombes de purins horitzontals
The mounting and installation of horizontal slurry pumps are generally subject to a number of considerations, including floor space, overhead space for lifting and the likelihood of flooding from spills. Pumps in critical services are often paired in duty/standby mode so that maintenance can be carried out on one pump while the other is running.
Large slurry pumps with high-energy motors - and perhaps with speed reduction gearboxes - would generally be mounted with the shaft axes in the same horizontal plane for ease of maintenance access.
A slurry pump with a belt drive may have the motor mounted beside it if there is sufficient floor space. However, if floor space is limited or there is a risk of flooding, the motor can be mounted above it either directly overhead (also known as “C drive”) or to its rear (reverse overhead mounting or “Z drive”).
Vertical Slurry Pump Installation
Vertical cantilever shaft sump pumps should be selected so that the suction inlet is close to the sump floor. If shaft length is limited by the required running speed and power to be transmitted, a suction pipe (generally two meters long) may be fitted to the suction branch to ensure the sump can be emptied.
Understanding Heavy Duty Slurry Pumps and Their Industrial Applications
A heavy duty slurry pump is a specialized pumping solution designed to handle highly abrasive and dense slurries in demanding industrial applications. Unlike standard pumps, these heavy-duty units are engineered to provide durability, high efficiency, and long operational life in challenging conditions. The structural design of a heavy duty slurry pump includes robust casings, wear-resistant impellers, and reinforced shafts that allow it to manage slurries containing coarse particles, sand, gravel, and mineral residues without excessive wear.
The industrial slurry pump is widely used across multiple sectors, including mining, coal preparation, metallurgical processing, and chemical industries. In mining operations, it efficiently transports slurry from excavation sites to processing facilities, managing high particle loads without compromising flow rates. In coal washing and processing plants, heavy duty slurry pumps handle thick mixtures of coal and water, maintaining continuous operation under severe abrasion conditions.
Metallurgical plants benefit from heavy duty slurry pumps by moving corrosive and abrasive process fluids such as tailings, smelting residues, and acidic solutions. The pump’s materials, typically high-chrome alloys or specialized metals, provide excellent wear resistance and corrosion protection. This ensures consistent operation and reduces downtime, which is crucial for industrial processes with tight production schedules.
A reliable slurry pump supplier will offer pumps with modular designs, allowing for easy replacement of wear parts like impellers and liners. This minimizes maintenance costs and downtime, enhancing productivity in demanding industrial environments. Furthermore, many industrial slurry pumps come in different configurations, including horizontal, vertical, and high-capacity models, enabling customization for specific applications.
In addition to industrial use, heavy duty slurry pumps are critical in water treatment and dredging operations where solid-laden fluids need to be transported efficiently. Their robust construction, combined with advanced hydraulic design, allows them to handle large flow volumes and high concentrations of solids, ensuring reliable performance across all applications.
In summary, a heavy duty slurry pump is a durable, efficient, and versatile solution for handling abrasive and corrosive slurries in various industrial sectors. Partnering with a professional slurry pump supplier ensures access to high-quality pumps that meet operational demands and provide long-term reliability.
Key Advantages of Heavy Duty Slurry Pumps in Abrasive Environments
Heavy duty slurry pumps are specifically designed to withstand the challenges posed by abrasive and corrosive industrial fluids. Their key advantage lies in their ability to operate efficiently under extreme wear conditions while maintaining high flow and pressure. Unlike standard pumps, heavy duty models use wear-resistant materials such as high-chrome iron or stainless steel alloys, which dramatically reduce the effects of erosion from solid particles in slurries.
In highly abrasive environments, such as mining and mineral processing, these pumps can handle slurries with high solids content and large particle sizes. This ensures consistent flow rates without frequent repairs or maintenance shutdowns. Choosing a heavy duty slurry pump from a reputable slurry pump supplier guarantees enhanced durability and reliability in these challenging conditions.
Another advantage is the robust structural design. Industrial slurry pumps are reinforced with thick casings, optimized impeller geometry, and heavy-duty shafts that resist bending and wear. This allows for continuous operation in industrial environments with abrasive fluids, reducing downtime and maintenance costs. Additionally, many pumps are designed with modular components, enabling easy replacement of worn parts such as liners and impellers, which extends the pump’s operational lifespan.
The adaptability of heavy duty slurry pumps also sets them apart. They are available in horizontal and vertical configurations and can be customized for specific flow rates, head requirements, and slurry characteristics. This flexibility makes them suitable for a wide range of applications, from transporting tailings in mining operations to moving chemical slurries in metallurgical plants.
Energy efficiency is another significant advantage. The optimized hydraulic design of these pumps ensures high efficiency even under abrasive conditions, reducing power consumption and operational costs. Industrial facilities that rely on industrial slurry pumps can achieve long-term savings while maintaining reliable performance.
In conclusion, heavy duty slurry pumps offer unmatched durability, wear resistance, and operational efficiency in abrasive environments. By sourcing from a qualified slurry pump supplier, industries can ensure reliable performance, reduced maintenance, and cost-effective operation over extended periods.
Comparing Heavy Duty Slurry Pumps vs Standard Slurry Pumps
When selecting a pump for industrial slurry applications, understanding the differences between heavy duty slurry pumps and standard slurry pumps is essential. Heavy duty pumps are engineered for extreme conditions, whereas standard pumps are suitable for less abrasive and lower solids concentration environments.
A heavy duty slurry pump typically features reinforced casings, high-strength shafts, and wear-resistant impellers made from high-chrome alloys or stainless steel. In contrast, standard slurry pumps often use less durable materials that are prone to rapid erosion when handling abrasive slurries. This material difference directly impacts the lifespan and reliability of the pump in demanding applications.
Another critical difference is the capacity to handle high solids content. Heavy duty pumps can transport slurries containing large particles, high concentrations of solids, and abrasive mixtures, making them ideal for mining, mineral processing, and coal preparation. Standard pumps are limited in this regard and may experience frequent clogging or wear if used beyond their specifications.
Maintenance requirements also vary. A heavy duty slurry pump is designed for modular replacement of wear components such as liners, impellers, and bearings, which reduces downtime and simplifies servicing. Standard pumps may require more frequent overhauls or complete replacements, increasing operational costs and reducing productivity. Partnering with a professional slurry pump supplier ensures access to high-quality heavy duty pumps and replacement parts, optimizing long-term performance.
Finally, heavy duty pumps are often optimized for higher flow rates and pressures, allowing them to handle more demanding industrial processes efficiently. Standard pumps, while sufficient for lighter applications, may struggle under extended operation in high-load environments.
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