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  • WG Buru handiko minda ponpa

WG Buru handiko minda ponpa

Deskribapen laburra:

Energia elektrikoaren, metalurgiaren eta ikatzaren industriaren garapenari buruzko eskakizunak betetzeko, gure enpresak WG(P) serieko minda-ponpa eguneratua diseinatu eta garatu du, potentzia handiko, buru handiko eta serieko etapa anitzeko. errautsak eta lohiak kentzeko eta likido-solido nahasketa emateko, minda ponpa diseinatzeko eta fabrikatzeko urte askotako esperientzian oinarrituta.


Produktuaren xehetasuna

Produktuen etiketak

Produktuaren Deskribapena

Ponparen Sarrera

ZEHATZAK:

Tamaina: 65-300 mm
Edukiera: 37-1919m3/h
Burua: 5-94m
Solidoak ematea: 0-90 mm
Kontzentrazioa: gehienez
Gehienezko presioa: Max.4.5mpa
Materialak: Hyper chrome aleazio eta abar.

AIER® WG High Efficiency Slurry Pump

 

In order to meet the requirements on the development of the electric power, metallurgy and coal industries, our company has designed and developed WG(P) Series up-to-date general slurry pump with large capacity, high head, multi-stages in series to remove ash & sludge and to deliver liquid-solids mixture, based on the experience of slurry pump design and manufacture for many years, and abstracting the research results of advanced technology from home and abroad.

 

Ezaugarriak

CAD diseinu modernoa, errendimendu super hidraulikoa, eraginkortasun handia eta urradura tasa txikiagoa;

Pasabide zabala, ez-blokeatzea eta NPSHren errendimendu ona;

Expeller zigilua enbalatzeko zigiluarekin eta zigilu mekanikoarekin konbinatuta minda ihesa bermatzeko onartu dira;

Fidagarritasun diseinuak MTBF luzea bermatzen du (gertaeren arteko batez besteko denbora);

Errodamendu metrikoak olio lubrifikazioarekin, zentzuzko lubrifikazio eta hozte sistemek bermatzen dute errodamenduak tenperatura baxuan funtzionatuko duela;

Piezen hezeen materialek higaduraren eta korrosioaren aurkako errendimendu ona dute;

Ponpa itsasoko errautsak kentzeko erabil daiteke, itsasoko uraren, gatza eta lainoaren korrosioa eta korrosio elektrokimikoa saihesteko;

Ponpa seriean funtziona daiteke etapa anitzeko presio onargarrian.

Ponpak zentzuzko eraikuntzaren abantailak ditu, eraginkortasun handikoak, funtzionamendu fidagarriak eta mantentze erraza. Asko erabil daiteke energia elektriko, metalurgia, meategi, ikatza, eraikuntzako material eta industria kimikoko sailetan solido urratzaile eta korrosiboen nahasketa maneiatzeko, batez ere zentral elektrikoko errautsak eta lohiak kentzeko.

 

 

Ponpa notazioa

100WG (P):

100: Irteerako diametroa (mm)

WG: Buru handiko minda-ponpa

P: etapa anitzeko ponpak (1-2 etapa markarik gabe)

 

WG minda ponpa horizontala, etapa bakarrekoa, xurgapen bakarrekoa, cantilevered, karkasa bikoitza, minda ponpa zentrifugoa da. Ponpak erlojuaren orratzen noranzkoan biratzen du unitatearen muturretik ikusita.

WG eta WGP ponparen zati hezeak irteera-diametro berean truka daitezke. Haien eskema instalazio-dimentsioak berdinak dira. WG(P) minda ponparen gidatzeko zatirako, olio-lubrifikazioarekin eta ura hozteko sistemaren bi multzo barnean eta kanpoan zatitutako marko horizontala hartu da. Beharrezkoa izanez gero, hozteko ura horni daiteke. Ura hozteko prestatutako juntura eta hozteko uraren presioa 1. taulan ikus daitezke.

Two kinds of shaft seal – expeller seal combined with packing and mechanical seal.

Presio handiko zigilatzeko urez hornitutako zigilu mekanikoa gomendatzen da ponpa seriean funtzionatzen denean, eta kanporatzaile-zigilua paketatzearekin konbinatuta etapa bakarreko ponpan erabiltzen da.

Ardatz-zigilu mota guztien uraren presioa eta kopurua honako hau da:

1) Uraren presioa zigilatzea

Enbalajearekin konbinatuta kanporatzeko zigilua duten etapa bakarreko ponparako, ardatzaren zigiluaren uraren presioa 0,2-0,3 Mpa da.

Etapa anitzeko serieko funtzionamendurako, kanporagailuaren zigiluarekin paketatzearekin konbinatuta, zigilatzeko uraren presioa honako hau izan behar du: n etapako zigilatzeko uraren presio baxuena =WG High Head Slurry Pump Hi + 0.7Hn Where: n ≥2.

Zigilu mekanikorako, ponparen fase bakoitzeko zigilatzeko uraren presioa ponparen irteerako presioa baino 0.1Mpa handiagoa da.

2) Uraren presioa zigilatzea (ikus 1. taula)

1. taula: zigilatzeko uraren parametroak

 

Ponpa Mota Markoa Zigilatzea Ura
(l/s)
Ur-juntura zigilatzea Hozte-uraren juntura
 Markoan
Hozteko uraren presioa
65WG 320 0.5 1/4" 1/2", 3/8" 0,05 eta 0,2Mpa
80 WG 406 0.7 1/2" 3/4", 1/2"
100WG
80WGP 406A
100WGP
150WG 565 1.2 1/2" 3/4", 3/4"
200WG
150WGP 565A
200WGP
250WG 743 1"
300WG
250WGP 743A

Eraikuntzaren Diseinua

WG Slurry Pump

Ponpa zatiaren materiala

Zatiaren izena Materiala Zehaztapena HRC Aplikazio OEM kodea
Atorrak eta bultzatzailea Metala AB27: - kromo zuriko burdina ≥56 5 eta 12 arteko pH-a duten higadura-egoera handiagoetarako erabiltzen da A05
AB15: - kromo zuriko burdina ≥59 Higadura egoera handiagoetarako erabiltzen da A07
AB29: - kromo zuriko burdina 43 pH baxuagorako erabiltzen da batez ere FGDrako. Gainera, garratz gutxiko egoerarako eta desulfuraziorako instalazioetarako erabil daiteke 4 baino gutxiagoko pHarekin A49
AB33: - kromo zuriko burdina   Minda oxigenatua garraiatu dezake pH 1 baino txikiagoa ez duena, hala nola fospor-igeltsua, azido nitrikoa, bitrioloa, fosfatoa eta abar. A33
Kanporatzaile eta kanporatzaile eraztuna Metala B27: - kromo zuriko burdina ≥56 5 eta 12 arteko pH-a duten higadura-egoera handiagoetarako erabiltzen da A05
Burdina grisa     G01
Betegarri-kutxa Metala AB27: - kromo zuriko burdina ≥56 5 eta 12 arteko pH-a duten higadura-egoera handiagoetarako erabiltzen da A05
Burdina grisa     G01
Markoa/Estalkia, errodamendu-etxea eta oinarria Metala Burdina grisa     G01
Burdina harikorra     D21
Ardatza Metala Karbonozko altzairua     E05
Ardatz mahuka, farolaren eraztuna/murriztailea, lepoko eraztuna, guruinaren torlojua Altzairu herdoilgaitza 4Cr13     C21
304 SS     C22
316 SS     C23
Eraztunak eta zigiluak Kautxua Butiloa     S21
EPDM kautxua     S01
Nitriloa     S10
Hypalon     S31
Neoprenoa     S44/S42
Viton     S50

 

 

Errendimendu Kurba

WG Slurry Pump

Instalazioaren neurriak

WG Slurry Pump

 

The Role of High Head Slurry Pumps in Long-Distance Slurry Transport Systems 


A high head slurry pump plays a pivotal role in transporting abrasive and dense slurries over long distances and significant vertical heights. Unlike standard industrial slurry pumps, high head pumps are specifically engineered to provide the increased pressure necessary for long pipeline systems, ensuring the efficient and consistent movement of solids-laden fluids.


In industries such as mining, mineral processing, coal preparation, and dredging, materials often need to be transported through extended pipelines, sometimes spanning hundreds of meters. The combination of high solids content, abrasive particles, and long transport distances makes conventional pumps unsuitable, as they may fail under high head conditions or suffer from excessive wear. A high head slurry pump addresses these challenges by delivering reliable performance while maintaining operational efficiency.


The design of a high head slurry pump emphasizes durability and resistance to wear. Casings and impellers are often made of high-chrome alloys or wear-resistant metals, allowing the pump to handle abrasive slurries with minimal erosion. Many slurry pump manufacturers also offer customizable options, such as modular impellers and liners, enabling easy maintenance and replacement, thereby reducing downtime and maintenance costs.


Additionally, high head slurry pumps are engineered for optimal hydraulic performance. Their impeller and volute designs minimize energy loss, allowing slurries to be transported at higher pressures without overloading the motor or increasing operational costs. This energy-efficient design is particularly important in industrial settings, where large volumes of slurry must be moved continuously over extended distances.


Applications of high head slurry pumps include tailings disposal, long-distance slurry transport from mines to processing plants, and chemical slurry movement in metallurgical operations. Their ability to sustain high pressures and manage abrasive fluids reliably makes them a critical component in industrial processes.


In conclusion, a high head slurry pump is essential for long-distance slurry transport systems, offering high pressure, durability, and efficiency. Selecting a reliable slurry pump manufacturer ensures that your plant receives a customized, high-performance solution tailored to demanding industrial applications.

 

How High Head Slurry Pumps Improve Efficiency in Mining and Processing Plants 


Mining and mineral processing plants require robust equipment capable of handling abrasive slurries with high solids content. A high head slurry pump is integral in these facilities, enhancing efficiency, reducing energy consumption, and minimizing maintenance needs. By delivering high pressure and flow over long distances, these pumps streamline material handling and improve overall plant productivity.


In mining operations, tailings and ore slurries often need to be transported from extraction sites to processing plants or storage areas. A high head slurry pump is specifically designed to handle this workload, maintaining consistent flow rates even with challenging slurry compositions. This ensures that production lines run smoothly without bottlenecks or downtime caused by pump failure.


The efficiency of a high head slurry pump also translates to energy savings. Advanced impeller designs and optimized hydraulic profiles reduce friction losses and pump energy requirements. Many industrial slurry pumps from reputable slurry pump manufacturers are designed with high efficiency in mind, allowing plants to lower operational costs while maintaining the required throughput.


Maintenance is another area where high head slurry pumps provide advantages. These pumps are constructed with wear-resistant materials such as high-chrome alloys or alloy steels, minimizing erosion from abrasive particles. Replaceable liners and impellers allow maintenance teams to perform targeted repairs without dismantling the entire pump system, reducing downtime and labor costs.
Furthermore, these pumps are available in various configurations, including horizontal and vertical designs, enabling flexible installation in confined or challenging spaces. The modular construction also supports scalability, allowing mining and processing plants to adjust pump capacity as operational needs evolve.


In summary, using a high head slurry pump in mining and processing plants improves slurry transport efficiency, reduces energy consumption, and minimizes maintenance costs. Partnering with a reliable slurry pump manufacturer ensures access to high-quality, durable pumps capable of withstanding abrasive industrial conditions while delivering long-term performance.

 

Material Selection for High Head Slurry Pumps: Metal vs Alloy 


Selecting the appropriate material for a high head slurry pump is crucial to maximize performance, wear resistance, and operational lifespan. Industrial applications often involve abrasive and corrosive slurries, which can quickly erode or damage pumps made from unsuitable materials. Choosing between metal and alloy construction depends on the specific process requirements and the slurry’s characteristics.


Traditional metal slurry pumps are typically made of ductile iron or stainless steel, offering robust structural strength and corrosion resistance. These materials are suitable for moderate abrasiveness and provide reliable long-term service. However, in highly abrasive conditions, such as those found in mining or mineral processing, standard metals may wear quickly, leading to reduced efficiency and increased maintenance costs.


Alloy construction, especially high-chrome or nickel-chrome alloys, offers superior wear resistance and hardness, making them ideal for heavy-duty industrial slurry transport. A high head slurry pump made from these materials can handle slurries with high solids concentrations and large particle sizes without rapid erosion. The enhanced durability ensures continuous operation with minimal downtime, which is essential for high-capacity industrial processes.


Many slurry pump manufacturers offer modular designs that allow clients to choose between metal or alloy liners and impellers based on operational needs. This flexibility enables plants to optimize pump longevity and reduce maintenance frequency. Additionally, alloy materials can improve hydraulic performance by maintaining smooth surfaces within the pump, reducing energy losses and improving overall efficiency.


The selection of materials also impacts cost-effectiveness. While alloy pumps may have higher initial investment costs compared to standard metals, their extended service life and reduced maintenance requirements often result in lower total operational costs over time. Industrial facilities that prioritize reliability and efficiency benefit significantly from investing in high-quality alloy high head slurry pumps.


In conclusion, material selection for a high head slurry pump plays a decisive role in durability, efficiency, and cost-effectiveness. Whether using metal or alloy construction, choosing a reliable slurry pump manufacturer ensures that the pump is tailored to handle demanding industrial slurries while providing long-term operational performance.

 

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