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KOLEBURG TB150SL Horizontal Submersible Pump Series Product 01

KOLEBURG TB150SL Horizontal Submersible Pump Series Product

No Clogging Centrifugal Pump

The KOLEBURG TA80SL Centrifugal Pump Series is a versatile, heavy-duty submersible pump line equipped with a  Double Spiral Pump Impeller and high-performance Motor. Engineered for broad-range flow and lift demands, it delivers 30–177 m³/h flow rate and 9–74m head at 720–1450rpm, with motor power spanning 2.2–45KW (2-pole configuration). Boasting IP68 waterproof rating, Class F insulation, and IE3 energy efficiency, it excels at handling solids-laden wastewater, abrasive slurries, and fibrous media, with customizable Pump Material and Heat Treatment solutions for diverse industrial scenarios.

Specification

 
ParameterSpecification
ModelKOLEBURG TB150SL Horizontal Submersible Pump
Flow Rate65-430 m³/h
Head5.5-60 m
Outlet Diameter150 mm
Motor Power3-110 KW
Motor Poles4/6/8/12 poles
Rotational Speed490-1450 rpm
Protection/Insulation ClassIP68 / Class F / IE3
Impeller TypeDouble Spiral Pump Impeller

KOLEBURG TB150SL Horizontal Submersible Pump

Model & Information

Model parameter table, performance curves, drawings

KOLEBURG TB150SL Series Product Model
NOModelFlow (m3/h)Lift (m)Power(KW)Speed( rpm)Inlet (DN)Motor Type
TB150SL-Q65H5-5N3F490655.53490150Twelve-stage motor
TB150SL-Q137H11N37-5D7201371137.5720150Eight-stage motor
TB150SL-Q174H27N22B144017427221440150Four-stage motor
TB150SL-Q196H16-5N13-5D72019616.513.5720150Eight-stage motor
TB150SL-Q198H12-5N11D72019812.511720150Eight-stage motor
TB150SL-Q263H13-5N18-5D72026313.518.5720150Eight-stage motor
TB150SL-Q300H27N45C100030027111000150Six-stage motor
TB150SL-Q396H50N90B145039650151450150Four-stage motor
TB150SL-Q430H60N110B1450430601101450150Four-stage motor
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        Tailored to your exact needs, our centrifugal pumps are engineered with application-specific parameters to deliver optimized efficiency, durability, and operational reliability.

Materials & Surface Treatments

Pump body & impeller

KOLEBURG TB150SL Horizontal Submersible Pump body and pump impeller main materials and heat treatment process

Pump Casing Material & Treatment

 
MaterialKey CharacteristicsHeat Treatment & Surface Processing
Cast Iron/Cast SteelCost-effective, high rigidityAnnealing; anti-corrosion coating
316/316L MaterialSuperior chloride resistanceSolution annealing; passivation
Duplex 2205High strength & corrosion resistanceSolution treatment; pickling
Rubber LinedAbrasion-resistantLining bonding; surface finishing

Impeller Materials and Handling

 
MaterialKey CharacteristicsHeat Treatment & Surface Hardening
ZG/20Cr13Wear-resistant, cost-effectiveQuenching + tempering (HRC 48-52)
316/316L MaterialDual anti-corrosion/wearSolution annealing; edge hardening
Duplex 2205High durability & strengthSolution treatment; precision grinding
Titanium AlloyExtreme corrosion resistanceSolution annealing; surface cleaning

Centrifugal pump

Application industry

KOLEBURG TB150SL Horizontal Submersible Pump, industry applications and advantages

Aerial photography of the solar sewage treatment plant

Ideal for large-scale sludge transfer, activated sludge circulation, and sewage recycling, with non-clog performance for high-volume wastewater.

Water tanks for wastewater aeration and biological purification in sewage treatment plants

Double spiral impeller prevents high-viscosity sludge clogging, ensuring uninterrupted conveyance.

Cooling Tower Pumps

Chemical plant

Suitable for transferring corrosive industrial effluents and chemical slurries, compatible with corrosion-resistant material configurations.

Recommended Material Combinations

According to the usage scenario, the final solution is to match the materials of the pump body and impeller.

 
Application ScenarioPump CasingImpellerCombination Rationale
Sewage Treatment PlantCast IronZG/20Cr13Cost-effective; wear-resistant for ultra-large flow wastewater
Sludge Thickening System316/316L MaterialDuplex 2205Corrosion-resistant for high-viscosity sludge
Chemical Plant316/316L Material316/316L MaterialFull corrosion protection for chemical effluents
Mining IndustryRubber LinedZG/20Cr13Abrasion-resistant for solid-laden mine water

Key Product Advantages

  • Ultra-Large Flow & High-Lift Versatility: The double spiral impeller ensures smooth passage of solids and viscous media, while the 65-430 m³/h flow and 5.5-60m head cover diverse large-scale conveyance needs, minimizing operational interruptions.
  • Strong Adaptability to Harsh Conditions: Multiple premium material options (including 316/316L, Duplex 2205) and professional Heat Treatment processes enhance corrosion, wear, and pressure resistance, adapting to extreme industrial media.
  • Reliable & Energy-Efficient Operation: IP68 waterproof rating and IE3 high-efficiency motor guarantee long service life and low energy consumption, with 4/6/8/12-pole motor options optimizing performance for different flow, lift, and viscosity requirements.
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Comprehensive reference

Provide you with a multi-caliber selection range reference

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Our advantages

Double Spiral Pump Impeller

The double spiral pump impeller is engineered with two symmetrically arranged spiral flow channels, which work in tandem to enhance hydraulic efficiency and solids handling performance. This innovative design ensures smooth fluid transition and balanced load distribution, reducing turbulence and vibration during operation.

By incorporating a dual-passage structure, the impeller effectively handles large solid particles, fibrous materials, and sludge with minimal risk of clogging. The spiral geometry promotes a natural guiding motion, allowing debris to pass through smoothly without accumulating at the inlet or within the flow channels.

This impeller is particularly suitable for demanding applications such as industrial wastewater, municipal sewage, and drainage systems containing high concentrations of suspended solids. Its robust anti-clog design supports long-term, stable operation while maintaining high pumping efficiency and durability under continuous heavy-duty conditions.

Double Spiral Pump Impeller
Double Spiral Pump Impeller

Our advantages as a centrifugal pump manufacturer

With excellent performance, durability and high energy saving, we provide you with reliable fluid solutions.learn more

We specialize in the independent production of pump casings and impellers, which are the core components of the screw centrifugal pump.

  • The pump body is precisely cast and machined in-house, ensuring excellent dimensional accuracy and long-term durability.

  • The impeller adopts high-efficiency spiral and centrifugal geometry, manufactured using CNC machining and dynamic balancing to guarantee smooth operation and superior hydraulic performance.

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Cooperation Advantages

Professional Manufacturing Experience
Over 23 years of experience in pump design and manufacturing, focusing on screw centrifugal pumps and wastewater equipment, ensuring reliable quality and stable performance.

Independent Core Component Production
We manufacture pump casings and impellers in-house, using advanced CNC machining and dynamic balancing technology, to ensure precise assembly and high hydraulic efficiency.

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We provide custom-designed pump solutions tailored to the specific needs of each client.
Our professional engineering team can adjust key parameters — including flow rate, head, material, inlet/outlet interface, and sealing method — to achieve optimal performance for different working conditions.

Through advanced CFD hydraulic optimization and precision manufacturing, we ensure every customized pump delivers high efficiency, reliability, and durability even under complex environments.

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Product application

Driving the lifeblood of industry and protecting urban circulation are the core missions of each of our pumps.

Pump Centrifugal Parts

Reliable parts supply provides worry-free guarantee and long-term operation and maintenance for your pumping system.

Frequently Asked Questions (FAQs)

1. How do I select the right centrifugal pump for my application?

Our engineering team provides free, expert selection support. Simply share your key parameters—such as fluid type, required flow rate (e.g., GPM or m³/h), total head (e.g., feet or meters), temperature, and system specifications—and we will recommend the optimal pump model for maximum efficiency and reliability.

2. What is your standard lead time for orders?

For standard models, we often have stock available or can offer short production cycles. The exact lead time depends on the specific pump model and our current order schedule. We understand project urgency and offer expedited production options for critical needs whenever possible.

3. What kind of warranty and after-sales support do you provide?

All our pumps come with a comprehensive warranty. We are committed to your long-term satisfaction through a robust support network, offering rapid technical assistance, readily available spare parts, and expert maintenance services to minimize downtime.

4. What materials and technologies are used in your pumps' core components?

The longevity of critical parts like impellers and mechanical seals is our priority. We utilize high-performance materials (e.g., stainless steel, cast iron) and precision manufacturing, including dynamic balancing. Our mechanical seals are sourced from leading suppliers to ensure durability in demanding conditions.

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Talk to Our Product Experts Today!

Related Submersible Pump FAQS

1. Core Concepts and Working Principles of Double Spiral Impeller Submersible Pumps

 

1.1 What is a double spiral impeller submersible pump and how does it operate?

 
A double spiral impeller submersible pump is a heavy-duty submerged fluid-handling device equipped with a Double Spiral Pump Impeller that creates dual spiral flow paths to deliver stable ultra-large flow and high-lift conveyance. Its working principle relies on the impeller’s rotation (490-1450 rpm for the KOLEBURG model) to generate powerful centrifugal force, drawing media into the pump and pushing it through the 150mm outlet without priming. Integrated with advanced Pump Technology, this design minimizes clogging from high-viscosity media and solid particles, making it ideal for extreme flow (65-430 m³/h) and lift (5.5-60m) applications.
 

1.2 What are the key components of a durable ultra-high flow high-lift submersible pump?

 
Heavy-duty submersible pumps depend on precision-engineered components to withstand extreme flow, high lift, and submerged conditions. The table below outlines core parts, their functions, and quality guarantees aligned with global standards:
 
Core ComponentPrimary FunctionQuality Assurance
Pump BodyEncloses internal components and guides high-pressure mediaHigh-pressure resistant casting with leak-proof sealing
Double Spiral ImpellerDrives ultra-large flow and high-lift fluid movementWear-resistant materials and precision heat treatment
MotorPowers impeller rotation for heavy-duty tasksIE3 efficiency and Class F insulation for 3-110 KW loads
Mechanical SealPrevents media ingress into the motorCorrosion-resistant design for long-term sealing under high pressure
 
These components meet strict manufacturing tolerances (e.g., ISO 9906), ensuring the pump operates reliably in harsh industrial environments and complies with international performance benchmarks.
 

2. Application Scenarios and Media Compatibility of Ultra-High Flow High-Lift Submersible Pumps

 

2.1 Which industries benefit from double spiral impeller submersible pumps like the KOLEBURG TB150SL?

 
Ultra-high flow (65-430 m³/h) and high-lift (5.5-60m) submersible pumps excel in large-scale industrial and environmental tasks. The table below highlights key applications and product advantages:
 
Application ScenarioKey Product AdvantageIndustry Alignment
Sewage Treatment Plant65-430 m³/h flow supports large-scale wastewater processingEnvironmental Protection Industry
Sludge Thickening SystemDouble spiral impeller prevents high-viscosity sludge cloggingWastewater treatment sector standards
Chemical PlantCorrosion-resistant materials handle large-volume chemical effluentsIndustrial Productionk
Mining Industry5.5-60m high lift adapts to deep mine dewateringSpecial projects
 
Each scenario leverages the pump’s dual advantages of ultra-large flow and high lift, ensuring compliance with industry-specific operational requirements.
 

2.2 What types of media can double spiral impeller ultra-high flow pumps handle?

 
The KOLEBURG TB150SL’s flexible Pump Material options enable compatibility with diverse extreme media. The table below details recommended media and corresponding materials:
 
Media TypeKey CharacteristicsRecommended Material
Municipal SewageUltra-high volume, suspended solidsCast Iron / ZG/20Cr13
Industrial SludgeHigh viscosity, abrasive particlesDuplex 2205
Chemical EffluentsMild to moderate corrosiveness316/316L Material
Mine WaterSolid-laden, high wear potentialRubber Lined
 
This versatility ensures the pump performs reliably in harsh media conditions while maintaining extended service life, meeting international fluid-handling safety standards (e.g., ANSI/API).
 

3. Specifications and Performance Metrics of Ultra-High Flow High-Lift Submersible Pumps

 

3.1 What are the critical performance parameters of the KOLEBURG TB150SL?

 
Performance parameters define a pump’s suitability for extreme-scale tasks. The table below presents core specifications, all validated to industry standards:
 
Performance ParameterSpecificationIndustry Advantage
Flow Rate65-430 m³/hUltra-wide range for mass conveyance
Head5.5-60 mCovers low to high lift requirements
Outlet Diameter150 mmExtra-large size minimizes flow resistance
Motor Power3-110 KWScalable power for heavy-duty loads
Rotational Speed490-1450 rpmOptimized speed balances flow, lift, and wear
 
These parameters are calibrated to balance power, efficiency, and durability, ensuring consistent performance across industrial and environmental settings.
 

3.2 How do motor pole configurations affect ultra-high flow high-lift pump performance?

 
Motor pole count directly impacts speed, torque, flow, and lift. The KOLEBURG TB150SL offers 4/6/8/12-pole options, with key differences outlined below:
 
Motor PolesRotational SpeedPerformance TraitIdeal Application
4-pole1450 rpmMaximum flow, medium liftUltra-high-volume, low-to-medium lift scenarios
6-pole980 rpmBalanced flow, moderate liftMedium-lift, high-viscosity media
8-pole730 rpmStable flow, high liftHigh-lift, large-volume conveyance
12-pole490 rpmLower flow, maximum liftExtreme-lift (50-60m) tasks
 
All motors comply with IE3 high-efficiency standards, reducing operational costs and aligning with global energy regulations (e.g., EU ErP Directive).
 

4. Material Selection and Heat Treatment for Pump Casings and Impellers

 

4.1 What material options are available for heavy-duty pump components?

 
Material selection is critical for withstanding ultra-high flow, high lift, and harsh media. KOLEBURG offers a comprehensive range of options:
 
ComponentMaterial OptionsKey Advantage
Pump CasingCast Iron, Carbon Steel, 304/304L, 316/316L, Duplex 2205, Rubber LinedBalances pressure resistance, durability, and cost
ImpellerZG/20Cr13, 316/316L, Duplex 2205, Titanium AlloyOptimized for wear, corrosion, and high-pressure resistance
 
All materials meet international standards (e.g., ASTM, DIN), ensuring compatibility with global industry requirements and reliable performance under extreme stress.
 

4.2 How do heat treatment processes enhance heavy-duty pump durability?

 
Professional Heat Treatment processes improve material mechanical properties, critical for pump longevity in ultra-high flow and high-lift operations:
 
Heat Treatment MethodApplication ComponentCore Benefit
AnnealingCast Iron CasingsRelieves internal stress, prevents cracking under high pressure
Solution AnnealingStainless Steel PartsEnhances corrosion resistance and ductility
Quenching + TemperingZG/20Cr13 ImpellersHardens material (HRC 48-52), improves wear resistance
 
These processes are applied per material specifications, ensuring components exceed industry durability standards and deliver long service life.
 

5. Installation, Operation, and Maintenance of Ultra-High Flow High-Lift Submersible Pumps

 

5.1 What are the key steps for installing a heavy-duty horizontal submersible pump?

 
Proper installation is vital for optimal ultra-high flow and high-lift performance. The table below outlines core steps aligned with industry best practices:
 
Installation StepKey OperationSafety & Performance Note
Site PreparationEnsure level, load-bearing installation areaReduces vibration during high-pressure operation
Pipeline ConnectionUse 150mm diameter pipes with secure CouplingPrevents leakage under extreme flow and pressure
Motor WiringConnect to compatible power supply, verify insulationComplies with electrical safety standards (IEC 60034)
Submersion CheckEnsure full submersion without air entrapmentOptimizes suction and motor cooling for heavy loads
 
Following these steps ensures the pump operates within design parameters, reducing malfunction risks and extending service life.
 

5.2 What maintenance schedule is recommended for ultra-high flow high-lift pumps?

 
Regular maintenance maximizes reliability and minimizes downtime for heavy-duty equipment. The table below outlines best-practice intervals:
 
Maintenance IntervalCore TasksPurpose
MonthlyInspect mechanical seal for leaks, clean intakePrevents clogging and media leakage
QuarterlyCheck motor temperature, lubricate BearingReduces friction during optimized speed operation
Semi-AnnuallyInspect impeller wear, test insulation resistanceEnsures efficient ultra-high flow and high-lift performance
AnnuallyReplace worn parts (O-rings, seals), full performance testRestores optimal capacity, complies with maintenance standards
 
Adhering to this schedule maintains the pump’s IE3 efficiency and IP68 protection, meeting industry reliability benchmarks for heavy-duty submersible pumps.
 

6. Industry Standards and Certifications for Submersible Pumps

 

6.1 What international standards do ultra-high flow high-lift submersible pumps comply with?

 
The KOLEBURG TB150SL is designed to meet global industry standards, ensuring safety and performance in extreme applications:
 
Industry StandardCompliance AspectUser Benefit
IP68 ProtectionWaterproof/dustproof performanceSafe operation in fully submerged conditions
IE3 EfficiencyMotor energy consumptionLower operational costs for continuous heavy-duty use
ISO 9001Quality management systemConsistent product reliability
Class F InsulationMotor temperature resistanceSafe operation at 3-110 KW loads
 
Compliance with these standards demonstrates adherence to global best practices, providing users with confidence in safety and performance.
 

6.2 Why is the IP68 rating essential for heavy-duty submersible pump safety?

 
The IP68 rating is the highest protection class for submerged equipment, critical for ultra-high flow and high-lift scenarios:
 
  • IP6X (Dust Protection): Complete dust ingress prevention, protecting electrical components from corrosion and short circuits in industrial environments.
  • IPX8 (Water Protection): Safe operation in continuous submersion (customizable depth), suitable for long-term use in large sewage tanks, mine sumps, and industrial basins.
 
This rating ensures the pump operates safely in harsh wet environments, complying with international electrical safety standards (e.g., IEC 60529).
 

7. Customization and After-Sales Services for Heavy-Duty Pumps

 

7.1 Can ultra-high flow high-lift submersible pumps be customized for specific needs?

 
Yes, KOLEBURG offers tailored customization to meet unique extreme-scale application requirements:
 
Customization OptionAvailable ChoicesApplication Scenario
Material Selection304/304L, 316/316L Material, Titanium AlloyCorrosive/abrasive extreme media
Motor Power Adjustment3-110 KW rangeSpecific flow/lift demands
AccessoriesSpecial Electrical Cabinet, automatic couplerAutomated or remote heavy-duty operation
 
All customizations maintain compliance with industry standards, ensuring performance and safety are not compromised.
 

7.2 What after-sales support is provided for KOLEBURG heavy-duty pumps?

 
KOLEBURG delivers comprehensive after-sales services to maximize customer value for extreme-scale equipment:
 
  • 1-year warranty on pump body and motor, covering manufacturing defects.
  • 24/7 technical support for installation, operation, and troubleshooting of ultra-high flow high-lift systems.
  • Fast delivery of genuine spare parts (e.g., mechanical seals, impellers) to minimize downtime.
  • Annual performance inspection and maintenance guidance for heavy-duty operation.
 
These services align with global after-sales standards, ensuring reliable support throughout the pump’s lifecycle.
 

8. Safety and Applicability in Extreme Harsh Environments

 

8.1 How to ensure safe operation of heavy-duty pumps in corrosive high-pressure environments?

 
Safe operation in corrosive high-pressure environments relies on strategic material selection and design:
 
  • Choose corrosion-resistant materials (316/316L, Duplex 2205, Titanium Alloy) based on media chemistry and pressure requirements.
  • Opt for sealed components (e.g., mechanical seals) to isolate electrical parts from corrosive media under high pressure.
  • Conduct regular corrosion inspections per industry guidelines (e.g., ASTM G48).
 
The KOLEBURG TB150SL’s material flexibility and sealed design ensure safe operation in corrosive extreme environments, meeting international safety standards.
 

8.2 Are ultra-high flow high-lift submersible pumps suitable for 24/7 continuous operation?

 
Yes, the KOLEBURG TB150SL is engineered for 24/7 continuous extreme-scale operation:
 
  • The 3-110 KW motor is designed for long-running durability with Class F insulation, supporting heavy-duty loads.
  • IP68 protection prevents overheating and moisture damage during extended use.
  • Wear-resistant materials and heat treatment withstand prolonged stress from 65-430 m³/h flow and 5.5-60m lift.
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