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Pump tube PP

Product information "Pump tube PP"

Description:

The Lutz Pump tube (PP) is suitable for corrosive, aqueous to slightly viscous media. Depending on the application, various Motors are available, which you can combine with the Pump tube at any time. This gives you flexibility at all times and saves important resources.

  • Also available in special immersion depths from 200 - 2500 mm
  • Pump tubes equipped with Lutz Original handwheel
  • Suitable for filling or decanting oils such as rapeseed oil and vegetable oil

Properties & advantages

  • Optionally with electric or compressed air drive
  • No lubricants and therefore no contamination of the pumped medium by lubricants
  • Optimised drum emptying
  • Universally resistant PTFE shaft bearing
  • Maintenance without special tools
  • Seal modules of the mechanical seal-sealed (GLRD) or seal-less (DL) Pump are interchangeable
Bearings (Material): ETFE / PTFE
Delivery head (up to max. m wc)*.: 25
Density (up to kg/dm³): 1,9
Drive shaft (Material): Hastelloy C (2.4610)
Flow rate (up to max. g/min)*.: 25.01
Immersion depth (inch): from 19" (500 mm)
Immersion tube diameter (max. inch): 41
Impeller (Material): PP (polypropylene)
Liquid temperature (max. °C): 50 (122,0 °F)
Mechanical seal (Material): No Seals in contact with the medium
Pump tube material (Material): PP (polypropylene)
Static seal (Material): No Seals in contact with the medium
Thread (inch) outside: 1 1/4"
Type: PP 41-L-DL HC
Type of impeller / Drive type: Radial-flow impeller
Type of seal: Sealless (SL)
Viscosity (up to max. mPas)*.: 800

When selecting the appropriate drive type for a Pump tube, the question often arises in practice as to whether an impeller or a rotor should be used. The decision depends largely on the hydraulic requirements of the specific application.

Application 1: High delivery pressure and greater delivery heads required

Requirement
If long hose or pipe runs need to be overcome, the fluid has increased Viscosity or density, or higher overall pressure losses occur, a greater delivery head is required.

Typical influencing factors are:

  • Long hose lengths
  • Viscous or heavy fluids
  • Required pressure build-up in the system

Recommended solution
Impeller (L) = Radial impeller

The impeller is designed for applications where a stable pressure build-up is required. The pump tube thus enables reliable delivery even with increased resistance in the system and ensures a constant delivery capacity under demanding operating conditions.

Application 2: High flow rate with free discharge

Requirement
Where there is a free discharge and no significant Pressure losses in the delivery system, the priority is often to achieve the highest possible flow rate.

Typical influencing factors are:

  • Short hose lengths
  • Low flow resistance
  • Focus on flow rate rather than delivery head

Recommended solution
Rotor (R) = Axial impeller

The rotor is designed for maximum flow rates at minimum back pressure. It is ideal for applications with a free outlet where large flow rates need to be delivered efficiently and economically.

Conclusion:
The choice between an impeller and a rotor depends primarily on the hydraulic requirements of the application. For higher pressure requirements and greater delivery heads, the impeller is the appropriate solution. For free discharge and where high flow rates are required, the rotor is recommended.

When selecting a Pump tube, the correct seal type depends primarily on the properties of the pumped medium. The decisive factor is whether the medium tends to form deposits, crystallize, stick, or harden.

Pump tube with mechanical seal (GLRD)

Pump tubes with mechanical seals are the preferred choice when pumping media that tend to crystallize, stick, harden, or spoil. The mechanical seal prevents the pumped medium from entering the shaft guide tube. This reduces the risk of deposits and prevents the Drive shaft from seizing.

Another advantage is the simplified cleaning and flushing of the pump tube, particularly with demanding or changing media.

During operation, a thin lubricating film formed from the pumped medium develops between the sliding surfaces of the mechanical seal. For this reason, dry running must be avoided at all costs, as this can lead to rapid wear or damage to the seal.

Recommended for:

  • crystallizing media
  • sticky or hardening liquids
  • perishable pumped media
  • applications with increased cleaning and flushing requirements

Seal-less Pump Tube (DL)

Seal-less Pump tubes are suitable for all applications where the pumped medium does not cause critical deposits or scaling. Since there is no mechanical seal, these pump tubes have a simpler design and are less sensitive to brief dry running.

Short-term dry running does not usually cause immediate damage to the Pump tube. Nevertheless, dry running should always be avoided to prevent unnecessary wear and maximize the Pump’s service life. Operation should therefore always be supervised.

Recommended for:

  • non-critical, clean, or low-viscosity fluids
  • Applications without a tendency toward deposits
  • Applications with the possibility of short-term dry running

Conclusion:

If the pumped medium tends to crystallize, stick, harden, or spoil, a pump tube with a Mechanical seal should generally be used. In all other standard pumping applications, a seal-less pump tube usually fits.

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Accessory Items

HC Wave
Impeller
Hose connection
Hose connection
for low-viscosity acids
Description: The hose connection connects the delivery hoses to the Pump tubes, the double diaphragm pumps or the dispensing nozzle. When using a double diaphragm pump, a suitable reducing nipple must be used in addition to the hose connection Special connections are available on request Properties & advantages Nominal diameters: DN 13 / DN 19 / DN 25 / DN 32 Material: PP / PVDF / aluminium / stainless steel / HC
HC Wave
Impeller
Outlet bend
Outlet bend
for low-viscosity acids
Description: The discharge elbow enables the direct transfer or filling of liquids into another tank. They are available in the materials PP, aluminium and stainless steel and are screwed onto the pump outlet. Nominal diameters: DN 19 / DN 25 Properties & advantages Enables liquids to be transferred quickly and directly Union nut (1 1/4")
HC Wave
Impeller
IBC Traverse Fasspumpen
IBC traverse
for low-viscosity acids
Description: The IBC traverse is used to safely remove and install the Pump tubes or the double diaphragm pump. Suitable for Drum pumps, Eccentric screw pumps B70 and Diaphragm pumps Includes transport straps for lifting vehicles and tensioning hooks for fixing to the container Properties & advantages Compatible with all standard IBC containers Material: stainless steel Clamping hook: galvanised steel for Drum pumps / B70 Version: plastic guide sleeve with Ø 55 mm
HC Wave
Impeller
Hose set alkalis + acids
Hose set alkalis + acids
for low-viscosity acids
Description: The hose set is suitable for aggressive and non-flammable liquids, but also for food liquids. The hose is made of PVC with an embedded and galvanised steel wire helix (smooth inside and outside). The set is used for connection to the Pump tube or nozzle. Also available in special lengths on request Properties & advantages Nominal diameter (DN) 19 (3/4") PP hose connection Pre-assembled hose connections and hose clamps
HC Wave
Impeller
Lutz Durchflussmesser TR 3 PP
TR3 Flow meter (PP)
for low-viscosity acids
Description: Easy to operate, compact design and quick to install on all drum and container pumps: the Lutz TR3 flow meter in PP or PVDF. A handy meter that you can "count on" in any situation. The symmetrical measuring chamber allows it to be used for all flow directions and measures low-viscosity, non-flammable media precisely, quickly and, above all, efficiently. PP for neutral and aggressive media Examples of media: Glycol, ferric chloride, hydrochloric acid, phosphoric acid, etc. Two 1.5 V batteries (AAA) replaceable Properties & advantages Measurement according to the turbine wheel principle Displays the partial and total quantity Variable display position: variable Mobile on a Drum pump or with nozzle connection Measuring range (min. g/min) from 5 l/min - 120 l/min Simple battery change
HC Wave
Impeller
Dispensing nozzle PP
Dispensing nozzle PP
for low-viscosity acids
Description: For filling and decanting neutral and aggressive liquids. The dispensing nozzle's housing and valve plug are made of polypropylene (PP). The dispensing nozzle is also equipped with a protective bracket and two outlet nozzles(Ø 23 mm and Ø 12 mm). Connection: external thread G 1 1/4" Properties & advantages Simple adjustment of the volume flow Safe filling or decanting of the respective liquid Easy to operate
HC Wave
Impeller
PVC hose, fabric-reinforced
PVC hose, fabric-reinforced
for low-viscosity acids
Description: The hose is suitable for aggressive and non-flammable liquids. It is made of fabric-reinforced PVC. Also available in special lengths on request Nominal diameter: DN 32 / DN 38 Properties & advantages Operating pressure up to max. 6 / 7 bar
HC Wave
Impeller
Barrel adapter
Barrel adapter
for low-viscosity acids
Description: The drum adapter is for fastening the Pump or Pump tubes in the drum opening. It prevents the Pump from tipping over when the drum is empty. Material: PP / ST37 / steel, galvanised / PE Properties & advantages Stabilisation of the Pump tube External thread 2", 56 x 4 and 70 x6
HC Wave
Impeller
Suspension device
Suspension device
for low-viscosity acids
Description: The suspension device is used to store the Drum pumps and prevents them from falling over. For Pump tubes with handwheel Properties & advantages Protects against falling over Increases the utility value
HC Wave
Impeller
PVC spiral hose
PVC spiral hose
for low-viscosity acids
Description: The hose is suitable for aggressive and non-flammable liquids, but also for food liquids. It is made of PVC with embedded and galvanized steel wire helix (smooth inside and outside). Also available in special lengths on request Nominal width: DN 19 / DN 25 / DN 32 Features & advantages Pumped medium temperature: -5 to +65 °COperating pressure max. 4.5 - 5 bar Complies with EU Regulation 10/2011 and 1935/2004.
HC Wave
Impeller
Foot strainer for Pump tubes Ø 41mm
Foot strainer for Pump tubes Ø 41mm
for low-viscosity acids
Description: The foot strainer can be used for PP, PVDF, aluminium and stainless steel Pump tubes. By attaching the strainer to the pump foot, coarse impurities can be kept away from important components such as the drive (rotor, impeller). For attaching to the pump base and the suction pipe with Ø 41 mm Properties & advantages Prevents contamination in the Pump tube by filtering it out Outer pipe diameter 55 mm Mesh size 20 x 2 mm
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