379 Low & Medium Pressure filters. LMD 211 series. Maximum pressure up to 60 bar - Flow rate up to 330 l/min. Low & Medium Pressure fi lters

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1 Low & Medium Pressure fi lters LMD series Maximum pressure up to 60 bar Flow rate up to 0 l/min 79 Low & Medium Pressure filters

2 FILTER SIZING The correct filter sizing have to be based on the variable pressure drop depending by the application. For example, for the return filter the pressure drop have to be in the range bar. The pressure drop calculation is performed by adding together the value of the housing with the value of the filter. The pressure drop in the housing is proportional to the fluid density (kg/dm ); all the graphs in the catalogue are referred to mineral oil with density of 0.86 kg/dm. The filter pressure drop is proportional to its viscosity (mm /s), the corrective factor Y is related to an oil viscosity different than 0 mm /s. Sizing data for single cartridge, head at top pc = housing pressure drop [bar] pe = pressure drop [bar] Y = Multiplication factor Y (see correspondent table), depending on the filter size, on the filter lenght and on the filter media Q = flow rate (l/min) V reference viscosity = 0 mm /s (cst) V = operating viscosity in mm /s (cst) pe = Y : 000 x Q x (V/V) p Tot. = pc + pe Calculation examples with HLP Mineral oil Variation in viscosity Application data: Top tank return filter with inline connections Pressure Pmax = 0 bar Flow rate Q = 0 l/min Viscosity V = 6 mm /s (cst) Oil viscosity = 0.86 kg/dm Required filtration efficiency = μm with absolute filtration With bypass valve and / inlet connection From the working pressure and the flow rate we understand it should be possible using the following top tank return filter series: MPT, MPH and FRI. Let s proceed with MPT series. The size 0 doesn t achieve the required flow rate, therefore we have to consider the size 00. The final version of size 00 (0, 0, 0, 0 and ) will be then defined in function of the mounting characteristics. pc = 0.0 bar ( see graphic below, considering size 00 with the max available lenght * to get the lowest pressure drop) pe = (.0 : 000) x 0 x (6/0) = 0.7 bar p Tot. = = 0. bar The selection is correct because the total pressure drop value is inside the admissible range for top tank return filters. It is of course possible trying to find a different solution, according to the mounting position or to other commercial need, repeating the previous steps while using a different series or lenght. Δp bar MPT 0 Length * G / Flow rate l/min housings p pressure drop. The curves are plotted using mineral oil with density of 0.86 kg/dm in compliance with ISO 968. p varies proportionally with density. Corrective factor Corrective factor Y, to be used for the filter pressure drop calculation. The values depend to the filter size and lenght and to the filter media. Reference viscosity 0 mm /s Return filters MF 00 MF 00 MFX 00 MF 00 MFX 00 MF 80 MFX 80 MF 90 MFX 90 MF 00 MFX 00 MF 70 MFX 70 CU 0 CU 00 CU 00 CU 0 CU 60 CU 80 MR 00 MR 0 MR 60 MR 80 A Nominal filtration H Series A06 A0 A6 A P0 P M M60 M Introduction 0

3 Corrective factor Corrective factor Y, to be used for the filter pressure drop calculation. The values depend to the filter size and lenght and to the filter media. Reference viscosity 0 mm /s Suction filters SF 0 Nominal filtration P0 P 6 Low & Medium pressure filters CU 0 A FILTER SIZING Nominal filtration NW Series A06 A0 A6 A P0 P M Return / Suction filters RSX 6 A0.. A6..87 A.8. CU 0 DN RSX CU CU CU MR Introduction

4 FILTER SIZING Corrective factor Corrective factor Y, to be used for the filter pressure drop calculation. The values depend to the filter size and lenght and to the filter media. Reference viscosity 0 mm /s High pressure filters HP 0 A N R Series A06 A0 A A Nominal filtration M Stainless steel high pressure filters HP 0 A A06 A0 A A HP HP HP HP HP HP HP HP HP 0 A H U Series A06 A0 A A HP HP A0 A06 A0 A6 A Nominal filtration M HP HF HP Introduction

5 Selection Software FILTER SIZING Step Select FILTERS Step Choose fi lter group (Return, Pressure, etc.) Step Choose fi lter type (MPF, MPT, etc.) in function of the max working pressure and the max fl ow rate Step Push PROCEED Step Insert all application data to calculate the fi lter size following the sequence: working pressure working fl ow rate working pressure drop working temperature fl uid material and fl uid type fi ltration media connection type Step 6 Push CALCULATE to have result; in case of any mistake, the system will advice which parameter is out of range to allow to modify/adjust the selection Step 7 Download PDF Datasheet Report.aspx pushing the button Drawing Introduction

6 Low & Medium Pressure filters 78

7 Low & Medium Pressure fi lters LMD series Maximum pressure up to 60 bar Flow rate up to 0 l/min 79 Low & Medium Pressure filters

8 LMD GENERAL INFORMATION Technical data Low & Medium Pressure filters Maximum pressure up to 60 bar Flow rate up to 0 l/min housing materials Head: Aluminium Bowl: Cataphoretic Painted Steel Bypass valve: AISI 0 Nylon Seals Standard NBR series A Optional FPM series V Pressure Working pressure: 6 MPa (60 bar) Test pressure: 9 MPa (90 bar) Burst pressure: MPa (0 bar) Pulse pressure fatigue test: cycles with pressure from 0 to 6 MPa (60 bar) Temperature From C to +0 C Connections Inlet/Outlet InLine Bypass valve Opening pressure. bar ±0% Other opening pressures on request. Note LMD 0 filters are provided for vertical mounting p type Microfibre filter s series N: 0 bar Fluid flow through the filter from OUT to IN. Weights [kg] and volumes [dm ] Weights [kg] Volumes [dm ] Length Length LMD Hydraulic symbols Style S Style B Low & Medium Pressure filters 80

9 GENERAL INFORMATION LMD The curves are plotted using mineral oil with density of 0.86 kg/dm in compliance with ISO 968. p varies proportionally with density. Pressure drop 0.9 LMD Δp Housing housings p pressure drop Δp bar Flow rate l/min 9 LMD Bypass valve pressure drop Δp bar Flow rate l/min 8 Low & Medium Pressure filters

10 LMD Designation & Ordering code Series and size LMD Length Bypass valve S Without bypass Seals and treatments A NBR V FPM W NBR compatible with fluids HFAHFBHFC B. bar Connections C G / F / NPT I SAE 7/8 UN L / SAE 000 psi/m + G / M / SAE 000 psi/unc + / NPT N / SAE 000 psi/unc + SAE 0 /8 UN Connection for differential indicator 6 With plugged connection COMPLETE FILTER Configuration example: Filtration rating Axx Mxx Pxx LMD B A C 6 A0 N P0 Filtration rating (filter media) A0 Inorganic microfiber µm M Wire mesh µm A06 Inorganic microfiber 6 µm M60 Wire mesh 60 µm A0 Inorganic microfiber 0 µm M90 Wire mesh 90 µm A6 Inorganic microfiber 6 µm P0 Resin impregnated paper 0 µm A Inorganic microfiber µm P Resin impregnated paper µm Element p N 0 bar Execution P0 MP Filtri standard Pxx Customized Element series and size CU0 FILTER ELEMENT Configuration example: CU0 A0 A N P0 Element length Filtration rating (filter media) A0 Inorganic microfiber µm M Wire mesh µm A06 Inorganic microfiber 6 µm M60 Wire mesh 60 µm A0 Inorganic microfiber 0 µm M90 Wire mesh 90 µm A6 Inorganic microfiber 6 µm P0 Resin impregnated paper 0 µm A Inorganic microfiber µm P Resin impregnated paper µm Seals A NBR V FPM W NBR Filtration rating Axx Mxx Pxx compatible with fluids HFAHFBHFC Element p N 0 bar Execution P0 MP Filtri standard Pxx Customized ACCESSORIES Differential indicators page page DEA Electrical differential indicator 9 DTA Electronic differential indicator DEM Electrical differential indicator 90 DVA Visual differential indicator DLA Electrical / visual differential indicator 0 DVM Visual differential indicator DLE Electrical / visual differential indicator Additional features page T Plug Low & Medium Pressure filters 8

11 LMD length LMD Dimensions H [mm] Connections C F I L M N R M0 /8 UNC M0 /8 UNC Recommended clearance space for maintenance 8 Low & Medium Pressure filters

12 LMD Order number for spare parts SPARE PARTS LMD c d e f g h a b Item: series LDD Q.ty: pc. Q.ty: pc. Q.ty: pcs. (a h) Seal Kit code number Indicator connection plug NBR FPM NBR FPM See order table TH TV Low & Medium Pressure filters 8

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