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China Remote Electromagnetic Flow Meter With Indicator And Totalizer

Melan Measurement & Control Instruments (Shanghai) Co.,Ltd.
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Melan Measurement & Control Instruments (Shanghai) Co.,Ltd.

China Remote Electromagnetic Flow Meter With Indicator And Totalizer

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Product Details

                                                 China Remote Electromagnetic Flow Meter With Indicator And Totalizer

 

1. Introduction

The MLF electromagnetic flowmeter works according to Faraday's law of electromagnetic induction and consists of a sensor and a converter. Used to measure the conductivity of liquids or solids. Under normal circumstances, its conductivity should be greater than 5μS/cm (the conductivity of tap water and raw water is about 100-500μS/cm), and it can also be used to measure acids, alkali, brine, pulp or pulp and other media. But these media cannot contain a lot of magnetic substances and bubbles.

MLF electromagnetic flowmeter is an instrument for measuring liquid fluidity. It is widely used in flow measurement in metallurgy, chemical industry, paper making, environmental protection, petroleum, textile, food, urban management, water plant and other industries.

Administration, Water Works,etc.

 

2. Quick Details

MLF electromagnetic flowmeter is explosion-proof design.

Function of low conductivity measurement.

There are nine languages(Chinese, English, Korean, Polish, Turkish, French and Portuguese languages) options to meet the needs of different customers.

It has the function of self-regulation and self-examination.

Different outputs are optional: Hart,RS485 Profibus,4-20mA, frequency, pulse.

 

 

 

3. Specification

MLF TypeDivided TypeIntegrated TypeExplosive Proof Integrated TypeBattery Powered TypeHeat Energy Type
Accuracy±0.2% or ±0.5%
Pipeline DiameterDN10-DN2000DN10-DN600DN25-DN2000
FlangeGB, ANSI, JIS, BS, Others
PressureDN10-DN600 1.0 1.6 2.5 4.0MPa
DN700-DN2000 0.6 1.0 1.6MPa
Liner MaterialCR, PTFE, PU, Hard Rubber, PFA, FEP(F46)
Conductivity≥5µs/cm(Please contact us if it is less than 5µs/cm)
Electrode316L SS, Hb, Ta, Ti, Hc, Tungsten Carbide, Others
Protection ClassIP65, IP66, IP67, IP68
Medium Temperature-25~180
(Please refer to liner material)
-25~80(Please refer to liner material)-25~180
(Please refer to liner material)
Ambient Temperature for Accuracy Influence<±0.1%/10 or <±0.25%/10 at the ambient temperature of -25~60
Repetability≤±0.1% or ±0.25%
Analog Output Error≤±0.02mA
Velocity0.3~10m/s
Electrical connectionM20x1.5 Seal Cartridge, GB1/2, NPT1/2
Output4-20mA, Pulse, RS485, Hart, Profibus

 

4. Selection of Liner Material

Liner MaterialMain PerformanceApplication
PTFE

1 It has the most stable chemical properties in plastics, resistant to boiling hydrogen chloride and sulfuric acid, nitric acid, aqua regia, strong alkali and various organic solvents, but not resistant to chlorine trifluoride, high temperature nitrogen trifluoride, liquid fluorine, and liquid oxygen And ozone corrosion.

2 Low wear resistance.

3 Low negative pressure resistance.

1. -25~140℃

2. Strong corrosion medium, like strong acid and alkali

3. Healthcare medium

CROil proof, solvent resistance, oxidatite resistance and the resistance to the erosion of common medium like acid, alkali, salt, etc.

1. <80℃

2. Be able to measure sewage and mud

PU

1. Very good abrasive resistance, flexibility.

2. Low acid and alkali resistance.

1. <65℃

2. Neutral strong abrasion resistance medium

Hard Rubber

1 Room temperature resistance, hydrochloric acid, acetic acid, oxalic acid, ammonia, phosphoric acid and 50% sulfuric acid, sodium hydroxide, potassium hydroxide

2 Avoid strong oxidants

1. <80℃

2. General acid, alkali, salt solution

PFA

1. Can be used for most corrosive medium like acides, alkalis, and strong oxidant.

2. High material strength, resistance to aging, better than PTFE, EFP in high temperature 

3. Injection molding for higher negative pressure

1. 40~180℃

2. Strong corrosion medium, like strong acid and alkali

3. Healthcare mdium

FEP(F46)

1. Hydrophobicity and non-viscous

2. Corrosion resistance is inferior to PFA

3. Negative pressure

1. 40~180℃

2. Strong corrosion medium, like strong acid and alkali

3. Healthcare mdium

 

5. Selection of Electrode Materials

Electrode MaterialMain Performance
316L

Good nitric acid corrosion resistance, <5% sulfuric acid, acetic acid, alkaline liquid, sulfite under certain pressure, sea water, acetic acid, etc. corrosion at room temperature, can be widely used in petrochemical urea, vinylon, etc.

Hb

Good resistance to all hydrochloric acid with a concentration lower than the boiling point, and also resistant to corrosion by non-oxidizing acids, alkalis, sulfuric acid, phosphoric acid, hydrofluoric acid, and organic acids.

Hc

Corrosion resistance to oxidizing acids, such as nitric acid, mixed acids. A mixture of chromic acid and sulfuric acid, oxidizing salts such as Fe3+, Q3+, and some other oxidizing agents, such as a mixture of hypochlorite solution and seawater at higher than normal temperature.

TiResistance the corrosion of seawater, various chlorides, hypochlorite, oxidizing acid(including fuming nitric acid), and organic acid or alkali, but don't be resistance to the corrosion of pure reducint acid(like sulfuric acid, hydrochloric acid). But  if acid includes oxidants(like nitric acid, Fe3+, Q3+),  the corrosion resistance will  decrease.
TaGood corrosion resistance similar to glass. Resistance to the corrosion of chemical medium(including hydrochloric acid and fumiing sulfuric acid), but can not be used for sodium hydromide fluid.
Pt-IrHave good corrosion resistance of all acid, and  can be resistance to the corrosion of alkali, all salt except aqua regia, ammonium slat and few other medium
Tungsten CarbideFor pulp and sewage, good resistance to solid particle interference.

 

 

6. Dimensional Sketches

a. Dimension of Converter

                                                                      Divided Type

 

 

                                                                      Integrated Type

 

                                                                  Battery Powered Type

 

 

b. Dimension of Sensor

 

 

Pipeline DiameterDimension
LWH
1516095130
20160105137
25160115150
32160135160
40200145175
50200160185
65200180205
80200195215
100250215235
125250245275
150300280300
200350335355
250400400405
300500455460
350500515520
400600575580
450600635630
500600710685
600600835795
700700905910
80080010201030
90090011201120
1000100012451250
1200120014651470

 

7. Advantages & Disadvantages

There are numerous benefits to using electromagnetic flowmeters to perform fluid flow measurements. They are generally non-invasive and have no moving parts, reducing the risk of breakdowns and the frequency of repairs. A decrease in flowmeter pressure is also usually no greater than that of an equivalent pipe length, reducing the piping costs. Some of the other major advantages provided by magnetic flowmeters include:

  • Power usage is relatively low, with electrical power requirements as low as 15 watts for some models.
  • They are mechanically obstructionless and can be equipped with abrasion-resistant liners, making them effective for measuring slurries and other erosive fluids.
  • They are capable of dealing with most kinds of acids and bases, as well as water and water-based solutions, due to lining materials that are both insulators and have corrosion resistance.
  • Relatively small amounts of electrode metals are needed for magnetic flowmeters.
  • They can measure both very low flows and very high volume flow rates, with a minimum diameter of roughly 0.125 inches and a maximum volume of up to 10 cubic feet.
  • They can usually measure multidirectional flow, either upstream or downstream.

Despite these advantages, magnetic flowmeters also present certain difficulties for flow rate measurement. These flowmeters are only effective on conductive fluids, and materials such as unmixed hydrocarbons and gases cannot be measured. However, magnetic materials themselves may also present problems, as hydrodynamic effects can alter the normal flow pattern and disturb the velocity rate enough to interfere with operations. Depending on their size and capacity, magnetic flowmeters can be relatively heavy, and those with higher corrosion and abrasion resistance can be expensive.

 

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