Showing posts with label Stainless Steel. Show all posts
Showing posts with label Stainless Steel. Show all posts

Friday, January 25, 2019

Emerson GH series Gas/Steam Jet Pumps

Gas Motive High Head (GH Series) Emerson Jet Pumps from Flow Factor

Buy Penberthy Emerson GH Series Eductors HERE!


Features of Emerson Penberthy Jet Pumps (Eductors)
• Simple design with no moving parts to wear out. • No lubrication required.
• Virtually maintenance-free.
• Easy to install without special structures or 
foundations.
• Self-priming.
• Cast, fabricated or non-metallic 
constructions.
• Variety of materials to suit specific characteristics of the process liquids.
• Critical flow paths machined smoothly with
  no abrupt turns or steps, producing the most efficient flow during the motive function.

General Application 
Suitable for a broad range of applications including: handling condensate, pumping wells, circulating solutions, emptying cesspools, pumping brine solutions, extracting solvents, draining cellars, pumping out barges, acidifying, causticizing oils, producing emulsions,elevation water.

Technical Data
Materials: Bronze, iron, carbon steel, 316 SS, PVC, CPVC, PP, PVDF
Sizes: 1⁄2” to 12”
Pressure range: 
15 to 200 psig (1 to 13.8 barg)
Temperature(max): 200°F(93°C) 

Emerson Penberthy GH Series Gas Motive Jet Pump


Size
(Inches)
Emerson HASTELLOY C GH
(High Head) Series Eductors / Jet Pumps
1/2AGH-4AHC
1/2BGH-4BHC
 1/2GH-04HC
 3/4GH-06HC
1    GH-08HC
1 1/4GH-10HC
1 1/2GH-12HC
2    GH-16HC
2 1/2GH-20HC
3    GH-24HC
4    GH-32HC

Size
(Inches)
Emerson Bronze GL
(High Head) Series Eductors / Jet Pumps
1/2AGH-4ABZ
1/2BGH-4BBZ
 1/2GH-04BZ
 3/4GH-06BZ
1    GH-08BZ
1 1/4GH-10BZ
1 1/2GH-12BZ
2    GH-16BZ
2 1/2GH-20BZ
3    GH-24BZ
4    GH-32BZ
Size
(Inches)
Emerson Penberthy Cast Iron GL
(High Head) Series Eductors / Jet Pumps
1/2AGH-4AIR
1/2BGH-4BIR
 1/2GH-04IR
 3/4GH-06IR
1    GH-08IR
1 1/4GH-10IR
1 1/2GH-12IR
2    GH-16IR
2 1/2GH-20IR
3    GH-24IR
4    GH-32IR
Size
(Inches)
Emerson Penberthy Carbon Steel GL
(High Head) Series Eductors / Jet Pumps
1/2AGH-4ACS
1/2BGH-4BCS
 1/2GH-04CS
 3/4GH-06CS
1    GH-08CS
1 1/4GH-10CS
1 1/2GH-12CS
2    GH-16CS
2 1/2GH-20CS
3    GH-24CS
4    GH-32CS
Size
(Inches)
Emerson Stainless Steel GL
(High Head) Series Eductors / Jet Pumps
1/2AGH-4ASS
1/2BGH-4BSS
 1/2GH-04SS
 3/4GH-06SS
1    GH-08SS
1 1/4GH-10SS
1 1/2GH-12SS
2    GH-16SS
2 1/2GH-20SS
3    GH-24SS
4    GH-32SS

Size
(Inches)
Emerson MONEL GH
(High Head) Series Eductors / Jet Pumps
1/2AGH-4AMO
1/2BGH-4BMO
 1/2GH-04MO
 3/4GH-06MO
1    GH-08MO
1 1/4GH-10MO
1 1/2GH-12MO
2    GH-16MO
2 1/2GH-20MO
3    GH-24MO
4    GH-32MO


GAS MOTIVE (AIR/STEAM) Jet Pumps for Pumping or mixing Liquids or gases up to 50 psi discharge head pressure

Operation for Penberthy Emerson Gas Jet Pumps
All Emerson jet pumps operate on the principle of a fluid entraining a second fluid. Although design and construction may vary, this applies to all jet pumps.
All Emerson jet pumps have three common features: inlet, suction and discharge. They function as follows:
Inlet - The operating medium (liquid or steam) under pressure enters the inlet and travels through the nozzle into the suction chamber. The nozzle converts the pressure of the operating medium into a high velocity stream, which passes from the discharge side of the inlet nozzle.
Suction - Pumping action begins when vapor, gases or liquid in the suction chamber are entrained by the high velocity stream emerging from the inlet nozzle, lowering the pressure in the suction chamber. The resulting action causes the liquid, gas or vapor in the suction chamber to flow toward the discharge.
Discharge - The entrained material from the suction system mixes with the operating medium and acquires part of its energy in the parallel section. In the diffuser section, part of the velocity of the mixture is converted to a pressure greater than the suction pressure, but lower than the operating medium pressure. 

Buy Penberthy Emerson GH Series Eductors HERE!

ALL Emerson Penberthy Jets can be found HERE!

Flow Factor
www.flowfactor.com

GH High Head Series Jet Pumps Eductors from Emerson Penberthy 

Wednesday, January 23, 2019

Emerson GL (Gas Motive) Jet Pumps

Gas Motive Low Head (GL Series) Emerson Jet Pumps from Flow Factor

Buy Penberthy Emerson GL Series Eductors HERE!


Features of Emerson Penberthy Jet Pumps (Eductors)
• Simple design with no moving parts to wear out. • No lubrication required.
• Virtually maintenance-free.
• Easy to install without special structures or 
foundations.
• Self-priming.
• Cast, fabricated or non-metallic 
constructions.
• Variety of materials to suit specific characteristics of the process liquids.
• Critical flow paths machined smoothly with
  no abrupt turns or steps, producing the most efficient flow during the motive function.


General Application 
Suitable for a broad range of applications including: handling condensate, pumping wells, circulating solutions, emptying cesspools, pumping brine solutions, extracting solvents, draining cellars, pumping out barges, acidifying, causticizing oils, producing emulsions,elevation water.


Technical Data
Materials: Bronze, iron, carbon steel, 316 SS, PVC, CPVC, PP, PVDF
Sizes: 1⁄2” to 12”
Pressure range: 
15 to 200 psig (1 to 13.8 barg)
Temperature(max): 200°F(93°C) 


Emerson Penberthy GL Series Jet Pump


Size
(Inches)
Emerson HASTELLOY C GL
(Low Head) Series Eductors / Jet Pumps
1/2AGL-4AHC
1/2BGL-4BHC
 1/2GL-04HC
 3/4GL-06HC
1    GL-08HC
1 1/4GL-10HC
1 1/2GL-12HC
2    GL-16HC
2 1/2GL-20HC
3    GL-24HC
4    GL-32HC



Size
(Inches)
Emerson Bronze GL
(Low Head) Series Eductors / Jet Pumps
1/2AGL-4ABZ
1/2BGL-4BBZ
 1/2GL-04BZ
 3/4GL-06BZ
1    GL-08BZ
1 1/4GL-10BZ
1 1/2GL-12BZ
2    GL-16BZ
2 1/2GL-20BZ
3    GL-24BZ
4    GL-32BZ
Size
(Inches)
Emerson Penberthy Cast Iron GL
(Low Head) Series Eductors / Jet Pumps
1/2AGL-4AIR
1/2BGL-4BIR
 1/2GL-04IR
 3/4GL-06IR
1    GL-08IR
1 1/4GL-10IR
1 1/2GL-12IR
2    GL-16IR
2 1/2GL-20IR
3    GL-24IR
4    GL-32IR
Size
(Inches)
Emerson Penberthy Carbon Steel GL
(Low Head) Series Eductors / Jet Pumps
1/2AGL-4ACS
1/2BGL-4BCS
 1/2GL-04CS
 3/4GL-06CS
1    GL-08CS
1 1/4GL-10CS
1 1/2GL-12CS
2    GL-16CS
2 1/2GL-20CS
3    GL-24CS
4    GL-32CS
Size
(Inches)
Emerson Stainless Steel GL
(Low Head) Series Eductors / Jet Pumps
1/2AGL-4ASS
1/2BGL-4BSS
 1/2GL-04SS
 3/4GL-06SS
1    GL-08SS
1 1/4GL-10SS
1 1/2GL-12SS
2    GL-16SS
2 1/2GL-20SS
3    GL-24SS
4    GL-32SS



GAS MOTIVE (AIR/STEAM) Jet Pumps for Pumping or mixing Liquids or gases up to 50 psi discharge head pressure


Operation for Penberthy Emerson Gas Jet Pumps
All Emerson jet pumps operate on the principle of a fluid entraining a second fluid. Although design and construction may vary, this applies to all jet pumps.
All Emerson jet pumps have three common features: inlet, suction and discharge. They function as follows:
Inlet - The operating medium (liquid or steam) under pressure enters the inlet and travels through the nozzle into the suction chamber. The nozzle converts the pressure of the operating medium into a high velocity stream, which passes from the discharge side of the inlet nozzle.
Suction - Pumping action begins when vapor, gases or liquid in the suction chamber are entrained by the high velocity stream emerging from the inlet nozzle, lowering the pressure in the suction chamber. The resulting action causes the liquid, gas or vapor in the suction chamber to flow toward the discharge.
Discharge - The entrained material from the suction system mixes with the operating medium and acquires part of its energy in the parallel section. In the diffuser section, part of the velocity of the mixture is converted to a pressure greater than the suction pressure, but lower than the operating medium pressure. 

Buy Penberthy Emerson GL Series Eductors HERE!

ALL Emerson Penberthy Jets can be found HERE!

Flow Factor
www.flowfactor.com

Low Head Series GL Emerson Penberthy Jet Pumps Eductors

Monday, August 13, 2018

Parker Solenoid Valves and Types of Fluids

Parker Solenoid Valves from Flow Factor

How Fluid Type Affects Solenoid Valve Choices

In industrial applications, the successful transfer of fluids requires different types of valves to open and close the flow. Solenoid valves are a popular choice because they offer rapid automatic opening and closing, remote control and high process security.

Fluid considerations

The type of fluid being used in a production process may potentially reduce the operational lifetime of a solenoid valve. Why so? Well, many parts of the valve, such as the body, mechanism and seals, will be in direct contact with the fluid. In diverse industrial applications, the fluids may include aggressive media like cleaning agents and reagents used in food processing, car washing and industrial washing applications. These fluids require the careful selection of a solenoid valve to do the job safely, reliably and effectively.  
The materials used in the valve should not influence the chemical composition of the fluid, i.e. breakdown and contaminate, especially in the food and beverage industry. Here, for processes such as the cleaning of bottles or machinery, a solenoid valve using lead-based materials could not be specified for obvious reasons. Instead, stainless steel is more appropriate, which is the case in the medical and pharmaceutical sectors too.

Impact on choice

It is important to avoid comparing solenoid valves, feature by feature, when looking to specify the right product for an installation. However, on many occasions the specific application must guide the common sense choice. For instance, where maximum working life is required, such as in outdoor service scenarios, then corrosion resistance must be a priority. Similarly, one must also factor in the presence of an explosion-risk environment, such as those found in the oil and gas and petrochemical sectors.
An example of a solenoid valve developed for use in challenging applications where aggressive chemicals or fluids are present is the Parker 221G series stainless steel solenoid valve. The use of high-grade 316L stainless steel as the valve body material is significant as in harsh environments it gives increased system reliability and, in turn, improved operational performance and productivity. In fact, it has shown to deliver 30% more life on average (depending on the application) versus some other technologies.
Offering wide-ranging chemical compatibility is vital, and the 221G series valve has been designed to be 30% more resistant in corrosive environments. The use of fluoroelastomer (FKM) seals aids dependable operation under severe chemical conditions and at higher temperatures where many other seal materials may perish or otherwise lose their integrity. Degrading seals can lead to fluid leaks and the associated safety risks and costly downtime. FKM seals are especially well suited to arduous conditions with petroleum fuels, mineral-based hydraulic fluids or other solvents present. 

Flow Factor
216-765-4231

Thursday, May 31, 2018

Penberthy SRH Jet Pump

Penberthy Emerson SRH Jet Pumps/Injectors

from Flow Factor

The SRH (Steam Ring Heaters) are compact, inline jet pumps with low pressure drop. SRH units inject steam through a ring-shaped opening within an enlargement in the pipe line.  Liquid passes through and around the ring.  Heat is introduced by the direct condensation of the steam. The SRHs provide fast temperature correction noiselessly and without vibration if correctly applied. Because the liquid flow area is unrestricted, pressure drops across the SRH are minimized.  This will reduce the horsepower requirements for the operating pump.

The Emerson Penberthy SRH injectors provide liquid flow rates up to 500 GPM.  Temperature rises range up to 200 degrees F.  Heat input ranges up to 128,000 BTU per minute at 150 PSIG operating steam pressure. The Steam Ring Heater jets can be installed in either series or parallel arrangements for increased capacities.















The SRH units come in the below sizes.

Model 310 
Inlet is 1.5 inches, outlet is 1.5 inches and steam port is 1 inch.

Model 320
Inlet is 2 inches, outlet is 2 inches and steam port is 1.25 inches.

Model 330
Inlet is 3 inches, outlet is 3 inches and steam port is 1.50 inches.

Model 330F (Flanged)
Inlet is 3 inches, outlet is 3 inches and steam port is 1.50 inches.

Model 340  (Flanged)
Inlet is 6 inches, outlet is 6 inches and steam port is 2 inches.
















216-765-4231
www.flowfactor.com
Cleveland Ohio USA

Thursday, September 14, 2017

ASCO 8210 Series Valves

Flow Factor Sells ASCO 8210 Series Solenoid Valves

The ASCO 8210 Solenoid valves are their most popular series and these valves are universally accepted for all general purpose solenoid valve applications.

The 8210 series ASCO solenoid valves range from 3/8 inch to 2-1/2 inch. They can be rated up to 300 PSI and there are both Normally Closed and Normally Open types. Valve bodies can be brass or stainless steel and paired with Buna-N, EPR, Viton or Teflon seals for higher temperatures or more caustic fluids. Most of the series 8210 valves require 5 PSI MINIMUM operating pressure but there are some with a ZERO minimum and can be used for draining application or closed loop applications. All of the valves are pilot operated, meaning that they use the line pressure to open or close the valve. (No pilot valve is required).
The 8210 valves can come in the most common voltages, 12, 24, 120 VDC and 24, 120, 240, 480 vac.

The below chart shows the specs for this series.



ASCO 8210 Series Solenoid Valves



Flow Factor
866-360-9830
www.flowfactor.com

Saturday, August 4, 2012

Screw Plug Immersion Heaters

Screw Plug Immersion Heaters from Flow Factor

Screw plug immersion heaters consist of tubular elements in a threaded hex plug. Some models are provided with a thermowell for the temperature control sensor and a variety of electrical enclosures for electrical connections. They screw directly through threaded openings in tank walls to heat liquids, viscous fluids, forced air, and gases by direct contact. A patented 360º rotatable housing is available on most models to facilitate easy conduit connections. 


  • Screw plug size: 1/2", 3/4", 1", 11/4", 2", and 21/2" NPT
  • Power ratings: Up to 40 kW
  • Screw plug material: Brass, steel, or stainless steel
  • Sheath material: Copper, steel, stainless steel, or INCOLOY©
  • SPST - Single Pole Single Throw
  • DPST - Double Pole Single Throw

2-1/2 inch Screw Plug Immersion heaters consist of Copper hairpin bent tubular elements brazed or welded into a screw plug, and provided with terminal enclosures for electrical connections and a ThermoStat. Chromalox ARMT-3 industrial heaters use direct immersion for energy efficiency, and are well suited for clean water applications.

2-1/2 inch Screw Plug Immersion heaters consist of Stainless Steel hairpin bent tubular elements brazed or welded into a screw plug, and provided with terminal enclosures for electrical connections and a Thermostat. Chromalox ARMTS-3 industrial heaters use direct immersion for energy efficiency, and are well suited for process water applications.

2-1/2 inch Screw Plug Immersion heaters consist of Stainless Steel hairpin bent tubular elements brazed or welded into a screw plug, and provided with terminal enclosures for electrical connections. Chromalox MTS-3 industrial heaters use direct immersion for energy efficiency, and are well suited for process water applications.

2-1/2 Inch Screw Plug Immersion heaters consist of Copper hairpin bent tubular elements brazed or welded into a screw plug, and provided with terminal enclosures for electrical connections. Chromalox MT-3 industrial heaters use direct immersion for energy efficiency, and are well suited for clean water applications.


  • 2-1/2" NPT Brass or Stainless Steel Screw Plugs
  • General Purpose, Moisture Resistant/Explosion Resistant Terminal Enclosure or Moisture Resistant
  • Stainless, Incoloy or Copper Sheath Elements
  • High Watt Density (46 - 53 W/In²)
  • 3 - 18 kW
  • With Integral T'Stats and Without Thermostats
  • 120, 208, 240 and 480 Volt, 1 and 3 Phase
Contact Us Regarding All Your Immersion Heater Needs

Sunday, February 19, 2012

Penberthy CTE Mixing Eductors


Models CTE and TME Mixing Liquids by Penberthy (Tyco Valves)




Penberthy circulating tank eductors, also known as in tank mixers provide a low cost alternative over other more expensive mechanical mixers. These units provide a more thorough mixing action then either mechanical mixers or air sparging. The flow pattern is easily controlled and provides a more complete integration of substances in a wide variety of liquids. These units are used in a wide variety of industries, including petroleum production, food processing, chemical processing, distilling, brewing and many others.


Features & Benefits:

  • Simple one-piece construction
  • No moving parts to wear out
  • None clogging
  • No lubrication
  • Wide variety of special material to suit the most diverse applications
  • Virtually maintenance free
  • Cost effective and inexpensive
  • No power or special installation requirements

CTE 3/8 Stainless Steel ( 70000 21814 )




Monday, November 15, 2010

Penberthy Jet Pumps / Eductors


Simple Jet Pump Design Offers Economical Solutions for Many Complex Process Operations!

Providing a practical alternative to more complicated and expensive methods, Penberthy jet pumps offer simple, more cost-effective ways to pump, mix or heat a wide range of liquids and gases used in the process industry. Jet pumps can operate with a wide variety of motive liquids and gases. If you recognize any of the following, you can probably use a Penberthy jet pump.


InjectorEductors
ExhaustersBoosters
EjectorsKinematic Pumps
Siphons

Penberthy jet pumps have a myriad of uses. Jet pumps not only pump liquids, they can also heat, mix and blend either in-line or in-tank. Jet pumps can evacuate gases, create a vacuum, boost suction pressures, mix granular solids with liquids and move granular solids with compressed air. In fact, you will be suprised at what a jet pump can do to solve your problem.

The purpose of this section and its associated pages is to identify the many uses for jet pumps, to identify pumps for specific processing operations and perhaps recognize new ways to use jet pumps to reduct costs and optimize your plant's efficiency. Penberthy invites you to explore the possibilities of jet pump use in your operation. You might be surprised at the many ways jet pumps can help improve your company's profitability!

Penberthy jet pumps can provide a practical alternative to more complex - and costly - process components when a simple, cost-effective way to pump, mix or heat is the answer to your process need. Reliable operation from a variety of power sources allow jet pumps to perform effectively on a wide array of process applications.

Not only can jet pumps be used to perform singular duties such as pumping liquids to drain sumps and tanks, or heating liquids in-tank for cooking or circulating, but they can also be used to achieve these functions simultaneously. For example, you can heat liquids as they are pumped for producing scalding sprays, or mix liquids in-tank while adding a second liquid at the same time.

Simple operation
While Penberthy jet pumps differ in appearance, all operate basically the same way. An operating fluid under pressure enters through the inlet and travels through the nozzle -- where it is converted to a high-velocity stream which decreases the air pressure in the suction chamber, creating a partial vacuum that draws material to that area where it is entrained by the operating medium. The entrained material is then carried through to the discharge outlet and dispelled at a pressure greater than that of the suction stream but lower than that of the operating medium.

Inherent reliability
The reliability of Penberthy jet pumps is inherent in their simple design: no moving parts, no required lubrication, little maintenance, easy installation without special structures or foundations. All are self-priming. And all Penberthy models are available in a variety of materials to maximize worry-free service life.

A choice of operating sources
Penberthy jet pumps let you choose the operating source that's most convenient for your application. These include aqueous and non-aqueous liquids, steam or even compressed gas. Economical sources which may already be available at your existing facility. And possibly more accessible than another power source such as electricity.

General Listing of Applications

Terms
  • Motive - the fluid used to "power" the eductor
  • Suction - the secondary fluid being educted
  • Discharge - the combined motive/suction fluid stream exiting the eductor
Standard Cast Materials of Construction
  • Low Lead Bronze
  • Iron
  • Carbon Steel
  • 316 STS

Purchase Penberthy Jet Pumps at Flow Factor or call 866-360-9830

Sunday, February 21, 2010

Penberthy Magnetic Level Gages


Penberthy's MULTIVIEW™ Magnetic Liquid Level Gages can be built to serve practically any process industry situation. From the simplest operation to the most severe, corrosive environment, Penberthy can construct a system to best suit your company’s requirements. As pioneers in magnetic gage level indication and as creators of the unique concentric magnet design, Penberthy has the expertise to know what design, specifications and options best fit any given application. Contact a Penberthy representative to discuss specific duty requirements in your operation.

MULTIVIEW™ Magnetic Liquid Level Gages utilize a communicating chamber constructed of 2-1/2" pipe which is connected to the process tank with either side or end connections. A float with a self-enclosed magnet is custom sized and weighted to float at the surface of the process liquid to be monitored. The float is then installed in the communicating chamber.

The industry-unique concentric magnet in MULTIVIEW™ gages provides a more consistent magnetic field than conventional magnet designs.

Construction Materials AvailablePenberthy offers a wide range of materials, including:

304/304L STS
316/316L STS
Alloy-20
Monel
Titanium
Hastelloy-C
PVC
CPVC
PVDF
Tefzel® Lined
Halar® Lined

Typical Process Applications
Sodium Hypochlorite
Boiler Feedwater Tank
Hydrochloric Acid
Stop Oil
LPG
Interface
Dowtherm®
Sulfuric Acid
Hydrogen Sulfide
Oil/Water Separator
Sodium Hydroxide
Liquid Nitrogen
Flare Drums
Phosgene
Jet Fuel
Molten Sulfur
Sour Oil
Diesel Fuel
Deionized Water
Sumps
Freon
Liquid Ethylene
Water
Underground Storage
Benzene
Asphalt Settler
Acetic Acid
Liquids & Slurries

Follower Style Indicator

In MG Follower-Type models, the unit consists of a hermetically-sealed tube in a protective view housing. Within this tube is a gold anodized aluminum follower which will mirror level changes in the process tank. This entire assembly is attached to the communicating chamber where the follower is magnetically coupled with the float. Because the follower and float are magnetically linked, liquid level changes in the process tank will cause both float and follower to rise and fall in unison. The result is a precise indication of the liquid level within the vessel.

Flag Style Indicator

MG Flag-Type monitors provide a more secure link between the indicator and float. The view housing is sealed and consists of a single column assembly of aluminum flags within an extruded aluminum channel. These flags are anodized with black on one side and gold on the other. Each flag houses a small magnet and is assembled on a single, individual axle. As the float in the communicating chamber rises and falls, the magnetic interaction between float and flag magnets cause the flags to rotate 180°. These changes are shown through contrasting colors – black above and gold below the liquid level.

To insure trouble-free operation, Penberthy's flags are magnetically interlocked and utilize mechanical stops. This prevents over-rotation. Penberthy's redundant axle system prevents binding, with each flag allowed to rotate on the axle and each axle free to rotate in the channel. This method of indication is always accurate, regardless of the speed of process level change or vibration.

Switches can be added to the level gage for point level control.

MGS Switches provide non-intrusive point-level control and contain no mercury. They allow you to be environmentally safe without sacrificing accuracy.

MGS-314: SPDT 5A service

MGS-314D: DPDT 10A service

MGS-314L: SPDT 1A service used with standard MULTIVIEW?

MGS-314M: SPDT 1A service used with either TMMG (Top Mount Magnetic Gage) or MMG (Mini Magnetic Gage)

Transmitters can be added for continuous level control.

MGT Transmitters provide continuous level indication to remote locations via 4 to 20 mA loop-powered operation.

MGT-362: A reed switch based unit available in integral and remote mounting styles

MGT-362B or C: An in-tank reed switch based unit. The MGT-362B is an NPT-mounted assembly. The MGT-362C is a flange-mounted assembly. Both are available in integral or remote mounting styles.

MGT-367: A magnetostrictive transmitter available with or without Hart protocol.

Please visit our web site and fill our our Penberthy form for more information.